
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
UltraTech EXHIBIT N USERS MANUAL Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 1-1-32 Kamiminami, Hirano-ku, Osaka 547-0003 Japan A-6017D-1USPrinted in Japan© 2000 Icom Inc.Count on us! IC-F3/F4GS series INSTRUCTION MANUAL UHF TRANSCEIVER iF4GT/GS This device complies with Part 15 of the FCC rules. Oper-ation is subject to the following two conditions: (1) This de-vice may not cause harmful interference, and (2) thisdevice must accept any interference received, including in-terference that may cause undesired operation. 2 3 4 5 6 789 0 1 P 0 P 1 P 2 P 3 VHF TRANSCEIVER iF3GT/GS ii i this radio by the manufacturer or an antenna specifically authorizedby the manufacturer for use with this radio. • DO NOT transmit for more than 50% of total radio use time ( “ 50% duty cycle”). Transmitting more than 50% of the time can causeFCC RF exposure compliance requirements to be exceeded. Theradio is transmitting when the “TX indicator” lights red. You cancause the radio to transmit by pressing the “PTT” switch. • ALWAYS use Icom authorized accessories (antennas, batteries, belt clips, speaker/mics, etc). Use of unauthorized accessories cancause the FCC RF exposure compliance requirements to be ex-ceeded. • ALWAYS keep the antenna at least 1 cm (0.4 inches) away from the body when transmitting and only use the Icom belt-clips whichlisted in p. 26 when attaching the radio to your belt, etc., to ensureFCC RF exposure compliance requirements are not exceeded. Toprovide the recipients of your transmission the best sound quality,hold the antenna at least 5 cm (2 inches) from mouth, and slightlyoff to one side. The information listed above provides the user with the informationneeded to make him or her aware of RF exposure, and what to do toassure that this radio operates within the FCC RF exposure limits of thisradio.Electromagnetic Interference/CompatibilityDuring transmissions, your Icom radio generates RF energy thatcan possibly cause interference with other devices or systems. Toavoid such interference, turn off the radio in areas where signs areposted to do so. DO NOT operate the transmitter in areas that are sensitive to electromagnetic radiation such as hospitals, aircraft,and blasting sites. Your Icom radio generates RF electromagneticenergy during transmit mode. This radio is de-signed for and classified as “Occupational UseOnly”, meaning it must be used only during thecourse of employment by individuals aware of thehazards, and the ways to minimize such hazards. This radio is NOT intended for use by the “General Popula-tion” in an uncontrolled environment.This radio has been tested and complies with the FCC RF expo-sure limits for “Occupational Use Only.” In addition, your Icom radiocomplies with the following Standards and Guidelines with regard toRF energy and electromagnetic energy levels and evaluation ofsuch levels for exposure to humans: • FCC OET Bulletin 65 Edition 97-01 Supplement C, Evaluating Compliance with FCC Guidelines for Human Exposure to RadioFrequency Electromagnetic Fields. • American National Standards Institute (C95.1 – 1992), IEEE Stan- dard for Safety Levels with Respect to Human Exposure to RadioFrequency Electromagnetic Fields, 3 kHz to 300 GHz. • American National Standards Institute (C95.3 – 1992), IEEE Rec- ommended Practice for the Measurement of Potentially HazardousElectromagnetic Fields – RF and Microwave. To ensure that your exposure to RF electromag-netic energy is within the FCC allowable limits foroccupational use, always adhere to the followingguidelines: • DO NOT operate the radio without a proper antenna attached, as this may damage the radio and may also cause you to exceed FCCRF exposure limits. A proper antenna is the antenna supplied with WARNING CAUTION SAFETY TRAINING INFORMATION iv iii FOREWORDThank you for purchasing the IC-F4GT/GS FM transceiver. READ ALL INSTRUCTIONS carefully and completely before using the transceiver.SAVE THIS INSTRUCTION MANUAL – This instruction manual contains important operating instructions for the transceiver. IMPORTANTR CAUTION! NEVER hold the transceiver so that the antenna is very close to, or touching exposed parts of the body, especially theface or eyes, while transmitting. The transceiver will perform best ifthe microphone is 2 to 4 in. (5 to 10 cm) away from the lips and thetransceiver is vertical.R CAUTION! NEVER operate the transceiver with a headset or other audio accessories at high volume levels. R CAUTION! NEVER short the terminals of the battery pack. DO NOT push the PTT when not actually desiring to transmit. AVOID using or placing the transceiver in direct sunlight or in areas with temperatures below +14°F (–10°C) or above +122°F (+50°C).DO NOT modify the transceiver for any reason. KEEP the transceiver from the heavy rain, and Never immerse it in the water. The transceiver construction is water resistant , not water proof.The use of non-Icom battery packs/chargers may impair transceiverperformance and invalidate the warranty. FCC caution: Changes or modifications to this transceiver, not expressly approved by Icom Inc., could void your authority to op-erate this transceiver under FCC regulations. TABLE OF CONTENTSSAFETY TRAINING INFORMATION . . . . . . . . . . . . . . . . . . . . . . .i-iiFOREWORD . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .iiiIMPORTANT . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .iiiTABLE OF CONTENTS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .iv1 PANEL DESCRIPTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .1 – 3 ‘ Switches, controls, keys and connectors . . . . . . . . . . . . . . .1–2 ‘ Function display . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3 2 ACCESSORIES . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .43 BATTERY PACKS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . …
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UltraTech EXHIBIT A COVER LETTERS Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 January 22, 2001 FEDERAL COMMUNICATIONS COMMISSION 7435 Oakland Mills Road Columbia, MD 21046 USA Subject: Type Acceptance Application under FCC CFR 47, Parts 2 and 90 (Subpart I) - Radio Services Transmitters Operating in the frequency band 490- 512 MHz (12.5 kHz Channel Spacing). Applicant: Icom Incorporated Product: UHF Transceiver Model: IC-F4GT-4 or IC-F4GS-4 FCC ID: AFJIC-F4G-4 Dear Sir/Madam, As appointed agent for Icom Incorporated, we would like to submit the application to Federal Communications Commission for certification of the above product. Please review all necessary files uploaded to FCC OET site. Please note that there are two models for the product specified above. The radios are identical in the two models; the difference in the model is the keypad feature (IC-F4GS-4 does not have a keypad and IC-F4GT-4 have a keypad). If you have any queries, please do not hesitate to contact us by our TOLL FREE numbers: OUR TELEPHONE NO.: 1-877-765-4173 Yours truly, Tri Minh Luu, P. Eng., V.P., Engineering TML/DH Encl. 2 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 Telephone (905) 829-1570 Facsimile (905) 829-8050 UltraTech Group of Labs
UltraTech EXHIBIT F EXTERNAL EUT PHOTOS Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 EXHIBIT F – External EUT Photos ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 1 of 7 IC-F4GS-4 (Front View) EXHIBIT F – External EUT Photos ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 2 of 7 IC-F4GT-4 (Front View) EXHIBIT F – External EUT Photos ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 3 of 7 EXHIBIT F – External EUT Photos ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 4 of 7 EXHIBIT F – External EUT Photos ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 5 of 7 EXHIBIT F – External EUT Photos ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 6 of 7 EXHIBIT F – External EUT Photos ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 7 of 7
UltraTech EXHIBIT H ID LABEL/LOCATION INFO Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 EXHIBIT H – ID Label/Location Info Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 1/2 EXHIBIT H – ID Label/Location Info Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 2/2
UltraTech EXHIBIT G INTERNAL EUT PHOTOS Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 EXHIBIT G – Internal EUT Photos Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 Photo 1 of 3 EXHIBIT G – Internal EUT Photos Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 Photo 2 of 3 EXHIBIT G – Internal EUT Photos Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 Photo 3 of 3
UltraTech EXHIBIT L OPERATIONAL DESCRIPTION Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 SECTION 4 CIRCUIT DESCRIPTION RECEIVER CIRCUITS ANTENNA SWITCHING CIRCUIT Received signals are passed through the low-pass filter (L1,L2, C3,C8, C666). The filtered signals are applied to the λ /4 type antenna switching circuit (D2, D8). The antenna switching circuit functions as a low-pass filter while receiving. However, its impedance becomes very high while D2 and D8 are turned ON. Thus transmit signals are blocked from entering the receiver circuits. The antenna switching circuit employs a λ /4 type diode switching system. The passed signals are then applied to the RF amplifier circuit. RF CIRCUIT The RF circuit amplifies signals within the range of frequencycoverage and filters out-of-band signals. The signals from the antenna switching circuit are amplified at the RF amplifier (Q12) after passing through the tunable bandpass filter (L17,D10, C78,C79,C85, C86, C100). The amplified signals are applied to the 1st mixer circuit(Q13) after out-of-band signals are suppressed at the tunable bandpass filter (L18, L19, L402,D11,D12,D401,C89,C91,C92, C94,C96,C97,C98,C406). Varactor diodes are employed at the bandpass filters that track the filters and are controlled by the CPU (IC8) via the expander IC (IC10) using T1–T4 signals. These diodes tune the centre frequency of an RF passband for wide bandwidth receiving and good image response rejection. 1ST MIXER AND 1ST IF CIRCUITS The 1st mixer circuit converts the received signal into a fixed frequency of the 1st IF signal with a PLL output frequency. By changing the PLL frequency, only the desired frequency will pass through a crystal filter at the next stage of the 1st mixer. The signals from the RF circuit are mixed at the 1st mixer (Q13) with a 1st LO signal coming from the VCO circuit to produce a 46.35 MHz 1st IF signal. The 1st IF signal is applied to a pair of crystal filters (FI1) to suppress out-of-band signals. The filtered 1st IF signal is applied to the IF amplifier (Q14), then applied to the 2nd mixer circuit (IC2, pin 16). 2ND IF AND DEMODULATOR CIRCUITS The 2nd mixer circuit converts the 1st IF signal into a 2nd IF signal. A double conversion superheterodyne system (which converts receive signals twice) improves the image rejection ratio and obtains stable receiver gain. The 1st IF signal from the IF amplifier is applied to the 2nd mixer section of the FM IF IC (IC2, pin 16), and is mixed with the 2nd LO signal to be converted into a 450 kHz 2nd IF signal. The FM IF IC contains the 2nd mixer, limiter amplifier, quad-rature detector and active filter circuits. A 2nd LO signal (45.9 MHz) is produced at the PLL circuit by doubling it’s ref-erence frequency. The 2nd IF signal from the 2nd mixer (IC2, pin 3) passes through a ceramic filter (FI2) to remove unwanted hetero-dyned frequencies. It is then amplified at the limiter amplifier (IC2, pin 5) and applied to the quadrature detector (IC2,pins 10, 11) to demodulate the 2nd IF signal into AF signals. AF CIRCUIT AF signals from the FM IF IC (IC2, pin 9) are applied to the mute switch (IC4, pin 1) via the AF filter circuit (IC3b, pins 6,7). The output signals from pin 11 are applied to the AF power amplifier (IC5, pin 4) after being passed through the [VOL] control (R143). The applied AF signals are amplified at the AF power amplifier circuit (IC5, pin 4) to obtain the specified audio level. The amplified AF signals, output from pin 10, are applied to the internal speaker (SP1) as the “SP” signal via the [SP] jack when no plug is connected to the jack. SQUELCH CIRCUIT A squelch circuit cuts out AF signals when no RF signals are received. By detecting noise components in the AF signals, the squelch switches the AF mute switch. A portion of the AF signals from the FM IF IC (IC2, pin 9) are applied to the active filter section (IC2, pin 8) where noise components are amplified and detected with an internal noise detector. The active filter section amplifies noise components. The filtered signals are rectified at the noise detector section and converted into “NOIS” (pulse type) signals at the noise com-parator section. The “NOIS” signal is applied to the CPU (IC8, pin 19). The CPU detects the receiving signal strength from the number of the pulses, and outputs an “RMUT” signal from pin 49. This signal controls the mute switch (IC4) to cut the AF signal line. TRANSMITTER CIRCUITS MICROPHONE AMPLIFIER CIRCUIT The microphone amplifier circuit amplifies audio signals with +6 dB/octave pre-emphasis characteristics from the microphone to a level needed for the modulation circuit. The AF signals from the microphone are applied to the microphone amplifier circuit (IC3c, pin 10). The amplified AF signals are passed through the low-pass filter circuit (IC3d, pins 13, 14) via the mute switch (IC4, pins 4, 3). The filtered AF signals are applied to the modulator circuit after being passed through the mute switch (IC4, pins 9, 8). MODULATION CIRCUIT The modulation circuit modulates the VCO oscillating signal (RF signal) using the microphone audio signal. The audio signals change the reactance of a diode (D404) to modulate an oscillated signal at the VCO circuit (Q7, Q8). The oscillated signal is amplified at the buffer-amplifiers (Q4,Q6), then applied to the T/R switching circuit (D3, D4). DRIVE/POWER AMPLIFIER CIRCUITS The signal from the VCO circuit passes through the T/R switching circuit (D3) and is amplified at the buffer (Q3,Q403),drive (Q2) and power amplifier (Q1) to obtain 4 W of RF power (at 7.2 V DC). The amplified signal passes through the antenna switching circuit (D1), and low-pass filter and is then applied to the antenna connector. The bias current of the drive (Q2) and the power amplifier (Q1) is controlled by the APC circuit. APC CIRCUIT The APC circuit (IC3a, Q37) protects the drive and the power amplifiers from excessive current drive, and selects HIGH or L…
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UltraTech EXHIBIT K PARTS LIST/TUNE UP INFO Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4
UltraTech EXHIBIT M RF EXPOSURE INFO Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 November 29, 2000 File No.: ICOM-022-SAR ICOM Incorporated 1-6-19 Kamikurazukuri Hirano-Ku Osaka, Japan, 547 NOT TRANSFERABLE This Verification Certificate is hereby issued to the named GRANTEE and is VALID ONLY for the equipment identified hereon for use under the rules and regulations listed below: GRANTEE'S NAME:ICOM Incorporate PRODUCT UNDER TEST:UHF Transceiver MODEL NO.:IC-F4GT-4 FCC ID:AFJIC-F4G-4 OPERATING FREQUENCY RANGE:490-512 MHz NOMINAL RF OUTPUT POWER:4.0 W Peak PEAK SPATIAL-AVERAGE SAR:4.410 W/Kg APPLICABLE STANDARDS:SAR (Specific Absorption Rate) requirements using guidelines established in IEEE C95.1-1991, FCC OET Bulletin 65 (Supplement C), Industry Canada RSS-102 (Issue 1) and ACA Radiocommunications (Electromagnetic Radiation – Human Exposure) Amendment Standard 2000 (No. 1) • Assessed by ITI (UK) Competent Body, NVLAP (USA) Accreditation Body & ACA/AUSTEL (Australia), VCCI (Japan) • Accredited by Industry Canada (Canada) under ACC-LAB (Europe/Canada MRA and APEC/Canada MRA) • Recognized/Listed by FCC (USA ) • All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST Technology ( NIST ) Approved by: Tri M. Luu, P.Eng. V.P. – Engineering UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Telephone (905) 829-1570 Facsimile (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected] UHF Transceiver Model No.: IC-F4GT-4 Tested For ICOM Incorporated 1-6-19 Kamikurazukuri Hirano-Ku Osaka, Japan, 547 In Accordance With SAR (Specific Absorption Rate) Requirements using guidelines established in IEEE C95.1-1991, FCC OET Bulletin 65 (Supplement C), Industry Canada RSS-102 (Issue 1) and ACA Radiocommunications (Electromagnetic Radiation – Human Exposure) Amendment Standard 2000 (No. 1) UltraTech's File No.: ICOM-022-SAR This Test report is Issued under the Authority of Tri M. Luu, Professional Engineer, Vice President of Engineering UltraTech Group of Labs Date: November 29, 2000 Report Prepared by: Carolyn LuuTested by: JaeWook Choi Issued Date: November 29, 2000Test Dates: November 11, 2000 The results in this Test Report apply only to the sample(s) tested, which has been randomly selected. UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Telephone (905) 829-1570 Facsimile (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected] SPECIFIC ABSORPTION RATE (SAR)Page 1 IEEE C95.1-1991, FCC OET Bulletin 65 (Supplement C), Industry Canada RSS-102(Issue 1) and ACA Radiocommunications (Electromagnetic Radiation – Human Exposure) Amendment Standard 2000 (No. 1) UHF Transceiver Model No.: IC-F4GT-4 ULTRATECH GROUP OF LABS File #: ICOM-022-SAR 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4November 29, 2000 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected], Website: http://www.ultratech-labs.com • Assessed by ITI (UK) Competent Body, NVLAP (USA) Accreditation Body & ACA/AUSTEL (Australia), VCCI (Japan) • Accredited by Industry Canada (Canada) under ACC-LAB (Europe/Canada MRA and APEC/Canada MRA) • Recognized/Listed by FCC (USA ) • All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) TABLE OF CONTENTS EXHIBIT 1. INTRODUCTION.............................................................................................................................................. 3 1.1.SCOPE......................................................................................................................................................................... 3 1.2.REFERENCES ............................................................................................................................................................ 3 EXHIBIT 2. PERFORMANCE ASSESSMENT................................................................................................................... 4 2.1.CLIENT AND MANUFACTURER INFORMATION ............................................................................................... 4 2.2.DEVICE UNDER TEST (DUT) DESCRIPTION....................................................................................................... 4 2.3.LIST OF DUT’S ACCESSORIES:.............................................................................................................................. 5 2.4.SPECIAL CHANGES ON THE DUT’S HARDWARE/SOFTWARE FOR TESTING PURPOSES ...................... 10 2.5.ANCILLARY EQUIPMENT .................................................................................................................................... 10 2.6.GENERAL TEST CONFIGURATIONS .................................................................................................................. 10 2.6.1.Equipment Configuration .................................................................................................................................. 10 2.6.2.Exercising Equipment ........................................................................................................................................ 10 2.7.S PECIFIC O PERATING C ONDITIONS .............................................................................................................................. 10 2.8.BLOCK DIAGRAM OF TEST SETUP .................................................................................................................... 11 EXHIBIT 3. SUMMARY OF TEST RESULTS ................................................................................................................. 12 3.1.LOCATION OF TESTS ............................................................................................................................................ 12 3.2.APPLICABILITY & SUMMARY OF SAR RESULTS .............................…
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UltraTech EXHIBIT C TEST REPORT Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 UHF Transceiver Model No.: IC-F4GT-4 or IC-F4GS-4 FCC ID: AFJIC-F4G-4 Applicant: Icom Incorporated 1-6-19 Kamikurazukuri Hirano-ku, Osaka Japan, 547 Tested in Accordance With Federal Communications Commission (FCC) CFR 47, PARTS 2 and 90 (Subpart I) UltraTech's File No.: ICOM23-FTX This Test report is Issued under the Authority of Tri M. Luu, Professional Engineer, Vice President of Engineering UltraTech Group of Labs Date: January 22, 2001 Report Prepared by: Dan Huynh Tested by: Mr. Hung Trinh, RFI/EMI Technician Issued Date: January 22, 2001 Test Dates: December 3 - 7, 2000 The results in this Test Report apply only to the sample(s) tested, and the sample tested is randomly selected. UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Telephone (905) 829-1570 Facsimile (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected] FCC PARTS 2 & 90, SUBPART I, RADIO SERVICES TRANSMITTERS Contents i UHF Transceiver, Model IC-F4GT-4 or IC-F4GS-4 FCC ID: AFJIC-F4G-4 ULTRATECH GROUP OF LABS File #: ICOM23-FTX 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 January 22, 2001 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected], Website: http://www.ultratech-labs.com • Assessed by ITI (UK) Competent Body, NVLAP (USA) Accreditation Body & ACA/AUSTEL (Australia) • Recognized/Listed by FCC (USA), Industry Canada (Canada) • All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) TABLE OF CONTENTS EXHIBIT 1. SUBMITTAL CHECK LIST..........................................................................................................................................1 EXHIBIT 2. INTRODUCTION...........................................................................................................................................................2 2.1. SCOPE............................................................................................................................................................................................2 2.2. RELATED SUBMITAL(S)/GRANT(S).............................................................................................................................................2 2.3. NORMATIVE REFERENCES......................................................................................................................................................2 EXHIBIT 3. PERFORMANCE ASSESSMENT...............................................................................................................................3 3.1. CLIENT INFORMATION.............................................................................................................................................................3 3.2. EQUIPMENT UNDER TEST (EUT) INFORMATION................................................................................................................3 3.3. EUT’S TECHNICAL SPECIFICATIONS...................................................................................................................................4 3.4. LIST OF EUT’S PORTS...................................................................................................................................................................4 EXHIBIT 4. EUT OPERATING CONDITIONS AND CONFIGURATIONS DURING TESTS...............................................5 4.1. CLIMATE TEST CONDITIONS......................................................................................................................................................5 4.2. OPERATIONAL TEST CONDITIONS & ARRANGEMENT FOR TEST SIGNALS........................................................................5 EXHIBIT 5. SUMMARY OF TEST RESULTS.................................................................................................................................6 5.1. LOCATION OF TESTS................................................................................................................................................................6 5.2. APPLICABILITY & SUMMARY OF EMC EMISSION TEST RESULTS.....................................................................................6 5.3. MODIFICATIONS INCORPORATED IN THE EUT FOR COMPLIANCE PURPOSES...................................................................6 EXHIBIT 6. MEASUREMENTS, EXAMINATIONS & TEST DATA FOR EMC EMISSIONS...............................................7 6.1. TEST PROCEDURES.......................................................................................................................................................................7 6.2. MEASUREMENT UNCERTAINTIES..............................................................................................................................................7 6.3. MEASUREMENT EQUIPMENT USED:..........................................................................................................................................7 6.4. ESSENTIAL/PRIMARY FUNCTIONS AS DECLARED BY THE MANUFACTURER:.....................................................7 6.5. RF POWER OUTPUT @ FCC 2.985 & 90.205..............................................................................................................................8 6.5.1. Limits @ FCC 90.205.........................................................................................................................................................8 6.5.2. Method of Measurements...................................................................................................................................................8 6.5.3. Test Equipment List............................................................................................................................................................8 6.5.4. Test Arrangement.......…
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UltraTech EXHIBIT D TEST DATA PLOTS Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 EXHIBIT D – TEST DATA PLOTS 99 % OCCUPIED BANDWIDTH FCC ID: AFJIC-F4G-4 PLOT 1 OF 16 EXHIBIT D – TEST DATA PLOTS 99 % OCCUPIED BANDWIDTH FCC ID: AFJIC-F4G-4 PLOT 2 OF 16 EXHIBIT D – TEST DATA PLOTS 99 % OCCUPIED BANDWIDTH FCC ID: AFJIC-F4G-4 PLOT 3 OF 16 EXHIBIT D – TEST DATA PLOTS EMISSION MASK D FCC ID: AFJIC-F4G-4 PLOT 4 OF 16 EXHIBIT D – TEST DATA PLOTS EMISSION MASK D FCC ID: AFJIC-F4G-4 PLOT 5 OF 16 EXHIBIT D – TEST DATA PLOTS EMISSION MASK D FCC ID: AFJIC-F4G-4 PLOT 6 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSMITTER ANTENNA CONDUCTED EMISSION FCC ID: AFJIC-F4G-4 PLOT 7 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSMITTER ANTENNA CONDUCTED EMISSION FCC ID: AFJIC-F4G-4 PLOT 8 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSMITTER ANTENNA CONDUCTED EMISSION FCC ID: AFJIC-F4G-4 PLOT 9 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSMITTER ANTENNA CONDUCTED EMISSION FCC ID: AFJIC-F4G-4 PLOT 10 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSMITTER ANTENNA CONDUCTED EMISSION FCC ID: AFJIC-F4G-4 PLOT 11 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSMITTER ANTENNA CONDUCTED EMISSION FCC ID: AFJIC-F4G-4 PLOT 12 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSIENT FREQUENCY BEHAVIOR FCC ID: AFJIC-F4G-4 PLOT 13 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSIENT FREQUENCY BEHAVIOR FCC ID: AFJIC-F4G-4 PLOT 14 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSIENT FREQUENCY BEHAVIOR FCC ID: AFJIC-F4G-4 PLOT 15 OF 16 EXHIBIT D – TEST DATA PLOTS TRANSIENT FREQUENCY BEHAVIOR FCC ID: AFJIC-F4G-4 PLOT 16 OF 16
UltraTech EXHIBIT E TEST SETUP PHOTOS Icom Incorporated UHF Transceiver, Model IC-F4GT-4 / IC-F4GS-4 FCC ID: AFJIC-F4G-4 EXHIBIT E – Test Setup Photos (Transmitter Radiated Emissions) ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 1 of 6 EXHIBIT E – Test Setup Photos (Transmitter Radiated Emissions) ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 2 of 6 EXHIBIT E – Test Setup Photos (Transmitter Radiated Emissions) ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 3 of 6 EXHIBIT E – Test Setup Photos (Transmitter Radiated Emissions) ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 4 of 6 EXHIBIT E – Test Setup Photos (Transmitter Radiated Emissions) ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 5 of 6 EXHIBIT E – Test Setup Photos (Transmitter Radiated Emissions) ICOM Incorporated UHF Transceiver, Model IC-F4GS-4 / IC-F4GT-4 FCC ID: AFJIC-F4G-4 Photo 6 of 6
3000 Bristol Circle · Oakville, Ontario · Canada
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 90 | 490 MHz - 512 MHz | 4 W | 11K0F3E | 0.8400000000 ppm |

Mobile Transceiver
Equipment Class
DTS - Digital Transmission System
VHF DIGITAL TRANSCEIVER
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
UHF DIGITAL TRANSCEIVER
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Scanning Receiver
Equipment Class
CSR - Scanning Receiver
Linear Amplifier
Equipment Class
AMP - Amplifier