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2AX5HJRN-430KIT Controller

JRC Mobility Inc.
IT Controller - FCC ID 2AX5HJRN-430K - JRC Mobility Inc.
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Jan 26, 2021
Application Purpose
Original Equipment
Date of Application
Jan 25, 2021
Equipment Note
IT Controller
Frequency Range
704.00000000 - 711.00000000
Company
JRC Mobility Inc.
Country
Japan

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

IT Controller (used 4G/ 3G/ GSM Communication) JRN-430K User Manual Doc# : LE-209529 Ver.1.01 Date: Jan. 25, 2021 @Copyright JRC Mobility Inc. Locator Products Groupe Product Development Department IT Controller (used 4G/3G/GSM Communication) JRN-430K 2/22 LE-209529 History Date Number The contents of change Dec. 07, 2020 1.00 Jan. 25, 2021 1.01 1.1 Overview 4.4 4G/3G/GSM module Specification addition The following bands of LTE are not used in the United States: Bd1, Bd7. IT Controller (used 4G/3G/GSM Communication) JRN-430K 3/22 LE-209529 Index 1 Introduction ................................................................................................................................ 4 2 Composition ............................................................................................................................... 5 3 Function...................................................................................................................................... 6 4 Product specification ................................................................................................................. 8 5 Block Diagram .........................................................................................................................13 6 External Interface ....................................................................................................................14 7 Outline ....................................................................................................................................17 8 Option .......................................................................................................................................18 9 Compliance with FCC and IC Rules and Regulations .......................................................21 IT Controller (used 4G/3G/GSM Communication) JRN-430K 4/22 LE-209529 1 Introduction IT Controller (used 4G/3G/GSM Communication) JRN-430K is a vehicle small terminal to have the GPS measurement function and the 4G/3G/GSM communication function, and to use it for management and positional information track / theft pursuit etc. of the vehicle. (JRN-430K is a device dedicated to specific customers and will not be sold to the general public.) As a communications protocol TCP/IP are mounted. The terminal made by the Gemalto product’s PLS62-W is installed. 1.1 Overview The main specification is presented as follows. No. Items Specification Remarks 1 Communication module 4G/3G/GSM Communication module (PLS62-W Gemalto Product) LTE: Twelve band, 700 (Bd12 <MFBI Bd17>, Bd28) 800 (Bd18, Bd19, Bd20) 850 (Bd5) / 900 (Bd8) / AWS (Bd4) / 1800 (Bd3) / 1900 (Bd2) / 2100 (Bd1) / 2600 (Bd7) UMTS/HSPA+: Seven band, 800 (Bd19) / 850 (Bd5) / 900 (Bd8) / AWS (Bd4) / 1800 (Bd9) / 1900 (Bd2) / 2100MHz (Bd1) GSM/GPRS/EDGE: Quad band, 850/900/1800/1900 MHz The following bands of LTE are not used in the United States: Bd1, Bd7. 2 Data transfer rate GPRS: Multislot Class 12 EGPRS: Multislot Class 12 3 Communication Antenna 7ABLE0009 (FAKRA) (Nippon Antenna) 4 GPS Antenna NAY-3930G 5 Internal Battery NBB-1300(1300mAh/6.0V) 6 Current and Voltage DC+20V to +32V 400mA max or less /24V Waiting mode: 17mA or less /24V IT Controller (used 4G/3G/GSM Communication) JRN-430K 5/22 LE-209529 2 Composition NO. Equipment Model Quantity 1 IT Controller JRN-430K 1 1-1 Communication Module PLS62-W Gemalto Product 1 1-2 Battery pack NBB-1300 1 2 GPS Antenna NAY-3930G 1 3 4G/3G/GSM Communication antenna 7ABLE0009(FAKRA) (Nippon Antenna) 1 Power Supply & Control Block Communication Module IT Control ler Fuse 4G/ 3G/GSM Communication Antenna GPS Antenna Connection I/F Cable To Battery To Construction machine Battery pac k (Note#1) Please prepare IF cable by the visitor side. (Note#2) A connection I/F cable requires a fuse because of over-current protection. Please insert the fuse in three places of a battery, GND, and ACC. (Note#3) Please do not take a power supply from DC cigar socket. It becomes the cause that operation is poor, according to bad connection. IT Controller (used 4G/3G/GSM Communication) JRN-430K 6/22 LE-209529 3 Function (1) Operation in ACC OFF executes the following. -1. Send data at regular intervals. -2. Respond to calling from the server. -3. Acquisition of information on the actual location by GPS, and Generation of warning outside area. (2) Storage of operation data (3) Timer Even if the main source of power is cut, the date and time are maintained. (4) Backup The re-charge battery is installed. Even if it disconnects a power supply, the operational mode and network transmission setting of IT controller are held. (5) Serial communication ports Connection I/F (CAN), 115200bps(monitor) (6) GPS function Present location is acquired. (WGS84) (7) 4G/3G/GSM communication (8) Software rewriting function A software rewriting is done by using the Ethernet. (9) Serial communications with the external equipment are done by the serial commands. 1) Key ON 2) Engine ON 3) Key OFF 4) Alarm 5) Fuel residual quantity 6) Engine amount of water 7) Engine oil level 8) Hydraulic oil level 9) Engine oil pressure 10) Engine water temperature 11) Air cleaner 12) Charge 13) DS (compulsive key OFF) 14) RT (the present state inquiry) 15) HS (foxtail millet meter change) 16) CO (command) 17) Automatic key-off judging processing (10) Communication protocol It transmits to the mail server by the e-mail. (11) Time Zone Setting UTC+α, and operating. (12) WiFi communication Enables communication at 2.4 / 5GHz by IEEE802.11g / n. WiFi supports AP mode. The maximum number of devices that can connect to WiFi at the same time is two. Connect a network camera or smartphone to WiFi for use. (13) Bluetooth communication Communication by Bluetooth 4.2 is possible. Only one device can be connected to Bluetooth at the same time. HFP is installed as a voice profile and GATT is installed as a data communication profile. Connect a smartphone (BLE compatible) and a microphone to Blue…

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External Photos

JRC Mobility Inc. FCC ID: 2AX5HJRN-430K IC: 26609-JRN-430K 20201120 LE-20Y528 Photographs of JRN-430K External Front viewExternal Back view External Bottom view External Side view

ID Label/Location Info

2020/12/16 IT Controller (used 4G/ 3G/ GSM Communication)LE-20X530 JRN-430K ID Label 2020/12/15 IT Controller (used 4G/ 3G/ GSM Communication) LE-20X529 JRN-430K Label location Label location

Internal Photos

JRC Mobility Inc. FCC ID: 2AX5HJRN-430K IC: 26609-JRN-430K 20201120 LE-20Y528 Circuit board Front view Circuit board Back view Internal Front view

RF Exposure Info

TÜV SÜD Japan Ltd. Appendix for TEST REPORT, No. I17D00184-MPE01 JRN-430K has two modules in the device, WL18MODGB and PLS62-W. For WL18MODGB, please refer to the following data. - Equipment: WiFi and Bluetooth Module - Model name: WL18MODGB - FCC ID: Z64-WL18SBMOD - IC: 451I-WL18SBMOD 1. Radio Frequency Radiation Exposure Evaluation 1.1 Standalone and Collocated Power Density Calculation results, WL18MODGB [FCC] (Standalone) WLAN Power Density / Limit (Standalone) Bluetooth Power Density / Limit (Collocated) Σ(Power Density / Limit) of WLAN+Bluetooth 0.0190.0070.026 The worst case is 0.019 of WLAN. [ISED] (Standalone) WLAN Power Density / Limit (Standalone) Bluetooth Power Density / Limit (Collocated) Σ(Power Density / Limit) of WLAN+Bluetooth 0.0350.0120.047 The worst case is 0.035 of WLAN. 1.2 Standalone Power Density Calculation results, PLS62-W This application is used the following antenna for PLS62-W. - Model name: 7ABLE0009 - Antenna type: Half-wave length dipole antenna - Antenna again: -1.0 ~ +1.6dBi [FCC] From page 10, #5.4, LTE Band 2, the Power Density is 0.091 mW/cm^2 and the MPE limit is 1 mW/cm^2, so the ratio is 0.091/1 = 0.091. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 10, #5.5, LTE Band 4, the Power Density is 0.091 mW/cm^2 and the MPE limit is 1 mW/cm^2, so the ratio is 0.091/1 = 0.091. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 10, #5.6, LTE Band 5, the Power Density is 0.079 mW/cm^2 and the MPE limit is 0.549 mW/cm^2, so the ratio is 0.079/0.549 = 0.144 *Ant. gain: 1.0 dBi (numeric gain 1.26) TÜV SÜD Japan Ltd. From page 11, #5.8, LTE Band 12, the Power Density is 0.050 mW/cm^2 and the MPE limit is 0.477 mW/cm^2, so the ratio is 0.050/0.477 = 0.105. *Ant. gain: -1.0 dBi (numeric gain 0.79) From page 12, #5.11, GSM850, the Power Density is 0.099 mW/cm^2 and the MPE limit is 0.549 mW/cm^2, so the ratio is 0.099/0.549 = 0.180. *Ant. gain: 1.0 dBi (numeric gain 1.26) From page 13, #5.12, GSM1900, the Power Density is 0.057 mW/cm^2 and the MPE limit is 1 mW/cm^2, so the ratio is 0.057/1 = 0.057. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 13, #5.13, WCDMA Band 2, the Power Density is 0.091 mW/cm^2 and the MPE limit is 1 mW/cm^2, so the ratio is 0.091/1 = 0.091. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 13, #5.14, WCDMA Band 4, the Power Density is 0.091 mW/cm^2 and the MPE limit is 1 mW/cm^2, so the ratio is 0.091/1 = 0.091. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 14, #5.15, WCDMA Band 5, the Power Density is 0.079 mW/cm^2 and the MPE limit is 0.549 mW/cm^2, so the ratio is 0.079/0.549 = 0.144. *Ant. gain: 1.0 dBi (numeric gain 1.26) The worst case is 0.180 of GSM850. [ISED] From page 10, #5.4, LTE Band 2, the Power Density is 0.091 mW/cm^2 and the MPE limit @1850MHz is 4.48 W/m^2 = 0.448 mW/cm^2, so the ratio is 0.091/0.448 = 0.203. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 10, #5.5, LTE Band 4, the Power Density is 0.091 mW/cm^2 and the MPE limit @1710MHz is 4.24 W/m^2 = 0.424 mW/cm^2, so the ratio is 0.091/0.424 = 0.215. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 10, #5.6, LTE Band 5, the Power Density is 0.079 mW/cm^2 and the MPE limit @824MHz is 2.58 W/m^2 = 0.258 mW/cm^2, so the ratio is 0.079/0.258 = 0.306. *Ant. gain: 1.0 dBi (numeric gain 1.26) From page 11, #5.8, LTE Band 12, the Power Density is 0.079 mW/cm^2 and the MPE limit @699MHz is 2.30 W/m^2 = 0.230 mW/cm^2, so the ratio is 0.079/0.230 = 0.343. *Ant. gain: -1.0 dBi (numeric gain 0.79) From page 12, #5.11, GSM850, the Power Density is 0.099 mW/cm^2 and the MPE limit @824MHz is 2.58 W/m^2 = 0.258 mW/cm^2, so the ratio is 0.099/0.258 = 0.384. *Ant. gain: 1.0 dBi (numeric gain 1.26) TÜV SÜD Japan Ltd. From page 13, #5.12, GSM1900, the Power Density is 0.057 mW/cm^2 and the MPE limit @1850MHz is 4.48 W/m^2 = 0.448 mW/cm^2, so the ratio is 0.057/0.448 = 0.127. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 13, #5.13, WCDMA Band 2, the Power Density is 0.091 mW/cm^2 and the MPE limit @1850MHz is 4.48 W/m^2 = 0.448 mW/cm^2, so the ratio is 0.091/0.448 = 0.203. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 13, #5.14, WCDMA Band 4, the Power Density is 0.091 mW/cm^2 and the MPE limit @1710MHz is 4.24 W/m^2 = 0.424 mW/cm^2, so the ratio is 0.091/0.424 = 0.215. *Ant. gain: 1.6 dBi (numeric gain 1.45) From page 14, #5.15, WCDMA Band 5, the Power Density is 0.079 mW/cm^2 and the MPE limit @824MHz is 2.58 W/m^2 = 0.258 mW/cm^2, so the ratio is 0.079/0.258 = 0.306. *Ant. gain: 1.0 dBi (numeric gain 1.26) The worst case is 0.384 of GSM850. 1.3 Summation of the calculation results [FCC] WL18MODGB (WLAN) + GSM850 = 0.019 + 0.180 = 0.199 According to 47 CFR§2.1091, the RF exposure analysis concludes that the RF Exposure is FCC compliant. [ISED] WL18MODGB (WLAN) + GSM850 = 0.035 + 0.384 = 0.419 According to ISED RSS-102 Issue 5, the RF exposure analysis concludes that the RF Exposure is IC compliant.

RF Exposure Info

SPORTON INTERNATIONAL INC. Page Number : 1 of 8 TEL : 886-3-327-3456 Report Issued Date : Jan. 22, 2018 FAX : 886-3-328-4978 Report Version : Rev. 01 FCC ID : Z64-WL18SBMOD RF Exposure Evaluation Report Report No. : FA741320 RF Exposure Evaluation Report APPLICANT : Texas Instruments Incorporated EQUIPMENT : WiFi and Bluetooth Module BRAND NAME : Texas Instruments MODEL NAME : WL18MODGB MARKETING NAME : WL18xxMOD WiLink™ 8 Single-Band Combo Module – Wi-Fi® , Bluetooth® , and Bluetooth Low Energy (LE) FCC ID : Z64-WL18SBMOD STANDARD : 47 CFR Part 2.1091 We, SPORTON INTERNATIONAL INC., would like to declare that the device has been evaluated in accordance with 47 CFR Part 2.1091, and pass the limit. Without written approval of SPORTON INTERNATIONAL INC., the test report shall not be reproduced except in full. SPORTON INTERNATIONAL INC. No.52, Hwa Ya 1st Rd., Hwa Ya Technology Park, Kwei-Shan District, Taoyuan City, Taiwan (R.O.C.) Approved by: Jones Tsai / Manager Reviewed by: Eric Huang / Manager SPORTON INTERNATIONAL INC. Page Number : 2 of 8 TEL : 886-3-327-3456 Report Issued Date : Jan. 22, 2018 FAX : 886-3-328-4978 Report Version : Rev. 01 FCC ID : Z64-WL18SBMOD RF Exposure Evaluation Report Report No. : FA741320 Table of Contents 1. ADMINISTRATION DATA ........................................................................................................................... 4 1.1. Testing Laboratory ............................................................................................................................. 4 2. DESCRIPTION OF EQUIPMENT UNDER TEST (EUT) ............................................................................. 5 3. MAXIMUM RF AVERAGE OUTPUT POWER AMONG PRODUCTION UNITS ........................................ 6 4. RF EXPOSURE LIMIT INTRODUCTION .................................................................................................... 7 5. RADIO FREQUENCY RADIATION EXPOSURE EVALUATION ............................................................... 8 5.1. Standalone Power Density Calculation ............................................................................................. 8 5.2. Collocated Power Density Calculation ............................................................................................... 8 SPORTON INTERNATIONAL INC. Page Number : 3 of 8 TEL : 886-3-327-3456 Report Issued Date : Jan. 22, 2018 FAX : 886-3-328-4978 Report Version : Rev. 01 FCC ID : Z64-WL18SBMOD RF Exposure Evaluation Report Report No. : FA741320 Revision History REPORT NO. VERSION DESCRIPTION ISSUED DATE FA741320 Rev. 01 Initial issue of report Jan. 22, 2018 SPORTON INTERNATIONAL INC. Page Number : 4 of 8 TEL : 886-3-327-3456 Report Issued Date : Jan. 22, 2018 FAX : 886-3-328-4978 Report Version : Rev. 01 FCC ID : Z64-WL18SBMOD RF Exposure Evaluation Report Report No. : FA741320 1. Administration Data 1.1. Testing Laboratory Testing Laboratory Test Site SPORTON INTERNATIONAL INC. Test Site Location No.52, Hwa Ya 1st Rd., Hwa Ya Technology Park, Kwei-Shan District, Taoyuan City, Taiwan (R.O.C.) TEL: +886-3-327-3456 FAX: +886-3-328-4978 Applicant Company Name Texas Instruments Incorporated Address 12500 TI BLVD., Dallas Texas, 75243 Manufacturer Company Name Texas Instruments Incorporated Address 12500 TI BLVD., Dallas Texas, 75243 SPORTON INTERNATIONAL INC. Page Number : 5 of 8 TEL : 886-3-327-3456 Report Issued Date : Jan. 22, 2018 FAX : 886-3-328-4978 Report Version : Rev. 01 FCC ID : Z64-WL18SBMOD RF Exposure Evaluation Report Report No. : FA741320 2. Description of Equipment Under Test (EUT) Product Feature & Specification EUT Type WiFi and Bluetooth Module Brand Name Texas Instruments Model Name WL18MODGB Marketing Name WL18xxMOD WiLink™ 8 Single-Band Combo Module –Wi-Fi® , Bluetooth® , and Bluetooth Low Energy (LE) FCC ID Z64-WL18SBMOD Wireless Technology and Frequency Range WLAN 2.4GHz Band: 2412 MHz ~ 2462 MHz Bluetooth: 2402 MHz ~ 2480 MHz Mode 802.11b/g/n HT20/HT40 Bluetooth BR, EDR, LE v4.2 EUT Stage Production Unit Remark: The above EUT's information was declared by manufacturer. Please refer to the specifications or user's manual for more detailed description. Antenna information Brand Antenna Type Model 2.4GHz ~2.5GHz Gain 1 Ethertronics PCB 100423 -0.6dBi 2 LSR Rubber Whip / Dipole 001-0012 2dBi 3 080-0013 2dBi 4 080-0014 2dBi 5 PIFA 001-0016 2.5dBi 6 001-0021 2.5dBi 7 Laird PCB CAF94504 2dBi 8 CAF94505 2dBi 9 Pulse Chip W3006 3.2dBi 10 TDK CHIP ANT016008 2.5dBi SPORTON INTERNATIONAL INC. Page Number : 6 of 8 TEL : 886-3-327-3456 Report Issued Date : Jan. 22, 2018 FAX : 886-3-328-4978 Report Version : Rev. 01 FCC ID : Z64-WL18SBMOD RF Exposure Evaluation Report Report No. : FA741320 3. Maximum RF average output power among production units Bluetooth Mode / Band Average Power (dBm) BR/EDR LE 1Mbps 2Mbps 3Mbps 2.4 GHz Bluetooth 12 10 10 7 WLAN Band / Mode IEEE 802.11 Average Power (dBm) Ant 1 (SISO Mode) Ant 1+2 (MIMO Mode) 11b 11g HT20 HT40 HT20 2.4GHz Band 16.5 16.5 16.0 14.5 16.5 Note: 1. MIMO mode operation only supports 802.11n HT20 on this device. 2. MIMO Ant. 1+2 is a calculated result from sum of the power MIMO Ant. 1 and MIMO Ant.2 SPORTON INTERNATIONAL INC. Page Number : 7 of 8 TEL : 886-3-327-3456 Report Issued Date : Jan. 22, 2018 FAX : 886-3-328-4978 Report Version : Rev. 01 FCC ID : Z64-WL18SBMOD RF Exposure Evaluation Report Report No. : FA741320 4. RF Exposure Limit Introduction According to ANSI/IEEE C95.1-1992, the criteria listed in Table 1 shall be used to evaluate the environmental impact of human exposure to radio frequency (RF) radiation as specified in §1.1310. The MPE was calculated at 20 cm to show compliance with the power density limit. The following formula was used to calculate the Power Density: 퐒= 퐏퐆 ퟒ훑퐑 ퟐ Where: S = Power Density P = Output Power at Antenna Terminals G = Gain of Transmit Antenna (linear gain) R = Distance from Transmitting Antenna SPORTON INTERNATIONAL INC. Page Number : 8 of 8 TEL…

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RF Exposure Info

TEST REPORT No. I17D00184-MPE01 For Client : Gemalto M2M GmbH Production : LTE Data-Only SMT World-Module Model Name : PLS62-W FCC ID: QIPPLS62-W IC: 7830A-PLS62W Hardware Version: B2.1 Software Version: 01.000 Issued date: 2017-10-10 Note: The test results in this test report relate only to the devices specified in this report. This report shall not be reproduced except in full without the written approval of ECIT Shanghai. Test Laboratory: ECIT Shanghai, East China Institute of Telecommunications Add: 7F, G Area, No.668, Beijing East Road, Huangpu District, Shanghai, P. R. China Tel: (+86)-021-63843300, E-Mail: [email protected] SAR Test Report Reported No.: I17D00184-MPE01 East China Institute of Telecommunications Page Number : 2 of 16 TEL: +86 21 63843300FAX:+86 21 63843301 Report Issued Date :October 10, 2017 Revision Version Report Number Revision Date Memo I17D00184-MPE01 00 2017-9-15 Initial creation of test report I17D00184-MPE01 01 2017-10-10 second creation of test report SAR Test Report Reported No.: I17D00184-MPE01 East China Institute of Telecommunications Page Number : 3 of 16 TEL: +86 21 63843300FAX:+86 21 63843301 Report Issued Date :October 10, 2017 CONTENTS 1. TEST LABORATORY ........................................................................................................................ 5 1.1. TESTING LOCATION ........................................................................................................................ 5 1.2. PROJECT DATA .................................................................................................................................. 5 1.3. SIGNATURE ......................................................................................................................................... 5 2. CLIENT INFORMATION ................................................................................................................... 6 2.1. APPLICANT INFORMATION ........................................................................................................... 6 2.2. MANUFACTURER INFORMATION ................................................................................................ 6 3. EQUIPMENT UNDER TEST (EUT) AND ANCILLARY EQUIPMENT (AE) ............................. 7 3.1. ABOUT EUT ......................................................................................................................................... 7 3.2. INTERNAL IDENTIFICATION OF EUT USED DURING THE TEST ........................................ 7 3.3. INTERNAL IDENTIFICATION OF AE USED DURING THE TEST ........................................... 7 4. REFERENCE DOCUMENTS ............................................................................................................. 8 4.1. APPLICABLE STANDARDS .............................................................................................................. 8 4.2. TEST LIMITS ....................................................................................................................................... 8 5. TEST RESULTS ................................................................................................................................... 9 5.1. RF POWER OUTPUT .......................................................................................................................... 9 5.2. DUTY CYCLE ...................................................................................................................................... 9 5.3. CALCULATION INFORMATION .................................................................................................... 9 5.4. RESULT OF LTE BAND2 .................................................................................................................. 10 5.5. RESULT OF LTE BAND4 .................................................................................................................. 10 5.6. RESULT OF LTE BAND5 .................................................................................................................. 10 5.7. RESULT OF LTE BAND7 ................................................................................................................... 11 5.8. RESULT OF LTE BAND12 ................................................................................................................. 11 5.9. RESULT OF LTE BAND18 ................................................................................................................ 12 5.10. RESULT OF LTE BAND19 ................................................................................................................ 12 5.11. RESULT OF GSM850 ........................................................................................................................ 12 SAR Test Report Reported No.: I17D00184-MPE01 East China Institute of Telecommunications Page Number : 4 of 16 TEL: +86 21 63843300FAX:+86 21 63843301 Report Issued Date :October 10, 2017 5.12. RESULT OF GSM1900 ...................................................................................................................... 13 5.13. RESULT OF WCDMA BAND2 ......................................................................................................... 13 5.14. RESULT OF WCDMA BAND4 ......................................................................................................... 13 5.15. RESULT OF WCDMA BAND5 ......................................................................................................... 14 6. REFERENCE DOCUMENTS FOR IC ............................................................................................ 15 6.1. APPLICABLE STANDARDS ............................................................................................................ 15 6.2. TEST LIMITS ..................................................................................................................................... 15 6.3. RF POWER OUTPUT .............…

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Test Report

Document Number: JPD-TR-20221-0 TÜV SÜD Japan Ltd. Page 2 of 20 Contents 1Summary of Test .................................................................................................................... 3 1.1Modification history of the test report ........................................................................................ 3 1.2Standards ................................................................................................................................ 3 1.3Test methods ........................................................................................................................... 3 1.4Deviation from standards.......................................................................................................... 3 1.5List of applied test(s) of the EUT............................................................................................... 3 1.6Test information ....................................................................................................................... 3 1.7Test set up ............................................................................................................................... 3 1.8Test period ............................................................................................................................... 3 2Equipment Under Test ........................................................................................................... 4 2.1EUT information ....................................................................................................................... 4 2.2Modification to the EUT ............................................................................................................ 5 2.3Variation of family model(s) ...................................................................................................... 5 2.4Description of test mode ........................................................................................................... 5 3Configuration of Equipment .................................................................................................. 6 3.1Equipment used ....................................................................................................................... 6 3.2Cable(s) used........................................................................................................................... 6 3.3System configuration ................................................................................................................ 6 4Test Result ............................................................................................................................. 7 4.1Effective Radiated Power ......................................................................................................... 7 4.2Radiated Emissions and Harmonic Emissions ........................................................................ 11 5Measurement Uncertainty .................................................................................................... 17 6Laboratory Information ........................................................................................................ 19 Appendix A. Test Equipment ............................................................................................................... 20 Document Number: JPD-TR-20221-0 TÜV SÜD Japan Ltd. Page 3 of 20 1Summary of Test 1.1Modification history of the test report Document NumberModification HistoryIssue Date JPD-TR-20221-0First Issue Refer to the cover page 1.2Standards CFR47 FCC Part 22 Subpart H 1.3Test methods KDB 971168 D01 Power Meas License Digital Systems v03r01 ANSI/TIA/EIA-603-E-2016 ANSI C63.26-2015 1.4Deviation from standards None 1.5List of applied test(s) of the EUT Test item section Test itemConditionResultRemark 2.1046Conducted Output PowerConductedN/A*1 22.913(a)Effective Radiated PowerRadiatedPASS- 22.917(a) 2.1049 Occupied BandwidthConductedN/A*1 22.917(a) 2.1051 Band Edge Spurious and Harmonic at Antenna Terminal ConductedN/A*1 22.917(a) 2.1053 Radiated emissions and Harmonic Emissions RadiatedPASS- 22.355 2.1055 Frequency StabilityConductedN/A*1 *1:This product has a certified module inside it. (FCC ID: QIPPLS62-W) Therefore, it was only measured radiated test. 1.6Test information None 1.7Test set up Table-top 1.8Test period 13-November -2020 - 19-November -2020 Document Number: JPD-TR-20221-0 TÜV SÜD Japan Ltd. Page 4 of 20 2Equipment Under Test 2.1EUT information ApplicantJRC Mobility Inc. NAKANO CENTRAL PARK EAST,10-1, Nakano 4-chome, Nakano-ku, Tokyo 164-8570, Japan Phone: +81-26-214-0267 Fax: +81-26-214-5779 Equipment Under Test (EUT) IT Controller Model numberJRN-430K Serial numberN/A Trade nameJRC Mobility Number of sample(s)1 EUT conditionPre-Production Power ratingBattery: DC 24 V Size(W) 166.4 × (D) 43.6 × (H) 220.0 mm EnvironmentIndoor use Terminal limitation-30 ̊C to 70 ̊C Hardware version Software version Firmware version EE00-JRN-430K 1.00 Not applicable RF Specification Frequency of OperationUp Link GSM850: 824.2-848.8 MHz WCDMA Band V: 826.4-846.6 MHz LTE Band V: 824.7-848.3 MHz Down Link GSM850: 869.2-893.8 MHz WCDMA Band V: 871.4-891.6 MHz LTE Band V: 869.7-893.3 MHz Modulation type GSM850: GMSK WCDMA Band V: QPSK, 16QAM LTE Band V: QPSK, 16QAM Emission designatorGSM850: 247KGXW WCDMA Band V: 4M09F9W LTE Band V: BW 1.4M QPSK: 1M09G7D, 16QAM: 1M09W7D BW 3M QPSK: 2M69G7D, 16QAM: 2M69W7D BW 5M QPSK: 4M47G7D, 16QAM: 4M47W7D BW 10M QPSK: 9M04G7D, 16QAM: 8M94W7D Document Number: JPD-TR-20221-0 TÜV SÜD Japan Ltd. Page 5 of 20 Effective Radiated Power (E.R.P.) GSM850: 3.1623 W (35.0 dBm) WCDMA Band V: 0.2138 W (23.3 dBm) LTE Band V: 0.123 W (20.9 dBm) Antenna typeExternal antenna Antenna gain GSM850: 1 dBi WCDMA Band V: 1 dBi LTE Band V: 1 dBi 2.2Modification to the EUT The table below details modifications made to the EUT during the test project. Modification State Description of Modificatio…

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Test Report

Document Number: JPD-TR-20222-0 TÜV SÜD Japan Ltd. Page 2 of 23 Contents 1Summary of Test .................................................................................................................... 3 1.1Modification history of the test report ........................................................................................ 3 1.2Standards ................................................................................................................................ 3 1.3Test methods ..................................................................…

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Contact Information

Applicant

Takahito Aso(Group Manager)
[email protected]+81 26 214 0267Fax: +81 26 214 5779

Test Firm

TUV SUD Japan Ltd. Yonezawa Testing CenterHiroaki Suzuki
[email protected]81-238-40-1681Fax: 81-238-40-1240

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
2327704 MHz - 711 MHz146.00 mW9M04G7D0.1 ppm
Confidentiality
Long Term
Grant Notes
Output Power listed is conducted. The antenna used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons. This device has 1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz and 20 MHz bandwidth modes for LTE Bands 2 and 4 and 1.4 MHz, 3 MHz, 5 MHz and 10 MHz bandwidth modes for LTE Band 5 and 12. Device is co-located with FCC ID: Z64-WL18SBMOD.

Other Applications from JRC Mobility Inc.

IT controller for asset tracking - FCC ID 2AX5HJRN-260K - JRC Mobility Inc.
2AX5HJRN-260K

IT controller for asset tracking

Sep 28, 2023

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter