
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
※※※CAUTION※※※ changes of modifications not expressly approved by the part responsible for compliance could void the user , s authority to operate the equipment。 XCRF-804 Interrogator User manual Table of Contents 1 INTRODUCTION..................................................... 2 2 PERFORMANCE PARAMETER............................................ 5 2.1 GENERAL FEATURES...................................................5 2.2 KEY FEATURE.......................................................5 2.3 TECHNICAL SPECIFICATION.............................................5 3 DESIGN FUNDAMENTALS.............................................. 6 3.1 DEVICE COMPOSE....................................................6 3.1.1 RF unit: .....................................................6 3.1.2 Baseband unit: ...............................................7 3.1.3 Power unit: ..................................................7 3.1.4 data interface unit: .........................................7 3.1.5 case unit: ...................................................7 3.2 FUNDAMENTAL WORKING PRINCIPLE.........................................7 4 USAGE AND OPERATION.............................................. 8 4.1 INTERRORGATOR CONNECTION.............................................8 4.2 INTERRORGATOR USAGE AND OPERATION......................................8 5 USUAL FAILURE ANALYSIS AND EXCLUSION ............................. 8 6 OTHER NOTICE..................................................... 9 6.1 PRODUCTION WARRANTY................................................9 6.2 SAFETY NOTE.......................................................9 1 Introduction Thank you for using XCRF-804 interrogator made in Shenzhen Invengo Information Technology Co. Ltd. The interrogator can offer stability and reliability, while strictly following the EPC C1G2 recommendation.. Front panel and rear panel layout XCRF-804 interrogator layout as below: figure 2-1: figure 2-1 XCRF-804 interrogator front panel layout 1-antenna port1; 2-antenna port2; 3-antenna port3; 4-antenna port4; Note: Every antenna interface must connect with an antenna or 50 ohm load before the interrogator power up. otherwise the interrogator will be damaged. XCRF-804 interrogator rear panel figure 2-2: figure 2-2 XCRF-804 interrogator rear panel figure 2-2 1-power switch; 2-RS-232 serial port, a physical interface between a computer and interrogator. The pin no, signal name and direction list as below. And the pin number is same as the number showed on DB9 connector. pin signal direction 2 RXD input 3 TXD output 5 Ground ground 3-Network Interface between a computer and interrogator. Plug one end of the cable into the RJ45 jack on the back of your PC. Plug the other end into RJ45 port on the interrogator. Device provides 10M/100M self-adaptive Ethernet interfaces. 4-AC INLET; XCRF-804 interrogator surface as figure2-3: figure 2-3 XCRF-804interrorgator surface 1-Power/Power Amplifier Indicator, two-colour light(green or red),green light indicates that the interrogator power on. Red light indicates the interrogator power up; 2-antenna1/3,two-colour light(green or red),green light indicates that the antenna1 of interrogator is working, red light indicates that the antenna3 of interrogator is working; 3-antenna2/4,two-color light(green or red),green light indicates that the No2 antenna of interrogator is working. Red light indicates that the No4 antenna of interrogator is working; 4-Decode /error, two-colour light(green or red),green lighting indicates that the interrogator read the tag data correctly. Red lighting indicates that the interrogator read tag data error; 5-communicate/connect, two-colour light(green or red),green lighting indicates that the interrogator is transmitting data to PC via Network Interface. Red lighting indicates that the interrogator established a network connection to PC successfullly; 2 Performance Parameter 2.1 General Features ·Operating temperature:-10°C~+60°C(14°F~+140°F) ·Storage temperature:-20°C~+70°C(-4°F~+158°F) ·Operating humidity:20%~95% ·Power supply voltage:AC:85V~265V/200mA ·Size:28.8 x 20.4 x 6.8cm(11.3 x 8 x 2.8inches) ·Weight:about1.25Kg(2.97lb) 2.2 Key feature ·Protocol:EPC Global Class1/Gen2/ISO 180006B ·Tag data rates:40kbps ·Number of antenna:up to 4 , electronically switched ·Antenna port isolation:≧22dB ·Transmitter type:On/Off Keying ·Usable channels:50 ·Occupied frequency bandwidth:<400KHz 2.3 Technical specification ·Frequency of operating:902MHz ~928MHz ·Output power:1.0Watt(+30dBm),20dB digital Control range, minimum interval 0.5dB ·Frequency stability:≦±5ppm ·Operating mode: fixed-frequency /frequency hopping selective availability.maximal optional frequency number is 50pcs, frequency interval is 500KHz. ·Maximal reading distance up to 3.5~4.5m (11.48~14.75feet)(EIRP=36dBm,related to tags.) ·Write distance:Distances up to70% of the read distance under the same condition. ·Multi-tag reading rate:≧60 pcs/second(it’s related to protocol) 3 Design fundamentals 3.1 Device compose As figure 4-1 and 4-2,XCRF-804 interrorgator has 5 parts:RF unit, baseband unit,power unit、data interface unit、case unit. figure 4-1 interrogator RF unit fundamental block diagram figure 4-2 interrogator baseband unit fundamental block diagram 3.1.1 RF unit: →The RF unit receive baseband signal and modulate carrier,then amplify the modulated carrier signals and transmit the signals by selected antenna. →The unit receive the back scatter signal from the RFID tag.After demodulating , amplifying ,comparing the signals ,the unit transmit the signals up to baseband unit. →The unit adjust output power and frequency of the antenna interface under the control of the baseband unit. 3.1.2 Baseband unit: →The unit receive data & command from PC via RS-232 interface,or send data & results to PC ; →The unit transmit control signals of tags to RF unit; →The unit accept tag signals from RF unit, modulate signals and checkout; →The unit can modify or…
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Block Diagram 1.System Module Block Diagram Radio Frequency Module Oscilator Fre=12.8MHz Base Band Module FPGA Fre=24.0MHz MCU Fre=25.0MHz RTC Fre=32.768KHz LED Display Data Interface Power Module Power Data Signal RF signal System Module Block Diagram 2.Radio Frequency Module Block Diagram Radio Frequency Module Block Diagram 3.Base Band Module Block Diagram FPGA Fre=24.0M Hz MCU Fre=25.0M Hz LED Display power Data or I/O interface RF Module Oscilator Fre=12.8M Hz Base Band Module Block Diagram 4.Power Module Block Diagram AC/DC Module Anti-Thunder Module EMC Filter Voltage adjust Input85~ 265V+5.0V Power Module Block Diagram
Top View of EUT Bottom View of EUT Front View of EUT Back View of EUT Left View of EUT Right View of EUT Cable of System Antenna of System
Model Name: XCRF-804 Made in China FCC ID: TQ4YWGIT-R5678901 This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.
Model Name: XCRF-804 Made in China FCC ID: TQ4YWGIT-R5678901 This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.
Internal of EUT-1 Internal of EUT-2 Internal of EUT-3 Internal of EUT-4 Internal of EUT-5 Internal of EUT-6 Internal of EUT-7 Internal of EUT-8 Internal of EUT-9 Internal of EUT-10
System Description 1.System Structure Diagram Radio Frequency ModuleBase Band Module LED Display Data Interface Power Module Power Data Signal RF signal Diagram 1:System Structure Diagram The system is consist of radio frequency module, base band module, power module, data interface and LED display. under the control of base band module, radio frequency module transmits the modulated carrier signal with varying frequency and power. transmit the signal to a certain area by antenna within which the tags receive signal then feedback its signal. after going into the radio frequency module, the feedback signal will be demodulated to form base band signal. Base band performs decoding the tag signal and communicating with PC. and power module provide all the direct voltage. 2.Radio Frequency Structure Diagram Diagram 2:Radio Frequency Structure Diagram The radio frequency module is consist of transmitting and receiving parts controlled by Baseband circuit. the phase lock loop generates carrier with frequency range from 902MHz~928Mhz,which could be amplified by the front amplifier and end amplifier, then emitted by the antenna that return tag , s signal via demodulator to mixer where the signal is detected and amplified to output to the baseband circuit. The radio frequency module is consist of transmitting and receiving part, ·transmitting part The transmitting part is as below according to the RF signal flow. Temperature-compensated oscillator (12.8MHz) → PLL915A phase lock loop → RF2302 power front amplifier → end amplifier with power adjustable → microwave switcher with maximum output power 30dBm(1W). ·receiving part The receiving part is as below according to the return signal flow Demodulated network → front differential amplifier → end amplifier → comparator output → output double channel digital signal. 3.Base Band Structure Diagram FPGA APA150 MCU MC9S12N E64 LED Display power Data or I/O interface RF Module Base Band Structure Diagram The baseband module is consist of coding/decoding part, and control parts, which respectively is FPGA and MCU. The coding/decoding part employs built-in-FLASH modeled APA150 .the APA150 performs coding/decoding for tag signal and controlling the transmitting circuit. The control unit employs MCU produced by Freescale company. with 19200serial interface and 10Mbps Etherent network interface, MCU performs order analyzing , data uploading ,and data storage etc. 4.Power Structure Diagram AC/DC Module Anti-Thunder Module EMC Filter Voltage adjust Input85~ 265V+5.0V Power Structure Diagram Power module output is +5V direct current to interrogator, the maximum output current is 2A.
1 2 3 4 5 6 78 ABCD 8 7 6 5 4 3 2 1 D CBA FPGA_RCKFPGA_TRSTFPGA_TDOFPGA_TMSFPGA_TDIFPGA_TCKFPGA_VPPFPGA_VPNRF_ASK_INRF_PLL_DATRF_PLL_ENRF_PLL_CLKRF_ADCSRF_POWERRF_ADCLKRF_ADSDIRF_ASK_OUT0RF_ASK_OUT1 WG0_OUTWG1_OUT WG_RST IO_IN1IO_IN2 IO_OUT1IO_OUT2 UART_TX1UART_RX1UART_RX2 LINEALINEB POWER_LED RFPOW_LED ANT1_LEDANT2_LEDANT3_LEDANT4_LED RF_ANT0 DCCOD_LED RF_ANT1 DCERR_LED F_ACT_LED F_LINK_LED ACT_LED LINK_LED ETN_RX+ ETN_RX- ETN_TX+ ETN_TX- CHASISGND MCU_BEEP UART_TX2 SPI_CSSPI_SOSPI_SISPI_SCKSPI_HOLDMEM_CS1MEM_CS2MEM_CS4MEM_CS3 XCRF-804-BS-V1.1-SHEET2XCRF-804-BS-V1.1-SHEET2.Sch FPGA_RCKFPGA_TRSTFPGA_TDOFPGA_TMSFPGA_TDIFPGA_TCKFPGA_VPPFPGA_VPNRF_ASK_INRF_PLL_DATRF_PLL_ENRF_PLL_CLKRF_ADCSRF_POWERRF_ADCLKRF_ADSDIRF_ASK_OUT0RF_ASK_OUT1RF_ANT0RF_ANT1 IO_IN1IO_IN2IO_OUT1IO_OUT2MCU_BEEPWG0_OUTWG1_OUTWG_RSTUART_TX1UART_TX2UART_RX1UART_RX2LINEALINEBETN_RX+ETN_RX-ETN_TX+ETN_TX-CHASISGNDPOWER_LEDRFPOW_LEDANT1_LEDANT2_LEDANT3_LEDANT4_LEDDCCOD_LEDDCERR_LEDF_ACT_LEDF_LINK_LEDLINK_LEDACT_LED FPGA_RCKFPGA_TRSTFPGA_TDOFPGA_TMSFPGA_TDIFPGA_TCKFPGA_VPPFPGA_VPNRF_ASK_INRF_PLL_DATRF_PLL_ENRF_PLL_CLKRF_ADCSRF_POWERRF_ADCLKRF_ADSDIRF_ASK_OUT0RF_ASK_OUT1 WG0_OUTWG1_OUT WG_RST IO_IN1IO_IN2 IO_OUT1IO_OUT2 UART_TX1UART_RX1UART_RX2 LINEALINEB POWER_LED RFPOW_LED ANT1_LEDANT2_LEDANT3_LEDANT4_LED RF_ANT0 DCCOD_LED RF_ANT1 DCERR_LED F_ACT_LED F_LINK_LED ACT_LED LINK_LED ETN_RX+ ETN_RX- ETN_TX+ ETN_TX- CHASISGND MCU_BEEP UART_TX2 SPI_CSSPI_SOSPI_SISPI_SCKSPI_HOLDMEM_CS1MEM_CS2MEM_CS3MEM_CS4 XCRF-804-BS-V1.1-SHEET3XCRF-804-BS-V1.1-SHEET3.Sch FPGA_RCKFPGA_TRSTFPGA_TDOFPGA_TMSFPGA_TDIFPGA_TCKFPGA_VPPFPGA_VPNRF_ASK_INRF_PLL_DATRF_PLL_ENRF_PLL_CLKRF_ADCSRF_POWERRF_ADCLKRF_ADSDIRF_ASK_OUT0RF_ASK_OUT1RF_ANT0RF_ANT1 IO_IN1IO_IN2IO_OUT1IO_OUT2MCU_BEEPWG0_OUTWG1_OUTWG_RSTUART_TX1UART_TX2UART_RX1UART_RX2LINEALINEBETN_RX+ETN_RX-ETN_TX+ETN_TX-CHASISGNDPOWER_LEDRFPOW_LEDANT1_LEDANT2_LEDANT3_LEDANT4_LEDDCCOD_LEDDCERR_LEDF_ACT_LEDF_LINK_LEDLINK_LEDACT_LED 10:20:15 File: ywgit total 3 2006/07/04 Time: page 1A3 V1.1 authorize wenyiqingstandardizationauditor liuchunjiangdesigner liuruitao BaseBand PCB:XCRF-804-BS-V1.3.PCB YW5.948.093DL XCRF-804 Reader SPI_CSSPI_SOSPI_SISPI_SCKSPI_HOLDMEM_CS1MEM_CS2MEM_CS3MEM_CS4 SPI_CSSPI_SOSPI_SISPI_SCKSPI_HOLDMEM_CS1MEM_CS2MEM_CS3MEM_CS4 1 2 3 4 5 6 78 ABCD 8 7 6 5 4 3 2 1 D CBA ZD15.6V PJ1 DC_JET C73 220uF/10V C74 220uF/10V 5V 123456789101112 J4 CON12 3.3V 2.5V FPGA_RCKFPGA_TRSTFPGA_TDOFPGA_VPNFPGA_VPPFPGA_TMSFPGA_TDIFPGA_TCK 123456 J5 CON6 3.3V RESET BKGD/MODC 123456789101112 J2 CON12 POWER_LEDRFPOW_LEDANT1_LEDANT2_LEDANT3_LEDANT4_LEDDECOD_LEDDCERR_LEDF_LINK_LEDF_ACT_LED 5V 123456789101112131415161718192021222324 J1 CON24 RF_ASK_IN#RF_PLL_DAT#RF_PLL_EN#RF_PLL_CLK#POW_GNDRF_ADJRF_ADJRF_ADJRF_5VRFGNDRFGNDRFGNDRF_5VRF_5VRF_ANT0#RF_ANT1#RFGND RF_PLL_CLKRF_PLL_DATRF_PLL_ENRF_ASK_IN RF_POWERRF_ADCSRF_ADCLKRF_ADSDI RF_ADSDI#RF_ADCLK#RF_ADCS#RF_POWER#RF_ASK_IN#RF_PLL_EN#RF_PLL_DAT#RF_PLL_CLK#RF_ASK_OUT0RF_ASK_OUT1 RF_ASK_OUT0#RF_ASK_OUT1#RF_ANT0RF_ANT1 RF_ANT0#RF_ANT1# RF_5VRF_5V TMS 1 TCK 2 TDI 3 TDO 4 /CS 5 CAL 6 ENSPI 7 GND 8 VREFOUT 9 IN- 10 IN+ 11 TEST 12 OUT_ 13 OUT+ 14 TEST 15 Vs 16 U11 PAC80 10:20:15 File: page 3 ywgit total 3 2006/07/04 Time: A3 V1.1 authorize wenyiqingstandardizationauditor liuchunjiangdesigner liuruitao Base Band PCB:XCRF-804-BS-V1.3.PCB YW5.948.093DL RF_DEM4RF_DEM3 RF_TMS1 RF_DEM1RF_DEM2RF_DEM3RF_DEM4 RF_TCK1RF_TDI1 RF_TDO1RF_CAL1RF_ENSP1 RFGNDRFGNDRF_VS1 RF_5V TMS 1 TCK 2 TDI 3 TDO 4 /CS 5 CAL 6 ENSPI 7 GND 8 VREFOUT 9 IN- 10 IN+ 11 TEST 12 OUT_ 13 OUT+ 14 TEST 15 Vs 16 U12 PAC80 RF_DEM2RF_DEM1 RF_TMS2RF_TCK2RF_TDI2RF_TDO2RF_CAL2RF_ENSP2 RFGNDRFGNDRF_VS2 RF_5V OUTA 1 INA+ 2 INA- 3 GND 4 INB+ 5 INB- 6 OUTB 7 VCC 8 U13 MAX942 RF_5V RF_ASK_OUT0#RF_ASK_OUT1# C820.01uFC830.01uF 射频解码滤波电路 RF_5V C850.1uF C88 10uF/10V RF_VS1 RF_5V C86 0.1uF C89 10uF/10V RF_VS2 C840.1uF RF_5V R36 2.2k R383.3k R37 2.2k R393.3k RF_ASK_OUT0 RF_ASK_OUT1 BUZ1 DC_BUZZER R50 100 5V BEEP_DRV R51 1K R52 330 R53 330 POW_5V LINK_LEDACT_LED L1 INDUCTOR2 L2 INDUCTOR2 C59 0.1uF POW_5V RF_5V C9010uF/10V R25 4.7KR26 4.7K FPGA_TDOFPGA_TCK 3.3V RF_5V R27 4.7K R28 4.7K RESETBKGD/MODC 3.3V 12345678 J8CON8 162738495 SJ1DB9 UART1_TXUART1_RX IO_INPUT1#IO_INPUT2# C510.1uF C520.1uF C530.1uF C480.1uF 2.5V C490.1uF 3.3V C500.1uF 3.3V FPGA : JTAG 调试下载接口 MC9S12NE64 : BD M 调试下载接口 LE D 显示板接口插座 射频板接口插座 5V C87 0.1uF 2.5V ASK_OUT1ASK_OUT0 RF_ASK_OUT0#RF_ASK_OUT1# 3.3V5VGND 2.5V3.3V POW_5V IO_OUTPUT1#IO_OUTPUT2# 12345678 J6CON8 5V_OUTWG0_OUTPUTWG1_OUTPUTWG_RST#LINEALINEB R35 4.7K R47 1K WG1_OUTPUT F_ASK_OUT0 F_ASK_OUT1 PT2 PHOTO-4 WG0_OUTWG1_OUTWG_RST# R43100 R34 4.7K R46 1K WG0_OUTPUT R42100 R324.7K IO_OUTPUT2# PT1PHOTO-4 IO_OUT1IO_OUT2IO_INPUT1# R41 100 R314.7K IO_OUTPUT1# R40 100 R44 1KR45 1K IO_INPUT2#IO_GNDIO_GND COM_GND GND IO_GNDIO_GND POW_IN R30 4.7K R29 4.7K R33 4.7K 3.3V WG_RST 3.3V IO_IN1 IO_IN2 12345678 J7CON8 123456789101112 J3CON12 WG0#WG1#WR#RX#TX#LA#LB#5V_OUTCOM_GNDCOM_GNDCOM_GNDCOM_GNDCHASISGNDCHASISGNDCHASISGNDCHASISGNDETN_RX+ETN_RX-ETN_TX-ETN_TX+IO_GNDIO_GNDIO_GND IO_VCC R54 4.7K R55 4.7K R56 4.7K R57 4.7K 3.3V WG0_OUTWG1_OUTIO_OUT1IO_OUT2 IO 接口插座 串行通讯接口插座 XCRF-804 Reader Q1PMB3904Q2PMB3904Q3PMB3904Q4PMB3904 LED1 红 LED2 黄 LED3 绿 3.3V C540.1uF RFPOW_LED#POWER_LED# 1234 J9CON4 5V UART2_RXUART2_TX ANT1_LED#ANT2_LED#ANT3_LED#ANT4_LED#DCCOD_LED#DCERR_LED#F_ACT_LED#F_LINK_LED# 以太网扩展接口 LED101DUB_LED LED102DUB_LEDLED103DUB_LED LED104DUB_LEDLED105DUB_LED 123456789 101112 J100CON12 LED_ANT1LED_ANT2LED_ANT3LED_ANT4LED_DCCOD LED_DCCOD LED_DCERR LED_DCERR LED_ACT LED_ACT LED_LINK LED_LINK LED_POWERLED_RFPOWLED_VCCLED_GND LED_VCC LED_VCC LED_VCC LED_VCC LED_ANT1LED_ANT2LED_ANT3LED_ANT4 LED_VCC LED_RFPOWLED_POWER LE D 显示板电路图 此部分电路需单独布在 LED 板 PCB 上 R73 330 R74 330 R75 330 R76 330 R77 330 R78 330 R79 330 R80 330 R81 330 R82 330 C550.1uF C56 0.1uF DIR 1 A5 6 A6 7 A7 8 A8 9 GND 10 VCC 20 B1 18 B2 17 B3 16 B4 15 OE2 19 A1 2 A2 3 A3 4 A4 5 B5 14 B6 13 B7 12 B8 11 U8 74HCT245 DIR 1 A5 6 A6 7 A7 8 A8 9 GND 10 VCC 20 B1 18 B2 17 B3 16 B4 15 OE2…
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Shenzhen Huatongwei International Inspection Co., Ltd REPORT NO: WE06070004 FCC ID: TQ4YWGIT-R5678901 DATE: 07/25/2006 Page 1 Rev. 00 ELECTROMAGNETIC EMISSIONS COMPLIANCE REPORT INTENTIONAL RADIATOR CERTIFICATION TO FCC PART 15 SUBPART C REQUIREMENT OF Reader FCC ID:TQ4YWGIT-R5678901 MODEL No.: XCRF-804 BRAND NAME: N/A REPORT NO: WE06070004 ISSUE DATE: July 25, 2006 Prepared for INVENGO INFORMATION TECHNOLOGY CO., LTD. 3/F. NO. T2-B. HIGH-TECH INDUSTRIAL PARK SOUTH, SHENZHEN, CHINA Prepared by SHENZHEN HUATONGWEI INTERNATIONAL INSPECTION CO., LTD d.b.a. SHENZHEN HUATONGWEI INTERNATIONAL INSPECTION CO., LTD HUATONGWEI BUILDING, KEJI RD. 12 S., HIGH-TECH PARK, NANSHAN DISTRICT, SHENZHEN, GUANGDONG , P.R.CHINA TEL: 86-755-26748099 FAX: 86-755-26748089 Shenzhen Huatongwei International Inspection Co., Ltd REPORT NO: WE06070004 FCC ID: TQ4YWGIT-R5678901 DATE: 07/25/2006 Page 2 Rev. 00 VERIFICATION OF COMPLIANCE Applicant: Invengo Information Technology Co., LTD. 3/F. No. T2-B. High-Tech Industrial Park South, Shenzhen, China Manufacturer Invengo Information Technology Co., LTD. 3/F. No. T2-B. High-Tech Industrial Park South, Shenzhen, China Product Description: Reader Brand Name: N/A Model Number: XCRF-804 Serial Number: N/A File Number: WE06070004 Date of Test: July 16, 2006 ~ July 25, 2006 We hereby certify that: The above equipment was tested by SHENZHEN HUA TONG WEI INTERNATIONAL INSPECTION CO., LTD. The test data, data evaluation, test procedures, and equipment configurations shown in this report were made in accordance with the procedures given in ANSI C63.4 (2003) and the energy emitted by the sample EUT tested as described in this report is in compliance with radiated emission limits of FCC Rules Part 15.247. The test results of this report relate only to the tested sample identified in this report. Approved By Reviewed By Jimmy Li / Executive Manager Tracy Qi / Testing Engineer SHENZHEN HUA TONG WEI SHENZHEN HUA TONG WEI INTERNATIONAL INSPECTION CO., LTD INTERNATIONAL INSPECTION CO., LTD Shenzhen Huatongwei International Inspection Co., Ltd REPORT NO: WE06070004 FCC ID: TQ4YWGIT-R5678901 DATE: 07/25/2006 Page 3 Rev. 00 Table of Contents 1. GENERAL INFORMATION................................................................................................ 4 1.1 Product Description ............................................................................................................................ 4 1.2 Related Submittal(s) / Grant (s)......................................................................................................... 4 1.3 Test Methodology ................................................................................................................................ 4 1.4 Test Facility ......................................................................................................................................... 4 2. SYSTEM TEST CONFIGURATION .................................................................................. 6 2.1 Configuration of Tested System......................................................................................................... 6 3. Summary of Test Result.........................................................................................................7 4. DESCRIPTION OF TEST MODES..................................................................................... 7 5. PARAMETERS FOR GAME PAD ...................................................................................... 8 5.1 Conduction Emission .......................................................................................................................... 8 5.2 Hopping Channels............................................................................................................................. 10 5.3 Channel Separation........................................................................................................................... 12 5.4 20 dB Bandwidth ............................................................................................................................... 13 5.5 Operation Frequency ........................................................................................................................ 14 5.6 Peak Output Power ........................................................................................................................... 15 5.7 Spurious Emission at Transmitting Mode ...................................................................................... 18 5.8 Band Edge .......................................................................................................................................... 20 5.9 Spurious Emission at Receiving Mode ............................................................................................22 5.10 Dwell Time ......................................................................................................................................... 24 Shenzhen Huatongwei International Inspection Co., Ltd REPORT NO: WE06070004 FCC ID: TQ4YWGIT-R5678901 DATE: 07/25/2006 Page 4 Rev. 00 1 GENERAL INFORMATION 1.1 Product Description The EUT is an short range, lower power, RFID reader and writer designed as an “ Input Device”. It is designed by way of utilizing the FHSS technology to achieve the system operation. A major technical descriptions of EUT is described as following: A). Operation Frequency: Form 902 MHz – 928 MHz total 50 channels with 500 KHz intervals ( 902.7 MHz, 903.2 MHz,......, 927.2MHz ) B). Modulation: FHSS C). Antenna Designation: Dedicated Antenna with 6 dB Gain (Replace by end user is not permitted) D). Power Supply: AC 120 V/60 Hz 1.2 Related Submittal(s) / Grant (s) This submittal(s) (test report) is intended for FCC ID: TQ4YWGIT-R5678901 filing to comply with Section 15.247 of the FCC Part 15, Subpart C Rules. 1.3 Test Methodology Both conducted and radiated testing were performed according to the procedures in A…
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Shenzhen Huatongwei International Inspection Co., Ltd Page 27 Rev. 00 Conducted Emission Setup Photos Radiated Emission Setup Photos
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.7 MHz - 927.2 MHz | 977.00 mW |

Reader
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Reader
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterReader
Equipment Class
DTS - Digital Transmission System
Portable reader
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
reader-writer
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter