60290000S_FA705A_Mass_Storage_Controller_CE_Manual_Aug1976 60290000S FA705A Mass Storage Controller CE Manual Aug1976
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@:~ CONT"OL DATA CO~OR{\TION DAT~ FA705A MASS STORAGE CONTROLLER CONTROL GENERAL DESCRIPTION OPERATION INSTALLATION AND CHECKOUT THEORY OF OPERATION DIAGRAMS MAINTENANCE MAINTENANCE AIDS PARTS DATA WIRE LISTS EQUATION SUMMARY CUSTOMER ENGINEERING MANUAL REVISION RECORD REVISION 01 DESCRIPTION Preliminary edition. (2-19-70) 02 Pages 5-3 and 5-47 revised. (3-16-70) A Manual released; equipment level FA705-A03. (9-15-70) B Manual revised; includes Engineering Change Order 26338. Pages 8- 3 through 8- 3 0 revised. (5-5-71) C (5-5-71) Manual revised; includes Field Change Order 25999, equipment level FA705-A01 through A05. Pages 2-2,2-5, 5-i, 5-ii, 5-iv, 5-v, 5-6, 5-7, 5-16,5-17, 5-18,'q-19, 5,-24, 5-29, 5-44,5-45,5-47,7-1,7-2,7-3,7-5,9-7,9-8,9-9,9-11, 9-16; 9-46, 9~47, 5-3~, 5-40,5-41,5-43, 9-56, 9-59, 9-60, 9-69, 9-70, 9-71,9-72,9-75,9-76,9-77,9-80,9-82,9-83,9-87, 9-88, 9-96, 9';'10.0,9-107, 9-108, 9-109, 9-111, 9-112, 9-113,10-5,10-6,10-7,10-8,10-21,10-24,10-29, 10-30, 10-34, 10-48,.10-51, 10-53, 10-59, 10-60, 10-61,10-64,10-67,10-70,10-73,10-74,10-75, 10-81,10-83,10-84,10-88,10-106,10-117,10-130, 10-133,10-136,10-137, and 10-141 revised. D Manual revised; includes Engineering Change Order 26941. Pa.ge 8-3 revised. (5-5-71) E (5-5-71) F (5-5-71) G (1-20-72) Manual revised; includes Field Change Order 26676, equipment level FA 705-A01 through A06. Pages 5-iii, 5-8, 5-9, 9-63, 9-64, 9-76, 9-113, 10-36, 10-37, 10-38, 10-39, and 10-61 revised. Manual revised; includes Field Change Order 26574, equipment level FA 705-A01 through A07. Page 5-49 revised. Manual revised, includes Field Change Order 27484. and 10-133 revised. H Pages 5-2,5-3, 5-4, 5-5, 5-6,5-7,5-24, 5-25, 9-75,9-79,9-102,9-103,9-106,9-112,10-59,10-67, 10-119, 10-122, 10-124, 19-125, 10-128, 10-129, Correlation Sheet added. Manual revised; includes Engineering Change Order 27116. Page 8-8 revised. (1-20-72) J Manual revised; includes Field Change Order 28097. Page 5 -4 9 is revised. Manual revised; includes Field Change Order 31495. Pages 5-44, 5-45. 9-108, 10-69. and 10-132 (11-3-72) K (11-3-72) L are revised. Manual revised; includes Engineering Change Order 32024. Page 5-49 is revised. (11-3-72) M (11-3-72) N (11-3-72) p Manual revised; includes Field Change Order 3230l. Pages 5-6, 5-7, 9-78, 9-108, 9-111, and 10-143 are revised. Manual revised; includes Field Change Order 32524. Pages 5-26, 5-27, 5-28, 5-29, 9-72, 9-86. 9-113, 10-52. 10-53, 10-68, 10-80, and 10-83 are revised. Manual revised; includes Engineering Change Order 32868, publications change only. Publication No. 60290000 REVISION LETTERS I, 0, Q AND X ARE NOT USED Address comments concerning this manual to: © 1970, 1971, 1972, 1974,1976 by Control Data Corporation Printed in the United States of America Control Data Corporation Publications and Graphics Division 4201 North Lexington Avenue St. Paul, Minnesota 55112 or use Comment Sheet in the back of this manual. New features, as well as changes, deletions, and additions to information in this manual are indicated by bars in the margins or by a dot near the page number if the entire page is affected. A bar by the page number indicates pagination rather than content has changed. ii REVISION RECORD (CONT/D) DESCRIPTION REVISION (11-3-72) R 01-14-74) Page vi and 3 -1 is revised. Pages 5-:--51, 5-53, 7-18 through 7-27 are added. Manual revised; includes Field Change Order 35602. 10-123, 10-129, 10-144 and 10-145 are revised. Pages 5-viii, 5-7, 9-103, 9-106, 9-111, Miscellaneous changes are made to pages 5-51 and 5-53. S (8-20-76) Manual revised; includes Engineering Change Order 37388. 5-25 5-30 5-31 5-33 and 7-27 are revised. 5-35 5-41 5-43 7-18 7-19 Pages viii 7-20 7-21 5-3 7-22 5-15 7-23 5-19 7-24 5-21 7-25 5-23 7-26 Page 3 -6 is added. Publication No. 60290000 ii-a/ii-b MANUAL TO EQUIPMENT LEVEL CORRELATION SHEET EQUIPMENTS SHEET_1_O,_1 MANUAL FCO OR ECO REV FA705-A G FC027484 A09 H EC027116 A09 J FC028097 AIO K FC03l495 All L EC032024 All M FC032301 A12 N p FC032524 A13 EC032868 A13 R FC035602 A14 S EC037388 A14 60290000 S , iii/ iv PREFACE This manual is intended to be used by customer engineering in maintaining the CONTROL DATA ® FA 705 Mass Storage Controller and to serve as an aid in understanding the operation of the equipment. It is assumed that the reader is familiar with the Control Data 3000 Series Computer Input/ Output Specifications Manual and the Control Data 3553 and Mass Storage Controller Reference Manual. The controller operates the following multiple disk drives (MDD) and disk files: Equipment No. 60290000 Product No. BM102 MDD (dual channel, two disk units) 841 MDD BM104 MDD (dual channel, one disk unit) 841 MDD BM101 MDD (single channel, two disk units) 841 MDD BM103 MDD (single channel, one disk unit) 841 MDD BH410 Disk File (dual channel, two disk units) 821- 2 Disk File BH408 Disk File (dual channel, one disk unit) 821-1 Disk File S v/vi I CONTENTS 1. GENERAL DESCRIPTION Functional Characteristics 1-1 Physical Characteristics 1-1 1-3 Cabinet Dimensions and Data Power Requirements 2. 1-3 Physical Dimensions 3-1 Power Requirements 3-1 Power Connections 3-1 Cabling and Connectors 3-1 Cooling Requirements 3-1 Environmental Considerations 3-1 OPERATION 4. Switches and Indicators Signal Definitions 4-1 Control Panel (Key Switch) 2-1 Control A and Control B 2-1 Data Channel Interface 4-1 Track 2-1 Storage Unit Interface 4-1 Cylinder 2-1 File 2-1 Repeat 2-3 Symbol Index 5-i Seek Address 2-3 Key to Logic Symbols 5-ix Master Clear 2-3 Block Diagram 5-1 Device Select 2-3 Channel A Interface 5-3 Register Select 2- 3 Channel B Interface 5-5 Connect Control 5-7 2-4 Function Translation, and MC 5-9 5-11 Register Display Indicator Switches 2- 3 Defective Track 5. DIAGRAMS Data 2-4 Data Bus Header 2-4 Signal Interface "OR" and Interrupt 5-13 Write Lockout 2-4 Main Timing 5-15 Repeat Seek 2-5 Address Register 5-17 Repeat Seek Operate 2-5 Seek and Address Increment Chains 5-19 2-5 Sector Verify and Time Out 5-21 Manual Operation Power 2-6 Write Sequence and Compare 5-23 Loading and Unloading Procedures 2-7 Read and Manual Sequences 5-25 Ready State 2-7 Busy, Positioner Ready, Address End of Operation, Address Error 5-27 End of Operation/End of Record 5-29 Buffer Register and Transmit Register 5-31 Shift Re gister 5-33 Cyclic Encoder 5-35 Procedures for Writing Address Header 2- 8 Procedures for Writing Data 3. THEORY OF OPERATION 2-1 2-9 INSTALLATION AND CHECKOUT Crating and Uncrating 60290000 S 3-1 vii I Counter 1 5-37 Counter 2 5-39 Counters 1 and 2, Control and Translations 5-41 Select Compare, Seek Interrupt 5-43 Address and Control Bus, and Interface 5-45 Control Panel Interface (Switches) 5-47 Power Wiring 5-49 6. i:. MAINTENANCE Tools and Test Equipment Required for Maintenance 6-1 Pulse Shaper, Converter Type 6AFH Power Loss Detector, Type 6AGH 7-17 Increment Address 7-18 Load Addre ss 7-19 Write Header 7-20 Read Header 7-21 Compare 7-22 Compare Operation 7-23 Write 7-24 Seek 7-25 7-26 7-27 Maintenance Panel 6-1 Read, Read Checkword, Checkword Verify (Part 1) Controller Preventive Maintenance Index 6-1 Read, Read Checkword, Checkword Verify (Part 2) 7. MAINTENANCE AIDS Chassis Map 7-1 Special Cards 7-9 Discriminator, Type BDM 7-9 Line Receiver, Type BGM 7-11 Oscillator Shaper, Type BFM 7-13 8. PARTS DATA 9. WIRE LISTS 10. - 7 -15 EQUATION SUMMARY FIGURES 1-1 Subsystem Configurations 1-2 1-2 Chassis Layout, Rear View 1-4 2-1 Maintenance Panel and Controls 2-1 3 -1 Power Connections 3-2 3-2 Connector Panel 3-3 3-3 3-4 3-5 Typical System Signal Cabling - MDD 3-4 Typical System Signal Cabling - Disk File 3-5 Typical Subsystem Signal Cabling - MDD and Disk File 3-6 TABLE 1-1 viii Input Power Requirements 1-3 60290000 S SECTION 1 . GENERAL DESCRIPTION GENERAL DESCRIPTION FUNCTIONAL CHARACTERISTICS The CONTROL DATA FA705 Mass Storage Controller is an electrical and logical interface between a 3000 Data Channel and the storage units. Figure 1-1 shows two subsystem configurations. Up to eight MDD or disk file units, in any combination, can be connected to the controller. Two controllers can be used as shown in Figure 1- 1 (maximum subsystem) but only with dual channel disk units. The main functions of the controller are: 1. Assembly/Disassembly a. Assembly of the serial bit stream from disk unit into 12- bit bytes during Read operations. b, Disassembly of 12- bit bytes from the data channel into a serial format during Write operations. 2. Addressing - The controller stores a 24- bit address, sent from the data channel, and transmits portions of this address to a disk unit to select a cylinder, track, and sector. During Read and Write operations the controller automatically increments the address so that these operations progress sequentially through all sector addresses within a disk unit. 3. Unit Selection - The controller selects one of the eight possible disk units for an operation, 4. Error Detection - The controller provides parity checking for the data channel interface. It also contains a cyclic encoder for checking data read from the disk units. PH YSICAL CHARACTERISTICS Figure 1- 2 shows the major components in the controller. Standard 3000 logic cards are used throughout. 60290000 A 1-1 12-BIT DATA PATH DATA CHANNEL SERIAL BIT STREAM \ ~---L ~ CONTROLLE~ r MINIMUM DATA CHANNEL ~ DISK UNIT ~ ~ DISK UNIT ~ 0-. DISK UNIT ~ ~ DISK UNIT ~ DISK UNIT - DISK UNIT ~ ~ ~ • CONTROLLER - ~ DATA CHANNEL ~ ... ~ DISK UNIT ~ DISK UNIT ~ STANDBY DISK UNIT MAXIMUM Figure 1-1. 1- 2 J l___ DISK U_N_'_T_ _ SUBSYSTEM r--4 ,,~ { ~r" DATA CHANNEL . CONTROLLER --DATA CHANNEL ~ .... .; - SUBSYSTEM Subsystem Configurations 60290000 A CABINET DIMENSIONS AND DATA Height 76 inches Width 50 inches Depth 31 inches Weight 950 lbs. Heat Dissipation 6100 BTU /hr . Operatlng Temperature L ,7 l' vi vi. (~ ,; ' I 1\ 50°F - 90°F Shipping and Storage Temperature -30°F - 125°F Humidity During Operation 20% - 80% Humidity While Not Operating 5% - 95% ~:, ~:, PO\VER REQUIREMENTS The 60-Hz power should be provided by a 2-wire system (hot and neutral) and a separate ground line. The 400- Hz power should be provided by a 4-wire system (three phases and neutral) and a separate ground line. TABLE 1-1. Refer to Table 1- I, INPUT POWER REQUIREMENTS Voltage Frequency Current 120 single phase 60 Hz 6.7 amperes Blowers 400 Hz 3,3 amperes Logic Power Supply 208 40 ~:'Providing 60290000 DC Use Termina tor Power that there is no condensation A 1- 3 A ROW MAINTENANCE RELAY PANEL n B C C 0 D LOGIC POWER E E SUPPLY (SWINGS OUT CHASSIS I F CHASSIS F 2 G G ON HINGES TO EXPOSE CHASSIS) r- H I J VPOWER DISTRIBUTION BOX K L I IJ7 IJ6 IJ5 IJ4 IJ3 IJ I 0 0 0 0 0 0 BLOWER Figure 1- 2. 1-4 II 0000 0000 2J I 2J2 2J3 2J4 2J52J6 2J7 2J8 I ~ I BLOWER Chassis Layout, Rear View 60290000 A SECTION 2 OPERATION OPERATION SWITCHES AND INDICA TORS This part lists the switches and indicators on the maintenance panel (Figure 2-1) and other port~ons of the controller. CONTROL PANEL (KEY SWITCH) For normal programmed operation, this switch should be OFF. This switch is used to activate other switches on the maintenance panel. CONTROL A AND CONTROL B CONTROL A and CONTROL B are two sets of switches and indicators which provide individual control for each data channel physically connected to the controller. Each set consists of a nine-position rotary switch which permits varying the equipment (controller) designation from 0-7 or STANDBY, and a CONNECTED, RESERVED, and PARITY ERROR indicator which lights when the associated condition exists in the controller. TRACK This switch/ indicator selects Track mode wherein the remainder of the track designated by the content of the Address register is operated upon, starting at the address held in the Address register. Operation ceases at the end of the selected track. CYLINDER This switch/ indicator selects Cylinder mode wherein the remainder of the cylinder designated by the content of the Address register is operated upon, starting at the address held in the Address register. Operation ceases at the end of the selected cylinder. FILE This switch/indicator selects File mode wherein the remainder of the file designated by the content of the Address register is operated upon, starting at the address held in the Address register. When using this switch, the REPEAT switch should be off since a file will not be repeated automatically. 60290000 A 2-1 WRITE @ DATA WRITE HEADER\ft) READ READ WRITE DEFECTIVE~ ~ TRACK OFF ADDRESS UPPER DATA \ LOWER / STAT US ~N" REGISTER SELECT 000 000 0 2 II 28 2 7 2 10 2 9 26 o 0 5 2 2 4 2 3 2 2 2 I 2 o CLEAR WRITE WRITE LOCKOUT ~ W CONNECT ED o OFF DISI( PACI< PARITY ERROR RESERVED o 0 CONNECTED o "ESERVED o PARITY ERROR o DISI< O'~'LE 3 4 5 ~' r:?\ ' ~ DEVICE SELECT ON STBY CONTROL A CONTROL B KEY SWITCH CARD LOCATION 1005 REPEAT SEEK r- q 00 REPEAT SEEK OPERATE HEAD LIMIT S S q0 ~ q OZ UNUSED Figure 2-1. 2-2 Maintenance Panel and Controls 60290000 C REPEAT This switch/ indicator causes the selected mode of operation (Track Cylinder or File) to be continuously repeated. This switch should not be used by the programmer / operator. is meant for maintenance purposes only. When this switch is used, the controller does not stop for any abnormal conditions unless it is unable to continue. switch should be off. It When in File mode, this A File will not be repeated. SEEK ADDRESS This switch/ indicator initiates a Seek operation on the selected unit to the address indicated by the content of the Address register. On completion of the Seek, the selected operation commences. MASTER CLEAR This switch/ indicator causes a Master Clear in the controller. If a Master Clear is performed while a Write operation is in progress, operation 'ceases immediately. That sector now contains information which will generate a checkword error if a Read operation is attempted. DEVICE SELECT For normal programmed operation, this switch should be OFF. This rotary switch selects the device type (disk drive, disk file) from the maintenance panel. REGISTER SELECT This rotary switch provides the capability for displaying and entering information via the Register Display Indicator Switches to or from the register selected. REGISTER DISPLAY INDICATOR SWITCHES Thirteen indicator-type pushbutton switches (CLEAR and bits 0-11) provide for displaying and/ or entering information to and from the register indicated by the setting of the REGISTER SELECT switch when the Key switch is on. The CLEAR switch clears only the selected register. 60290000 A 2-3 DEFECTIVE TRACK For normal programmed operations this switch should be OFF. This toggle switch is used to write a Defective Track bit in each sector of the Address Headers (refer to Procedures for Writing Address Headers). DATA For normal programmed operations. this switch should be in the READ position. In the WRITE position this toggle switch provides for writing data from the panel via the Register Display Indicator switches. The same data byte is written in the entire storage area specified by the mode selection (TRACK. CYLINDER and FILE). In the Read Position this switch provides for reading data from the selected storage area. The data read is not displayed in the Data register when operating from the panel; however. a checkword error and other errors are displayed in the Status register. HEADER For normal programmed operations this switch should be in the READ position. This toggle switch provides for writing or reading address headers in the storage area selected during a control panel operation according to the setting of the ending mode switches (refer to Procedures for Writing Address Headers). WRITE LOCKOUT This switch. in conjunction with the Key switch. determines the degree of data protection pr'ovided by the controller to the subsystem units as follows: WRITE LOCKOUT KEY DATA On/Off Off Data protected from computer Write if WLO bit present On On Data protected from computer Write if WLO bit present Off On Data not protected even if WLO bit present CAUTION Data is not protected during panel operations if HEADER switch is in Write position. 2-4 60290000 A NOTE For programmed operation the mode (TRACK, CYLINDER, FILE), REPEAT, SEEK ADDRESS, and MASTER CLEAR switches should be off. REPEAT SEEK This switch, located at card location ID05A, is for maintenance purposes only and causes the disk unit to seek alternately between cylinder 0 and the selected cylinder when: 1. It is on (up position), 2. Track or Cylinder mode is selected, and 3. The SEEK ADDRESS switch is pressed. REPEA T SEEK OPERATE This switch, located at card location ID05B, is for maintenance purposes only and causes the disk unit to seek alternately between cylinder 0 and the selected cylinder and perform an operation when: 1. It is on (up position), 2. The REPEAT SEEK switch is on, 3. Track or Cylinder mode is selected, and 4. The SEEK ADDRESS switch is pressed. The controller will stop for an error condition and the REPEAT switch will not override an error. HEAD LIMIT This switch, located at card location ID05C is for maintenance purposes only and causes the unused indicator in the SEEK -SWITCH to light when: 1. A maintenance aid sw itch is left on. 2. The REPEAT-SEEK switch is on (up position). 3. The HEAD-LIMIT switch is on (up position). MANUAL OPERATION Operation of the disk storage subsystem is under program control from the computer through the use of the Connect and function codes. Initial manual starting procedures include turning the power on, selecting the various switch settings, and loading a disk pack into the associated unit (if none are presently loaded). Disk packs and files must have headers recorded before they can be used for programmed operations. 60290000 C 2-5 POWER The following procedure turns on the power for the subsystem. Disk Drive: Turn on the main power switch and terminator power switch (located on top of the power distribution box in the back of the cabinet). The disk drive units automatically enter a Power On sequence. Each disk drive unit requires approximately 1 minute to come up to speed and land the read/write.heads. In a multiple unit sYEltem each succeeding disk drive motor is automatically sequenced. The sequencing overlaps and a full complement of drive units should be up to speed in approximately 2 minutes. As soon as the disk drive units become operable (read/write heads landed) and the PHYSICAL UNIT NUMBER indicator lights~ operation of the disk drives may begin; how- ever, a 15-minute warm-up period is recommended when commencing from a cold start. Disk File: Normally the disk file and associated hydraulic unit should have all switches in the proper position and only step 7 should be necessary to activate the units. CAUTION The blowers should remain on at all times to prevent dirt accumulation on the disk surfaces. If the units must be started from a completely shut down position, the following steps should be performed: 1. Open front doors on the disk file and hydraulic unit and the right side door on the disk file. 2. Place all front panel circuit breakers of both units to the ON position. 3. Set both Positioner switches to the NORMAL position. 4. Set all Manual/Automatic switches to the AUTOMATIC position. 5. Set FILE OPERATION switch to the AUTOMATIC position. 6. Set main circuit breaker (located below power distribution panel) to the ON position. 7. Press START and observe START indicator light. The following indicators light temporarily: LOW FILE TEMP, STACK RPM 0, STACK RPM 1, and dc voltages. 2-6 60290000 A The disk file requires approximately 3 minutes to come up to operating speed; the hydraulic unit requires approximately 15 minutes (on water cooled unit). LOADING AND UNLOADING PROCEDURES The storage medium of the disk file units cannot be changed. The following procedures should be performed to load or change the storage medium in the disk storage drive: 1. If the unit is operating, turn power OFF by pressing the START switch located on the front of the disk drive unit. Wait until the spindle stops rotating ~d the SPIN light turns OFF. 2. Pull the appropriate drawer forward as far as possible. 3. Load or unload the pack as follows: Loading Place the pack on the spindle and turn the cover handle clockwise to a full stop position. The pack should now be tight on the spindle and the protective cover should lift off easily. Unloading Engage the protective cover over the disk pack and rotate the cover three times in a counterclockwise direction. The pack releases from the spindle and can be lifted from the drive unit. 4. Close the disk drive unit drawer and press the START switch on the front of the drive unit. This causes the unit to perform an initial Seek operation which positions and loads the read/write heads and brings the unit to the Ready state. READY STATE The controller is always Ready when power is available; however, subsystem readiness (indicated by the Ready status bit) depends upon the state of the selected storage unit. The requirements and time necessary to bring the subsystem components to the Ready state are: 60290000 A 2-7 Disk File The disk file units are Ready only when all of the following are present: 1. Power is available to the disk and hydraulic units, 2. The hydraulic and air systems are operating, 3. o Hydraulic temperature (100 F) and pressure (1100 psi) are up to normal, 4. The disks are spinning and up to speed (1750 rpm), and 5. The positioner is in the landing area and the read/write heads are landed and in an operating pos ition. Disk Storage Drive The disk drive units are Ready only when all of the following are present: 1. A pack is loaded, 2. The drawer is closed, 3. The disks are spinning and up to speed (2400 rpm), and 4. An initial seek has been performed to position the read/write heads. PROCEDURES FOR WRITING ADDRESS HEADERS Address Headers can be written only from the maintenance panel. In order to write the Header, Defective Track, and Write Lockout bits, the following procedure should be followed: 1. Turn the maintenance panel Key switch ON. Select the proper device type with the DEVICE SELECT Switch. 2. Set the REGISTER SELECT switch to the UNIT position, load the desired unit number into the Unit register and press the SELECT switch. 3. Select the desired ending mode by pressing the appropriate mode switch (TRACK, CYLINDER, etc.). 4. Enter the starting addresses into the upper and lower portions of the Address register. (Select the appropriate portion of the Address register via the REGISTER SELECT switch and enter the starting address by pressing the appropriate indicator / pushbutton switches. ) 2-8 60290000 A 5. If there is no useable data in the sectors where new headers are to be written, it is recommended that both the HEADER and DATA switch be set to the WRITE position. If there is useful data in the sectors and it is desired that only headers be written, the HEADER switch must be set to the WRITE position and the DATA switch to the READ position. NOTE Do not use the REPEAT mode switch when writing headers. Ensure that the REPEAT switch is OFF. 6. If Write Lockout and/or Defective Track bits are to be written, these switches should be set to ON. 7. Press the SEEK ADDRESS switch. Step 7 initiates the operation which will end when the addres~ of the last sector of the selected storage area has been written or an abnormal condition will be displayed in the Status register. On completion of the operation, select READ HEADERS and READ DATA and read (verify) the area just written. Error conditions will be displayed in the Status register. NOTE When in Read Data mode, the data read is not displayed in the Data register. When completed, return all switches to their normal positions. PROCEDURES FOR WRITING DATA Data can be written from the maintenance panel. write data. 1. The procedure is to read headers and The following procedures should be followed: Turn the maintenance panel Key switch ON. Select the proper device type with the DEVICE SELECT switch. 2. Set the REGISTER SELECT switch to the UNIT position, load the desired unit number into the Unit register, and press the SELECT switch. 3. Select the desired storage mode by pressing the appropriate corporate switch (TRACK, CYLINDER, etc.). 60290000 A 2-9 4. Enter the data to be written into the Data register. Select the Data register via the REGISTER SELECT switch and enter the data by pressing the appropriate indicator / pushbutton switches. 5. Set the HEADER switch to READ and the DATA switch to WRITE. 6. The WRITE LOCKOUT and/or DEFECTIVE TRACK switches should be OFF. 7. Press the SEEK ADDRESS switch. Step 7 initiates the operation which will end when the last sector of the selected storage area has been written or an abnormal condition occurs. Any abnormal condition will be displayed in the Status register. On completion of the operation, select READ HEADERS and READ DATA and read (verify) the area just written. Error conditions will be displayed in the Status register. NOTE When in Read Data mode, the data read is not displayed in the Data register. When complete, return all switches to their normal positions. 2-10 60290000 A SECTION 3 INSTALLATION AND CHECKOUT INSTALLATION AND CHECKOUT CRATING Should a requirement arise to crate this equipment in preparation for shipment to another destination, consult Procedure 8:504:00 in the Customer Engineering Field Procedures Manual. This should provide the latest information to aid in obtaining packaging materials and kits. PHYSICAL DIMENSIONS Physical dimensions of the cabinet are included in Section 1. POWER REQUIREMENTS Power requirements are included in Section 1. POWER CONNECTIONS Refer to Section 5 for the diagram showing power input terminals. Figure 1-1 shows the location of the power distribution box that houses the power terminals. Power connections should be made according to Figure 3-1, in accordance with local electrical codes. CABLING AND CONNECTORS The distance between each cable connector and the floor is shown in Figure 3-2. This information is required when determining the lengths of the cables between the controller and the disk units or data channels. in a typical system. Figure 3- 3 shows how the signal cables are connected Figure 3-4 shows disk file cabling. COOLING REQUIREMENTS There are no special cooling requirements. Room air is used for cooling purposes. ENVIRONMENTAL CONSIDERATIONS Information concerning temperature and humidity is included in Section 1. 60290000 P 3-1 TB2 TO 120 VAC Igj 50/60 HZ PWR SOURCE 00 { QFT"=== ~ ACCESS 1 B CABLES Maximum Total A Cable Length (3) Cabinets Maximum B Cable Length 821 841 Mixed §.ll ill.. 150 feet 180 feet 150 feet 100 feet 180 feet 150 feet 155 feet 150 feet 100 feet 180 feet 150 feet 130 feet 130 feet 100 feet 180 feet 150 feet 105 feet 105 feet 100 feet 180 feet 150 feet 80 feet 80 feet 100 feet 180 feet Total cable length on channel Terminator assemblies Includes inter-unit cabling Figure 3-4. Typical Subsystem Signal Cabling (MDD and Disk File) 60290000 S • 3-6 SECTION 4 THEORY OF OPERATION THEORY OF OPERATION SIGNAL DEFINITIONS DATA CHANNEL INTERFACE The connector pin numbers are included in the Cable Tabs portion of the Wire Lists, Section 9. Refer to the 3000 Input/ Output Specifications (Pub. No. 60048800) for a description of these signals. STORAGE UNIT INTERFACE The connector pin numbers are listed in the Cable Tabs portion of the Wire Lists, Section 9. Address and Control Bus These nine lines carry address and control information between the controller and selected storage units. The data on these lines is defined by one of the accompanying select lines. Cylinder Select When this line is a "1", it indicates to the selected Storage Unit that the Address and Control Bus now contains positioning information. current cylinder address. The bit assignments are as follows: Address and Control Bus Bit 0 60290000 A The positioning information is the controller's Cylinder Number 1 Bit 1 2 Bit 2 4 Bit 3 8 Bit 4 16 Bit 5 32 Bit 6 64 Bit 7 128 Bit 8 256 Bit 9 512 4-1 Head Select When this line is a "1", it indicates to the selected storage unit that the Address and Control Bus now contains head select information. Address and Control Bus The bit assignments are as follows: Head Number t fJ c,.." ~ t:t Disk File Disk Pack Bit 0 1 1 Bit 1 2 2 Bit 2 4 4 Bit 3 8 8 Bit 4 16 16 Bit 5 32 Not Used Bit 6 Not Used Not Used Bit 7 Not Used Not Used Bit 8 Not Used Not Used &/'4fII! Y:~t:/' Difference Select When this line is a "1", it indicates to the selected disk pack unit that the Address and Control Bus now contains positioning information. The positioning information is the difference between the disk unit's current cylinder and the controller's current cylinder. The bit assignments are as follows: Address and Control Bus 4-2 Cylinder Differnece Bit 0 1 Bit 1 2 Bit 2 4 Bit 3 8 Bit 4 16 Bit 5 32 Bit 6 64 Bit 7 Bit 8 128 256 Bit 9 512 60290000 A Control Select When this line is a "1", it indicates to the selected storage unit that the Address and Control Bus now contain control information. Bit assignments are as follows: Address and Control Bus Bit 0 Control Signals Write Enable Disk Units - When this line is a "1", it enables the write driver. Bit 1 Read Enable Disk Units - When this line is a '1", it enables the read amplifiers. Bit 2 Seek Forward Disk Units - When this line is a "1", it initiates the positioning sequence in a forward direction. Bit 3 Not Used Bit 4 Erase Enable Disk Units - This line follows the Write Enable and is used to erase the data prior to writing. Bit 5 Seek Ba ckward Disk Units - When this line is a "1", it initiates the positioning sequence in a backward direction. Bit 6 Restore Disk Packs - When this line is a '1", it initiates positioning motion to position zero. Bit 7 60290000 A Not Used 4-3 Read Cylinder Select When this line is a "1", it enables the Address and Control Bus transmitters in the selected disk unit. The information transmitted to the controller is the current cylinder address. Bit assignments are as follows: Address and Control Bus Cylinder Bit 0 1 Bit 1 2 Bit 2 4 Bit 3 8 Bit 4 16 Bit 5 32 Bit 6 64 Bit 7 128 Bit 8 256 Sector Select When this line is a "1", it indicates to the selected disk unit that the Address and Control Bus now contains sector information. The bit assignment is as follows: Address and Control Bus Bit 0 Sector 1 Bit 1 2 Bit 2 4 Bit 3 8 Bit 4 16 Positioner Ready When this line is a "1", it indicates that the selected storage unit is in position and is ready to read or write. On Sector or Seek Error When this line is a "1", it indicates that any storage unit which has been addressed has either completed a seek or is unable to complete a seek. Sector Mark This line is used to receive track reference marks from the selected storage unit. 4-4 60290000 A Index This line is used to receive a track reference mark from the selected storage unit. All other track reference marks must be measured in time from this point. Seek Error When this line is a "1", it indicates that the selected storage unit was unable to complete a Seek operation to the point of returning a Positioner Ready signal to the controller. Unit Select Initiates the select sequence in the unit whose logic number corresponds to the number on the four logic number lines. Unit Selected These nine lines are used to check which physical storage unit is selected. Clear This line goes to a "1", when a Master Clear, Channel Clear, Release, or Function Clear occurs. It will unreserve units on the clear channel without regard for status. Pack Unsafe This line indicates that the selected storage unit has one or more fault conditions. These conditions are: 1. More than one head selected. 2. Both write and read controls enabled. 3. Erase driver on and no write driver enabled. 4. Both write drivers enabled. 5. Read or write driver enabled and Not Ready status. Unit Ready This line indicates that the selected storage unit is ready to use. Write Data This line is used to transfer data to be written to the selected storage unit. 60290000 A 4-5 Read Data This line is used to transfer data from the selected storage unit. Release This line clears the Compare Enable FF's in the selected drive unit. Clock Source This line carries the recorded clock to the controller. Unit Busy Indicates selected unit is reserved by the other channel. When a channel selects a unit which is reserved by another controller, it receives a Unit Busy signal. 4-6 60290000 A SECTION 5 DIAGRAMS· DIAGRAMS SYMBOL INDEX The symbol index lists all logic terms in the controller and shows the logic diagram page number for each term. 60290000 C 5-i SVM80L INDEX AOO. Ao01 A002 A003 A010 A01* A012 A013 A014 A020 AOU A022 A02~ A030 A031 A032 '0 3 3 A040 A041 A042 A043 A050 A051 A052 A053 A060 A061 '062 A070 A071 Ao72 A080 A081 A082 A090 A091 A092 Al00 Al01 A102 A110 AUf A112 A120 A121 A1 3 0 A131 A136 A139 A140 A141 A142 A143 A144 A145 5-ii 5 .. 17 5-17 5 .. 17 5-17 5·17 5 .. 17 5-17 5 .. 17 5 .. 17 5 .. 17 5 .. 17 5.,17 5-17 5"17 5 .. 17 5"17 5"17 5 .. 17 5 .. 17 5"17 5-17 5-17 5 .. 17 5·17 5-17 5 .. 17 5"17 5-17 5·17 !)~17 5"17 5"17 5-17 5-17 !)"17 5-17 5-17 5-17 5-17 5-17 5"17 5-17 5-17 5-17 5-17 5"17 5"17 5-47 5-47 5·17 5-17 5-17 5-17 5"17 5·17 PAG!:: A146 A147 A148 A149 A150 A151 A152 A153 A154 A155 A156 A157 A158 A159 A160 A161 A162 A163 A164 A165 A16b A167 A168 A169 A170 A17l Al72 A173 A17S A176 Al77 A17S A179 A18U A181 A184 A185 A191 A2!)O A201 A210 A211 A220 A221 A230 A231 A240 A241 A25G A251 A260 A261 A270 A271 01 5~17 5~11 5~17 5-17 5~11 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5-17 5~17 5-17 5~17 5-27 5·27 5·27 5-27 5-27 5-27 5-27 . A280 A281 A290 A291 A300 A301 A310 A31l BOOO 8001 A002 8003 BOlO BOll 8012 8013 R020 A021 8022 B023 R030 R031 R032 B033 8040 8041 8042 8043 13050 13051 8052 5~27 ~053 5~21 A060 8061 8062 8063 R070 B071 A072 8073 8080 A081 A082 8083 8090 8091 Ii! 0 92 8093 Al00 Al01 8102 Al03 5-1-' 5~17 5-2/ 5~27 5-17 5-11 5-17 5~17 5-17 5-17 5-1' 5-17 5-17 5-17 5-17 5~11 5-17 5-1/ 5-11 R110 5~17 Rl11 5-17 8112 5.17 5.17 5.17 5.17 5.17 5.17 5.17 5.17 5.31 5.31 5.31 5.31 5.31 5.31 5.31 5-31 5·31 5.31 5.31 5·31 5.31 5.31 5 .. 31 5.31 5-31 5 .. 31 5·31 5.31 5·31 5-31 5-31 5-31 5-31 5-31 5·31 5·31 5·31 5-31 5-31 5·31 5·31 5·31 5.31 5·31 5.31 5.31 5-31 5.31 5·31 5-31 5·31 5.31 5.31 5·31 5.31 B113 '~31 ~200 5~31 8201 8202 8203 8204 8205 8206 8207 8208 8209 8210 8211 8212 B213 COOO COOl C002 0003 C004 e005 eo06 C007 C008 0010 5-Jl COll C012 C013 C014 '-31 5 .. 31 5~~U 5-31 5-U 5 .. 31 5-31 5-31 '-31 5"'31 5-31 5~31 5~37 5 ... J7 5"37 5-~J7 5-J7 5~37 '-37 5"37 5-37 '-37 !)-37 '-;51 5-H '-J7 C015 5-;37 G016 C017 C018 C020 C021 C022 e023 C024 0025 6026 C027 C028 C030 C031 0032 0033 C034 C035 C036 0037 C038 C039 C040 C041 C042 !)-J7 '-37 5-37 5~37 5-37 5-37 5-37 5-37 5-37 '-37 5-37 5-37 5-37 5-37 5-37 5-37 5-37 '-37 5-37 5-37 5-37 5-37 5~37 '-37 5-37 C043 C044 C045 C046 C047 C048 C050 C051 C052 C053 C054 C055 C050 C057 C058 C059 0060 C061 C062 C063 C064 C065 C066 C067 C070 C071 C072 C073 C074 C075 C076 Co77 C078 C079 C080 C081 C082 C063 C084 C085 C086 C087 C090 C091 C092 C093 C094 C095 C096 C098 C100 Cl01 Cl02 Cl03 Cl04 5 .. 37 5-37 5 .. 37 5 .. 37 5-37 5-37 5 .. 37 5 .. 37 5-37 5-37 5-37 5-37 5"37 5 .. 37 5-31 5-37 5-31 5-37 5-37 5-31 5 .. 37 5-37 5-37 5-J7 5·37 5-37 5·37 5 .. 37 5-37 5-39 5-37 5-39 5-39 5-37 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5 .. 39 5-39 5~39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5 .. 39 5-39 5~39 60290000 C SYMBOL INDEX Cl05 Cl06 Cl07 Cll0 Cllt C112 C113 C114 G115 C116 C120 e121 C122 e123 e124 C125 C127 0128 0130 el31 C132 0133 0134 C135 C140 C141 C142 C1 4 3 C144 C150 C151 C152 C153 C160 C161 C164 C165 C166 C167 C170 C171 C172 C1 7 3 C1 7 4 C175 C176 Cl77 C180 C181 C182 C183 C190 C191 C194 C1 9 5 60290000 PAr,~ 5 .. 39 5-39 5.39 5-39 5·39 5 .. 39 5 .. 39 5-39 5 .. 39 5-39 5 .. 39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5.39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-39 5-15 5-15 5-15 5-15 5-15 5 .. 15 5-15 5-15 5-15 5 .. 15 5-15 5-15 5-15 5-15 5-15 5-15 5-15 5-15 5-15 5-15 5-25 C196 C197 C200 C2Dl C20? C2D3 C204 C205 C2'10 C2n7 C208 C204 ~"25 C26~ E C;':lO C211 CC12 C2t3 C214 C21.5 C2H. C217 C210 C219 C221 C222 C223 C224 C226 C227 C228 C229 C23U C231 C23~ C233 C235 C236 C237 C238 C239 C240 C241 C242 C243 C250 C251 C25~ C2?4 C255 C256 C257 C25H C259 C260 C261 02 5-2". 5-2" 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-31 5-41 5-41 5-41 5-41 5-41 5-1' 5-1' 5-15 5-15 5-15 5-1" 5-1'::> 5-41 5-1'::> 5-15 5-1'> 5-1'::> 5-41 5-39 5-3Y 5-41 5-11 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 5-41 C263 C264 e265 C266 C267 e268 C270 ~271 (':272 C273 C275 e276 C277 C27b C28C e281 e282 (';283 e285 C30C C301 ~302 e303 (';304 e305 r:306 C307 C308 C309 e310 C311 e312 C313 C314 C315 e318 C319 e32D C325 C329 (:350 C351 C380 e3R1 C390 C391 C400 C401 C402 C403 F035 FOOO FOOl F'002 FOOS 5·41 5-41 5-41 5·41 5-41 5-41 5.41 5-41 5-41 5·41 5.37 5-41 5-41 5-41 5-23 5-23 5-23 5·41 5-41 5·15 5.15 5-15 5.15 5-15 5·15 5 .. 15 5 .. 41 5.41 5.41 5·37 5 .. 37 5 .. 37 5 .. 37 5 .. 37 5 .. 15 5 .. 41 5.41 5.41 5,,41 5.15 5.41 5.41 5.15 5 .. 15 5-15 5.15 5.45 5.45 5-45 5.45 5·9 5-9 5.9 5.9 5·9 FOO4 FOO5 FOO6 FOO7 FOOI:l F009 F010 FOll F'012 FQ13 F014 F015 FOlb F017 FOlS F019 F020 F02i F022 F023 F024 F025 F026 F027 F028 F029 F030 F031 F032 F'033 F"034 F035 F037---f0 36 F038 F03~ F040 F041 F042 F'043 F045 __ F044 F048 F049 F050 F051 F052 F053 F054 F055 F057 F05S F060 F061 F062 F063 Fl00 5~9 5-9 '-9 5-9 rl01 F"102 Fl03 fl04 F1DS FUO fUl FU2 f113 F'120 F121 F122 F123 F124 F125 f126 F 127 f128 F129 F130 F13i f140 '141 F142 f143 r144 '145 '146 '147 F148 F149 f150 '>-~-9 "'151 5-9 F152 F153 F156 F157 F158 1'159 5-9 5-9 5-9 5-9 5-9 5-9 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 5-11 ~-9 5-9 5-9 5-9 ,-9 5-9 5-9 5-9 5-9 5-9 '-9 ~-9 ,-9 ,-9 ,-9 ~-9 ~-9 '-9 ,-9 ,-9 '-9 5-9 '-9 5-9 5-9 5-9 ,-9 5-9 5-9 '-13 '::>-13 '-13 ,-9 ~-9 5-13 5-L5-9 ,-9 5-9 ,-27 5-27 5-9 5-9 '-9 5-9 5-9 5-9 5-13 5-13 5-13 5-13 '-9 1090 IU01 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1020 1021 1022 1023 5- iii 5-9 5-9 5-9 5-9 5-9 5-9 5-9 5-9 5-13 5-13 5-13 5-13 5-13 5-13 5-13 5-13 5-13 5-13 5-13 5-13 5-9 5-9 5-9 5-9 5-9 5-9 5-9 5-9 5-9 5-9 5-9 SytolBOL INDEX 1024 1025 10 2 6 1027 1028 1029 1030 1031 1032 1040 1041 1042 1043 1044 1045 10 4 6 10047 1048 1049 1050 1051 1052 10 5 3 1054 1060 1061 1062 1063 1064 1065 '066 1067 1068 1069 1070 1071 1100 1101 1102 1103 I1D4 1105 1106 1107 1108 1109 1110 1112; 1112 1113 1114 1115 JODO JOOl ,)002 5 .. iv 5.11 5 .. 11 5-11 5 .. 11 5-11 5 .. 11 5 .. 11 5 .. 11 5-11 5 .. 11 5 .. 11 5-11 5·11 5 .. 11 5-11 5 .. 11 5 .. 11 5 .. 11 !:i .. 11 5 .. 11 5-11 5 .. 11 5-11 5 ... 11 5-13 ' .. 13 5-13 5-13 5 .. 13 5 .. 13 5·13 5 .. 13 5-13 5·13 5-13 ' .. 13 5-9 '--9 5 .. 9 5-9 5-9 5·9 5 .. 9 5 .. 9 5-13 5 .. 9 5 .. 9 5 .. 9 ,.9 5 .. 9 5 .. 9 5 .. 9 5-21 5-21 5 .. 21 PAGE: JOQ3 JOQ4 JOQS JOQ6 JOD7 JOOd ~I 0 09 JOtO JOl1 JOt~ J015 J016 JOt7 J01S JOt9 JO?O J021 J022 J023 J024 J025 J027 J028 J02(; J030 J03l J032 J033 J034 J035 J036 J037 J038 J039 J040 J041 J042 J043 J044 J045 J040 J047 J048 J049 J050 J051 J052 J053 J054 J05S J056 J057 J05S J059 .1il60 03 5-21 5-21· 5-21 5-21 5-21 5-21 5-21 5-21 5 .. 21 5-21 5-29 5-3.5 5-33 5-27 5-27 5-3,5 5-3,~ 5-3,5 5-19 5-19 5-33 5-3,5 5-33 5-33 5-33 5-33 5-33 5-33 5-33 5-33 5-19 5-21 5-33 5-29 5-19 5-19 5-19 5-1~ 5-19 5-19 5-19 5-19 5-19 5-19 5-1~ 5-19 5-19 5-19 5-19 5-19 5-19 5-19 Soot<} 5-11} 5-3" J061 J062 J063 J064 J06? J066 J067 J068 J069 J070 J071 J072 J073 J074 J075 J076 J077 J078 J079 J 08 0 JOBl J082 J083 JOB4 JOB5 J086 J087 JOB8 J089 J090 J091 J092 J093 J094 J095 J096 J097 J098 J099 Jl00 ,Jl01 Ji02 Ji03 Ji04 Jl05 Jl06 Ji07 Jl0Cl Jl09 J110 Jlll J112 J113 J113 J114 5-35 5 .. 35 5 .. 35 5.35 5-35 5.35 5-35 5.23 5.23 5.29 5-29 5.27 5.27 5.29 5.29 5 .. 29 5",29 5.29 5.29 5",29 5-29 5.29 5·29 5.29 5.29 5.29 5·29 5.29 5.29 5.29 5.29 5·27 5·29 5.27 5-27 5-19 5.19 5.35 5.29 5.23 5-23 5.23 5.23 5 .. 23 5.25 5.23 5.23 5.23 5.23 5923 5.23 5.23 5.23 5·25 5.23 J114 JU5 JU6 J117 J118 Jli'1 J120 J121 J122 J123 J125 J126 J127 J128 J129 J130 J131 J132 J133 J134 J135 J136 J137 J140 J142 J143 J145 J146 J147 J148 J149 J150 J151 J152 J160 J161 J162 J163 J164 J16S J16e J171 Jl72 JiBO J181 J183 J1B4 ,,1200 J201 J202 J203 J204 J205 5-25 ?-25 5-25 5-23 5-23 5-23 5"25 5-29 5-a5 5-25 5-25 5-25 5-25 5-25 !;)"25 5-a5 5-25 5-25 !;)-a5 5-25 5-25 5-23 5-23 5-19 5~29 5-29. 5-23 5-33 5";53 5-a9 5-a9 5-25 5-i9 5-29 5"19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-29 5-19 5-29 5-,,7 5-47 ~-43 5-43 5-'3 5-43 5-43 5-43 J206 J207 J20B J209 J210 J211 J212 J213 J214 J215 J216 J217 J218 J219 J220 J221 J222 J223 J224 J225 J226 J227 J228 J229 J230 J231 J232 J233 J234 J235 J236 J237 J238 J239 J240 J241 J242 J243 J244 J245 J246 J247 J248 J252 J253 J254 J255 J256 J258 J259 J260 J261 J262 J263 ,,1264 5 .. 43 5 .. 43 5 .. 43 5-43 5-43 5-43 5-43 5 .. 43 5-43 5-43 5-43 5-43 5 .. 43 5-43 5-43 5-43 5 .. 43 5-43 5-43 5-43 5-43 5 .. 43 5"'43 5 .. 43 5-43 5 .. 47 5 .. 45 , .. 45 5-45 5-45 5-45 5 .. 45 5-45 5-45 5 .. 45 5-45 5-45 5-45 5-45 5-45 5 .. 45 5-45 5 ... 19 5-45 5-45 5-45 5-45 5-45 5-45 5-47 5 .. 45 5-45 5-45 5 .. 45 5-45 60290000 C SyMBOL INDEX J265 J266 J267 J268 J269 J270 J271 J272 J273 J276 J277 J278 J280 J281 J282 J283 J284 J285 J286 J287 J288 J289 J290 J29, J293 J294 J295 J296 J2 9 6 J297 J298 J299 J400 J401 J402 J403 J404 J405 J406 J407 J408 J4iO J41t J412 J413 J423 J424 J425 J900 J901 J902 J903 J904 J906~05 J907 KOOO 60290000 C 5~45 5 .. 45 5 .. 45 5 .. 45 5 ... 47 5 .. 47 5-47 5 .. 27 5·47 5 .. 33 5 .. 33 5 .. 47 5 .. 47 5 .. 47 5.27 5·27 5 .. 27 5·27 5.27 5.47 5·27 5",45 5 .. 27 5·47 5 .. 27 5 .. 19 5 .. 47 5-31 5 .. 47 5 .. 19 5.27 5-29 5 ... 45 5,,35 5 .. 21 5 .. 25 5·25 5 .. 25 5-23 5-23 5.. 23 5-45 5-45 5-45 5-45 5·15 5·15 5·15 5 .. 25 5-25 5-47 5·47 5-37 5 .. 2.2.....5-47 5 .. 21 5-47 PAr,E KOOl KJ(J2 1<003 K004 K005 K006 1(01)7 K008 K009 1<010 K011 K012 K013 K014 K015 K016 K017 K018 K019 K020 1<021 K022 K023 K030 1(031 1(032 1<033 K034 1<035 1<036 1<037 1<038 1<039 1(041) K041 1<042 K043 K044 K045 K046 K047 1<048 1<049 K052 1<053 K054 K055 K056 K057 K058 K059 1<060 K061 K062 K063 04 5-21 5-21 !)-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5-21 5 .. 21 5-21 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 5-19 1<064 1(065 1(066 1<067 1(068 ~069 1<070 K071 1<072 K073 K074 K075 I5-45 5 .. 43 5-43 5"2~ 5 .. 25 5-1!> 5-1~ 5-43 5-43 5-2? 5-2~ 5-1~ 5-1" 5-43 5-43 5-25 5-2~ 5-l~ 5·1!) 5-43 5-43 5-25 5-25 5.43 5-25 5-15 5.33 5.33 5.33 5.33 5.35 5.35 5.35 5.35 !h35 5.35 '.33 5.33 5.33 5.33 5.35 5.35 5.35 5-35 5.35 5.35 5.33 5.33 5.33 5.33 5.35 5.35 ,.35 5-35 5·35 ,-33 5-33 5-33 5-33 5·35 5·35 5-35 5.35 5-35 5-33 5.33 5-33 5-33 5-35 5-35 5·35 5-35 5-33 5.33 5.33 5-33 5-35 5.35 9056 SO 57 5060 S061 S062 9063 5064 5065 5066 8067 S070 S071 5072 5073 S074 5075 5076 S077 S080 5081 5082 5083 50e<4 S085 5086 5087 5090 5091 5092 S093 5094 5095 5096 5097 5100 S101 5102 5103 5104 5105 5106 5107 5110 S111 5112 5113 9114 S115 5116 S117 5120 5121 S124 S125 S126 5~35 5-35 5-33 5-;53 5-33 5-33 5-35 5-35 5-35 5-35 5"33 5"33 5-33 5-33 5-35 5-35 5-35 5-35 5-33 5-33 5-33 '-33 5-~5 5-35 5-;)5 5 .. 35 5-33 5"J3 5-J3 5-33 5-35 S-;J5 5-;J5 5-35 5-33 5-33 5 .. 33 5-33 5-35 5-J5 5-35 5-J5 5"33 ,"J3 5"33 5-33 5-35 5"35 5-35 5-35 5-23 5-23 5-35 5"'35 5-35 5127 5128 S129 '-35 5-35 5-35 5130 '~35 S131 T090 TOOl T002 T003 T004 T005 T006 T007 T008 T009 TOtO TOU T012 T013 TOt4 T015 TOt6 T017 T018 T020 T021 T022 5-35 5-5 ,·5 5-5 5-5 ,·5 , .. 5 5 .. 5 5-5 5-5 5 ... 5 ,-5 5-5 5 .. 5 5-5 5-5 5 .. 5 , .. 5 5-5 5-5 5-5 5 .. 5 5 .. 5 ,.5 , .. 5 , .. 5 5 .. 5 5-5 5·5 5 .. 5 5-5 5-5 5 .. 3 5-3 '-3 5-3 5-3 ,-3 T023 T024 T025 T026 T027 T028 T029 T030 T031 l100 TiOl TlO2 T103 T104 Ti05 Ti06 Ti07 Tl08 Ti09 T110 flU T112 Tl13 T114 T115 T116 T117 T118 ,-3 5 ... 3 5-3 5 ... 3 5 .. 3 5-3 5 .. 3 5 .. 3 5-3 5 .. 3 5 .. 3 5-3 5 .. 3 60290000 A SYMBOL INDEX H2O T121 T122 T123 T124 T125 1126 1127 T128 T129 1130 U:U 1200 T201 T202 1203 T208 T209 T210 T211 T212 T213 T214 T215 T216 T217 T218 T219 T220 1221 T222 1223 T224 T225 T299 T30. T301 T310 Uta T320 T321 1330 TUt T340 11108 VlO1 Vl02 Yl03 Vl04 Vl05 Y114 "115 V116 V1l7 V118 5-3 5.3 5 .. 3 5 .. 3 5·3 5 .. 3 5 .. 3 5 .. 3 5.3 5.3 5.3 5.3 5.7 5.7 5.1 5 .. 7 5 .. 45 5.45 ' ... 5 5 .. 45 5.45 5.45 5.45 5.45 '.45 5.45 5.45 5.45 5.45 5.45 ' •• 5 .. ,, '.45 5.45 5.45 5-23 '-13 5·23 '.n 5.23 5.23 '.23 '·23 5.23 5-15 5.15 5"'15 5·15 5 .. 15 5·15 5 .. 35 5"'41 5 .. 35 5 .. 41 5-35 60290000 A PAr;E V119 V121 V123 v124 V125 V200 V201 V202 V203 V205 V209 V2U V2t3 V215 V216 v217 V218 v223 V224 v250 V3DO V3U V3D3 V3n4 V3Q5 101000 wOOl 10/002 101003 wOH W005 101006 101007 101008 WOO9 1oI0lD 101011 101012 1oI0t3 WOt4 101015 101016 101017 101018 101019 101020 101021 101022 \01023 101024 101025 '0/ 0 26 101027 ;./028 \.j 029 06 5- 41 5-41 5-3s 5-3J 5- 3:5 5-1') 5-15 5-15 5-1" 5-15 5-41 5-41 5-41 5-41 5-3!5 5-35 5-35 5-33 5-33 5 -l!:) 5-1'1 5-15 5-1' 5-33 5-15 5-5 5 .. 5 5-5 5-5 5 .. 5 5 .. 5 5 .. 5 5-5 5-5 5 .. 5 5-5 5-5 5 .. 5 5-5 5 .. 5 5 .. 5 5 .. 5 5"5 5-5 5-5 5-5 5-5 5 .. 5 5-5 5 .. 5 5-5 5-5 5-5 5-5 5-5 W030 101031 101032 101033 W034 w035 w036 101037 101038 101039 101040 W041 W042 W043 101044 101047 101048 101049 W050 W051 101052 W053 101054 W055 W056 101057 w058 101059 W060 101061 W062 101063 101064 101065 W066 W067 101068 W069 W070 101071 W072 101073 W074 101075 101080 101081 101082 101083 101084 101085 W086 101087 101090 W091 101100 5·5 5.5 5.5 5 .. 5 5.5 5.5 5.5 5·5 5.5 5·5 5 .. 5 5.5 5·7 5.7 5.7 5·7 5.13 5.13 5.5 5.5 5.7 5.7 5.7 5.7 5.7 5·7 5.7 5.7 5.13 5.13 !S.13 5.13 5.13 5.13 5.13 5.13 5.13 5.13 5.13 5.13 5.13 5.13 5.7 5.7 5.7 !h7 5,,7 5fi17 5.7 5.7 5.7 5.7 5.5 5",5 5113 w101 :'-3 111102 W103 W104 5-3 5-3 5-3 5-3 5-3 5-3 5-3 5-3 5-;5 5-3 5-3 5-3 5-3 5-3 5-3 5-J \lIl05 11/106 101107 Wl013 Wl09 111110 IUl1 111112 \11113 IU14 111115 111116 W117 W118 5-3 1'119 11120 5-3 NUl 111122 11123 1'124 1'125 14126 IU27 W128 14129 11/130 11/131 14132 11/133 w134 fU35 rU36 M137 \11138 \q139 ~140 1l/141 \11142 W143 14144 IU47 W149 al150 W151 101152 101153 \11154 101155 101156 14157 W15S '.;)-3 5-3 5-3 5-3 5-3 5-3 5-3 5~3 5-3 5·3 5-J 5 .. 3 5-;) ~.i5 5 .. ;1 5 .. 3 5-J 5-;1 5-3 5"3 5-J 5-3 5-7 5-7 5-7 5-7 5-13 5"3 5-3 5-7 5-7 5-7 5-7 5-7 5-7 5-7 "'159 5-7 ~160 ~-13 10/161 "1174 101 175 w180 101181 101 182 101183 11184 101185 w190 101 191 101200 101201 101202 111203 101204 10/205 111206 W207 w206 W209 101210 101211 11212 101213 101214 W215 111216 101219 111220 w221 111224 101225 W226 101227 101228 101229 101230 101231 W232 101233 111234 101235 111236 101237 W239 101242 101 243 101244 101246 i00i247 11/248 i00i249 5-vii ~-13 '.;)-7 5-7 5-7 5-7 5-7 5-7 5-7 5-7 !)-3 5-3 5-7 5-7 5-7 5-7 5-7 5-7 5-7 5-7 5-7 5-7 5-7 5-7 5 .. 45 5-45 5-45 5 .. 7 5-7 5-7 5-7 5-7 5·7 5-7 5~7 5 .. 7 , .. 7 5-7 5-7 5 .. 5 5-5 5·5 5 .. 5 5·5 5-5 5-13 5-7 5-7 5-7 5-7 5-13 5-13 5-7 5-7 SYMBOL INDEX W250 "25t "'252 111253 "254 "'256 "257 "258 11259 "260 N261 .262 ·266 "261 "269 M287 MOOO lOO1 .0 0 2 U03 M004 lO05 )(006 )(007 lO08 M009 lOlO lO11 M012 MOU U14 l015 1(016 lO17 lOU )(020 lOU lO22 )(023 )1024 )(025 )(026 11027 X028 tlQ29 1(032 "0 3 2 '000 YOO1 Y002 VOOJ V004 V005 "006 Yo07 5-viii 5.7 5 .. 7 5.7 5.7 5117 '.7 5.:5 '·7 5.15 5.7 5·7 5.3 5.7 5·7 5.7 5.7 5·11 '.11 5.11 '.11 '·11 5.11 5.11 5·11 5 .. 11 5"U 5 .. 11 5·11 '.41 '-47 '.47 .'.47 5.47 '.47 '.47 5.47 5.47 5.47 '.47 5-41 5.41 5.47 5.47 5.47 5.47 5·11 PAr.E VOO8 VOQ9 VOto YOU V012 V013 V014 V015 V016 VOH YH8 V019 Y020 V02l V022 Y023 YO?4 y026 V027 V028 Y029 V030 V031 V032 Y033 YOJ4 Y035 V036 V037 Y038 VO.O VOU V042 V04J VO., Y046 VOH VO"8 Y049 VO .. 9 yO,O YO!50 V051 V052 V053 VO'4 5-47 VO!55 5·5 5",3 5 .. 1 5 .. 7 5,,7 5 .. 7 5 .. 45 V056 V058 V059 Y061 V062 VOl!l3 V064 Y065 ~h7 07 5-7 5-7 5-9 5-9 5 .. 9 5-9 5-9 5-9 5 .. 5 ' .. 7 5-3 5-27 '-3 5-9 5-23 '-17 5-17 5-19 '-19 5-19 5-19 5-19 5-19 5-19 '-19 5"19 5-19 5-19 5·19 Y066 Y067 Y068 Y069 Y070 V07l Y072 Y073 YOH U75 U76 Un I '-19 '''19 , .. 29 , .. 21 ,-29 , .. 21 '-23 '-23 ,-19 , .. 23 '''25 '-23 , .. 25 5 .. 25 5-29 I Y078 V079 V080 '081 Y082 9083 '084 5 .. 27 5.29 5 .. 27 5v43 5.43 5.9 5.43 5.7 ,.7 5-47 5·15 5·15 5·15 5-15 !h15 5.15 '.15 ,.15 5 .. 15 Y085 ~-7 '086 Y081 U88 "090 '091 Y092 '093 Y094 Y095 Y096 '091 f098 '099 uOO flU 9102 Yl07 9112 5.45 5.9 ,.9 !h19 5·19 !5.H 5·41 ,.47 5.27 __ YiB5 '900 '901 Y902 9903 V904 5-29 '.19 ,.7 '-19 ,-15 ,.23 ,.21 '.23 ,.2:5 5-7 ,.25 '-25 5.25 !5;.25 5.25 5 .. 25 5-29 5-39 5-25 5"41 5-31 5-29 5-29 5-29 5-27 5-27 60290000 R Logic diagrams represent a symbolic approach to electronic schematics. By using symbols to represent building block circuits, the diagram becomes easy to read if the reader understands the function of the symbols. A circuit Control Delay A control delay is a timing device consisting of an H term which receives the In Control Data Corporation logic, two signals, a logical a ("0") and logical 1 (" 1"), are the possible input or output conditions of a circuit. KEY TO LOGIC SYMBOLS input and one or more V, Y, or N terms to provide the outputs. (STANDARD 1604 OR 3600 CARD TYPES)e The H term is essentially a flip-flop with controlled feedback and occupies an entire printed circuit card. The output term(s) are inverter(s) located elsewhere with an output of "I" is "up" and a circuit with an output of "0" is "down". on the logic chassis. The" I" outputs from a control delay are clocked pulses Detailed descriptions of logic symbols and their associated build"ng block which are delayed one phase time from the "1" inputs. circuit cards are contained in the appropriate printed circuit manual shown on the logic diagrams for any H, V, Y, or N terms; these terms, (1604 and 3600 Card Types). Refer to the Literature Distribution Center which control the start and duration of the delayed output pulses, may be Catalog for the publication number and latest revision level. found in the Equation Summary. ST ANDARD LOGIC SYMBOLS 3600-type cards are inverters, flip-flops, control delays, capacitive delays, inductive delays, and line drivers and receivers. of the control delay symbol, with possible inputs and outputs labelled. The flip-flop (FF) is a storage device with two stable states - designated as 8 shows the electrical connections for the two forms. inputs and outputs are shown in the lower part of the symbol. Uooo STANDARD FF SET INPUT When more than one input is provided to an inverter, "1 's" take precedence over "a's" and drive the output of the inverter to "0". Because CLEAR INPUT KOOI any" 1" inp'ut of several inputs drives the output to a "0", an inverter may be ---fJoOj'l::!:} ~ I OR MORE IDENTICAL OUTPUTS Figure 1. INPUT INPUT INPUT A B C ~ } OUTPUT(S) ( GOES TO "I" ONE CLOCK PHASE AFTER AN INPUT OF "I ", UNLESS DISABLED BY A CONDITION INPUT, AND REMAINS A "I" THROUGH ONE PHASE TIME.) CONDITION INPUT (" I" WILL DISABLE THE OUTPUT) SET OUTPUT "I" WHEN SET AND "0" WHEN CLEAR TIMED "0" OUTPUT TO OTHER V- - - TERMS GOES TO "0" WHEN INPUT IS "I" AND REMAINS "0" THROUGH ONE PHASE TIME AFTER INPUTS DROPS.) ,~,~E::e.~U~~~:R I OR MORE. IDENTICAL OUTPUTS '" '''"'' Inverter Symbols K002 { MULTIPLE SET OUTPUT CLEAR INPUT INPUT A INPUT B "OR" INPUT Figure 2. INPUT INPUT A B INPUT C ~ J002 Figure 5. } flop symbol. Notice that the Set output is the output of inverter KOOI, and the Clear output is the output of inverters KOOO and K002. "0". Figure 3 illustrates conventions for showing AND gates feeding an LOGI C INPUT (GATED DURING ODD CLOCK PHASE "'''M~ j:gg~ J810 J910 J920 j:gg~ J810 J910 J920 J991 J960 J970 J960 J970 Figure 3. CLEAR INPUT I~ L ____ I OUTPUT I RAW CLOCK (0001 STANDARD FF KOOO inverter. Control Delay Symbols The term numbers assigned to each flip-flop are the term num- with those in Figure 6. If one or more of the inputs to an AND gate are "0", the output is a OUTPUTS Figure 6 illustrates the interconnection of inverter symbols to form a flip- An AND gate requires that all its inputs be "1 's" in order that its output be a "1". DELAY Flip-Flop Symbols bers of the internal inverters as seen by comparing the terms in Figure 5 OR Circuit Conventions CONTROL CLEAR OUTPUT Figure 7. A ~ B ~ C DELAY EXTRA-SET FF Acceptable conventions for showing multiple OR inputs are given in Figure 2. INPUT INPUT INPUT CONTROL INPUT (S) LOGI C AND "0" WHEN SET considered an inverting OR (NOR) gate when more than one input is present. INPUT STANDARD By convention, Set inputs and outputs are shown in the upper part of the symbol and Clear Inverters L- SET OUTPUT r - - - - - - - - - - CLEAR OUTPUT ~ - ..., INVERTERS VIOO AND I V200 PRODUCE OUTPUTS ONE CLOCK PHASE AFTER EITHER I INPUT A OR B I GOES TO "I" "1': ",",.~ RAW J991 CLOCK (000) I EXTRA-SET FF INPUT SET INPUT SET OUTPUT AND Circuit Conventions RAW (000) B CLOCK L 4} SET INPUT Figure 4 illustrates a combination AND/OR input. J200 J300 J400 • } CLEAR INPUT CLEAR OUTPUTS ,1 .. n·1 'I I RAW CLOCK (EVEN) I RAW CLOCK (EVEN) L I , ______ OUTPUTS J L J500 Figure 4. &0.290000 A AND/OR Circuit Convention Figure The logic symbols (Figure 5) are formed by the combination of inverter symbols. An inverter is a logic element which provides an output that is an inversion of its input. Figure 7 illustrates two representative forms Flip- Flops (FF) Set and Clear - and is composed of two or more inverters. Standard logic diagram symbols for Control Data equipment using 1604- or Clock inputs are not Figure 6. Internal Inverter Connections for a Flip-Flop Figure 8. Electrical Connections for Control Delay 5-ix Contl'ol delays may have multiple inputs and/or multiple outputs. When a in the same manner as capacitive delays (except for the vertical lines) unless CABLE IDENTIFICATION control delay has multiple output terms (i. e., more than one V, Y, or N term), they are used as delay lines. each output term may have a separate conditioning input. circuit letters are present, pin numbers are shown adjacent to the input and Cable connections ar'c repr'esented by the MIL-STD-15 symbol and identified output arrows. as to connector location and pins used, as shown in Figure 15. On multi-section cards where no identifying Figure 12 shows both kinds of inductive delays. Capacitive Delays STANDARD A capacitive delay is used to delay the" 1" input to a logic elemen!, are not affected by the delay.) Capacitive delays may be active ("0" inputs passive, 01' circuit. 2B29 points for the scope and probes vary for different cards and should be deter- --ell DELAY of the card location. IN 12 Figure 12. In the third 3C16A- 5: 10, II ~ 2C27C ~ 0,2 !-,SEC 401 ~ J 4 MS 2C16- 9,10 2012-7 0.7 !-,SEC FIXED PLUGGABLE WIT H EXTERNAL CAPACITDR(SI Active Capacitive Delays Figure 15. capacitors, located on one or more capacitor cards, as an AND input to the affected logic element. For this reason, all passive delays show pin numbers P NUMBER lASED LINE) Cable Connections SPECIAL LOGIC SYMBOLS those used for internal logic. The level shift to and from internal logic is made by line dl'ivers and line l'eceivers. These cards may be consider'ed as Nonstandard elements (special logic and/or non-logic elements) are repre- inverting the signal electrically, but not logically. sented by a special cil'cuit symbol (generally a rectangle as shown in Figure The letters commonly associated with these cards are L & M (1604) and R & T (3000 Series). A 16). The special circuit symbol always shows the symbol designation, jack 3000 Series Receiver may also he used to perform a logical inversion by location, and the car'd type, swapping the twisted pair wires. This usage is indicated by a circle on the such as in the case of special delay cards which indicate the delay period. In Figure 13, "J's" and "O's" have been added to For detailed information refer to the specific card type in the appropriate clarify the logic states; they are not part of the symbol. All passive capacitive delays (Figure 10) are formed by wiring grounded SECOND Voltage levels used to represent" l's" and "O's" on cables are different from input side of the symbol. Figure 9. "I" "I" "" --7~ to provide this external wiring data. "I" Supplemental information may also be shown Printed Cil'cuit or Logic Module Manual. "I" "0" --7~ ~>-+ Figure 13. LINE FIRST PI N NUMBER (POSITIVE -BIASED LINE) Inductive Delays Line Drivers / Receivers 2C2SA RANSMISSION OUTPUTS example, this wiring connects to capacitor's located on two separate capacitor cards. T 1 '-~ ~ (NEGATIVE~NB CONNECTOR / NUMBER I v ~ TWISTED- PAIR 3HI-A9, AID In Figure 9, the pluggable delay uses this wiring to connect to capacitors on the same card. RETURN) --7~ ~ TIM ED GROUND M OF I~ II 10 (COMMON DELAY ! Pin numbers are also shown when external wiring is needed to connect the proper capacitance. INDUCTIVE LINE mined by referring to the Printed Circuit Manual. Acth'e delays may be recognized by the circuit letter always present as part (SHOWING PIN 'V' CDNNECTDR 2J12) 0,15 !-,SEC TAPPED WIRE 2JI2 ~ D,I !-,SEC Delay periods are checked by using a dual-trace scope connected to The actual c0nnection SINGLE DELAYS --- j£ -4 II MEMORY REGISTER 12 ~ WI] I 3 ;;'-S'J- -1 FA71J.F-,4 CONTROL I ADDRESS REGISTER (8) (A) (UPPER) ~ 1 (LOWER) : 0 $ 10 .--- SHIFT REGISTER (S) ~ C 0 U N T E R L-- H9 ADDRESS AND t CONTROL cb BUS CHGCt.(.J, l--:l TRANSMIT e I-I?O ~ r- CYCLIC ENCODER REGISTER )GT. I ,. . ,I y~ (T) «- OSCILLATOR I MOD CLOCK CONTROL READ READ DATA 12 I ~ WRITE ()-DISK FILE ,... DATA l' WRITE DISK KEY - - - DATA 9 - - - ADDRESS AND CONTROL --@- NUMBER OF BITS SELECTED CLOCK ~ 1 STr~~r Dij,IC~ _TITLE BLOCK DIAGRAM I~RODUCT FA 705 .'RI DRAWING NO, _ _ _ _ _ A. _ _ _ I 0.' INPUT TERM LIST F'OR PAGE TeRM A181 8003 8013 8023 B033 1:l043 8053 B063 B073 8083 B093 Bl03 8113 F"113 1069 J019 J073 J132 J151 1<011 K091 K163 5001 S011 5021 S031 5041 5051 5061 S071 5081 5091 5101 S111 101048 101057 101065 101067 W069 101071 "'082 W1 4 3 111152 101153 101154 W157 WUi8 w159 1.1161 101175 101 1 8 0 I 5-2 5-3 LOCATION PAGF. 20140 2H4I2D 2H410 2H40D 2H39D 2H38D 2H37D 2H36D 5"17 5 .. 31 5-31 5-31 5-31 5-31 5 .. 31 5-31 2H350 5-31 2H340 21-1330 2H320 2H310 2E07D 2G21C 2G29C 2E19A 2B24C 2F"098 lC360 28400 2A340 2G4I28 2G41B 2G40B 2G398 2G388 2G378 2G36B 2G358 2G348 2G338 2G328 2G318 2E20A 21258 2E238 2E24B 2E25B 2E278 2I31C 2J248 2I24A 21248 2123A 21250 2122A 212213 2E26B 21368 2I21A 5 .. 31 5 .. 31 5 .. 31 5 .. 31 5-9 5-13 5-21 5-27 5-25 5-2q 5 .. 21 5-29 5-29 5-33 5-33 5-33 5 .. 33 5-33 5-33 5-33 5-33 5-33 5 .. 33 5-33 5-33 5-13 '.J-7 5-13 5-13 5-13 5-13 5-7 5-7 5 .. 7 5-7 5-7 5-7 5-7 5 .. 7 5"13 5-7 5-7 1..1181 W11:13 wl B4 wlB5 1oI213 101232 1oI2J4 W236 2t211; 21<2 5 13 213JC 21.,sJI) 2i3JB 2.,JJ6A 2,)368 2.,J3cC 101237 2e011:l 5·7 5-7 5.7 5-7 '·45 5·5 5-5 5·5 5-13 60290000 G 2J3/2J4 2JI/2J2 D5,06 2KI7C 21.24B 2Jl4D CONNECT---7~ DATA LINES 07 08 B FUNCTION~~ 2JII2J2 j.I-<) Rllb Wl80 w13b READ A CONN EVEN PARITY 2Kl!;A 2J14A 09, DID OATA 2L178 2KlbB 03,04 ZKlbA C7,C8 2K1SC STATUS RESPONSE B RESERVED WOB2 ---IW190 E7,ES r- 2KlbC XSI'foI PARITY ERROR l.E.CONNECT SIGNAL---7~ 01,02 INITRRUPT (TO 1 OF 8 LINES) 2JI/2J2 A RES W157 2KI7B DI .. E6 f~~ :~~r- >-- E5,E6 READ---'~ + M.C. WI75 ~ CONN REJ WIS8 2J3/2J4 2K25C CHANhEL 2Kl5B 2~~/C~J4 2KI7A INITRRUPT 89,810 '11067 >-- MASITR CLEAR ---7~ COMPUTER W231 RUNNING~~ TRACK. OR RESERVED IC)b9 8USY---7~ C~~~ E3,E4 Tl~>-- DEF'ECTIV£ DEF TRK END OF RECORD IIfIIIT---7~ 2LlbB 2L23B C3,C4 A181~ 87,88 >--ENO OF OPERATION . INITRRUPT IC)b5 0.12 ,..S£C Wl113 " CON NECTED TRANSMISSION PARITY CHECKER 8 GENERATOR W119 cOl'ii SIGNAL ~~~~~~N E~~~~RUPT J019 W154~ k011 WRITE RIIS Wll5 2L20B 81,82 >- CHI -- LOST DATA OR NO COMPARE PARITY BIT TO INTERFACE TRANSMITTER A 7, A8 >-- ADDRESS ERROI\ OR ON SECTOR IUNIT UNAVAILABLE UNIT AVAIL BUSY A3,A4 >-- BUSY I UNIT RESERVED WI91 Wl52 R109 R110 W111 R110 2Jl5C R11l W109 . . . - -_ _ _ \01181 EONIrA + R10b R107 R10e DATA R107 \oIlOb \01108 R103 R104 R105 R104 W103 W105 R100 R10l R102 STATUs R101 \01100 W102 SIGNAL 1069 READ F 113 RETURN AODRESS 10. ___ Ie t , JI32 READ CONTROL .... CONTItOL DATA .... CORPORATION DEVELOPM£NT DIVISION ",u CHANNEL A INTERFACE _T FA70!5 INPUT TERM LIST FOR PAGe TeRM 8003 8013 8023 8033 1:1043 8053 1:J063 80 7 3 5-5 LOCATION PAGe 21-i420 2H41D 2H40D 2H39D 21>1380 .J151 2H370 2H360 2H350 2H34D 2H330 21-1320 2H310 2G29C 2E19A 2835D 2B24C 2F'099 J224 J298 10118 2F'lU J299 2BUC lC36D 28388 2B40C 2B400 20410 2,,248 2"340 2G428 2G4S.B 2G409 2G399 2G38B 2G319 8083 8093 8103 1:1113 J019 J073 J075 J132 1(011 K087 K090 1<091 1<121 K159 1<163 SOO1 S011 5021 5031 5041 5051 5061 5071 5081 5091 S101 S111 5127 111043 W048 W052 111053 W054 11057 2G~6S 2G358 2G348 2G33B 2G32B 2G3s.e lE07S 2J24A 2E20A 2J28A 21289 2t27A 212'8 5-31 101069 21i2~8 5",31 101071 W075 101080 W081 2'127" 2f3 0 A 2t31A 2t31S 5 .. 3s. 5 .. 35, 5-;S1 5 .. 31 5 .. 31 5"31 5-31 5"31 5 .. 3t WOij3 2~2SA 1.01084 101085 21,338 5-27 W157 W182 1.1213 w237 101257 101262 5-29 v020 5-31 5-27 2t33A 212;0 2't21C 2&3~8 2;018 2;j3Y~ 2tq2::tC 283 411 ' .. 13 5 .. 13 5·' 5., 5-, 5-7 5-7 5.' 5·7 5·7 '.45 5-13 5·3 5-3 5-3 5.~, 5,,29 5-4:5 5 .. 21 5 .. 2, 5 .. 21 5 .. 29 !hii!9 '-29 5-23 5-29 '-29 ' .. 33 5-33 5 .. 33 5-33 5 .. 33 5 .. 33 5-33 5-33 5 .. 33 5.33 5 .. 33 5-33 ~.;S!3 5 .. 7 5"13 5-7 5·7 5 .. 1 2~~ . ~ 5 .. 7 "0" 5·13 W061 2E218 .l1l4S'.. W065 101067 5-4 2E23B 2E248 5-13 5·13 60290000 G 2J5 12J6 05 06 2K29B I NT wo.s B RES. WOS7 2J390 CONNECT~~ DATA LINES 07 08 2K29A t----- - DATA 09 010 2K37C 2J5/2J6 2UtlB E7 EB 01,02 ~~~~~ ~ 2L2SB E5,E6 K163 2K37B 0304 2K37A + 2J7/2J8 21.30B C3 C4 MC W075~ CONN REJ T~>--DEFECTIVE W058 DEF TRK Wll> >-- END OF RECORD 2J40D CHANNEL C7 C8 2K38C E3 ,E4 2K3BB 2g:~~8 2K29C TRACk {)R RESERVED INTERRUPT WOt>7 WRlTE~~ 2K39C PARITY ERROR L.E.CONN READ-7~ 2L378 ~ A RESERVED WI82 ~>--TRANSMISSION WOS1 SIGNAL--;;~ 2J39A STATUS RESPONSE A REL WOol FUNCTION~~ ROl6 READ woeo B CONN W036 EVEN PARITY 2J7/2J8 ZL29B 01-E6 ~>--INTERRUPT (TO 1 OF B LINES) BUSY~~ INTERRUPT 2U7A MASTER lQ1Ql: COMPUTER 9-7~ 87,8B 5091 8093 2 USA W083 B CO NN 2K39A GENERATOR WQ19~ 2J~B W054 CiiNNEffiD CONNECT I NG RO 19 DATA SIG WRITE 2K40C a ROll ROl5 2J40A ----{GQQi 81,82 > - CHECKWORO ERROR OR .Wl32 END OF RECORD 2U9B 85,86 507l 8073 7-7~ 2K~B A9,AI0 >-LOST DATA AND OPN ERR 2J41D PARITY BIT TO INTERFACE TRANSMI TTER A7,A8 ) - - ADDRESS ERROR OR ON SECTOR 2J41C WOl4 WQ~ 50')1 8053 A9,AI0 4~ , 87,88 > - END OF OPERATION INTERRUPT Y020~ TRANSMISSION PARITY CHECKER 50B1 BOB3 e-7~ ~SEC RUNNING~~ 2UIIS 89,810 2 CLEAR~ ~ I o::t= ~ 2L40A A5,A' )--ABNORMAL/UNIT UNAVAILABLE UNIT AVAIL UNIT BUSY 2K41C 4 2J41B RESERVED 5041 8043 ~I o:t=~;; A5, A6 2-7 ~~~j 2L42B ~ I o::t= W091 2K42C 2J42C 1«)52 STATUS K091 ABNORMAL 5127 CKWD ERR SO 11 B013 2K42B 2J42B ROll ·1«)10 woo 9 AI ,A 2 0-7 IL I ROO 9 ~5001 ROll WOB1 CONN B Rooel R006 WOO 7 WOO 7 ¥«lOb WQ08 ROO9 1«)10 ¥«l11 ROlO 1«)09 WOll ROlO 2J38C I K090 + ROU6 ROO7 ROOB DATA SIGNAL ROO 7 WOOl> WOOB ROOSI R003 WO04 w004 W003 W005 R003 ROO4 RODS R004 W003 WOOS- ROO21 ROOO WOOl WOOl WQOO WQ02 ROOO ROOl R002 R001 W002 WQOO END OF RECORD K159 JI32 R fA D CON TRO L J224 ~ BUSY .... CONTROL DATA . . . CORPORATION DEVELOPMENT DIVISION .' "".H I A~~~~~~B~ SELECTED ON-SECTOR ~ Wl,)7 RETURN ADDRESS L--------------11~1«)~1~3JI.. ;-lh,_ --t='O ABNORMAL J07 LOST DATA OR OPN ERR NO COMPARE I J298 CHANNEL B INTERFACE - ....... C FA 705 ... 6 INPUT H:RM FOR PAGE TERM LIST 5-7 LOCATION F029 F032 1020 1021 1032 1061 1105 1107 1114 2H2R8 2H278 21360 2F'31C 2G01C 20090 2F'01C J134 2F29B J184 J220 J231 J271 lJ278 J285 2r15A lG418 2119A IF"22B 2I20C 10078 2120B K190 MODO 1'4001 M002 "1005 1'4012 1'4013 1'4014 1'4029 1'4046 1'4048 R013 R019 R113 R119 R200 R201 R202 R203 R204 R205 R206 R207 R220 2E39A 2D39A 2D41A lD104A 10148 1D14C 10138 2F'16A 1009B lD09C lC05B 1F'358 lD158 2K3aB 2K298 2K158 2K17C 2EOU 2E018 2E01C 2F02A 2E02B 2E02C 2E O:U 2E03B 2E03C R230 2J02A Kl41 111050 \11150 5-6 2J31A 2J20A PAliF 5-9 ?-9 5-11 5-11 5-11 5-13 5-9 5-9 5~9 5-25 5 .. 47 5-43 5 .. 47 5-47 5-47 5-27 5"2!5 5-19 5 .. 1.1 5-11 5"11 5 .. 11 5 .. 47 5-47 5 .. 41 5 .. 47 5"47 5"'47 5-5 5 .. 5 5 .. 3 5-3 5-25 5-25 5-25 5"25 5 .. 25 5-25 5 .. 25 5-25 5 .. 25 5 .. 45 5-5 5-3 60290000 iii UN IT REG SEL SW UNIT SELECT CHANNEL -20V MC ROl3 IJI- <40. <4 UNIT RESERVED OSI6 >-8IT 0 8I T I II T 2 21318 I L 1061 DATA SIGNAL Y 008 Y07l I C ONNE C TE 0 UNIT SEL W2<43 8 CONN Y003 -20V I 2K26A 1107 REL 0.2).1SEC CLR 2J2311 Pi'ilEiiii W050 .... 011 a 8 RES W057 R019 8 CONNECT SIG RO I I U:~l II CONN W044 A CONN WI44 WI25 SE.L TIMEOUT 1• I 11104. .... 010 IJ271 KEYONoCONNoMAN.I ROIO .... 009 I ~2'''CI *269 I ~+RES+CONN J I 2l~7f. W 157 A RESERVE ~ R009 - - CHA~MENT CODE SWITCH. R200 -, BUSY W287 B CONN RO 19 L.E.CONN + MC W075 'U02 I~ l.E.COHN W042 l£.CONN ROI9 L Rial ,I CLEAR Il104. UNIT IW 111001 r II T J "NEl MC R20] R204 11201 ~ R206 R207 J210 Rii'YOR SEL ERR R2l0 UN I T BUSY R220 .... III~ • Pi'ii'i'TY 'f'1(1i"O"J l W150 Rill ""I 10 Rll0 ""109 Rl09 ~ Y008 B CONN '--y----J ---, L SEL TIMEOUT CHAN A EQUIPMENT CODE SWITCH I L_ lItES wee2 A RES WIII2 MAN I KI41 --, I RI19 A CONN SIG -20V IDEVSELSWMOl4 ---? 2G05C (j.2).1SEC woe! 1061 DATA SIG WI82 -lOY CONTROL Me Me R/l3 I 107 R E LOR C L R -R-:E-:S-::E-:It~V-::,E-=-O INPUT TERM LIST FOR PAGe TeRM F050 1000 1001 1002 1083 1004 10" 1020 IOU 1022 1023 1024 -102' 5-9 LOCATION PAGe 2Gl,A 2H2U 2H21A 2H2U 2H2!5A 2H24A 2H2:U 2104288 21042'. 2101268 2104291 210124' 2H231 202,. 1060 10'10 2G268 J041 lEa4A 2BU8 J091 J129 10228 2,.098 Jl'1 2FlSA J152 J114 - 211,. JCOU 10328 - 1C012 lf2QA ROll 2K29A RUI MOIO NUO 5-8 2K118 2UU 212U 5 .. 2'1 5-11 5 .. 11 5 .. 11 !hU 5·11 5·11 5·11 '.u. 5·11 5-U 5·U '-U 5-13 '·13 5·19 5.2, 5 .. 2, 5.2, 5-29 5 .. 47 '-19 5·29 5-5 5 .. 3 '·7 5·7 60290000 E 2FllA fOeo5t 8 CONI€Cl£O ICl80 FUNCTION R018 FCN SET Jf~2 ~V 1024 READ Y K082 1005 I~ coal I 2F14A ~3X -1" -- ~. - lxF018~---1 1003 RD F053 ::: 1025 READY .1151 100l - ~2." ~5x :::~ 10Z2~XO 1002 2614A Xl F024 _ _..;;;....;~ _J 81T 2 1022 11~ EOP + CLEAR FOlO X7 FUNCTION OX 2GUA 26U8 I"'"rt",,. r: fI r----- 102l FCN CLEAR X 71)IS FUNCTI ON RU8 A CONI€Cl£O WlIO tJ(J(l() EOP ..1091 Me 11~ 2F08A ] FOlO I / 1020~X6 X1F022~ 1001~ IOOO~X7 21290 2F161 ~-------------~.~ MASTER CLEAR X2 F02l _ _r----. Xl F024 ]F048 ~ I - - - JJIOO I 05 24228 l 0005 { FO!!3 CLR FeN I FOO5 F02' JI16 l---JI04 MC + NEW J 112 J087 J 125 OP J 111 KI30 Jon J 129 MANUAL .1120 KI31 SEEK SW JI20 .... COIITROL DATA . . . COItPOUTIOII DlYEIJRIENT DIVISION TIn. FUNCTION TRANSLATION, AND MC - INPUT TERI'! L.IST F"OR PAGE TeRM COOl C011 C021 C031 C041 C051 C061 C071 C081 C091 elD1 Cl11 J281 1<061 1<067 1<135 ROOD RoOl R002 Ro03 Ro04 Ro05 Ro06 Ro07 Ro08 R009 "010 Roll Rl00 Rl0l Rl02 Rl03 Rl04 Rl05 11106 11107 11108 1IS,09 "110 R111 SoD3 5013 5023 sou 5043 5053 5063 5073 5083 5093 5-10 '-11 L.OCATION PAGE 282D8 28198 29188 2B178 2B168 28158 2B14B 28138 281G8 28098 28088 2BD79 lC088 lE388 lE39D 2E31D 21<42A 21<428 21<42C 21 § 102_+--+-+......- - - - - - l - - 1 - . 1028 -1-+-+-.....-----~---<~ 1027-1-+-+-~---------- 1026 -t-+-+--------~~- ....... u o N 1025 ----+-_---------t~---. .... ~~ I-N ZI- o U ...J >- 1024 --+--------~I-~ U 1023 - - + - +.....--------4-11-. 1022 - - + - +.....-----~-I---. 1021--+-+-_--------t~---. DATA BUS 1020--+-+-------~~- - 20 V AlSO Al~ 4152 Al48 BUSY J073 UNIT RESERVED W213 4166 4140 4144 4142 INPUT TERM LIST fOR PAGE TeRM 5-19 LOCATION PAGE A1 7 3 2A25D 5 .. 27 A179 2A25C 5-27 2D21C 2021D 2D2nC 2D200 2A2OA 2A208 2A200 2C048 2042A 2A19A 2A21C 28178 2A19C 2F'050 2B1U 2A12A 2A18C 2B118 2AtH 28110 2A11C 2822C 2Al0A 2Al08 2A10C 2A10D 2A09A 2H020 2A09C 2A090 2AOSA 2A088 2811C 2A08C 24080 2A07A 2A078 2A01C 2A070 2H04C 2H04D 2EOSA 5-17 5"17 5-17 ,-11 5-37 5 .. 37 5-37 5-37 5-37 5-31 5"37 5 .. 37 ,"31 5"31 5 .. 37 5 .. 31 5·31 5-37 5-37 5-37 5-37 5-37 5 .. 39 5"39 5-39 5 .. 39 5-39 5-39 ,-39 5-39 5-39 5 .. 39 5 .. 39 5,.39 5 .. 39 5-39 5-39 5 .. 39 5 .. 39 5 .. 45 5 .. 4,; 5-45 5-45 5-9 5-9 5 .. 9 5"9 5 .. 9 5 .. 13 A280 "281 "290 "291 C002 e003 C013 C017 C018 C022 C027 C031 C032 C031 C047 e048 C052 C057 C062 C067 C072 C019 C082 C083 C092 C093 0102 Cl07 C112 C113 C122 C123 C121 C132 C133 e142 C143 C152 C153 C400 C401 C402 C403 f'103 f'111 F'lH f158 f'159 1071 5-18 2E088 2E080 2E078 2E10D 2E13A 2E138 lE36C 1101 1104 J095 J173 J282 J288 K089 K140 K147 K150 K157 K1,8 K180 K900 M027 v10l Vl03 V201 V300 V303 101215 V067 ']" l't '1 2i!11JA 2(10 7 1:1 2PO/j1:j 2A01D 2JObC 2107D 2~3tiD 2~C!41:1 2e3bD 2~.s\JA 2A,538 2A24A 2b14UA HiOlA leoH 2QOlA 2U018 2eOlA 2F'0~A 2F'Obl:! 2POlA 21:!J4E X~27A- 5.9 5-9 5-27 5·29 5-27 5·27 5-29 ,-25 1""25 5-29 5-29 5-29 5-25 5·25 5·47 '·15 5·15 '.15 5-15 5 .. 15 5·7 5·29 s-z9 60290000 C J282 POSITIONER FI03 RESTORE ROY OR SEEK ERROR ID37B H[AD SEL[CT 2 K041 SEEK INITIATE KO"7 CONTROL 2 c002 J288 C08J ON CYLINDER OR SUK [RROR CYL CONT END OF BLOCK STROBE n 1(074 I HEAD SELECT 2 J 048 J 041 - -SEEK CHAIN INCREMENT CHAIN eo..7 C122 101027 CYL MODE CO)2 CUl END OF RECORD-TIME KI57 LOAD ADDR LOVIER J043 A281 C400 A280 C401 1:402 _ . "" ------o--J 0 I L. ~ C400 ~C402 I I I0 I MC AI79 SECTOR ADDR ERROR K900 A290 C403 NOTES' CD ® LOAD ® CLEAR LOWER ADDR REG ® ® @ CLEAR ADDRESSES UPDATING T I V I 03 K073 COUNTER 2C39A COUNTER OPERATION KI50 O. I JoLSEC LOAD LOWER ADDR REG CLEAR CYL REG I K048 LOAD CYL REG 10160 IEI9D IE34D ID38C F 147 MA NUAL E.O.R.MODE E.O.R I F 158 K 158 8USY I CKWD VRFY F 147 BUFfER MODE FI59 CYL CONT 1I K074 J ~~ CKWD VRFY cn CONT IE34C END OF BLOCK K063 COIeT. . DATA CORfOlIIATION DEVELOPM£NT 1',yu! SEEK a ADDRESS INCREMENT CHAINS , C FA 70~ INPUT TERM LIST FOR PAGE TeRM e1 7 5 Cl77 0224 C226 C235 C238 C262 CZ65 C267 C270 0271 C276 C285 fO"l 1111 JOle JOSO J134 J181 J269 1(160 1(190 M023 R209 5002 S003 5103 5-21 ~OCATION 2IOljB 21050 2G058 21080 2C09B 2D1OC 2C18A 2D14A 2C20C 2C21D 2Cl0D 20428 2C200 2E198 2A228 2G22D lE42A 2F'298 2836C 10100 2840A 2D4U 10088 2K06A 2F'42A PAGE 5 .. 15 5-15 5-15 5"15 5-41 5·'H 5 .. 41 5-41 5·41 5·41 5 .. 415 .. 41 5 .. 41 5-9 5 .. 9 5 .. 27 5 .. 19 5-25 5-29 5 .. 47 5-25 5~19 5-47 5"45 ' .. 33 2F'37B 5 .. 33 5.33 5112 2F'37C 5"33 5120 2H1U 21-112A 1F'18C 2D018 2COU 2CQ1B Sl21 5130 yt03 V201 V20:S W066 21="428 2F.24A 5 .. 23 ' .. 23 5 .. 35 5 .. 115 5..,15 5 .. 15 5 .. 13 602noooo A 5-20 jg:;j WR HEADER SW 1«>23 SECTOR MARK C224 INDEX 3 CI77 SECTOR VERIFY KOn BIT 6 C2B!! t 2 V203 \illITE HEADER C276 lD38A .xxl2 I START HEADER PULSE S002 SHIFT REG BIT 0 Jl.34~ t2 tl V201 Vl0l ABNORMAL I NT W066 IC35D .<-S WRITE HEADER SW J269 _ _ _ _ ~~SEC ON CYL-BFR-ADD UPDATE-SEEK CH J008 SECTOR MARK C224 0.1 ~SEC INDEX C227 I III IIiI Me MC + NEW OP START HEADER PULSE .xxl2 NEW OP 8 CLEAR F041 2-11-3 C267 CHKWD COMP S130 SH 1FT REG BIT 0 5002 DATA BIT 0 S121 SHIFT REG DATA KOO8 SE'CTiiii3 2-11 C235 t2 V201 SEEK CHAIN JI81 KOO8 SEc'i"OR3 ..... CONTROL DATA .... CORPORATION DEVELOPMENT DIVISION 'IYLa SECTOR VERIFY AND TIME OUT jilt C I." S INPUT TERM LX ST FOR TERM fj213 Cl03 C123 C1 6 7 C1 9 0 C1 9 1 C223 C232 C240 C242 C257 fl260 0277 F'142 Fl44 F145 F1S0 F152 F'157 1062 1063 1065 1068 1106 1112 JOO2 JOO6 J022 J049 J064 J070 J072 J08' J093 J113 J114 K002 K017 K031 KOS8 K091 K112 KU4 K125 K133 K141 K156 K190 M024 R200 5-22 PAGE 5-23 LOCATION PAGE 2y;S7A 2A098 2A088 2J050 2101A 21019 2102A 2E288 2Cit19 2C21C 2010A 2D09C 28240 2El1C 2E1OA 2El0a 2E14A 2EHC 2E09D 2G251:1 2G24A 2G238 2G218 2030D 20128 lD38A 2E298 !) .. 31 5-39 5-39 5-15 5-15 5"15 5"15 5 .. 15 5-41 5-41 5-41 5-41 5 .. 41 5 .. 9 ' .. 9 5-9 5"9 5 .. 9 5 .. 9 5 .. 13 5"13 5-13 5·13 5 .. 9 5-9 2J06A 2832A ~·29 1D38C lF06A 2C34A Sl11 5114 S115 5129 Vl05 V200 V203 V305 w219 w221 2S01ts 2101C 2iO~A 2&0"1:1 2&0"C 2i03A 26038 2103c 2"4"A 2f'4~8 2i31A 21311::l lFTlUC l'10D 1107D 2P01U 2FO.JA 2"018 2B;s5C 211 J B 2H28 '.25 '·25 '-25 ' .. 25 '-25 5·25 '·25 5·25 5.33 5-33 5·33 5.33 5·35 5-35 5·35 5-15 '·15 5·15 5·15 5-7 5-7 5-21 5 .. 21 5 .. 33 5-19 5-35 5 .. 29 5-27 21='148 R201 R202 R203 R204 R205 R206 R207 R220 5002 5003 s110 283t;B 5 .. 29 2C3SA 2C388 iC42A 1C37B lE238 1E40C 28400 5-2; 5·25 5-21 5 .. 21 5-19 5 .. 19 5-29 2033A 5"2~ 2E33C 2D398 2F.318 2D39A 2A33A 2041,\ iD08e 2EOU ~·25 5-25 5 .. 25 !;"25 5·29 5 .. 1q 5 ... 41 5-25 60290000 A WRITE CHAIN SI24 J022 Os SECTOR VER KO 17 WRITE F"l42 COMPARE F"l44 -I BUSY 1062 WR SW M024 MANUALI KI41 SECTOR MARk C232 EOP J093 ~ 1112 ENO'iif""'Bij( J049 Kill KO~ Kill KI71 couiiifEii'"COiT JI12 JOB5 J099 KI03 KI07 KI09 KII3 K 125 K114 J006 T3 V305 MASK OPERATION BYTE 322 a COMPARE C2BO J065 J 261 MANUAL J 134 J264 WRITE 2 KI03 T210 LOAD ~ T214 SHIFT REG. WRITE 2 K102~ SlCTOR RESYNC KI32 tll7 J 112 KI64 V304 SilO READ 2 W233 1---1---1........ 8200 LOAD J 118 REPLY 1* JI06 SI29 K 125 DATA WRITE DATA 1J3-1< • M TRANSMITTERS R200 C223 l", START HEADER RECORD READ 2 K133~ EO MARK CYCLIC ENC 8 I T II ~- WRITE 2 J 10 8 --+-<>------J KilO 0 12 -II - 2 C240 R 201 2D02B IJ3-I -e4 CONN MANUAL I W230 MAINT. PANEL DATA SW MOl9 21408 2HOIB 1025 --+--ir-;:)-4of 8205 8201 r 026 ----.c)-lt LOAD 8FR Klll JI33 K126 MANUAL I 1112 J295 2J39C 1027 --+--H)--4oI B20e 102B B001 21310 --+-i-,..;e-t 1029 BOll B021 B031 8041 B051 8061 B071 8081 B091 8101 8111 1030 21398 1031 8204 8202 8209 .. , INPUT TERM L.lST fOR PAGE TERM AOO1 AOl1 A021 A031 A041 A051 A061 A011 A081 A091 A101 A111 A130 A131 A201 A211 ·221 A231 A241 A251 A261 A271 A281 A291 A300 A310 5-33 LOCATION PAGE 2b2~B 5"11 5"11 5 .. 11 5"11 2D2eo 5 .. 17 20270 20260 2D250 2024D 2023D 2D220 20210 20200 2D19C 2D18C 8001 2H~28 8011 8021 8031 2101418 2840B 2H39B 2H38B 2H378 211368 2113'8 2101348 2H338 BO'U B051 8061 8071 80 8 1 8091 8101 8111 C194 C195 C256 e261 r035 F'112 F'113 J114 J269 J273 Ko07 K008 K009 5-32 &"-17 20288 2D278 2D268 20258 2D248 2D238 20228 20218 20208 2D198 2D188 2C26A 2C268 2D29D 2~328 2~31a 2G18C 20180 2C05A 2C42A 2A428 2&07C 2E07D 2C38B 10100 iDiaC lC40B lC41C 1C410 5-1'1 5·17 5-11 5-11 '''17 5-1'1 !':I .. 17 '''17 5"'11 5-17 1<103 1<113 1<116 1<124 1<140 1<190 1<901 2U328 2Q3 3 8 2C3 5 A 2U35A '-25 21J4lA lb018 100 b A 2f'101H 5-19 '-25 5-47 2Fl038 5-15 5-15 5-15 2~24B M022 V102 \1202 V205 2f1030 v303 2P06B 5.23 '·25 !j-25 '-25 '''15 5-11 5-17 5·11 5"11 5·11 5-17 '''11 5"17 5"17 5-11 5 .. 31 ' .. 31 5"31 5-31 5"31 5 .. 31 5 .. 31 '-;51 5·31 5"31 5.31 5 .. 31 S-25 5 .. 25 5-41 5 .. 41 5"9 5-9 5",9 5 .. 25 5 .. 4'1 !)-.47 ~"21 5"215 .. 21 60200000 A A201 AOOI BOO 1 A211 AO 11 BO I I "'221 J029 ,.,021 B02 I 2f30B 1(007 ADD 1(008 A231 BIT C256 II f035 2f30 ... 1(009 A031 C261 BY TE. 0 BO 3 I ... 131 .035 2Fl ... B KI03 A 2-41 11 ... ...0-41 START DATA IooIRITE BIT I( 113 8041 )(103 2 T3 elS8 11 " V303 K 12 4 A2S1 AOS] B051 RETURN A DDR T2 RETURN ~ FII2 V205 :: \i JO =:~~~}--==-.J--.J Vl02 ,.,261 ... 061 806 I A271 ... 071 B071 A281 ... 081 BOBI A291 A091 B091 JOl7 213 ...... AI 01 BIOI J034 Alii B 111 WRITE HEADER MANUAL 1 J289 I( ''''0 INPUT TERM LIST F'OR PAGE TeRM C1 9 4 C235 C257 C260 C266 C307 C325 1111 J012 J069 Ji07 JUS K003 1<006 KOO7 KOO9 Kl07 K109 K112 1<113 KU4 S110 Y104 ViOS V202 5-35 l.OCATI0N PAGE 2G18C 2C09B 2D1l'lA 2009C 2C20B 2D01A 5-25 ;-41 5 .. 4t , .. 41 5-41 ; .. 41 20100 2A22B 5 .. 41 5 .. 9 2F'05C 5-.21 5",23 2G12D 2E30A !)'.2~ 2E30B 1C42B 1C40A lC40B lC41D 20320 2E1'78 2DJ3A 203:58 2E33C 5 .. 25 5 .. 2t '''21 ~ .. 21 5-21 5-23 2G31,A lE16D 2F' 010 2F'038 5",25 5 .. 25 ' .. 25 5·25 5 .. 33 5 .. 15 5 .. 15 5 .. 15 602DOOOO 5-34 A s007 10 S017 0 I' (.) BYTE 321 C325 t0: BYTE 321 C307 ;!! ~t= .C if 1'.107 WRITE ENABLE ~c !o (JU tie ENCODER A (X) (SIMPLIFIED) = I+X+X2 + I('+XII +X12 ~. HALF "V' o 0 I I .2. J. .!!. J. ADDU • 0110 t2 START DATA 2 KIl. START DATA 1 KIl3 SECTCfI 2 Il007 SECTOR j JOll SiFTtii2 START DATA i KOO6 Kl12 SECTOR 2 K007 -.RITE I£AOERS K003 l-U-l C266 IF09B J401 SUS to] V1~ Y116 VI05 lEl6C SU4 WRITE DATA liT IFO"" SllO~ JI07 Y JUS C19. It£AO DATA BIT NOlL: 1. CIRC...ED ..i.TlLRS INuICATI: STAii£S \lilT\' ;/2 :'::(R '£"'VJIlKS. ~~ ~12? ~> ~i5 0 INPUT TERM LIST FOR PAGE TeRM AOOO 5~37 LOCATION PAGE ~~l~t A010 11020 A030 A040 A050 40 6 0 40 7 0 A200 "210 11220 A230 11240 A250 4260 A270 2023A 2022A 2029C 2D28C 2027C 2D26C 2D25C 2024C 2D23C 2D22C C202 2C124 C203 C204 '20' C207 C208 9209 C210 C211 C212 C213 C2 5 6 C319 0320 J259 K035 K037 "190 K19l K901 V115 \/117 \/209 V211 W215 11/221 5-36 ~;i1 2027A 5"'17 2026A 5"'11 2D254 5 .. 17 2D24A 5"'11 2C128 2C12C 2C12D 2C10C 2C118 2C09A 280U 28028 2B02C 28020 2C05A 2C080 2COU 1021A 1E298 lE290 2041A 20418 lE018 28124 28128 2C09C 2C09D 2fOU 21128 5"11 5·17 5"17 5 .. 11 5-j,.? 5 ... 17 5"'1' 5"17 5 .. 17 5·1' 5-"15-41 5-41 5,,41 5 .. 41 5-41 5"415-41 5"'4!. 5"41 5"41 5 .. 41 5"41 5"41 ~"41 5"19 ' .. 19 '''19 5"19 5 .. 25 5-41 '''41 5·oH 5"41 ~"7 5.7 60290000 A 2B22C A07 0 ~ 2CI3B A21 0 01 ~B13 ~I / C207 r- ~ C019 Ii ~ AI7C 2AI88 C01 01 2GIOA C034 C04T COST COlT 06 ~ Kltl 2111 I D A08 a / A28 a / C202 y ~ 2CI3A / ~ WIII~ ,[ ~ 08 H }A ~~:~ cae C2~ 0 08 V C20~ §J C212 1(190 C!IZ b~AI3A 2110lA C051 cos C047 COJlJl COSS CO2. 2A0311 C!13~> A05 0 ~ 2CI4B 0 ~ / ~ ~.,S ~l ~ C051 211 1 II 2A23A :I Ju ~~:~l TC05 1:.-- C05:1 C31~ J - 2A 1 ZI CO~5 211 11 A A04 a / A24 a ,/ y ~ 2C14A / ~ ~l W"16 CO., 047 1 }A ~:~~ / C04 b / A14A 2A41A C20. 2A41B 2C33A C039 C03. CO'35 '1211 '1117 / A23 ~ aCISI / ~ / ~ ~I H:1I17 C031 C210 C002 COl3 can <;r--C312 C033 2F050 A03 a \ C04. C031 21125A -1 J2A ~:~;l / C03~1 -C'o3:;j 1 C319 2A28A W215 C31 OF W221 C312 23 8 C320 15 8 1 /C3 '2 2A3211 C025 -< C310 2A28C A02 0 V 0 AOI 0 / U V A21 0 ~ 2CISA / ~ LJ 12A18A~1 i I V /T 2B221 C028 b2A22A C02 '-:I. T~ACK T I U21C C02T B 2C04B 2A2111 ~.'8 ~l ~ ~ ~ V I C023 ~ ZCIIB V -¥J C021 C022 C012 AZoc~1 C013 V COlT ~2829A 2D42A COl. 1 / " C'31 0 coo 2A16A C31" 2A!ID 2E42C AOO a V A:lO 0 V (;2031 C20S SEEK 0 READ ADD .~ 2CI . . U C207 ZF03C K901~ K035 ~ V CObl '1209 C209 coo IF"3'3C 2C41B ~ ~ coo V }A:::;I COO /' ~ CO 1(191 275 C256 13 8 C21 I II 115 C21 C213 1(031 CJ 1 1 MODE .)259 INPUT TeRM L.IST rOR PAGE TERM A080 A090 A100 A110 A280 A290 C008 C018 C028 0032 C047 1!I053 C063 0065 Co72 6073 Co74 C202 C204 C207 0208 C210 C212 0216 C217 C218 0219 J410 J4U J412 J413 1(0'6 K057 "214 "215 "216 R217 V119 V121 Y21J V215 Y093 5-38 '~39 lOCATION PAGE 20214 2020A 2019A 2018A 2021C 2020C 2A40B 2042A 28228 2419C 28114 24180 2A179 2Gl0A 2417C 24170 24168 2Cl2A 2C12c 2C1DC 20118 2802A 2802C 2COU 2A01B 2AOU 20420 21<07. 2KD7B 21(07C 21(070 1E24A lE248 2KD48 2KD4C 2KOlA 21<038 2812C 2812D 2C08C 2eDSS 1037C 5 .. 17 5·17 5.17 '·17 5"17 5-17 5 .. 37 5 .. 37 5-37 5~37 5-37 5·37 5"37 '''37 5·37 5·37 5-37 ' .. 41 5"41 5 .. 41 5-41 5-41 5-41 5 .. 41 5-41 5 .. 41 5-41 '''4' 5-45 5-4, 5 .. 45 '-19 5-19 5·45 5-45 5 .. 45 5-45 ' .. 41 5 .. 41 ~jo, 41 5-41 5 .. 41 60290000 A ( S\. R216 ,. ;~ N'~ a:: ,-\; ,.. R215 ~ i!! 3~ .... e i2 ....... '.~" ~~ 8~'- I~ "'3 ~~ §u tit R21" J 413 -__.00-------. C20a J412 -.....,.0--+------.. AlOO -~-+-:c_-~ C207 A2to----~----~~ J411 --~-+---+---. A2a'0-~-_+--_+~~ C208 C073 C063 C053 C074 CARRY C216 V213 Y093 K057 V121 DEC C210 C212INC COOS COIS C028 C032 C047 C218 INPUT TERM L.IST FOR PAGE TERM C002 C003 C008 C012 e013 C018 C022 0023 C032 e033 e037 C042 C043 e047 C048 0052 C053 13057 e062 13063 e067 e072 C073 C079 C082 0083 C092 C093 Cl03 C123 0166 J002 J023 Ji14 J90" 5-41 LOCATION PAGE 2A20A 2A208 2H08 2A20C 2A200 2042A 2A19A 2A198 2A19C 2U90 2F'05D 2A18A 2A188 2811A 2A12A 2Al8C 2A18D 28118 2A17A 2A178 2811.0 2Al7C 211110 2922C 2AlOA 2U08 2A10C 2A100 2A098 2A088 2J05C 1038A 20010 2C3SB ID~IA 1<009 1(036 1<053 11<054 1(057 K058 K059 1(060 K064 K065 1C41D 1E29C 10338 1E25A 1E248 1E40C lE400 lE38A 1E39A 1E398 K066 K1 9 1 1E39C \/100 \1200 \/203 \/205 5-40 2D418 2B2u 2F'03A 2C018 2F'03D 5-37 5 .. ;57 5"37 5"37 5 .. 37 5·37 5 ... 31 ' .. 37 5·37 5 .. 37 5-37 5 .. 37 5 .. 37 5 .. 37 5-37 5-37 5"37 5 .. 37 5-31 5-37 5 .. 37 5 .. 37 5 .. 37 5 .. 37 5 .. 39 5 .. 39 5 .. 39 5 .. 39 5-39 5-39 5-15 5-21 5-19 5 .. 25 V250 11300 V301 V305 2F!J1A 2P05A 2P06A 2ti35C 5·15 ~;'15 5·15 '-15 5-~7 5-21 5 ... 19 5-19 5 .. 19 5 .. 19 5-19 5-19 5 .. 19 5 .. 19 5-19 5-19 ~-19 5-15 5-15 5-15 5-15 60290000 C c a U N T ERe aNT R a L DECREMENT C a C043 CO!S3 INCREMENT 2AOIB coe3 cooe 2B020 2802A DECRI KOl6 cOle C02! BYTE! C2 III 2B02e CO~3 C2 I 21 COS2~ C032 2CI8A C062 2e208 T -- 2BI2D COMPARE K053 2BI2e 2BI2B 2B12A 11 VIOO 2C08B 2C08C l T2.5 V250 2010C C06l BYTE 0 CO" '''0 "" T 'o-H -? ~ COS3 C063 con ~ coe3 C002 COl2 J l C043 C057 C063 C079 C2S7 ==l \/20l ..-J \/lOI C~4J -o-.t"I'm "''1' 1 C255 iT \/300 2C21C 2C200 COil. C022 C032 KI91 ~ BYi'"Ei4 e073 2CI9A 2C21D COS7~ 2010B YS81 2 J II- 2 \/200 COOl II -3 COil -2 C008 COl8 C022 C033 V20!S 2 - 11 \/lOO BYTE 2 C255 2CI8S 2C20C 2 - II - 3 C053 20420 CI03 K06S e C048 C022 COS2 14- C057 C042 2 BIT 6 T"f=2 2e05A C033 NTER CaNT e28 C023 2CII B CYLINDER 0-X-3 e043 R~ R2 I 2C21B g~;~ ---a--.t~241 iliJ "" "''1' '1 "-,, -,~ 2CIOO R_ R 2C09C I - I , - 3 C2S9 eARRV 2C090 "-4 con ~ ~ 2CI98 C 062 2AOIA 2802B ZERO T RAN 5 L A T ION 5 U N T E R ~ COS2 I C2S9 C093 CONT KOSS COUNTER CONT I KOS9 322 ADDRESS -+ C KI91 KOSO 0.12 USEe C002 COl2 CI2l I COUNTE R CONT 2 1(064 2e07A K058 2C09" l START HEAOER J002 CLEAR SECTOR RESYNC CISS COUNTERS C079 C037 C067 C048 CI03 2 - II C082 l C047 C02l COOl J T3 v305 JI14 START DATA 2007B UA8238 2COSO COI2~ C033 C235 Cl2 C057 con SEIC: ~2COSA J906 KOS4 CLEAR COUNTER COUNTER CONT COUNTERS 182 CONTROL 8 TRANSLATIONS - I J906 UA81Sa INPUT TeRM LIST FOR PAGE TeRM 5"43 LOCATION PAGE fi3i 2F268 !5-13 1103 2G07A 28328 2Ji4C 2D168 ~·9 J091 J272 J286 R200 R201 R202 R203 5-29 5-27 5-27 2EOiA 5 2S 2E018 2E01C 2E02A 5 .. 25 5-25 5 .. 2~ R204 2E02t1 5·25 R205 2E02C 2E03A 5"2r; 5"C!; 2E038 2E03C 2fOU 2113A 2112A 5-25 5 .. 25 5 .. 7 5 .. 7 5 .. 7 21128 5~7 R206 R207 R220 101215 W218 101220 101221 A 60290000 5-42 A ON SECTOR OR SEEK ERROR R200 UNIT R201 I IJ:5 - E ,H R200 O~ R201 R202 IJ4-E,H 2G02C 'NIT2~~ R201 ~ R202 R203 II R20,", ON SECTOR OR SEEK DISK F ILf W221 IJI73,76 DATA ---,;? IJ UNIT ~ SEEK ERROR J272 R203 !S~~ R205 R20,", IJ UNIT 8- E ,H 2GO,",A 8~ '~.-E[.HH 2(;0.046 JI I UNIT7~~ 'J7 . [H UNIl ~ - E, H 4 ~ I J!S E E , H H 2 GO 3 C UNIT 2J098 2GO.04C .~~ ~ 1~20A R205 1"" "'DD D~ Wll8 W215 W22, IF386 'J21 R206 R20S R207 ~ J22~~ R220 SEEK INT 8USY J286 SEL FI31 R207 R220 SELECT COMPARE SEEK INTERRUPT INPUT TERM LI 5T fOR PAGE TERM A010 A020 A030 A040 A060 A070 A080 A090 Al00 A200 4210 "220 A230 A240 "250 A260 A270 10 281 1\291 C007 0013 CO2? C037 C047 C057 C067 C079 C087 C093 Cl07 C113 C127 C133 C143 C153 C219 C229 r05e 1'102 FlO;! 5-45 LOCATION PAGE 2D2RA 2027A 21126A 2D251\ 20231; 2D221\ 2DlU 2D20A 2019A 2iJ29C 2028C 2021C 2D26C 2025C 2D24C 2023C 2n~2C 21)210 2D200 2E42C 2A200 2A21e 2F050 2Bl1A 2B118 2B110 2R22C 2F.42D 21;100 2H02D 2A09D 2811c 2AORD 2A078 2A07D 2D420 2C380 21210 2EOse 2EUBD 1115 2r: 0 6U JQ57 J058 J059 J096 J10? JU5 lD~8A 1D2~8 J248 J278 K032 5-44 ~"17 KOJ3 KQ34 KOJ8 5-17 K039 5-17 5-17 K040 5"17 5-11 5-17 5 .. 17 5"17 5-17 5·l.7 5-17 5"17 5-11 5"17 5--17 5·11 5-17 5-17 5 .. 37 5-37 5 .. 37 1iJuA lB3UI:j 163vC 163UD 1liJ J.A 1liS1B lEiJ1C f( 046 K047 lliJ1U 1&J2A 16321::1 KQ4Y K055 18251:1 K068 ll),PC KQ69 K901 1£i32D lD3.lD Y073 11iOlf:j 2 UclA W211 W243 2138A 2G30B 5-19 5-19 5-19 5 .. 1Q 5 .. 19 S-19 5 .. 19 5 .. 19 5-19 5-19 5 .. 19 5"19 5-19 5-19 5-19 5-19 5-2:; 5-7 5-7 5-7 5 .. 37 5 .. 37 5 .. 37 5-37 5 .. ;57 5-3Q 5-3q 5-,39 5-39 5·39 5 .. 39 5"39 5"39 5-41 5 .. 41 5"9 5"9 ,,,9 ,-9 ,-19 '-19 lU298 5-19 1038D '''19 5-23 2E30A K041 KQ42 f( 0 4:5 K044 KQ4S lF2?~ 16'2'1 A 2~308 5"2<; lD4QD 21208 H25A 5"19 5-47 ~-19 G02DOOOO K ADDRESS AND CONTROL BOS A291 2K038 2KO'8 .1 A 27 O-+------?O BIT 7 CI43 C067 A281 2K03" 2KO 1 " A260~ IJI-34,37 2k'D6C ~~FILE 1(032 F'02 C219 C I 33 C229 -35,38 C057 2JD9C ~~ A2"'0~ SELECTED SEEK ERROR SEEK CI27 -58,62 C047 ~~ 2JD9A POSITIONER READY IJI- 66,71 UNIT RESERVED ~ -30,33 2K03C Y073 ~~ CI 13 C037 -60,64 W211 2K06A ~~ CtfJ IT rw INDEX W243 SELECT ERROR -59,63 I 2JD2B ~C ~~~READY CI07 con 2L03B Y073 2LOBA C093 (FCN 0001) FOS8 IJI-047,5D ~>---- UNIT SEL IJI-6S,70 ~>----RELEASE C013 2L0481JI-67,72 COB7 1115 J218 C007 ~>-- CLEAR , 24,27 J261 HD SEL 2 >---- CONTROL SEL IE19A K049~ Df'F""f K038 ii"f'A'D CYL KO'l1 STROBE J268~T2251f---4>-- HEAD SEL SEL DIFF CYL.K040~33B EAD SELl SECTOR I SEL 1 RITE ENABLE J 107 READ ENABLE J115 K044 SEEK K047 HEAD K901 K043~----------------- K043 DR lE28B S E C"TO"RI k' 0 04 04 IF27D Z RESTORE RESTORE FCN ~ K041} K0042 STROBE K033 READ ENABLE J, 15 FI03 ~RITE ENABLE Jl07 NOT ES' CVL D.2USEC T221 IS " PO .... ER TRANSMITTER 2 CYL SEL 0'" 9 14 NOTE' I. A9 POWER SEQUENCE ASS Y CHASSIS AIO CHASSIS TBIO 20 VDC i--+---- { ;H-.- +20 V { TERMINATOR POWER T 820 - 6 TB20 - 7 T820 - 8 TB20 -II 7 + { TB20 - I TB20-2 - FRAME 14° 1-i2 '4f"~O FRAME ~A9E3 '~"Yf . 9 laC>II0>-j--I_ _ _ _ _ _ _---1 12° REFER TO CONTROL DATA POWER SUPPLIES MANUAL PUB. NO. 60120700 FOR A SCHEMATIC OF THIS POWER SUPPLY. GRID GND FA705 -A POWER WIRING USING HI-SPEED BLOWER WITH VANE SWITCH A10 GRID GND ICOOE IOENT c E< .... AI POWER SUPPLY LOGIC METERING A2 POWER DISTRIBUTION BOX 120/208 ~ N Io-I,----r--------------------~--~~ r-T_I_4 _ _ _ _ _~----L VAC (IJ B 3 r-T~2,-=-5_ _ _ _ _-l.-_-.-lL r-T_3~6_ _ _ _ _~-~L 4 (lJA (lJC 3 PIN 9 I'~ 'i~~J~ ,W TBIO~ GRD i :, GRD TB10-2 - 20 V GRD - 20 V Y N TBIO-!5 TBI0-1-20V EI "0'"''''' TBIO -7 + 20 V - 20 V 400 Hz DISCONNECT 2 I Til T810-6 GAD TBl ~ CABINET llyly I I m ili II 11.I I, , , .', TERMI:~~= {+ I'~ '''DO - , "i :., , ': I SEE PAIl 1-..... A4 A3 BLOWER I IO~:"~ I r T,il,Jz','.-.'.' IU PAGE 5-03. fOR BlOftR W / AIRFLOW HllSOR TB4 ~ TB20 POWER SUPPLY GRD PART NO. IB626300. REFER TO CONTROL - 20 V DATA POWER SUPPLIES MANUAL PUB. NO. 60110700 FOR A SCHEMATIC OF THIS POWER SUPPLY SI REMOVf THIS JUMPER WHEN AUXiliARY --.. CONTROL IS USED ~ ~ FROM JACK LOC. AT CENTER OF CHASSIS _ .- - - I + 20 V ~ I' 10 Hz ~ :FB3 ::~ :} 4° TB5 2 30 400 Hz { POWER ON ILOwP ., .. I . NOTE: I. REFER TO CONTROL DATA POWER SUPPLIES MANUAL PUB. NO. 60120700 FOR A SCHEMATIC OF THIS POWER SUPPLY. A9 CHASSIS· POWER SEQUENCE ASS Y 20 VDC H,("j,2 TSI C!SJ +20V TB20 -I r~ T8l0-2 T820 -6 RJI -UPI 061 TB20 -7 TBlO- B DISK 263 465 TB20 -II DRIVE FRAME ~A'" 1--f2AOO" GRID GND GRID GND ':"Ltf . 667 12° 14° FRAME FA705 -A POWER WIRING USING BLOWER WITH AIRFtOW SENSOR ~ Ltf":O 1- ....,.--pl ,. 2 3 1 D D ...... TB4 ~IR~A-;-~';- - - - - - ----, I CI TBI 'I J., 'I_ CRlf 2 I 3 I ........ c 2 1..... 4 '" ~I II '--' .J! C2 I II I&~~ ·i. '- 35 V21 5 W237 Ca98 C250 C01 1 C116 • • ~2n9 V213 xxxx xxxx xxxx XXXX XXX X xxxx V211 C319 xxxx XXX X xxxx xX)(x xxxx xxxx 101.8 V201 V2n3 J1D4 c C62 1<22 C.2 C62 10148 T3i'0 Jt0 6 U1a 130n ViOl T3'-1 J145 T311 TJ01 V1DJ XXXX XX)(X )(Xxx xxxx J402 0 H46 BS~ BGM "GM ~GM BGM 80M F110 R334 R315 R304 R206 R20J R200 FlU R135 R324 R~05 R201 R204 R201 ,112 R344 R325 R314 R220 R205 R202 F1l3 )()(X X XX)(X xxxx XMXX xxxx xxxx E 10148 1<33 101418 10141 C1S "'~7 C15 10441 F'03a 1<1 7 0 V~01 V3,,0 J4g4 vaOn J40~ W215 J095 1<171 V303 J016 xxxx V202 xxxx '1102 "-042 xxxx It13 J012 xxxx J904 XXXlC 1114 J09 4 xxxx 1115 C037 xxx x V2G5 XXX X '1105 F' H48 C251 C258 C23S CJ25 1a47 C21 C21 C62 C3 1H f'n57 C307 U30 0259 C255 C318 T331 C2110 xxxx xxxx xxxx ltn7 xxxx xxxx XXXX 1-146 "'4f1 10146 F14. r148 C402 F145 F"149 C403 ~156 F.'102 ,147 "1157 f'1 0 3 rt.' 8GM 8GM BEM R332 Al13 R302 POOD R333 R321 R303 XXXX R342 R323 R312 XXXX H48 "003 F'006 r044 W229 H47 1103 1104 1105 ro31 H4a J092 1102 J06S W228 H48 W259 C224 "'260 '048 BGM 1<14 K25 K67 H"3 K3? H46 4F'H 8CM • • XXXX xxxx uxx XXXI( 10147 1146 H30 11147 FU07 ~ 004 C065 "002 FU08 ~oo5 F'n61 F'009 w~87 ~104 xxxx '010 JU69 f1n5 xxxx rOOl Kl<4 03 B K23 H47 C200 C201 Ci:'oJ C208 C20' CCi04 xxxx C207 C205 Xxxx C271 XXXX xxxx POlO Pon8 • * XXXX * • C183 C1St l(XXX xxxx X)(XX Wxl(X xxxx XXXl( YOs 0 xxxx C400 • •* XXXX \(XXX xxxx xxxx xxxx *xxx xxx x xxxx YiOO XXX X C401 * 101087 I1UO 1148 C15 C15 (;302 J424 J423 (;301 xxxx WXXX (;300 XXXX XXl(X J264 xox lOexX H48 C281 C282 J267 C?28 H47 1<23 10146 1146 W118 W11 7 C174 K080 "'018 104017 0175 KoS1 J265 XXXX C176 C172 J288 XXXX Cl77 C173 H47 H47 H'I7 li47 H47 eGM K23 K71 i00i112 ~~1 0 8 VoilO 4 1'1100 C303 "225 W235 Y08l J42? 101109 wl05 1'1101 C304 "222 F'060 Y083 J?72 101 11 0 1'1106 wl02 C305 PI~,-7 xxxx YOB4 W11 9 1.1111. WlO 7 W103 C306 "XXX XXX X Y041 H46 H41 H53 C161 C222 V059 e1 7 0 J40n • 0171 Cl01 • • H46 Jn72 C164 101 H53 C21 "'46 Vi76 C22~ C190 Yin C329 C1 91 va 78 XXXl( C390 V8 79 xxxx C391 1(67 BGM 4GH Vi S6 R230 T221 C227 C165 104247 XMXX R231 xxxx J282 C166 XX)(X )()(XX R2i 9 XXXX C231 C167 xxxx xxxx xxxx XXXX H47 G xxxx )(XXx XXXX XXXX 101086 1101 S121 S120 P009 1100 7 J261 Y002 YII12 C182 C180 C160 C221 Y10 7 1148 1<67 K61 1<33 1<33 K33 K33 1(.)3 J184 von VOH W202 101204 "'20 6 101218 w~20 J262 XXX)( xxxx w203 101205 W?O 7 '~219 wi:'21 W224 XXXX XXl(X xxxx xxxx Xxxx xxx x xxxx C226 xxx x xxxx xxxx xxxx Xl()(X XXXX xxxx K35 ~148 1<23 W150 i00i134 W13~ W151 w135 W036 XXX)( W13 7 xxxx XXX X 101 252 xxxx 08 1<33 1<33 1<33 1<33 1<33 1<33 1<33 1(33 H47 C21 Co80 C090 ClOD Cll0 C120 CUD C140 C150 C210 Co 58 C08! coca Cl01 CHl C12l CUl C141 C151 C211 C128 xxxx IiCxxX xxxx XXXX XXXX xxxx xxxx )(XXx C21' XXXX XXXX yooex xxxx xxxx xxxx xxxx xxxx xxxx C213 xxxx C~02 H47 K26 HJO K67 C265 J142 JU2'> YO"8 J023 * * 1112 xxxx A191 xxxx XXXX xxxx A181 XXXX xxx X xx)(X ~46 • 1<29 1<29 1<29 1<29 1<71 1<22 100 8 100 9 InlO 1011 Yt}09 \11250 1028 1029 1030 1031 Vo71 101249 XXXX xxxx xxxx XXl(X Y095 xxxx XXX X xxxx xxxx xxxx yn19 xxxx 60290000 C H46 C082 C083 C092 CD93 10141 K33 10147 1<24 1<27 C21 C~l K71 1<67 1(23 J152 F'11'10 M!I12 F'029 Fn15 F016 FU19 You VOla 'ana r049 F'lU 1109 J406 J022 roll ,u20 Y055 X)()(x ::2151 * XXl(X "'269 xxxx xxxx xxxx XXX)( YOt5 xxxx .xxx r054 xxxx 1110 xxxx xxxx xxxx xXXX YO'8 Xl(XX hxx H48 1<67 10146 F'038 '013 W266 r039 xxX)( W261 r040 xxxx C194 J293 XXX X C195 1147 J 4 05 J278 J2J1 C280 10 H47 C21 1<26 C21 K35 C21 1<23 H46 K33 H46 H46 W048 Jo7J W261 I 1(. ~I .. 20V ISO J... 100 1°":> 221 -20 t 100 COI/.I~. +80'1. 29 - lo?,. ./VI/' I~O 7 NOTES: -l I CD I. UNLESS OTHERWISE SPECIFIEO: ALL RESISTANCES ARE IN OHMS. ALL CAPACITA'ICES ARE IN PF. ALL R£SISTf)qS ARE 1/4 W, 1: 5%, ALL CAPACiTOPS ARE ~ 20"'•. ~ REFERENCE OQAWINGS ASSE"niLY ',(":>6S201 (lOArn> :~.·.1.l<..>00 Discriminator, Type BDM S LINE RECEIVER, TYPE BGM This card contains three receiver circuits similar to 3000 type receivers. These circuits are self terminating and the input wires cannot be reversed to achieve a logical inversion. The circuits on this card are non- inverting and receive data and signals from the disk units. 0') o l.\.:) co o o o o ~~ lJI » • C) C) g t\:) R., -'0' ... RU lK 3.91< R'OA .,. i ~~ ~ . .I, -ZOV [] ?,,'K :> .. P4A l.2. ... 1 R6A -Z.O'l 5" il.OV ~ -= CIS -tOv + RIZB TP- Co ~ -2.0V ~ ~ :, 11 + C'C -::-2.0v " • , "".. -= ,, ".~ ~ ~ :Ol ~ u-o ~~~~'f -UN '" II T"'8 -= -= 5 .. 0 Ycil. WT UNLESS OTHERWISE SPECIFIED: ALL RESISTANCES ARE IN OHMS. ALL CAPACITANCES ARE IN PF. All RESISTORS ARE 1/4 W,:I: ~%, ALL CAPACITORS ARE:!; 20'Y., REFERENCE DRAWINGS· ASSf.'-40lY :;2..570300 ~o:.S7QIOO ::- -- -to +20V Line Receiver, Type BaM 9 .ZO 4000 :t 30" 115 4000 ~ 30" R7 CR3 BOARD I ~.,OC -20V NOTES: -.J •• C 5" -= 2. I •• c f c.1\4C ,4 I. 10 8 1 OSCILLATOR SHAPER, TYPE BFM This circuit is a 5. 06 MHz oscillator and shaper with a square-wave output. pulses should be adjusted for 100 nsec. en o ~ co o o o o The negative JI JI m o I:...:l \.0 o o o o ~ -tOY .. to v ... -zo v rn 4.7K ~ j < RIO 1.51';' ~ "~~ rT~ III ' '.lll,u,m y i1Y~~. }?i' " 1 4~ zl' 1 i ,'; J ~~ I ZAK _" ,0 _n ~ < R3 R" 1.0 K CR. roM I I CRt 2.0 I( IS -=- RII CRZ 1 TP-C CRl • -ZDY NOTES: UNLESS OTHERWISE SPECIFIED: ALL RESISTANCES ARE IN OHMS. ALL CAPACITANCES ARE IN PF. ALL RES!STORS ARE 1/4 W, ± ~P.4. ALL 2. CAPACITORS ARE + ASSEMBL '\': ~25b"800 BOf.RD -J I I--' W eo% -ZOOt. REFERENCE DRAWINGS : 52Sb~OOO Oscillator Shaper, Type BFM PULSE SHAPER, CONVERTER TYPE 6AFH Each of the two circuits on this card converts an output of the discriminator to controller voltage levels. 0') o N co o o o o JI 0) 1--' JI .. tOV -20V 0 I:\:) CO ~ 0 0 0 0 >- R4A~I.8Id·w 47 RSA ~e.~K ~' ~~u. 4.71< ~ ReA~I.SlCiw ~R'OA ~91C ~ ~ ~R"A I Z.ZKIW I ~ RISA .70 1 ~ Q8A 11801101 RZA l t--VVV 47 -= ~''I;;l'''C:UU ., -= .R-iTP.a J?3A Q'A 3 5 t4S6UOO t---t()C7A 11801100 CRIA -= -=: - +20 11 12 -aov I RIO~ ~9K RIB ? I' CRZ A IL ? ? In -L ? ~R"6 2·2iCi W R'2.& 470 ? 47 IS~ I I .. ,"'.1 I RIZ~ 1.11( +20V -= .86 "80WZ I ~~ IIr R2B 14~ 47 \,,"'-1''1 :)10"00 CR2 B Z4,(,ZZOO ~Q7e -= ..ry- • ...... CJ1 IIa02100 ,.D ... -= NOTES: 2. ~ -= C.flJf ~~uf ~LH '0 -20V (He '3 -J I - -=- I. ~ UNLESS OTHERWISE SPECIFIED: ALL RESISTANCES ARE IN OHMS. ALL CAPACITANCES ARE IN PF. ALL RESISTORS ARE 114 W, :t ~ -/0, ALL CAPACITORS ARE +60% -20%. 3. UNLtSS OTI-IE~W'SE SP!ClFIED: AL.L DIODES A~£ CONTROL DATA Dli>AW1NG NUMBtR 11802900 POI..ORAIZ:'D ~- REFERENCE DRAWINGS: ASSEMBLY: 18225100. BOARD: Ig200700. Pulse Shaper. Converter Type 6AFH 7 a 9 POWER LOSS DETECTOR. TYPE 6AGH This card contains a transmitter identical to the type HA19 (transistors Q9, Ql0 and Qll) and a power loss detector (transistors Ql through Q8). together in order for the transmitter to operate. Pins 3 and 4 must be connected A voltage drop of approximately 2 volts in either the +20v or - 20v power supplies will disable the transmitter. m o t\J co o o o o m 0 I:\,j CO n 0 0 0 0 'It .tov t -. *R1.7 +to V JI R'U~ ft1~n CRt R~~ 5' 2~5C;UOO L" r CRI .. t-I551500 13 8 . C4 ~~ZIISOS~ot CIU' -= ~QI :P JI r- 10K 75 V,: .~~ I" R' 6,1K ·/O'~."/If'1)""" ..... ,," CRIS ZASS3S00 14-1 14 CIUl l.4501801 -= B 0.& Ftl! 110 R1 3.9K CR4 fl60Z,IOO 2.4553500 A -= -::" R8 I.&K 'V\I\;" 3 I II ~ +zo~ RI~ -= +2()V C6 v-A 4 I 22. .. -2.0V CRII 1160t900 ~ CRI1 IISOl.900 116102.00 -J I f-O -J 2. REFERENCE ~-2D1/ '3. A55E:MBLY RE.QUIRE:S TWO LOCATIONS. DRAWINGS; ASSEMBLY I ~~ 55800 BOA~O I e~~6000 ~"*,-.20$ rlt1~-.;2o" II NOTES: CARD ~ CRIO 11810tOO RtO UNLESS OTHERWISE SPECIFIED: ALL RESISTANCES ARE IN OHMS. ALL CAPACITANCES ARE IN PF. ALL RESISTORS ARE 1/4 W, ±!5 •.4. ALL CAPACITORS ARE: 20"1•. .IUF 12.1 S.tK I. CI I .lUW ct C~9 -i Power Loss Detector, Type 6AGH • I -= ttK R7 I.SI( -tOY 7 8 I -J 1 ~ 00 INCREMENT ADDRESS 5-29 RECORD START T2.5 5- 19 T1 SET 5-19 T2 5-19 CLEAR T1 T3 5-19 T1 T2 5-19 T2 5-19 T3 5-19 CLEAR CLEAR CLEAR MARK COUNTER BLOCK COUNTER END Tr~E CONTROL CONTROL CONTROL BLOCK OF 5-41 T3 ~ 5-43 Ie LEA R Ie OUN TE R END j OF BLOCK I 5-41 T2.5:0 TI COUNTER I" L --;. C T3 ~ <:0 o Ul CONTROL 5-19 GENERATE 100 T2 "IS END IAU OF PULSE ENABLE BITS 6-10 OF LO\lolERi ADDR o o o TO DATA 5-17 BLOCK m o T3 5-19 CLEAR CVLINDER BUS I LO~D ENABLE COUNTER 5-11 I TO THE 5-17 ILOAD I --;. 5-17 AU I AU T3 5-17 OJ o ~ CD o o o o LOAD ADDRESS Cf) START A1 30/A131~ A 1 30/ A 1 3 1~ES SE T ? ~/ /NO NO 5-17 5-17 5 17 CLEAR LOAD UPPER CLEAR LO~ER UPPER ADDRESS ADDRESS ADDRESS REGISTER REGISTER REGISTER 5-3 5-5 5- 3 5-5 5- 13 5 - 31 CHANNEL BUSY ADDRESS REGISTER -l I ...... CD ,,»Y~E~S~_________________________________________ WRITE HEADER 5-19 5-25 5-15 5-15 -.J I t\j PUSH SEEK SWITCH o SET MANUAL SET INDEX SET INDEX 1 1 2 5-15 CLEAR INDEX BYTE BIT TIME 5-21 SET INDEX T2 5-21 SET WRITE HEADER 5-21 SET SECTOR Tl 5-21 SET SECTOR 3 5-21 5-23 T2 __ Tl SEND ERASE WRITE ENABLE AND CONTROL SELECT TO DRIVE 5-23 WRITE CLOCKI BITS. SYNC PATTERN 232 BITS START HEADER LOAD SHIFT REQ WITH PULSE ENABLE S--+WRITE DATA BIT FF 5 21 SET ADDRESS ERROR 5-21 AND ENABLE CODER __ DATAI BIT FF LOAD RE...: WITH UPPER ADDRESS CLEAR WRITE HEADER AND SECTOR SET HEADER CHECKWORD ERROR ** ~ o t\j CO o o o o en SET WRITE 2 READ 2 OR ALL INPUTS NEEDED FOR SECTOR VERIFY . LOWER ADDRESS READ HEADER 0) o o o o TIME 5- 25 o l'-' CD BIT 5-23 RITE I START - II - ANUAL TI 5-35 T3 U1 START CHECK WRITE HEADER PULSE LOCKOUT AND DEFECTIVE TRACK BITS T3 CLEAR NO .1 5-41 CTRS T3D HEADER LOAD COMP a CHECK 5-33 SHIFT REG I S TER ITH LOWER ADDRESS 5-21 NO NO LOAD SHIFT REGISTER WITH UPPER ADDRESS 5- 21 CLEAR READ YE<: >----~·I HEADER AND * SEC TOR IF NO WILL DEFECTIVE NEVER COMPARE. CONTROLS (0-0-3) SECTOR COMPARE. ** WRITE YES 5-23 5- 25 5-35 SET HEADER CHECKWORD -.J I l'-' I-' ERROR ** 5- 21 5- 21 SET WRITE 2, RE~D 2, OR ANUAL 2 ALL INPUTS THE COMPARE ON NEEDED THAT BIT LOCKOUT BIT WILL BECAUSE NO HEAD COMPARE AFTER 5-41 CLEAR COUNTER FOR ~----~'IIR E ADO R IS READ, WRITE IS CLEARED THAT BIT. COMPARE BYTE BIT TIME T2 5-25 SET SEND ENABLE AND CONT SELECT TO THE DRIVE en o ~ CO o o o o r:n • SEE COMPARE OPERATION NEXT PAGE. I rT_I__~~~~ 0') o '-'" COMPARE OPERATION CO o o o o r.n T2D 5-9 MASK COMPARE FUNCTION 5-23 YES BIT FROM DISK 5-23 MASKED YES NO BYTE *DATA BIT 'FF 5-9 YES 5-23 SET CONDITION SATISFIED 5-23 BIT -FROM DISK YES > DATA BIT T2 5-9 51 "-..... FUNC TIO YES YES < DATA NO MASKED BYTE BIT NO YES YES *DATA BIT FF 5-23 5- 23 DISABLE SETTING 5-23 YES SET FLIP- MASK MASKED FUNCTION FLOP :> 5-23 YES CLEAR MASK FLIP-FLOP -J I '-'" W YES -, NO COMPARE CONDITION SATISFIED SE T NO COMPARE FF SHIFT REG 5-23 5- 23 AND WRITE 5- 23 -J I t-..:l ON CYLINDER, '-'IRITE, DATA SIGNAL, AND '-'IRITE FCN 5-23 5-23 5-23 T1 5-23 SET START DATA 5-23 SET WRITE I SET WRITE START DATA 2 2 ~ 5-19 SET SEEK CONTROL TO RESEEK ADDRESS 5-23 5-23 SET READ HEADER CONTROL. TO FIND 8 VERIFY ENABLE S-+WRITE CLEAR COUNTER CI AND SET WRITE BUFFER t a C2 SEND ~RITE ENABLE AND CONT SELECT TO THE DRIVE 5-23 BITS SYNC PATTERN 132 BITS 5-29 5-29 SET EOP 0') o t-..:l CD o o o o r.n ON S AND FINISH, SECTOR WITH! ZEROS m ot\:) 5- 19 CO o o o o SEEK 5- 19 (f) 5-19 FROM ADDRESS INCREMENT -SET ZERO COMPARE -SET DIFFERENCE -- SELECT 1 1 5-41 STOP DECREMENT CR2 TO CRI 1 5-45 ENABLE COUNTERS TO THE CONTROL BUS 5-37/39 TO 5- 45 1 SEND DIFFERENCE THE SELECT TO THE DRIVE CYl DIFFERENCE 1 -:J I t\:) C,Jl 5-45 COUNTERS NOW HOLD LOAD THE DEC REG IN THE DRIVE -- - - SET CYLINDER -----t SELECT .- - .- SET SECTOR SE T HEAD ~ -----t SELECT - SELECT .- - SET SEEK CONTROL ~ - .- CLEAR SEEK CHAIN r- ON CYLINDER '-- ........ 2 1 5- 4!i ENABLE UPPER ADDRESS REG TO THE CONT BUS 1 5- 45 SEND CYLINDER SELECT TO 1 5-4!i ENABLE BITS 6 -10 OF LOWER ADDR REG TO THE CONT BUS 1 1 5-45 ENABLE BITS 0-4 OF LOWER ADDR REG TO THE CONT BUS 1 5-45 5-45 SEND HEAD SELECT TO SEND SECTOR SELECT TO THE DRIVE THE DRIVE 1 1 5-45 ENABLE SEEK FORWARD OR BACKWARD TO THE CONT BUS THE DRIVE LOAD THE CYLINDER REG IN THE DRIVE 1 5-45 SEND CONT SELECT TO THE DRIVE 1 LOAD THE HEAD REG IN THE DRIVE 1 LOAD THE SECTOR REG IN THE DRIVE 1 LOSE ON ~YLINDER a DRIVE S-E E K S --------- 1 5-29 GENERATE END OF OPERATION 1 5-9 CLEAR LOAD ADDRESS FUNCTION 1 BUSY STATUS DROPS --- ON SECTOR OR SEEK ERROR FROM DRIVE !i-43 SELECTED ON SECTOR FROM DRIVE 1 !5-I3 v ~v GENERATE INTERRUPT PULSE 1 5-13 ON SECTOR SET SEEK STATUS INTERRUPT READ, READ CHECKWORD, CHECKWORD VERI FY - PART BYTE -:] 1 f\j O':l 5-25 READ,OR READ CHECKL-IORD FCN, DATA SIGNAL AND ON CYLINDER BIT TIME 5-25 5-25 SET START DATA SE T READ 5- 25 5-25 CHECl PWR st~AP-Ci8LE SUP~LY/T;ZO AOJUSTASCE . - . Tt~~lNil SPAOE-FLANG~O IN: K l~S SLE~VING' ~LlC-RULK A J~M~E~' TER~lN~L STRip 8 wlHt ELECTRICAL. 14 AWG -0 ~ w)~£ EL£CTRICAl 14 AWG -2 8 wlH~ EL~CTRICAl 14 AwG -b A K1T-lNSIALLAfIONICHASSIS ~O~E~ j HIM L.AffH-PO~E~ SUPpLY E HINb, AETAINING A K~Oa ~ i76SSblO 176S&b11 i 8~G·SLV·FLG NYLnN .376 A sP~ tOMPR t IIi L A GGiu£ LATCH SOlT A ~QLT LAtCH J H~sisTOH, AS~EMRLY TERMIN~TOH F WiH~ TEFLON tY~F E TFE IN~U~ , wlA~ fE~LON tyPE E TfE IN~UL. 176~~~13 ~ 0085b810 ooeS~~13 25161000 30109UOO looOIcOl 176~5~12 116S~b14 176S5~15 F wIRE TEFLON tyPF E F F TFE wl~i tE~lON iY~F E TfE wlH~ TEFLON TyPE E TFE w~8~ 1~F.LON !Y~F E TFE IN~UL. IN~UL. IN~UL IN~UL IN IN 019~lJ IN 019':!~3 IN IN ol~i73 IN 01 9213 018~56 IN IN IN IN IN IN 0201~b IN 019~Si IN 02b~11 IN 02~.;1 0184~2 IN IN IN IN IN IN IN IN IN IN IN IN IN IN IN IN 021040 IN 02J6~2 IN IN IN IN IN IN IN IN IN IN IN IN IN 02c'i85 IN 02Z~85 IN 02?~~S IN 022985 IN 02~9S5 IN 022~~5 8-5 ~A10SA E L.. ~ 3 3 3 3 3 J 202~~~OO E L. PAHI-f'40 ~!~ 17655616 176SSb17 17655b18 1765bb19 r 24554~01 o08S~ioo F z4soiQ06 ,. ,. 4 0900Z006 4 o90~i101 4 1012610" 4 4 It 4 3 2 3 3 2 3 300UU~03 jooOl~oO 30001~OO 300oi~oo F F F o A C A C K ~ 8 ~ H CAsTING ALUM 3S~.T6 H PIN-STAINLESS ~TEEL !312 ~IA. J 5~_A tAHLt - - 3 936-4003 9428I~oo 3 3 94281C:04 943~~;OO E A A C C o i 923180i7 H 936-i005 A 3 3 3 3 2 9251~151 AC 9364~o04 -i 936440QZ 94281"00 942Sie:04 95U24600 SZ6zl,.00 N C~~~E~!OR (7~ ~JN) N N CCN~tCTOR (15 PyN) C~~L~-jij TWlST~n PAl~ I}O·ltRMINATOR-ASSY (15 A stH~fN; COMMON TIEPolNT C ~l~~ ~A~E • TINNED ... .3 3 936~Z009 CON~~CTOR (104 PIN) CCN~tCfOR (104 pIN) ct~~-~iCK FE~A~F A G C~~!AtI-PIN ~E~iES .U62 400bli!02 40061100 922~.OiO TtHMINATION ~TKTP R LEAr. HiNGE,-L£FT HANO 3 3 J 3 UES~RIP!rON SPAHE TEFLON TY~F E TFE IN~UL WIHt !EFLON tyeE E TFE IN~U~ WI~E TEFLON TY~F E TtE IN!UL WIRE TEfLON TyPF. E TfE IN~UL wlH~ ELECT sULin COPPER 2~ uA l~CLOsuAE TERMINATOR ASSY; K~O~, -CABINET'· ... SCR·~ACH RD PHL H NO.8 N~!" ~~R' S~T' CUPPEO PT ~C~ I~!~HN~L TooTH LOCK .A?HE~~ CONN~CTOR PLUG £LEC TERM W_SH~H-fLAT p~~IE MOUNTING ~ESIS!OR A~S~ S~l~LO tLECTHI~AL CONNECTvR sF'i~LO HESIstOH ASSY· - - •. wlR~ 3010&i01 lOlOiji02 4002u€'02 9364200,. 3010~ioo 3 3 ~Y~T FILE SUB o 3 &. 3~~~ ~ES08/0AT~ 301ijl01 3009S400 936~Z005 9364~00~ 3 M I~SVLATION RtS-l/~w CONN~'tOR CON~tcfOR 56 FISH UM~ PAPFH . 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L 3 3 3 3 3 30908201 30911001 30921801 ~09i380~ 30927801 3 30929001 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 30942201 30944201 30947001 30948201 30952201 30957801 30958201 30958601 31702601 31711801 31703001 31703401 31703801 31704201 31709401 31705001 31709801 31706201 31708601 31709001 31710601 60290000 G 3·092980~f B J J J E 3000 RESOB/OATA FILE SU~ ?YST DE5CRlftTION SPARE CARD ASSY CA 21 DOUBLE INVERT CARD ASSY CA 28 DOUBLE INVERT CARD ASSY CA 55 SINGLE INVERT ~~~Q ~~~y CAt"~ SWITCH E CARD ASSY CA70 CAP DELAY L. CA~~ A~'Y CA 1~ DOUBLE IN~ERT C H C A D B E F J F A E E E E D D D D E D A CARD ASSY CA 75B MODIFIED M CARD ASSY HA 05 DOUBLE INVERT CARD ASSY HA lOA CSL INTF CARD ASSY HA 17 FILTER CARD ASSY HA 20 LTDR CARD ASSY HA 30 DOUBLE INVERT CARD ASSY HA 46A DBL-FF QUADRUPLE INVERTER TYPE HA 47 CARD ASSY HA 48B OVAD INVER. 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ZEOI7- C; 2FOO7-1n 2F007-12 2E041- ,. ;-0037-12 2E04}-1':;. 20007- ~ 20038-14 2A021_ 1· 2C020· 1* ~DOI0- 4 DOlO. 4 20010_ 2 2C021_12 2Co05- 1* ~DOOq- It 0009-11 2F014.l2 2F030- 4 2F.:03 7 - 4 2°01 4 - 3 1E007-13 2E031- 4 2T040"" 5 20035- 4 ~C020"1? 0009. f,* 2D038_10 20009_10. 2C021- 5 2 COOl-12 2 0 01 4 - '2 2 F 030- 3 2 F 030- 3 2 C0 2 0 - 4 2C020- 4 2C020_l} 2C020.11 2C019_1S* 1 0 040-12 2 0 014- 1 * 2 C0 2 0 - 6* 1D042-12 2C020_10* 2E040-15* 2 E01 7- '2 2E017- 2 CO~"fROU~ 6i A CO~TAOLR CO~TROLR 09 01 01 01 01 01 01 01 nl A A A A A 01 01 A 01 A CONTROLR eONTROLR eoNTROLR 01 01 01 A A A rONTROLR eONTROl.R CONTROLR 01 01 01 A A A CONTROLR 01 A r.ONTROLR 01 A CONTROLR rONTROLR cONTROLR CONTROLR 01 01 01 01 A 20266800 20238200 202"6800 2"266800 20266800 20266800 20266800 20266800 20266800 20266800 20266800 FA70S 32348 FA70S FA70S FA705 FA70S FA705 FA705 FA70S FA705 FA705 20266800 20266AOO ~A705 CONTROLR COfliTAOLR COfliTROLR COt\TAOLR COfliTROLR COfliTROi..R COt\TA0L.R r.Ot\TROLR A705 CONTpOLR IOi~8100 3~j4B o e100 48 20238100 32348 FA70S cONTPOLR 2023Aloo 3234B 20266~00 A A A A A ~~~~~l~~ ~I~:: 20238100 20238100 20238100 20266800 20166800 20 66800 20238100 20238100 iOi3S100 o 38100 20238100 20266AOO 202661400 20266800 20238100 20238100 20266800 2 0 23RIOO 20238200 20238100 20238100 20266800 20238000 20238200 2 02382 00 20238000 20266800 20266800 2 02668 00 20266800 32348 32348 ~i348 70 S FA70S FA70S 32348 32348 31348 3 348 32348 FA70S FA70S FA70S 32348 32348 ' A7 0S 3234 8 32348 32348 32348 FA705 32348 32348 32)4 e 32 48 FA70S FA70S FA10S FA70S A A A 60290000 C 4 14 4 7 271 t 271 C27~ C273 CS715 C 76 C277 77 C5 C 7R C2An CIAO §~ 9 4 1 8 C ei C282 l' 11 g~:~ 1~ c~nn § 6 C3nn C n1 C3n~ 5 g3~§ 5 6 6 5 6 9 C304 CJO. 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G",n Gt\in GNn 2 2 3 G~n 2 2 2 2 2 3 2 3 2 3 G~n G"n G~n Gt\ n G"''' G"" Gt\in G"n Gt\n GM" GNn GNn G"n Gt\n G"n G"n G",n G"n G"n G"n Gt\n Gt\n Gt\r" :3 3 ~ 3 3 3 2 :'3 3 4 3 4 3 2 Ef\ln 9-114 FILE 2F0212F0222F'0232 F0 242F'0~5- 2F0262 F 02 8 2F033. 2F0342 G00 5260062GO]0lOO~9- 2 2 2 2 2 2 2. 8. 5 3. s* 4 8~ 2GO 0- e* 21-400 5 - 2 2HOt~- 8· 21008- 8* 2yOt)9- 8· 21011- 5 2Yoil- 5 21022- 8. 2 1 °22- 10 21024- 5 21024- 3 21026- A· 2 IO i?6- 10 210,8- S 21028- 3 2T83221 32- 12, 21040- 82J004- 5 A* 2JO~4- 2, 2JOtQ· 2JOIQ2 J oi 9 2J021- 8* 4 2 2 2JO~5- 8* 2J03021<0n12L 0 it 12L0032Lon32L008i?LOOe2L0192L023t'LO:;,62L0262LO~7- 2 8. 84 4 4 4, 8. 4 8· 2 e* 2 L02 7 - 2 2L010- 4 2L014- 8* 2F021- 8· 2F022. e. 2F023- s* 2F'°24- 8* 2F'025. 8· 2F026. 8· 2F028- 8· 2F033-13 2F034- 8. 2 600 5- 8· 2G006-11 2G010- 8. lOOj9-10 260 0- 2 21-4005- 8. 2H013-11 21008-12 2023;100 313tS 2023 100 323 2023~100 32348 2°2668 00 . FA70S 20238100 32348 20238100 32348 2°2668 00 FA1 0S 20238100 32348 20266800 FA10S 2°2668°0 FAlOS 20238100 32348 20266800 FA10S 2n26t800 2026 800 20238100 2°239 100 20266800 2 0266AOO 20266800 20266800 20266800 2°2668 00 20238100 20238100 20266888 2°2668 21028- 8. 20238100 20238100 21028- 5 20266888 2 1 032-1' 2 02668 _ 2 10 J2- 4 20238100 21040-10 20266800 2J004- 8* 2 J00 4- 5 2 02668 00 20266800 2J019-11 2JOIQ-11 20266800 20266800 2 J 01 9 - 4 2J021- 82023A100 2 J0 2S- 10 ~0238100 2JOJO- A. 0238100 20238100 21<001-13 2LOOl-13 2 0238 100 2l003- 8. 20266800 20266800 2l003-13 2l008- 8· 20266800 2LOOs-13 2 02668 00 20238100 2L019-11 2l023- 8. 20238100 2 L0 26- 13 2 0238 100 20238100 2L026-13 20238100 2L027-13 , 2 L0 2 - 1 3 2 0238 100 20238100 2L030- a. 20238100 2L034-11 4279 \1IRETAR RECORDS ;?t009- 13 21011- ~. 21011-12 2 t 022-10 2 1 °22- 11 21024. 8. 21024- 5 2 1 026-10 ,1°2 6 - 11 rONTROLR 01 A CONTROLR 01 A CONTROLR {,ONTROLR 01 01 A A cONTROLR 01 A 21 3 AA FA10; eONTROLR FA70 CONTROL.R 32348 3234 8 FA70S CONTROLR 01 CONTROLR CONTROLR CONTROL.R cONTROLR CONTROLR 01 01 01 07 07 A A A rONTROLR CONTROLR 07 07 A A eONTROLR CONTROLR 81 A A CONTROLR CONTROLR eONTROlR CONTROlR ~ONTROLR 01 01 07 07 07 CgNTRoLR NTROLR CONTPOlR cONTROLR 01 01 01 01 FA70S FA70S FA70S FA105 FAlOS 32348 32348 FA7SS FA7 S 32348 32348 FA7S5 FAl S 32348 FA705 FA1 0S FA70S FA105 FA705 3234 8 3~J48 3 48 32348 32348 FA10S FA70S FA705 FA10S 32348 32348 3234 8 32348 32348 32J4 8 32 48 32348 e 08 70 08 , 70 A A A A A A A A A A A A 60290000 A SECTION 10 EQUATION SUMMARY ). PAGE nn~ 1 AOOO=AOOl+A146 10;,)0. I I ~ 1 I ~ 2D02<;»A H4~ A001 A002 AOOI-AOOO+A150. C; I I 6 I 4 2002<;»8 H4~ SOOO AOOO COO(, J240 A002=A166 8000+A14Q J1S2+A144 A200+A142 AOOO. C; 3 13 11 I 12 6 I 10 4 I I I lcn3nA HOC; LOOO A003-~020 15 I 13 n11 w202. 14 100110 H41 , Anl0.AOl1+A1~6 1 I I I LOOO IOill. ~ H4~ AOll A012 cn16 A011=A010+A1'50. C; b I I I 4 2D02AB H4~ AOlO A1 7S ~OlO ?no2AA J241 An12=A166 ROI0+ AI40 A014+A144 A21n+A142 A010. C; 6 I 10 4 I 3 13 I I 11 I 12 lC02<;»A HOC; LOO1 A013=~020 n 1, w204. 12 1001ie H47 L001 A014:aJ073+w 2 i3. C; 4 I 6 I lEol78 ~4~ A012 10 I 11 A020=A021+A146 10il2. ~ I I 1 I it 2D021A H4~ A021 AO?2 en26 J242 An2t=An20+AlC;O. C; 6 I I I 4 2nn27R H4~ A17-; A177 S020 A020 A022=6166 R020. A140 K090+A144 A220+A142 A020. C; 3 (, I 10 4 I 1 I 11 I 12 13 lC02~A Hoc; LOO2 n" An23.t.l020 1N206. C; 4 b I 100118 H47 60290000 A LOO2 10-1 PAGE 2 4030a4031+A146 I I ~ 1 I 2 0 n26 A ro~3. 1 ~4" A031 A032 C036 J243 A031=A030+AI50. t:j 6 I I I 4 20026B ~4" A030 A175 A177 S030 A032-4166 8030+Al~O w235+A144 A230+ A142 A030. 6 I 10 4 I c; 11 I 12 1 I 3 13 1C027A ~O'; L 00 3 An33.~020 w2;A. 1 I 2 n 11 3 ID011A H47 L003 At)4"aA041+AI46 IO~4. t' 3 1 I ! I 2D02&;A H4" A041 A042 cn4 6 J244 A041=A040+AI50. &; 6 I I I 4 2 D0 2C;R ~4" A175 A117 A117 A04 0 S040 A042-A166 R040+A140 w233+A144 A240+A142 A040. 6 I 10 4 I c; Ii I 12 13 1 I 3 lC02t,A ~OC; L004 w2SQ. 14 tCnlnD "'47 An43.~o20 n1, 15 I 13 LOO. An50-A051+AI46 Io~5. 1 I t I ? 1 20n24A H." AOSI Aor;2 c056 A051=A050+A1c;1. C; I I 6 I 4 2 00 24 8 H4" AOSO A175 A177 5050 An52=A166 ROC;0+AI40 w231.A144 A250+A142 A050. 3 6 I 10 13 1 I 4 I c; 11 I 12 lC025A 1-f0C; LOO5 n11 Ao53=a.to20 w208. 10 I 11 12 lCOlnC H47 LaOS A060_A061+Al.7 to;6. I I 1 I ~ '4061 20023A .... " 10-2 A062 cn66 J240 60290000 A PAGE 002 3 An61eA060+AIC;1 AlcU. I I 4 6 I Ii 200238 H4" A060 S060 A062- A167 R060. A141 KOlO.A14S A260·'1 4 3 A060. 3 6 I 10 4 I Ii 1 I Ii I 12 13 lC024A HO~ L006 on' n'l1 An70-An71.A147 IO?7. ~ 1 I I 1 I 2D022A H4" A07l A012 An71aA070+A1Sl Al q 1. C; 6 I I I 4 A070 2002~8 H4" 5070 J24i A072aA167 8070+A141 J018+A14S A270+ A1 4 3 A070. 3 11 I 12 13 I I 4 I C; 6 I 10 1Co23A HOC; L007 A080aA081.Al~1 1 I nn' C076 I I tt IO~8. " 2 nn 2i A 1-14 " A081 A082 C086 An81aA080.AlSl Al ql. c:; 6 I I I 4 200218 1-14" AOeO A171 S080 J242 A082- A161 RORO+A141 w064+ A145 A2Ao· A143 A1) 8 0. 6 I 10 4 I c:; 1 I 3 11 I 12 13 LOOS 1C02~A !-IOc:; nn? A090a A091.A147 Io,q. 1 Y I ~ 1 I 2D02nA 1014" Aoql AOQ2 cn96 A091=-AOQO.AlC;1 Alql. C; 6 I I I 4 AOqO ?D02 n8 A111 S090 H." J243 A092aAI61 BOQO.A141 w066 • A145 A2qO+A143 A090. C; 3 6 I 10 4 I 1 I 13 11 I 12 1Co2iA HOC; LoOQ nn, nn, AI00aAI01+A141 10~O. 1 I I I 2 ~ 2 Dn1 qA 1-146 A10l Al01.A100.Al~1 6 I I I 4 A CI06 J244 A111 A171 SIOn Al en. c; 2nnlQB H4" 60290000 A1 02 AlOO 10-3 4 PAGE AI02-_167 81nO+A14} W068+A145 A300+A143 A}OO. 4 I C; 6 I 10 Ii I 12 13 3 I I lCo20A HOC; LOla n,,~ nn? A110-Al11+A147 IO~l. ~ 1 I I I 2 2 0 01A A H4" A111 A112 C116 AI11--110+A151 A191. 6 I I I 4 S 200188 H4jf, AI10 A173 SilO A112- A167 81io+ A141 A1 8 1+ A145 A3io· A143 AjlO. 4 I c; 6 I 10 11 I 12 1 I 3 13 lCOlqA HOc; LOll AI2n.A121+GND 1 I I I ? 2 C0 2 1A K3~ A121- A12n+Foo3 15 I I lin 2Co21B 11 4130._131+GNO I I I I 2 2 C0 26 A A13t_AI30+FOo3 I I In 15 I 2Co2(,B 011 10-4 ~ K3~ +A162 A130. 4 5 I A121 A131 +A162 A131. 13 12 14 A120 A130 I , +A1614 A160 J020 +A161 A120. 13 12 14 A121 A130 A151 A159 J021 K3~ K3~ A121. 5 A12 0 A131 6 A158 I 11 6 I AI38 I1 X020+GNO • 6 I 4 I c; 2 F0 34 8 M4A 413 9 AI39-AI38. 15 I 14 IF0428 MOC; LOO6 Lon.., i. noe L009 lOIO LOll 4140-AI54. 15 I 14 lC/)30 R MOCi A002 A012 A022 A032 A042 AOC;2 A14111A154. 15 I 14 lCo2qB Moe; A062 A072 A082 A092 AI02 A112 AI42-A155. 15 I 14 1 C02 A8 Hoc; 4002 A012 A022 A032 A042 A011;2 60290000 A P6EF S A143=AlS'5. 15 I 14 l C02?R HOr.::; AO~2 A072 AnS 2 A09~ A102 AI' 2 HOr.::; A002 A012 A022 A03:1' A042 AOc;2 HOr.::; A062 A072 A082 A09? Al 0 2 A112 1-44? AOOO AOIO A020 A030 AOItO AOC;O A147=A157. Cj 6 I 4 2 Cn 21 8 H4'; A060 AO?O Aoan A090 AlOO Alia A14A:A18n A1C:;A. 1 n I 11 1;» 2Cn21C H47 A200 A21n A220 A230 A2'+0 A2C;O A260 A14Q=A1SA AIAO. ,5 I 13 14 2 c0 2,n H47 A2 AO A2 QO A~OO A310 H47 AOOl AO 11 AOZ1 A031 A041 AlSl=A15Q. It 6 / 5 ?D015R H41 Aoc:;l AO~1 A071 A081 A091 AIOI Alll A152=A160 Al~q. 10 I 11 I? ?OOlr:;C H4? A201 A211 A?21 A23; A241 A2r.::;1 A?61 A153=A160 Al~9. 15 I 13 14 2 00 11:;0 1-147 A2Al AZcn A'3 0 1 A311 A 140 A14 1 A14? A143 A144=AI56. 15 I 14 lCo2~R A14'5zAlS6. 15 I 14 1 C02 r.::; A A146=AlS7. 1 I 2 1 ~C02~A or" 00'1 A150=A15q C23q. 1 / t! 3 ~DnlSA OO~ A27n A154=~01C;. ,S I 14 Ie 0218 HOc:; AlSc:;=~n16. ,5 I 14 Ie 02 OR HOc:; 60290000 (! 10-5 A27; pl\GE 6 A156=~017. ,5 I 14 ]C()lQB HOc:; A144 A145 4157=4131 4164+1<0"1 V301+M016 y094. 5 I 1 I 2 b 3 I 10 4 2C 024 A C?~ 4146 A147 fln" OO'j tloJ nn' I'lnl flO' no' A158=4130 41,,4+M01 7 yOQ4. }5 I 11 14 12 / 1~ A148 A149 ? C0 24 A C2~ +A13! AlbC;+K061 Vt!03+MOI6 Mo32+FI03. 4159=YI0J+J14n 15 b I 10 13 I 14 1 1 I 12 2 / 5 1 I 3 '+ I ,Co25A K17 4150 A1S1 4160=1103.4130 Alf,S+M011 M032.FI03 5 6 I In 2 I 1 I 3 4 I ?",Ol"A 1<2 q A152 A153 4161=YO"1 F035 J2R?. 13 15 I 10 11 l' ?Eo20A C21 A130 14 A131 yn23 4t62='I023+VO?O. til / 1 I l 2 cn 2A A H4A A}2 0 A121 4]63 K116 4163=41"2 FIll. r.; 4 6 I ?I')017R H4? 6165 V024 ?, C0 2A A H4 R A157 AISA A165=4161. 10 I 1 1 lit 2Co32C 10147 A159 4160 4166=416A. 15 I 14 l C0 24 A HOc:; A002 AO}2 4022 A032 404 2 AOII;2 AOb2 A072 4082 A09,. A102 A112 41 66 A167 4164= 6 I on~ .GND • ]2 13 11 I VO?4. 4 I C; 4167.4168. 15 I 14 lC023/3 Hoc:; A16A=WOIQ. 15 I 14 Ie 022 A HOc:; 10-6 60290000 C. --......---------1 PIH':F A16Q=J024 v2f13. 10 I 11 12 2 001 7C "'47 n(n A152 AIS) A170=A301.A2Ql w21 9 +A311 1. I 5 2 I 3 4 I 2A0264 1<2q J142 6 I .A2Al ~219.A18S 10 11 I 12 11 i2 wc1Q. 13 yOS4 A171=GNO +AO~l A101+A101 4091. 5 6 2 I 1 I 3 4 I 2 R0 2fo1 A 1<2~ A112 A172:A171+w 2 1 A• 2 I 1 I 3 2R024A ,",4 A A173 A173=A172+Alil. 1S I 13 I 14 2 A025 0 '"'4A ..J044 A11~.A041+AO~1+AOll 1 I ? I 1 I '+ A021 A031. 6 5 2A021A 1<2~ A}76 ?A02S A 1-t4A A119 J142 A116=w21A+A17S. 1 I 2 I 3 A177=A021 A041.AO'11 4041. A051. 1 I 2 b 5 I 10 4 3 I 2An2~A C2A Al1S A17R=A117+w2?O. c; 6 I 4 I 2 A025 8 H4A A119 At19=A17A+A17A. 10 I 11 I 12 ,AIl2Sc H48 J044 J14? A180=J024 v31l1. \5 I 13 14 2°011 0 ~47 A148 A14q ()(l., A181=K013 KOQl. 15 I 13 14 ,00140 '"'47 A lIZ "'262 on, A184:4221 A231+A231 A211 2 5 1 I ~ I 4 A185 2 R02A A 60290000 A201.G~O b I 10 • 13 '"'3" C 10-7 PAGE 8 A185=A270+A2~0+A240 n01 ·009 OOe 15 I 10 I 11 I ?A021Fi A191=J13~ 10 I 11 I? K2~ A250 A184. 13 14 A110 OPEN. 12 ~DnI4C H47 4061 A071 A081 A091 A?OO=A?Ol+A14A 10,HI. 10 I l~ t I 11 2002QC ~4f, A002 A2nl COO6 J240 A201=A?OO+AIC;2. 15 I I I 13 14 ?DOZqD H4~ A184 A2 00 ~OOO A210=A211+A14A 10 I I I 1i 20nZAC H4~ A012 Acll C016 A211=A210+4152. ! I 13 15 I 14 ,?DOZQO H4~ A184 A210 SOlO A220=A221.A14A 10,2. t I 11 10 I l' ?n021C H4~ A022 A22-1 r026 A221=A220+A1r;z. }5 I Y I 13 14 2 00 27 0 "'4~ AIB4 A22 0 ~n20 A032 A231 C 0 36 J243 A184 AIA4 A23 0 S030 A'40=A?41+A148 To~4. T I 11 10 I l' ?D02C;C H4F, A042 AlAS A?41 C046 A?41=A?40+Alr:;Z. 1 I 13 14 15 I ?D02r:;n ~4~ 5040 A101 AIIl Io~l. l;:t J241 J24? A230=A231+A148 I Oi?:~. 10 I T I 11 ?Oo2&C 1;:t "'4~ A231=A?30+Alc;2. r I 1::1 14 15 I ~D026D H4~ 10-8 A240 J244 60290000 C. PAGE 9 A250-A251·AI48 IO'S. I I 1i 10 I l' A052 ? D0 24 C H4" A185 A251-A250.A152. 15 I I I 13 14 200240 H4~ A250 5050 A260_A261.A148 IO~6. I I 11 10 I 1? 2 00 23 C H4" A062 AlAS A261_A260.AI52. 15 I I I 13 14 200230 H4~ A260 5060 1-44~ A072 A18S A271.A270.AI52. 15 I I I 13 14 200220 H4~ A270 5010 6280_A281·A149 IO~8. 10 I I I 11 l' 2 D021C H4" A082 A281aA28n.A1r;3. 15 I I I 13 14 2.00210 ~4" At'51 COS6 J245 A2 6 1 C066 J246 A;t71 C016 J21t? '281 Co86 Jl63 6170 A280 JIb! S08t) 6290aA2Q1·A149 10?~. I I 11 10 I 1~ 2. 00 2 0C 1-44 " 60Q2 A2 91 (;096 J163 6291-A290.A153. 15 I I I 13 14 200200 1-44~ 6170 A290 Jlb3 5090 6300_A301·614Q I030. I I Ii 10 I l' 2 00 1 9C 1-44~ A1 02 A3 01 J2 1 " A301::A300.AI53. \5 I I I 13 14 2001QO H4" 6110 A300 6310_A311.A149 IO~l. I I 11 10 I l' 2 00 1AC H4" 6 112 A311 A270·A271.Al~8 10 I 60290000 A I I 1t 2 00 22 C IO~7. l' T218 T219 J'277 10-9 PAGE 10 A311-A310.,153. 15 I I I 13 14 2DOIAD 10-10 H4~ A170 A310 60290000 A pAGE 11 , 8000a8001+8205 10'0. 1 I I I 2 2H042A H4~ A002 BOOI ~OO3 800 2 R2 10 8003.8002+8201 8000. I I 13 15 I 14 2 H0 42 D H4~ 13002 TOOO T100 8nlo-8011+82015 1 I I I t' 2H041A A012 8011 ~013 ROIO 80 12 821 0 TOOl TI 0 1 8n20::8021+8205 IOt'2. 1 I I I 2 2H04nA t-I4~ An22 8021 RCl23 8021a8020+8201. (, I C; I I 4 2 H0 4nA H4~ 8°22 R211 T002 T1 0 2 B031 Fln33 8001:18000+B201. (, I I I 4 'i 2 H0 42 8 H46 ROOO SOOO 8002.:8003+R201 AO~1. 10 I I I 11 l' 2H042C H4~ 13003 IO~l. 1 H4~ 8011::~010·A201. (, I I I '+ 2 H0 4i S 'i H4~ 5010 R012aR013+B20' 8011. 1;:. 10 I I I 11 2H041C H4fo1 A013 Rn13=ROI2+B207 801°· 15 I I I 13 14 2 H04 1 D H46 A012 , RO?O 50 20 8022-8023+B201 AO,1. 10 I t I 11 l' 2H040C H4~ 8023 8023:18022+13201 BO?O. 15 I I I 13 14 2 H04nO H4~ A022 An30::S031+B20S 10,3. 1 I 60290000 A I I ? 2H03qA " H4~ A032 10-11 PAGE 12 SOJi-e030.B201. C; 6 I I I 4 21-403QR H4b 1303 0 80 32 R211 T003 TI 0 3 S030 8032-8033.8207 8031. 10 I I I 11 U2H039C H46 B033 8033-8032.B2,,7 80~0. I I 13 15 I 14 2 H0 390 H4~ A032 8040_8041.B205 ~ 1 I I I 2H03AA , IO~4. H4~ A042 8041 8043 B041-P040.8201. I I 4 6 I Ii 2 H0 38 8 H46 A04 0 B042 13 2 11 ~n42 T004 11 0 4 H4~ A052 B051 AnSl RnSt-pn50.e2nl. I I 4 Ii " I ?H031R H4~ 13050 80 52 8211 BOS3-ROS2.S208 80,;0. ]5 I I I 13 14 2"of()31 0 H.-. ROS2 TOOS TI0S 8060-8061.R204 IO'b. I I 1 I ~ 2H03flA H." A062 8061 8063 8061-B060.8202. r I 4 C; 6 I 21040368 H4-' B062 R211 S 0 40 8042-8043.8208 8041. 10 I l~ I I 1i ~O43 2H03~C H46 R043-e042.R208 8040. I I 13 t5 I 14 ?1-403~D H4~ R05n.A051.~20S 1 I I I 2 2H031A 8052-e053.B20A 10 I I I 11 ~Ho31C , IO?5. 80~;l. U' H4" AOS3 " 10-12 5 050 Rn60 5060 60290000 A PAGE 13 8062=e063+8208 B061. t I 11 10 I li' 2 M0 36 C H46 R063 8063=8062+8209 15 I I I 13 2M036D BO~O. 14 R062 T006 T106 80 7 0=8071+820 4 102 7 • 1 I I I 2 2M03C;A H4" A072 B071 8073 8072 8212 Rn73.sn72+R208 B07 0 • 15 I 1 I 13 14 R072 2H03~O H4" T007 TI07 8080 aA Oel+B204 IO,A. I I 1 1 I ? 21-4 0 34 A 1-44" A082 BOAI BOS3 808188080+8202. C; 6 I I I 4 2H0348 H4" R080 B082 R212 BOS2=A083+ B2 0 q 10 I I I 11 21-4034 C 80~1. R083 A083=~082+R209 BOAO. Rn82 TOOA TIoe A090 a8 091+8204 tOi'9. 1 1 I I I ~ 21-4033 4 t-I46 A092 80q1 80 9 3 BOq2 R212 H4~ , 8071.R070+8 2 02. 6 I I I 4 21-403~8 &; 1-44" R070 5070 8072.8073+820 8 BO'71. 10 I I I 11 1i' 2 H0 3r;C H4~ R073 15 I I I 13 2H034D 8091=B090+82,.,2. 6 I I I 4 21-403~R R092=Bo93+8209 I I 1i 10 I t'H03~C 60290000 A SOSO 1i' 1-44~ 14 H4~ C; H4" R090 5090 BO~l. 1i' H4~ 80q3 10-13 PAGE 14 8093-B092+9209 AO~O. 15 I I I 13 14 2 ... 033° 1'44" 8092 TOOe) TI 0Q 13100aBI01+R204 1030. 1 I 3 I I 2 2 ... n32A 1'446 AI02 BIni AIOl B1 02 R212 R103-BI02.R2n9 8100. I I 13 15 I 14 21-4032 0 1'44(, RI 02 T010 TI1 0 8110a8111.8204 1 I I I 2 21-403;4 8101-BI00+8202. 6 I I I 4 c; 2"' 0 3t'R 1'446 RI 00 51 00 8102aR103.821)9 Bl~l. 1~ 10 I I I 11 21-4032C 1'44" ~103 IO~I. 3 H4~ A112 8111 R113 8111=RII0.8202. c; 6 I I I 4 2H03;R H4~ RI1 0 8112 R212 TOll Till 5110 8112-fH 13.82{1CJ 8111. I? 10 I t I 11 2"'03ic H4" R113 8113-All2+e20CJ 13110. I I 11 15 I 14 21-403,0 H46 8112 nn~ 8200=J296.l An3C;A 1<17 J164 (11:1 nne; F011 2 I nn, n~ A002 60290000 E. J07A Y064 10-61 PAGE 62 J183aJ278 w254. 15 I 13 14 2AOO;:-D H47 JlB4 JI84=J183+YO?5. ~ 2 I 1 I ;?,IOlqA H4A Tl13 w211 J200aR200+R2nl. 1 I 2 I 1 IDOlqA H4A J2 01 J201=J200+G NO • 15 I 13 I 14 t-I4A "'2°2 J2 14 J?02=J201+R2n2. C; 4 I 6 I Q8 D0 H4A I 1 J2 03 J20S IF03~D J203aJ?02. 15 I 14 HOC; J214 J204=R?03. 15 I 14 IF037A HOC; J20S IF03~A J205=J202 J204. 2 1 I ~ H47 J?06 J214 J206=R204+J2nS. 10 I 11 I 12 ID01QC H4A J? 07 J20 Q 1f)Ol~A J207=J206. 15 I 14 1F03AR H.ne; J215 J20B=R2ns. 15 I 14 IF03Q8 HOr:; ,J20 Q J20Q=J206 6 I 10-62 4 J2n~. "5 lOolt,R H4? .)210 J215 J210=J20Q+R2n6. 15 I 13 I 14 IDOlqO H4A J21l J213 60290000 A 63 ~td:;E J211=J210. 15 I 14 1 F 04 oR H DE; J215 J212=~?07. IS I 14 1 F 04 1 A HOC; ...12 13 J213=J210 J2,2. 10 I 11 12 Inol~C H47 J2)5 R201+J2"1 ~202+J203 R203+J20S R204. f, I c; 4 I 10 13 11 I 12 1 F 021 A HOC; .J21 9 J214=~200 1 I 3 J?15=J?n1 R2n'5+J2n9 R?'0('+J211 R207+J213 R220. c; t, I 3 10 1 I 4 I 11 I 12 13 HOc; IF02~A J? 19 J216=~302+~303 1 I 2 I ~ lOOl'~A J217=R313+R3?2 15 I 10 I 11 lOOI~R +R312. S 4 I K?? +Q323. 14 I? I 13 K?,;, .J2?5 J218=R33?+R313+R342+G~O C; 1 I ~ I 2 I '+ I I D0 2"A (, J225 K?E; J2?S J?lQ=J?14 J2;5. 10 I 11 I? 1002,.,C H47 ,.1226 J220=J?26. 15 I 14 IF02?R K082 HOE; +GND I " • KO~2 "'243 R200+R3f)3 Q201+~312 M20?. (, 5 I 10 1 I 4 lOO2c;A C'-~ ,J224 J221=~302 1 I 2 J?22=R323 R2",S+R322 P204+R313 R203. (, C; I 2 4 1 I 10 1 I , 0 02? A C2~ ..J224 J?23=~332 1 I 2 R2,,(' :3 4 10°24 A C,C; 60290000 A +P333 R207 C; 6 I 10 .R3 4 2 R220. 13 14 12 11 I 15 J224 10-63 J?24=GND 15 I 10 +J2~1 J2f'!2 J223. 1::1t I D0178 K27 I 13 ~J2 J225=G,.,D +J21/" J217 J218. C; 1+ 2 I 3 1 I lDn17A K27 nA 14 35 J221 b Kll,/, J226.R222 w2iS+J229 w221+J219 r:; 3 6 I 10 1 I 4 I ID02~A HOc:; .J2? 0 J227=J22S. 6 I 4- Y012 +,J230. 11 I 12 ,3 r:; lC0108 H47 J22A J?28=GND +J212 J2?7+J272 V07? r:; b 2 I 4 I 1 1 I A E0 66 K2:=t 1<1 l 2t J?2qcR222. 10 I 11 12 I F0 27C ",A J?30=\Al220 15 I w2 1S+w2:=tl Ii' I 11 ~47 11 lOo2C:;A C2A J?2 6 1.01218. 14 J226 J231=~012. 10 I 11 If.' 2 r 02 nC H4' W211 J23?=C081+con1. 1 I 2 I 1 IFn3:;:tA H4~ ,J240 J233=C093+C 0 1'3. 6 I 4 I c; 10-64 , F03;?R H4~ J241 J234=C101+CO;?'. 10 I II I Ii' IF03?C H4A J242 J23S=Cl13+C031. 15 I 13 I 14 1 F03t'D H4~ "J243 Ji?36=C121+C041. 1 I 2 I 3 IF031A H4A J244 60290000 C. PAGE 65 J237acI33+cOr:;7. 6 I 4 I c:; lF03)8 H4A J245 J238aC143+C067. 10 I 11 I 12. IF031C H4A J246 J239.C153+C01Q. 15 I 13 I 14 IF03iD 1-14A J247 J2 4 0aj266 1 I A060.J2~6 4 / 3 IF04~A C; I-IOC; AOOO+J254 A200+J253 J232. 6 I 10 13 11 I 12 T21 0 J~41.j266 3 I I A070+J2C;b AOI0+J254 A2jn+J253 J2 3 3. C; 13 11 I 12 4 I 6 I 10 IF041A HOC; T211 J242aJ266 AOSn+J256 A020+J254 A220+J2S3 J234. C; 4 I 3 6 I 10 1 I It I 12 ,3 1 F 04 nA HOC; 1212 J;43=J266 AOqO+J2~6 A030+J254 A23n+J253 J~35. C; ]3 3 1 I 6 I 10 11 I 12 4 I IF03q6 t-IOC; 1213 J~44=j266 3 1 I AlnO+J256 IlO40+J254 A240+J253 J236. 6 I 10 5 4 I i3 11 I 12 I F0 3A A t-IO~ T214 +J254 A250+J253 J23l. +J2S6 J245=J266 C; 3 13 6 I 10 1 I 4 I 11 I 12 IF031A HOC; T215 J;46aJ?66 +J254 A26n+J253 J238. +J2':'b C; 4 I 6 I 10 ;3 1 I 3 11 I 12 1 F03b A 1-I0c; T21 6 +J2C;b +J254 A21n+J253 Jit39. J241aJi'66 c; 3 1 I 13 4 I 6 I 10 11 I 12 IF03c;6 t-IOC; T217 J? 4 Ral( ('140 +.J 165 • 15 I 13 I 14 1004';0 H4~ 'ln4 nn' T224 J252=l(039 JOQ6+VOO6 J096+K069 K034. 6 2 1 I In 4 5 I ~ I IFn2AA C2A J262 J263 1208 60290000 A 10-65 PAGE no' 66 J253.I<03S+K041. 1 I 2 I 3 IF033A H4A J240 J241 J242 J243 J244 J245 J246 J241 J254.l 6. I 12 K1s8 ,., 13 14 '-'23 1 , nn, K16nsK161+J143 JOQl. 1 I ~ I I ,A034 4 H4'" K161 On' K161=K160+JOIS. c:; 6 I 4 I I ,A 0348 H4'" KIA 0 Kl(" K162=K163+K161 10,,1. 10 I I I 1] l' ?A 034C H4" 1(1 6 3 nn, n('l~ K163=K16i?tOF,C;. 15 I 14 I I 11 ?A 034D H4'" , K164:K16S.K105 1 I T I , Kl~5 1<162. 2A 041 A K3F, J2 qq n n", KI6C;=K164.Ilnf,. 15 I ! I 14 ?A 041 B K3f.1 I< 1£'4 OO'i 1<166=1<167+GNO 60290000 C. T ll~ TOf.ll+K13S K12C; 1061+J065 C226 Kln5. r; 4 I 1 0 I 11 12 l~ 001 1 I TO 1f. +V069 I I 2 4 3 I ,'Fn19A 1<33 K161 I 'SGM R201-0PEN. J211t J221 J403 J423 T3nO w248 / 2E001B B6M R20l-0PEN. J200 1824ri600 J200 J214 J221 J403 J423 T301 w248 1 8 241'1 6 00 £.; 2Eooic BGM J202 J2t4 J221 J403 J423 T3\0 w248 1 8 24;'600 R2031110PEN. i./.. 2EOOt'A BGM R204-0PEN. J214 J222 J403 J423 T311 W249 1 8 24';600 (/ 2E0029 BGM R205:1CPEN. J204 J206 J214 J222 J404 J424 T3t'O W249 1 8 24n 6 00 , v 2E002C BGt.4 J208 J215 J222 J404 J424 T3~1 W249 R206aOPEN. 1 8 24n 6 OO 2EOO~A ~GM JelO J215 J223 J404 J424 T330 W250 1 8 24;'600 R20l.0PEN. U 2E003R BGM J212 J215 J223 J404 J424 T3~1 W250 R20 9 _0PEN. 2KOO"A ~GM 1 8 24';600 C227 K021 V083 R2t O.O PEN • 2KOOC;A iiBGM 60290000 A 18240600 J4 1 n 10-93 PAGE 94 1824n&OO R211-0PEN. 21<00'58 8GM J411 1824n600 R212-0PEN. 21<00c;C BGM J412 1824';600 R213-0PEN. 21<004A 8GM J413 1824(,&00 R214_0PEN. '" 21<004A BGM C120 R21S.0PEN. 1824';&00 :/ 21<004C BGM C130 1824';&00 R216.0PEN. t 21<001A 8GM R217=OPEN. C140 1824';000 (.l; 21<003B 8GM C150 R21e=OPEN. ii 21<00613 BGM R21q.OPEN. V 2JOO?C BGM R22n.nPEN. C400 t! 2E003C 8GM C402 1824;;600 J215 J223 J404 / 21< 0 01C SGM R222·0PEN. I- R225=OPEN. w2-;O C226 C231 J226 J229 ! BGM 1824';000 (/ 2JOOQA B6M 10-94 T3 4 0 1 8 24';600 R221=OPEN. ?JOO(H~ J424 C172 C329 J072 60290000 A PAGE 9S R221-0PEN. 18240 6 00 v/ 2JOOqC BGM R22e-OPEN. J272 YOQS 1824(,600 {/" 2K006C BGM V043 R230-0 PE N. 1 8 24;;600 2JOOY 8GM R231_0PEN. w212 W243 1824;;600 J 2J002R BGM J400 R302-0PEN. 2r,002A BGM R303=OPEN. J216 J221 J216 J221 1/ / 2AOO,R BGM R304-CPEN. [// 2E004A BGM R30S-0PEN. i/ 2E0048 BGM R306-0PEN. J403 i..,/ 2KOO~A BGM J423 BGM J423 AGM J216 J221 BGM J217 J222 2E004C AGM J403 R301-oPEN. V 2KOO~~ R312-cPEN. / 2GOO'~C R313-0PEN. ,i v 2GOO~A R314.0PEN. 60290000 A J403 ~/ 10-95 PAGE 96 RJ15.CPEN. v:/ 2E005A 8GM RJ16.0 P EN. V 21 7 V04S.K066. 1 I 2 ~ - 4 I F0 34 A K61 K075 vn49.KlI7. 1 I n04 001 2 3 2 C0 37 A K7; K118 V050aKl16. 4 6 I 5 2 C0 37 B K71 I<' 119 V051aK139. 10 I 11 12 2 C0 31C K71 K148 V05?aJlI+8. 1 I 2 3 1+ 2C04nA t<67 JOel vn53at<137. 15 I 13 2 F0 3,.,O M3S 1(13 8 Vt)54aJ071 AI10. 15 I 13 14 2C03qO K7, J074 60290000 C. 10-141 PAGE nA no, n01 on' 142 Yt)55afC'056. C; 6 I 4 2F011B K7; C236 Y056.f(147. 15 I 13 14 2 C0 37D K7; 1<1 80 YOS8aVl00. 2 I I 4 1 2DOI1A K67 ViiS Vii? Y05qae203. 6 I 4 2 HOO i B HS~ ~204 8205 Y061afC'151. 3 4 I 280348 C7f'! JOA6 Y062=fC'!S3. 5 6 I 2 A0 34 C C7n K}51 y063aJ091. 4 6 I 2F0368 H3C; 1<141 yn64=J181 1<1c;2. Ii' 10 I 11 2 C0 3 QC K7i J2 S5 y06SaY062. 15 I 13 2C02QO H3C; . .J095 Y066=I<046. c; 6 I 4 l EO IQ8 K7; J2A3 Y067=1<087. 12 I 13 2R034E C7n 1<031 Y068 a J094. 14 15 I 13 2FOliD K7; J092 K151 V 119 V121 K153 KOee y06Q.F131 J2B6 1<172. 1 I 2 1 4 l EO I AA 1<6A 1<1 66 10-142 60290000 A 143 Ot\(-F "0' "01 \,070=K167. 10 I 11 Ii.' lEOlQC 1<7; 1(172 \,071cFI02. 4 C; ~ I 2H016B 1<71 FIOS \,072=J22S. 1 I 2 4 3 l E 02 0A 1<6A J22 8 \,073=w211. 1 I 2 ~ 4 2I018A 1<67 ;-223 W214 \,074aW210 J278 ~0?9. 4 1 I 2 3 21011 A 1<61 W203 "205 \,07SaJ281. ] 2 1 I 20036A 1<7; Jl84 \,076::1C302. 2 1 I 2 1OO ]A H5~ C160 nn~ \,077aC303. 6 I 4 2100]8 ~s:'3 (:304 no, \,07e a C304. 10 I 11 2 100 3 C HS; C170 C30S \,079=C305. 15 I 13 210030 H53 C306 V2S0 \,080=C306. 10 I 11 2 H0 06 C HSj Cl80 W207 W2 0C) C3 03 V250 Y081aC231. 1 I 2 3 2JOO7A 1<7; n~ \,082aC315. 2 1 I n~ 60290000 M 3 • 1 GO. OA k61 C226 C381 10-143 PAGE I 144 V083=R209. 4 6 I '5 2JO O7 8 1<7, C22 8 v084=C175. 12 10 I 11 2J007C 1<1, el73 Y085"W074 2I029D C70 Y086.:"265. 2 4 3 1 I 2J 00 3 A 1<67 W075 12 08 T20 9 T22 0 T221 e2l 9 C23? T224 T2~5 v087.F051. 4 3 2A042A K67 F058 Y088-IlI3. 2 4 1 I 3 2 ... 030 A K67 111 5 y090.K070. 4 I 3 100318 C7n 1(068 ,v 0 91.f( 071 • -3 2 4 1 I I E0 2"A f(61 J096 Y028 y092.C201. 1 2 I ID031A C7n C202 C203 V093=C200. 6 I ! lOO37C C7n C2 04 C205 Y094.J271. 2 4 3 1 I iOO06A K68 A157 A158 Y095-"227. 12 10 I 11 2"' 0 16 C K7; J2 9 3 1 I nn~ 001 00; 00i? OOi' oo? OOi' noi' nOi? noi' OO~ 2 Y096-:"121. 003 nni' oni' 10-144 1 I 2 3 IC035A K7i K089 y097=f(150. 1 I 2 3 2 C0 3QA K7j f(1 9 1 60290000 R Pl\c;E n14 145 Y09A=~261. 6 I 4 C; nn, nn, 2 C0 3Q8 K1i K086 Y09Q:J040. 1 I 2 3 4 lE026A K67 K068 YI00=C301. 15 I 13 2~0060 H5~ C302 YI0jaJI06. 1 I n~ 2 2F036A ~3C; K122 1<1'1 KOOO 21-100iA 1-i5~ Y185=W174 C:280 vI02 z J26Q W066. 15 I 13 14 1 C03~O YI07=C223. 1 I '2 2I029E C70 I W175 YQOO.J134 1<901. 1 I 2 ~ lEOO~A 1<71 K9 02 lE0028 K7i 1<901 ,Y902 a J134 K9';0. 10 I 11 12 1 E002C K7; 1<903 y901=t(903. 6 I 4 !5 y903.K902. 15 I 13 14 1EOO~O K7; J901 Y904 a J282. 1 I 2 :'3 4 IFOOi A 1<67 t<902 60290000 R K903 10-145 PAGE 147 TVPE INVENTORV CARO A 0 • C1S ... C21 - C28 C55 C60 C62 ... ... ... ... C70 ... C7S HOS MIO Mt1 H17 toI19 toI20 H30 toI3S toI46 ... ... ... ... ... ... ... ... ... ... "'H.8.7 •• H!53 • 1<13 1<14 1<}7 1<22 1<23 1<24 1<25 1<26 1<27 1<29 1<31 ... • ... • ... ... • ... ... ... 1<32 • 1<33 • 1<34 ... 1<35 1<36 1<37 1<67 1<68 1<71 • • • .• • ... 2 4 27 9 12 1 21 3 1 26 1 14 5 26 3 7 2 98 78 51 3 1 2 5 27 22 11 e 12 4 14 6 10 58 1 4 2 13 24 4 12 634 TOTAL CARDS 1776 EQUATIONS 2 !XT~NSIONS i778 ~UBJ!CTS 4!75 nUTpUTS i778 ~jACKS 10-146 60290000 A IJ20-1.., IJ2n- 9 lJ29- .., IJ2S- 8 IJ26- 5 60290000 A IJ20IJ20IJ2SIJ2SIJ26. X X X X X 10-147 CO• •ENT SHEET MANUAL TITLE CDC FA 7 05A Mass Storage Controller Customer Engineering Manual PUBLICATION NO. _6_0_2_9_0_0_0_0_ _ _ __ FROM: REVISION _ _ _ S_ _ __ NAME: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ __ BUSINESS ____________________________________ ADDRE~: NO POSTAGE STAMP NECESSARY IF MAILED IN U. S. A. FOLD ON DOTTED LINES AND STAPLE STAPLE STAPLE FOLD fOLD --------------------------------------------~ fiRST CLASS PERMIT NO. 8241 MINNEAPOLIS. MINN. BUSINESS IEPLY MAIL NO POSTAGE STAMP NECESSARY If MAILED IN U.S.A. POSTAGE WILL BE PAID BY CONTROL DATA CORPORATION Publications and Graphics Division ARH219 4201 North Lexington Avenue Saint Paul, Minnesota 55112 fOLD FOLD ~ :;~: ~:}~!?~i?~{:~ rI~tfI:t\ ~ t{: ~ t~ ~ r~ ~t ~ t~ t~ )t ~ ~ ~ (tj~:t )ji~ ~ti~ft }~ CONTROL DATA »> IT CUT OUT FOR USE AS LOOSE -LEAF BINDER TITLE TAB '; ! CONTROL DATA ___________ (' 0 F-,' ~) 0 _____ _ -.2 t.'" • __ ~ _ _ _ r _ r\J 8100 34th AVE. SO~. MINNEAPOLIS. MINN. 55440 LlTtj0INU.S.A.
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