
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User Guide CUG00029-EN-A01 USER GUIDE Access point AP2-LAN This device complies with FCC radiation exposure limits set forth for general population. This device must not be co-located or operating in conjunction with any other antenna or transmitter. User Guide CUG00029-EN-A01 IJINUS - 25 ZA de Kervidanou 3, 29300 MELLAC β France : +33 2 98 09 03 30 β Customer Service: +33 2 98 09 03 32 / [email protected] SUMMARY 1 Introduction .................................................................................................................................................................... 3 2 Connection to the internal serial access point using the LAN network .......................................................................... 3 3 Warning to users in the United States ............................................................................................................................ 6 4 Warning to users in the Canada ..................................................................................................................................... 6 5 Revision of the document ............................................................................................................................................... 7 Access point AP2-LAN User Guide CUG00029-EN-A01 IJINUS - 25 ZA de Kervidanou 3, 29300 MELLAC β France : +33 2 98 09 03 30 β Customer Service: +33 2 98 09 03 32 / [email protected] 3 1 Introduction This device is a radio access point used to transfers data into remote sensors nearby via a LAN connection. A serial to ethernet interface is embedded in the device. We provide to our clients a command list or a software library, to drive the access point. They are able to manage it with their own software and paired the sensors (temperature recorders, loggers, sensors). 2 Connection to the internal serial access point using the LAN network The AP2-LAN radio access point contains an Ijinus radio board (T2004) and a Moxa NE-4120s RS-232 Ethernet interface. The moxa board allows RS232 communication through a LAN Network. A COM port will be created and will be used for serial link operations. - Install the Moxa Network Enabler Administrator software It can be downloaded here : https://www.moxa.com/Moxa/media/PDIM/S100000224/moxa-ne-4100-series-network-enabler- administrator-utility-v2.11.zip This tool allows the discovery of the NE4120s on the network and its configuration. - Set the NE-4200s has shown below : Serial setting: 115200bps β N-8-1 β No flow control Access point AP2-LAN User Guide CUG00029-EN-A01 IJINUS - 25 ZA de Kervidanou 3, 29300 MELLAC β France : +33 2 98 09 03 30 β Customer Service: +33 2 98 09 03 32 / [email protected] 4 Operation mode : RealCOM Mode - Install Moxa driver manager It can be downloaded here : https://www.moxa.com/Moxa/media/PDIM/S100000224/moxa-windows-driver-manager-driver-v3.0.zip This tool allows the creation of a COM Port on your desktop. This COM Port will be used to connect the T2004 with Hyperterminal (or equivalent). The port is added using a search the Add button and then the search utility : Access point AP2-LAN User Guide CUG00029-EN-A01 IJINUS - 25 ZA de Kervidanou 3, 29300 MELLAC β France : +33 2 98 09 03 30 β Customer Service: +33 2 98 09 03 32 / [email protected] 5 Set a number to the COM Port and configure it : The created COM port has been added in Windows peripheral manager: Access point AP2-LAN User Guide CUG00029-EN-A01 IJINUS - 25 ZA de Kervidanou 3, 29300 MELLAC β France : +33 2 98 09 03 30 β Customer Service: +33 2 98 09 03 32 / [email protected] 6 3 Warning to users in the United States Caution: the user that changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. "NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instruction, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception which can be determined by turning the equipment off and on, the user is encouraged to try to correct interference by one or more of the following measures: - Reorient or relocate the receiving antenna. - Increase the separation between the equipment and receiver. - Connect the equipment into an outlet on circuit different from that to which the receiver is connected. - Consult the dealer or an experienced radio/TV technician for help. This device complies with FCC RF radiation exposure limits set forth for general population. This device must be installed to provide a separation distance of at least 20cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. 4 Warning to users in the Canada This device complies with Industry Canada license-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Under Industry Canada regulations, this radio transmitter may only operate using an antenna of a type and maximum (or lesser) gain approved for the transmitter by Industry Canada. To reduce potential radio interference to other users, the antenna type and its gain should be so chosen that the equivalent isotropically radiated power (e.i.r.p.) is not more than that necessary for successful communication. This device complies with Industry Canada RF radiation exposure limits set forth for general population (uncontrolled exposβ¦
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Technical Documentation External Photos FCC ID SE6B001 Publication History Version Date Modification description 01 November 26, 2019 Creation of the document Technical Documentation External Photos Version : 01 Page 2/7 AP2-LAN: Front View Technical Documentation External Photos Version : 01 Page 3/7 AP2-LAN: Rear View Technical Documentation External Photos Version : 01 Page 4/7 AP2-LAN: Right side View Technical Documentation External Photos Version : 01 Page 5/7 AP2-LAN: Left side View Technical Documentation External Photos Version : 01 Page 6/7 AP2-LAN: Top View Technical Documentation External Photos Version : 01 Page 7/7 AP2-LAN: Bottom View
Technical Documentation Label Location FCC ID SE6B001 Publication History Version Date Modification description 01 November 26, 2019 Creation of the document Technical Documentation Label Location Version : 01 Page 2/2 FCC Label location for AP2-LAN: AP2-LAN: Label Location View
Technical Documentation Label FCC ID SE6B001 Publication History Version Date Modification description 01 November 26, 2019 Creation of the document Technical Documentation Label Version : 01 Page 2/2 AP2-LAN β FCC Label size: Size = 51x29 mm Label: Photo of product with label:
Technical Documentation Internal Photos FCC ID SE6B001 Publication History Version Date Modification description 01 November 26, 2019 Creation of the document Technical Documentation Internal Photos Version : 01 Page 2/7 AP2-LAN: Device Open View Technical Documentation Internal Photos Version : 01 Page 3/7 AP2-LAN: Device Open View (2) Technical Documentation Internal Photos Version : 01 Page 4/7 AP2-LAN (Motherboard): Electronic Card Recto View (1) Technical Documentation Internal Photos Version : 01 Page 5/7 AP2-LAN (Motherboard): Electronic Card Verso View (1) Technical Documentation Internal Photos Version : 01 Page 6/7 AP2-LAN (Moxa board NE-4120S): Electronic Card Recto View (1) Technical Documentation Internal Photos Version : 01 Page 7/7 AP2-LAN (Moxa board NE-4120S): Electronic Card Verso View (1)
Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at the antenna terminal:10,27(dBm) Maximum peak output power at the antenna terminal:10,64143018(mW) Antenna gain(typical):0(dBi) Maximum antenna gain:1(numeric) Prediction distance:20(cm) Prediction frequency:915(MHz) MPE limit for uncontrolled exposure at prediction frequency:1(mW/cm^2) Power densit y at prediction frequency: 0,002117(mW/cm^2) Maximum allowable antenna gain:26,74269855(dBi) IJINUS Model: AP2-LAN FCC ID: SE6B001 2 4R PG S ο° ο½
902MHz-928MHz Template: Release July 3 rd , 2019 This document shall not be reproduced, except in full, without the written approval of the LCIE. This document contains results related only to the items tested. It does not imply the conformity of the whole production to the items tested. Unless otherwise specified or rule defined by the test method, the decision of conformity doesnβt take into account the uncertainty of measures.This document doesnβt anticipate any certification decision. TEST REPORT NΒ°: 163636-742945-A Version : 01 Subject Radio spectrum matters tests according to standards: 47 CFR Part 15.247 & RSS-247 Issue 2 & RSS-Gen Issue 5ο Issued to IJINUS 25 ZA de Kervidanou 3 29300 - MELLAC FRANCE Apparatus under test ο Product Ethernet Radio Access Point ο Trade mark IJINUS ο Manufacturer IJINUS ο Model under test AP2-LAN ο Serial number IJT2004-0000 2132 ο FCC ID SE6B001 ο IC 10983A-B001 Conclusion See Test Program chapter Test date : October 14, 2019 to June 30, 2020 Test location Fontenay Aux Roses Test Site 6230B-1 Composition of document 47 pages Document issued on June 30, 2020 Written by : Approved by : Julien Palard Arnaud FAYETTE Tests operator Technical manager TEST REPORT NΒ° 163636-742945-A Version : 01 Page 2/47 PUBLICATION HISTORY Each new edition of this test report replaces and cancels the previous edition. The control of the old editions of report is under responsibility of client. Version Date Author Modification 01 30/06/2020 J. PALARD Creation of the document Date of receipt of test item : 08/10/2019 TEST REPORT NΒ° 163636-742945-A Version : 01 Page 3/47 SUMMARY 1. TEST PROGRAM ............................................................................................................................... 4 2. EQUIPMENT UNDER TEST: CONFIGURATION (DECLARED BY PROVIDER) ................................ 5 3. OCCUPIED BANDWIDTH ................................................................................................................. 10 4. 6DB EMISSION BANDWIDTH .......................................................................................................... 13 5. DUTY CYCLE ................................................................................................................................... 16 6. MAXIMUM CONDUCTED OUTPUT POWER ................................................................................... 19 7. POWER SPECTRAL DENSITY ........................................................................................................ 22 8. UNWANTED EMISSIONS INTO NON-RESTRICTED FREQUENCY BANDS AT THE BAND EDGE 25 9. UNWANTED EMISSIONS INTO NON-RESTRICTED FREQUENCY BANDS ................................... 28 10. AC POWER LINE CONDUCTED EMISSIONS.................................................................................. 32 11. UNWANTED EMISSIONS IN RESTRICTED FREQUENCY BANDS ................................................ 40 12. UNCERTAINTIES CHART ................................................................................................................ 47 TEST REPORT NΒ° 163636-742945-A Version : 01 Page 4/47 1. TEST PROGRAM References ο 47 CFR Part 15.247 ο RSS 247 Issue 2 ο RSS Gen Issue 5 ο KDB 558074 D01 DTS Meas Guidance v05r02 ο ANSI C63.10-2013 Radio requirement: Clause (47CFR Part 15.247 & RSS-247 Issue 2 & RSS-Gen Issue 5) Test Description Test result - Comments Occupied Bandwidth ο ο PASS ο£ FAIL ο£ NA ο£ NP(1) 6dB Bandwidth ο ο PASS ο£ FAIL ο£ NA() ο£ NP(1) Duty Cycle ο ο PASS ο£ FAIL ο£ NA ο£ NP(1) Maximum Conducted Output Power ο ο PASS ο£ FAIL ο£ NA ο£ NP(1) Power Spectral Density ο ο PASS ο£ FAIL ο£ NA ο£ NP(1) Conducted Spurious Emission at the Band Edge ο ο PASS ο£ FAIL ο£ NA() ο£ NP(1) Unwanted Emissions into Non-Restricted Frequency Bands ο ο PASS ο£ FAIL ο£ NA() ο£ NP(1) AC Power Line Conducted Emission ο ο PASS ο£ FAIL ο£ NA(2) ο£ NP(1) Unwanted Emissions into Restricted Frequency Bands ο ο PASS ο£ FAIL ο£ NA ο£ NP(1) Receiver Radiated emissions ο ο PASS ο£ FAIL ο£ NA ο£ NP(1) This table is a summary of test report, see conclusion of each clause of this test report for detail. (1): Limited program (2): EUT not directly or indirectly connected to the AC Power Public Network PASS: EUT complies with standardβs requirement FAIL: EUT does not comply with standardβs requirement NA: Not Applicable NP: Test Not Performed TEST REPORT NΒ° 163636-742945-A Version : 01 Page 5/47 2. EQUIPMENT UNDER TEST: CONFIGURATION (DECLARED BY PROVIDER) 2.1. HARDWARE IDENTIFICATION (EUT AND AUXILIARIES): Equipment under test (EUT): IJINUS AP2-LAN Serial Number: IJT2004-0000 2132 Equipment Under Test TEST REPORT NΒ° 163636-742945-A Version : 01 Page 6/47 Auxiliairy Equipment Inputs/outputs - Cable: Access Type Length used (m) Declared <3m Shielded Under test Comments 1 Power supply cable - ο ο£ ο - 2 RJ45 communication cable - ο ο£ ο - Auxiliary equipment used during test: Type Reference Sn Comments Laptop LENOVO L460 - - Electronics card + USB cable - - To set the product on permanent transmission TEST REPORT NΒ° 163636-742945-A Version : 01 Page 7/47 Equipment information: Type: Frequency band: [902 β 928] MHz Number of Channel: 1 Spacing channel: - Channel bandwidth: 0,6 MHz Antenna Type: ο Integral ο£ External ο£ Dedicated Antenna connector: ο£ Yes ο No ο£ Temporary for test Transmit chains: ο 1 ο£ 2 Receiver chains ο 1 ο£ 2 Type of equipment: ο Stand-alone ο£ Plug-in ο£ Combined Ad-Hoc mode: ο£ Yes ο No Duty cycle: ο Continuous duty ο£ Intermittent duty ο£ 100% duty Equipment type: ο Production model ο£ Pre-production model Operating temperature range: Tmin: ο£ -20Β°C ο£ 0Β°C ο -40Β°C Tnom: 20Β°C Tmax: ο£ 35Β°C ο£ 55Β°C ο 85Β°C Type of power source: ο AC power supply ο£ DC power supply ο£ Battery Operating voltage range: Vnom: ο 120V/60Hz ο£ Vdc Antenna Characteristic Antenna assembly Gain (dBi) Frequency Band (MHz) Impedance(β¦) 1 0 902-928 50 CHANNEL PLAN Channel Frequency (MHz) Cnom 915 Modulation Type Worst Case Modulation GFSK ο TEST REPORT NΒ° 163636-742945-A Version : 01 Pβ¦
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Technical Documentation Test Set Up Photos FCC ID SE6B001 Publication History Version Date Modification description 01 August 13, 2020 Creation of the document Technical Documentation Test Set Up Photos Version : 01 Page 2/4 Conducted emission measurement Technical Documentation Test Set Up Photos Version : 01 Page 3/4 Radiated Emission measurement Technical Documentation Test Set Up Photos Version : 01 Page 4/4 Radiated Emission measurement
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 915 MHz - 915 MHz | 11.00 mW |

DATALOGGER & PRESSURE RECORDER
Equipment Class
DTS - Digital Transmission System
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Equipment Class
DTS - Digital Transmission System
TEMPERATURE DATA LOGGER LT7
Equipment Class
DTS - Digital Transmission System
Access Point
Equipment Class
DTS - Digital Transmission System
Wiji Wireless sensor/logger
Equipment Class
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