170S8 170S8F
170S8FB 09071115472084
User Manual: 170S8F
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17" LCD Color Monitor Chassis: HUDSON 8 170S8FS/00 Service 170S8FB/00 170S8FB/27 Service Service 170S8FS/62 170S8FB/62 Page Description 6.1 Scalar Board…….……………..…………………………21 6.2 Power Board…………………………..…………………25 6.3 Key Board…….………………………..…………………27 7. PCB Layout.....……......................……………………..28 7.1 Scalar Board.....…….......................…….…………......28 7.2 Power Board.……................…..…………….............30 7.3 Key Board………...………………………………………32 8. Wiring Diagram……………………………………….…..33 9. Mechanical Instructions.....……...…………..…..........34 10.Trouble shooting…..…………………………...……..44 11. Repair Flow Chart…….…….……………………………46 12. ISP Instructions..…..........................………..............52 13. DDC Instructions……......…….............….................59 14. White Balance, Luminance Adjustment……............73 15. Monitor Exploded View………..…….………..............75 16. Recommended & Spare Parts List...…….....................76 17. Different Parts List...……….....………....................96 18. General Product Specification……………………….99 ht tp :// ww w. wj Table Of Contents........................................………….1 Revision List................................................…………….2 Important Safety Notice………….................................3 1. Monitor Specifications……...................................…..4 2. LCD Monitor Description………..…….........................6 3. Operation instructions…………….......................…....7 3.1General Instructions…………………..…..…………7 3.2 Control buttons…………..……………………………7 3.3 Adjusting the Picture……....................................…..9 3.4 Connecting to the PC ….........…….…........……....11 4. Input/Output Specification.........................………….12 4.1 Input Signal Connector...........................…………..12 4.2 Factory Preset Display Modes...............................13 4.3 Pixel Defect Policy……………………………………13 4.4 Failure Mode OF Panel………………………..…..16 5. Block Diagram……………………………................17 5.1 Software Flow Chart............................………….....17 5.2 Electrical Block Diagram..................……….........19 6. Schematic Diagram…….....................……….........21 Page el. Description ne t 170S8FB/78 SAFETY NOTICE ANY PERSON ATTEMPTING TO SERVICE THIS CHASSIS MUST FAMILIARIZE HIMSELF WITH THE CHASSIS AND BE AWARE OF THE NECESSARY SAFETY PRECAUTIONS TO BE USED WHEN SERVICING ELECTRONIC EQUIPMENT CONTAINING HIGH VOLTAGES. CAUTION: USE A SEPARATE ISOLATION TRANSFOMER FOR THIS UNIT WHEN SERVICING REFER TO BACK COVER FOR IMPORTANT SAFETY GUIDELINES Published by Philips CE Copyright reserved K Subject to modification ○ Aug, 22, 2007 GB 312278517290 HUDSON 8 Revision List Version Release Date Revision History A00 Jul.05, 2007 Initial release, Draft Version A01 Jul.17,2007 Add new BOM in Item 17 A02 Jul.27,2007 Add new BOM in Item 17 A03 Sep.12,2007 Add new BOM in Item 17 A04 Nov.07,2007 Add Second Panel Source Update C907 in Item 16 Nov.24,2007 Add Philips 12NC for 715GT039 A A06 Dec.22,2007 Add Philips 12NC for Model 170S8FB/00 and 170S8FS/00 A07 Feb.02,2007 Add new BOM in Item 17 A08 Mar.05,2008 A09 Apr.11,2008 el. ne t A05 Add Second Panel Source w. wj Add a new BOM for CTV Model 170S8FS/00 in Item16 tp :// ww Add a new BOM for CTV Model 170S8FB/00 in Item17 ht 2 HUDSON 8 3 Important Safety Notice Proper service and repair is important to the safe, reliable operation of all Philips Company Equipment. The service procedures recommended by Philips and described in this service manual are effective methods of performing service operations. Some of these service operations require the use of tools specially designed for the purpose. The special tools should be used when and as recommended. ne t It is important to note that this manual contains various CAUTIONS and NOTICES which should be carefully read in order to minimize the risk of personal injury to service personnel. The possibility exists that improper service methods may damage the equipment. It is also important to understand that these CAUTIONS and NOTICES ARE NOT EXHAUSTIVE. Philips could not possibly know, evaluate and advise the service trade of all conceivable ways in which service might be done or of the possible hazardous consequences of each way. Consequently, Philips has not undertaken any such broad evaluation. Accordingly, a servicer who uses a service procedure or tool which is not recommended by Philips must first satisfy himself thoroughly that neither his safety nor the safe operation of the equipment will be jeopardized by the service method selected. Hereafter throughout this manual, Philips Company will be referred to as Philips. WARNING el. Use of substitute replacement parts, which do not have the same, specified safety characteristics may create shock, fire, or other hazards. w. wj Under no circumstances should the original design be modified or altered without written permission from Philips. Philips assumes no liability, express or implied, arising out of any unauthorized modification of design. Servicer assumes all liability. :// ww FOR PRODUCTS CONTAINING LASER: DANGER-Invisible laser radiation when open. AVOID DIRECT EXPOSURE TO BEAM. CAUTION-Use of controls or adjustments or performance of procedures other than those specified herein may result in hazardous radiation exposure. CAUTION -The use of optical instruments with this product will increase eye hazard. ht tp TO ENSURE THE CONTINUED RELIABILITY OF THIS PRODUCT, USE ONLY ORIGINAL MANUFACTURER'S REPLACEMENT PARTS, WHICH ARE LISTED WITH THEIR PART NUMBERS IN THE PARTS LIST SECTION OF THIS SERVICE MANUAL. Take care during handling the LCD module with backlight unit -Must mount the module using mounting holes arranged in four corners. -Do not press on the panel, edge of the frame strongly or electric shock as this will result in damage to the screen. -Do not scratch or press on the panel with any sharp objects, such as pencil or pen as this may result in damage to the panel. -Protect the module from the ESD as it may damage the electronic circuit (C-MOS). -Make certain that treatment person’s body is grounded through wristband. -Do not leave the module in high temperature and in areas of high humidity for a long time. -Avoid contact with water as it may a short circuit within the module. -If the surface of panel becomes dirty, please wipe it off with a soft material. (Cleaning with a dirty or rough cloth may damage the panel.) 4 HUDSON 8 ht tp :// ww w. wj el. ne t 1. Monitor Specifications ww :// tp ht ne el. w. wj t HUDSON 8 5 6 HUDSON 8 2. LCD Monitor Description The LCD monitor will contain a scalar board, a power board and a key board which house the flat panel control logic, brightness control logic and DDC. The power board will provide AC to DC Inverter voltage to drive the backlight of panel and the main board chips each voltage. Monitor Block Diagram ne CCFL backlight t Flat Panel and CCFL Drive. el. Power board Main Board w. wj (Include: adapter, inverter) RS232 Connector For white balance adjustment in factory mode Key Board ht tp :// 100V-240V ww AC-IN HOST Computer Video signal, DDC HUDSON 8 7 3. Operating Instructions 3.1 General Instructions Press the power button to turn the monitor on or off. The other control buttons are located at the front of the panel of the monitor. By changing these settings, the picture can be adjusted to your personal preferences. - The power cord should be connected. - Connect the video cable from the monitor to the video card. - Press the power button to turn on the monitor, the power indicator will light up. 3.2 Control Buttons ht tp :// ww w. wj el. ne t Front View ww :// tp ht ne el. w. wj t 8 HUDSON 8 Rear View HUDSON 8 9 3.3 Adjusting the Picture Description of the On Screen Display On-Screen Display (OSD) is a feature in all Philips LCD monitors. It allows an end user to adjust screen performance or select functions of the monitors directly through an on-screen instruction window. A user friendly on confirm the choice or change. buttons at the front bezel of the monitor to move the cursor, ww In the OSD shown above users can press w. wj el. ne t screen display interface is shown as below: To Lock/Unlock OSD function (User Mode) :// The OSD function can be locked by pressing “MENU” button for more than 10 seconds. ht tp Locked OSD function can be released by pressing “MENU” button for more than 10 seconds again. to 10 HUDSON 8 The OSD Tree Below is an overall view of the structure of the On-Screen Display. You can use this as a reference when you want ht tp :// ww w. wj el. ne t to work your way around the different adjustments later on. HUDSON 8 3.4 Connecting to the PC 1) Connect the power cord to the back of the monitor firmly. (Philips has pre-connected VGA cable for the first 2) Connect to PC tp :// ww w. wj el. ne t installation. ht (a) Turn off your computer and unplug its power cable. (b) Connect the monitor signal cable to the video connector on the back of your computer. (c) Plug the power cord of your computer and your monitor into a nearby outlet. (d) Turn on your computer and monitor. If the monitor displays an image, installation is complete. 11 HUDSON 8 12 4. Input/Output Specification 4.1 Input Signal Connector Analog connectors Description Pin No. Description 1. Red video input 9. DDC +3.3V or +5V 2. Green video input 10. Logic Ground 3. Blue video input 11. Ground 4. Sense (GND) 12. Serial data line (SDA) 5. Cable detect (GND) 13. H. Sync 6. Red video ground 14. V. Sync 7. Green video ground 15. Data clock line (SCL) 8. Blue video ground DVI connectors No. Description Pin No. :// Pin ww w. wj el. VGA connector layout ne t Pin No. Description Pin No. Description T.M.D.S Data2- 9. T.M.D.S Data1- 17. T.M.D.S Data0- 2. T.M.D.S Data2+ 10. T.M.D.S Data1+ 18. T.M.D.S Data0+ 3. T.M.D.S Data2 Shield 11. T.M.D.S Data1 Shield 19. T.M.D.S Data0 Shield 4. No connector 12. No connector 20. No connector No connector 13. No connector 21. No connector DDC Clock 14. +5V Power 22. T.M.D.S Clock Shield 7. DDC Data 15. Ground (for +5V) 23. T.M.D.S Clock+ 8. No connector 16. Hot Plug Detection 24. T.M.D.S Clock- 6. ht 5. tp 1. HUDSON 8 el. ne t 4.2 Factory Preset Display Modes ht tp :// ww w. wj 4.3 Pixel Defect Policy 13 ww :// tp ht ne el. w. wj t 14 HUDSON 8 ww :// tp ht ne el. w. wj t HUDSON 8 15 16 HUDSON 8 4.4 Failure Mode Of Panel Quick reference for failure mode of LCD panel presents problems that could be made by LCD panel. this page It is not necessary to repair circuit board. Simply follow the mechanical instruction on this manual to eliminate failure by replace LCD panel. Polarizer has bubbles Phenomenon Failure description Vertical block defect Polarizer has bubbles ne t Vertical dim lines el. Foreign material inside polarizer. It shows liner or dot shape. w. wj Vertical lines defect (Always bright or dark) Concentric circle formed Back light un-uniformity ht tp Horizontal dim lines Bottom back light of LCD is brighter than normal :// ww Horizontal block defect Horizontal lines defect (Always bright or dark) Has bright or dark pixel Backlight has foreign material. Black or white color, liner or circular type HUDSON 8 5. Block Diagram 5.1 Software Flow Chat 1 Y 2 3 N ne t 4 N 5 el. Y w. wj 6 N 7 8 ww Y :// 9 N ht tp 10 N 11 Y 12 Y 14 N 13 Y N 15 Y 17 18 N 19 Y 16 17 18 HUDSON 8 1) MCU initialize. 2) Is the EPROM blank? 3) Program the EPROM by default values. 4) Get the PWM value of brightness from EPROM. 5) Is the power key pressed? 6) Clear all global flags. 7) Are the AUTO and SELECT keys pressed? 8) Enter factory mode. 9) Save the power key status into EPROM. Turn on the LED and set it to green color. 11) Update the lifetime of back light. 12) Check the analog port, are there any signals coming? 13) Does the scalar send out an interrupt request? w. wj 14) Wake up the scalar. el. 10) In standby mode? ne t Scalar initializes. 15) Are there any signals coming from analog port? 16) Display "No connection Check Signal Cable" message. And go into standby mode after the message disappear. 18) Process the OSD display. ww 17) Program the scalar to be able to show the coming mode. ht tp :// 19) Read the keyboard. Is the power key pressed? HUDSON 8 19 5.2 Electrical Block Diagram 5.2.1 Main Board Panel Interface (CN402) EEPROM (Include MCU, ADC, OSD) M24C16 (CN407) (U203) (U204) ne t Scalar NT68665MFG Keypad Interface D-Data el. RGB H sync Crystal (X201) V sync w. wj 12.000MHZ D-Clock DVI_SDA, VGA_SDA, DVI_SCL ht tp :// ww VGA SCL D-Sub DVI Connector Connector (CN101) (CN102) HUDSON 8 20 5.2.2 Inverter/Power Board AC input Bridge Rectifier and Filter EMI filter Rectifier diodes Transformer Start Circuit: R905 CN902 5V Feedback Circuit PWM Control IC (IC901) 12V Output Circuit MOSFET el. Over Voltage w. wj PWM Control IC tp :// ww Feedback Circuit ht Lamp Transformer ne t ON/OFF (IC801) ON/OFF Control DIM HUDSON 8 6. Schematic 6.1 Scalar Board 715G2561-1 1 2 3 4 5 6 7 8 DVI/D-SUB FB101 120 OHM D102 DVI_VDD DVI_5V FB107 26 26 RX0RX0+ GND RX5RX5+ GND RXC+ RXC- 17 18 19 20 21 22 23 24 RX0M RX0P RED GRN BLU HS GND C1 C2 C3 C4 C5 RX2RX2+ 3 ZD103 3 RLZ5.6B R107 10R 1/16W R110 10R 1/16W ZD104 3 RLZ5.6B 3 RX1RX1+ R108 100R 1/16W 3 R109 100R 1/16W 1 VCC WC SCL SDA NC/NC/NC/E0/E0 NC/NC/E1/E1/E1 NC/E2/E2/E2/E2 VSS 1 2 3 4 RXC+ RXC- 3 3 DVI_SDA 3 DVI_SCL 3 2 +5V DVI_CABLE C132 470PF 50V 3 C114 0.1uF 16V DVI-HPD 1K 1/16W 3 2 ZD102 RLZ5.6B G 3 C131 1000pF VGA_5V BAV70 D110 VGA_VDD +5V 1uF 16V E VGA_5V U102 VCC WC SCL SDA NC/NC/NC/E0/E0 NC/NC/E1/E1/E1 NC/E2/E2/E2/E2 VSS 1 2 3 4 1 8 7 6 5 FB102 120 OHM :// R 1 R129 14 15 330pF 50V C127 C128 ZD101 RLZ5.6B ZD107 RLZ5.6B R142 2K2 1/16W ZD106 RLZ5.6B R141 2K2 1/16W 33pF B R101 75R 1/16W 13 VIN 16 G 1 6 2 7 3 8 4 9 5 10 12 R139 75R 1/16W 17 11 1 R132 100R 1/16W 2 R133 FB106 30 OHM 1 150 OHM 1/16W 1 BAV99 D111 A C105 1 0.1uF 16V C111 1 0.1uF 16V 2 BAV99 D108 RXCP 3 2 RXCM 3 C112 1 0.1uF 16V BAV99 D109 B C113 1 0.1uF 16V C R C116 0.1uF 16V 2 BAV99 D112 3 C117 1 0.1uF 16V B 2 BAV99 D113 3 C118 1 0.1uF 16V D C121 0.047uF RIN+ C122 0.047uF RIN- C123 1000pF SOG C124 0.047uF GIN+ C125 0.047uF EXT_EDID GIN- R138 150 OHM 1/16W U101 24C02 U102 CN101 F3 C101 E4 C103 A9 C105 A11 C107 A5 C111 B9 C113 B11 C115 E3 C117 C9 C121 E6 C123 F6 C125 G6 C127 G1 C129 G6 C131 D6 D101 A9 D103 A7 D105 A10 D107 B8 D109 B10 D111 C7 D113 C10 FB102 E4 FB104 F5 FB106 G5 R101 G4 R103 A5 R105 A4 R107 A2 R109 B3 R111 B2 R115 B2 R117 C2 R120 C4 R123 E2 R125 E2 R127 E2 R129 F6 R132 F6 R134 G1 R136 G1 R139 G5 R141 G2 R144 H4 U102 E3 ZD102 C7 ZD104 B2 ZD106 G2 24C02 C126 0.047uF BIN+ C129 0.047uF BIN- INT_EDID NC NC Q201 NC 3906 R206 NC 4.7K D201 NC FB201 R135 100R 1/16W 2 R140 75R 1/16W ht G 150 OHM 1/16W R131 390R 1/16W FB104 30 OHM CN101 DB15 R126 100R 1/16W 2 tp ZD105 RLZ5.6B F FB105 0R05 1/8W 2 BAV99 D107 RX0M 3 FB103 30 OHM DDCSDA DDCSCL C101 0.1uF 16V 2 R127 100R 1/16W R128 100R 1/16W NC 100R 1/16W C110 0.1uF 16V ww R124 4K7 1/16W R123 4K7 1/16W R125 NC C115 DDC_WP R136 BAV99 D106 w. wj D VS C104 1 0.1uF 16V 2 BAV99 D105 +5V_ESD R102 1K 1/16W 3 CN102 JACK HS RX1M 3 +5V_ESD RX0P R120 1K 1/16W R122 100R 1/16W 2 BAV99 D101 3 NC/M24C02-WMN6TP R116 10R 1/16W R117 10R 1/16W R118 10R 1/16W R134 C103 1 0.1uF 16V RX1P U101 8 7 6 5 1 VGA_SCL C102 0.1uF 16V 2 BAV99 D104 RX2M 3 R113 1K 1/16W 3 3 RX0RX0+ VGA_SDA BAV99 D103 t RXCP RXCM 2 120 OHM 1uF 16V DDC_WP R111 10R 1/16W R115 10R 1/16W C107 R104 4K7 1/16W 9 10 11 12 13 14 15 16 0.1uF 16V R103 4K7 1/16W RX1RX1+ GND RX3RX3+ 5V GND HP RX1M RX1P DDCSCL_D DDCSDA_D C106 R106 10R 1/16W 1 RX2P 3 ne C RX2M RX2P 2 +5V el. B 1 2 3 4 5 6 7 8 2 R105 NC 1 RX2RX2+ GND RX4RX4+ SCL SDA VS 11 +5V_ESD A 25 10 DVI_5V BAV70 25 9 BAV70 120 NC CN102 A1 C102 A8 C104 A10 C106 A4 C110 B8 C112 B10 C114 C3 C116 C8 C118 C10 C122 F6 C124 F6 C126 G6 C128 G1 C130 H4 C132 C3 D102 A6 D104 A8 D106 B7 D108 B9 D110 D3 D112 C9 FB101 A3 FB103 E5 FB105 G2 FB107 A6 R102 C7 R104 A5 R106 A2 R108 B3 R110 B2 R113 B2 R116 B2 R118 C2 R122 C2 R124 E2 R126 E6 R128 E2 R131 F6 R133 G6 R135 G6 R138 G6 R140 G5 R142 G2 U101 B5 ZD101 G3 ZD103 A2 ZD105 F3 ZD107 G2 E F G R144 1K 1/16W VGA_CABLE C130 0.1uF 16V H 1 2 3 4 H 5 6 7 8 9 10 11 21 22 HUDSON 8 1 2 3 4 5 6 7 8 9 10 11 MCU+SCALAR A A FB202 120OHM ADC_VAA 26 VGA_VDD C203 0.1uF 16V D201 BAV70 FB203 120 OHM C205 NC 4 R218 22R 5 C212 NC 0.1u 6 C211 NC 0.1u modify part070102 AVCC GPO1 111 AD0/GPO2 112 AD1/GPO3 VSO 113 INT_VSO/GPO4 HSO 114 INT_HSO/GPO5 115 CVDD 116 GPO6 MCU_VDD R225 100R 1/16W R224 NC R223 NC R231 NC/4K7 1/16W 1 2 3 4 A0 A1 A2 GND VCC WP SCL SDA 8 7 6 5 NC R232 DDC_WP NC/0R05 1/16W R229 NC R230 NC H_SCL H_SDA MCU_VDD CN202 1 2 3 4 TX RX ht G 66 67 68 69 70 71 72 73 65 PA0/PWM2 PA2/PWM4 PA1/PWM3 RSGA2P/T7P RSGA2M/T7M RSGA3P/TCLK2P RSGA3M/TCLK2M RSRA1P/T6P/RSBB0P 75 76 77 78 74 RSRA2P/T5P/RSGB0P RSRA1M/T6M/RSBB0M RSRA2M/T5M/RSGB0M RSRA3P/T4P/RSRB0P RSRA3M/T4M/RSRB0M 80 81 82 83 84 85 86 79 RSBB1P/T3P DGND/CGND RSBB1M/T3M RSBB2P/TCLK1P RSBB2M/TCLK1M RSBB3P/T2P RSBB3M/T2M RSCLKBP/T1P 88 89 90 91 92 93 94 95 96 87 RSCLKBM/T1M RSGB1P/T0P SP DVDD RSGB2P RSGB2M RSGB3P RSGB3M RSRB1P 98 99 100 101 97 RSRB2P RSRB1M RSRB2M RSRB3P RSGB1M/T0M 59 RSBA3P/V4 58 RSBA2M/V3 57 PA4*/PWM6* 37 PB6*/DDC_SCL1 PB7*/DDC_SDA1 PA3/PWM5 36 35 34 P30/RXD P31/TXD PB2/ADC2/INT0 33 32 31 PD6 PC2 PB3/ADC3/INT1 30 29 28 ADC_VAA ADC_GNDA 27 26 RIN1- GIN1- RIN1+ 25 24 23 SOG1I GIN1+ 22 RSBA2P/V2 56 RSBA1M/V1 55 RSBA1P/V0 54 DVDD 53 CVDD 52 IRQn 51 IRQN SCL/P34 50 IICSCL C211 IICSDA NC NC TO RS232 DVDD CVDD18 2 R209 NC DVDD D SDA/P35 49 RSTn/PD5 48 PB4*/DDC_SCL0 47 DVI_SCL PB5*/DDC_SDA0 46 DVI_SDA PLL_VDD 45 TCLK 44 PLL_GND 43 TOUTP/VSYNCI1 42 HSYNCI1 41 PA7*/PWM9* 40 PA6*/PWM8* 39 6 FB207 1000OHM 1 TCLK + +1.8VCC 2 C214 100uF/16V C215 0.1uF 16V E VS HS MCU_VDD R207 R219 NC +5V NC VOLUME DVI-HPD VSO ADC_VAA VGA_SCL VGA_SDA PVCC R228 RX IRQN 3 TX AVCC F modify parts 1/18 0R05 1/16W LIGHT_SEN HSO R205 NC C202 NC 24C16_WP modify parts 1/18 tp OPTION(HDCP) 60 RSBA3M/V5 R220 NC RX2+ RX2RX1+ RX1RX0+ RX0RXC+ RXC- SMT TYPE B DDC_WP C201 0.1uF 16V :// U201 61 RSCLKAP/V6 AVCC MCU_VDD C222 F RSCLKAM/V7 4 TCLK NC BIN1- R218 22R 1/16W 21 22pF 20 C220 R221 470R 1/16W MCU_VDD X201 12.000MHz 22pF ww C219 2 RSTB 1 1 SMT TYPE BIN1+ OSCO PGND OSCI 128 R201 1M 1/16W 19 127 C216 0.1uF 16V M24C16 PVCC PB0/ADC0 18 PB1/ADC1 126 17 125 KEY1 REXT PC5 AVCC PC4/PWM1 124 16 PC3/PWM0 123 U203 NT68665MFG-128 RXC- 122 BL_CONTROL DVI cable DVI_CABLE detect(high toKEY2 low) IICSCL IICSDA PC1* 15 8 7 6 5 PC0* 121 14 R214 4K7 1/16W PANEL_IDX 24C16_WP VCC WC SCL SDA NC/(VSYNCI) 120 RXC+ E NC NC NC VSS PWMB/GPO8 119 AGND U204 1 2 3 4 NC 5 R215 4K7 1/16W 1uF 16V 118 w. wj C212 R213 4K7 1/16W C213 AUDIO_STDBY 13 CVDD18 MCU_VDD PWMA/GPO7 RX0- BRIGHTNESS 117 12 C210 0.1uF 16V C201 F5 C203 B3 C205 B3 C207 C3 C209 D2 C211 D9 C213 E2 C215 E9 C219 E4 C222 F2 FB201 C2 FB203 B2 FB205 C2 FB207 D9 R201 E5 R205 F8 R207 E9 R210 B6 R213 E2 R215 E3 R219 E9 R221 F6 R224 F3 R228 F8 R230 F3 R232 F3 R234 C4 U203 C5 X201 E5 C PA5*/PWM7* 110 11 C209 0.1uF 16V RSGA1P/VCKI 62 38 NC/(HSYNCI) D 63 t PD4 109 CVDD18 64 RSGA1M ne 108 CVDD18 52 CGND/DGND el. H_SDA RX0+ 2 PD3 AGND 1 115 PD2 107 10 FB206 120OHM PD1 106 H_SCL RX1- +1.8VCC PD0 105 9 EXT_EDID MCU POWER VGA_CABLE PC7 104 8 R202 10K 1/16W 103 RX1+ 5V_DECT 2 5V_DECT AVCC 1 R234 220R 1/16W 7 VGA cable detect(high to low) ZD201 RLZ2.2B MCU_VDD RX2- FB201 NC RX2+ 0.1uF 16V RSRB3M PC6 +5V C208 C LED_R LF_LED PVCC 17 2 PANEL_PWR (for flash ) CVDD18 MCU_GND 0.1uF 16V FB205 120 OHM 4 0.1uF 16V R210 NC LED_B/G 102 C207 MCU_VDD KEY_PWR NC C206 R211 0R05 1/16W R233 DGND/CGND 15 DVDD CN202 G2 C202 F8 C204 B3 C206 C3 C208 C3 C210 D3 C212 D4 C214 E9 C216 E4 C220 E5 D201 B4 FB202 A2 FB204 B2 FB206 D2 Q201 B4 R202 C3 R206 B4 R209 D9 R211 B6 R214 E4 R218 E5 R220 E9 R223 F3 R225 F5 R229 F3 R231 F3 R233 B4 U201 F2 U204 E2 T0M T0P T1M T1P T2M T2P TCLK1M TCLK1P T3M T3P T4M T4P T5M T5P T6M T6P TCLK2M TCLK2P T7M T7P NC 1 6 2 1 0R MCU_VCC 1 R228 R206 4K7 1/16W INT_EDID MCU POWER 0.1uF 16V 0.1uF 16V FB204 120 OHM +3.3VCC 0R 3 OD 6 C204 NT68670 NC NONE OD DVDD 90 53 2 NT68665 R209 3 1 B Q201 2N3906S-RTK/PS U203 5 2 MCU_VDD PARTS 2 2 1 DVI_VDD NO. 1 BIN+ BINSOG GIN+ GINRIN+ RIN- G H H 1 2 3 4 5 6 7 8 9 10 11 HUDSON 8 1 2 3 4 5 6 7 8 9 10 23 11 DC-DC A A U303 PANEL_VCC CN301 C301 C302 C303 C304 C305 C306 C307 C308 C309 C310 C311 C312 C315 C316 C317 D301 FB302 FB303 Q301 Q302 Q305 R301 R302 R303 R304 R305 R307 R308 R309 R311 R312 R314 R316 U301 U302 U303 U304 NC 3 VI R303 2 VO 330 OHM 1/4W 330 OHM 1/4W C303 0.1uF 16V 1 C302 10uF/16V R302 + GND +5V R305 10K 1/16W +5V Q301 2N3904S-RTK/PS PANEL_PWR FB302 120OHM 1uF 16V +3.3VCC +5V C308 R304 10K 1/16W U301 AP1117D33LA 3 2 1 51K OHM 1/16W R308 4K7 1/16W B C304 VIN VOUT ADJ(GND) Q302 AO3401 R307 1uF 16V + + C305 100uF/16V C307 C306 0.1uF 16V 100uF/16V ne t C301 0.1uF 16V PANEL_IDX R312 1K 1/16W CN301 R311 +12V C315 100uF/16V CONN modify 1/8 +3.3VCC + C317 R314 0.1uF 16V 4K7 1/16W C316 0.1uF/25V E Q305 +5V R316 4K7 1/16W SM340A C311 + 0.1uF 16V 2 U302 NC D301 R301 1K 1/16W VO INPUT OUTPUT ADJ/GND FB303 120OHM VI +1.8VCC 3 2 1 1K 1/16W 3 D BRIGHTNESS 1 2 3 4 5 6 7 8 9 ww D +5V 100R 1/16W U304 AP1117E18LA C 1 R309 w. wj +3.3VCC B GND el. C D1 B7 A3 A4 B3 B7 B9 B8 B2 E7 E9 E7 E9 D3 E1 D3 E6 B4 D2 B2 B3 E4 E4 A4 A4 B1 B2 B2 B2 D1 D4 D5 D3 E4 B8 D8 A8 D8 + C312 0.1uF 16V C309 100uF/16V C310 100uF/16V E BL_CONTROL tp :// 2N3904S-RTK/PS F ht F G G H H 1 2 3 4 5 6 7 8 9 10 11 HUDSON 8 1 2 3 4 5 6 7 8 9 10 11 CONNECTOR A A CN402 T6M T6P TCLK2M TCLK2P T7M T7P R411 NC BRIGHTNESS PANEL_VCC C C405 R430 0.1uF 16V R413 R414 NC NC NC R402 3.9K OHM 1/16W T5M T5P +3.3VCC CN401 CONN OUT-L+ OUT-LEAR-R EAR-L LF_B LIGHT_SEN 5V_FB C403 R433 NC NC +3.3VCC R436 NC w. wj 1 2 3 4 5 6 KEY1_PAD KEY2_PAD POWER LED_G LED_O LF_B CONN LVDS OUTPUT ww CN406 D 1 2 3 4 5 6 7 E R404 1 2 NC 11 9 7 5 3 1 VOLUME F OUT-L+ OUT-LEAR-L R434 R435 NC R421 NC/10K 1/16W 12 10 8 6 4 2 NC/CONN NC OPTION(AUDIO CONTROL) NC AUDIO_STDBY EAR-SENSE EAR-R R431 tp CN403 R432 NC/0R05 1/16W :// +12V FB403 NC OUT-R- OUT-R+ R410 KEY2 100R 1/16W Menu/Up/Down key 1 2 3 4 5 6 7 8 9 R412 1K 1/16W KEY_PWR C404 0.1uF 16V R416 CN402 A4 CN404 E6 CN406 D1 C401 F8 C403 C8 C405 C2 C407 E8 FB403 E3 Q403 E8 R402 B9 R404 E4 R410 C8 R412 C8 R414 C3 R416 D8 R418 E8 R423 E9 R430 C2 R432 E4 R434 F2 R436 E2 R438 D2 C +3.3VCC 100R 1/16W R415 Q402 2N3906S-RTK/PS 10K 1/16W R417 10K 1/16W D LED_R C406 0.1uF 16V R418 +3.3VCC 100R 1/16W Q403 2N3906S-RTK/PS LED_B/G C407 E 0.1uF 16V CN404 +5V Auto/Left/Right key 0.1uF 16V CN407 R438 NC 100R 1/16W 0.1uF 16V +5V R437 NC CN401 B4 CN403 F2 CN405 F5 CN407 D4 C402 C8 C404 D8 C406 D8 FB401 F7 Q402 D8 Q404 E8 R403 B9 R407 B8 R411 C2 R413 C3 R415 D9 R417 E9 R421 F3 R424 F8 R431 E5 R433 D2 R435 F2 R437 D2 KEY1 C402 NC/CONN T0P T0M T1P T1M T2P T2M TCLK1P TCLK1M T3P T3M T4P T4M T5P T5M T6P T6M TCLK2P TCLK2M T7P T7M B R407 KEY1_PAD KEY2_PAD POWER LED_G LED_O 1 2 3 4 5 6 7 8 9 10 11 12 13 t B modify 1/18 ne TCLK1M TCLK1P T3M T3P T4M T4P R403 3.9K OHM 1/16W 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 el. T0M T0P T1M T1P T2M T2P +3.3VCC KEY1_PAD KEY2_PAD POWER LED_G LED_O R424 LF_B 5V_FB LIGHT_SEN +5V FB401 1 NC NC R423 Q404 NC NC LF_LED C401 NC NC F 2 CN405 ht 24 KEY1_PAD KEY2_PAD POWER LED_G LED_O 1 2 3 4 5 6 7 LF_B NC G G H H 1 2 3 4 5 6 7 8 9 10 11 HUDSON 8 25 6.2 Power Board 715G2594-1 1 2 3 4 5 6 1 POWER 2 ! 1 8 7 6 5 R954 ! Q900 STP10NK70ZFP 2 R956 47ǂ 1/4W 1 3 :// 1 2 C900 2200PF 1 2 FB902 R928 1K 1/8W CN901 HS1 HEAT SINK(Q900) 1 HS5 HEAT SINK(D920) 1 2 1 2 SOCKET ht 2 3 ! Q910 NC 1 C925 470uF/25V JUMPER + C927 470uF/16V 1 2 3 4 5 6 7 8 9 10 ZD922 RLZ5.1B ON/OFF DIM +5V R924 3K6 1/8W D916 C931 0.1uF 50V LL4148WP C930 0.1uF 50V R926 33K 1/8W C929 R927 1K 1/8W 0.1uF 50V R930 1K 1/8W Jumper E ZD921 RLZ13B LL4148WP C928 0.1uF 50V 2 +5V CN902 CONNECTOR R923 10K 1/8W ! 1 2 tp F901 FUSE D911 NC F903 + C926 1000uF/16V D915 R925 1K 1/8W R903 1Kǂ1/8W CHANGE 13X20mm R922 330R 1/8W IC902 PC123X2YFZOF GND2 GND C924 t 47ǂ 1/4W C921 0.001uF/500V ! NR901 NTCR C914 470pF/25V ! R955 ww R916 0.43ǂ 2W 47ǂ 1/4W 2 ZD902 NC R913 C913 1K 1/8W 220pF 50V GND1 GND NC 1 12 R910 2.2ǂ 1/4W R912 10R 1/4W R915 10K 1/8W LD7575PS R902 330K 1/4W ! FB901 BEAD D910 LL4148WP ! D 3 0.001uF 50V L922 3.5uH 2 ! RT HV COMPNC CS VCC GNDOUT 2 8 4 R900 330K 1/4W C911 22uF/50V 2 ! 100Kǂ 1/8W R911 4.0mH 1 2 3 4 10Kǂ 1/4W Q902 PMBS3904 D922 31DQ06FC3 1 ! 1 R908 470 1/8W C904 ZD901 NC IC901 RLZ13B R931 ne C916 0.1uF 50V +12V ZD920 150ǂ 1W 2 + + D921 NC w. wj C912 0.1uF 50V 2 330K 1/4W R901 10 6 1 C901 1000pF C909 0.47uF 11 D901 UF4003PT ! ! 4 6 4 + 1 ! D900 BA159GPT 2 VAR901 NC R905 10Kǂ 1/4W 7 + el. C903 1000PF 5 F902 0R05 1/4W R907 + C923 680uF/25V C910 1500PF/2KV L921 3.5uH 2 3 C907 100uF/450V D920 SBT150-10LST 1 ! R909 100Kǂ 2W 1 ! C902 1000pF L901 10 C920 0.001uF/500V C922 680uF/25V 2 4 + 2 3 9 A - L902 B ! R953 8 FB903 BEAD L C 47ǂ 1/4W T901 80GL17T-33-N2 4 9 4 3 R952 7 1 3 1 47ǂ 1/4W 3 + A ! R951 1 BD901 KBP208G 47ǂ 1/4W 12V BD901 A1 CN901 E1 CN902 C8 C900 E4 C901 B2 C902 B2 C903 B2 C904 B8 C907 B2 C909 D1 C910 B4 C911 B3 C912 B2 C913 D3 C914 D2 C915 F4 C916 B2 C920 A6 C921 C6 C922 B6 C923 B6 C924 B7 C925 B7 C926 C6 C927 C8 C928 E6 C929 E7 C930 D9 C931 D8 D900 B4 D901 B4 D910 C3 D911 E4 D915 D6 D916 D6 D920 A6 D921 B5 D922 C6 FB901 C4 FB902 E5 FB903 A2 F901 E2 F902 A9 F903 C9 GND1 E2 GND2 E3 HS1 F2 HS5 F3 IC901 C3 IC902 D5 IC903 E5 L901 C1 L902 B1 L921 A7 L922 B7 NR901 D2 Q900 C4 Q902 B8 Q910 E4 R900 D1 R901 D1 R902 D2 R903 B9 R905 B3 R907 B8 R908 B9 R909 B4 R910 C4 R911 C2 R912 C3 R913 D4 R915 C4 R916 D4 R922 D6 R923 E7 R924 D7 R925 D6 R926 E8 R927 E6 R928 E6 R929 E7 R930 E7 R931 B8 R951 A6 R952 A6 R953 A6 R954 C5 R955 C5 R956 C5 S1 A1 S2 B1 S3 B2 S4 C2 S5 C1 S6 D1 S7 D2 S8 E2 S9 E1 S10 B2 S11 A5 S12 C4 S13 D5 S16 E4 S17 B3 S19 C1 S20 D2 S21 D1 T901 B5 VAR901 B1 ZD901 C3 ZD902 D4 ZD920 B9 ZD921 D6 ZD922 D6 B C D E IC903 KIA431A-AT/P R929 2.4Kǂ 1/8W C915 NC F F 1 2 3 4 5 6 7 8 9 10 HUDSON 8 6 7 8 INVERTER 6 +12V R850 R805 Q802 PDTC144WK C802 1uF 16V R813 100 1/10W 5% R814 75K 1/10W 1% ! R806 1K 1/10W 1% C803 D801 BAV99 ZD801 10K 1/4W 5% FB Q812 RK7002 CN801 A10 CN802 A10 CN803 D10 CN804 E10 C801 A8 C802 A2 C803 B7 C804 B4 C805 B7 C806 C3 C807 C3 C808 C2 C809 D3 C810 D6 C811 E7 C812 D8 C813 E3 C814 E1 C815 E3 C816 D7 C817 E3 C818 E3 C819 B2 C820 D4 C821 B6 C822 E7 C823 B7 C824 E7 D801 B8 D802 B9 D803 B3 D806 D2 D807 D1 D808 E2 D809 E8 D810 E9 D811 C2 D812 C3 D813 B5 IC801 C4 L801 A9 L802 D9 PT801 A7 PT802 D7 Q801 A3 Q802 A2 Q803 B2 Q804 B6 Q805 C6 Q806 C7 Q807 D4 Q808 D1 Q809 E6 Q810 C6 Q811 C7 Q812 B5 R801 A9 R802 A3 R803 B5 R804 A9 R805 A5 R806 A8 R807 A9 R808 A2 R809 A2 R810 A6 R811 B8 R812 B9 R813 B2 R814 B4 R815 B3 R816 B2 R817 B3 R818 C3 R819 C3 R820 C2 R821 C2 R822 C3 R823 C3 R824 C3 R825 D4 R826 D4 R827 D1 R828 D2 R829 D3 R830 D9 R831 D3 R832 D9 R833 D3 R834 E8 R835 E9 R836 E1 R837 D7 R838 E3 R839 E8 R840 E3 R841 E9 R842 C4 R843 D4 R844 C6 R845 C6 R846 C7 R847 C7 R848 D6 R849 D7 R850 A6 R851 E7 R852 D5 R853 C5 S14 A8 S15 D8 FB + ne 4 t C805 470uF/25V C806 1uF/16V R819 10K 1/10W 1% R853 10K 1/10W 1% DTC w. wj ww 1 2 C812 3 4 G D C824 + 1 C811 470uF/25V 0.1uF/25V 2 4 3 L802 NC R832 0R05 1/10W 5% 8 R834 1K 1/10W 1% R851 D809 BAV99 R839 1K 1/10W 1% 1 2 1500PF/50V 1 2 CN804 CONN OLP4 D810 BAV99 C822 CHANGE UPDATE R835 1K 1/10W 1% OLP3 15ǂ 1/4W C817 0.0022uF 1 4 10pF/3KV 2 C818 0.0022uF D CONN R830 0R05 1/10W 5% 5 3 2 G S D D Q809 AM9945N-T1-PF 6 1 R837 15ǂ 1/4W 6 CN803 PT802 POWER X'FMR 7 C E R841 1K 1/10W 1% 1 E OLP4 R849 1K 1/10W 1% B 3 R840 10K 1/10W 1% C R846 22R 1/10W 5% 2 3 22R 1/10W 5% 3 B E R838 10K 1/10W 1% OLP3 1 R847 ! 7 C813 0.0022uF Q806 PMBS3906 C816 1500PF/50V S 2 D808 BAW56 0.1uF/16V OLP2 R845 22R 1/10W 5% R848 1K 1/10W 1% 8 C C815 0.0022uF R836 1M 1/10W 5% C820 NC 1 R833 10K 1/10W 1% E Q807 PMBS3904 R844 22R 1/10W 5% C810 0.1uF/25V R852 10K 1/10W 1% TL494IDR tp B 3 OLP1 1IN+ 2IN+ 1IN2INFEEDBACK REF DTC OUTPUT CTRL CT VCC RT C2 GND E2 C1 E1 16 15 14 13 12 11 10 9 ht D807 LL4148WP R831 10K 1/10W 1% 1 2 3 4 5 6 7 8 R826 180Kǂ 1% 1/8W NC R843 R825 51Kǂ 1% 1/8W 220pF R842 47K 1/10W 1% :// D806 BAW56 C814 10K 1/10W 1% C809 R824 R822 47K 1/10W 1% R823 10K 1/10W 2.2uF/16V C808 1M 1/10W 5% C807 0.1uF/16V R829 68Kǂ 1% 1/10W 47K 1/10W 1% Q808 RK7002 Q805 PMBS3906 IC801 R828 D Q811 PMBS3904 D812 LL4148WP R821 R827 1K 1/10W 1% 0.1uF/25V D D811 LL4148WP C Q810 PMBS3904 el. R820 560Kǂ 1/10W 5% 1 2 CN802 CONN C823 R818 NC CN801 CONN OLP2 D802 BAV99 5 D G 6 D 7 D S 1 Q804 AM9945N-T1-PF 3 R803 2.4Kǂ 1/10W 47K 1/10W 1% C819 R816 NC 68Kǂ 1% 1/10W G 8 C804 0.1uF/16V 2 R815 D R817 NC L801 NC R807 1K 1/10W 1% R811 1K 1/10W 1% S Q803 PMBS3904 B 3 OLP1 1500PF/50V 2 DIM D813 LL4148WP DTC D803 LL4148WP C821 1500PF/50V 2 4 R804 0R05 1/10W 5% 8 15ǂ 1/4W 2 R809 NC 1 15ǂ 1/4W 1 A R810 4.7K 1/10W 5% Q801 PDTA144WK C801 10pF/3KV 1 R808 10K 1/10W 1% ON/OFF 1 2 R812 A 10 R801 0R05 1/10W 5% 3 4 R802 100R 1/8W 5% 9 PT801 POWER X'FMR 7 1K 1/10W 1% 5 3 4 1 3 2 2 3 1 1 26 FB F F 1 2 3 4 5 6 7 8 9 10 HUDSON 8 27 6.3 Key Board 715G1755-2 1 2 3 4 5 6 7 8 A A CONN 1 2 3 4 5 6 R101 100R 1/10W 5% LED-G LED-O K-PWR KEY1 KEY2 KEY2 K-PWR R100 0R05 1/8W C102 0.01uF C103 0.01uF C104 0.01uF C105 0.01uF R104 2.4Kȍ 1/10W R107 910ȍ 1/10W R106 2.4Kȍ 1/10W R105 4K3 1/10W NC w. wj R108 C LED1 1 SW7 2 1 5 SW LED 2 1 5 SW 4 3 4 SW5 2 5 SW 3 3 KEY-VOLUME 4 1 1 2 5 SW 3 910ȍ 1/10W SW2 2 1 5 SW 3 R103 4 3 R102 4K3 1/10W SW1 2 1 5 SW 4 2 5 SW 3 4 4 KEY-SOURCE KEY-POWER B1 B1 B2 B2 B2 B3 C1 B5 B2 B6 B5 B5 C4 C3 C3 C3 C4 C6 C5 C5 C4 C4 C3 C3 C3 B C KEY-MENU/ENTER KEY-BRIGHTNESS KEY-AUTO/BACK :// KEY-SMART IMAGE 2 5 SW 4 SW3 0R05 1/10WSW4 5% 1 2 3 SW6 ww 3 LED-O 1 LED-G R109 SW8 add on Mar.-31-07 el. C101 0.01uF ne KEY1 B CN101 C101 C102 C103 C104 C105 LED1 R100 R101 R102 R103 R104 R105 R106 R107 R108 R109 SW1 SW2 SW3 SW4 SW5 SW6 SW7 SW8 t CN101 tp KEY-LIGHT FRAME D ht D E E 1 2 3 4 5 6 7 8 28 HUDSON 8 7. PCB Layout 7.1 Scalar Board ht tp :// ww w. wj el. ne t 715G2561-1 C101 B3 C215 B3 D105 C1 Q301 A3 R144 C2 R410 B1 C102 C1 C216 A1 D106 C2 Q302 A3 R201 B2 R411 A3 C103 C1 C219 B2 D107 C2 Q305 A1 R202 A2 R412 B1 C104 B1 C220 B2 D108 C2 Q402 B2 R205 A1 R413 A3 C105 C2 C222 B3 D109 C2 Q403 B2 R206 B3 R414 A3 C106 C2 C301 B2 D110 B3 Q404 B1 R207 B3 R415 B2 C107 C2 C302 A3 D111 C3 R101 C3 R209 B3 R416 B2 C110 B1 C303 A3 D112 C3 R102 C1 R210 A2 R417 B2 C111 B2 C304 A3 D113 C2 R103 C2 R211 A2 R418 B1 C112 B2 C305 B2 D201 B3 R104 C2 R213 B3 R421 B2 C113 C2 C306 B1 D301 A2 R105 C2 R214 B2 R423 B1 C114 B2 C307 B1 FB101 C2 R106 C1 R215 B3 R424 B1 C115 C3 C308 A3 FB102 B3 R107 C1 R218 B2 R430 A3 C116 C3 C309 A2 FB103 C3 R108 C2 R219 B3 R431 B1 C117 C3 C310 A2 FB104 C3 R109 B2 R220 A1 R432 A1 C118 C2 C311 A2 FB105 C3 R110 B1 R221 B2 R433 A1 C121 B3 C312 A2 FB106 C2 R111 B1 R223 B3 R434 B1 C122 B3 C315 A1 FB107 C1 R113 C2 R224 A3 R435 B1 C123 B2 C316 A1 FB201 B3 R115 C2 R225 B2 R436 B1 C124 B3 C317 A1 FB202 B3 R116 C2 R228 B3 R437 A1 C125 B3 C401 B1 FB203 B3 R117 B2 R229 B3 R438 A1 C126 B2 C402 B1 FB204 B2 R118 B2 R230 B3 R439 B1 C127 B3 C403 B1 FB205 B2 R120 B2 R231 B3 U101 B2 C128 C3 C404 B1 FB206 B2 R122 C2 R232 B3 U102 B3 C129 B2 C405 A3 FB207 B3 R123 B3 R233 B3 U201 B3 C130 C2 C406 B2 FB302 A3 R124 B3 R234 B2 U203 B2 C131 C1 C407 B1 FB303 A1 R125 B3 R301 A1 U204 B3 C132 C1 CN101 C3 FB401 B1 R126 C3 R302 A3 U301 B1 C201 B2 CN102 C2 FB403 A1 R127 C3 R303 A3 U302 A2 C202 A1 CN202 B3 FDT1 B3 R128 C3 R304 A3 U303 B1 C203 B2 CN301 A2 FDT10 <1 R129 C3 R305 A3 U304 A2 C204 B3 CN401 B1 FDT11 C8 R131 C2 R307 A3 X201 B2 C205 B3 CN402 A2 FDT12 <8 R132 C3 R308 A3 ZD101 C3 C206 B2 CN403 B1 FDT13 C1 R133 C3 R309 A1 ZD102 B1 C207 B2 CN404 B1 FDT2 A2 R134 C3 R311 A1 ZD103 B2 C208 B2 CN405 B1 FDT3 A3 R135 C2 R312 A1 ZD104 B2 C209 B3 CN406 A1 FDT4 C1 R136 C3 R314 A1 ZD105 C3 C210 B2 CN407 B1 FDT5 C1 C211 A2 D101 C1 FDT6 <1 C212 B2 D102 C2 FDT7 C8 R140 C2 C213 B3 D103 C1 FDT8 <8 R141 C3 C214 B3 D104 C1 Q201 B3 R142 C3 R407 B1 R138 R139 C2 C3 R316 R402 A1 ZD106 C3 B1 ZD107 C3 R403 B1 ZD201 B2 R404 A1 ww :// tp ht ne el. w. wj t HUDSON 8 29 HUDSON 8 30 7.2 Power Board ht tp :// ww w. wj el. ne t 715G2594-1 BD901 C801 C805 C811 C812 C900 C901 C902 C903 C907 C909 C910 C911 C920 C921 C922 C923 C924 C925 C926 C927 C932 CN801 CN802 CN803 CN804 CN901 CN902 D804 D805 D814 D815 D900 D901 D920 D921 D922 F901 F903 FB901 FB902 FB903 HS10 HS13 HS14 HS16 HS17 HS20 HS28 HS29 HS31 IC902 IC903 J801 D4 A1 B2 C2 D1 B4 D3 D3 D4 C4 D3 C4 C3 B3 B4 B3 B3 B3 A3 B3 A4 B4 A1 A1 D1 D1 D2 A4 B1 B1 C1 C2 C3 C3 A3 B4 A4 D2 A4 C4 B4 C4 A3 A3 A2 A2 B4 A8 A7 B1 B4 B3 B3 B2 J802 C2 J803 B1 J804 B1 J805 B2 J806 B1 J808 C2 J809 C2 J810 C2 J811 C2 J812 B2 J817 C2 J819 B2 J901 D3 J903 C3 J904 A3 J905 A3 J906 A4 J909 A2 J910 A2 L801 B1 L802 C1 L901 D3 L902 D4 L921 A3 L922 A4 NR901 C2 PT801 B1 PT802 C2 Q900 C4 R907 A3 R909 C3 R916 C4 SG11 C4 SG12 D2 SG19 D2 SG22 D4 SG25 D4 SG27 D3 SG28 C3 SG31 D3 SG33 A1 SG34 A1 SG35 A1 SG36 A1 SG39 A1 SG40 D1 SG42 D1 SG44 D1 SG45 D1 SG46 C4 SG47 C4 SG49 C4 T901 C3 VAR901 D3 ht tp :// ww w. wj el. ne t HUDSON 8 C802 A2 C803 B1 C804 B2 C806 B2 C807 C2 C808 B2 C809 C2 C810 A2 C813 B1 C814 B2 C815 B1 C816 C1 C817 C1 C818 C1 C819 A2 C820 B2 C821 B2 C822 C2 C823 B2 C824 C2 C904 A3 C912 C3 C913 C3 C914 C3 C915 C3 C916 C3 C928 B3 C929 B2 C930 A4 C931 A4 D801 B1 D802 B1 D803 A2 D806 B1 D807 B2 D808 C1 D809 C1 D810 C1 D811 B2 D812 B2 D813 B2 D910 C3 D911 C3 D915 A2 D916 A2 F902 A3 HS11 D4 HS15 A1 HS21 A7 HS22 A1 IC801 B2 IC901 C3 J807 C2 J813 C1 J814 C1 J815 C1 J816 B2 J818 A2 J907 J908 Q801 Q802 Q803 Q804 Q805 Q806 Q807 Q808 Q809 Q810 Q811 Q812 Q902 Q910 R801 R802 R803 R804 R805 R806 R807 R808 R809 R810 R811 R812 R813 R814 R815 R816 R817 R818 R819 R820 R821 R822 R823 R824 R825 R826 R827 R828 R829 R830 R831 R832 R833 R834 R835 R836 R837 R838 R839 R840 R841 R842 C3 C3 A2 A2 A2 B1 B1 B1 B2 B2 C1 C2 B1 A2 A3 C3 B1 B2 A2 B1 B2 B1 B1 A2 A2 B1 B1 B1 A2 C2 B2 B2 B2 B2 B2 B2 B2 C2 B2 C2 B2 B2 B2 B2 B2 C1 B1 C1 B1 C1 C1 B2 C2 C1 C1 C1 C1 C2 R843 R844 R845 R846 R847 R848 R849 R850 R851 R852 R853 R900 R901 R902 R903 R905 R908 R910 R911 R912 R913 R915 R922 R923 R924 R925 R926 R927 R928 R929 R930 R931 R951 R952 R953 R954 R955 R956 SG10 SG15 SG17 SG18 SG20 SG21 SG23 SG24 SG26 SG29 SG30 SG32 SG37 SG38 ZD801 ZD901 ZD902 ZD920 ZD921 ZD922 B2 B2 B1 B1 C2 B2 B2 B2 C2 B2 B2 D3 D3 C2 A3 C3 A3 C3 C3 C3 C3 C3 A3 A2 A2 B3 A3 B2 B3 B2 B2 A3 B3 B3 B3 B4 B4 B4 C3 D3 D3 D4 D4 D3 D4 D3 D4 C3 D3 D3 D2 D2 A2 C3 C4 A3 A2 A2 31 HUDSON 8 32 7.3 Key Board 715G1755-2 ht tp :// ww w. wj el. ne t CN101 A1 LED1 A4 SW1 A5 SW2 A5 SW3 A5 SW4 A4 SW5 A4 SW6 A3 SW7 A3 SW8 A3 GND A2 C101 C102 C103 C104 C105 R100 R101 R102 R103 R104 R105 R106 R107 R108 R109 A1 A1 A4 A4 A5 A4 A4 A5 A5 A4 A4 A3 A3 A2 A4 HUDSON 8 33 8. Wiring Diagram Lamp Wire Harness CN402 FFC Panel ne t Lamp Wire Harness el. Power Wire Harness CN902 CN802 CN804 ww Power Board w. wj CN801 Panel Interface CN301 CN402 Main Board CN407 CN901 :// CN803 DVI Key Board Wire ht tp AC-IN CN102 CN101 Key Board CN101 D-SUB 34 HUDSON 8 9. Mechanical Instructions 1. Back View as Fig1 Place the monitor face down on a smooth surface as Fig 1. Be careful to avoid scratch and injury during the w. wj el. ne t uninstallation. Fig1 ht tp :// ww 2. Remove the cable management as Fig2. Fig2 HUDSON 8 ht tp :// ww ne w. wj el. Fig3 t 3. Remove the base as Fig3~Fig4. Fig4 35 36 HUDSON 8 4. Remove the stand as Fig5 and Fig6. w. wj el. ne t Remove the four screws to remove the stand. ht tp :// ww Fig5 Fig6 HUDSON 8 5. Remove the hinge as Fig7. 6. Remove rear cover as Fig8~Fig11 w. wj Fig7 el. ne t Remove the three screws to remove the hinge. a. Remove 2 screws to remove rear cover as Fig8. ht tp :// ww b. Use plastic putty knife to release 3 snaps on the bottom as Fig. 9 - Fig.11 Fig8 37 HUDSON 8 3 snaps on the bottom t Fig9 w. wj el. ne Plastic putty knife tp :// ww Fig.10 ht 38 Fig11 HUDSON 8 39 c. Insert plastic putty knife into the gap between front bezel and back cover to release 4 snaps on the left, 4 snaps on the right and 4 snaps on the top as Fig12 - Fig15 Insert plastic putty knife into the gap between front bezel and back cover el. w. wj Fig12 ne t Back cover Front Bezel ww 4 snaps on the left tp :// Fig13 ht 4 snaps on the right Fig14 40 HUDSON 8 4 snaps on the top Fig15 7. Remove shielding as Fig16. ht tp :// ww w. wj el. ne t Remove 8 screws as Fig16. Fig16 HUDSON 8 8. Remove main board and power board as Fig17. 9. Remove the bezel as Fig18- Fig20 w. wj Fig17 a. Remove 2 screws to remove the key board as Fig18 b. Remove 2 screws at the left of bezel as Fig19 tp :// ww Remove 2 screws at the right of bezel as Fig20 ht c. el. ne t Remove 7 screws to remove main board and power board as Fig17. Fig18 41 42 HUDSON 8 ww w. wj el. ne t Fig19 Fig20 :// 10. Remove the main frame as Fig21- Fig22 a. Remove 2 screws at the right of main frame Fig21. ht tp b. Remove 2 screws at the left and 1screw at the bottom of the main frame Fig22. Fig21 HUDSON 8 Fig22 ht tp :// ww w. wj el. ne t 11. The end as Fig23. Fig23 43 44 HUDSON 8 10. Trouble Shooting This page deals with problems that can be corrected by a user. If the problem still persists after you ht tp :// ww w. wj el. ne t have tried these solutions, contact Philips customer service representative. ww :// tp ht ne el. w. wj t HUDSON 8 45 46 HUDSON 8 11. Repair Flow Chart 11.1 Main Board (1). No Power No power Press power key and look if the picture is normal NG w. wj Measure U301 PIN2=3.3V Measure U304 PIN2=1.8V NG OK Reinsert or check the Adapter/Inverter section el. NG OK ne t Please reinsert and make sure the AC of 100-240 is normal Replace D301, U301 or U304 :// OK ww X201 oscillate waveforms are normal ht tp Replace U203 NG Replace X201 HUDSON 8 (2). No Picture No picture Measure U301 PIN2=3.3V Measure U304 PIN2=1.8V NG Replace D301, U301 or U304 OK NG OK w. wj NG ww tp :// Replace U203 ht el. Replace X201 Check if the sync signal from computer is output and video cable is connected normally OK ne t X201 oscillate waveforms are normal Input the sync signal of computer, or change the cable 47 48 HUDSON 8 (3). White screen White screen NG Measure Q301 base is high level? OK X201 oscillate waveform is normal NG OK Replace X201 Check Q301, Q302 is broken or CN402 solder? ne t Check reset circuit of U203 is normal NG NG OK ht tp :// ww w. wj OK Replace Panel Check Correspondent component. el. Check Correspondent component. Replace U203 HUDSON 8 11.2. Power/Inverter Board (1) No power Check CN902 pin4, 5 = 12V NG Check AC line volt 110V or 220V NG OK Check AC input ne t Check the voltage of C907 (+) NG OK el. Check bridge rectified circuit and F901 circuit NG OK w. wj Check start voltage for the pin8 of IC901 Check R905 and Change IC901 NG 1) Check IC901 2) Check R910, D901 circuit tp :// OK ww Check the auxiliary voltage is bigger than 10V and smaller than 20V ht Check IC901 pin5 PWM wave OK NG Check IC901 Check D910, Q900, D900, IC902, F902, ZD921, ZD922, D915, D916 49 50 HUDSON 8 (2) W / LED, No Backlight Check CN902 pin4, 5 = 12V OK NG Check adapter or MB Check ON/OFF signal OK NG Check Interface board ne OK t Check IC801 PIN12=12V NG w. wj el. Change Q801 Check IC801 PIN10, 9 have the output of square wave at short time NG OK ww Change IC801 Check Q804, Q809 PIN5, 6, 7, 8 have the output of square wave at short time. NG Check Q804, Q805, Q806, Q809, Q810, Q811 tp :// OK ht Check the output of PT801, PT802 OK NG Check connecter & lamp Change PT801, PT802 HUDSON 8 11.3 Key Board OSD is unstable or not working N Connect Key Pad Board Is Key Pad Board connecting normally? Y N Replace Button Switch Y ht tp :// ww Check Main Board w. wj Y Replace Key Pad Board el. N Is Key Pad Board normally? ne t Is Button Switch normally? 51 HUDSON 8 52 (1). Install the program software First decompressing files ht tp :// ww a. w. wj el. ne t 12. ISP Instruction , as follow: HUDSON 8 , start to install as follows: ht tp :// ww w. wj el. ne t b. Double – click 53 ww :// tp ht ne el. w. wj t 54 HUDSON 8 ww :// tp ht ne el. w. wj t HUDSON 8 55 56 HUDSON 8 c. There will be a shortcut key appears on the desktop. (2). Connect the ISP board as follow: Connect to the Philips 170S8 ,running the program as follows: ht tp :// ww w. wj el. a. Double-click ne t Connect to the PC LPT HUDSON 8 b. Click 57 icon, search the program” PHILIPS_170S_CPT_CLAA170EA07P_V.29.hex”, and click ht tp :// ww w. wj el. ne t open: 58 icon, the writer is in processing… ht tp :// ww w. wj d. Until appears the follow Fig, writer completed. el. ne t c. Click HUDSON 8 HUDSON 8 59 13. DDC Instruction General DDC Data Re-programming In case the main EEPROM with Software DDC which store all factory settings were replaced because a defect, repaired monitor’ the serial numbers have to be re-programmed. It is advised to re- soldered the main EEPROM with Software DDC from the old board onto the new board if circuit board have been replaced, in this case the DDC data does not need to be re-programmed. Additional information about DDC (Display Data Channel) may be obtained from Video Electronics Standards Association (VESA). Extended Display Identification Data (EDID) information may be also obtained from VESA. 1. An i486 (or above) personal computer or compatible. 2. Microsoft operation system Windows 95/98/2000/XP. ne t 3. “ PORT95NT.exe, WinDDC_ setup” program. 4. Software OSD SN Alignment kits The kit contents: el. a. OSD SN BOARD x1 b. Printer cablex1 w. wj c. VGA cable x1 d. Digital cable x1 e. 12V DC power source ww 1. Install the “PORT95NT.EXE”, and restart the computer. ht tp :// You must install the at the first. The processing as follows: ww :// tp ht ne el. w. wj t 60 HUDSON 8 ww :// tp ht ne el. w. wj t HUDSON 8 61 ww :// tp ht ne el. w. wj t 62 HUDSON 8 to complete the installation. ht tp :// ww Click w. wj el. ne t HUDSON 8 Note: After installation, you must restart the PC to take the setup to effect. 63 64 HUDSON 8 2. Install the “WinDDC_ setup” Second, you must install the ht tp :// ww w. wj el. ne t . The processing as follows: ww :// tp ht ne el. w. wj t HUDSON 8 65 66 HUDSON 8 to complete the installation. :// ht tp When you write analog EDID, Connect this port to the Philips 170S8’s VGA port ww 3. Connect the DDC board as follow: 12V Input w. wj el. ne t Click Connect to the PC LPT When you write digital EDID, Connect this port to the Philips 170S8’s DVI port HUDSON 8 ,appear as follow Figs: ht tp :// ww a. Double-click w. wj el. ne t 4. Take analog DDC write for example, as follow 67 68 b. Click HUDSON 8 . tp :// ww w. wj el. ne t c. Key 14 numbers in the Serial Number blank, then click “OK”. Now analog DDC Write completes, as follow. ht Note: The way of digital DDC write is the same as analog DDC write. HUDSON 8 170S8 EDID Analog 128 bytes EDID Data (Hex): 00 01 02 03 04 05 06 07 08 09 10 11 12 13 14 15 0: 16: 32: 48: 64: 80: 96: 112: 00 FF FF FF FF FF FF 00 41 0C 59 08 01 01 01 01 0C 0D 01 03 0E 26 1E 78 EE A1 50 A3 57 4C 9D 25 11 50 54 BF EF 80 71 4F 81 40 81 80 01 01 01 01 01 01 01 01 01 01 30 2A 00 98 51 00 2A 40 30 70 13 00 78 2D 11 00 00 1E 00 00 00 FF 00 32 31 33 32 33 31 32 33 32 31 33 32 33 00 00 00 FC 00 50 68 69 6C 69 70 73 20 31 39 30 53 0A 00 00 00 FD 00 38 4C 1E 53 0E 00 0A 20 20 20 20 20 20 00 A2 t Decoded EDID data ne <---Header---> Header: 00 FF FF FF FF FF FF 00 ww <---EDID Structure Version/Revision---> EDID Version#: 01 EDID Revision#: 03 <-x-EDID Structure Version/Revision-x-> w. wj <---Vendor/Product Identification---> ID Manufacturer Name: PHL ID Product Code: 0859 ID Serial Number: 01010101 Week of Manufacture: 12 Year of Manufacture: 2003 <-x-Vendor/Product Identification-x-> el. <-x-Header-x-> ht tp :// <---Basic Display Parameters/Features---> Video i/p definition: Analog Signal Level Standard: 0.700V/0.300V(0.700Vpp) Setup: Blank-to-Black not expected Separate Sync Support: Yes Composite Sync Support: Yes Sync. on green video supported:Yes Serration of the Vsync.Pulse is not required. Max. H. Image Size : 38cm. Max. V. Image Size : 30cm. Display Gamma: 2.2 DPMS Features, Stand-by: Yes. DPMS Features, Suspend: Yes. DPMS Features, Active off: Yes. Display Type: R/G/B color display. Standard Default Color Space: Yes. Preferred Timing Mode: Yes. <---Basic Display Parameters/Features---> <---Color Characteristics---> Red x: 0.6386718750 Red y: 0.3417968750 Green x: 0.2968750000 Green y: 0.6142578125 Blue x: 0.1455078125 Blue y: 0.0673828125 69 70 HUDSON 8 White x: 0.3125000000 White y: 0.3291015625 <-x-Color Characteristics-x-> ne el. w. wj <---Standard Timing Identification---> -1152x864 @75 -1280x960 @60 -1280x1024 @60 <-x-Standard Timing Identification-x-> t <---Established Timings---> Established Timings 1: BF -720x400 @70Hz VGA,IBM -640x480 @60Hz VGA,IBM -640x480 @67Hz Apple,Mac II -640x480 @72Hz VESA -640x480 @75Hz VESA -800x600 @56Hz VESA -800x600 @60Hz VESA Established Timings 2: EF -800x600 @72Hz VESA -800x600 @75Hz VESA -832x624 @75Hz Apple,Mac II -1024x768 @60Hz VESA -1024x768 @70Hz VESA -1024x768 @75Hz VESA -1280x1024 @75Hz VESA Established Timings 3: 80 -1152x870 @75Hz Apple,Mac II <-x-Established Timings-x-> <---Detailed Timing Descriptions---> Detailed Timing: 1280x1024 @ 60Hz. <-x-Detailed Timing Descriptions-x-> tp :// ww <---Detailed Timing Descriptions---> Detailed Timing: FF (Monitor SN) '213231232132' Detailed Timing: FC (Monitor Name) 'Philips 190S' Detailed Timing: FD (Monitor limits) Min. V. rate: 56Hz Max. V. rate: 76Hz Min. H. rate: 30KHz Max. H. rate: 83KHz Max. Pixel Clock: 140MHz <-x-Detailed Timing Descriptions-x-> 00 A2 ht Extension Flag: Checksum: HUDSON 8 170S8 EDID Digital 128 bytes EDID Data (Hex): 00 01 02 03 04 05 06 07 08 09 10 11 12 13 14 15 0: 16: 32: 48: 64: 80: 96: 112: 00 FF FF FF FF FF FF 00 41 0C 56 08 FD E0 01 00 17 0B 01 03 80 22 1B 78 EE AD B0 A2 57 4A 9C 25 11 50 54 BF EF 80 71 4F 81 40 81 80 01 01 01 01 01 01 01 01 01 01 30 2A 00 98 51 00 2A 40 30 70 13 00 52 0E 11 00 00 1E 00 00 00 FF 00 32 33 31 33 31 32 33 31 32 33 31 33 33 00 00 00 FC 00 50 68 69 6C 69 70 73 20 31 37 30 53 0A 00 00 00 FD 00 38 4C 1E 53 0E 00 0A 20 20 20 20 20 20 00 36 Decoded EDID data ne t <---Header---> Header: 00 FF FF FF FF FF FF 00 ww <---EDID Structure Version/Revision---> EDID Version#: 01 EDID Revision#: 03 <-x-EDID Structure Version/Revision-x-> w. wj <---Vendor/Product Identification---> ID Manufacturer Name: PHL ID Product Code: 0856 ID Serial Number: 0001e0fd Week of Manufacture: 23 Year of Manufacture: 2001 <-x-Vendor/Product Identification-x-> el. <-x-Header-x-> ht tp :// <---Basic Display Parameters/Features---> Video i/p definition: Digital Max. H. Image Size : 34cm. Max. V. Image Size : 27cm. Display Gamma: 2.2 DPMS Features, Stand-by: Yes. DPMS Features, Suspend: Yes. DPMS Features, Active off: Yes. Display Type: R/G/B color display. Standard Default Color Space: Yes. Preferred Timing Mode: Yes. <---Basic Display Parameters/Features---> <---Color Characteristics---> Red x: 0.6347656250 Red y: 0.3417968750 Green x: 0.2929687500 Green y: 0.6103515625 Blue x: 0.1464843750 Blue y: 0.0693359375 White x: 0.3125000000 White y: 0.3291015625 <-x-Color Characteristics-x-> <---Established Timings---> Established Timings 1: BF -720x400 @70Hz VGA,IBM 71 72 HUDSON 8 -640x480 @60Hz VGA,IBM -640x480 @67Hz Apple,Mac II -640x480 @72Hz VESA -640x480 @75Hz VESA -800x600 @56Hz VESA -800x600 @60Hz VESA Established Timings 2: EF -800x600 @72Hz VESA -800x600 @75Hz VESA -832x624 @75Hz Apple,Mac II -1024x768 @60Hz VESA -1024x768 @70Hz VESA -1024x768 @75Hz VESA -1280x1024 @75Hz VESA Established Timings 3: 80 -1152x870 @75Hz Apple,Mac II <-x-Established Timings-x-> :// 00 36 ht tp Extension Flag: Checksum: ww w. wj <---Detailed Timing Descriptions---> Detailed Timing: FF (Monitor SN) '231312312313' Detailed Timing: FC (Monitor Name) 'Philips 170S' Detailed Timing: FD (Monitor limits) Min. V. rate: 56Hz Max. V. rate: 76Hz Min. H. rate: 30KHz Max. H. rate: 83KHz Max. Pixel Clock: 140MHz <-x-Detailed Timing Descriptions-x-> el. <---Detailed Timing Descriptions---> Detailed Timing: 1280x1024 @ 60Hz. <-x-Detailed Timing Descriptions-x-> ne t <---Standard Timing Identification---> -1152x864 @75 -1280x960 @60 -1280x1024 @60 <-x-Standard Timing Identification-x-> HUDSON 8 73 14. White Balance, Luminance Adjustment 1. Apparatuses and program: analyzer CA-210, PC, tool, FGA adjustment program (FGAWB0.15SN), Pattern generator. 2. Equipment installation: a. Connect analyzer CA-210 to PC by USB connector, install drive program CA-SDK Ver4.00 for CA-210 and restart PC after finish installing. b. Install Port95NT drive program, set PC printer connector mode as ECP mode and restart PC after finish installing. c. Connect tools as follow: w. wj el. ne t (Note: It is not necessary to connect Port2 ) Preparation before adjustment: ww 3. Adjustment (1) Monitor should be warmed up for more than half an hour. Adjustment process: :// (2) Make sure that the tools are connected right and drive programs have been installed OK. (1) Press the power of CA-210, shut off the lens, press 0-Cal and open the lens after analyzer reset. tp (2) Start white balance adjustment program, select the right parameter according with the program and click OK. (3) Make sure that the lens of CA-210 aims at the center of the screen, then click Start and start adjusting. ht (4) After finish adjusting, the adjustment program displays pass, and the Start Button is changed to Next, which means you can adjust another monitor. HUDSON 8 4. Color Temp confirmation ww w. wj el. ne t 74 Connect the signal to the monitor, the monitor display white-picture, use CA-210 to measure the Color Temp of the ht tp :// screen center and select the OSD to make sure whether the Color Temps accord with the SPEC. ht tp :// w ww .w j el. ne t 15. Monitor Exploded View 76 HUDSON 8 16. Recommended & Spare Parts List Recommended Parts List 170S8FS/00 Item Location 1 FQ010 P34G1846 VOE1T BEZEL L17-7phb1 1 FQ010 P34G1846 VOE1B BEZEL L17-7phb1 2 FQ009 P33G4989 VPB1C CONTROL BUTTON 3 FQ005 750GLG70E3L12M000F PANEL LM170E03-TLL1 PHILIPS 3 FQ006 750GLG70E3L42M000F PANEL LM170E03-TLL4 PHILIPS LPL 3 FQ005 750GLG170E3G23M0PH PANEL LM170E03-TLG2 GZ LPL 3 FQ006 750GLG170E3G43M0PH PANEL LM170E03-TLG4 GZ LPL 3 FQ006 750GLC70A7P43M000F PANEL CLAA170EA07P 040 FZ 996510006441 3 FQ022 750GLB70A7P41M000F PANEL CLAA170EA07P 040 FQ CTOC 996510010276 3 FQ022 750GLC70A7P43N 3 FQ022 750GLB70A7P41N 3 FQ023 750GLB70A7P51M000F 3 FQ023 750GLC70A7P53N CPT-CLAA170EA07P-050 Second Source 3 FQ023 750GLB70A7P51N CTOC-CLAA170EA07P-050 Second Source 4 FQ011 P34G1850 VB 2T REAR COVER(17") 4 FQ011 P34G1850 VB 2B REAR COVER(17") 5 FQ008 A33G0259 VB 1L0100 COVER HINGE 996510006443 6 FQ004 705GQ734307 STAND&BASE ASS'Y 996510006439 7 FQ029 A34G0484 VB 1B0133 BASE_170A8/170S8 8 FQ030 A34G0443 VB 1B0100 STAND HEAD 9 FQ031 A34G0461 VB 1B0100 STAND BOTTOM Description Remark ne t 996510010270 996510010269 996510006277 .w j ww 996510006278 Second Source Second Source Second Source CPT-CLAA170EA07P-040 Second Source CTOC-CLAA170EA07P-040 Second Source PANEL CLAA170EA07P 050 FQ CTOC :// w tp ht Philips 12NC el. Part No. 996510010261 996510008030 Second Source FQ032 A37G0045 1 PHILIPS 170S8 HINGE ASSY 11 FQ017 CBPC7CNAPHQ4 SCALAR BOARD ASSY (CPT) 996510010263 11 FQ018 CBPC7GNAPHQ6 SCALAR BOARD ASSY (LG) 996510010260 11 FQ017 CBPC7GNAPHQ1 SCALER BOARD ASSY 12 FQ020 PWPC942GR1P POWER BOARD ASSY (CPT) 12 FQ021 PWPC742GR3 POWER BOARD ASSY (LG) E089B 089G 728LAA 21 SIGNAL CABLE FQ001 089G179E30H 4 FFC CABLE FQ002 089G404A18N YH POWER CABLE E08901 089G404A18N IS POWER CORD 32E1818018 FQ003 095G8014 7D514 WIRE HARNESS E09502 095G8014 7X514 WIRE HARNESS E089B 089G 728HAA 21 SIGNAL CABLE FQ012 Q40G 17N81322A FQ012 Q40G 17N81322B FQ013 Q44G7057 1 FQ014 Q44G7057 2 FQ028 705TQ7CS067 FQ027 P45G 88609 36 FQ015 Q44G7057813 1A CARTON FQ015 Q44G7057813 1C CARTON FQ016 Q70G170081312A 170S8 DVI CD FQ016 Q70G170081312B CD MANUAL FQ019 KEPC7QS5 KEY BOARD ASSY 996510010272 U301 056G 563 52 IC AP1117D33LA TO252-3L ATC 996510005697 ne t 10 ht HUDSON 8 996510010274 996510005683 ww .w j el. 996500042351 996500037502 996510005679 RATING LABEL RATING LABEL 996510010257 EPS 996510010258 :// w EPS CUSHION ASSY tp R EPE BAG FOR MONITOR 77 HUDSON 8 056G 56327A IC AP1117E18LA SOT223-3L 996510005698 U204 056G1133 56 M24C16-WMN6TP 996500037783 U203 705GQ756024 MCU ASS'Y 996510010271 IC902 056G 139 3A IC PC123Y22FZ0F 996500036055 IC801 056G 379 22 IC TL494IDR SOIC-16 996510006256 IC901 056G 379 61 LD7575PS SOP-8 IC903 056G 158 12 KIA431A-AT/P TO-92 ne t U304 996500039747 .w j el. 996500036054 ww :// w tp ht 78 HUDSON 8 Spare Parts List Service Kit 170S8FS/00 Philips 12NC 9965 000 43197 9965 000 43252 NOVATEK ISP Kit 715LT035A 9965 000 43198 MSTAR ISP Kit REALTEK ISP Kit 715GT039 A 715GT039 A 996510010027 996510010027 Remark for all model for all model for all hudson 7 ne t Part No. 715L2005C2 715GT033 C for 170A8, 190B8, 150S8, 170S8,190S8, 170V8,190V8 200CW8 170CW8 el. Description DDC Kit OSD SN Kit .w j Panel Part No. Description FQ005 750GLG70E3L12M000F PANEL LM170E03-TLL1 PHILIPS FQ005 750GLG170E3G23M0PH PANEL LM170E03-TLG2 GZ LPL FQ006 750GLG70E3L42M000F PANEL LM170E03-TLL4 PHILIPS LPL FQ006 750GLG170E3G43M0PH PANEL LM170E03-TLG4 GZ LPL FQ006 750GLC70A7P43M000F PANEL CLAA170EA07P 040 FZ 996510006441 FQ022 750GLB70A7P41M000F PANEL CLAA170EA07P 040 FQ CTOC 996510010276 FQ022 750GLC70A7P43N CPT-CLAA170EA07P-040 Second Source FQ022 750GLB70A7P41N CTOC-CLAA170EA07P-040 Second Source FQ023 750GLB70A7P51M000F PANEL CLAA170EA07P 050 FQ CTOC FQ023 750GLC70A7P53N CPT-CLAA170EA07P-050 Second Source FQ023 750GLB70A7P51N CTOC-CLAA170EA07P-050 Second Source ht tp :// w ww Location Philips 12NC Remark 996510006277 Second Source 996510006278 Second Source 996510010261 Second Source Second Source 79 80 HUDSON 8 Board ASS’Y Location Part No. Description CBPC7CNAPHQ4 SCALAR BOARD ASSY (CPT) 996510010263 FQ018 CBPC7GNAPHQ6 SCALAR BOARD ASSY (LG) 996510010260 FQ017 CBPC7GNAPHQ1 SCALER BOARD ASSY FQ020 PWPC942GR1P POWER BOARD ASSY (CPT) FQ021 PWPC742GR3 POWER BOARD ASSY (LG) FQ019 KEPC7QS5 KEY BOARD ASSY 996510010274 el. Description .w j Part No. ne t FQ017 Accessory and Mechanical Location Philips 12NC 996510010272 Philips 12NC Remark 089G 728LAA 21 SIGNAL CABLE 996510005683 FQ001 089G179E30H 4 FFC CABLE 996500042351 FQ002 089G404A18N YH POWER CABLE E08901 089G404A18N IS POWER CORD 32E1818018 FQ003 095G8014 7D514 WIRE HARNESS E09502 095G8014 7X514 WIRE HARNESS FQ004 705GQ734307 STAND&BASE ASS'Y 996510006439 FQ005 750GLG70E3L12M000F PANEL LM170E03-TLL1 PHILIPS 996510006277 FQ005 750GLG170E3G23M0PH PANEL LM170E03-TLG2 GZ LPL FQ006 750GLG70E3L42M000F PANEL LM170E03-TLL4 PHILIPS LPL FQ006 750GLG170E3G43M0PH PANEL LM170E03-TLG4 GZ LPL FQ006 750GLC70A7P43M000F PANEL CLAA170EA07P 040 FZ 996510006441 FQ022 750GLB70A7P41M000F PANEL CLAA170EA07P 040 FQ CTOC 996510010276 FQ022 750GLC70A7P43N CPT-CLAA170EA07P-040 Second Source FQ022 750GLB70A7P41N CTOC-CLAA170EA07P-040 Second Source FQ023 750GLB70A7P51M000F PANEL CLAA170EA07P 050 FQ CTOC ht tp :// w ww E089B 996500037502 Second Source 996510006278 Second Source 996510010261 Second Source Second Source HUDSON 8 750GLC70A7P53N CPT-CLAA170EA07P-050 Second Source FQ023 750GLB70A7P51N CTOC-CLAA170EA07P-050 Second Source E089B 089G 728HAA 21 SIGNAL CABLE 996510005679 FQ008 A33G0259 VB 1L0100 COVER HINGE 996510006443 FQ009 P33G4989 VPB1C CONTROL BUTTON 996510010269 FQ010 P34G1846 VOE1T BEZEL L17-7phb1 996510010270 FQ010 P34G1846 VOE1B BEZEL L17-7phb1 FQ011 P34G1850 VB 2T REAR COVER(17") FQ011 P34G1850 VB 2B REAR COVER(17") FQ012 Q40G 17N81322A RATING LABEL FQ012 Q40G 17N81322B RATING LABEL FQ013 Q44G7057 1 EPS FQ014 Q44G7057 2 EPS FQ028 705TQ7CS067 CUSHION ASSY FQ015 Q44G7057813 1A CARTON FQ015 Q44G7057813 1C CARTON FQ027 P45G 88609 36 FQ016 Q70G170081312A 170S8 DVI CD FQ016 Q70G170081312B CD MANUAL tp ht .w j el. 996510008030 ww EPE BAG FOR MONITOR :// w R ne t FQ023 996510010257 996510010258 81 82 HUDSON 8 Board Parts Location Part No. Description Philips 12NC CBPC7GNAPHQ6 SCALER BOARD ASSY(LPL) FQ017 CBPC7GNAPHQ1 SCALER BOARD ASSY CN402 033G801930F H FPC CONN. 1.0MM 30P C101 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C102 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C103 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C104 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C105 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C106 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C107 065G060310517T MLCC 0603 CAP 1UF Z 16V Y5V 996510005722 C110 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C111 065G0402104 12 CHIP 0.1UF 50V X7R C112 065G0402104 12 CHIP 0.1UF 50V X7R C113 065G0402104 12 CHIP 0.1UF 50V X7R C115 065G060310517T MLCC 0603 CAP 1UF Z 16V Y5V 996510005722 C116 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C117 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C118 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C121 065G0402473 12 CHIP 0.047UF 16V X7R 996510005721 C122 065G0402473 12 CHIP 0.047UF 16V X7R 996510005721 C123 065G0402102 32 1000PF +-10% 50V X7R 996510005715 C124 065G0402473 12 CHIP 0.047UF 16V X7R 996510005721 C125 065G0402473 12 CHIP 0.047UF 16V X7R 996510005721 C126 065G0402473 12 CHIP 0.047UF 16V X7R 996510005721 C127 065G0402331 32 CHIP 330PF 50V X7R 996510005719 C128 065G0402330 31 33PF +-50% 50V NPO 996510005718 C129 065G0402473 12 CHIP 0.047UF 16V X7R 996510005721 C130 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C131 065G0402102 32 1000PF +-10% 50V X7R 996510005715 C132 065G040247132K CAP CHIP 0402 470PF 50V X7R 996510005720 C201 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C203 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C204 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C205 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C206 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C207 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C208 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C209 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C210 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C213 065G060310517T MLCC 0603 CAP 1UF Z 16V Y5V 996510005722 C214 067G305V101 3 105C 10UF +-20% 16V 996510005694 T 996510005716 ne el. w. wj ww :// tp ht 996510010260 t FQ017 996510005716 996510005716 HUDSON 8 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C216 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C219 065G0402220 31 CHIP 22PF 50V NPO 996510005717 C220 065G0402220 31 CHIP 22PF 50V NPO 996510005717 C301 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C302 067G305V100 3 105DEG 10UF -20% 16V 996500037413 C303 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C304 065G060310517T MLCC 0603 CAP 1UF Z 16V Y5V 996510005722 C305 067G305V101 3 105C 10UF +-20% 16V 996510005694 C306 067G305V101 3 105C 10UF +-20% 16V 996510005694 C307 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C308 065G060310517T MLCC 0603 CAP 1UF Z 16V Y5V 996510005722 C309 067G305V101 3 105C 10UF +-20% 16V 996510005694 C310 067G305V101 3 105C 10UF +-20% 16V C311 065G0402104 12 CHIP 0.1UF 50V X7R C312 065G0402104 12 CHIP 0.1UF 50V X7R C315 067G305V101 3 105C 10UF +-20% 16V 996510005694 C316 065G0603104 22 CHIP 0.1UF 25V X7R 996500042674 C317 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C402 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C403 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 C405 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 D101 093G 6433S DIODE BAV99 SEMTECH 996510005726 D102 093G 64 42 PP D103 093G 6433S D104 093G 6433S D105 093G 6433S D106 t C215 ww w. wj el. ne 996510005694 996510005716 996510005716 996500035995 DIODE BAV99 SEMTECH 996510005726 DIODE BAV99 SEMTECH 996510005726 DIODE BAV99 SEMTECH 996510005726 093G 6433S DIODE BAV99 SEMTECH 996510005726 D107 093G 6433S DIODE BAV99 SEMTECH 996510005726 D108 093G 6433S DIODE BAV99 SEMTECH 996510005726 D109 093G 6433S DIODE BAV99 SEMTECH 996510005726 D110 093G 64 42 PP BAV70 SOT-23 996500035995 D111 093G 6433S DIODE BAV99 SEMTECH 996510005726 D112 093G 6433S DIODE BAV99 SEMTECH 996510005726 D113 093G 6433S DIODE BAV99 SEMTECH 996510005726 D201 093G 64 42 PP BAV70 SOT-23 996500035995 D301 093G3004 3 SM340A 996510005728 Q201 057G 417 13 T KEC 2N3906S-RTK/PS 996500035967 Q301 057G 417 12 T PMBS3904 SOT23 CHIP 996510002429 Q302 057G 763 1 A03401 SOT23 BY AOS(A1) 996500035968 Q305 057G 417 12 T PMBS3904 SOT23 CHIP 996510002429 Q402 057G 417 13 T KEC 2N3906S-RTK/PS 996500035967 Q403 057G 417 13 T KEC 2N3906S-RTK/PS 996500035967 ht tp :// BAV70 SOT-23 83 HUDSON 8 061G0402750 RST CHIPR 75 OHM +-5% 1/16W 996510005713 R102 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R103 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R104 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R106 061G0402100 RST CHIPR 10 OHM +-5% 1/16W 996510005700 R107 061G0402100 RST CHIPR 10 OHM +-5% 1/16W 996510005700 R108 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R109 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R110 061G0402100 RST CHIPR 10 OHM +-5% 1/16W 996510005700 R111 061G0402100 RST CHIPR 10 OHM +-5% 1/16W 996510005700 R113 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R115 061G0402100 RST CHIPR 10 OHM +-5% 1/16W 996510005700 R116 061G0402100 RST CHIPR 10 OHM +-5% 1/16W 996510005700 R117 061G0402100 RST CHIPR 10 OHM +-5% 1/16W R118 061G0402100 RST CHIPR 10 OHM +-5% 1/16W 996510005700 R120 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R122 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R123 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R124 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R126 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R127 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R128 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R129 061G0402151 RST CHIP 150R 1/16W 5% 996510005704 R131 061G0402391 R132 061G0402101 R133 061G0402151 R134 061G0402101 R135 t R101 ww w. wj el. ne 996510005700 996510005708 RST CHIPR 100 OHM +-5% 1/16W 996510005701 RST CHIP 150R 1/16W 5% 996510005704 RST CHIPR 100 OHM +-5% 1/16W 996510005701 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R136 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R138 061G0402151 RST CHIP 150R 1/16W 5% 996510005704 R139 061G0402750 RST CHIPR 75 OHM +-5% 1/16W 996510005713 R140 061G0402750 RST CHIPR 75 OHM +-5% 1/16W 996510005713 R141 061G0402222 RST CHIPR 2.2 KOHM +-5% 1/16W 996510005707 R142 061G0402222 RST CHIPR 2.2 KOHM +-5% 1/16W 996510005707 R144 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R201 061G0402105 RST CHIPR 1MOHM +-5% 1/16W 996510005703 R202 061G0402103 RST CHIPR 10 KOHM -5% 1/16W 996500044984 R206 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R211 061G0402000 RST CHIPR 0 OHM +-5% 1/16W 996510005699 R213 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R214 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R215 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R218 061G0402220 RST CHIPR 22 OHM +-5% 1/16W 996510005705 tp :// RST CHIPR 390 OHM +-5% 1/16W ht 84 HUDSON 8 061G0402471 RST CHIPR 470 OHM +-5% 1/16W 996510005710 R225 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R228 061G0402000 RST CHIPR 0 OHM +-5% 1/16W 996510005699 R234 061G0402221 RST CHIPR 220 OHM +-5% 1/16W 996510005706 R301 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R302 061G1206331 RST CHIPR 330 OHM +-5% 1/4W 996510005714 R303 061G1206331 RST CHIPR 330 OHM +-5% 1/4W 996510005714 R304 061G0402103 RST CHIPR 10 KOHM -5% 1/16W 996500044984 R305 061G0402103 RST CHIPR 10 KOHM -5% 1/16W 996500044984 R307 061G0402513 RST CHIP 51K 1/16W 5% 996510005712 R308 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R309 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R311 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R312 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W R314 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R316 061G0402472 RST CHIPR 4.7 KOHM +-5% 1/16W 996510005711 R402 061G0402392 RST CHIP 3.9K 1/16W 5% 996510005709 R403 061G0402392 RST CHIP 3.9K 1/16W 5% 996510005709 R407 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R410 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R412 061G0402102 RST CHIPR 1 KOHM +-5% 1/16W 996510005702 R415 061G0402103 RST CHIPR 10 KOHM -5% 1/16W 996500044984 R416 061G0402101 RST CHIPR 100 OHM +-5% 1/16W 996510005701 R417 061G0402103 R418 061G0402101 U203 705GQ756024 U203 705GQ756098 U204 056G1133 56 M24C16-WMN6TP 996500037783 U301 056G 563 52 IC AP1117D33LA TO252-3L ATC 996510005697 U304 056G 56327A IC AP1117E18LA SOT223-3L 996510005698 X201 093G 2251B MXS12.000AC20F-KAB5 HC-49/US 996510005696 CN101 088G 35315F H D-SUB 15PIN 996500035960 CN102 088G 35424F N DVI 24PIN CONN F 996510005695 FB101 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 FB102 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 FB103 071G 59B300 K BEAD 30 996500036934 FB104 071G 59B300 K BEAD 30 996500036934 FB105 061G0805000 0 OHM 1/10W 996500042284 FB106 071G 59B300 K BEAD 30 996500036934 FB107 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 FB202 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 FB203 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 FB204 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 t R221 ww w. wj el. ne 996510005702 RST CHIPR 10 KOHM -5% 1/16W 996500044984 RST CHIPR 100 OHM +-5% 1/16W 996510005701 MCU ASSY(LPL) 996510010271 ht tp :// MCU ASS'Y(17") 85 HUDSON 8 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 FB206 071G 56D121 JA CHIP BEAD 120 OHM 0805 1A 996510005725 FB207 071G 56D102 MA CHIP HEAD 1000OHM 0805 1A 996510005723 FB302 071G 56K121 M CHIP BEAD 996500036567 FB303 071G 56K121 M CHIP BEAD 996500036567 ZD101 093G 39S 24 T RLZ 5.6B LLDS 996510004052 ZD102 093G 39S 24 T RLZ 5.6B LLDS 996510004052 ZD103 093G 39S 24 T RLZ 5.6B LLDS 996510004052 ZD104 093G 39S 24 T RLZ 5.6B LLDS 996510004052 ZD105 093G 39S 24 T RLZ 5.6B LLDS 996510004052 ZD106 093G 39S 24 T RLZ 5.6B LLDS 996510004052 ZD107 093G 39S 24 T RLZ 5.6B LLDS 996510004052 ZD201 093G 39G586 RLZ2.2B 996510005727 FQ018 KEPC7QS5 KEY BOARD ASSY SW1 077G 600 1GCJ TACT SWITCH SW2 077G 600 1GCJ TACT SWITCH SW3 077G 600 1GCJ TACT SWITCH SW4 077G 600 1GCJ TACT SWITCH SW5 077G 600 1GCJ TACT SWITCH SW6 077G 600 1GCJ TACT SWITCH 996510002796 SW7 077G 600 1GCJ TACT SWITCH 996510002796 SW8 077G 600 1GCJ TACT SWITCH 996510002796 C101 065G0603103 32 0.01UF -10% 50V X7R 996500036004 C102 065G0603103 32 0.01UF -10% 50V X7R 996500036004 C103 065G0603103 32 0.01UF -10% 50V X7R 996500036004 C104 065G0603103 32 0.01UF -10% 50V X7R 996500036004 C105 065G0603103 32 0.01UF -10% 50V X7R 996500036004 LED1 081G 12 1F GP LED GP32032M/G307-ZY-50 996510006457 R100 061G0805000 0 OHM 1/10W 996500042284 R101 061G0603101 RST CHIPR 100 OHM -5% 1/10W 996500042213 R102 061G0603432 RST CHIPR 4.3 KOHM -5% 1/10W 996500044045 R103 061G0603911 RST CHIPR 910 OHM +-5% 1/10W 996510006459 R104 061G0603242 RST CHIPR 2.4 KOHM +-5% 1/10W 996510006258 R106 061G0603432 RST CHIPR 4.3 KOHM -5% 1/10W 996500044045 R107 061G0603911 RST CHIPR 910 OHM +-5% 1/10W 996510006459 R108 061G0603242 RST CHIPR 2.4 KOHM +-5% 1/10W 996510006258 R109 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 CN101 033G3802 6H WAFER 6P RIGHT ANGLE PITCH 2.0 996510010273 FQ019 PWPC742GR3 POWER BOARD ASSY(LPL) 996510010274 C801 065G 6J1006ET 10PF 5% SL 6KV 996500036942 C802 065G0603105 12 CHIP 1UF 16VX7R 0603 996510002499 C803 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C804 065G0603104 12 CER2 0603 X7R 16V 100N PM10 R 996500036918 t FB205 ne 996510010272 996510002796 ww w. wj el. 996510002796 :// tp ht 86 996510002796 996510002796 996510002796 HUDSON 8 067G215D4714KV E.C 105_J CAP 470UF M 25V 996510006239 C806 065G0603105 12 CHIP 1UF 16VX7R 0603 996510002499 C807 065G0603104 12 CER2 0603 X7R 16V 100N PM10 R 996500036918 C808 065G0805225 12 CHIP 2.2UF 16V X7R 0805 996510006267 C809 065G080522131G 220PF 50V NPO 2% 996510007400 C810 065G0603104 22 CHIP 0.1UF 25V X7R 996500042674 C811 067G215D4714KV E.C 105_J CAP 470UF M 25V 996510006239 C812 065G 6J1006ET 10PF 5% SL 6KV 996500036942 C813 065G0603222 22 CHIP 2200PF 25V X7R 996510006266 C814 065G0603104 12 CER2 0603 X7R 16V 100N PM10 R 996500036918 C815 065G0603222 22 CHIP 2200PF 25V X7R 996510006266 C816 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C817 065G0603222 22 CHIP 2200PF 25V X7R 996510006266 C818 065G0603222 22 CHIP 2200PF 25V X7R C821 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C822 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C823 065G0805104 22 0.1UF -10% 25V X7R 080 996500036040 C824 065G0805104 22 0.1UF -10% 25V X7R 080 996500036040 C900 065G306M2222BP 2200PF -20% 400VAC 996500036050 C901 065G305M1022EM Y2 1000PF -20% 250VAC 996500036006 C902 065G305M1022EM Y2 1000PF -20% 250VAC 996500036006 C903 065G306M1022BP 1000PF Y1.CAP 996510006237 C904 065G0603102 32 1000PF -10% 50V X7R 996500037517 C907 067G 40Z10115K CAP 105 J 100UF M 450V 996510007388 C909 063G107K474 US 0.47UF +-10% 996510007384 C910 065G 2K152 1T6921 CAP 1.5NF/2KV Y5P +-10% 996510006274 C911 067G 2152207NT KY50VB22M-TP5 5*11 996510006275 C912 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C913 065G0805221 31 220PF 50V NPO 996500039769 C914 065G0805471 21 CHIP 470PF 25V NPO 996510002754 C916 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C920 065G517K102 5T 1000PF 10% Y5P 500V 996500036077 C921 065G517K102 5T 1000PF 10% Y5P 500V 996500036077 C922 067G215D6814KV CAP 105_J 680UF M 25V 996510006240 C923 067G215D6814KV CAP 105_J 680UF M 25V 996510006240 C925 067G215D4714KV E.C 105_J CAP 470UF M 25V 996510006239 C926 067G215S1023KV 105 J 1000UF M 16V 996510007389 C927 067G215S4713KV EC 105_J CAP 470UF M 16V 996510006242 C928 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C929 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C930 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C931 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C932 067G215S1023KV 105℃ 1000UF M 16V t C805 ne el. w. wj ww :// tp ht 996510006266 87 HUDSON 8 087G 501 32 DL AC SOCKET DIP 3PIN+2PIN GROUND PT802 S80GL17T40V TRANSFORMER ASSY PT801 S80GL17T40V TRANSFORMER ASSY Q809 057G 600 55 P5506 HVG SO-8 Q804 057G 600 55 P5506 HVG SO-8 D900 093G1100 1152T DIODE PR1007R 1A/1000V DO-41 D801 093G 64 33 DIO SIG SM BAV99 (PHSE)R 996500035994 D802 093G 64 33 DIO SIG SM BAV99 (PHSE)R 996500035994 D803 093G 64S511SEM IN4148W 996500039779 D806 093G 64S 10 DIODE BAW56PT SOT-23 CHENMKO 996510006271 D807 093G 64S511SEM IN4148W 996500039779 D808 093G 64S 10 DIODE BAW56PT SOT-23 CHENMKO 996510006271 D809 093G 64 33 DIO SIG SM BAV99 (PHSE)R 996500035994 D810 093G 64 33 DIO SIG SM BAV99 (PHSE)R D811 093G 64S511SEM IN4148W D812 093G 64S511SEM IN4148W D813 093G 64S511SEM IN4148W D900 093G1100 1052T BA159GPT DO-41 CHENMKO 996510007274 D901 093G 6038T52T FR103 996500036095 D910 093G 64S511SEM IN4148W 996500039779 D915 093G 64S511SEM IN4148W 996500039779 D916 093G 64S511SEM IN4148W 996500039779 D920 093G 60276 DIODE SBT150-10LST SANYO 996510006255 D922 093G3006 1 1 31DQ06FC3 NIHON INTER 996510006253 F901 084G 56 4W FUSE 4.0A 250V 996510006276 F902 061G1206000 4 RST CHIPR 0 OHM +-5% 1/4W 996510010275 J807 061G1206000 0 OHM 1/8W 996500039751 J813 061G1206000 0 OHM 1/8W 996500039751 J814 061G1206000 0 OHM 1/8W 996500039751 J815 061G1206000 0 OHM 1/8W 996500039751 J816 061G1206000 0 OHM 1/8W 996500039751 J818 061G1206000 0 OHM 1/8W 996500039751 J907 061G1206000 0 OHM 1/8W 996500039751 J908 061G1206000 0 OHM 1/8W 996500039751 L901 S73G17476V LINE FILTER ASSY 996510007403 L902 073G 174 65 H LINE FILTER 996500036088 L921 073G 253 91 H CHOKE COIL 996500036026 L922 073G 253 91 H CHOKE COIL 996500036026 Q801 057G 760 4B PDTA144WK SOT346 996500036962 Q802 057G 760 5B PDTC144WK SOT346 996510006257 Q803 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 Q804 057G 763 14 AM9945N 996500036100 Q805 057G 417 6 PMBS3906/PHILIPS-SMT(06) 996510002478 ne 996500035994 996500039779 ww w. wj el. 996500039779 :// tp t CN901 ht 88 996500039779 HUDSON 8 057G 417 6 PMBS3906/PHILIPS-SMT(06) 996510002478 Q807 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 Q808 057G 759 2 RK7002 SOT-23 BY ROHM 996510003293 Q809 057G 763 14 AM9945N 996500036100 Q810 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 Q811 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 Q812 057G 759 2 RK7002 SOT-23 BY ROHM 996510003293 Q902 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 R801 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 R802 061G0805101 RST CHIPR 100 OHM -5% 1/8W 996500043379 R803 061G0603362 RST CHIPR 3.6 KOHM -5% 1/10W 996500042734 R804 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 R805 061G0603472 RST CHIPR 4.7KOHM -5% 1/10W 996500042225 R806 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W R807 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R808 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R810 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R811 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R812 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R813 061G0603101 RST CHIPR 100 OHM -5% 1/10W 996500042213 R814 061G0603680 2F RST CHIPR 68 KOHM +-1% 1/10W 996510006225 R815 061G0603470 2F RSTR 47 KOHM +-1% 1/10W 996510005994 R816 061G0603680 2F RST CHIPR 68 KOHM +-1% 1/10W 996510006225 R819 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R820 061G0603564 RST CHIPR 560 KOHM +-5% 1/10W 996510006224 R821 061G0603105 RST CHIPR 1 MOHM -5% 1/10W 996500042216 R822 061G0603473 RST CHIPR 47 KOHM -5% 1/10W 996500042277 R823 061G0603103 RST CHIPR 10 KOHM -5% 1/10W 996500042214 R824 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R825 061G0805510 2F RST CHIPR 51 KOHM +-1% 1/8W 996510006262 R826 061G0805180 3F RST CHIPR 180 KOHM +-1% 1/8W 996510006259 R827 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R828 061G0603470 2F RSTR 47 KOHM +-1% 1/10W 996510005994 R829 061G0603680 2F RST CHIPR 68 KOHM +-1% 1/10W 996510006225 R830 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 R831 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R832 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 R833 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R834 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R835 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R836 061G0603105 RST CHIPR 1 MOHM -5% 1/10W 996500042216 R837 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R838 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 996500043955 ne el. w. wj ww :// tp ht t Q806 89 HUDSON 8 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R840 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R841 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R842 061G0603470 2F RSTR 47 KOHM +-1% 1/10W 996510005994 R844 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R845 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R846 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R847 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R848 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R849 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R850 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R851 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R852 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R853 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W R900 061G1206334 RST CHIPR 330KOHM +-5% 1/4W 996510006264 R901 061G1206334 RST CHIPR 330KOHM +-5% 1/4W 996510006264 R902 061G1206334 RST CHIPR 330KOHM +-5% 1/4W 996510006264 R903 061G0805102 CHIP 1KOHM 1/10W 996500043380 R905 061G1206103 10 KOHM 1/8W 996500040048 R907 061G 208151 64 RST MOFR 150 OHM +-5% 1W 996510006232 R908 061G0805471 470&8 1/10W 996500043397 R909 061G152M104 64 100KOHM 5% 2W 996500036939 R910 061G1206229 RST CHIP 2R2 1/4W 5% 996500044647 R911 061G0805100 3F RST CHIPR 100KOHM +-1% 1/8W 996510006227 R912 061G1206100 RST CHIP 10R 1/4W 5% 996500043976 R913 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R915 061G0805100 2F RST CHIPR 10KOHM -1% 1/8W 996500044853 R916 061G152M43852T RST MOF 0R43 5% 2W 996510009151 R922 061G0805331 RST CHIPR 330 OHM -5% 1/8W 996500043393 R923 061G0805100 2F RST CHIPR 10KOHM -1% 1/8W 996500044853 R924 061G0805360 1F RST CHIPR 3.6KOHM +-1% 1/8W 996510006261 R925 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R926 061G0805330 2F RST CHIPR 33 KOHM +-1% 1/8W 996510006260 R927 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R928 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R929 061G0805240 1F RST CHIPR 2.4 KOHM +-1% 1/8W 996510004364 R930 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R931 061G1206103 10 KOHM 1/8W 996500040048 R951 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R952 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R953 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R954 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R955 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 996500042395 ne el. w. wj ww :// tp t R839 ht 90 HUDSON 8 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 T901 080GL17T 33 N2 XFMR POWER 550UH YUVA 996510006247 BD901 093G 50460 28 BRIDGE DIODE KBP208G LITEON 996500039742 FB901 071G 55 29 FERRITE BEAD 996500036053 FB903 071G 55 29 FERRITE BEAD 996500036053 IC801 056G 379 22 IC TL494IDR SOIC-16 996510006256 IC901 056G 379 61 LD7575PS SOP-8 996500039747 IC902 056G 139 3A PC123Y22FZOF 996500036055 IC903 056G 158 12 KIA431A-AT/P TO-92 996500036054 NR901 061G 58100 W RST NTCR 10 OHM +20% 5A 996510007230 PT801 080GL17T 40 DN X'FMR TK.2001U.101 996510006252 PT802 080GL17T 40 DN X'FMR TK.2001U.101 996510006252 ZD801 061G1206103 10 KOHM 1/8W 996500040048 ZD920 093G 39S 40 T RLZ 13B LLDS ZD921 093G 39S 40 T RLZ 13B LLDS ZD922 093G 39S 25 T RLZ5.1B LLDS FQ020 750GLC70A7P43M000F PANEL CLAA170EA07P 040 CPT 996510006441 FQ021 750GLB70A7P41M000F PANEL CLAA170EA07P 040 FQ CTOC 996510010276 FQ022 750GLB70A7P51M000F PANEL CLAA170EA07P 050 FQ CTOC 996510010261 FQ023 750GLC70A7P53M000F PANEL CLAA170EA07P 050 FZ CPT 996510010262 FQ024 CBPC7CNAPHQ4 SCALER BOARD ASSY(CPT,CTOC) 996510010263 U203 705GQ756023 MCU ASSY(CPT,CTOC) 996510010264 FQ025 PWPC942GR1 POWER BOARD ASSY 996510010288 t R956 ne 996500039777 996500039777 ww w. wj el. 996500037002 065G0603105 12 CHIP 1UF 16VX7R 0603 996510002499 C803 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C804 065G0603104 12 CER2 0603 X7R 16V 100N PM10 R 996500036918 C805 067G215D4714KV E.C 105_J CAP 470UF M 25V 996510006239 C806 065G0603105 12 CHIP 1UF 16VX7R 0603 996510002499 C807 065G0603104 12 CER2 0603 X7R 16V 100N PM10 R 996500036918 C808 065G0805225 12 CHIP 2.2UF 16V X7R 0805 996510006267 C809 065G080522131G 220PF 50V NPO 2% 996510007400 C810 065G0603104 22 CHIP 0.1UF 25V X7R 996500042674 C811 067G215D4714KV E.C 105_J CAP 470UF M 25V 996510006239 C812 065G 6J1006ET 10PF 5% SL 6KV 996500036942 C813 065G0603222 22 CHIP 2200PF 25V X7R 996510006266 C814 065G0603104 12 CER2 0603 X7R 16V 100N PM10 R 996500036918 C815 065G0603222 22 CHIP 2200PF 25V X7R 996510006266 C816 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C817 065G0603222 22 CHIP 2200PF 25V X7R 996510006266 C818 065G0603222 22 CHIP 2200PF 25V X7R 996510006266 C821 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C822 065G0805152 32 CHIP 1500PF 50V X7R 0805 996500044871 C823 065G0805104 22 0.1UF -10% 25V X7R 080 996500036040 ht tp :// C802 91 HUDSON 8 065G0805104 22 0.1UF -10% 25V X7R 080 996500036040 C900 065G306M2222BP 2200PF -20% 400VAC 996500036050 C901 065G305M1022EM Y2 1000PF -20% 250VAC 996500036006 C902 065G305M1022EM Y2 1000PF -20% 250VAC 996500036006 C903 065G306M1022BP 1000PF Y1.CAP 996510006237 C904 065G0603102 32 1000PF -10% 50V X7R 996500037517 C907 067G 40Z10115K CAP 105 J 100UF M 450V 996510007388 C909 063G107K474 US 0.47UF +-10% 996510007384 C910 065G 2K152 1T6921 CAP 1.5NF/2KV Y5P +-10% 996510006274 C911 067G 2152207NT KY50VB22M-TP5 5*11 996510006275 C912 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C913 065G0805221 31 220PF 50V NPO 996500039769 C914 065G0805471 21 CHIP 470PF 25V NPO 996510002754 C916 065G0805104 32 CHIP 0.1U 50V X7R C920 065G517K102 5T 1000PF 10% Y5P 500V C921 065G517K102 5T 1000PF 10% Y5P 500V C922 067G215D6814KV CAP 105_J 680UF M 25V 996510006240 C923 067G215D6814KV CAP 105_J 680UF M 25V 996510006240 C925 067G215D4714KV E.C 105_J CAP 470UF M 25V 996510006239 C926 067G215S1023KV 105 J 1000UF M 16V 996510007389 C927 067G215S4713KV EC 105_J CAP 470UF M 16V 996510006242 C928 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C929 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C930 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 C931 065G0805104 32 CHIP 0.1U 50V X7R 996500036041 D801 093G 64 33 DIO SIG SM BAV99 (PHSE)R 996500035994 D802 093G 64 33 DIO SIG SM BAV99 (PHSE)R 996500035994 D803 093G 64S511SEM IN4148W 996500039779 D806 093G 64S 10 DIODE BAW56PT SOT-23 CHENMKO 996510006271 D807 093G 64S511SEM IN4148W 996500039779 D808 093G 64S 10 DIODE BAW56PT SOT-23 CHENMKO 996510006271 D809 093G 64 33 DIO SIG SM BAV99 (PHSE)R 996500035994 D810 093G 64 33 DIO SIG SM BAV99 (PHSE)R 996500035994 D811 093G 64S511SEM IN4148W 996500039779 D812 093G 64S511SEM IN4148W 996500039779 D813 093G 64S511SEM IN4148W 996500039779 D900 093G1100 1052T BA159GPT DO-41 CHENMKO 996510007274 D901 093G 6038T52T FR103 996500036095 D910 093G 64S511SEM IN4148W 996500039779 D915 093G 64S511SEM IN4148W 996500039779 D916 093G 64S511SEM IN4148W 996500039779 D920 093G 60276 DIODE SBT150-10LST SANYO 996510006255 D922 093G3006 1 1 31DQ06FC3 NIHON INTER 996510006253 t C824 996500036041 ne el. w. wj ww :// tp ht 92 996500036077 996500036077 HUDSON 8 084G 56 4W FUSE 4.0A 250V 996510006276 F902 061G1206000 4 RST CHIPR 0 OHM +-5% 1/4W 996510010275 J807 061G1206000 0 OHM 1/8W 996500039751 J813 061G1206000 0 OHM 1/8W 996500039751 J814 061G1206000 0 OHM 1/8W 996500039751 J815 061G1206000 0 OHM 1/8W 996500039751 J816 061G1206000 0 OHM 1/8W 996500039751 J818 061G1206000 0 OHM 1/8W 996500039751 J907 061G1206000 0 OHM 1/8W 996500039751 J908 061G1206000 0 OHM 1/8W 996500039751 L901 S73G17476V LINE FILTER ASSY 996510007403 L902 073G 174 65 H LINE FILTER 996500036088 L921 073G 253 91 H CHOKE COIL 996500036026 L922 073G 253 91 H CHOKE COIL Q801 057G 760 4B PDTA144WK SOT346 Q802 057G 760 5B PDTC144WK SOT346 Q803 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 Q804 057G 763 14 AM9945N 996500036100 Q805 057G 417 6 PMBS3906/PHILIPS-SMT(06) 996510002478 Q806 057G 417 6 PMBS3906/PHILIPS-SMT(06) 996510002478 Q807 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 Q808 057G 759 2 RK7002 SOT-23 BY ROHM 996510003293 Q809 057G 763 14 AM9945N 996500036100 Q810 057G 417 4 Q811 057G 417 4 Q812 057G 759 2 Q900 057G 667 21 Q902 t F901 ww w. wj el. ne 996500036026 996500036962 996510006257 996500035966 PMBS3904/PHILIPS-SMT(04) 996500035966 RK7002 SOT-23 BY ROHM 996510003293 STP10NK70ZFP 996500039743 057G 417 4 PMBS3904/PHILIPS-SMT(04) 996500035966 R801 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 R802 061G0805101 RST CHIPR 100 OHM -5% 1/8W 996500043379 R803 061G0603362 RST CHIPR 3.6 KOHM -5% 1/10W 996500042734 R804 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 R805 061G0603472 RST CHIPR 4.7KOHM -5% 1/10W 996500042225 R806 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R807 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R808 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R810 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R811 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R812 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R813 061G0603101 RST CHIPR 100 OHM -5% 1/10W 996500042213 R814 061G0603750 2F RST CHIPR 75KOHM -1% 1/10W 996500042257 R815 061G0603470 2F RSTR 47 KOHM +-1% 1/10W 996510005994 R816 061G0603680 2F RST CHIPR 68 KOHM +-1% 1/10W 996510006225 ht tp :// PMBS3904/PHILIPS-SMT(04) 93 HUDSON 8 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R820 061G0603564 RST CHIPR 560 KOHM +-5% 1/10W 996510006224 R821 061G0603105 RST CHIPR 1 MOHM -5% 1/10W 996500042216 R822 061G0603473 RST CHIPR 47 KOHM -5% 1/10W 996500042277 R823 061G0603103 RST CHIPR 10 KOHM -5% 1/10W 996500042214 R824 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R825 061G0805510 2F RST CHIPR 51 KOHM +-1% 1/8W 996510006262 R826 061G0805180 3F RST CHIPR 180 KOHM +-1% 1/8W 996510006259 R827 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R828 061G0603470 2F RSTR 47 KOHM +-1% 1/10W 996510005994 R829 061G0603680 2F RST CHIPR 68 KOHM +-1% 1/10W 996510006225 R830 061G0603000 RST CHIPR 0 OHM -5% 1/10W 996500042212 R831 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R832 061G0603000 RST CHIPR 0 OHM -5% 1/10W R833 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R834 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R835 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R836 061G0603105 RST CHIPR 1 MOHM -5% 1/10W 996500042216 R837 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R838 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R839 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R840 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R841 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R842 061G0603470 2F RSTR 47 KOHM +-1% 1/10W 996510005994 R844 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R845 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R846 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R847 061G0603220 RST CHIPR 22 OHM -5% 1/10W 996500042217 R848 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R849 061G0603100 1F RST CHIPR 1 KOHM -1% 1/10W 996500043955 R850 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R851 061G1206150 RST CHIPR 15 OHM +-5% 1/4W 996510006263 R852 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R853 061G0603100 2F RST CHIPR 10 KOHM -1% 1/10W 996500042395 R900 061G1206334 RST CHIPR 330KOHM +-5% 1/4W 996510006264 R901 061G1206334 RST CHIPR 330KOHM +-5% 1/4W 996510006264 R902 061G1206334 RST CHIPR 330KOHM +-5% 1/4W 996510006264 R903 061G0805102 CHIP 1KOHM 1/10W 996500043380 R905 061G1206103 10 KOHM 1/8W 996500040048 R907 061G 208151 64 RST MOFR 150 OHM +-5% 1W 996510006232 R908 061G0805471 470&8 1/10W 996500043397 R909 061G152M104 64 100KOHM 5% 2W 996500036939 R910 061G1206229 RST CHIP 2R2 1/4W 5% 996500044647 996500042212 ne el. w. wj ww :// tp t R819 ht 94 HUDSON 8 061G0805100 3F RST CHIPR 100KOHM +-1% 1/8W 996510006227 R912 061G1206100 RST CHIP 10R 1/4W 5% 996500043976 R913 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R915 061G0805100 2F RST CHIPR 10KOHM -1% 1/8W 996500044853 R916 061G152M43852T RST MOF 0R43 5% 2W 996510009151 R922 061G0805331 RST CHIPR 330 OHM -5% 1/8W 996500043393 R923 061G0805100 2F RST CHIPR 10KOHM -1% 1/8W 996500044853 R924 061G0805360 1F RST CHIPR 3.6KOHM +-1% 1/8W 996510006261 R925 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R926 061G0805330 2F RST CHIPR 33 KOHM +-1% 1/8W 996510006260 R927 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R928 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W 996510006226 R929 061G0805240 1F RST CHIPR 2.4 KOHM +-1% 1/8W 996510004364 R930 061G0805100 1F RST CHIPR 1KOHM +-1% 1/8W R931 061G1206103 10 KOHM 1/8W R951 061G1206470 RST CHIPR 47 OHM +-5% 1/4W R952 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R953 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R954 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R955 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 R956 061G1206470 RST CHIPR 47 OHM +-5% 1/4W 996510006265 T901 080GL17T 33 N2 XFMR POWER 550UH YUVA 996510006247 BD901 093G 50460 28 BRIDGE DIODE KBP208G LITEON 996500039742 FB903 071G 55 29 IC801 056G 379 22 IC901 056G 379 61 IC903 056G 158 12 NR901 t R911 ne 996510006226 ww w. wj el. 996500040048 996510006265 996500036053 IC TL494IDR SOIC-16 996510006256 LD7575PS SOP-8 996500039747 KIA431A-AT/P TO-92 996500036054 061G 58100 W RST NTCR 10 OHM +20% 5A 996510007230 PT801 080GL17T 40 DN X'FMR TK.2001U.101 996510006252 PT802 080GL17T 40 DN X'FMR TK.2001U.101 996510006252 ZD801 061G1206103 10 KOHM 1/8W 996500040048 ZD920 093G 39S 40 T RLZ 13B LLDS 996500039777 ZD921 093G 39S 40 T RLZ 13B LLDS 996500039777 ZD922 093G 39S 25 T RLZ5.1B LLDS 996500037002 FQ026 CBPC7ANAPHQ1 SCALER BOARD ASSY(AUO) 996510010267 C404 065G0402104 12 CHIP 0.1UF 50V X7R 996510005716 Q900 057G 667 21 STP10NK70ZFP 996500039743 R814 061G0603750 2F RST CHIPR 75KOHM -1% 1/10W 996500042257 U203 705GQ756048 MCU ASSY(AUO) 996510010268 089G 728HAA 21 SIGNAL CABLE 996510005679 ht tp :// FERRITE BEAD E08902 95 96 HUDSON 8 17. Different Parts List Diversity of 170S8FB/00 compared with 170S8FS/00 Location 170S8FB/00 Part No. 170S8FS/00 Description Philips 12NC Part No. Description Philips 12NC P33G4989 VQB1C CONTROL BUTTON 996510010255 P33G4989 VPB1C CONTROL BUTTON 996510010269 FQ010 P34G1846 VBF1T BEZEL L17-7PHB1 996510010256 P34G1846 VOE1T BEZEL L17-7PHB1 996510010270 FQ010 P34G1846 VBF1B BEZEL L17-7PHB1 P34G1846 VOE1B BEZEL L17-7PHB1 el. .w j Diversity of 170S8FB/27 compared with 170S8FS/00 Location 170S8FB/27 Part No. ne t FQ009 Description Philips 12NC 089G402A18N IS POWER CORD 089G404A18N YH FQ009 P33G4989 VQB1C CONTROL BUTTON FQ010 P34G1846 VBF1T BEZEL L17-7phb1 FQ012 Q40G 17N81325B RATING LABEL FQ012 Q40G 17N81325C RATING LABEL (Second source) FQ022 089G1748GAA AC SIGNAL CABLE GREATLAND :// w ht tp DVI Description Philips 12NC POWER CABLE 996500037502 P33G4989 VPB1C CONTROL BUTTON 996510010269 P34G1846 VOE1T BEZEL L17-7phb1 996510010270 Q40G 17N81322A RATING LABEL Q40G 17N81322A RATING LABEL ww FQ002 Part No. 170S8FS/00 HUDSON 8 97 Diversity of 170S8FS/62 compared with 170S8FS/00 Location 170S8FS/62 Part No. Description 170S8FS/00 Philips 12NC Part No. Description Philips 12NC P34G1850 VB 1T REAR COVER P34G1850 VB 2T REAR COVER(17") FQ015 Q44G7057813 4A CARTON Q44G7057813 1A CARTON FQ015 Q44G7057813 5A CARTON (Second source) Q44G7057813 1A CARTON FQ018 CBPC7GNAPHQ8 SCALAR BOARD ASSY(LPL) CBPC7GNAPHQ6 SCALAR BOARD ASSY (LG) 996510010260 FQ017 CBPC7CNAPHQ8 SCALAR BOARD ASSY(CPT) CBPC7CNAPHQ4 SCALAR BOARD ASSY(CPT) 996510010263 U203 705GQ756032 MCU ASS'Y (17")(LPL) 705GQ756024 MCU ASS'Y (LG) 996510010271 U203 705GQ756031 MCU ASS'Y (17")(CPT) 705GQ756023 MCU ASS'Y (CPT) 996510010264 .w j el. ne t FQ011 Location 170S8FB/62 Part No. Description P33G4989 VQB1C CONTROL BUTTON FQ010 P34G1846 VBF1T BEZEL L17-7phb1 FQ011 P34G1850 VB 1T REAR COVER FQ015 Q44G7057813 4A CARTON FQ018 CBPC7GNAPHQ8 SCALAR BOARD ASSY(LPL) FQ017 CBPC7CNAPHQ8 U203 U203 Philips 12NC 170S8FS/00 Part No. Description Philips 12NC P33G4989 VPB1C CONTROL BUTTON 996510010269 P34G1846 VOE1T BEZEL L17-7phb1 996510010270 P34G1850 VB 2T REAR COVER(17") 996510008030 Q44G7057813 1A CARTON CBPC7GNAPHQ6 SCALAR BOARD ASSY (LG) 996510010260 SCALAR BOARD ASSY(CPT) CBPC7CNAPHQ4 SCALAR BOARD ASSY(CPT) 996510010263 705GQ756032 MCU ASS'Y (17")(LPL) 705GQ756024 MCU ASS'Y (LG) 996510010271 705GQ756031 MCU ASS'Y (17")(CPT) 705GQ756023 MCU ASS'Y (CPT) 996510010264 ht tp :// w FQ009 ww Diversity of 170S8FB/62 compared with 170S8FS/00 996510008030 98 HUDSON 8 Diversity of 170S8FB/78 compared with 170S8FS/00 Location 170S8FB/78 Part No. 170S8FS/00 Description Philips 12NC Part No. Description Philips 12NC 089G402A18NIS1 POWER CORD E08902 089G402A18NLS1 POWER CORD FQ004 705GQ734427 170S8 STAND&BASE SKD ASS'Y 705GQ734307 STAND&BASE ASS'Y 996510006439 FQ009 P33G4989 VQB1C CONTROL BUTTON P33G4989 VPB1C CONTROL BUTTON 996510010269 FQ010 P34G1846 VBF1B BEZEL L17-7phb1 P34G1846 VOE1T BEZEL L17-7phb1 996510010270 FQ012 Q40G 17N81328A RATING LABEL FQ017 CBPC7CNAPHQA SCALER BOARD FQ019 PWPC7942GQA8 POWER BOARD ASSY CN801 033G8021 2E U INVERT CONNECTOR CN802 033G8021 2E U INVERT CONNECTOR CN803 033G8021 2E U INVERT CONNECTOR CN804 033G8021 2E U INVERT CONNECTOR C909 063G107K474 TS CAP X2 0.47UF K 275VAC C907 067G305T10115H ELCAP 105℃ 100UF M 450V L902 073G 174 65 T LINE FILTER 7mH MIN TDK T901 080GL17T 33 T2 X'FMR 550uH SRW28EC-T147H015 L902 S73G17465VW L921 RATING LABEL CBPC7CNAPHQ4 SCALER BOARD ASSY (CPT) 996510010263 PWPC942GR1P POWER BOARD(CPT) 996510006441 063G107K474 HS 0.47UF +-10% 996510007384 LINE FILTER ASS'Y 073G 174 65 H LINE FILTER 996500036088 S73G25391V CHOKE COIL ASS'Y 073G 253 91 H CHOKE COIL 996500036026 L922 S73G25391V CHOKE COIL ASS'Y 073G 253 91 H CHOKE COIL 996500036026 T901 S80GL17T33V2 TRANSFORMER ASS'Y 080GL17T 33 N2 XFMR POWER 550uH YUVA 996510006247 IC903 056G 158 10 T IC AZ431AZ-AE1 TO-92 BY AAC 056G 158 12 KIA431A-AT/P TO-92 996500036054 FQ018 KEPC7QS6 KEY BOARD ASSY KEPC7QS5 KEY BOARD ASSY 996510010272 tp :// w ww .w j Q40G 17N81322A ht el. ne t E08902 HUDSON 8 18. General Product Specification CONTENTS ANALOG AND DIGITAL DUAL INPUT 1 FOREWORD 2 PRODUCT PROFILE 2.1 LCD 2.2 SCANNING FREQUENCIES 2.3 AMBIENT TEMPERATURE: 0 °C - 35 °C 3 ELECTRICAL CHARACTERISTICS 3.1 INTERFACE SIGNALS VIDEO: 0.7 Vp-p, INPUT IMPEDANCE, 75 OHM @DC INTERFACE 3.3 TIMING REQUIREMENT 3.4 HORIZONTAL SCANNING 3.5 VERTICAL SCANNING 3.6 POWER INPUT CONNECTION 3.7 POWER MANAGEMENT 3.8 DISPLAY IDENTIFICATION 3.9 DISPLAY IDENTIFECATION w. wj el. ne t 3.2 3.10 USB SUPPORT: NOTE 3.11 DDC/CI SUPPORT 3.12 EDID 3.13 HOT-KEY DEFINITION 3.16 SMART IMAGE ww 3.14 SMART CONTRAST (DYNAMIC CONTRAST RATIO) VISUAL CHARACTERISTICS 4.1 TEST CONDITIONS 4.2 BRIGHTNESS 4.3 IMAGE SIZE 4.4 BRIGHTNESS UNIFORMITY 4.5 CHECK CROSS TALK (S) 4.6 WHITE COLOR ADJUSTMENT 5 MECHANICAL CHARACTERISTICS ht tp :// 4 5.1 COSMETIC PHILIPS ID 5.2 MECHANICAL DATA FILES PROE FILES REQUIRED 5.3 LOCATION OF PHILIPS LOGO PER PHILIPS MAKE-UP SHEET 5.4 GAP BETWEEN PANEL AND FRONT BEZEL 5.5 LOCATION OF CONTROL ICONS 5.6 COLOR FOR RESIN/PAINT 5.7 RESINS 5.8 IF RAINT IS USED 5.9 PLASITIC MOLD TOOLING 5.10 PLASTICS FLAMMABILITY <0.8 (TYP) MM PER PHILIPS GRAPHIC SHEET PER PHILIPS MAKE-UP SHEET 99 100 HUDSON 8 5.11 TEXTURE/GLOSSING OF HOUSING 5.12 TILT AND SWIVEL BASE 5.13 KENSINGTON LOCK 5.14 LABEL 5.15 PRODUCT DIMENSION/WEIGHT (PREFER TO SHT 191) 5.16 TRANSPORTATION 5.17 PALLET/CONTAINER LOADING 6. ENVIRONMENTAL CHARACTERISTICS 6.1 SUSCEPTIBILITY OF DISPLAY TO EXTERNAL ENVIRONMENT 6.2 TRANSPORTATION TESTS 6.3 DISPLAY DISTURBANCES FROM EXTERNAL ENVIRONMENT 6.4 DISPLAY DISTURBANCES TO EXTERNAL ENVIRONMENT RELIABILITY t 7. 8. QUALITY ASSURANCE REQUIREMENTS 8.1 ACCEPTANCE TEST PHILIPS’ FLAT PANEL MONITORS PIXEL DEFECT POLICY 10 REGULATORY COMPLIANCE el. 9. w. wj 10.1 WORLDWIDE REGULATORY 10.2 EMC REQUIREMENTS 10.3 ROHS 10.4 WEEE tp :// ww 10.5 ONGOING REGULATORY ht ne 7.1 MEAN TIME BETWEEN FAILURES HUDSON 8 101 1. FOREWORD This specification describes a 17" SXGA multi-scan color TFT LCD monitor with maximum resolution up to 1280 x 1024 /76 Hz non-interlaced. All optical characteristics (including WHITE-D, Brightness, and so on) are determined according to panel specification after warming up approximate 30 minutes that brightness stability is optimal, and follow strictly after panel specification. 2. PRODUCT PROFILE This display monitor unit is a color display monitor enclosed in PHILIPS styling cabinet which has an integrated tilt base. 2.1 LCD Priority : LPL/CPT/AUO Type : TN + film LPL LM170E03-TLL1/TLL4 : 1280x1024 (SXGA) Outside dimensions : Pitch ( mm ) : 0.264 mm x 0.264 mm Color pixel arrangement : RGB vertical stripes Display surface : Hard coating (3H), Anti-glare treatment of the front polarizer Color depth : Backlight : CCFL edge light system Active area(WxH) : 337.9*270.3 ) : 160/160 (typ) :800:1 (typ) White luminance : 300 nit (typ) Color gamut :72% (typ) Gate IC : Source IC : Response time : 5 ms ne :// ww Contrast ratio el. 16.7 M colors (with A-FRC) w. wj View angle (CR>10 t Resolution CPT CLAA170EA07P-040/050 Resolution : 1280x1024 (SXGA) Pitch ( mm ) : tp Outside dimensions : 0.264 mm x 0.264 mm : RGB vertical stripes Display surface : Anti-glare Color depth : Backlight : CCFL, 4 tables, edge-light(top*2/bottom*2) Active area(WxH) : 337.9*270.3 ht Color pixel arrangement 16.7 M (6 bits + Hi -FRC) View angle (CR>10) : 160/160 (typ) Contrast ratio : 700:1 (typ) White luminance : 300 nits (typ) Color gamut : 72% (typ) Gate IC : Source IC : Response time : 6ms 102 HUDSON 8 AUO M170EG01 VD Resolution : 1280x1024 (SXGA) Outside dimensions : Pitch ( mm ) : 0.264 mm x 0.264 mm Color pixel arrangement : RGB vertical stripes Display surface : Anti-glare type, Hardness 3H Color depth : Backlight : CCFL Active area(WxH) : 337.9*270.3 View angle (CR>10) : 160/160 (typ) Contrast ratio : 800:1 (typ) White luminance 16.7 M color (RGB 6 bits + FRC data) : 300 nits (typ) t : 72% (typ) Gate IC : Source IC : Response time : 5ms ne Color gamut el. 2.2 Scanning frequencies Hor. : 30 – 83 K Hz Video dot rate: <140 MHz Power input: 90-264 V AC, 50/60 ± 2 Hz Power consumption : : 36 W typical Functions: w. wj Ver.: 56 - 76 Hz ww (1)D-SUB analog R/G/B separate inputs, H/V sync separated, Composite (H+V) TTL level, SOG sync (2) DVI digital Panel Link TMDS inputs 0 °C - 40 °C 2.3 Ambient temperature: 3.1 Interface signals tp 1). D-Sub Analog :// 3. Electrical characteristics Input signal : Video, Hsync., Vsync 0.7 Vp-p, input impedance, 75 ohm @DC ht Video : Sync. : Separate sync Hsync Vsync TTL level , input impedance 2.2k ohm terminate Positive/Negative Positive/Negative Composite sync TTL level, input impedance 2.2k ohm terminate Sync on green video 0.3 Vp-p Negative (Video 0.7 Vp-p Positive) 2). DVI-D Digital Input signal: Single TMDS link (Three channels: RX0-/+, RX1-/+, RX2-/+) 3). Audio: NOTE 4). USB PLUG 2.0: NOTE (Positive/Negative) HUDSON 8 3.2 Interface 3.2.1 D-Sub Cable Length : 1.8 M +/- 50 mm Fix with monitor when packing, with transplant pin protective cover. Connector type : D-Sub male with DDC2B pin assignments. Blue connector thumb-operated jack screws Pin assignment: Signal Red 2 Green/ SOG 3 Blue 4 Sense (GND) 5 Cable Detect (GND) 6 Red GND 7 Green GND 8 Blue GND 9 DDC +3.3V or +5V 10 Logic GND 12 13 14 el. Sense (GND) Bi-directional data H/H+V sync V-sync Data clock ww 15 w. wj 11 ne 1 t Pin No. 3.2.2 DVI Cable :// The input signals are applied to the display through DVI-D cable. : 1.8 M +/- 50 mm tp Length. . : DVI-D male with DDC-2B pin assignments White connector thumb-operated jackscrews ht Connector type 103 104 HUDSON 8 Description 1 T.M.D.S. data2- 2 T.M.D.S. data2+ 3 T.M.D.S. data2 shield 4 No Connect 5 No Connect 6 DDC clock 7 DDC data 8 No Connect 9 T.M.D.S. data1- 10 T.M.D.S. data1+ 11 T.M.D.S. data1 shield 12 No Connect 13 No Connect 14 +5V Power 15 Ground (for +5V) 16 Hot plug detect 17 T.M.D.S. data0- 18 T.M.D.S. data0+ 19 T.M.D.S. data0 shield 20 No Connect 21 No Connect 23 el. w. wj T.M.D.S clock shield T.M.D.S. clock+ T.M.D.S. clock- :// 24 ww 22 ne Pin No. t Pin Assignment: tp 3.2.3 USB Cable (High Full Speed): NOTE 3.2.4 Audio cable (suppliers to input the jack and cable color): NOTE ht 3.3 Timing requirement Factory Preset mode definition : 1. Perfect FOS while presenting all required timings. 2. Required timings need to be specified in User's Manual Preset mode definition : 1. Need to support those timings. 2. Perfect FOS after auto adjustment. User mode 1. Can save those timing that not in Preset mode and can be showed (not over scalar or Panel spec.) 2. It needs to reserve the 12 timings space in memory size. HUDSON 8 3.3.1 Mode storing capacity Factory preset modes : 11 Preset modes : 45 User define modes : 12 Note: 1. Screen displays perfect picture at 11 factory-preset modes. 2. Screen displays visible picture with OSD warning when input modes are the 45 preset modes. 3.3.2 Factory preset modes (11 modes) Factory modes and preset modes are defined in the enclosed timing table file. Item H.Freq. (KHz) Mode Resolution V.Freq. (Hz) BW(MHz) 1 31.469 IBM VGA 10H 640x350 70.086 25.175 Y 2 31.469 IBM VGA 3H 720x400 70.087 28.322 Y 3 31.469 IBM VGA 12H 640x480 59.94 25.175 Y 4 35 MACINTOSH 640x480 66.667 5 37.861 VESA 640x480 6 37.5 VESA 640x480 7 43.269 VESA 640x480 8 35.156 VESA 800x600 9 37.879 VESA 10 48.077 VESA 11 46.875 VESA 12 53.674 VESA 13 49.725 MACINTOSH 14 56.4 15 44.75 16 48.363 17 56.476 18 60.023 19 61.08 Y 72.809 31.5 Y 75 31.5 Y el. ne t 30.24 36 Y 56.25 36 Y 60.317 40 Y 800x600 72.188 50 Y 800x600 75 49.5 Y 800x600 85.061 56.25 Y 832x624 ww 74.55 57.283 Y - 960x720 75 N - 960x720 60 N VESA 1024x768 60.004 65 Y VESA 1024x768 70.069 75 Y VESA 1024x768 75.029 78.75 Y IBM XGA-2 1024x768 75.782 86.001 Y ht tp 800x600 :// w. wj 85.008 68.677 VESA 1024x768 84.997 94.5 Y 47.396 CVT 2.3MA 1280 x768 59.995 68.25 Y 22 60.289 CVT 2.3MA 1280 x768 74.893 102.25 Y 23 53.7 1152x864 60 81.624 Y 24 63.851 VESA 1152x864 70.012 94.5 Y 25 67.5 VESA 1152x864 75 108 Y 26 68.681 MACINTOSH 1152x870 75.62 100 Y 27 61.82 SUN WS 1152x900 65.977 92.978 Y 28 71.713 SUN WS 1152x900 76.047 105.561 Y 29 60 VESA 1280x960 60 108 Y 20 21 105 HUDSON 8 106 75.171 VESA 1280x960 75.021 129.895 Y 31 63.981 VESA 1280x1024 60.02 108 Y 32 71.691 SUN WS 1280x1024 67.189 117 Y 33 76.754 DOS/V 1280x1024 72.001 129.56 Y 34 79.976 VESA 1280x1024 75.025 135 Y 35 81.13 SUN WS 1280x1024 76.107 135 Y 36 91.146 VESA 1280x1024 85.24 157.5 Y 37 44.772 - 1280x720 59.855 74.5 Y 38 56.456 - 1280x720 74.777 95.75 Y 39 64.744 CVT-reduced 1400x1050 59.948 101 N 40 82.278 bl CVT ki 1400x1050 74.867 156 N 41 93.881 CVT 1400x1050 84.96 179.5 N 42 55.469 VESA-reduced 1440x900 59.901 88.75 Y 43 55.935 bl ki VESA d 1440x900 59.887 106.5 Y 44 70.635 VESA 1440x900 74.984 136.75 Y 45 75 VESA 1600x1200 60 162 Y 46 66.587 CVT 2.3MA-R 1920x1080 59.934 (for 138.5 Y 47 65.29 CVT1.76MW 1680x1050 DVI D) 59.954 146.25 Y 48 64.674 CVT1.76MW-R 1680x1050 59.883 119 Y 49 74.038 CVT 2.3MA-R 1920x1200 59.95 (for 154 Y 50 61.648 1600x1000 DVI D) 59.91 108.5 Y ne el. w. wj ww t 30 3.3.3 Software control functions via OSD / control adjustable functions: Please refer to following Hudson8 OSD definitions No: Exit :// Reset - Yes: Auto adjustment for displaying timing mode and recall factory preset tp OSD Languages –8 Power On Logo: Power On Æ show up Philips logo 3 second Æ change to input signal ht This picture is reference only. The official drawing will send out by PM. HUDSON 8 ht tp :// ww w. wj el. ne t OSD Tree 3.4 Horizontal scanning Sync polarity : Positive or Negative Scanning frequency : 30 – 83 K Hz 3.5 Vertical scanning Sync polarity : Positive or Negative Scanning frequency : 56 - 76 Hz 107 108 HUDSON 8 3.6 Power input connection Power cord length : 1.8 M Power cord type : 3 leads power cord with protective earth plug. 3.7 Power management The monitor must comply with the Microsoft On Now specification, and meet EPA requirements. Mode HSYNC VSYNC Video Power-cons. Indication Rec. time Power-On On On active 36W typical Green LED -- Off Off Off blanked <1W Amber LED <3s N/A <1W LED Off DC Power Off 3.8 Display identification t In accordance with VESA Display Channel Standard Ver.1.0 and DDC 2B capability ne 3.9 Display identification In accordance with DVI requirement (DDWG digital Visual Interface revision 1.0) el. use DDC-2B, DDC/CI, and EDID V1.3 3.10 USB support: NOTE w. wj 3.11 DDC/ CI Support In accordance with VESA DDC/CI and MCCS ver.2.0, the monitor should be workable with Protrait Display Tune at least. 3.12 EDID Data for EDID & .inf file ww 1 User visible strings on .inf file Philips 170S (17inch LCD MONITOR 170S8) PHL 3 Product ID, "xxxx" 4 codes MSB(byte 12): 08 :// 2 Manufacturer ID ( EDID data) LSB (byte 11): 56 1280x1024 5 Horizontal Frequency Range 30~83 KHz 6 Vertical Frequency Range 56~76Hz 7 Monitor Name (13 characteries max.) Philips 170S8 ht tp 4 maximum resolution 3.13 Hot-key definition Key Key Press Time OSD Timeout Monitor Controls Lock OK(Menu) 6 sec (lock/unlock) 3 sec Factory Mode AUTO+ OK+ Power On Keep pressing when power on Demo mode for smart image Smart Image Key 3 sec (Enter/Quit) DDC/CI On/OFF for VISTA MENU+DOWN 6 sec (lock/unlock) 3 sec HUDSON 8 109 3.14 Smart contrast (Dynamic contrast ratio) Smart Contrast is a kind of dynamic backlight control. This function changes the panel backlight dynamically according to the frame brightness histogram. the contrast ratio has to be 3000:1(typical). 3.15 Smart Image 3.15.1Smart Image OSD outlook (Economic Æ Economy) ne t 3.15.2Smart Image OSD outlook el. 3.15.2.1 Position Pressing the “Smart Image” button, the position is in the bottom center of the screen. w. wj 3.15.2.2 Smart Image Logo & Banner As design to keep the Light Frame logo at header but change the name to “SmartImage” with bitmap format. 3.15.2.3 Icon of each profile Each profile will use text instead of icon & text before. 3.15.2.4 User Operation Procedure ww A. 5 different modes are switched to next in the sequence from 1 to 5 then back to 1 while pressing this button: 1) Office Work 2) Image Viewing 3) Entertainment 4) Economy 5) Off. The default setting is ‘Off”. B. The FOS optimization will be changed in real time by which profile to be scrolled, users don’t need to :// confirm to enable. C. The Smart Image OSD will remain on screen for 5 seconds after user last action. Or user can also press [MENU] to close the Smart Image OSD immediately. tp D. Except using [MENU] button to scroll down profile. If Smart Image OSD already launched onscreen. User is allowed to use up/down key to choose profile and press [MENU] to confirm selection and close the Smart ht Image OSD. E. If the model has multiple inputs including VGA and DVI, each input has their own set of profiles. When user switch input, the profile to be applied will also change. F. Each input can memorize their individual “Smart Image” profile status. For example, Smart Image is on with “Office” profile at VGA input, when switch to DVI input, the Smart Image will revert to previous profile of DVI. In the input switching process the “Smart Image” OSD will also show up to present which profile is selected if “Smart Image” is enabled at that input. The Smart Image status will also be stored after the monitor is resumed from AC on/off or power switch on/off. HUDSON 8 110 3.15.2.5Linkage between Smart Image OSD and main OSD A. Settings within main OSD have linkage with Smart Image OSD. i. Brightness ii. Contrast iii. Color Temperature B. Because each preset profiles will define default setting of these 3 parameters. Users can understand what is the value of that in preset profile by open the main OSD. C. When any SmartImage Lite profile had been enabled. The parameters in main OSD are still available for user to adjust. But these adjustments are temporary only. If users switch to another profile and then go back. The setting in main OSD will show preset values of that Smart Image profile enabled. 3.15.2.6 Profile Definitions (system integrators to input at design stages) A. Office Work t i Purpose: Design for general office application, like word processing, Spreadsheet and email. The screen is ne dominated by text. ii. Enhancement point: bring value. 2. Color temperature remains in 6500°K. 4. Smart Response set to “Off”. 5. Smart Contrast set to “Off”. B. Entertainment w. wj 3. Brightness level should be 70%. el. 1.A little sharpness for increasing the details of e.g. an excel grid. No other type of enancement as it won't dominated by video. ii Enhancement Point: ww i. Purpose: Design for video application, Like Microsoft Media Player or Real Player. The screen is 1. Dynamic contrast enhancement by histogram analysis (DLC) should be implemented. :// 2. Sharpness enhanced 90%. 3. Color enhancement set as the same with Video. 4. Color temperature set to 7500° (Based on final PQ settings) (if higher) tp 5. Brightness level sets to maximum. 6. SmartResponse set to “High”.(N/A for this model) ht 7. Gamma Table turn off to achieve 8. Fastest response time. (N/A for this model) 9. Smart Contrast set to “On” C. Image Viewing i. Purpose: Design for image viewing application, especially in slide show. The screen is dominated by picture. Powerpoint presentation could use this profile also. ii. Enhancement Point: 1.Dynamic contrast enhancement by histogram analysis (DLC) should be off. 2. Sharpness and color to be enhanced 75%. 3. Color temperature 6500°K 4. Brightness level sets to maximum. 5. Smart Response set to “Off”. (N/A for this model) 6. Smart Contrast set to “Off”. HUDSON 8 111 D. Economy i.Purpose: Adjust brightness level for reducing power consumptions ii.No optimization by Smart Image. iii.Design: 1. Brightness level set to 70%, a little higher brightness level than laptop PC, fine tune brightness level before DVT exit. 2. Color temperature set to 6500K. 3. Gamma Table is turn on. E. Off i. Purpose: No optimization by SmartImage. ii. Design: 1. This will follow user OSD setting. If any change by user, it will be saved. When switch back from other t SmartImage profiles, it will go back to last saved setting. 3.15.2.7Demo mode A. Purpose: Built-in demo mode for sales in-store demo. el. B. Design: ne 2. Gamma Table is turn on to reduce bad color tracking. i. Dynamically split screen to 2 vertical frames with one vertical white line. The line width is 2 pixels. The w. wj left frame will be enhanced by SmartImage and right frame remains original performance. ii. There is OSD showing “SmartImage On” in left frame and “SmartImage Off ” in right frame. iii. The OSD word color is white with transparent background. C. The demo profile will be “entertainment profile setting. D. Hot keys to trigger: ww Press [SmartImage] 3 seconds or more to trigger the demo mode. When demo mode is On, press 3 seconds or more to turn off the demo mode. When the demo mode is enabled, the blue LED will flash until demo mode disabled.(N/A for this model) :// 4. Visual characteristics 4.1 Test conditions tp Unless otherwise specified, this specification is defined under the following conditions. (1) Input signal : As defined in 3.3, 1280 x 1024 ht non-interlaced mode (1280 x 1024@60Hz 108MHz), signal sources must have 75 ohm output impedance. (2) Luminance setting : controls to be set to 300 nits (typical) with full screen 100 % duty cycle white signal (3) Warm up: more than 30 minutes after power on with signal supplied. (4) Ambient light: 400 -- 600 lux. (5) Ambient temperature: 20 ± 5 °C 4.2 Brightness Follow Panel specification. 4.3 Image size Actual display size 337.9 x 270.3 mm 112 HUDSON 8 4.4 Brightness uniformity Set contrast at 100% and turn the brightness at 100%. Apply the Fig 1, it should comply with the following formula: B_min X 100% >75% B_max Where B_max =Maximum brightness, B_min = Minimum brightness 4.5 Check Cross talk (S) Apply Pattern 2. Set contrast and brightness at 100 %. Measure YA. Then output Pattern 3 and measure YB. ⎯⎯⎯⎯⎯⎯⎯⎯⎯ ne ABS ( YA - YB ) t the cross talk value : X 100% 1.5 % el. YA < w. wj 4.6 White color adjustment There are seven factory preset white color 11500K, 9300K, 8200K, 7500K, 6500K, sRGB, 5000K Apply full gray64 pattern, with brightness in 100 % position and the contrast control at 50 % position. The 1931 CIE Chromaticity (color triangle) diagram (x ,y) coordinate for the screen center should be: ww Product specification CIE coordinates x = 0.272 ± 0.02 y = 0.283 ± 0.02 :// 11500K (x,y) tp 9300K ht 8200K 7500K 6500K/sRGB sRGB 5000K x = 0.283 ± 0.02 y = 0.297 ± 0.02 x = 0.292 ± 0.02 y = 0.307 ± 0.02 x = 0.299 ± 0.02 y = 0.315 ± 0.02 x = 0.313 ± 0.02 y = 0.329 ± 0.02 x = 0.313 ± 0.02 y = 0.329 ± 0.02 x = 0.346 ± 0.02 y = 0.359 ± 0.02 HUDSON 8 Production alignment spec. CIE coordinates (x,y) 11500K x = 0.272 ± 0.005 y = 0.283 ± 0.005 9300K x = 0.283 ± 0.005 y = 0.297 ± 0.005 8200K x = 0.292 ± 0.005 y = 0.307 ± 0.005 7500K x = 0.299 ± 0.005 y = 0.315 ± 0.005 6500K/sRGB x = 0.313 ± 0.005 y = 0.329 ± 0.005 y = 0.329 ± 0.005 5000K x = 0.346 ± 0.005 CIE coordinates 9300K w. wj Quality Inspection specification: el. y = 0.359 ± 0.005 t x = 0.313 ± 0.005 ne sRGB (x,y) x = 0.283 ± 0.015 y = 0.297 ± 0.015 x = 0.313 ± 0.015 ww 6500K/sRGB y = 0.329 ± 0.015 sRGB x = 0.313 ± 0.015 tp :// y = 0.329 ± 0.015 5. Mechanical characteristics ht 5.1 Cosmetic - Philips ID 5.2 Mechanical data files - ProE files required 5.3 Location of Philips logo - Per Philips make-up sheet 5.4 Gap between panel and front bezel < 0.8 (typ) mm 5.5 Location of Control icons - Per Philips Graphic sheet 5.6 Color for resin/paint - Per Philips make-up sheet 5.7 Resins z RoHS required z WEEE required. z Resin type/selection refer to Project Book Section 7.2 Plastic material. 113 HUDSON 8 114 5.8 If paint is used z RoHS required z WEEE require z If new painting type need to implement, refer to UN-D 1235. 5.9 Plastic mold tooling z Tooling to be designed to minimize cosmetic defects induced by molding process (sink, blush, weld lines, gate marks, ejector marks, etc.). Refer to “TYV61-90007”. z Painting to cover up cosmetic defects due to molding is strongly discouraged. 5.10 Plastics flammability All Plastics to be Flame Retardant UL 94-V0 or Better (if monitor weighs less than 18kg; UL94-V0 is OK). z Base / Pedestal to be Flame Retardant UL 94-HB. z All major plastic parts (bezel, back cover, base) need to be molded from same resin. z ABS V0 is allowed to implement in China region for monitor body major plastic parts t z Plastic resin type selection should be referred to “TY R83-2-9002-1”s. 5.11 Texture/Glossing of housing el. z ne (bezel, back cover, base). The texture area and texture no should follow Philips make-up sheet. z The exterior surfaces shall have a uniform texture. z Philips must approve the mold texturing. z Detail document for texture refer to “UN-D249”, “UN-D 600”. z < = 20 gloss units w. wj z 5.12 Tilt and swivel base Tilt angle -5 ° +2/- 0 ° (forward) : ww z +20 °+3/-0 ° (backward) Swivel angle : NA z High Adjustment : NA z Portrait Display : NA tp 5.13 Kensington Lock :// z Must meet Kensington_slot.spec “TYE-M0004”. z MMD request metal plate in Kinsington hole. 5.14 Label ht z z Regulatory label / Carton label should follow Philips requirement. z China RoHS label z Detail document refer to Philips Engineering Reference Book. 5.15 Product dimension / Weight (Refer to SHT 191 ) HUDSON 8 z Unit dimension z Packed unit dimension : 482mm(W) * 189mm(H) * 488 mm(D) for WW 115 : 403mm (W) * 392.5 (H) * 171mm(D) : 490mm(W) * 191mm(H) * 497 mm(D) for China z Net weight : 4.6Kg (Including I/F cable 300 g) z Gross weight : 6.0 Kg for WW : 6.1 Kg for China 5.16 Transportation Transportation standards refer to TYE-M0002. 5.16.1 Transportation packages Packaging and wrapping shall be sufficient to protect the product against damage or loss during shipment from the supplier to the destination specified in the purchase order. All packaging materials are subject to test and evaluation per TYE-M0002. The cushion material shall be constructed using EPS material. t 5.16.2 Transportation Test ne The overall test refer to TYE-M0002. Vibration, drop test should be performed at ambient temperature(20°C to 23oC) and relative humidity (40% to el. 65% ). A. Transportation test specification for all regions except China/India Package test 1. Random Vibration test 2. Drop test w. wj • 3. Cold Drop test (for design reference) • Un-package test ww 1. Half sine shock test (non operation) B. Transportation test specification for China/India • Package test :// 1. Random Vibration test 2. Drop test Un-package test 1. Sine vibration (operating) ht • tp 3. Cold Drop test (for design reference) 2. Half sine shock test (non operation) HUDSON 8 116 5.17 Pallet / Container loading Transportation standards refer to TYE-M0002. z Air shipment - z Sea container 20'(pallet/slip sheet) z Sea container 40'(pallet/slip sheet) z Sea container 40' High Cube (pallet/slip sheet) z Truck shipmentTransportation request for all region except China/India A. Air shipment B. Container loading for WW Transportation request for China and India A. Container loading for China and India t B. Truck loading ne 6. Environmental characteristics The following sections define the interference and susceptibility condition limits that might occur 6.1 Susceptibility of display to external environment - Temperature : 0 to 40 degree C - Humidity : 80% max - Altitude : 0-3658m - Air pressure : 600-1100 mBAR Storage : -20 to 60 degree C - Humidity : 95% max ww - Temperature w. wj Operating el. between external environment and the display device. : 0-12192m - Air pressure : 300-1100 mBAR :// - Altitude Note: recommend at 5 to 35°C, Humidity less than 60 % Refer to 5.15.2 tp 6.2 Transportation tests ht 6.3 Display disturbances from external environment According to IEC 801-2 for ESD disturbances 6.4 Display disturbances to external environment 7. Reliability 7.1 Mean Time Between Failures System MTBF (Including the LCD panel and CCFL) : 50,000 hrs 8. Quality assurance requirements HUDSON 8 8.1 Acceptance test According to MIL-STD-105D AQL: Control II level 0.4 (major) 1.5 (minor) (Please also refer to annual quality agreement) Customer acceptance criteria: UAW0377/00 9. Philips’ Flat Panel Monitors Pixel Defect Policy Philips’ Flat Panel Monitors Pixel Defect Policy BRIGHT DOT DEFECTS ACCEPTABLE LEVEL MODEL 3 2 adjacent lit sub-pixels 1 3 adjacent lit sub-pixels (one white pixel) 0 Distance between two bright dots 15mm 0 Total bright dot defects of all type 3 ACCEPTABLE LEVEL w. wj BLACK DOT DEFECTS el. Bright dot defects within 20 mm circle ne 1 lit sub-pixel t 170S8 MODEL 170S8 1 dark sub-pixel 5 2 adjacent dark sub-pixels 2 ww 3 adjacent dark sub-pixels (one white pixel) Distance between two black dots 1 15mm 1 Total black dot defects of all type 5 tp :// Black dot defects within 20 mm circle* ht TOTAL DOT DEFECTS MODEL Total bright or black dot defects of all type ACCEPTABLE LEVEL 170S8 5 117 118 HUDSON 8 ne t Fig 1: Measurement locations of Brightness Uniformity Fig 2: Cross talk pattern el. Gray level 46 (64 Gray level) 1/2 YA 1/2 :// ww w. wj 1/6 Fig 3: Cross talk Pattern tp Center at Gray level 0 (Black) 1/3 1/6 ht 1/3 1/3 1/2 1/3 YB 1/2 1/3 HUDSON 8 SEPARATE SYNC. VIDEO D C E HORIZONTAL B A S w. wj el. VERTICAL ne R Q t VIDEO P O ww COMPOSITE SYNC. VIDEO ht tp HORIZONTAL D :// C B A FIG-4 TIMING CHART -1 E 119 120 HUDSON 8 10. REGULATORY COMPLIANCE 10.1 Worldwide Regulatory Domain Country International Sa Standards Documents IEC60950-1:2001. Group -and national differences of all countries listed in CB Bulletin No. 107A European Low Voltage Directives 73/23/EEC and 93/68/EEC CB Report and CB certificate Declaration of Conformity t Sa Safety / EMC / Ergonomics / ne European Electromagnetic Compatibility Directive 89/336/EEC amended by the directive 93/68/EEC. EN 55024: 1998 EN 61000-3-2: 2000 w. wj E Declaration of el. EN 55022:1998 Class B Europe IEC 61000-3-3: 1994/EN61000-3-3: 1995 Conformity and Full EMC/CE test report CISPR 22:1997 Class B International EMC standard O ISO 13406-2: 2001 & prEN 50279:1998 :// ww EN60950-1:2001 tp Germany Sa ht O Sa GS-Mark / EK1-ITB 2000 EN60950-1:2001 Sweden TUV certificate TUV-ERG certificate TUV-GS certificate SEMKO certificate TCO99 O TCO 99 (TCO03) (TCO03) report + certificate Russia Sa GOST R 50377-1992 GOST certificate HUDSON 8 SABS IEC 60950 Sa UL 60950-1: 2003 UL certificate E FCC Part 15 Class B FCC ID grant O Energy Star Sa CSA C22.2 No 60950 E ICES-003 issue 3 Sa NOM-019-SCFI-1994 Sa Korean Safety Control law IEC 60950 Conformity EPA registration CSA certificate t USA Certificate of Sa ne South Africa Canada E Sa el. 1996-79,81 IEC60950 ht E label NOM certificate eK certificate MIC certificate PSB certificate GB4943-2001 tp Sa China Regulations laws: EMI 1996-78, 80. EMS :// Singapore w. wj Korea ww Mexico Statement on CCC certificate GB9254-1998; 17625.1-2003 Sa CNS-14336 (IEC 60950-1) E CNS-13438 (CISPR22) Class B Taiwan Sa = Safety E = Electromagnetic Compatibility O = Other which including recycling, energy saving, ergonomics BSMI certificate 121 122 HUDSON 8 10.2 EMC Requirements Supplier DVT EMI test result must be submitted prior to DVT samples delivery, and PVT EMI test result must be submitted again prior to PVT samples delivery, which also has to meet Philips' immunity testing specification. 10.3 RoHS Restriction on the use of certain hazardous substances. Lead, Cadmium, Mercury, Hexavalent Chromium, Polybrominated Bipheny1 (PBB) and Polybrominated Bipheny1 Ether (PBDE)(flame retardant). 10.4 WEEE Producer (Philips) responsible for retailer take back schemes and recycling. --System implemented. --Collection and recycle targets. 10.5 Ongoing Regulatory ht tp :// ww ne w. wj el. responsibility of the supplier to provide related documentation. t There's a possibility that other regulatory certificates will be required during the life of the product. It is the TELEVISION/MONITOR SAFFTY GUIDELINES FOR THE PROFESSIONAL SERVICE TECHNICIAN ne t Leakage Current Cold Check 1. Unplug the ac line cord and connect a jumper between the two prongs of the plug. 2. Turn on the power switch. 3. Measure the resistance value between the jumpered ac plug and all exposed cabinet parts of the receiver, such as screw heads, antennas, and control shafts. When the exposed metallic part has a return path to the chassis, the reading should be between 1 megohm and 5.2 megohms. When the exposed metal does not have a return path to the chassis, the reading must be infinity. Remove the jumper from the ac line cord. w. wj Fire and Shock Hazard 1. Be sure all components are positioned in such a way as to avoid the possibility of adjacent component shorts. This is especially important on those chassis which are transported to and from the service shop. 2. Never release a repaired unit unless all protective devices such as insulators, barries, covers, strain reliefs, and other hardware have been installed in accordance with the original design. 3. Soldering and wiring must be inspected to locate possible cold solder joints,solder splashes,sharp solder points, frayed leads, pinched leads, or damaged insulation ( including the ac cord).Be certain to remove loose solder balls and all other loose foreign particles. 4. Check across-the-line components and other components for physical evidence of damage or deterioration and replace if necessary. Follow original layout,lead length, and dress. 5. No lead or component should touch a receiving tube or a resistor rated at 1 watt or more. Lead tension around protruding metal surfaces or edges must be avoided. 6. Critical components having special safety characteristics are identified with ans by the Ref. No. in the parts list and enclosed within a broken line * (where several critical components are grouped in one area) along with the safety symbols on the schematic diagrams and/or exploded views. 7. When servicing any unit, always use a separate isolation transformer for the chassis Failure to use a separate isolation transformer may expose you to possible shock hazard, and may cause damage to servicing instruments. 8. Many electronic products use a polarized ac line cord (one wide pin on the plug.) Defeating this safety feature may create a potential hazard to the service and the user. Extension cords which do not incorporate the polarizing feature should never be used. 9. After reassembly of the unit, always perform an leakage test or resistance test from the line cord to all exposed metal parts of the cabinet. Also check all metal control shafts(with knobs removed), antenna terminals, handles, screws, etc. to be sure the unit may be safety operated without danger of electrical shock. 6. New picture tubes are specifically designed to withstand higher operathng voltages without creating undesirable X-radiation. It is strongly recommended that any shop test fixture which is to be used with the new higher voltage chassis be equipped with one of the new type tubes designed for this service. Addition of a permanently connected HV meter to the shop test fixture is advisable. The CRT types used in these new sets should never be replaced with any other types, as this may result in excessive X-radiation. 7. It is essential to use the specified picture tube to avoid a possible X-diation problem. 8. Most TV receivers contain some type of emergency "Hold Down" circuit to prevent HV from rising to excessive levels in the presence of a failure mode. These various circuits should be understood by all technicians servicing them, especially since many hold down circuits are inoperative as long as the receiver performs normally. el. Safety Checks After the original service problem has been corrected,a complete safety check should be made. Be sure to check over the entire set, not just the areas where you have worked. Some previous servicer may have left an unsafe condition,which could be unknowingly passed on to your customer. Be sure to check all of the following: * Broken line 0.15 uF 1500 ohm, 10W WATER PIPE EARTH GROUND Leakage Current Hot Check 1. Do not use an isolation transformer for this test. Plug the completely reassembled receiver directly into the ac outlet. 2. Connect a 1.5k, 10w resistor paralleled by a 0.15uf. capacitor between each exposed metallic cabinet part and a good earth ground such as a water pipe, as shown above. 3. Use an ac voltmeter with at least 5000 ohms volt sensitivity to measure the potential across the resistor. 4. The potential at any point should not exceed 0.75 volts. A leakage current tester may be used to make this test; leakage current must not exceed 0.5 milliamps. If a measurement is outside of the specified limits, there is a possibility of shock hazard. The receiver should be repaired and rechecked before returning it to the customer. 5. Repeat the above procedure with the ac plug reversed.( Note: An ac adapter is necessary when a polarized plug is used. Do not defeat the polarizing feature of the plug.) ww Implosion 1. All picture tubes used in current model receivers are equipped with an integral implosion system. Care should always be used, and safety glasses worn,whenever handling any picture tube. Avoid scratching or otherwise damaging the picture tube during installation. 2. Use only replacement tubes specified by the manufacturer. TO INSTRUMENTS EXPOSED METAL PARTS ht tp :// X-radiation 1. Be sure procedures and instructions to all your service personnel cover the subject of X-radiation. Potential sources of X-rays in TV receivers are the picture tube and the high voltage circuits. The basic precaution which must be exercised is to keep the high voltage at the factory recommended level. 2. To avoid possible exposure to X-radiation and electrical shock, only the manufacturer's specified anode connectors must be used. 3. It is essential that the service technician has an accurate HV meter available at all times. The calibration of this meter should be checked periodically against a reference standard. 4. When the HV circuitry is operating properly there is no possibility of an xradiation problem. High voltage should always be kept at the manufacturer's rated value-no higher - for optimum performance. Every time a color set is serviced, the brightness should be run up and down while monitoring the HV with a meter to be certain that the HV is regulated correctly and does not exceed the specified value. We suggest that you and your technicians review test procedures so that HV and HV regulation are always checked as a standard servicing procedure, and the reason for this prudent routine is clearly understood by everyone. It is important to use an accurate and reliable HV meter. It is recommended that the HV recorded on each customer's invoice, which will demonstrate a proper concern for the customer's safety. 5. When troubleshooting and making test measurements in a receiver with a problem of excessive high voltage, reduce the line voltage by means of a Variac to bring the HV into acceptable limits while troubleshooting. Do not operate the chassis longer than necessary to locate the cause of the excessive HV. Picture Tube Replacement The primary source of X-radiation in this television receiver is the picture tube. The picture tube utilized in this chassis is specially constructed to limit X-radiation emissions. For continued X-radiation protection, the replacement tube must be the same type as the original, including suffix letter, or a Philips approved type. Parts Replacement Many electrical and mechanical parts in Philips television sets have special safety related characteristics. These characteristics are often not evident from visual inspection nor can the protection afforded by them necessarily be obtained by using replacement components rated for higher voltage, wattage, etc. The use of a substitute part which does not have the same safety characteristics as the Philips recommended replacement part shown in this service manual may create shock, fire, or other hazards WARNING : Before removing the CRT anode cap, turn the unit OFF and short the HIGH VOLTAGE to the CRT DAG ground. SERVICE NOTE : The CRT DAG is not at chassis ground.
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