
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Instruction Manual FM Portable Radio Thank you for purchasing a COVALUE two-way radio. This simple to use radio adopts the latest advances in technology, providing reliable communication in today’s demanding communication environment. Notice to the User: · Please read this instruction manual before operating this radio. · It’s prohibited to use the radio or charge it at any area with a potentially explosive atmosphere (where the air contains gas, dust and smog, etc.), as well as while taking on fuel, or while parking at a gasoline service station; or any area where radio communication is prohibited (such as a hospital or a airport.) · It’s prohibited to operate the radio without permission in areas where the government laws prohibit radio communication. · Please don't expose the radio to direct sunlight for a long time; don't place the radio near any heating devices, either. · Please don't put the radio in extremely dusty, moist humid areas or unstable surfaces. · Only qualified personal, with proper tools and instruments are allowed to service and repair the radios, do not disassemble the radio by yourself to avoid damages. FCC Warning: 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. Any Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. IC Warning : This device complies with Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference,including interference that may cause undesired operation of the device. Under Industry Canada regulations, this radio transmitter may only CU500-2 CU510-2 operate using an antenna of a type and maximum (or lesser) gain approved for the transmitter by Industry Canada. To reduce potential radio interference to other users, the antenna type and its gain should be so chosen that , the equivalent isotropically radiated power (e.i.r.p.) is not more than that necessary for successful communication. This equipment can be used in member states of the European Union once the corresponding administrative licence is obtained. DECLARATION OF CONFORMITY SHENZHEN COVALUE COMMUNICATIONS CO.,LTD. as manufacturer of the product two way radio, declares that the said product complies with the essential requirements established in article 3 of the Council of Europe Directive 1999/5/CE, dated 9th March, 1999. SHENZHEN COVALUE COMMUNICATIONS CO., LTD. RF ENERGY EXPOSURE AWARENESS AND CONTROL INFORMATION, AND OPERATIONAL INSTRUCTIONS FOR FCC OCCUPATIONAL USE REQUIREMENTS BEFORE USING YOUR PORTABLE 2-WAY RADIO, READ THIS IMPORTANT RF ENERGY AWARENESS AND CONTROL INFORMATION AND OPERATIONAL INSTRUCTIONS TO ENSURE COMPLIANCE WITH THE FCC’S RF EXPOSURE GUIDELINES NOTICE: This radio is intended for use in occupational/controlled conditions, where users have full knowledge of their exposure and can exercise control over their exposure to meet FCC limits. This radio device is NOT authorized for general population, consumer, or any other use. This 2-way radio uses electromagnetic energy in the radio frequency (RF) spectrum to provide communications between two or more users over a distance. It uses radio frequency (RF) energy or radio waves to send and receive calls. RF energy is one form of electromagnetic energy. Other forms include, but are not limited to, electric power, sunlight and x-rays. RF energy, however, should not be confused with these other forms of electromagnetic energy, which when used improperly can cause biological damage. Very high levels of x-rays, for example, can damage tissues and genetic material. Experts in science, engineering, medicine, health and industry work with organizations to develop standards for exposure to RF energy. These standards provide recommended levels of RF exposure for both workers and the general public. These recommended RF exposure levels include substantial margins of protection. All 2-way radios marketed in North America are designed, manufactured and tested to ensure they meet government established RF exposure levels. In addition, manufacturers also recommend specific operating instructions to users of 2-way radios. These instructions are important because they inform users about RF energy exposure and provide simple procedures on how to control it. Please refer to the following websites for more information on what RF energy exposure is and how to control your exposure to assure compliance with established RF exposure limits. http://www.fcc.gov/oet/rfsafety/rf-faqs.html http://www.osha.gov/SLTC/radiofrequencyradiation/index.html Federal Communications Commission Regulations The FCC rules require manufacturers to comply with the FCC RF energy exposure limits for portable 2-way radios before they can be marketed in the U.S. When 2-way radios are used as a consequence of employment, the FCC requires users to be fully aware of and able to control their exposure to meet occupational requirements. Exposure awareness can be facilitated by the use of a product label directing users to specific user awareness information. COVALUE 2-way radio has time, or less, is important because this radio generates measurable RF energy exposure only a RF exposure product label. Also, COVALUE’s user manual, or product manual, or separate safety booklet includes information and operating instructions required to control your RF exposure and to satisfy compliance requirements. Compliance with RF Exposure Standards COVALUE’s 2-way radio complies with the following RF energy exposure standards and guidelines: • United States Federal Communications Commission, Code of Federal Regulations; 47 CFR §§ 1.1307, 1.131…
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1 2 3 4 5 6 78 ABCD 8 7 6 5 4 3 2 1 D CBA ANT LPF Q107RD07 D101 HVU131 RF AMP ANT SW Q105 2SK3475 RF AMP Q102 2SC4988 RF AMP Q1012SC5066 RF AMP D100,D200MA2S077 T/RSW Q100 2SC5066 RF AMP Q6 2SC5066 BUFF AMP Q22SC5066 RF AMP Q4 2SK508 T/R VCO D1,Q5 MA2S077,DTC114EE T/R SW Q8 2SC4617 RIPPL FILTER LoopFilter LPF 12.8MHz LPF IC1MB15E03SL 5C T/R QTTCXO QTVCO 5C Q106DTC144EE DC SW DET Q108 DTC144EE DCSW APCSW DCSW CURRENT IC100 NJM2904V B APC PLL_DATPLL_CLKPLL_LE Q2033SK318 D202 RF AMP BFP D203D206 BFP Q202 3SK318 1st MIXER XF201 38.85MHz MCF Q201 2SC5066 IF AMP CF200 450G CF Q1 2SC5108 X4 CD200 450KHz 5R 5R Q303 DTA144EE RX_W/N SW Q3072SK1588 Q401 DTC114EE MUTE DC SW SW IC302TDA2822D AF D401 GREEN AMP LED Q306DTC144EE DCSW Q304DTC144EEDCSW Q305 2SA1362 DCSW Batt Det PROTECT Q400 DTC114EE DC SW D400 RED LED IC401 FLASH X4009.8304MHz Q407 DTC144EE SW + - D204 APC CF201 EN4 BATT BATT PWR SW / VOL SP MIC EXT SW SB SB AFCO CH SW IC200TA31136 RSSIBUSY 5R 5R 5R 5C 5C 5T 5T APC PTTSW1SW2ALARM SB SB LEDTX LEDRX IC403 MICROPROCESSOR BSHIFT XOUT XIN 3M RESETVOX RXD BUSYBATT RSSI EN1 CTC IN EN2 EN1 EN3 EN2EN3 GND EN4PTTSW1SW2ALARM 5TC5RCTXDAFCOAPCSWSAVE APC QTVCOQTTCXOMICMUTEBEEPTX-W/NRX-W/N PLL-DATPLL-CLKPLL-STBLEDTXLEDRX Q502 2SC4617 LPF IC500BNJM2900V LIMTER IC500ANJM2900V AMP 5M 5T 5T Q501 2SC4617 LPF 5T SB IC300B IC300A CTCSS/CDS LPF AMP IC300C HPF IC300D HPF NJM2902V 5R 5R 5R 5R IC301B LPF IC301ANJM2904V LPF 5R 5R 400-470MHz Q406AFMMT717 Q408DTA123JE Q406BFMMT717 5T 5RC SAVE IC902XC6201P502MRIC404XC6201P302PR 3M SB 5TC 5C5R 5M VER 1.0 TitleSize A3 Number Revision Date:File: Sheet ofDrawn By: D906 D201 CU500-2/CU510-2 BLOCK DIAGRAM
Attachment : Picture 1 :CU500‐2 Picture 1 :CU510‐2
EXHIBIT B - EUT EXTERNAL PHOTOGRAPHS EUT – All View EUT – Front View Antenna EUT – Rear View EUT – Top View 1 EUT – Top View 2 EUT – Bottom View EUT – Left Side View EUT – Right Side View EUT – Antenna View EUT – Antenna Port View EUT – Adapter View EUT – Adapter Label View
EXHIBIT A - ID LABELING AND LOCATION ID Label Label Location The label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time purchase (Labeling requirements per 2.925) Lable here
EXHIBIT C - EUT INTERNAL PHOTOGRAPHS EUT – Battery off View EUT – Cover off View 1 EUT – Cover off View 2 EUT – Main Board Top View EUT – Main Board Bottom View EUT – Key Board Top View EUT – Key Board Bottom View
Circuit Description 1 Frequency configuration The reference frequency of frequency synthesizer is provided by 12.8MHz crystal oscillator X1 TCXO. The receiver adopts quadric mixing mode. The first IF is 38.85MHz, and the second IF is 450kHz. The first local oscillation signal of the receiver is produced by frequency synthesizer and the second local oscillation signal selects the 3 rd harmonics of 12.8MHz of crystal oscillator X1 TCXO. The signal of transmitter is produced by frequency synthesizer directly. Figure 1 Frequency configuration 2 Receiver(Rx) The receiver is double conversion superheterodyne, designed to operate in the frequency range of 400 to 470MHz,The frequency configuration in Fig 2 Figure 2 Receiver section configuration Front End of Receiver Signals from the antenna are filtered by BPF which consists of C235 C236 C233 C604 C252 C951 C234 C255 C260 L211 L209 L208 D201 D202 and D204 via RX/TX switch (D101 D102 and D103). After being filtered out the useless out-of-band signals, the signals are amplified by LNA consisting of Q203 and external components. Signals from LNA are filtered again by BPF which consists of C228 C226 C238 C229 C227 C239 C947 C259 C948 L214 L204 L203 D905 D206 and D206 before entering the 1st mixer (Q202). The PWM wave is output by MCU composed of 58 foot and then commutated to adjustable voltage after filtering to change the capacity of varactor diode D905 D203 D206 D201 D202 and D204 to control the center frequency of BPF. 1 st mixer The first IF (51.65MHz) signal is produced after mixing of the receiving signal from LNA and the 1 st local oscillation signal from frequency synthesizer. The first IF signal is filtered out adjacent channel and other useless signals by crystal filter (XF201). IF Circuit The 1 st IF signal from crystal filter is amplified by the first IF amplifier (Q201) before processing of IC in IF( IC200,GT3136). IF IC consists of the 2 nd mixer, 2 nd local oscillation, IF amplifier, limiter, frequency discriminator and noise amplifier. Frequency (12.8MHz) produced by TCXO(X1) is amplified and then selects 3 rd harmonics (38.4MHZ) as the second local oscillator signal source. The second IF signals (450kHz) are generated after signals mixing of the second local oscillation (38.4MHz) and the first IF (38.85MHz) in IC200. Audio signals are demodulated and outputted by IC200 after the second IF signals are amplified and limited in IC200 and then filtered by ceramic filter(450kHz). Figure 3 Schematic Diagram for IF System Receiving Audio Signal Processing: The audio processing circuit of receiver consists of IC300 and the peripheral circuit. Voice signals from IC200 are sent to IC301(CTCSS signaling filter circuit)and IC300-D respectively after amplified in IC300-C. After that, the signals are removed of the HF and LF components after amplification, de-emphasis and filtering by other units of IC300, and only audit components from 300 to 3000Hz can be sent to audio power amplifier (IC302) after amplified in Q300 and adjusted by volume potentiometers. Figure 4 Schematic Diagram for Audio Processing of Receiver Squelch Circuit Part of the AF signal from the IC200 enters the FM IC again,and the noise component is amplified and rectified by a filter and an amplifier to produce a DC voltage corresponding to the noise level. The DC signal from the FM IC goes to the analog port of the microprocessor(IC403).IC403 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,IC403 sends a high signal to the MUTE and AFCO lines and turns IC302 on through Q302 Q304 and Q305. Audio Power Amplification The audio power amplifying circuit consists of IC302 and the peripheral components. The signals are amplified by audio power amplifier to drive the speaker after collecting the receiving audio signals, voice signals and warning tone signals. The warning tone has no volume limitation. When AFCO is high level, Q304 is on, IC302 begins to work and the speaker sounds. Speaker Impedance: 16ohm CTCSS Signal filtering The audio signals after demodulation in IC200 may contain CTCSS (continuous tone control squelch system) or DCS(digital squelch)signals. The spectrum component of CTCSS/DCS is 67 to 250Hz. The filtering circuit composed of IC301 can filter out signals except CTCSS/DCS spectrum, which makes MCU decode the CTCSS/DCS more accurately. 3 Transmitter (Tx) Transmitter Power Amplifier Figure 5 Schematic Diagram for Power Amplifier and Antenna Switch The modulated RF signals from VCO are amplified by Q101, Q102 and Q105 before the power amplification in Q107. Gate bias of Q105 and Q107 is controlled by APC circuit, so the output power of transmitter can be controlled conveniently by changing the gate bias voltage. APC(Automatic Power Control) Figure 6 Schematic Diagram for APC Circuit R130 R131 and R132 are power amplification current detector, IC100A is power amplification current sampling amplifier and IC00B is power comparison amplifier. The power amplification current and IC100A output will increase with oversized output power of transmitter. When the output voltage of IC100B decreases, the bias voltage of Q105 and Q107 will decrease, finally the output power of transmitter will decrease or vice versa. Thus, the output power of transmitter will keep stable under any different working condition. MCU can set the power by changing the voltage input to IC100B. Audio Signal Processing of Transmitter Figure 7 Schematic Diagram for Audit Circuit of Receiver The audio signal processing circuit of Transmitter consists of IC500 and the peripheral ) adopts PLL frequency synthesizer. The CU500-2(CU510-2 components. Voice signals from MIC are sent to VCO for modulation together with CTCSS/DCS after amplification, limitation and filtering. AGC circuit consists of D500, D501 and Q503. The signal amplitude is reduced to ensure no distortion in case of oversized MI…
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ADJUSTMENT 1 Required Test Equipment Table 7.1 Number Name Parameter requirements 1 Computer Above P2, compatible IBM PC, WINDOWS 98/ME/2000/XPOperating System 2 Programming software CU500 Programming software 3 Programming cable Special Serial/USB (CPL-01) programming cable 4 Dubbing cable CPL-02 5 DC regulator Output voltage:7.5V, output electric current:≥ 5A 6 RF power meter Test range: 0.5---10W Frequency range: 100MHz—500MHz Resistance: 50Ω SWR≤1.2 7 Frequency meter Frequency range: 0.1—600MHz Frequency accuracy: higher than±1×10 -6 Sensitivity: higher than 100mV 8 Frequency deviator Frequency range: DC—600MHz Test range: 0--±5kHz 9 DMM Input resistance: above 10MΩ/V DC, capable of measuring voltage, electric current and resistance. 10 Audio signal generator Frequency range:2---3000Hz Output level: 1---500mV 11 RF power attenuator Decrement: 40db or 50db Receive power : higher than10W 12 Standard signal source Frequency range:10MHz---1000MHz Output level:0.1uV~32mV (-127dBm~-17dBm) 13 Oscilloscope Frequency range: DC~20MHz Test range: 10mV~20V 14 Audio Frequency voltmeter Test range: 10mV~10V Recommend how to use: item 6, 7, 8, 10, 11 and 12 which listed in the table can be substituted by integrated tester HP8920/HP8921. Figure 1 External Speaker/microphone Interface Definition 2 Adjustment Items Some detection and adjustment shall be made to the station technical data after changing the components during the maintenance. The debugging introduction of some related circuits goes as follows: Some parameters of the product can be adjusted by use of CU500 Programming Software of our company. The adjustable parameters are as follows: (1) Frequency stability (2) RF transmitting high power (3) RF transmitting Middle power (4) RF transmitting Low power (5) Maximum TX voice deviation (6) VOX1(Tight) (7) VOX10 (8) 2/5 tone deviation (9) DTMF deviation (10) MSK deviation (11) DCS/LTR balance (12) DCS deviation (13) LSD deviation (14) CTCSS(67.0Hz) deviation (15) CTCSS(254.1Hz) deviation (16) Battery warning level (17) RX Sensitivity (18) DCS RX middle level (19) RX squelch 9 open level (20) RX squelch 9 close level (21 ) RX squelch 1 open level (22) RX squelch 1 close level (23) RSSI(-120dBm) (24) RSSI(-70dBm) 0.4-0.6W in the computer 2.0-2.5W in the computer 4.0-5.0W in the computer CU510-2 CU500-2 Steps for adjustment: 1) Enter Computer Test Mode by selecting “Test Mode” in main menu of CU500 Programming Software. 2) Select the items to be adjusted in choice menus, and then adjust the parameters by function keys on the computer keyboard. 3) Exit Computer Test Mode after adjustment. 3 Adjustment 3.1 VCO Adjustment Close “Power-saving Mode”. Set receiving frequency to low frequency point (see Table 7.2) and in the receiving state, test voltage of PD by DMM and adjust fine-tuning capacitor TC1/TC2 to get CV voltage of 1.0V±0.2V Set transmitting frequency to high frequency point (refer to Table 2), press PTT and test voltage of PD by DMM, which shall less than 4.0V Table 2 High/ Intermediate/ Low Frequency Point of All Models Low Frequency Point Intermediate Frequency Point High Frequency Point 400.100 MHz 435.100 MHz 469.975 MHz 3.2 Frequency stability Double-click to enter “Frequency Stability” in “Test Mode Manual” to achieve the rated transmitting frequency by adjusting the number from 0 to 255 (Error<100Hz). 3.3 RF transmitting power High power Adjusts the transmitting power to (5 frequency points including Highest, High, Med, Low, lowest) Middle Power Adjust the transmitting power to Low Power Adjust the transmitting power to 3.4 Voice deviation Maximum voice deviation Signal source: MOD:1kHz/120mV LPF:15kHz Adjust the max frequency deviation in the computer adjustment mode. mode. 3.9kHz---4.5kHz (wideband) 3.2kHz---3.9kHz (median band) between 1.8kHz---2.3kHz (narrowband) (2/5)TONE, DTMF, MSK Deviation Adjust TONE, DTMF, MSK deviation in the computer adjustment mode. 3.2---4.0 kHz (wideband) 3.0kHz---3.6kHz (median band) 1.8---2.3kHz (narrowband) VOX1, VOX10 Adjust VOX1, VOX10 microphone sensitivity in the computer adjustment mode. VOX1 for 50mv and VOX10 for 5 mv 3.5 CTCSS/DCS deviation DCS/LTR balance Signal source: LPF: 300Hz Adjust DCS/LTR balance in the computer adjustment mode. Make the transmitting demodulation waveform be flat square wave. DCS deviation Signal source: LPF: 300Hz Adjust DCS frequency deviation in the computer adjustment mode. 0.50kHz---0.85kHz (wideband) 0.50kHz ---0.65kHz (medium band) 0.25kHz--0.45kHz (narrowband) The waveform shall be good. LSD deviation Reserved for the future. CTCSS(67.0, 254.1Hz) deviation Signal source: LPF:300Hz Adjust CTCSS deviation in the computer adjustment mode. 0.50kHz---0.85kHz (wideband) 0.50kHz ---0.65kHz (medium band) 0.25kHz--0.45kHz (narrowband) 7.4V +/-0.1V in room temperature The waveform shall be good. 3.6 Battery warning level Adjust the battery warning level in the computer adjustment mode. Set the power supply voltage at 6.8V, and press start and then end. 3.7 Receive sensitivity Adjust the sensitivity in the computer adjustment mode. Make the sensitivity of all frequency points the highest (provided the sensitivity is the highest, the better data) 3.8 Squelch adjustment Adjust squelch in the computer adjustment mode. Squelch 9 open The signal level output is set to -118dBm (wideband) or -117dBm (narrowband) Automatically records the corresponding squelch level. Squelch 9 close The signal level output is set to -120dBm(wideband) or -119dBm (narrowband) Automatically records the corresponding squelch level. Squelch 1 open The signal level output is set to -124dBm (wideband) or -123dBm (narrowband) Automatically records the corresponding squelch level Squelch 1 close The signal level output is set to -126dBm (wideband) or -125dBm (narrowband) Automatically records the corresponding squelch level 3.9 RSSI adjustment RSSI(-120dBm), RSSI(-70dBm) The signal level output is set to -120dBm or -70dBm. Automatically records the corr…
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Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. This report must not be used by the customer to claim product certification, approval, or endorsement by NVLAP or any agency of the Federal Government. * This report may contain data that are not covered by the NVLAP accreditation and shall be marked with an asterisk “★” SAR EVALUATION REPORT For SHENZHEN COVALUE COMMUNICATIONS CO., LTD. 2/F., Bldg. 24, XiLi Industrial Park, No.119 Xinguang Rd, Xili, Nanshan, Shenzhen, Guangdong, China FCC ID: Y4GCU500-2 Report Type: Original Report Product Type: Two way radio Test Engineer: Sandy Wang Report Number: R1DG120910001-20A Report Date: 2012-11-08 Reviewed By: Alvin Huang RF Leader Test Laboratory: Bay Area Compliance Laboratories Corp. (Shenzhen) 6/F, the 3rd Phase of WanLi Industrial Building, ShiHua Road, FuTian Free Trade Zone Shenzhen, Guangdong, China Tel: +86-755-33320018 Fax: +86-755-33320008 www.baclcorp.com.cn Bay Area Compliance Laboratories Corp.(Shenzhen) Report No: R1DG120910001-20A SAR Evaluation Report 2 of 60 Attestation of Test Results Company Name SHENZHEN COVALUE COMMUNICATIONS CO.,LTD. EUT Description Two way radio FCC ID Y4GCU500-2 Model Number CU500-2, CU510-2 EUT Information Test Date 2012-11-03 Frequency(MHz) Max. SAR Level(s) Measured Limit(W/Kg) 400-470 2.401 W/kg 1g Head Tissue(50% duty cycle) 3.442 W/kg 1g Body Tissue(50% duty cycle) 8 ANSI / IEEE C95.1 : 2005 IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fileds,3 kHz to 300 GHz. ANSI / IEEE C95.3 : 2002 IEEE Recommended Practice for Measurements and Computations of Radio Frequency Electromagnetic Fields With Respect to Human Exposure to SuchFields,100 kHz—300 GHz. OET BULLETIN 65 SUPPLEMENT C Evaluating Compliance with FCC Guidelines for Human Exposure To Radiofrequency Electromagnetic Fields Applicable Standards IEEE1528:2003 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques Note: This wireless device has been shown to be capable of compliance for localized specific absorption rate (SAR) for General Population/Uncontrolled Exposure limits specified in ANSI/IEEE Standards and has been tested in accordance with the measurement procedures specified in FCC OET 65 Supplement C and IEEE 1528-2003. The results and statements contained in this report pertain only to the device(s) evaluated. Bay Area Compliance Laboratories Corp.(Shenzhen) Report No: R1DG120910001-20A SAR Evaluation Report 3 of 60 TABLE OF CONTENTS DOCUMENT REVISION HISTORY ............................................................................................................................ 4 EUT DESCRIPTION........................................................................................................................................................ 5 TECHNICAL SPECIFICATION............................................................................................................................................. 5 REFERENCE, STANDARDS, AND GUILDELINES ................................................................................................. 6 SAR LIMITS..................................................................................................................................................................... 7 FACILITIES AND ACCREDITATION ........................................................................................................................ 8 DESCRIPTION OF TEST SYSTEM ............................................................................................................................. 9 EQUIPMENT LIST AND CALIBRATION ................................................................................................................16 EQUIPMENTS LIST & CALIBRATION INFORMATION......................................................................................................16 SAR MEASUREMENT SYSTEM VERIFICATION ................................................................................................17 LIQUID VERIFICATION...................................................................................................................................................17 SYSTEM ACCURACY VERIFICATION..............................................................................................................................19 SAR SYSTEM VALIDATION DATA........................................................................................................................20 EUT TEST STRATEGY AND METHODOLOGY....................................................................................................24 TEST POSITIONS FOR DEVICE OPERATING NEXT TO A PERSON’S EAR.........................................................................24 CHEEK/TOUCH POSITION..............................................................................................................................................25 EAR/TILT POSITION.......................................................................................................................................................25 TEST POSITIONS FOR BODY-WORN AND OTHER CONFIGURATIONS................................................................................26 SAR EVALUATION PROCEDURE....................................................................................................................................27 CONDUCTED OUTPUT POWER MEASUREMENT .............................................................................................28 PROVISION APPLICABLE................................................................................................................................................28 TEST PROCEDURE....…
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CU500-2 CU510-2 ABCDE EDCBA 123 54 NCSUBGND VCC OUT IC400 PST9124NR R401100k R400 330k C4000.1u C403470p R1 2.2k PLL-CLK PLL-UL PLL-EN PLL-DAT C2100p C3100p C6100p R21k D7 MA2S111 C10.1u R102270R C40.1u C510u R310R C7470p R6100k C910p C1410p PLL-DAT PLL-ENPLL-CLKPLL-UL R416 4.7k C27470p C2310u R1182kR12 C25 470p L618n C292p C407 1000p C414470p C4131u L400 0R C410470p C40810u C416470p C4171u R411220kR4071k R408100k Q403DTC144EE R4091k C4093p Q400 DTC114EE Q401DTC114EE R402220R R403100R C406470p R426 8.2k C402470p R4108.2k D400 LT8A13-54-UR93-75 D401 LT8A23-54-75 R41710R C415 10p R41210R C41210p L403601s C411470p L402601s R5560R C12 0.1u R70R R101k R91k C151u C180.1u R130R R1510k R40R C1047p R8330k Q1 2SC5066 L4470n C17330p C190.01u L16220n C16 L17 220n L5560n C26330p C5168p C28 22p C200.01u R14100R L7601s R20560R Q2 2SC5066 R19100R R18270k C24470p C543p R21100k L9100n D4 1SV325 D51SV278 D21SV325 C31100p L1422n C3533p L11100n C3610pTC110p C400.5p C411p C300.1u L10601s R2247k C370.01u C391000pC384.5p C431000p R26100R C46470p C490.5p R34 R30120k C48470p L19601s Q6 2SC5066 L2122n R31100R R324.7k D6MA2S111 C52470p C55 470p C5610u Q8 2SC4617(S) R50022k R50110k R513 33k C500 3300p C5016800p Q404 UMG3N Q407UMG3N R4222.7k R4282.7k R4201k R429 820R R43210k R4253.3k R424 3.3k C427470p C423 0.033u R43510k R4190R C4210.01u C4301u C4241u R50210k R415220k R4331k R414220k R4271k R423220k R418 2.2k R4341k R421220k C4180.01u C4291u C4220.01u C4200.01u C502 3900p C4250.01u C3160.01u C3020.1u C312 0.01u C320 0.033u C3210.033u C3050.01u C5030.033u C3096800p R541100k R340120k R315 390k R31212k R314 470k R3033.3k R30091k R32122k R322220k SP MIC500 R3110R R3041MR33847k R3015.6k R307 47k R3025.6k R306 180k R3293.3k R3245.6k R3265.6k C3131u C3008200p C318 0.033u C319 0.047u C3085600p R316270kR31339k R30518k R323 100k R318 100k R325 100k R207 R205 3.9k R320 47k C338 56p C20856p C3141000p C206220p C205 220p C202 10p C2140.01u C2070.1u C2110.1u C21233p C2100.1u R202180k R2013.9k R206750k R208680k R210100R R211100R R2092.7k R2262.2k R215 220R R2221k Q2012SC5066 C2210.01u C223 C2090.1u C215 5p Q202 3SK318 C2198p C218470p C22710p C2398p C2381p C2261p C2200.01u R21656k Q2033SK318 C25968p C231470p C228470p C22910p R21822R R2311M R327 10k R232 R2301M D201 HVC350B C253470p C252 100p C25524p C236470p C260 C254470p D204 D202HVC350B L2084T L211 C2333p C2346p C2359p Q307 ST2302 C3300.01u C335 0.1u C9310.47u R335 R33410R R332 4.7R Q306 DTC144EE Q304DTC144EE C3360.01u C3340.01u C9321000p R336 R333 470k R3311.5k R339 8.2k Q109 DTA144EE R145 180k R14147k R1421M R146100k R137150k R138150k R135150k R133150k R14010k R136 150k C134 100p C132470p C141470p C139470p R134150k R147 0R R1442.2k Q100 2SC5066 C101 470p L10022n C1056p C103470p R10410R C102470p C1040.1u D200 MA2S077 D100 MA2S077 R1063.3k R107 47k R10922R R108 330R L10118n C106470p C1087p C107 470p Q101 2SC5066 Q102 2SC4988 R110680R R11122R R113 330R R1121.5k C11118p C109470p C110470p L10215n L103601s C114470p C1130.1u C1161000p R12147R R120 0R R11847k R115 10R L1198.2n L1041uH Q105 RD01 L105221s C120470p C121470p C1231000p C118 27p C119 1000p L109220n R12547k R12647k R127 0R R12847R Q107RFM04U6P C1351p C125470p L107600s C1280.01u C1310.1u C1261u C129470p C140 6p C13827p C148 C13020p D102 MA2S077 D101 HVU131 C142 2p C14527p C150 5p C147 2p C149 1.5p C151 1.5p C154 1p C153 3p C155 2p C143470p C1442p D103 MA2S077 R139270R R154270R R1320.39R R1300.39R R1310.39R C1560.1u C157470p L20222n C2226p C241 R505750k R50422k R507150k R503 10k R54382k R50622k R50833k TH501 C5051u C5080.01u R51110k R5103.3k Q502…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 9 | 406.1 MHz - 470 MHz | 4.634 W | 10K2F3E | 0.05 ppm |

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Two Way Radio
Equipment Class
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