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SMQSA-20Bluetooth Module

EDAN INSTRUMENTS, INC.
Bluetooth Module - FCC ID SMQSA-20 - EDAN INSTRUMENTS, INC.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Nov 09, 2022
Application Purpose
Original Equipment
Date of Application
Nov 09, 2022
Equipment Note
Bluetooth Module
Frequency Range
2402.00000000 - 2480.00000000
Company
EDAN INSTRUMENTS, INC.
Country
China

Documents & Files

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Users Manual

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Attestation Statements

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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

1 Bluetooth Module Data Sheet Docum ent Type: Document Version: V1.1 Release Date: November 12. 2021 SA-20 2 Release Record Version Number Release Date Comments Revision 1.0 2021-02-25 First Release 3 1. INTRODUCTION FSC-BT816S is a fully integrated Bluetooth module that complies with Bluetooth 4.2 dual mode protocols(BR/EDR/LE). It provides several interfaces such as UART, I 2 C, PCM, AIO, PIO, etc,which can customized different applications. FSC-BT816S supports various profiles. It integrates MCU, Baseband controller, RF, etc. in a small package, so the designers can have better flexibilities for the product shapes. FSC-BT816S can be controlled by UART port or other interfaces. Please refer to Feasycom software design guide for the interfacing protocol. 1.1 Block Diagram Figure 1 GND 3.3V 4.2 dual mode BT controller ARM Cortex-M0 26MHZ Crystal ANT UART I 2 C PIO/AIO PCM/I 2 S RESET 1.8V LDO 32.768KHZ Crystal *Optional External antenna 4 1.2 Feature ◆ Fully qualified Bluetooth 4.2/3.0/2.1/2.0/1.2/1.1 ◆ Postage stamp sized form factor. ◆ Low power. ◆ Class 1.5 support(high output power). ◆ The default UART Baud rate is 115.2Kbps and can support from 1200bps up to 921Kbps,. ◆ UART, I 2 C , PCM/I 2 S data connection interfaces. ◆ Embedded Bluetooth stack profiles support(requires no host stack): SPP, HID, and all LE protocols. 1.3 Application ◆ Smart Watch and Bluetooth Bracelet ◆ Health & Medical devices ◆ Measurement and monitoring systems ◆ Industrial sensors and controls ◆ Asset tracking 1.4 Module picture as below showing Figure 2 5 2. GENERAL SPECIFICATION General Specification Chipset CC2564C Product ID Dimension 13mm(W) x 26.9mm(L) x 2.0mm(H) (Tolerance: ±0.2mm) Bluetooth Specification Bluetooth V4.2 (Dual Mode) Power Supply 3.3 Volt DC Output Power 5.06 dBm Sensitivity [email protected]%BER Frequency Band 2.402GHz -2.480GHz ISM band Modulation FHSS,GFSK,DPSK,DQPSK Baseband Crystal OSC 26MHz Hopping & channels 1600hops/sec, 1MHz channel space,79 Channels(BT 4.2 to 2MHz channel space) RF Input Impedance 50 ohms Antenna PCB antenna Interface Data: UART (Standard), I 2 C Audio: PCM/I 2 S Others: PIO, AIO, Touch sensor, PWM. Profile SPP, GATT(BLE Standard) MFI, Airsync, ANCS, iBeacon, HID Temperature -40ºC to +85ºC Humidity 10%~95% Non-Condensing Environmental RoHS Compliant MSL grade: MSL 3 ESD grade Human Body Model: Class-2 Machine Model: Class-B Table 1 SMQSA-20 6 3. PHYSICAL CHARACTERISTIC  Dimension: 13mm(W) x 26.9mm(L) x 2.0mm(H) Tolerance: ±0.2mm  Module size: 13mm X 26.9mm Tolerance: ±0.2mm  Pad size: 1mmX0.8mm Tolerance: ±0.2mm  Pad pitch: 1.5mm Tolerance: ±0.1mm Figure 3 MAX 7 4. PIN DEFINITION DESCRIPTIONS `` 21 14151617181920 13 12 11 10 9 8 7 6 5 4 3 33 22 23 24 25 26 27 28 29 30 UART_TX PIO0 PIO4 UART_RTS PCM_CLK PCM_OUT PCM_IN PCM_SYNC Tran/AIO0 Disc/AIO1 RESET 31 32 2 1 34 UART_RX UART_CTS VDD_3V3 GND BOOT0 NC SWCLK SWDIO PIO12 PIO13 PIO14 GND GND PIO1 PIO2 PIO3 PIO5 PIO6 PIO7 PIO8 PIO9 PIO10 PIO11 35 36 GND EXT_ANT Figure 4: FSC-BT816S PIN Diagram Pin NO. Pin Name Type Pin Descriptions 1 UART_TX CMOS output UART data output 2 UART_RX CMOS input UART data input 3 UART_CTS CMOS input UART clear to send active low Alternative Function: Programmable input/output line 4 UART_RTS CMOS output UART request to send active low Alternative Function: Programmable input/output line 5 PCM_CLK Bi-directional Synchronous data clock(Operating voltage level: 1.8V) 6 PCM_OUT CMOS output Synchronous data output(Operating voltage level: 1.8V) 7 PCM_IN CMOS input Synchronous data input(Operating voltage level: 1.8V) 8 PCM_SYNC Bi-directional Synchronous data sync(Operating voltage level: 1.8V) 8 9 Tran/AIO0 I/O Alternative Function 1: Analogue programmable I/O line. Alternative Function 2: Host MCU change UART transmission mode. When bluetooth connection established, H = instruction mode L = throughput mode 10 Disc/AIO1 I/O Alternative Function 1: Analogue programmable I/O line. Alternative Function 2: Host MCU disconnect bluetooth. When bluetooth connection established, a rising edge of the PIN will cause disconnection with remote device. 11 RESET CMOS input Reset if low. Input debounced so must be low for >5ms to cause a reset. 12 VDD_3V3 VDD Power supply voltage 3.3V 13 GND VSS Power Ground 14 BOOT0 CMOS input The default is low. (internal 10K resistance drop) When writing to MCU when using the serial port, this pin is connected with the high level. 15 PIO15 Bi-directional Programmable input/output line 16 SWCLK Bi-directional Debugging through the clk line(Default) 17 SWDIO Bi-directional Debugging through the data line(Default) 18 PIO12 Bi-directional Programmable input/output line Alternative Function: UART3 data output 19 PIO13 Bi-directional Programmable input/output line Alternative Function: UART3 data input 20 PIO14 Bi-directional Programmable input/output line 21 GND VSS Power Ground 22 GND VSS Power Ground 23 PIO0 Bi-directional Programmable input/output line 24 PIO1 Bi-directional Programmable input/output line 25 PIO2 Bi-directional Programmable input/output line 26 PIO3 Bi-directional Programmable input/output line 27 PIO4 Bi-directional Programmable input/output line 9 Alternative Function: BT Power Mode, low level in run mode, it will be set to high level when fall asleep. 28 PIO5 Bi-directional Programmable input/output line 29 PIO6 Bi-directional Programmable input/output line Alternative Function: I 2 C Serial Clock input/output 30 PIO7 Bi-directional Programmable input/output line Alternative Function:I 2 C Serial Data input/output 31 PIO8 Bi-directional Programmable input/output line 32 PIO9 Bi-directional Programmable input/output line Alternative Function: LED(Default) 33 PIO10 Bi-directional Programmable input/output line Alternative Function: BT Status(Default) 34 PIO11 Bi-directional Programmable input/output line 35 GND VSS Power Ground 36 EXT_ANT RF signal output By default, this PIN is an empty feet. This PIN can connect to an external antenna to improve the Blu…

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Attestation Statements

Edan Instruments, Inc #15 Jinhui Road, Jinsha Community, Kengzi Sub-District, Pingshan District, 518122 Shenzhen P.R.China TEL: 0086 755 26682547 FAX: 0086 755 26882223 Series Models Description Date: Oct. 31, 2022 To whom it may concern: The device (Product Name: Bluetooth Module) Models Name: SA-19, SA-18, SA-16, SA-15 and SA-20 have same electrical, PCB and BOM, only the model’s name different for marketing requirements. Sincerely, Huanhuan Xia / Manager

Cover Letter(s)

C5266091_X8_Ed.1 1/1 Letter of Authorization Company: Edan Instruments, Inc Address: #15 Jinhui Road, Jinsha Community, Kengzi Sub-District, Pingshan District, 518122 Shenzhen P.R.China Product Name: Bluetooth Module Model Number: SA-20 FCC Identifier: SMQSA-20 We authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bellaterra, Spain, to act on our behalf on all matters concerning the above named equipment. Any individual within LGAI Technological Center S.A. is authorized to act on our behalf and take action on the application. We declare that authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bellaterra, Spain, is allowed to forward all information related to the approval project to the Federal Communication Commission and to discuss any issues concerning the approval application. Any and all acts carried out by LGAI Technological Center S.A. on our behalf shall have the same effect as acts of our own. Name: Huanhuan Xia Date: Oct. 31, 2022 Title: Manager Signature of applicant:

Cover Letter(s)

C5266091_X10_Ed.1 1/1 Edan Instruments, Inc Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Date: Oct. 31, 2022 Subject: Request for Confidentiality FCC ID: SMQSA-20 To Whom It May Concern, Pursuant to the provisions of Sections 0.457 and 0.459 of Commission's rules (47CFR0.457, 0.459), we are requesting the Commission to withhold the following attachment(s) as confidential document from public disclosure. Exhibits Long-Term Confidentiality Short-Term Confidentiality ID Label/Location No No Attestation Statement No No External Photos No Block Diagram Schematics Test Report No No Test Setup Photos No User’s Manual Internal Photos Parts List / Tune Up RF Exposure Info Operational Description Cover Letter(s) No No SDR Software / Security Info No Above mentioned document contains detailed system and equipment description are considered as proprietary information in operation of the equipment. The public disclosure of above documents might be harmful to our company and would give competitor an unfair advantage in the market. It is our understanding that all measurement test reports, FCC ID label format and correspondent during certification review process cannot be granted as confidential documents and those information will be available for public review once the grant of equipment authorization is issued. Sincerely, C5266091_X10_Ed.1 1/1 Signature: Name: Huanhuan Xia Title: Manager

Cover Letter(s)

C5266091_X9_Ed.2 1/1 < Edan Instruments, Inc > Modular Transmitter Approval Request Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 Company name: Edan Instruments, Inc FCC ID: SMQSA-20 Gentlemen, In accordance with 47CFR 15.212 Modular Transmitters and KDB 996369 D01 ‘Module Equip Auth Guide v02’. FCC ID SMQSA-20 has been examined against the following requirements. Items to be covered by Single modular transmitters. Requirement per 15.212 and KDB 996369 D01 ‘Module Equip Auth Guide v02' Explanation from Grantee (do not write yes/no, but explain why product complies/how it is achieved) 1.The radio elements must have the radio frequency circuitry shielded. Physical components and tuning capacitor(s) may be located external to the shield, but must be on the module assembly Without shield. 2.The module must have buffered modulation/data inputs to ensure that the device will comply with Part 15 requirements with any type of input signal The modular has buffered data inputs, it is integrated in chip 3.The module must contain power supply regulation on the module The modular has buffered data inputs, it is integrated in chip 4.The module must contain a permanently attached antenna, or contain a unique antenna connector, and be marketed and operated only with specific antenna(s), per Sections 15.203, 15.204(b), 15.204(c), 15.212(a), 2.929(b) Antenna is independent fixed 5.The module must demonstrate compliance in a stand- alone configuration All power lines derived from the host device are regulated before energizing other circuits internal 6.The module must be labelled with its permanently affixed FCC ID label, or use an electronic display (See KDB Publication 784748 about labelling requirements) The label is independent fixed 7.The module must comply with all specific rules applicable to the transmitter including all the conditions provided in the integration instructions by the grantee compliant with all applicable FCC rules. Detail instructions are given in the Users Manual 8.The module must comply with RF exposure requirements approved to comply with the applicable RFexposure requirement, please see the MPE evaluation report. C5266091_X9_Ed.2 1/1 Items to be covered by Split modular transmitters. Requirement per 15.212 and KDB 996369 D01 ‘Modular Certification Guide v02 Explanation from Grantee (do not write yes/no, but explain why product complies/how it is achieved) 9. Split modular transmitters must meet all the requirements of a single modular in above item1 and 5 for single modular approval requirements. N/A 10. Only the radio front end must be shielded. The physical crystal and tuning capacitors may be located external to the shielded radio elements. The interface between the split sections of the modular system must be digital with a minimum signaling amplitude of 150 mV peak-to-peak. N/A 11. Control information and other data may be exchanged between the transmitter control elements and radio front end. N/A 12. The sections of a split modular transmitter must be tested installed in a host device(s) similar to that which is representative of the platform(s) intended for use. N/A 13. Manufacturers must ensure that only transmitter control elements and radio front end components that have been approved together are capable of operating together. The transmitter module must not operate unless it has verified that the installed transmitter control elements and radio front end have been authorized together. Manufacturers may use means including, but not limited to, coding in hardware and electronic signatures in software to meet these requirements, and must describe the methods in their application for equipment authorization. N/A A limited modular approval (LMA) may be granted for single or split modular transmitters that comply partially with requirements above. Name: Huanhuan Xia Date: 2022.10.31 Title: Product Manager Signature of applicant

External Photos

Bluetooth Antenna

ID Label/Location Info

FCC ID Label Information 1. Label location: 2. FCC ID Label: FCC ID: SMQSA-20 FCC ID Label Location

Internal Photos

Bluetooth Antenna

RF Exposure Info

RF Exposure evaluation FCC ID: SMQSA-20 According to 447498 D01 General RF Exposure Guidance v06 The 1-g and 10-g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances ≤ 50 mm are determined by: [(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] ·[√f(GHz)] ≤ 3.0 for 1-g SAR and ≤ 7.5 for 10-g extremity SAR, where f(GHz) is the RF channel transmit frequency in GHz Power and distance are rounded to the nearest mW and mm before calculation The result is rounded to one decimal place for comparison For Bluetooth BR/EDR pt=5.06dBm=3.21mW at 2402MHz So (3.21mW/5mm)x √2.402GHz =0.99<3 For BLE pt=-0.54dBm=0.88mW at 2402MHz So (0.88mW/5mm)x √2.402GHz =0.27<3 Then SAR evaluation is not required

Test Report

Shenzhen CTL Testing Technology Co., Ltd. Tel: +86-755-89486194 E-mail: [email protected] TEST REPORT FCC PART 15 SUBPART C 15.247 Report Reference No.: CTL2207269022-WF01 Compiled by: ( position+printed name+signature) Happy Guo (File administrators) Tested by: ( position+printed name+signature) Gary Gao (Test Engineer) Approved by: ( position+printed name+signature) Ivan Xie (Manager) Product Name ............................ : Bluetooth Module Model/Type reference ................ : SA-20 List Model(s) ............................... : SA-19, SA-18, SA-16, SA-15 Trade Mark .................................. : N/A FCC ID ......................................... : SMQSA-20 Applicant’s name ....................... : Edan Instruments, Inc Address of applicant ................. : #15 Jinhui Road, Jinsha Community, Kengzi Sub-District, Pingshan District, 518122 Shenzhen P.R.China Test Firm ..................................... : Shenzhen CTL Testing Technology Co., Ltd. Address of Test Firm ................. : Floor 1-A, Baisha Technology Park, No.3011, Shahexi Road, Nanshan District, Shenzhen, China 518055 Test specification ....................... : Standard ...................................... : 47 CFR FCC Part 15 Subpart C 15.247 TRF Originator ............................. : Shenzhen CTL Testing Technology Co., Ltd. Master TRF .................................. : Dated 2011-01 Date of receipt of test item ........ : Aug. 12, 2022 Date of sampling ........................ : Aug. 12, 2022 Date of Test Date ........................ : Aug. 12, 2022- Oct. 17, 2022 Date of Issue .............................. : Oct. 17, 2022 Result .......................................... : Pass Shenzhen CTL Testing Technology Co., Ltd. All rights reserved. This publication may be reproduced in whole or in part for non-commercial purposes as long as the Shenzhen CTL Testing Technology Co., Ltd. is acknowledged as copyright owner and source of the material. Shenzhen CTL Testing Technology Co., Ltd. takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. V1.0 Page 2 of 33 Report No.: CTL2207269022-WF01 TEST REPORT Test Report No. : CTL2207269022-WF01 Oct. 17, 2022 Date of issue Equipment under Test : Bluetooth Module Sample No. CTL220726902-2-S001(Normal sample) CTL220726902-2-S002(Engineer sample) Model /Type : SA-20 Listed Models : SA-19, SA-18, SA-16, SA-15 Applicant : Edan Instruments, Inc Address : #15 Jinhui Road, Jinsha Community, Kengzi Sub-District, Pingshan District, 518122 Shenzhen P.R.China Manufacturer : Edan Instruments, Inc Address : #15 Jinhui Road, Jinsha Community, Kengzi Sub-District, Pingshan District, 518122 Shenzhen P.R.China Test result Pass * *In the configuration tested, the EUT complied with the standards specified page 5. The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the issuing testing laboratory. V1.0 Page 3 of 33 Report No.: CTL2207269022-WF01 ** Modified History ** Revisions Description Issued Data Report No. Remark Version 1.0 Initial Test Report Release 2022-10-17 CTL2207269022-WF01 Tracy Qi V1.0 Page 4 of 33 Report No.: CTL2207269022-WF01 Table of Content Page 1. SUMMARY ............................................................................................................................................................... 5 1.1. TEST STANDARDS ..................................................................................................................................................... 5 1.2. TEST DESCRIPTION ........................................................................................................................................................ 5 1.3. TEST FACILITY .............................................................................................................................................................. 6 1.4. STATEMENT OF THE MEASUREMENT UNCERTAINTY ............................................................................................................... 6 2. GENERAL INFORMATION .......................................................................................................................................... 8 2.1. ENVIRONMENTAL CONDITIONS ........................................................................................................................................ 8 2.2. GENERAL DESCRIPTION OF EUT ...................................................................................................................................... 8 2.3. DESCRIPTION OF TEST MODES AND TEST FREQUENCY .......................................................................................................... 8 2.4. EQUIPMENTS USED DURING THE TEST .............................................................................................................................. 9 2.5. RELATED SUBMITTAL(S) / GRANT (S) .............................................................................................................................. 10 2.6. MODIFICATIONS ......................................................................................................................................................... 10 3. TEST CONDITIONS AND RESULTS ............................................................................................................................ 11 3.1. CONDUCTED EMISSIONS TEST ....................................................................................................................................... 11 3.2. RADIATED EMISSIONS AND BAND EDGE .......................................................................................................................... 14 3.3. MAXIMUM PEAK OUTPUT POWER.................................................................................…

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Test Report

深圳市飞易通科技有限公司 www.feasycom.com Bluetooth antenna of PCB on-board specification 1,Index Item Content Page Remark 1 Index 1 2 Spec Drawing 2 3 Specification 2 4 Antenna On Test Board 3 5 Return Loss 3 6 Radiation Pattern 3 Document Type: 2.4GHZ coil antenna Document Version: V1.0 Release Date: Aug. 23,2017 Shenzhen Feasycom Co., LTD Telephone: 86-755-27924639 www.feasycom.com 深圳市飞易通科技有限公司 www.feasycom.com 2,Spec Drawing 3,Specification Product Number: 2.4GHZ coil antenna Sample Photo: A. Electrical Characteristics Frequency 2400 ~ 2500 MHz S.W.R. <=2.0 Gain 2.0 dBi Efficiency ~ 50% Polarization Linear Impedance 50 Ohm B. Material & Mechanical Characteristics Material of Radiator Gold-plated copper C. Environmental Operation Temperature - 40°C ~ + 85°C Storage Temperature - 40°C ~ + 105°C 深圳市飞易通科技有限公司 www.feasycom.com 4,Antenna On Test Board 5, Return Loss 6,Radiation P attern Radiation Pattern and Gain were dependent on measurement board design. The specification of coil antenna was measur ed based on the PCB size and installation position as shown in the below figure Test Board. FR4 Thickness 0.8mm 16mm Empty Area 16 x 7.5mm Z X Y Ground Copper 16 x 6mm 50 ohm Feed Line 深圳市飞易通科技有限公司 www.feasycom.com Vertical Horizontal Y - Z Plane Average Gain=1.19 dBi Peak Gain = 2.00 dBi Average Gain = 0.75 dBi Peak Gain= -1.33 dBi Average Gain=-8.7 dBi X - Z Plane Average Gain=-2.91d Bi Peak Gain= -3.71 dBi Average Gain= -8.76dBi Peak Gain= -0.29 dBi Average Gain= -4.19dBi X - Y Plane Average Gain=-0.95 dBi Peak Gain= 0.77 dBi Average Gain= -5.86dBi Peak Gain= 1.35 dBi Average Gain= -2.62 dBi 深圳市飞易通科技有限公司 www.feasycom.com Test Result: Frequency VNA E Total. dB(dB) Efficiency 2400MHz 0.693991 41.07% 2410MHz 1.14338 47.24% 2420MHz 0.223052 40.48% 2430MHz -0.13659 33.93% 2440MHz 0.35326 37.82% 2450MHz 1.039894 42.77% 2460MHz 2.00801 50.67% 2470MHz 0.649809 41.93% 2480MHz -0.215933 36.66% 2490MHz -0.476639 34.62% 2500MHz 0.710741 40.22%

Test Report

Page 1 of 34 Annex for FCC BT Test Report No. :CTL2207269022-WF01 Appendix A: 20dB Emission Bandwidth Test Result TestMode Antenna Channel 20db EBW[MHz] FL[MHz] FH[MHz] Limit[MHz] Verdict DH5 Ant1 2402 0.960 2401.541 2402.501 --- PASS 2441 0.957 2440.544 2441.501 --- PASS 2480 0.963 2479.541 2480.504 --- PASS 2DH5 Ant1 2402 1.404 2401.304 2402.708 --- PASS 2441 1.404 2440.304 2441.708 --- PASS 2480 1.401 2479.307 2480.708 --- PASS 3DH5 Ant1 2402 1.392 2401.307 2402.699 --- PASS 2441 1.392 2440.310 2441.702 --- PASS 2480 1.386 2479.310 2480.696 --- PASS Page 2 of 34 Page 2 of 34 Test Graphs DH5_Ant1_2402 DH5_Ant1_2441 Page 3 of 34 DH5_Ant1_2480 2DH5_Ant1_2402 2DH5_Ant1_2441 2DH5_Ant1_2480 Page 4 of 34 3DH5_Ant1_2402 3DH5_Ant1_2441 3DH5_Ant1_2480 Page 5 of 34 Appendix B: Maximum conducted output power Test Result TestMode Antenna Channel Result[dBm] Limit[dBm] Verdict DH5 Ant1 2402 5.06 ≤30 PASS 2441 4.76 ≤30 PASS 2480 4.52 ≤30 PASS 2DH5 Ant1 2402 2.58 ≤20.97 PASS 2441 2.45 ≤20.97 PASS 2480 2.14 ≤20.97 PASS 3DH5 Ant1 2402 2.99 ≤20.97 PASS 2441 2.78 ≤20.97 PASS 2480 2.52 ≤20.97 PASS Page 6 of 34 Test Graphs DH5_Ant1_2402 DH5_Ant1_2441 Page 7 of 34 DH5_Ant1_2480 2DH5_Ant1_2402 2DH5_Ant1_2441 2DH5_Ant1_2480 Page 8 of 34 3DH5_Ant1_2402 3DH5_Ant1_2441 3DH5_Ant1_2480 Page 9 of 34 Appendix C: Carrier frequency separation Test Result TestMode Antenna Channel Result[dBm] Limit[dBm] Verdict DH5 Ant1 Hop 1 ≥0.963 PASS 2DH5 Ant1 Hop 1.01 ≥0.936 PASS 3DH5 Ant1 Hop 0.994 ≥0.928 PASS Page 10 of 34 Test Graphs DH5_Ant1_Hop 2DH5_Ant1_Hop 3DH5_Ant1_Hop Page 11 of 34 Appendix D: Time of occupancy Test Result TestMode Antenna Channel BurstWidth [ms] TotalHops [Num] Result[s] Limit[s] Verdict DH1 Ant1 Hop 0.39 320 0.124 ≤0.4 PASS DH3 Ant1 Hop 1.64 150 0.246 ≤0.4 PASS DH5 Ant1 Hop 2.89 130 0.376 ≤0.4 PASS 2DH1 Ant1 Hop 0.39 330 0.13 ≤0.4 PASS 2DH3 Ant1 Hop 1.65 160 0.263 ≤0.4 PASS 2DH5 Ant1 Hop 2.89 140 0.405 ≤0.4 PASS 3DH1 Ant1 Hop 0.39 320 0.126 ≤0.4 PASS 3DH3 Ant1 Hop 1.64 180 0.296 ≤0.4 PASS 3DH5 Ant1 Hop 2.89 110 0.318 ≤0.4 PASS Note: (1) Dwell time=Pulse time (ms) × Total Pulse number s (2) Total Pulse number= Pulse number in 3.16 s × 10 Page 12 of 34 Test Graphs DH1_Ant1_Hop DH1_Ant1_Hop DH3_Ant1_Hop Page 13 of 34 DH3_Ant1_Hop DH5_Ant1_Hop DH5_Ant1_Hop Page 14 of 34 2DH1_Ant1_Hop 2DH1_Ant1_Hop 2DH3_Ant1_Hop Page 15 of 34 2DH3_Ant1_Hop 2DH5_Ant1_Hop 2DH5_Ant1_Hop Page 16 of 34 3DH1_Ant1_Hop 3DH1_Ant1_Hop 3DH3_Ant1_Hop Page 17 of 34 3DH3_Ant1_Hop 3DH5_Ant1_Hop 3DH5_Ant1_Hop Page 18 of 34 Appendix E: Number of hopping channels Test Result TestMode Antenna Channel Result[Num] Limit[Num] Verdict DH5 Ant1 Hop 79 ≥15 PASS 2DH5 Ant1 Hop 79 ≥15 PASS 3DH5 Ant1 Hop 79 ≥15 PASS Page 19 of 34 Test Graphs DH5_Ant1_Hop 2DH5_Ant1_Hop 3DH5_Ant1_Hop

Test Report

Page 20 of 34 Appendix F: Band edge measurements Test Result TestMode Antenna ChName Channel RefLevel [dBm] Result [dBm] Limit [dBm] Verdict DH5 Ant1 Low 2402 4.44 -55.64 ≤-15.56 PASS High 2480 4.32 -54.86 ≤-15.69 PASS Low Hop_2402 4.36 -53.33 ≤-15.64 PASS High Hop_2480 4.19 -54.75 ≤-15.81 PASS 2DH5 Ant1 Low 2402 -1.69 -44.26 ≤-21.69 PASS High 2480 -1.23 -52.53 ≤-21.23 PASS Low Hop_2402 0.13 -40.54 ≤-19.87 PASS High Hop_2480 0.40 -52.37 ≤-19.6 PASS 3DH5 Ant1 Low 2402 -1.41 -44.67 ≤-21.41 PASS High 2480 -1.10 -51.9 ≤-21.1 PASS Low Hop_2402 -1.61 -40.31 ≤-21.61 PASS High Hop_2480 0.32 -53.18 ≤-19.68 PASS Page 21 of 34 Test Graphs DH5_Ant1_Low_2402 DH5_Ant1_High_2480 DH5_Ant1_Low_Hop_2402 Page 22 of 34 DH5_Ant1_High_Hop_2480 2DH5_Ant1_Low_2402 2DH5_Ant1_High_2480 Page 23 of 34 2DH5_Ant1_Low_Hop_2402 2DH5_Ant1_High_Hop_2480 3DH5_Ant1_Low_2402 Page 24 of 34 3DH5_Ant1_High_2480 3DH5_Ant1_Low_Hop_2402 3DH5_Ant1_High_Hop_2480 Page 25 of 34 Appendix G: Conducted Spurious Emission Test Result TestMode Antenna Channel FreqRange [MHz] RefLevel [dBm] Result [dBm] Limit [dBm] Verdict DH5 Ant1 2402 Reference 4.06 4.06 --- PASS 30~3000 4.06 -55.2 ≤-15.94 PASS 3000~26500 4.06 -45.38 ≤-15.94 PASS 2441 Reference 3.94 3.94 --- PASS 30~3000 3.94 -57.28 ≤-16.06 PASS 3000~26500 3.94 -44.59 ≤-16.06 PASS 2480 Reference 3.84 3.84 --- PASS 30~3000 3.84 -56.44 ≤-16.16 PASS 3000~26500 3.84 -45.09 ≤-16.16 PASS 2DH5 Ant1 2402 Reference -1.96 -1.96 --- PASS 30~3000 -1.96 -56.69 ≤-21.96 PASS 3000~26500 -1.96 -44.57 ≤-21.96 PASS 2441 Reference -1.60 -1.60 --- PASS 30~3000 -1.60 -56.83 ≤-21.6 PASS 3000~26500 -1.60 -44.69 ≤-21.6 PASS 2480 Reference -1.56 -1.56 --- PASS 30~3000 -1.56 -56.87 ≤-21.56 PASS 3000~26500 -1.56 -45.32 ≤-21.56 PASS 3DH5 Ant1 2402 Reference -1.88 -1.88 --- PASS 30~3000 -1.88 -56.36 ≤-21.88 PASS 3000~26500 -1.88 -44.98 ≤-21.88 PASS 2441 Reference -1.62 -1.62 --- PASS 30~3000 -1.62 -56.97 ≤-21.62 PASS 3000~26500 -1.62 -44.41 ≤-21.62 PASS 2480 Reference -1.56 -1.56 --- PASS 30~3000 -1.56 -55.17 ≤-21.56 PASS 3000~26500 -1.56 -45.39 ≤-21.56 PASS Page 26 of 34 Test Graphs DH5_Ant1_2402_0~Reference DH5_Ant1_2402_30~3000 DH5_Ant1_2402_3000~26500 Page 27 of 34 DH5_Ant1_2441_0~Reference DH5_Ant1_2441_30~3000 DH5_Ant1_2441_3000~26500 Page 28 of 34 DH5_Ant1_2480_0~Reference DH5_Ant1_2480_30~3000 DH5_Ant1_2480_3000~26500 Page 29 of 34 2DH5_Ant1_2402_0~Reference 2DH5_Ant1_2402_30~3000 2DH5_Ant1_2402_3000~26500 Page 30 of 34 2DH5_Ant1_2441_0~Reference 2DH5_Ant1_2441_30~3000 2DH5_Ant1_2441_3000~26500 Page 31 of 34 2DH5_Ant1_2480_0~Reference 2DH5_Ant1_2480_30~3000 2DH5_Ant1_2480_3000~26500 Page 32 of 34 3DH5_Ant1_2402_0~Reference 3DH5_Ant1_2402_30~3000 3DH5_Ant1_2402_3000~26500 Page 33 of 34 3DH5_Ant1_2441_0~Reference 3DH5_Ant1_2441_30~3000 3DH5_Ant1_2441_3000~26500 Page 34 of 34 3DH5_Ant1_2480_0~Reference 3DH5_Ant1_2480_30~3000 3DH5_Ant1_2480_3000~26500 ********************** End **********************

Test Setup Photos

Baseboard Bluetooth Module

Contact Information

Applicant

Huanhuan Xia
[email protected]0086 755 26682547Fax: 0086 755 26882223

Technical Contact

Edan Instruments, IncHuanhuan Xia
[email protected]0086 755 26682547

Shenzhen · China

Test Firm

Shenzhen CTL Testing Technology Co., Ltd.Tracy Qi
[email protected]86-755-89486194

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz3.20 mW
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. Limited Single Modular Approval. This module must not be incorporated into any other device or system without retesting for compliance as a composite system. This module was tested in standalone configuration. Grantee is responsible for providing specific testing instructions to host manufacturers for additional testing to verify compliance as a composite system. This includes retesting of transmitter module per part 15.31(h) and (k) and verification of compliance with FCC RF Exposure requirements.

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