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2AAQS-ISP1807Bluetooth Low Energy Module

Insight SiP
Bluetooth Low Energy Module - FCC ID 2AAQS-ISP1807 - Insight SiP
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Feb 26, 2020
Application Purpose
Original Equipment
Date of Application
Feb 26, 2020
Equipment Note
Bluetooth Low Energy Module
Frequency Range
2402.00000000 - 2480.00000000
Company
Insight SiP
Country
France

Documents & Files

Select a file to view

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

February 18, 2020 Page 1/26 Document Ref: isp_ble_DS1807_R9.docx Insight SiP– Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France –www.insightsip.com The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission. Specification subject to change without notice. ISP1807 Built-in Antenna Low Energy Module BT 5 Long Range, Zigbee, Thread, ANT+ This ultra-small LGA module, 8 x 8 x 1 mm, is based on the nRF52840 Chip. Its powerful Cortexβ„’ M4 CPU, flash and RAM memory combined with an optimized antenna offers the perfect solution for Bluetooth connectivity. The solution is best in class for RF performance and low power consumption. Long range and multiple digital and analogue interfaces give optimum flexibility for sensor integration. Applications Advanced Wearables: watches, fitness devices, wireless payment wearables, connected health, augmented reality applications ... Smart Home sensors and controllers Industrial IoT sensors and controllers Advanced remote controls Remote &Gaming controllers Beacons Certifications Bluetooth SIG certified CE certified FCC, IC certification pending TELEC, KCC certified RoHS and Reach compliant Conflict Mineral Declaration Key Features 2.4GHz Ultra Low Power RF Transceiver Full Bluetooth 5 – long range stack ANT/ANT+ stack 2.4 GHz proprietary stack BT Mesh, Zigbee, Thread stacks available NFC-A Tag for OOB pairing Fully integrated RF matching and Antenna Integrated 32 MHz& 32kHZ Clock DC/DC converter with loading circuit Based on Nordic Semiconductor nRF52 32-bit ARM Cortex M4F CPU ARM CryptoCell 310 1 MB Flash / 256 kB SRAM Configurable 46 GPIOs including 8 ADC Many interfaces USB, SPI, UART, PDM, I2C Power supply 1.7 to 3.6V, USB supply 5V Very small size 8.0 x 8.0 x 1.0 mm Temperature -40 to +85 Β°C Pin to Pin compatible with ISP1507 February 18, 2020 Page 2/26 Document Ref: isp_ble_DS1807_R9.docx Insight SiP– Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France –www.insightsip.com The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission. Specification subject to change without notice. BLE MODULE ISP1807 Revision History Revision Date Ref Change Description R0 23/11/2017 cr pg Preliminary release R1 12/12/2017 cr pg Engineering samples release R2 20/04/2018 cr pg Section 5.2 – FW tool correction and update Section 6.5 – Extension name change R3 22/08/2018 cr pg Section 3 – Typo error correction R4 12/12/2018 cr pg Section 2.9 – Schematic updated R5 18/02/2019 cr pg Definitive release R6 14/03/2019 cr pg Correction VCC / VCCH No High-Power Mode availability R7 06/06/2019 mm pg Change to MSL3 R8 08/11/2019 mm pg Section 4.1 – Mechanical dimension precision Section 8 – Certification list update R9 18/02/2020 mm pg February 18, 2020 Page 3/26 Document Ref: isp_ble_DS1807_R9.docx Insight SiP– Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France –www.insightsip.com The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission. Specification subject to change without notice. BLE MODULE ISP1807 Contents 1.Block Diagram ........................................................................................................................................ 4 2.Specifications......................................................................................................................................... 5 2.1. Important Notice ............................................................................................................................ 5 2.2. Absolute Maximum Ratings ........................................................................................................... 5 2.3. Operating Conditions .................................................................................................................... 5 2.4. Power Consumption ...................................................................................................................... 6 2.5. Clock Sources ............................................................................................................................... 6 2.6. Radio Specifications ...................................................................................................................... 6 2.7. Range Measurement ..................................................................................................................... 7 2.8. Antenna Performance ................................................................................................................... 7 2.9. Electrical Schematic ...................................................................................................................... 9 3.Pin Description .................................................................................................................................... 10 4.Mechanical Outlines ............................................................................................................................ 13 4.1. Mechanical Dimensions .............................................................................................................. 13 4.2. SMT Assembly Guidelines .......................................................................................................... 15 4.3. Antenna Keep-Out Zone ............................................................................................................. 15 5.Product Development Tools .............................................................................................................. 16 5.1. Hardware .................................................................................................................................... 16 5.2. Firmware ................…

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External Photos

FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. View 1 <Module> FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. View 2

ID Label/Location Info

FCC ID: 2AAQS-ISP1807 Copyright β’Έ 2020 DT&C Co., Ltd. SAMPLE LABEL & LOCATION LABELLING REQUIREMENTS The Label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time of purchase. - The FCC label shown is representative of the label that will appear on the radio when in production. Other information may also be included on this label.

Internal Photos

FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. View 1 FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. View 2 Antenna

RF Exposure Info

FCC ID: Date: RF feauture Mode Transmitting Frequency(MHz) Test separation distance (mm) ANT Gain (dBi) Max. power with tune-up tolerance (dBm) Note1 Max. power with tune-up tolerance (mW) Power thresholds SAR test exclusion thresholds BT BLE(1Mbps) 2480.00 5.0 0.60 8.38 6.8865 2.17 3.00 Note1. Conclusion : 2AAQS-ISP1807February 24, 2020 Please refer to the user manua l on page 6.(Max tune-up power) Standalone SAR test exclusion considerations SAR evaluation for general popul ation exposure conditions by me asurement or numerical simulation is not required KDB 447498 D01 clasue 4.3.1 Step 1) SAR test exclusion thresho lds for 100MHz to 6GHz at test separationn distances ≀ 50 mm [ ( max. power of channel, inclu ding tune-up tolerance, mW ) / ( min. test separation distance, mm ) ] Β· [ √f(GHz) ] ≀ 3.0 for 1g SAR and ≀ 7.5 for 10g extremity SAR Sample Calculation = [ ( 6.8865mW / 5mm ) ] X [ √2.48GHz ] = 2.17Note. The calculation result was rounded to two decimal place f or comparison.

Test Report

Report No.: DRTFCC2002-0049 FCC ID: 2AAQS-ISP1807 TRF-RF-238(05)170516 Prohibits the copying and re-issue of this report without DT&C approval. Pages: 2 / 58 Test Report Version Test Report No. Date Description Revised By Reviewed by DRTFCC2002-0049 Feb. 24, 2020 Initial issue JaeHyeok Bang JaeJin Lee Report No.: DRTFCC2002-0049 FCC ID: 2AAQS-ISP1807 TRF-RF-238(05)170516 Prohibits the copying and re-issue of this report without DT&C approval. Pages: 3 / 58 Table of Contents 1. General Information .................................................................................... 4 1.1 Testing Laboratory ........................................................................................................... 4 1.2 Test Environment ............................................................................................................. 4 1.3 Measurement Uncertainty ................................................................................................ 4 1.4 Details of Applicant .......................................................................................................... 5 1.5 Description of EUT ........................................................................................................... 5 1.6 Declaration by the applicant / manufacturer ................................................................. 5 1.7 Test Equipment List ......................................................................................................... 6 1.8 Summary of Test Results ................................................................................................ 7 2. Test Methodology ........................................................................................ 8 2.1 EUT Configuration ............................................................................................................ 8 2.2 EUT Exercise ..................................................................................................................... 8 2.3 General Test Procedures ................................................................................................. 8 2.4 Description of Test Modes ............................................................................................... 8 2.5 Instrument Calibration ..................................................................................................... 8 3. Test Result ................................................................................................... 9 3.1 Maximum Peak Conducted Output Power ..................................................................... 9 3.1.1 Test Setup ..................................................................................................................... 9 3.1.2 Test Procedures ........................................................................................................... 9 3.1.3 Test Results .................................................................................................................. 9 3.2 6 dB Bandwidth Measurement ...................................................................................... 14 3.2.1 Test Setup ................................................................................................................... 14 3.2.2 Test Procedures ......................................................................................................... 14 3.2.3 Test Results ................................................................................................................ 14 3.3 Maximum Power Spectral Density. ............................................................................... 19 3.3.1 Test Setup ................................................................................................................... 19 3.3.2 Test Procedures ......................................................................................................... 19 3.3.3 Test Results ................................................................................................................ 19 3.4 Unwanted Emissions (Conducted) ............................................................................... 24 3.4.1 Test Setup ................................................................................................................... 24 3.4.2 Test Procedures ......................................................................................................... 24 3.4.3 Test Results ................................................................................................................ 25 3.5 Unwanted Emissions (Radiated) ................................................................................... 41 3.5.1 Test Setup ................................................................................................................... 42 3.5.2 Test Procedures ......................................................................................................... 42 3.5.3 Test Results ................................................................................................................ 43 3.6 Power line Conducted Emissions ................................................................................. 45 3.6.1 Test Setup ................................................................................................................... 45 3.6.2 Test Procedures ......................................................................................................... 45 3.6.3 Test Results ................................................................................................................ 46 3.7 Occupied Bandwidth ...................................................................................................... 48 3.7.1 Test Setup ................................................................................................................... 48 3.7.2 Test Procedures ..............................................................................…

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Test Setup Photos

FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. Test Setup Photo of Radiated Measurement EUT Position: X-axis EUT Position: Y-axis EUT Position: Z-axis FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. Test Setup Photo of Radiated Measurement (0.009 ~ 30MHz) FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. Test Setup Photo of Radiated Measurement (below 1000MHz)) FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. Test Setup Photo of Radiated Measurement (Above 1GHz) FCC ID : 2AAQS-ISP1807 Copyright β’Έ 2020, DT&C Co., Ltd. Test Setup photo of Conducted Emissions

Contact Information

Applicant

Michel Beghin(Director)
[email protected]+33 493 008 880Fax: +33 493 008 850

Test Firm

Dt&C Co., Ltd.Lee Sang-Wook
[email protected]82-31-321-2664Fax: 82-31-321-1664

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz7.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Single Modular Approval. Power listed is conducted. Approval is limited to OEM installation only. This module can only be used with the antenna design in strict compliance with the OEM instructions provided. Co-location of this module with other transmitters that operate simultaneously is required to be evaluated using the FCC multi-transmitter procedures. This grant is valid only when the device is sold to OEM integrators and the OEM integrators are instructed to ensure that the end user has no manual instructions to remove or install the device. Separate approval is required for all other operating configurations, including different antenna configurations.

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