
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
W AR NING Your Icom radio generates RF electromagnetic en- ergy during transmit mode. This radio is designed for and classified as “Occupational Use Only”, meaning it must be used only during the course of employment by individuals aware of the hazards, and the ways to minimize such hazards. This radio is NOT intended for use by the “General Population” in an uncon- trolled environment. This radio has been tested and complies with the FCC RF ex- posure limits for “Occupational Use Only”. In addition, your Icom radio complies with the following Standards and Guidelines with regard to RF energy and electromagnetic energy levels and eval- uation of such levels for exposure to humans: • FCC OET Bulletin 65 Edition 97-01 Supplement C, Evaluat - ing Compliance with FCC Guidelines for Human Exposure to Radio Frequency Electromagnetic Fields. • American National Standards Institute (C95.1-1992), IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz. • American National Standards Institute (C95.3-1992), IEEE Recommended Practice for the Measurement of Potentially Hazardous Electromagnetic Fields– RF and Microwave. • The following accessories are authorized for use with this product. Use of accessories other than those specified may result in RF exposure levels exceeding the FCC requirements for wireless RF exposure.; Belt Clip (MB-115), Rechargeable Li-Ion Battery Pack (BP-254), Alkaline Battery Case (BP- 237) and Speaker-microphone (HM-184). C AU TION To ensure that your expose to RF electromag- netic energy is within the FCC allowable lim- its for occupational use, always adhere to the following guidelines: • DO NOT operate the radio without a proper antenna at- tached, as this may damaged the radio and may also exceed FCC RF exposure limits. A proper antenna is the antenna supplied with this radio by Icom Inc. or antenna specifically authorized by Icom Inc. for use with this radio. • DO NOT transmit for more than 50% of total radio use time (“50% duty cycle”). “50% duty cycle” is also applicable to PSTN (Public Switched Telephone Network) mode and VOX Mode.Transmitting more than 50% of the time can cause FCC RF exposure compliance requirements to be exceeded. The radio is transmitting when the TX indicator lights red. You can cause the radio to transmit by pressing the “PTT” switch. • ALWAYS keep the antenna at least 2.5 cm (1 in.) away from the body when transmitting and only use the Icom belt-clips listed on p. 24 when attaching the radio to your belt, etc., to ensure FCC RF exposure compliance requirements are not exceeded. To provide the recipients of your transmission the best sound quality, hold the antenna at least 5 cm (2 in.) from your mouth, and slightly off to one side. The information listed above provides the user with the informa- tion needed to make him or her aware of RF exposure, and what to do to assure that this radio operates with the FCC RF expo- sure limits of this radio. 25 SAFETY TRAINING INFORMATION
ABCD DCBA Title Number Revision Size A3 Date: 18-Dec-2008 Sheet of File: C:\Do cumen ts and Sett in gs\si mpl es\ 桌面 \S82 0 方框图及电路图 \S82 0 方框图 .DD B Drawn By: Vin 1 GND 2 Vout 3 VOLTREG MIC35 SP25 U5 +5 AUDIO CHANNEL DTA143TEDTA143TE2SC4617 K52K52 2SC49191SS372 SPEAKER MIC ANT B561 Q2 C458 N2 LM386 U2 TA TB MONI PTT POW-SW TMP87P805U U6 24i24i RED N4 GEN N3 24C08 U7 EEPROM ENC0-3 APC(PCTV) 32.768KHz 54 Q17 M5V 5MC 54 Q12 RXEN R5V T5V B561 Q15 TXEN MUTE MUTE PLL DATA M5V 19.2MHz T3 TCXO LMX2332 U3PLL LOOP-FILTER 2904 U5 APC-AMP VCC VCC U3 N2D3AGC/MUTE U2 RC4558 RC4558 -AMP LIMITER L.P.F 1SV270 D8 DEV M5V R5V 2SC3356 Q7 BUFFER-AMP 2SC3356 Q6 TX/RX-BUFFER T5V 2SC3356 Q8 BUFFER-AMP 2SC3356 Q14AMP 2SC3357 Q10 DRIVER-AMP +5 7.2V DC-SW MUTE VOLUME AF-AMP U4 2SC2714 Q13 3SK228 Q5 3SK228 Q4 2SK3475 Q3 DRIVER-AMP 2SK3476 Q2 FINAL-AMPB.P.F ANT.SW B.P.F RF-AMP R5V B.P.F MIXER R5V 21.4MHz MCF IF-AMP TA31136 R5V R5V 20.945MHz CFUM455E PCTV RIPPLEFILTERDC-SWDC-SW TXENRXEN TX-VCORX-VCO Q11 Q2 P2P1N3 Q4 2SK1830 455K Q3 DTA144EE W/N AMP N1 2SC4617 D14 1SS372 W/N VOXIN 东海联发无线电厂 S-820 电路方框图 2008.3.10 带通滤波器 天线 接收带通滤波器 接收高频放大器 带通滤波器 混频器 第一中频滤波器 中频放大器 第二本振 第二中频混频输出 鉴频器 第二中频滤波器 音频放大器 音量电位器 外接耳机插座 喇叭 音频静音控制 语音报号 电源开关 话筒 外接话筒插座 自动增益控制 限幅放大器 低通滤波器 调制电位器 话放调制 发射压控电路 接收压控电路 缓冲放大器 发射电源管 接收电源管 收、发电源管 环路滤波器 频率合成器 鉴听按键 发射按键 守候电源接收电源发射电源 CPU 振荡器 编码开关 存贮器 接收指示灯 发射指示灯 基准振荡器 自动功率控制放大器 第一本振缓冲放大器 发射缓冲放大器 发射放大器 推动放大器 推动放大器 末级功放器 收、发电子开关 S-820 对讲机方框图 CPU 控制芯片 5V 稳压电源 宽 / 窄带控制 缓冲放大器 宽 / 窄带控制 检波 音频放大 电源
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M F A 7 S F G Y 4 ra u S May.26, 2010 Federal Com Authorization 435 Oaklan Subject: FCC ID: X9L Gentlemen; You have as 400-470 MHz ange is rega ser organiza (1) Quan users 430-4 (2) This Gov e frequ Sincerely, 0 mmunications n & Evaluatio d Mills Road L-S820 Just ked Quanz h z appears o arded as us ations and th nzhou Feng s; other than 450, as cont device will n ernment and ency range. s Commissio on Division d Colombia, ification L e hou Fengze on the face o sual & custo he military to gze Lianfa n those spec trolled by the not be mark d its variou . on Maryland 2 etter for Exp e Lianfa Ele of the FCC G omary by Un o appear on Electronic cifically ident e users’ FCC keted to USA s departme 21046 panded Fre ectronic Fa Grant of Ce nited States n the face of Factor y’s tified in this C station lice A users, othe ent & militar quency Ra actory for ju rtification fo Federal G o the equipm Marketing letter, not o p ense. er than thos ry, for oper Quanzh H nge 400-47 ustification to r a Part 90 overnment a ent Grant of Department perate within se identified ration in 40 hou Fengze ongshun C 0 MHz o have the Certificatio n and its vario f Certificatio t plans to e n bands 400 in the letter 0-406.1 MH e Lianfa Ele Chen / Ove frequency r n. This frequ ous departm on. ensure that 0-406.1 MHz r, namely th Hz and 430 ectronic Fac erseas Man range uency ments, USA z and e US 0-450 ctory nager
External Photos
FCC ID Label FCC RF Warning Label
FCC ID Label Location FCC RF Warning Label
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Internal Photos
Circuit Description 1. Frequency configuration The receiver utilizes double conversion superheterodyne. The first IF is 45.05MHz and the second IF is 455 KHz. The first local oscillator signal is supplied by PLL circuit. The PLL circuit in the transmitter generates the necessary frequencies. 2. Receiver The receiver employs double conversion superheterodyne,designed to operate in the frequency range of 400 to 470MHz. 2.1 Front -end RF amplifier An incoming signal from the antenna is applied to an RF amplifier (Q4) after passing through a transmit/receive switch circuit. After the signal is amplified , passing through a band pass filter BPF , the signal is filtered by a band pass filter to eliminate unwanted signal before it is passed to the first mixer. 2.2 First mixer The signal from the RF amplifier is heterodyned with the first local oscillator signal from the PLL frequency synthesizer circuit at the first mixer (Q5) to create a 45.050MHz first IF (Q13) signal. The first IF signal is then fed through two monolithic crystal filters to further remove spurious signal. 2.3 IF amplifier The first IF signal is amplified by Q13, and then enters U4 (FM processing IC). The signal is heterodyned again with a second local oscillator signal within U4 to create a 455 kHz second IF signal. The second IF signal is then fed through a 450 kHz ceramic filter to further eliminate unwanted signals before it is amplified and FM detected in U4. 2.4 AF amplifier The recovered AF signal obtained from U4 is amplified by U2 handle, the processed AF signal passes through an AF volume contro and is amplified to a sufficient level to drive a loud speaker by an AF power amplifier. 2.5 Squelch Part of the AF signal from the U4 enters the FM IC again, and produce the corresponding noise level go to the analog port of microprocessor (U2).U2 determines whether to output sounds from the speaker by checking whether the input voltage is higher or lower than the preset value.To output sounds from the speaker,U2 sends a high signal to the MUTE and AFCO lines through Q2. 2.6 Receiving signaling QT/DQT 300Hz and higher audio frequencies of the output signal from IF IC are entered the microprocessor and determines whether the QT or DQT matches the preset value, and control the MUTE and AFCO and the speaker output sounds according to the squelch results. 3. PLL frequency synthesizer The PLL circuit generates the first local oscillator signal for reception and the RF signal for transmission. 3.1 PLL The frequency step of the PLL circuit is 5 or 6.25 KHz. A 19.2MHz reference oscillator signal is divided at U3 by a mixed counter to produce 5 or 6.25 kHz reference frequency. The voltage controlled oscillator (VCO) output.The signal is buffer amplified by Q6, and then divided in U3 by a dual-module programmable counter. The divided signal is compared in phase with the 5 or 6.26 KHz reference signal in the phase comparator in U3. The output signal from the phase comparator is filtered through a low-pass filter and passed to the VCO to control the oscillator frequency. 3.2 VCO The operating frequency is generated by Q11 in transmit and receive mode. The oscillator frequency is controlled by applying the VCO control voltage, obtained from the phase comparator, to the varactor diodes (D8). In receive mode causing RX-VCO(Q2) supplied and turn P2 on. In transmit mode causing TX-VCO(Q11) supplied and turn P1 on. The outputs from Q2,Q11 are amplified by Q6 and sent to the buffer amplifiers. 4. Transmitter 4.1 Transmit audio The modulation signal from the microphone is amplified by U2(RC4558), passes through a preemphasis circuit , and amplified by other U3 to perform IDC operation. The signal then passes though a low-pass filter(splatter filter) and cuts 3KHz and higher frequencies. The resulting signal goes to the VCO through the VCO modulation terminal for direct FM modulation. 4.2 QT/DQT encoder A necessary signal for QT/DQT encoding is generated by U6 and FM-modulated to the PLL reference signals, Since the reference OSC does not modulate the loop characteristic frequency or higher ,modulation is performed at the VCO side by adjusting the balance. 4.3 VCO and RF amplifier The transmit signal obtained from the VCO buffer amplifier Q6, is amplified by Q8 、 Q14. This amplified signal is passed to the power amplifier, Q10 、Q3 and Q2, which consists of a 2-stage FET amplifier and is capable of producing up to 5W of RF power. 4.4 ANT switch and LPF The RF amplifier output signal is passed through a low-pass filter network to filter the second harmonic components and then applied to a transmit / receive switching circuit before it is passed to the antenna terminal. The transmit / receive switching circuit is comprised of ANT.SW. ANT.SW is turned on (conductive) in transmit mode and off (isolated) in receive mode. 4.5 APC The automatic power control (APC) circuit stabilizes the transmitter output power at a predetermined level by sensing the drain current of the final amplifier Field Effect Transistor (FET). The voltage comparator, U5, compares the voltage obtained from the above drain current with a reference voltage which is set using the microprocessor. The APC voltage is proportional to the difference between the sensed voltage and the reference voltage output from U5. This output voltage controls the gate of the FET power amplifier, which keeps the transmitter output power be varied by the microprocessor which in turn changes the reference voltage and hence, the output power. 5. Power supply A 5V reference power supply for the control circuit is derived from an internal battery. This reference power supply is used to provide a 5V supply in transmit mode [TXV], a 5V supply in receive mode [RXV], and a 5V supply common in both modes [5C] based on the control signal sent from the microprocessor.
2010-3-17 NO. ModelSpecification AmountLocation 10R04025R5,R185,R82,R84,R181 210R04028R77,R73,R83,R50,R46,R165,R166,R180 347R04023R57,R54,R175 4100R04028R45,R79,R70,R13,R9,R33,R80,R68 5180R04023R6,R36,R85 6220R04021R1 7330R04025R72,R71,R12,R18,R40 8470R04022R150,R110 9560R04025R66,R64,R21,R47,R108 10680R04022R171,R49 111K040219 R111,R133,R131,R130,R132,R157,R139,R109, R140,R22,R19,R37,R39,R38,R44,R41,R177,R8 1,R62 121K504021R126 132K04027R86,R107,R89,R87,R176,R112,R117 142K204023R65,R48,R125 153K04021R61 163K304023R25,R15,R32 173K904021R27 184K7040210 R114,R67,R26,R78,R43,R30,R29,R31,R161,R1 67 196K804022R128,R159 2010K04028R143,R100,R129,R124,R172,R88,R63,R174 2115K04022R164,R160 2218K04022R179,R144 2320K04025R34,R59,R60,R153,R35 2433K04025R104,R146,R127,R170,R147 2539K04022R103,R142 2647K040214 R113,R105,R102,R136,R134,R135,R137,R168, R138,R58,R74,R55,R56,R51 2751K04022R123,R141 2868K04024R169,R118,C55,C61 2982K04025R149,R155,R162,R119,R69 30100K040211 R115,R163,R152,R182,R23,R75,R183,R76,R7, C57,C63 31120K04024R42,R178,R116,R151 32150K04021R52 33180K04022R24,R28 34220K04027R101,R158,R156,R145,R120,R20,R8 35270K04021R154 36330K04022R121,R173 37750K04021R122 381M04024R4,R10,R11,R106 390P504021C139 BOM 第 1 页,共 4 页 2010-3-17 NO. ModelSpecification AmountLocation BOM 401P040211 C144,C150,C149,C143,C148,C151,C48,C50,C 100,C130,C138 412P04023C54,C32,C53 423P04024C20,C42,C43,C108 434P04021C31 445P040212 C145,C137,C140,C141,C133,C64,C65,C127,C 66,C101,C102,C126 456P04022C49,C103 467P04021C107 4710P04021C81 4827P04023C241,C242,C60 4930P04022C70,C71 5039P04021C76 5151P04022C225,C224 52100P040219 C198,C170,C171,C226,C232,C186,C237,C218, C217,C239,C206,C247,C69,C156,C181,C154, C124,C98,C7 53120P04021C199 54220P04026C146,C142,C168,C78,C79,C166 55470P040211 C160,C21,C41,C35,C52,C82,C165,C229,C183, C234,C189 56102P040236 C175,C163,C164,C132,C155,C158,C136,C44, C40,C45,C109,C93,C91,C94,C92,C86,C119,C1 18,C105,C46,C195,C196,C236,C187,C214,C21 3,C212,C211,C220,C194,C203,C190,C253,C20 9,R14,R16 57272P04021C201 58302P04021C260 59472P04021C80 60103P040228 C67,C68,C157,C134,C58,C59,C122,C123,C11 4,C116,C110,C112,C84,C95,C97,C96,C169,C1 31,C128,C191,C228,C179,C184,C182,C178,C1 74,C254,C185 61223P04023C192,C204,C202 62273P04022C240,C244 63473P04022C233,C200 64104P040248 C207,C172,C173,C180,C230,C243,C245,C246, C235,C231,C216,C215,C197,C188,C210,C223, C222,C221,C205,C250,C248,C249,C251,C227, C74,C73,C75,C72,C104,C153,C159,C152,C16 7,C56,C252,C125,C37,C62,C89,C87,C111,C83 ,C77,C99,C36,C88,C90,C85 65105P04023C208,C219,L5 665R606031R53 67270R06032R3,R2 第 2 页,共 4 页 2010-3-17 NO. ModelSpecification AmountLocation BOM 68150K,±1%06036R97,R99,R98,R95,R94,R96 691P06035C30,C27,C1,C6,C9 702P06032C19,C12 713P06032C11,C4 725P06032C5,C8 738P06032C13,C259 7415P06031C18 7530P06031C117 76100P06032C177,C14 77470P06033C10,C115,C176 78102P06033C193,C16,C121 79103P06032C257,C162 80104P06032C2,C255 81105P06032C256,C161 823n3H06031L24 8322nH06037L29,L30,L35,L25,L28,L27,L33 84100nH06036L37,L34,L36,L26,L32,L2 85220nH06037L3,L4,L7,L39,L38,L42,L43 861uH06031L44 872u2H06032L6,L8 883u3H06032L46,L45 890R08052R184,R186 9024P08051C29 91100nH08051L22 92220nH08051L21 931uH32251L1 94 24nH(RaoXian)08051L41 95 30nH(RaoXian)08051L40 961R0(RaoXian)25201L23 972R2(RaoXian)25201L31 980R3312064R93,R92,R91,R90 99154-40016081D25 1000u1FA1E16 1011uFA4E9,E4,E5,E17 10210uFA5E15,E18,E14,E13,E12 1032u2FA2E10,E7 1044u7FA5E11,E6,E19,E2,E3 10522uFB3E1,E8,E21 106100uFC1E20 107GEN06031D1 108RED06031D2 109TY(1SS314)08052D4,D29 110277(HSC277)06034D3,D10,D12,D11 111A(MA2S111)06033D23,D22,D26 112B9(HVC376)06038D13,D14,D16,D15,D20,D19,D18,D17 第 3 页,共 4 页 2010-3-17 NO. ModelSpecification AmountLocation BOM 113T1(1SV278)06031D21 114TV(1SV305)06033D5,D28,D8 11550K(KeTiao)3*32W1,W2 116 93(DTA143TE)SOT-5232Q29,Q30 117 14i(DTA114EE )SOT-5231Q25 118 16i(DTA144EE)SOT-5231 Q26 119 24i(DTC114EE)SOT-5235 Q1,Q2,Q3,Q5,Q4 12054i(DTA114YE)SOT-5233 Q9,Q21,Q24 121BS(2SC4617)SOT-3232 Q11,Q31 122 AEY(2SA1298)SOT-231 Q32 123 BV4(2SB624)SOT-232 Q14,Q10 124 R25(2SC3356)SOT-231 Q35 125 K52(2SK508)SOT-232 Q28,Q27 126 L15(2SC4181)SOT-3231 Q7 127N9(1SS372)SOT-3232 Q13,Q12 128 QY(2SC2714)SOT-3231 Q22 129 R24(2SC4226)SOT-3234 Q34,Q20,Q19,Q36 130PF(3A)12061F1 1312SK1830SOT-3231Q8 1322SK3476S34761Q33 1332SK3475SOP-891Q16 13478L05SOP-891Q23 135 RE(2SC3357)SOP-891Q17 136XR-M-VX1Q15 137 (YB-)3SK318M-VX1Q18 1382904SMD81U1 13924C08SMD81U9 140AUDIOSMD81U5 141LM386SMD81U6 142LM4558SMD82U2,U3 14331136SMD161U7 144LMX2332SMD201U8 145 TMP87P805B USMD441U4 14619.2MHz 5*3.251CR2 14732.768KHzCR1CR1 1483TФ1.5×0.4×3T2L14,L13 1494TФ1.5×0.4×4T8L9,L19,L12,L11,L10,L18,L16,L17 1507TФ1.5×0.4×7T1L20 151PCBS820A1S820B.PCB 第 4 页,共 4 页
Report No.: RZA2010-0551-1 TESTING No. L2264 TEST REPORT Product Name Two-way Radio Model S820, S830 FCC ID X9L-S820 Client Quanzhou Fengze Lianfa Electronic Factory TA Technology (Shanghai) Co., Ltd. GENERAL SUMMARY Product Name Two-way Radio Model S820, S830 FCC ID X9L-S820 Report No. RZA2010-0551-1 Client Quanzhou Fengze Lianfa Electronic Factory Manufacturer Quanzhou Fengze Lianfa Electronic Factory Reference Standard(s) IEEE Std C95.1, 1999:IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz IEEE Std 1528™-2003:IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques OET Bulletin 65 supplement C, published June 2001 including DA 02-1438, published June 2002: Additional Information for Evaluating Compliance of Mobile and Portable Devices with FCC Limits. Transition Period for the Phantom Requirements of Supplement C to OET Bulletin 65. Conclusion This portable wireless equipment has been measured in all cases requested by the relevant standards. Test results in Chapter 7 of this test report are below limits specified in the relevant standards. General Judgment: Pass (Stamp) Date of issue: April 23 rd , 2010 Comment The test result only responds to the measured sample. Approved by Yang Weizhong Revised by Ling Minbao Performed by Wang Lu TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 3of 65 TABLE OF CONTENT 1. General Information ..................................................................................................................... 4 1.1. Notes of the test report.........................................................................................................4 1.2. Testing laboratory .................................................................................................................4 1.3. Applicant Information ............................................................................................................5 1.4. Manufacturer Information ......................................................................................................5 1.5. Information of EUT................................................................................................................6 1.6. Test Date ..............................................................................................................................6 2. Operational Conditions during Test ..............................................................................................7 3. SAR Measurements System Configuration .................................................................................. 8 3.1. SAR Measurement Set-up ....................................................................................................8 3.2. DASY5 E-field Probe System ...............................................................................................9 3.2.1. ET3DV6 Probe Specification .........................................................................................9 3.2.2. E-field Probe Calibration ..............................................................................................10 3.3. Other Test Equipment .........................................................................................................10 3.3.1. Device Holder for Transmitters ....................................................................................10 3.3.2. Phantom...................................................................................................................... 11 3.4. Scanning procedure............................................................................................................ 11 3.5. Data Storage and Evaluation ..............................................................................................13 3.5.1. Data Storage................................................................................................................13 3.5.2. Data Evaluation by SEMCAD ......................................................................................13 3.6. System check......................................................................................................................16 3.7. Equivalent Tissues ..............................................................................................................17 4. Laboratory Environment............................................................................................................. 17 5. Charcteristics of the Test ............................................................................................................ 18 5.1. Applicable Limit Regulations ...............................................................................................18 5.2. Applicable Measurement Standards...................................................................................18 6. Conducted Output Power Measurement.................................................................................... 19 6.1. Conducted Power Results ..................................................................................................19 7. Test Results ............................................................................................................................... 20 7.1. Dielectric Performance........................................................................................................20 7.2. System Check Results ........................................................................................................20 7.3. Summary of Measurement Results.....................................................................................21 7.4. Conclusion ..........................................................................................................................22 8. Measurement Uncertainty .................…
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TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 42of 65 ANNEX D: Probe Calibration Certificate TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 43of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 44of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 45of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 46of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 47of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 48of 65
TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 49of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 50of 65 ANNEX E: D450V3 Dipole Calibration Certificate TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 51of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 52of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 53of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 54of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 55of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 56of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 57of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 58of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 59of 65 ANNEX F: DAE4 Calibration Certificate TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 60of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 61of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 62of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 63of 65 TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 64of 65 ANNEX G: The EUT Appearances and Test Configuration Picture 3: Constituents of the sample TA Technology (Shanghai) Co., Ltd. Test Report Report No. RZA2010-0551-1 Page 65of 65 Picture 4: Face-held, The EUT display towards phantom, the distance from EUT antenna to the bottom of the Phantom is 25mm Picture 5: Body-worn, The EUT display towards ground, Belt clip attach the Panntom 23mm 23mm
1 2 3 4 5 6 78 ABCD 8 7 6 5 4 3 2 1 D CBA Title Number Revision Size A3 Date: 18-Dec-2008 Sheet of File: C:\Do cumen ts and Sett in gs\si mpl es\ 桌面 \S82 0 方框图及电路图 \GDH16SCH1.DDB Drawn By: C868P D14 1SS314 D13 1SS314 +5 POW 54 C54101P C53103P L34T C98 4P C92 2P C64 103P C286P C10 1P R433K3 T1922NQ14R25 R3910 R38 10K C90 103P C88 5P R32560 C83 7P C78 5P C77 104P C73 102P C39 104P R9210K R5747K Q9 DTC114EE R36 47K R35 2K R3439K C38104P C37 103P R30 33K C35 102P R29 220K D5 HSC277 C34 103P R284K7 R27 47 Q8R25 T8 22N C33 102P C30 6P R251K R22 1K C29 103P R21680 R20 120K Q7 R25 T9 22N C26 5P C23 103P R18100 R17 150K C21 1P R14 0.33*4 C20 103P C19105P R11 150K F4 45.050M*2 T6 101T T20 2.2UH L14 4T L12 L11 4T R10 100K R8100 R6 330 R3220K R2 180 C17 5P C16102P C15 3P C14 1P C13 1P C12 2P C11 102P C9102P Q53SK228 Q4 3SK228 R19220K 1P R54560 R7 150K C792P C114 471P C119 3P 1P C118103P C115 103P ANT R86 10 R8447K R53100 R23330 C108 471P C106103P C97103P C71103P C52 103P C42 102P C3230P C31 102P C107104P C105 103P C103102P C101101P C96101P C95102P C9410P C93102P C89 8P C84 103P C75 1P C68 471P C59 104P C49103P C40 5P D4P1 D3P1 C73P C627P C315P C2 5P C1 5P T2 220N T7 22N L54T L4 4T L8 4T L94T L7 3T R41 47 R332K2 R1 150K Q13 QY Q10 RF Q3 2SK3475 Q2 2SK3476 Q1 DTC114EE R52 1M R62 150K R65 0 R68270 R701K R71 100N R742K2 R765.6 R8347K R85 47 R8747K Q15BV4 R241K C69 471P C70 1P L14T L23T C72 3P R67 150K C74 103P C113 3P T122N C25101P E64U7 C66101P R8847K T5 1UH T4 3N3 C18105P L19 8T C41103P T181UH C4 23P R9 0 O1 O2 R26150K 7.2V C5105P C22 103P C24104P C27 103P Vin 1 GND 2 Vout 3 78L05 D1 1SR145 E122U E210U Z14V R46270 D2 D8 D10 R49 1M R511M R561M C43 2P C45 3P C50104P C51 104P 54 D11MA2S111 D12 MA2S111 C55471P C56471P C57471P C58471P C60471P C61471P C63471P R63 0 R64330 C81102P VCC F13A C82 102P C85103P BUFFER-OUT 5M 5MC(11)APC(20) T5V T5V R5V NO:2007.02.10 V1.0 T5V IF-IN 1 23 4 65 7 8 +5 TXEN(8)RXEN(10) 3*1SV305 (1429) S820.SCH1 1 2 3 4 5 6 78 ABCD 8 7 6 5 4 3 2 1 D CBA Title Number Revision Size A3 Date: 18-Dec-2008 Sheet of File: C:\Do cumen ts and Sett in gs\si mpl es\ 桌面 \S82 0 方框图及电路图 \GDH16SCH2.DDB Drawn By: R8 0 C47 102P C37101P C36 101P C46 103P C45102P C44 102P E92U2 C53 273P C18 101P C55 102P VR2 20K R103 47K R102 20K C54 104P R101180 R53 2K 1 2 3 45 6 7 8 U2 LM386 C10 103P R40 150K R38 100K R3120K R304K7 R2447K C9 273P R9 4K7 R7 68K E4 4.7U R120K +5 Q4 BV4 R4882K R4415K +5 E1 10U E1010U C22 103P R34100 R6610K C32 104P C31471P R65 1K E7 SP25 E6 MIC35 PTT MONI R58 6*47K R571K VCC 1 VP 2 DO 3 GND 4 FIN 5 CLK 11 GND 7 OSCI 8 GND 9 LD 10 GND 14 LE 13 DATA 12 FIN2 6 VP1 19 VCC1 20 U3 LMX2332 E31U E21U R474K7 R42220K R3282K R28100 R26 100K R25 220K R221K R20 0 R2 10 C27 473P C25104P C24104P C20101P C16 221P C124…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 4 | 9 | 450 MHz - 470 MHz | 5 W | 16K0F3E | 1.249 ppm |

TWO-WAY RADIO; BRAND: SFE; MODEL: S850, S860
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face