MTeye Security SIW35-SIGL-01 BLUETOOTH COMMUNICATION MODULE User Manual Bluetooth rev1 0
MTeye Security Ltd BLUETOOTH COMMUNICATION MODULE Bluetooth rev1 0
USERS MANUAL
Security LTD User manual Bluetooth wireless technology is a short-range radio technology. Bluetooth wireless technology makes it possible to transmit signals over short distances between telephones, computers and other devices and thereby simplify communication and synchronization between devices. It is a global standard that eliminates wires and cables between both stationary and mobile devices. Bluetooth radio uses a fast acknowledgement and frequency-hopping scheme to make the link robust, even in noisy radio environments. 1.Scope The module Bluetooth RF is a version 1.0 Class 1 high power level with integrates RF and Base–Bend controller in small package. 2. Definition for type of module. The architecture in this module is class 1 with 39 pads to integration in another smart module by MTEYE. The module Bluetooth it’s being supported the HCI communication and power supply from two batteries. The output signal RF its matching to 50 ohms direct to the mother board antennas This pad it’s the only signal RF that its supplier from the RF module Bluetooth. 3.BLOCK DIAGRAM SPDT SWITCH SiW 3500 RX V2 MICROPROCESSOR MODULE RF 2.4GHz BLUETOOTH Bluetooth PA2423L TX- OUT PA TX RX SWITCH 32.000 MHz 32.768 KHz Figure1: block diagram V1 BPF FILTER 2.45GHz+/-50MHz eye 11 Hamelacha St. Afek Industrial Park Rosh Ha’ayin 48091 Security LTD ISRAEL 4. SPECIFICATION 4.1 OPERATING RATING SUPPLY VOLTAGE = 3.6 V MAX [supply from mother board] INTERNAL REGULATION = 1.85 VDD TEMPERATURE RANGE = -35c TO 75c 4.2 ABSOLUTE RATING SUPPLY VOLTAGE = 3.63 V MAX [supply from mother board] 1.8 V MINIMUM TEMPERATURE RANGE = -55c TO 125c RF INPUT SIGNAL (TO RX MODE) = +5dBm 5. GENERAL PARAMETER NO 10 11 ITEMS DEEP SLEEP CURRENT CONSUMPTION CARRIER FREQUENCY SPECIFICATION 24µA 2.402 MHz to 2.480MHz Modulation method GFSK ,1 Mbps , 0.5BT GAUSSIAN Maximum Date Rate 732 Kbit/sec Output power RF input/output impedance Base band crystal OSC Host interface Hopping Frequency Receiver Sensitivity Current at max output power +18 dBm max 50 Ω 32.000 MHz UART 2402to 2480 MHz f= 2402+k MHz . k=0, 1, 2, 3 ….78 -80dBm 82 mA eye 11 Hamelacha St. Afek Industrial Park Rosh Ha’ayin 48091 Security LTD ISRAEL 6. INTERFACE DESCRIPTION 6.1 UART Interface. This reference design includes an interface compliant With the HCI UART Transport Layer (Part H4) and 3-Wire UART Transport Layer (Part H5). The firmware auto-detects between H4 and H5 UART, providing a simple mechanism For communicating with other digital devices using the RS-232 standard. 6.2 Hardware Signals. Four signals are used to implement the UART interface, With two optional signals Available for Enhanced power management features. UART_RXD and UART_TXD transfer Data between the host and SiW3500. UART_CTS and UART_RTS can be used to implement RS-232 hardware flow control. EXT_WAKE and HOST_WAKEUP are used to Controls sleep functions of the SiW3500 and host, Respectively. All UART connections are implemented using CMOS technology with Signal levels of 0 V and VDD_P. The RS-232 port on a standard PC is also a UART interface. These RS-232 ports use different voltage levels to represent "high" (3 V) and "low" (-3 V). To interface the SiW3500 UART port to a PC’s serial port or other RS-232 device, it is necessary to Use an RS-232 transceiver to translate between the I/O levels available from the SiW3500 and the RS-232 levels available from a PC or other such device. Note: In order to communicate with the UART at high data rates (Typically above 115 Kbaud) using a standard PC, A high-speed serial port adapter card is typically required for the PC eye 11 Hamelacha St. Afek Industrial Park Rosh Ha’ayin 48091 Security LTD ISRAEL 7. Module Bluetooth Pads Number pad Symbol I/0 Description D_GND GND GND AUX_UART_TXD Output. Auxiliary UART serial port output. PCM_CLK CMOS bi-directional PCM synchronous data clock PCM_SYNC CMOS bi-directional PCM synchronization data strobe PCM_IN CMOS bi-directional PCM data output from SiW3500. PCM_OUT CMOS bi-directional PCM data input to SiW3500. EXT_WAKE CMOS input Wake up signal from host. UART_RTS CMOS output UART flow control ready to send. UART_CTS CMOS input UART flow control clear to send. 10 UART_TXD CMOS output UART transmit data. 11 UART_RXD CMOS input UART receive data. 12 D_GND GND GND 13 14 VANLG ADC_IN IN Analog V_ANA 3.6 Analog to digital converter input 15 VANLG Power Positive supply to internal analog voltage regulator. 16 MFP_0 CMOS bi-directional Multi-function I/O port. 17 VCC_OUT Power 18 MFP_1 CMOS bi-directional Multi-function I/O port. 19 20 VDIG MFP_2 IN V_DIG 3.6 CMOS bi-directional Multi-function I/O port. 21 22 VDD_C MFP_3 OUT VDD 1.8 V CMOS bi-directional Multi-function I/O port. Regulated output from internal analog voltage regulator. eye 11 Hamelacha St. Afek Industrial Park Rosh Ha’ayin 48091 Security LTD ISRAEL 7. Module Bluetooth Pads [ con] 23 24 VDD_P MFP_4 OUT VDD 1.8 to External memory CMOS bi-directional Multi-function I/O port. 25 A_GND GND Ground connections 26 27 TX_RX_OUTPUT A_GND OUT GND RF SIGNAL GND 28 29 VDD _ALT MFP_5 OUT VDD 1.8 to External UART CMOS bi-directional Multi-function I/O port. 30 MFP_6 CMOS bi-directional Multi-function I/O port. 31 TX_RX_SWITCH OUT TX\RX SWITCH 32 PWR_REG1_EN CMOS bi-directional CLOCK_REQ_OUT control line for external TCXO 33 D_GND GND Ground connections 34 D_GND GND Ground connections 35 RESET IN System level reset 36 SCL CMOS output I²C CLOCK 37 SDA CMOS bi-directional I²C DATA 38 WP CMOS output Write enable for external memory 39 CLK_32MHz Analog System clock crystal eye 11 Hamelacha St. Afek Industrial Park Rosh Ha’ayin 48091 Security LTD ISRAEL 8. Sample for PCB placement MFP UART Bluetooth Module MT-SiW35-SiGeL-01 Microstrip line zl=50ohm Metching Network Chip Antenna SMT eye 9. Dimension 11 Hamelacha St. Afek Industrial Park Rosh Ha’ayin 48091 Security LTD ISRAEL eye 11 Hamelacha St. Afek Industrial Park Rosh Ha’ayin 48091 Security LTD ISRAEL 10."FCC FCC STATEMENT This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: a) Reorient or relocate the receiving antenna. b) Increase the separation between the equipment and receiver. c) Connect the equipment to an outlet on a circuit different from that to which the receiver is connected. d) Consult the dealer or an experienced radio/TV technician. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: a) This device may not cause harmful interference b) This device must accept any interference received, including interference that may cause undesired operation. 11.FCC Warning Modifications not expressly approved by the manufacturer could void the user authority to operate the equipment under FCC Rules. Instructions concerning human exposure to radio frequency electromagnetic fields. To comply with FCC Section1.307 (b)(1) for human exposure to radio frequency electromagnetic fields, implement the following instruction: A distance of at least 30 cm between the equipment and all persons should be maintained during operation of the equipment."
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