FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. ICOM Incorporated/
  3. AFJ293100

AFJ293100IP Advanced Radio System

ICOM Incorporated
IP Advanced Radio System - FCC ID AFJ293100 - ICOM Incorporated
Click to zoom

Application Details

Equipment Class
PCF - PCS Licensed Transmitter held to face
Date of Grant
Nov 10, 2022
Application Purpose
Original Equipment
Date of Application
Nov 10, 2022
Equipment Note
IP Advanced Radio System
Frequency Range
665.50000000 - 695.50000000
Company
ICOM Incorporated
Country
Japan

Documents & Files

Select a file to view

Users Manual

↗

Cover Letter(s)

↗
↗
↗
↗
↗

External Photos

↗

ID Label/Location Info

↗
↗
↗
↗

Internal Photos

↗

Parts List/Tune Up Info

↗

RF Exposure Info

↗

Test Report

↗
↗
↗
↗
↗
↗
↗

Test Setup Photos

↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

INSTRUCTIONS Thank you for choosing this Icom product. READ ALL INSTRUCTIONS carefully and completely before using this product. IP ADVANCED RADIO SYSTEM IP501H IP503H IP504H 1-1-32 Kamiminami, Hirano-ku, Osaka 547-0003, Japan A7415D-2EX-3 Printed in Japan © 2012–2021 Icom Inc. Sep. 2021 Icom is not responsible for the destruction, damage to, or performance of any Icom or non-Icom equipment, if the malfunction is because of: • Force majeure, including, but not limited to, fires, earthquakes, storms, floods, lightning, other natural disasters, disturbances, riots, war, or radioactive contamination. • The use of Icom transceivers with any equipment that is not manufactured or approved by Icom. Icom, Icom Inc. and the Icom logo are registered trademarks of Icom Incorporated (Japan) in Japan, the United States, the United Kingdom, Germany, France, Spain, Russia, Australia, New Zealand, and/or other countries. The Bluetooth ® word mark and logos are registered trademarks owned by the Bluetooth SIG, Inc. and any use of such marks by Icom Inc. is under license. Other trademarks and trade names are those of their respective owners. EXPLICIT DEFINITIONS WORDDEFINITION RDANGER Personal death, serious injury or an explosion may occur. RWARNING! Personal injury, fire hazard or electric shock may occur. CAUTIONEquipment damage may occur. NOTE If disregarded, inconvenience only. No risk of personal injury, fire or electric shock. PRECAUTIONS RDANGER! NEVER short the terminals of the battery pack. Shorting may occur if the terminals touch metal objects such as a key, so be careful when placing the battery packs (or the transceiver) in bags, and so on. Carry them so that shorting cannot occur with metal objects. Shorting may damage not only the battery pack, but also the transceiver. RDANGER! NEVER operate the transceiver near unshielded electrical blasting caps or in an explosive atmosphere. This could cause an explosion and death. RDANGER! NEVER use or charge Icom battery packs with non-Icom transceivers or non-Icom chargers. Only Icom battery packs are tested and approved for use with Icom transceivers or charged with Icom chargers. Using thirdparty or counterfeit battery packs or chargers may cause smoke, fire, or cause the battery to burst. RWARNING RF EXPOSURE! This device emits Radio Frequency (RF) energy. Caution should be observed when operating this device. If you have any questions regarding RF exposure and safety standards, please refer to the Federal Communications Commission Office of Engineering and Technology’s report on Evaluating Compliance with FCC Guidelines for Human Radio Frequency Electromagnetic Fields (OET Bulletin 65). RWARNING! NEVER hold the transceiver so that the antenna is very close to, or touching exposed parts of the body, especially the face or eyes, while transmitting. The transceiver will perform best if the microphone is 5 to 10 cm (2 to 4 inches) away from the lips and the transceiver is vertical. RWARNING! NEVER operate the transceiver with a headset or other audio accessories at high volume levels. The continuous high volume operation may cause a ringing in your ears. If you experience a ringing, reduce the volume level or discontinue use. RWARNING! NEVER operate the transceiver while driving a vehicle. Safe driving requires your full attention— anything less could result in an accident. CAUTION: DO NOT use harsh solvents such as Benzine or alcohol when cleaning, because they will damage the transceiver’s surfaces. CAUTION: DO NOT operate the transceiver unless the flexible antenna, battery pack, and jack cover are securely attached. Confirm that the antenna and battery pack are dry before attaching. Exposing the inside of the transceiver to dust or water will result in serious damage to the transceiver. After exposure to water, clean the battery contacts thoroughly with fresh water and dry them completely to remove any water or salt residue. DO NOT use or place the transceiver in direct sunlight or in areas with temperatures below –10°C (14°F) or above +60°C (140°F). DO NOT push [PTT] when you do not actually intend to transmit. DO NOT modify the transceiver. The specifications may change and then the transceiver may not comply with the requirements of required regulations. The transceiver warranty does not cover any problems caused by unauthorized modification. BE CAREFUL! The transceiver will become hot when operating it continuously for long periods of time. BE CAREFUL! The transceiver meets IP67* requirements for waterproof protection. However, once the transceiver has been dropped, waterproof protection cannot be guaranteed because of possible damage to the transceiver’s case or waterproof seal. * Only when the BP-272 or BP-307, flexible antenna or antenna cap and [ /] cap are attached. The optional BP-272 and BP-307 meet IP67 requirements. DBattery caution Misuse of Li-ion batteries may result in the following hazards: smoke, fire, or the battery may rupture. Misuse can also cause damage to the battery or degradation of battery performance. RDANGER! NEVER strike or otherwise impact the battery. Do not use the battery if it has been severely impacted or dropped, or if the battery has been subjected to heavy pressure. Battery damage may not be visible on the outside of the case. Even if the surface of the battery does not show cracks or any other damage, the cells inside the battery may rupture or catch fire. RDANGER! NEVER leave battery pack in places with temperatures above 60°C (140°F). High temperature buildup in the battery, such as could occur near fires or stoves, inside a sun heated car, or in direct sunlight may cause the battery to rupture or catch fire. Excessive temperatures may also degrade battery performance or shorten battery life. RDANGER! NEVER expose the battery to rain, snow, seawater, or any other liquids. Do not charge or use a wet battery. If the battery gets wet, be sure to wipe it dry before using. RDANGER! NEVER incinerate a used ba…

Text truncated - open the document above for the full version.

Internal Photos

top side back side

Parts List/Tune Up Info

2.4GHz Multilayer Monopole Antenna ( for Bluetooth ® , W-LAN ) AH 212M245001 Actual data L= 2.0 ± 0.3 mm * Ultra Small Efficiency : -1.8dB ( 66%) W= 1.25 ± 0.2 mm * Low Profile Peak Gain : 0.9dBi T= 0.85 ± 0.2 mm Average Gain : -0.9dBi (ZX plane-Vertical polarization) 2400MHz 2450MHz 2500MHz Efficiency [dB] -1.9 -1.8 -1.7 ( 64%) ( 66%) ( 68%) Peak gain [dBi] 0.9 0.9 1.3 Average XY-plane TX-H -4.1 -4.0 -3.9 gain TX-V -9.8 -9.4 -8.7 [dBi] YZ-plane TX-H -3.0 -3.0 -2.9 TX-V -35.7 -35.1 -34.9 ZX-plane TX-H -10.1 -9.8 -9.3 TX-V -1.0 -0.9 -0.9 Frequency [MHz] XY-plane YZ-plane ZX-plane @2450MHz (-X) (+Z) (+Z) (-Y) (+Y) (-Y) (+Y) (+X) (-X) unit: dBi (+X) (-Z) (-Z) @2450MHz -45-35-25-15 -5 5 TX-HTX-V -45-35-25-15 -5 5 TX-HTX-V -45-35-25-15 -5 5 TX-HTX-V +Y +X +Z +Y +X +Z +Y +X +Z 123456789 1011 1950 2450 2950 ■ ■■■ Shapes ■ ■■■ Feature ■ ■■■ Radiation Pattern ■ ■■■ Electrical Characteristics *on Taiyo Yuden’s Evaluation Board ( 52 x 10 mm ) *Element-GND Distance : 4.0 mm ■ ■■■ VSWR Bandwidth: 260MHz (VSWR<2) + 0.3 - 0.1 The data is reference only. Electrical characterist ics vary depending on environment or measurement co ndition. TAIYO YUDEN reserves the right to make change to th e Date at any time without notice. Before making final selection, please check product specification Date: Sep/01/2011

RF Exposure Info

Test Report S/N: 45461706 R1.0 Test Report Issue Date: 31 August 2022 ©2022 Celltech Labs Inc. This document is not to be reproduced in whole or in part without the expressed written permission of Celltech Labs Inc. Page 84 of 86 APPENDIX E – PROBE CALIBRATION Test Report S/N: 45461706 R1.0 Test Report Issue Date: 31 August 2022 ©2022 Celltech Labs Inc. This document is not to be reproduced in whole or in part without the expressed written permission of Celltech Labs Inc. Page 85 of 86 APPENDIX F – DIPOLE CALIBRATION NCL CALIBRATION LABORATORIES Calibration File No: DC-1903 Project Number: 5921 Client.: Celltech Address: 21 – 364 Lougheed Road, Kelowna, BC V1X 7R8, Canada C E R T I F I C A T E OF C A L I B R A T I O N It is certified that the equipment identified below has been calibrated in the NCL CALIBRATION LABORATORIES by qualified personnel following recognized procedures and using transfer standards traceable to NRC/NIST. Validation Dipole (Head) Manufacturer: SPEAG Part number: D835V2 Frequency: 835 MHz Serial No: 4d075 Calibrated: 27/04/2021 Released on: 05/05/2021 This Calibration Certificate is incomplete unless accompanied by the Calibration Results Summary NCL Calibration Laboratories Division of APREL Laboratories DC-1903 Dipole SN 4d075 Page 2 of 7 This page has been reviewed for content and attested to on Page 2 of this document. Conditions Dipole SN 4d075 was a re-calibration. Ambient Temperature of the Laboratory: 21 C +/- 0.5C Temperature of the Tissue: 21 C +/- 0.5C Primary Measurement Standards Instrument Serial Number Cal due date Signal Generator HP 83640B 3844A00689 Sept. 17, 2022 Network Analyzer Keysight E5063A MY54502902 Mar. 9, 2023 Spectrum Analyzer Keysight N9030B MY57140772 Apr. 20, 2023 Attestation The below named signatories have conducted the calibration and review of the data which is presented in this calibration report. NCL Calibration Laboratories Division of APREL Laboratories DC-1903 Dipole SN 4d075 Page 3 of 7 This page has been reviewed for content and attested to on Page 2 of this document. Calibration Results Summary The following results relate the Calibrated Dipole and should be used as a quick reference for the user. Mechanical Dimensions Length Height 161.0 mm 89.8 mm Tissue Validation Tissue Frequency Dielectric constant,  r Conductivity,  [S/m] Head 835 MHz 39.97 0.90 Electrical Specification Tissue Frequency Return LossImpedanceSWR: Head 835 MHz 21.88 dB 42.75 Ω 1.18 U System Validation Results Tissue Frequency 1-Gram SAR 10-Gram SAR Uncertainty Head 835 MHz 9.319 W/kg 6.011 W/kg 18.7% Head NCL Calibration Laboratories Division of APREL Laboratories DC-1903 Dipole SN 4d075 Page 4 of 7 This page has been reviewed for content and attested to on Page 2 of this document. Introduction This Calibration Report has been produced in line with the SSI Dipole Calibration Procedure SSI-TP-018-ALSAS. The results contained within this report are for Validation Dipole SN 4d075. The calibration routine consisted of a three-step process. Step 1 was a mechanical verification of the dipole to ensure that it meets the mechanical specifications. Step 2 was an Electrical Calibration for the Validation Dipole, where the SWR, Impedance, and the Return loss were assessed. Step 3 involved a System Validation using the ALSAS- 10U, along with APREL E-020 30 MHz to 6 GHz E-Field Probe Serial Number 225. References o IEEE Standard 1528:2013 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques o EN 62209-1:2016 Human Exposure to RF Fields from hand-held and body-mounted wireless communication devices - Human models. instrumentation, and procedures - Part 1: Procedure to measure the Specific Absorption Rate (SAR) for hand-held mobile wireless devices o IEC 62209-2:2019 Human exposure to RF fields from hand-held and body-mounted wireless devices - Human models, instrumentation, and procedures - Part 2: specific absorption rate (SAR) for wireless communication devices (30 MHz - 6 GHz) o D22-012-Tissue dielectric tissue calibration procedure o D28-002-Dipole procedure for validation of SAR system using a dipole o IEEE 1309 Standard for Calibration of Electromagnetic Field Sensors and Probes, Excluding Antennas, from 9 kHz to 40 GHz Conditions Ambient Temperature of the Laboratory: 21 C +/- 0.5C Temperature of the Tissue: 21 C +/- 0.5C Dipole Calibration uncertainty The calibration uncertainty for the dipole is made up of various parameters presented below. Tolerance, % Mechanical 1.00 Positioning Error 0.10 Electrical 0.37 Tissue Permittivity 3.69 Tissue Conductivity 0.58 Dipole Validation 1.70 Combined Uncertainty, k=2 3.46 NCL Calibration Laboratories Division of APREL Laboratories DC-1903 Dipole SN 4d075 Page 5 of 7 This page has been reviewed for content and attested to on Page 2 of this document. The Following Graphs are the results as displayed on the Vector Network Analyzer. Electrical Calibration Test Head S11 R/L -21.88 dB Impedance 42.75  SWR 1.18 U S11 Parameter Return Loss Head Frequency Range 832.02 MHz to 860.40 MHz NCL Calibration Laboratories Division of APREL Laboratories DC-1903 Dipole SN 4d075 Page 6 of 7 This page has been reviewed for content and attested to on Page 2 of this document. Smith Chart Dipole Impedance Head NCL Calibration Laboratories Division of APREL Laboratories DC-1903 Dipole SN 4d075 Page 7 of 7 This page has been reviewed for content and attested to on Page 2 of this document. SWR Head Test Report S/N: 45461706 R1.0 Test Report Issue Date: 31 August 2022 ©2022 Celltech Labs Inc. This document is not to be reproduced in whole or in part without the expressed written permission of Celltech Labs Inc. Page 86 of 86 APPENDIX G - PHANTOM

Test Report

Toll-free: (866) 311-3268 www.ComplianceTesting.com [email protected] p21a0006-02_LTE Rev 2.0 Page 1 of 36 Test Report Prepared for: Icom Inc EUT Name: IP Advanced Radio System Model: IP504H FCC ID: AFJ293100 IC: 202D-293100 To FCC Part 22H, 24E, 27C, 90R, 90S And ISED RSS-Gen, RSS-130, RSS-132, RSS-133, RSS-139, RSS-140, RSS-199 Date of Issue: 09/13/2022 On the behalf of the applicant: ICOM Incorporated 1-1-32, Kamiminami Hirano-Ku Osaka 547-0003, Japan Attention of: Atsushi Tomiyama, General Manager of QA Department Ph: +81 6 6793 8424 Email: [email protected] Prepared By Compliance Testing, LLC 1724 S. Nevada Way Mesa, AZ 85204 (480) 926-3100 phone / (480) 926-3598 fax www.compliancetesting.com Project No: p21a0006 Authorized By Aaron S. Froehlich Sr RF/EMC Engineer This report may not be reproduced, except in full, without written permission from Compliance Testing. All results contained herein relate only to the sample tested. p21a0006-02_LTE Rev 2.0 Page 2 of 36 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 13 September 2022 Aaron S. Froehlich Original Document 2.0 19 October 2022 Aaron S. Froehlich RSS-199 added to cover page. Test Setup photos removed to be held confidential p21a0006-02_LTE Rev 2.0 Page 3 of 36 Table of Contents Description Page Standard Test Conditions Engineering Practices ............................................................................... 5 Average Conducted Output Power and EIRP ..................................................................................... 9 Radiated Spurious Emissions ........................................................................................................... 25 Test Equipment Utilized .................................................................................................................... 35 Measurement Uncertainty ................................................................................................................. 36 Test Setup Photos .............................................................................. Error! Bookmark not defined. p21a0006-02_LTE Rev 2.0 Page 4 of 36 ANAB Compliance Testing, LLC, has been accredited in accordance with the recognized International Standard ISO/IEC 17025:2017. This accreditation demonstrates technical competence for a defined scope and the operation of a laboratory quality management system (refer to the joint ISO-ILAC-IAF Communiqué dated January 2009). The tests results contained within this test report all fall within our scope of accreditation. Please refer to http://www.compliancetesting.com/labscope.html for current scope of accreditation. FCC Site Reg. #349717 IC Site Reg. #2044A-2 p21a0006-02_LTE Rev 2.0 Page 5 of 36 Standard Test Conditions Engineering Practices Except as noted herein, the following conditions and procedures were observed during the testing: In accordance with ANSI C63.10-2013 and unless otherwise indicated in the specific measurement results, the ambient temperature of the actual EUT was maintained within the range of 10° to 40°C (50° to 104°F) unless the particular equipment requirements specified testing over a different temperature range. Also, unless otherwise indicated, the humidity levels were in the range of 10% to 90% relative humidity. Measurement results, unless otherwise noted, are worst-case measurements. Environmental Conditions Temperature (ºC) Humidity (%) Pressure (mbar) 27.0 48.9 970.8 p21a0006-02_LTE Rev 2.0 Page 6 of 36 EUT Description Product Marketing Name (PMN) IP Advanced Radio system Model: IP504H Hardware Version Identification Number (HVIN) 293100-01 Serial Number (SN) AP Conducted: 3740U005D Radiated: NSN (Test Mode Prototype) Supported Bands: LTE FDD Band 2 LTE FDD Band 4 LTE FDD Band 5 LTE FDD Band 12 LTE FDD Band 13 LTE FDD Band 14 LTE FDD Band 25 LTE FDD Band 26 LTE TDD Band 41 LTE FDD Band 66 LTE FDD Band 71 Modulation(s) QPSK, 16-QAM Antenna Type: External Passive Antenna Part Number: TH81J-RPMA (M) Pk Gain (dBi): Band 2: 1.87 Band 4: 3.12 Band 5: 0.91 Band 12: 0.95 Band 13: 2.23 Band 14: 2.18 Band 25: 1.87 Band 26: 1.40 Band 41: 3.20 Band 66: 3.12 Band 71: -0.48 General Description of EUT and its intended use: The DUT is a battery powered handheld transceiver for audio transmission. The DUT cannot transmit while in its charging dock. Evaluation of the compliance of the charging dock is beyond the scope of this report. EUT operation during test: The DUT was operated at maximum RF output and 100% RBs for all tests in this report. During EIRP measurements a production unit was paired with a CMW 500 call box to control the LTE transmission. During Radiated measurements a test mode sample was utilized that allowed control of the BT transmissions from a support laptop connected to a secondary PCB via USB 2.0. The CMW 500 was again used to control the LTE transmission, this time using a radiated connection. LTE Bands Not Tested LTE Band 2 was exempted from testing as its spectrum is completely covered by Band 25 LTE Band 4 was exempted from testing as its spectrum is completely covered by Band 66 LTE Band 5 was exempted from testing as its spectrum is completely covered by Band 26 Simultaneous Transmission Each of the LTE Bands had the channel with the highest EIRP tested for unwanted spurious emissions, while simultaneously transmitting with the worst-case BT modes identified i.a.w. ANSI C63.10 Clause 5.6.2.2. Additionally, the DUT was tested while oriented in 3 orthogonal axis. The worst-case results in each spectrum have been reported for all LTE Bands. EIRP measurements were not made under simultaneous transmission conditions. p21a0006-02_LTE Rev 2.0 Page 7 of 36 Support Equipment Qty Description Manufacturer Model S/N 1 Laptop Dell Latitude E6440 52YJQ32 1 Call Box Rohde & Schwarz CMW500 171198 / i00636 Support Cables: Qty Description Length (M) Shielding Y/N Shielded Hood Y/N Termination 1 USB 2.0 2.1 Y Y Communication Board Modificatio…

Text truncated - open the document above for the full version.

Test Report

p21a0006-02_LTE Annex A Page 1 of 108 p21a0006-02_LTE Annex A Test Data Plots p21a0006-02_LTE Annex A Page 2 of 108 Average Conducted output Power and EIRP LTE Band 12 QPSK 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 3 of 108 p21a0006-02_LTE Annex A Page 4 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 5 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 6 of 108 10 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 7 of 108 16QAM 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 8 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 9 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 10 of 108 LTE Band 13 QPSK 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 11 of 108 10 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 12 of 108 16QAM 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 13 of 108 LTE Band 14 QPSK 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 14 of 108 10 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 15 of 108 16QAM 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 16 of 108 LTE Band 25 QPSK 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 17 of 108 p21a0006-02_LTE Annex A Page 18 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 19 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 20 of 108 10 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 21 of 108 15 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 22 of 108 20 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 23 of 108 16QAM 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 24 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 25 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 26 of 108 LTE Band 26 (Part 90) QPSK 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 27 of 108 p21a0006-02_LTE Annex A Page 28 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 29 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 30 of 108 10 MHz Nominal Bandwidth 15 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 31 of 108 16QAM 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 32 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 33 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 34 of 108 LTE Band 26 (Part 22H / RSS-132) QPSK 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 35 of 108 p21a0006-02_LTE Annex A Page 36 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 37 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 38 of 108 10 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 39 of 108 15 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 40 of 108 16QAM 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 41 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 42 of 108 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 43 of 108 LTE Band 41 QPSK 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 44 of 108 10 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 45 of 108 15 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 46 of 108 20 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 47 of 108 16QAM 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 48 of 108 LTE Band 66 QPSK 1.4 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 49 of 108 3 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 50 of 108 5 MHz Nominal Bandwidth

Test Report

p21a0006-02_LTE Annex A Page 61 of 108 20 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 62 of 108 16QAM 5 MHz Nominal Bandwidth p21a0006-02_LTE Annex A Page 63 of 108 Radiated Spurious Emissions 30-1000 MHz Band 66 5M Ch 132322 Compliance Testing Vertical 30.00M 100.00M 1.00G Frequency MHz 0 5.0 10.0 15.0 20.0 25.0 30.0 35.0 40.0 45.0 50.0 55.0 60.0 65.0 70.0 Amplitude dBuV QPLimit Peak Prescan Final QP FrequencyAzimuthHeightRaw QPCorrectionFinal QPLimitQP Margin MHzdegcmdBuVdBdBuV/mdBuV/mdB 32.11610610040.47-21.9518.5140.0-21.5 132.7987837935.48-25.2710.2143.5-33.3 695.75130510049.36-14.9634.4046.0-11.6 957.5862010031.96-10.4421.5246.0-24.5 Final = Raw + Path Loss Margin = Final - Limit p21a0006-02_LTE Annex A Page 64 of 108 Compliance Testing Horizontal 30.00M 100.00M 1.00G Frequency MHz 0 5.0 10.0 15.0 20.0 25.0 30.0 35.0 40.0 45.0 50.0 55.0 60.0 65.0 70.0 75.0 80.0 Amplitude dBuV QP Limit Peak Prescan Final QP FrequencyAzimuthHeightRaw QPCorrectionFinal QPLimitQP Margin MHzdegcmdBuVdBdBuV/mdBuV/mdB 31.32511032540.46-19.8920.5740.0-19.4 130.01211430935.89-26.189.7143.5-33.8 942.03023238632.83-10.5922.2446.0-23.8 Final = Raw + Path Loss Margin = Final - Limit p21a0006-02_LTE Annex A Page 65 of 108 Band 12 1.4M Ch 23017 No final vertical measurements Compliance Testing Vertical 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QPLimit Peak Prescan Final QP LTE Downlink LTE Uplink p21a0006-02_LTE Annex A Page 66 of 108 Compliance Testing Horizontal 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QP Limit Peak Prescan Final QP FrequencyAzimuthHeightRaw QPCorrectionFinal QPLimitQP Margin MHzdegcmdBuVdBdBuV/mdBuV/mdB 342.55232510034.80-22.0412.7646.0-33.2 357.56230915634.31-21.3812.9346.0-33.1 Final = Raw + Path Loss Margin = Final - Limit LTE Downlink LTE Uplink p21a0006-02_LTE Annex A Page 67 of 108 Band 13 5M Ch 23255 Compliance Testing Vertical 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QPLimit Peak Prescan Final QP Frequency Azimuth Height Raw QP Correction Final QP Limit QP Margin MHz deg cm dBuV dB dBuV/m dBuV/m dB 870.538 178 320 50.11 -12.08 38.04 46.0 -8.0 Final = Raw + Path Loss Margin = Final - Limit LTE Downlink LTE Uplink p21a0006-02_LTE Annex A Page 68 of 108 *872 MHz is outside a 15.209 restricted band, and meets the LTE -13 dBm requirement as shown below: Compliance Testing Horizontal 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QP Limit Peak Prescan Final QP Frequency Azimuth Height Raw QP Correction Final QP Limit QP Margin MHz deg cm dBuV dB dBuV/m dBuV/m dB 87.182 281 211 50.67 -30.28 20.39 40.0 -19.6 701.430 292 100 55.57 -14.86 40.70 46.0 -5.3 872.007 304 105 60.72 -12.19 48.53 46.0 2.5* Final = Raw + Path Loss Margin = Final - Limit FrequencyAzimuthHeightRaw QPPath LossConversionFinal QPLimitQP Margin MHzdegcmdBuVdBdBdBmdBuV/mdB 872.00730410560.72-12.19-95.3-46.77-13.0-33.8 Final = Raw + Path Loss + Conversion Margin = Final - Limit LTE Downlink LTE Uplink p21a0006-02_LTE Annex A Page 69 of 108 Band 14 10M Ch 23330 No final vertical measurements Compliance Testing Vertical 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QPLimit Peak Prescan Final QP LTE Downlink LTE Uplink p21a0006-02_LTE Annex A Page 70 of 108 Compliance Testing Horizontal 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QP Limit Peak Prescan Final QP Frequency Azimuth Height Raw QP Correction Final QP Limit QP Margin MHz deg cm dBuV dB dBuV/m dBuV/m dB 863.42 275 109 56.23 -12.13 44.10 46 -1.9 Final = Raw + Path Loss Margin = Final - Limit LTE Downlink LTE Uplink p21a0006-02_LTE Annex A Page 71 of 108 Band 25 3M Ch 26055 Compliance Testing Vertical 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QPLimit Peak Prescan Final QP Frequency Azimuth Height Raw QP Correction Final QP Limit QP Margin MHz deg cm dBuV dB dBuV/m dBuV/m dB 587.298 293 342 33.31 -16.53 16.78 46.0 -29.2 Final = Raw + Path Loss Margin = Final - Limit p21a0006-02_LTE Annex A Page 72 of 108 Compliance Testing Horizontal 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QP Limit Peak Prescan Final QP FrequencyAzimuthHeightRaw QPCorrectionFinal QPLimitQP Margin MHzdegcmdBuVdBdBuV/mdBuV/mdB 187.49013729335.28-28.516.7743.5-36.7 588.17328531033.30-16.3416.9646.0-29.0 Final = Raw + Path Loss Margin = Final - Limit p21a0006-02_LTE Annex A Page 73 of 108 Band 26 5M Ch 27015 Compliance Testing Vertical 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QPLimit Peak Prescan Final QP FrequencyAzimuthHeightRaw QPCorrectionFinal QPLimitQP Margin MHzdegcmdBuVdBdBuV/mdBuV/mdB 62.6814810037.62-32.884.7440.0-35.3 181.2609437235.68-27.947.7443.5-35.8 748.91021632542.16-13.0829.0846.0-16.9 Final = Raw + Path Loss Margin = Final - Limit p21a0006-02_LTE Annex A Page 74 of 108 Compliance Testing Horizontal 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QP Limit Peak Prescan Final QP Frequency Azimuth Height Raw QP Correction Final QP Limit QP Margin MHz deg cm dBuV dB dBuV/m dBuV/m dB 45.000 203 141 49.03 -27.33 21.70 40.0 -18.3 98.786 247 325 46.22 -28.81 17.41 43.5 -26.1 749.783 262 325 58.43 -13.58 44.85 46.0 -1.1 945.052 244 183 51.71 -10.48 41.23 46.0 -4.8 Final = Raw + Path Loss Margin = Final - Limit p21a0006-02_LTE Annex A Page 75 of 108 Band 41 20M Ch 39750 Compliance Testing Vertical 30.00M 100.00M 1.00G Frequency MHz 5.0 15.0 25.0 35.0 45.0 55.0 65.0 75.0 85.0 95.0 105.0 115.0 Amplitude dBuV QPLimit Peak Prescan Final …

Text truncated - open the document above for the full version.

Test Report

Any reproduction of this document must be done in full. No single part of this document may be reproduced without permission from STS, All Test Data Presented in this report is only applicable to presented Test sample. Shenzhen STS Test Services Co., Ltd. A 1/F, Building B, Zhuoke Science Park, No.190 Chongqing Road, HepingShequ, Fuyong Sub-District, Bao’an District, Shenzhen, Guang Dong, China TEL: +86-755 3688 6288 FAX: +86-755 3688 6277 E-mail:[email protected] RADIO TEST REPORT Report No.:STS2006194W01 Issued for SIMCom Wireless Solutions Limited No.633, Jinzhong Road,Shanghai, China Product Name: LTE /GNSS MODULE Brand Name: SIMCom Model Name: SIM7600NA Series Model: SIM7600NA miniPCIE FCC ID: 2AJYU-8PYA006 Test Standard: 47 CFR Part 2, 22H, 24(E), 27, 90 S T L A B S Page 2 of 108 Report No.: STS2006194W01 TEST RESULT CERTIFICATION Applicant’s Name................: SIMCom Wireless Solutions Limited Address .................................. : No.633, Jinzhong Road,Shanghai, China Manufacture's Name ............ : SIMCom Wireless Solutions Limited Address .................................. : No.633, Jinzhong Road,Shanghai, China Product Description Product Name ........................ : LTE /GNSS MODULE Brand Name ......................... : SIMCom Model Name ........................... : SIM7600NA Series Model .......................... : SIM7600NA miniPCIE Test Standards ...................... : 47 CFR Part 2, 22H, 24(E), 27, 90 Test Procedure ........…

Text truncated - open the document above for the full version.

Contact Information

Applicant

Tatsuo Yano(General Manager of QA Department)
[email protected]+8166793-5301Fax: +8166793-0013

Technical Contact

ICOM IncMunekazu Takeda
[email protected]+81667938424

1-6-19, Kamikurazukuri, Hirano-ku · Osaka · Japan

Test Firm

Compliance Testing, LLCMichael Schafer
[email protected]480-926-3100

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
327665.5 MHz - 695.5 MHz38.20 mW4M53W7D0.05 ppm
Confidentiality
Long Term
Grant Notes
Output Power is EIRP and ERP for above and below 1 GHz, respectively, except for Part 90 LTE Band 26 emissions, which are conducted. SAR compliance for body-worn operating configurations is limited to the specific body-worn accessories, such as belt-clips and holsters, tested for this filing, or belt-clips and holsters that have no metallic components in the assembly and cause the device to operate with the minimum separation distance of 5.0 mm, as described in this filing. End-users must be informed of the body-worn operating requirements for satisfying RF exposure compliance. The highest reported SAR for head (face), body-worn accessory and simultaneous transmission exposure conditions are 0.19 W/kg, 1.15 W/kg and 1.33 W/kg, respectively. This device supports LTE of 1.4, 3, 5, 10, 15 and 20 MHz bandwidth modes for FDD LTE Bands 2, 4, 25 and 66; LTE of 5, 10, 15 and 20 MHz bandwidth modes for FDD LTE Band 71; LTE of 1.4, 3, 5 and 10 MHz bandwidth modes for FDD LTE Bands 5 and 12; LTE of 5 and 10 MHz bandwidth modes for FDD LTE Bands 13 and 14; LTE of 1.4, 3, 5, 10 and 15 MHz bandwidth modes for FDD LTE Band 26; and LTE of 5, 10, 15 and 20 MHz bandwidth modes for TDD LTE Band 41.

Other Applications from ICOM Incorporated

VHF DSC Marine Radio - FCC ID AFJ460100 - ICOM Incorporated
AFJ460100

VHF DSC Marine Radio

Aug 31, 2026

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
Mobile Transceiver - FCC ID AFJ453700 - ICOM Incorporated
AFJ453700

Mobile Transceiver

Jul 23, 2026

Equipment Class

DTS - Digital Transmission System
VHF DIGITAL TRANSCEIVER - FCC ID AFJ452000 - ICOM Incorporated
AFJ452000

VHF DIGITAL TRANSCEIVER

Jun 02, 2026

Equipment Class

TNF - Licensed Non-Broadcast Transmitter Held to Face
UHF DIGITAL TRANSCEIVER - FCC ID AFJ452100 - ICOM Incorporated
AFJ452100

UHF DIGITAL TRANSCEIVER

May 12, 2026

Equipment Class

TNF - Licensed Non-Broadcast Transmitter Held to Face
Scanning Receiver - FCC ID AFJ444500 - ICOM Incorporated
AFJ444500

Scanning Receiver

Sep 12, 2024

Equipment Class

CSR - Scanning Receiver