79
Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. (Kunshan).This report is valid only with a valid digital signature. The digital signature may be available only under the Adobe software above version 7.0. JAPAN MIC TEST REPORT For Shenzhen MingZhan Information Technology Co., Ltd 8th floor, Huaqiang electronic world building 2-02, Shenzhen Huaqiang North Street, Futian District, Shenzhen, China Tested Model: M5CAMERA001 Report Type: Original Report Product Type: M5CAMERA Test Engineer: Alisa Gao Report Number: RSHA180828002-24B Report Date: 2018-09-27 Reviewed By: Oscar Ye RF Leader Prepared By: Bay Area Compliance Laboratories Corp. (Kunshan) No.248 Chenghu Road,Kunshan,Jiangsu province,China Tel: +86-0512-86175000 Fax: +86-0512-88934268 www.baclcorp.com.cn

JAPAN MIC TEST REPORT

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Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. (Kunshan).This report is valid only with a valid digital signature. The digital signature may be available only under the Adobe software above version 7.0.

JAPAN MIC

TEST REPORT For

Shenzhen MingZhan Information Technology Co., Ltd

8th floor, Huaqiang electronic world building 2-02, Shenzhen Huaqiang North Street, Futian District, Shenzhen, China

Tested Model: M5CAMERA001

Report Type:

Original Report

Product Type:

M5CAMERA

Test Engineer: Alisa Gao

Report Number: RSHA180828002-24B

Report Date: 2018-09-27

Reviewed By:

Oscar Ye RF Leader

Prepared By:

Bay Area Compliance Laboratories Corp. (Kunshan) No.248 Chenghu Road,Kunshan,Jiangsu province,China Tel: +86-0512-86175000 Fax: +86-0512-88934268 www.baclcorp.com.cn

Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA180828002-24B

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TABLE OF CONTENTS

GENERAL INFORMATION ....................................................................................................................................... 4 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT) .................................................................................... 4 OBJECTIVE ................................................................................................................................................................... 4 RELATED SUBMITTAL(S)/GRANT(S) ............................................................................................................................. 4 TEST METHODOLOGY .................................................................................................................................................. 4 TEST FACILITY ............................................................................................................................................................. 4

EUT TEST CONFIGURATION .................................................................................................................................. 5 DESCRIPTION OF TEST CONFIGURATION ...................................................................................................................... 5 EUT EXERCISE SOFTWARE .......................................................................................................................................... 5 EQUIPMENT MODIFICATIONS ....................................................................................................................................... 5 SUPPORT EQUIPMENT LIST AND DETAILS .................................................................................................................... 5 EXTERNAL I/O CABLE .................................................................................................................................................. 6 CONFIGURATION OF TEST SETUP ................................................................................................................................. 6

SUMMARY OF TEST RESULTS ............................................................................................................................... 7

FREQUENCY ERROR ................................................................................................................................................ 8 LIMIT ........................................................................................................................................................................... 8 TEST EQUIPMENT LIST AND DETAILS ........................................................................................................................... 8 TEST PROCEDURE ........................................................................................................................................................ 8 TEST DATA .................................................................................................................................................................. 9

OCCUPIED BANDWIDTH AND SPREADING BANDWIDTH ........................................................................... 16 LIMIT ......................................................................................................................................................................... 16 TEST EQUIPMENT LIST AND DETAILS ......................................................................................................................... 16 TEST PROCEDURE ...................................................................................................................................................... 16 TEST DATA ................................................................................................................................................................ 17

TRANSMITTER SPURIOUS EMISSION STRENGTH AND UNWANTED EMISSION INTENSITY ........... 24 LIMIT ......................................................................................................................................................................... 24 TEST PROCEDURE ...................................................................................................................................................... 24 TEST EQUIPMENT LIST AND DETAILS ......................................................................................................................... 25 TEST DATA ................................................................................................................................................................ 25

ANTENNA OUTPUT POWER AND ANTENNA POWER TOLERANCE.......................................................... 51 LIMIT ......................................................................................................................................................................... 51 TEST EQUIPMENT LIST AND DETAILS ......................................................................................................................... 51 TEST PROCEDURE ...................................................................................................................................................... 51 TEST SETUP BLOCK DIAGRAM.................................................................................................................................... 51 TEST DATA ................................................................................................................................................................ 52

RECEIVER SPURIOUS EMISSION AND UNWANTED EMISSION INTENSITY .......................................... 60 LIMIT ......................................................................................................................................................................... 60 TEST EQUIPMENT LIST AND DETAILS ......................................................................................................................... 60 TEST PROCEDURE ...................................................................................................................................................... 60 MEASUREMENT RESULT ............................................................................................................................................ 61

FREQUENCY HOPPING DWELL TIME ............................................................................................................... 71 APPLICABLE STANDARD ............................................................................................................................................ 71 TEST EQUIPMENT LIST AND DETAILS ......................................................................................................................... 71 TEST PROCEDURE ...................................................................................................................................................... 71 TEST DATA ................................................................................................................................................................ 72

INTERFERENCE PREVENTION FUNCTION ...................................................................................................... 78

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REQUIREMENT ........................................................................................................................................................... 78 TEST PROCEDURE ...................................................................................................................................................... 78 TEST DATA ................................................................................................................................................................ 78

CONSTRUCTION PROTECTION CONFIRMATION ......................................................................................... 79 LIMIT ......................................................................................................................................................................... 79 CONFIRMATION METHOD ........................................................................................................................................... 79

Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA180828002-24B

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GENERAL INFORMATION Product Description for Equipment Under Test (EUT)

Applicant Shenzhen MingZhan Information Technology Co., Ltd

Tested Model M5CAMERA001

Product Type M5CAMERA

Dimension 48 mm(L)×40 mm(W)×11.5 mm(H)

Power Supply DC 5.0V

*All measurement and test data in this report was gathered from production sample serial number: 20180828002. (Assigned by the BACL. The EUT supplied by the applicant was received on 2018-08-28) Objective The objective of the manufacturer is to demonstrate compliance with Radio Law of Japan item 19 of Article 2 Paragraph 1. Related Submittal(s)/Grant(s) Item 19 of Article 2 Paragraph 1 for BLE Item 19 of Article 2 Paragraph 1 for WIFI 2412-2472MHz Item 19-2 of Article 2 Paragraph 1 for Wi-Fi 2484 MHz Test Methodology All measurements contained in this report were conducted with technical regulations of the Radio Law of Japan. Test Facility The test site used by Bay Area Compliance Laboratories Corp. (Kunshan) to collect test data is located on the No.248 Chenghu Road, Kunshan, Jiangsu province, China. Bay Area Compliance Laboratories Corp. (Kunshan) Lab is accredited to ISO/IEC 17025 by A2LA (Lab code: 4323.01) and the FCC designation No. CN1185 under the FCC KDB 974614 D01. The facility also complies with the radiated and AC line conducted test site criteria set forth in ANSI C63.4-2014.

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EUT TEST CONFIGURATION Description of Test Configuration Channel list for Bluetooth:

Channel Frequency (MHz) Channel Frequency

(MHz)

0 2402 40 2442

1 2403 … …

2 2404 … …

… … … …

… … 77 2479

39 2441 78 2480

EUT was tested with channel 0, 39 and 78. EUT Exercise Software RF test tool: SecureCRT

GFSK Power Level Setting 7

π/4-DQPSK Power Level Setting 7

8DPSK Power Level Setting 7

Equipment Modifications No modification was made to the EUT tested. Support Equipment List and Details

Manufacturer Description Model Serial Number

BEST DC Power Supply PS-1502D+ /

Narda Attenuator/10dB 10dB /

DELL Notebook GX620 D65874152

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External I/O Cable

Cable Description Length (m) From/Port To

USB Cable 0.8 EUT Notebook

Power Cable 1.2 EUT DC Source

Configuration of Test Setup

Signal Analyzer / Power Meter

Attenuator

DC Source

Notebook EUT

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SUMMARY OF TEST RESULTS

MIC Notice No.88 Appendix No.43 Article 2, Paragraph 1, Item 19

Rules Section Description of Test Result

3 Frequency Error Compliance

4 Occupied Bandwidth and Spreading Bandwidth Compliance

5 Transmitter Spurious Emission and Unwanted

Emission Intensity Compliance

6 Antenna Output Power and Output Power

Tolerance Compliance

7 Receiver Spurious Emission and Unwanted

Emission Intensity Compliance

8 Transmission Antenna Gain Not Applicable

(See Note 1)

9 Transmission Radiation Angle Width Not Applicable

(See Note 1)

10 Carrier sense capability Not Applicable (See Note 2)

11 Frequency Hopping Dwell Time Compliance

12 Interference prevention function Compliance

Appendix Construction Protection Confirmation Compliance

Note:

1. This test item will not be applied to the transmission antenna which EIRP is less than 6.91dBm/MHz. 2. The test only required for bandwidth more than 26MHz and less than 38MHz.

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FREQUENCY ERROR Limit The Tolerance of frequency should be ±50ppm. Test Equipment List and Details

Manufacturer Description Model Serial NumberCalibration

Date Calibration Due Date

Rohde & Schwarz

Signal Analyzer FSV40 101116 2018-07-23 2019-07-22

BEST DC Power Supply PS-1502D+ N/A 2017-10-10 2018-10-09

Narda Attenuator/10dB 10dB N/A 2018-08-15 2019-08-14

* Statement of Traceability: Bay Area Compliance Laboratories Corp. (Kunshan) attests that all calibrations have been performed in accordance to requirements, traceable to National Primary Standards and International System of Units (SI). Test Procedure Set the EUT to the measurement frequency without modulation. Setting of SA is following as: RB: 1kHz / VB: 30kHz / Sweep time: Auto / Sweep Mode: Continuous sweep / Detect mode: Positive peak / Trace mode: Max hold. Record the peak spot frequency. If the EUT can`t set at un-modulation mode, measure the 10dBc center frequency. The peak value of the power envelope shall be measured and noted. The span shall be reduced and the marker moved in a positive frequency increment until the upper, (relative to the centre frequency), -10 dBc point is reached. This value shall be noted as f1. The marker shall then be moved in a negative frequency increment until the lower, (relative to the centre frequency), -10 dBc point is reached. This value shall be noted as f2. The centre frequency is calculated as (f1 + f2) / 2.

EUT Spectrum Analyzer Attenuator

DC Source

Notebook

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Test Data Environmental Conditions

Temperature: 24.1°C

Relative Humidity: 49%

ATM Pressure: 101.2 kPa

The testing was performed by Alisa Gao on 2018-09-11. Test Result: Compliant Test Mode: Transmitting BDR Mode (GFSK) :

Frequency (MHz)

Voltage (VDC)

f1 (MHz)

f2 (MHz)

(f1+f2)/2 (MHz)

Frequency Tolerance

(ppm)

Limit(ppm)

2402

4.5 2401.7045 2402.2598 2401.9822 -7.41

±50

5.0 2401.7048 2402.2605 2401.9827 -7.20

5.5 2401.7052 2402.2613 2401.9833 -6.95

2441

4.5 2440.7127 2441.2523 2440.9825 -7.17

5.0 2440.7135 2441.2518 2440.9827 -7.09

5.5 2440.7141 2441.2519 2440.9830 -6.96

2480

4.5 2479.7130 2480.2621 2479.9876 -5.00

5.0 2479.7135 2480.2605 2479.9870 -5.24

5.5 2479.7116 2480.2608 2479.9862 -5.56

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EDR Mode (π/4-DQPSK):

Frequency (MHz)

Voltage (VDC)

f1 (MHz)

f2 (MHz)

(f1+f2)/2 (MHz)

Frequency Tolerance

(ppm)

Limit(ppm)

2402

4.5 2401.4001 2402.5641 2401.9821 -7.45

±50

5.0 2401.4009 2402.5644 2401.9827 -7.20

5.5 2401.4007 2402.5629 2401.9818 -7.58

2441

4.5 2440.4015 2441.5649 2440.9832 -6.88

5.0 2440.4009 2441.5644 2440.9827 -7.09

5.5 2440.4013 2441.5658 2440.9836 -6.72

2480

4.5 2479.4015 2480.5642 2479.9829 -6.90

5.0 2479.4009 2480.5644 2479.9827 -6.98

5.5 2479.4018 2480.5634 2479.9826 -7.02

EDR Mode (8DPSK):

Frequency (MHz)

Voltage (VDC)

f1 (MHz)

f2 (MHz)

(f1+f2)/2 (MHz)

Frequency Tolerance

(ppm)

Limit(ppm)

2402

4.5 2401.3849 2402.5654 2401.9752 -10.32

±50

5.0 2401.3835 2402.5644 2401.9740 -10.82

5.5 2401.3844 2402.5650 2401.9747 -10.53

2441

4.5 2440.3919 2441.5642 2440.9781 -8.97

5.0 2440.3922 2441.5644 2440.9783 -8.89

5.5 2440.3904 2441.5636 2440.9770 -9.42

2480

4.5 2479.3929 2480.5653 2479.9791 -8.43

5.0 2479.3922 2480.5644 2479.9783 -8.75

5.5 2479.3937 2480.5627 2479.9782 -8.79

Please refer to the following plots for normal voltage:

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BDR Mode (GFSK):

Low Channel

Date: 11.SEP.2018 14:15:16

Middle Channel

Date: 11.SEP.2018 14:20:13

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High Channel

Date: 11.SEP.2018 14:23:39

EDR Mode (π/4-DQPSK):

Low Channel

Date: 11.SEP.2018 14:26:48

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Middle Channel

Date: 11.SEP.2018 14:28:42

High Channel

Date: 11.SEP.2018 14:30:38

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EDR Mode (8DPSK):

Low Channel

Date: 11.SEP.2018 14:36:09

Middle Channel

Date: 11.SEP.2018 14:34:27

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High Channel

Date: 11.SEP.2018 14:32:21

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OCCUPIED BANDWIDTH AND SPREADING BANDWIDTH Limit

• Occupied bandwidth: FH≤83.5 MHz; OFDM, DS≤26 MHz; Others≤26 MHz • Spread Bandwidth:≥ 500 kHz(FH,DS),Spread factor>5.

Test Equipment List and Details

Manufacturer Description Model Serial NumberCalibration

Date Calibration Due Date

Rohde & Schwarz

Signal Analyzer FSV40 101116 2018-07-23 2019-07-22

BEST DC Power Supply PS-1502D+ N/A 2017-10-10 2018-10-09

Narda Attenuator/10dB 10dB N/A 2018-08-15 2019-08-14

* Statement of Traceability: Bay Area Compliance Laboratories Corp. (Kunshan) attests that all calibrations have been performed in accordance to requirements, traceable to National Primary Standards and International System of Units (SI).

Test Procedure Measurement System Diagram Conditions of Application Equipment (EUT)

• The modulation state shall be “continuous frequency-hopping mode” by spread spectrum. Spectrum Analyzer Conditions

• Span: 200 MHz • RBW: 300 kHz • VBW: 300 kHz • Sweep time: Auto, Marker: Marker Off • Log scal : 10dB/Div, Data points : 501points (400 points or more) • Detection: Positive Peak, Sweep mode: Continuous

EUT Spectrum Analyzer Attenuator

DC Source

Notebook

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Test Data Environmental Conditions

Temperature: 24.1°C

Relative Humidity: 49%

ATM Pressure: 101.2 kPa

The testing was performed by Alisa Gao on 2018-09-11. Test Result: Compliant Test Mode: Transmitting

Voltage (VDC) 4.5 5.0 5.5 4.5 5.0 5.5 4.5 5.0 5.5 Limit

Mode DH1 DH3 DH5

BDR Mode

(GFSK)

Occupied Bandwidth 78.16 78.15 78.13 / / / / / / ≤83.5MHz

(MHz)

Spread Bandwidth 70.93 70.91 70.88 70.92 70.91 70.89 70.94 70.91 70.90 ≥500kHz

(MHz)

Spread Factor

70.93 70.91 70.88 70.92 70.91 70.89 70.94 70.91 70.90 >5

Mode 2DH1 2DH3 2DH5 Limit

EDR Mode (π/4-

DQPSK)

Occupied Bandwidth 78.46 78.44 78.43 / / / / / / ≤83.5MHz

(MHz)

Spread Bandwidth 70.93 70.91 70.90 70.92 70.91 70.89 70.90 70.91 70.87 ≥500kHz

(MHz)

Spread Factor

70.93 70.91 70.90 70.92 70.91 70.89 70.90 70.91 70.87 >5

Mode 3DH1 3DH3 3DH5 Limit

EDR Mode

(8DPSK)

Occupied Bandwidth 78.74 78.73 78.71 / / / / / / ≤83.5MHz

(MHz)

Spread Bandwidth 70.35 70.33 70.31 70.93 70.91 70.89 70.92 70.91 70.88 ≥500kHz

(MHz)

Spread Factor

70.35 70.33 70.31 70.93 70.91 70.89 70.92 70.91 70.88 >5

Please refer to the following plots for normal voltage:

Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA180828002-24B

Japan MIC Test Report Page 18 of 79

BDR Mode (GFSK):

Occupied bandwidth – DH1

Date: 11.SEP.2018 11:44:39

Spreading bandwidth – DH1

Date: 11.SEP.2018 12:04:28

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Spreading bandwidth – DH3

Date: 11.SEP.2018 12:09:07

Spreading bandwidth – DH5

Date: 11.SEP.2018 12:14:24

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EDR Mode (π/4-DQPSK):

Occupied bandwidth – 2DH1

Date: 11.SEP.2018 11:39:59

Spreading bandwidth – 2DH1

Date: 11.SEP.2018 12:18:53

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Spreading bandwidth – 2DH3

Date: 11.SEP.2018 12:21:03

Spreading bandwidth – 2DH5

Date: 11.SEP.2018 12:22:27

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EDR Mode (8DPSK):

Occupied bandwidth – 3DH1

Date: 11.SEP.2018 11:46:56

Spreading bandwidth – 3DH1

Date: 11.SEP.2018 12:26:13

Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA180828002-24B

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Spreading bandwidth – 3DH3

Date: 11.SEP.2018 12:28:07

Spreading bandwidth – 3DH5

Date: 11.SEP.2018 12:29:32

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TRANSMITTER SPURIOUS EMISSION STRENGTH AND UNWANTED EMISSION INTENSITY Limit

• 30MHz≤f≤1GHz: 0.25μW/100kHz • 1GHz<f<2387 MHz; 2496.5MHz<f≤12500MHz: ≤2.5μW/MHz • 2387MHz ≤f≤2400 MHz; 2483.5 MHz<f≤2496.5 MHz: ≤25μW/MHz

Test Procedure Measurement System Diagram Conditions of Application Equipment (EUT)

• The modulation state shall be in continuously transmitting mode. Spectrum Analyzer Conditions

• Setting of SA start 30MHz and stop frequency 1GHz,RB:100kHz/VB: 100kHz,Sweep time: Auto. Sweep mode: continuous sweep .Detect mode: Positive peak/Trace mode: max hold. Then to mark peak. reading value + cable loss shall be less than 0.25μW.

• Setting of SA start 1GHz and stop frequency 2387MHz,RB:1MHz/VB:1MHz,Sweep time: Auto. Sweep mode: continuous sweep .Detect mode: Positive peak/Trace mode: max hold. Then to mark peak. reading value + cable loss shall be less than 2.5μW.

• Setting of SA start 2387MHz and stop frequency 2400MHz,RB:1MHz/VB:1MHz,Sweep time: Auto. Sweep mode: continuous sweep .Detect mode: Positive peak/Trace mode: max hold. Then to mark peak. reading value + cable loss shall be less than 25μW.

• Setting of SA start 2483.5MHz and stop frequency 2496.5MHz,RB:1MHz/VB:1MHz,Sweep time: Auto. Sweep mode: continuous sweep .Detect mode: Positive peak/Trace mode: max hold. Then to mark peak. reading value + cable loss shall be less than 25μW.

• Setting of SA start 2496.5MHz and stop frequency 12500MHz,RB:1MHz/VB:1MHz,Sweep time: Auto. Sweep mode: continuous sweep .Detect mode: Positive peak/Trace mode: max hold. Then to mark peak. reading value + cable loss shall be less than 2.5μW.

EUT Spectrum Analyzer Attenuator

DC Source

Notebook

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Test Equipment List and Details

Manufacturer Description Model Serial NumberCalibration

Date Calibration Due Date

Rohde & Schwarz Signal Analyzer FSV40 101116 2018-07-23 2019-07-22

Narda Attenuator/10dB 10dB N/A 2018-08-15 2019-08-14

BEST DC Power Supply PS-1502D+ N/A 2017-10-10 2018-10-09

* Statement of Traceability: Bay Area Compliance Laboratories Corp. (Kunshan) attests that all calibrations have been performed in accordance to requirements, traceable to National Primary Standards and International System of Units (SI). Test Data Environmental Conditions

Temperature: 24.3°C

Relative Humidity: 50 %

ATM Pressure: 100.1 kPa

The testing was performed by Alisa Gao on 2018-09-10. Test Result: Compliant Test Mode: Transmitting

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Frequency Band (MHz) 2402 2441 2480

Limit Voltage (VDC) 4.5 5.0 5.5 4.5 5.0 5.5 4.5 5.0 5.5

BDR Mode (GFSK)

Unwanted Emission Intensity

Band I -54.64 -54.60 -54.57 -53.98 -53.98 -53.97 -53.90 -53.86 -53.83

-36dBm/100kHz

(dBm/100kHz) (0.25µW/100kHz)

Band II -52.51 -52.46 -52.44 -56.27 -56.24 -56.21 -56.50 -56.46 -56.45

-26dBm/MHz

(dBm/MHz) (2.5 µW/MHz)

Band III -30.46 -30.45 -30.41 -54.89 -54.84 -54.83 -54.18 -54.17 -54.17

-16dBm/MHz

(dBm/MHz) (25 µW/MHz)

Band IV -53.03 -53.01 -52.97 -53.19 -53.14 -53.11 -48.13 -48.09 -48.05

-16dBm/MHz

(dBm/MHz) (25 µW/MHz)

Band V -37.66 -37.61 -37.55 -37.94 -37.89 -37.83 -39.27 -39.24 -39.23

-26dBm/MHz

(dBm/MHz) (2.5µW/MHz)

EDR Mode(π/4-DQPSK)

Unwanted Emission Intensity

Band I -55.21 -55.20 -55.14 -54.92 -54.86 -54.84 -54.55 -54.49 -54.47

-36dBm/100kHz

(dBm/100kHz) (0.25µW/100kHz)

Band II -56.20 -56.17 -56.16 -56.19 -56.16 -56.15 -55.69 -55.63 -55.62

-26dBm/MHz

(dBm/MHz) (2.5 µW/MHz)

Band III -29.70 -29.69 -29.68 -54.29 -54.26 -54.24 -54.89 -54.85 -54.83

-16dBm/MHz

(dBm/MHz) (25 µW/MHz)

Band IV -53.26 -53.24 -53.19 -52.99 -52.93 -52.88 -49.04 -49.01 -48.95

-16dBm/MHz

(dBm/MHz) (25 µW/MHz)

Band V -37.75 -37.69 -37.63 -37.69 -37.67 -37.64 -39.37 -39.36 -39.36

-26dBm/MHz

(dBm/MHz) (2.5µW/MHz)

EDR Mode (8DPSK)

Unwanted Emission Intensity

Band I -54.59 -54.57 -54.52 -54.08 -54.04 -54.01 -54.50 -54.49 -54.45

-36dBm/100kHz

(dBm/100kHz) (0.25µW/100kHz)

Band II -44.51 -44.50 -44.45 -49.80 -49.76 -49.73 -54.83 -54.83 -54.81

-26dBm/MHz

(dBm/MHz) (2.5 µW/MHz)

Band III -29.72 -29.70 -29.66 -53.85 -53.82 -53.78 -54.38 -54.35 -54.30

-16dBm/MHz

(dBm/MHz) (25 µW/MHz)

Band IV -52.98 -52.98 -52.93 -52.55 -52.51 -52.51 -48.99 -48.95 -48.94

-16dBm/MHz

(dBm/MHz) (25 µW/MHz)

Band V -37.35 -37.33 -37.27 -37.68 -37.66 -37.64 -39.19 -39.19 -39.19

-26dBm/MHz

(dBm/MHz) (2.5µW/MHz)

Note:

Band I:30MHz~1000MHz Band II:1000MHz~2387MHz Band III:2387MHz~2400MHz Band IV:2483.5MHz~2496.5MHz Band V:2496.5MHz~12500MHz

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BDR Mode (GFSK): Low Channel

30MHz~1000MHz

Date: 10.SEP.2018 19:13:19

1000MHz~2387MHz

Date: 10.SEP.2018 18:46:08

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2387MHz~2400MHz

Date: 10.SEP.2018 18:44:40

2483.5MHz~2496.5MHz

Date: 10.SEP.2018 18:42:24

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2496.5MHz~12500MHz

Date: 10.SEP.2018 18:39:30

Middle Channel

30MHz~1000MHz

Date: 10.SEP.2018 18:49:56

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1000MHz~2387MHz

Date: 10.SEP.2018 18:52:18

2387MHz~2400MHz

Date: 10.SEP.2018 18:55:29

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2483.5MHz~2496.5MHz

Date: 10.SEP.2018 18:57:25

2496.5MHz~12500MHz

Date: 10.SEP.2018 18:59:05

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High Channel

30MHz~1000MHz

Date: 10.SEP.2018 19:09:57

1000MHz~2387MHz

Date: 10.SEP.2018 19:08:20

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2387MHz~2400MHz

Date: 10.SEP.2018 19:05:23

2483.5MHz~2496.5MHz

Date: 10.SEP.2018 19:03:59

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2496.5MHz~12500MHz

Date: 10.SEP.2018 19:02:04

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EDR Mode (π/4-DQPSK):

Low Channel

30MHz~1000MHz

Date: 10.SEP.2018 18:29:53

1000MHz~2387MHz

Date: 10.SEP.2018 18:31:50

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2387MHz~2400MHz

Date: 10.SEP.2018 18:33:48

2483.5MHz~2496.5MHz

Date: 10.SEP.2018 18:34:45

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2496.5MHz~12500MHz

Date: 10.SEP.2018 18:37:05

Middle Channel

30MHz~1000MHz

Date: 10.SEP.2018 18:28:14

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1000MHz~2387MHz

Date: 10.SEP.2018 18:26:31

2387MHz~2400MHz

Date: 10.SEP.2018 18:24:11

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2483.5MHz~2496.5MHz

Date: 10.SEP.2018 18:22:21

2496.5MHz~12500MHz

Date: 10.SEP.2018 18:20:51

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High Channel

30MHz~1000MHz

Date: 10.SEP.2018 18:11:29

1000MHz~2387MHz

Date: 10.SEP.2018 18:13:39

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2387MHz~2400MHz

Date: 10.SEP.2018 18:14:54

2483.5MHz~2496.5MHz

Date: 10.SEP.2018 18:16:22

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2496.5MHz~12500MHz

Date: 10.SEP.2018 18:17:56

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EDR Mode (8DPSK):

Low Channel

30MHz~1000MHz

Date: 10.SEP.2018 17:44:48

1000MHz~2387MHz

Date: 10.SEP.2018 17:46:06

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2387MHz~2400MHz

Date: 10.SEP.2018 17:48:34

2483.5MHz~2496.5MHz

Date: 10.SEP.2018 17:50:40

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2496.5MHz~12500MHz

Date: 10.SEP.2018 17:43:19

Middle Channel

30MHz~1000MHz

Date: 10.SEP.2018 17:34:25

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1000MHz~2387MHz

Date: 10.SEP.2018 17:37:13

2387MHz~2400MHz

Date: 10.SEP.2018 17:38:45

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2483.5MHz~2496.5MHz

Date: 10.SEP.2018 17:40:25

2496.5MHz~12500MHz

Date: 10.SEP.2018 17:41:30

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High Channel

30MHz~1000MHz

Date: 10.SEP.2018 17:55:21

1000MHz~2387MHz

Date: 10.SEP.2018 17:57:14

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2387MHz~2400MHz

Date: 10.SEP.2018 17:59:05

2483.5MHz~2496.5MHz

Date: 10.SEP.2018 17:52:15

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2496.5MHz~12500MHz

Date: 10.SEP.2018 17:54:07

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ANTENNA OUTPUT POWER AND ANTENNA POWER TOLERANCE Limit

• ≤ 3 mW /MHz(FHSS from 2402-2480 MHz) • ≤ 10 mW/MHz (OFDM, DSSS from 2400-2483.5 MHz) • ≤ 10 mW (other from 2400-2483.5 MHz)

The Output Power Tolerance must be within +20%, -80%. Test Equipment List and Details

Manufacturer Description Model Serial Number Calibration

Date Calibration Due Date

Rohde & Schwarz Signal Analyzer FSV40 101116 2018-07-23 2019-07-22

Narda Attenuator/10dB 10dB N/A 2018-08-15 2019-08-14

Agilent Power Meter E4419B MY41291878 2018-01-23 2019-01-22

BEST DC Power Supply PS-1502D+ N/A 2017-10-10 2018-10-09

* Statement of Traceability: Bay Area Compliance Laboratories Corp. (Kunshan) attests that all calibrations have been performed in accordance to requirements, traceable to National Primary Standards and International System of Units (SI). Test Procedure Step1; Measure the total power by Power Meter in a state of hopping mode (with Average Sensor). Step2; If it’s the burst wave, please measure the burst ratio. Then calculate the real total power by burst ratio. Step3; Calculate the mean power per 1MHz by dividing the total power by spread bandwidth. Test Setup Block diagram Power:

EUT Power Meter Attenuator

DC Source

Notebook

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Duty Cycle: Test Data Environmental Conditions

Temperature: 24.3°C

Relative Humidity: 50 %

ATM Pressure: 100.1 kPa

The testing was performed by Alisa Gao on 2018-09-11. Test Mode: Hopping BDR Mode (GFSK):

Voltage (VDC)

4.5 5.0 5.5

Antenna Output Power (dBm)

3.52 3.54 3.57

Burst Ratio (%)

13.04 13.04 13.04

Antenna Output Power (mW)

2.25 2.26 2.28

Spread Bandwidth (MHz)

70.93 70.91 70.88

Antenna Output Power (mW/MHz)

0.24 0.24 0.25

Antenna Output Power (dBm/MHz)

-6.20 -6.20 -6.02

EIRP (dBm/MHz)

-3.90 -3.90 -3.72

Declared Power (mW/MHz)

0.50 0.50 0.50

Antenna Output Power Tolerance (%)

-52.00 -52.00 -50.00

Antenna Power Limit 3mW/MHz

EIRP Limit 6.91 dBm/MHz

Antenna Tolerance Limit +20% ~ -80%

Result Pass

Note: 1) Antenna Output power (mW/MHz) = Antenna Output Power (mW)/ Burst Ratio (%)/Spread Bandwidth (MHz) 2) Antenna Output Power Tolerance = (Antenna Output power -Declared Power)/ Declared Power*100% 3) EIRP (dBm/MHz) = Antenna Output Power (dBm/MHz) + Antenna gain (dBi), Antenna gain= 2.30dBi

EUT Spectrum Analyzer Attenuator

DC Source

Notebook

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EDR Mode (π/4-DQPSK):

Voltage (VDC)

4.5 5.0 5.5

Antenna Output Power (dBm)

5.18 5.20 5.22

Burst Ratio (%)

14.00 14.00 14.00

Antenna Output Power (mW)

3.30 3.31 3.33

Spread Bandwidth (MHz)

70.93 70.91 70.90

Antenna Output Power (mW/MHz)

0.33 0.33 0.34

Antenna Output Power (dBm/MHz)

-4.81 -4.81 -4.69

EIRP (dBm/MHz)

-2.51 -2.51 -2.39

Declared Power (mW/MHz)

0.50 0.50 0.50

Antenna Output Power Tolerance (%)

-34.00 -34.00 -32.00

Antenna Power Limit 3mW/MHz

EIRP Limit 6.91 dBm/MHz

Antenna Tolerance Limit +20% ~ -80%

Result Pass

Note: 1) Antenna Output power (mW/MHz) = Antenna Output Power (mW)/ Burst Ratio (%)/Spread Bandwidth (MHz) 2) Antenna Output Power Tolerance = (Antenna Output power -Declared Power)/ Declared Power*100% 3) EIRP (dBm/MHz) = Antenna Output Power (dBm/MHz) + Antenna gain (dBi), Antenna gain= 2.30dBi

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EDR Mode (8DPSK):

Voltage (VDC)

4.5 5.0 5.5

Antenna Output Power (dBm)

5.51 5.53 5.56

Burst Ratio (%)

14.00 14.00 14.00

Antenna Output Power (mW)

3.56 3.57 3.60

Spread Bandwidth (MHz)

70.35 70.33 70.31

Antenna Output Power (mW/MHz)

0.36 0.36 0.37

Antenna Output Power (dBm/MHz)

-4.44 -4.44 -4.32

EIRP (dBm/MHz)

-2.14 -2.14 -2.02

Declared Power (mW/MHz)

0.50 0.50 0.50

Antenna Output Power Tolerance (%)

-28.00 -28.00 -26.00

Antenna Power Limit 3mW/MHz

EIRP Limit 6.91 dBm/MHz

Antenna Tolerance Limit +20% ~ -80%

Result Pass

Note: 1) Antenna Output power (mW/MHz) = Antenna Output Power (mW)/ Burst Ratio (%)/Spread Bandwidth (MHz) 2) Antenna Output Power Tolerance = (Antenna Output power -Declared Power)/ Declared Power*100% 3) EIRP (dBm/MHz) = Antenna Output Power (dBm/MHz) + Antenna gain (dBi), Antenna gain= 2.30dBi

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BDR Mode (GFSK):

DH1 Duty Cycle

Date: 11.SEP.2018 21:54:50

DH3 Duty Cycle

Date: 11.SEP.2018 21:58:17

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DH5 Duty Cycle

Date: 11.SEP.2018 14:08:06

EDR Mode (π/4-DQPSK):

2DH1 Duty Cycle

Date: 11.SEP.2018 22:03:50

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2DH3 Duty Cycle

Date: 11.SEP.2018 22:01:26

2DH5 Duty Cycle

Date: 11.SEP.2018 14:13:29

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EDR Mode (8DPSK):

3DH1 Duty Cycle

Date: 11.SEP.2018 22:05:40

3DH3 Duty Cycle

Date: 11.SEP.2018 22:07:52

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3DH5 Duty Cycle

Date: 11.SEP.2018 14:17:54

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RECEIVER SPURIOUS EMISSION AND UNWANTED EMISSION INTENSITY Limit

• ≤ 4 nW (30 MHz≤f≤1000 MHz) • ≤ 20 nW (1 GHz≤f≤12.5 GHz)

Test Equipment List and Details

Manufacturer Description Model Serial NumberCalibration

Date Calibration Due Date

Rohde & Schwarz Signal Analyzer FSV40 101116 2018-07-23 2019-07-22

Narda Attenuator/10dB 10dB N/A 2018-08-15 2019-08-14

BEST DC Power Supply PS-1502D+ N/A 2017-10-10 2018-10-09

* Statement of Traceability: Bay Area Compliance Laboratories Corp. (Kunshan) attests that all calibrations have been performed in accordance to requirements, traceable to National Primary Standards and International System of Units (SI). Test Procedure Measurement System Diagram Conditions of Application Equipment (EUT)

• The modulation state shall be “continuous receiving mode”. Spectrum Analyzer Conditions

• Start Frequency: Start Frequency of frequency range to measure (30MHz or 1GHz) • Stop Frequency: Stop Frequency of frequency range to measure (1GHz or 12.5GHz) • Span: AUTO (Measurement Range) • RBW: 100 kHz, VBW: 100 kHz for Frequency < 1 GHz • RBW: 1MHz, VBW: 1MHz for Frequency > 1 GHz • Sweep time: AUTO or more • Sweep mode: Auto Sweep • Detection: Positive Peak • Reference Level: Enough level for maximum dynamic range

EUT Spectrum Analyzer Attenuator

DC Source

Notebook

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Measurement Result Environmental Conditions

Temperature: 24.3°C

Relative Humidity: 50 %

ATM Pressure: 100.1 kPa

The testing was performed by Alisa Gao on 2018-09-11. Test Result: Compliant Test Mode: Receiving

Frequency (MHz) 2402 MHz 2441 MHz 2480MHz Limit

Voltage(VDC) 4.5 5.0 5.5 4.5 5.0 5.5 4.5 5.0 5.5

BDR Mode (GFSK)

Unwanted Emission Intensity

Band VI (dBm) -68.14 -68.09 -68.03 -66.91 -66.88 -66.84 -67.47 -67.45 -67.44

-54dBm (4nW)

Band VII (dBm) -53.27 -53.24 -53.20 -54.33 -54.31 -54.27 -53.77 -53.75 -53.74

-47dBm (20nW)

EDR Mode (π/4-DQPSK)

Unwanted Emission Intensity

Band VI (dBm) -68.10 -68.09 -68.05 -67.99 -67.97 -67.94 -68.53 -68.50 -68.45

-54dBm (4nW)

Band VII (dBm) -54.27 -54.24 -54.21 -54.72 -54.69 -54.66 -55.30 -55.28 -55.26

-47dBm (20nW)

EDR Mode (8DPSK)

Unwanted Emission Intensity

Band VI (dBm) -67.28 -67.23 -67.22 -67.89 -67.87 -67.81 -67.91 -67.85 -67.81

-54dBm (4nW)

Band VII (dBm) -54.41 -54.36 -54.30 -54.38 -54.34 -54.29 -54.68 -54.65 -54.59

-47dBm (20nW)

Note: Band VI:30MHz~1000MHz Band VII:1000MHz~12500MHz

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BDR Mode (GFSK)

Low Channel

30MHz~1000MHz

Date: 11.SEP.2018 10:45:59

1000MHz~12500MHz

Date: 11.SEP.2018 10:43:57

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Middle Channel

30MHz~1000MHz

Date: 11.SEP.2018 10:34:53

1000MHz~12500MHz

Date: 11.SEP.2018 10:41:36

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High Channel

30MHz~1000MHz

Date: 11.SEP.2018 10:51:29

1000MHz~12500MHz

Date: 11.SEP.2018 10:48:00

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EDR Mode (π/4-DQPSK):

Low Channel

30MHz~1000MHz

Date: 11.SEP.2018 10:58:59

1000MHz~12500MHz

Date: 11.SEP.2018 11:00:31

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Middle Channel

30MHz~1000MHz

Date: 11.SEP.2018 11:03:37

1000MHz~12500MHz

Date: 11.SEP.2018 11:02:09

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High Channel

30MHz~1000MHz

Date: 11.SEP.2018 10:57:37

1000MHz~12500MHz

Date: 11.SEP.2018 10:56:37

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EDR Mode (8DPSK):

Low Channel

30MHz~1000MHz

Date: 11.SEP.2018 11:08:49

1000MHz~12500MHz

Date: 11.SEP.2018 11:07:40

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Middle Channel

30MHz~1000MHz

Date: 11.SEP.2018 11:05:17

1000MHz~12500MHz

Date: 11.SEP.2018 11:06:49

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High Channel

30MHz~1000MHz

Date: 11.SEP.2018 11:09:45

1000MHz~12500MHz

Date: 11.SEP.2018 11:11:10

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FREQUENCY HOPPING DWELL TIME Applicable Standard According to Radio Law Radio Equipment Regulations Article 49-20, frequency dwell time is 0.4 seconds

or below. Test Equipment List and Details

Manufacturer Description Model Serial NumberCalibration

Date Calibration Due Date

Rohde & Schwarz Signal Analyzer FSV40 101116 2018-07-23 2019-07-22

Narda Attenuator/10dB 10dB N/A 2018-08-15 2019-08-14

BEST DC Power Supply PS-1502D+ N/A 2017-10-10 2018-10-09

* Statement of Traceability: Bay Area Compliance Laboratories Corp. (Kunshan) attests that all calibrations have been performed in accordance to requirements, traceable to National Primary Standards and International System of Units (SI). Test Procedure Measurement System Diagram Conditions of Application Equipment (EUT)

• Set the application equipment (EUT) to the measurement frequency. • The modulation state shall be “continuous (burst) transmission mode”. If impossible, it shall be

“continuous frequency-hopping mode”.

EUT Spectrum Analyzer Attenuator

DC Source

Notebook

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Spectrum Analyzer Conditions

Test Data Environmental Conditions

Temperature: 24.3°C

Relative Humidity: 50 %

ATM Pressure: 100.1 kPa

The testing was performed by Alisa Gao on 2018-09-11. Test Result: Compliant

Time of Occupancy

Mode Packet Type

Spreading Bandwidth

(MHz)

Time Per One Hopping(ms)

Hopping Numbers

Dwell Time

(s)

Limit (s)

Result

BDR (GFSK)

DH1 70.91 0.4348 94 0.041 0.4 Pass

DH3 70.91 1.7391 92 0.160 0.4 Pass

DH5 70.91 3.0000 65 0.195 0.4 Pass

EDR (π/4-

DQPSK)

2DH1 70.91 0.4783 95 0.045 0.4 Pass

2DH3 70.91 1.7391 96 0.167 0.4 Pass

2DH5 70.91 3.0000 69 0.207 0.4 Pass

EDR (8DPSK)

3DH1 70.33 0.4783 105 0.050 0.4 Pass

3DH3 70.91 1.7391 90 0.157 0.4 Pass

3DH5 70.91 3.1304 67 0.210 0.4 Pass

Note: Dwell time = Time per one hopping (On time) * hopping numbers

Center Frequency: 2441MHz SPAN: ZERO SPAN RBW: 1MHz VBW: Same as RBW Sweep Time: 0.4*SBW[second]Data Points: 400 points or more Sweep Mode: Single Sweep Detection Mode: Peak Y-axis Scale: 10dB/Div. Reference Level: Enough level for maximum dynamic range

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BDR Mode (GFSK):

Hopping Numbers-DH1

Date: 11.SEP.2018 13:51:33

Hopping Numbers-DH3

Date: 11.SEP.2018 13:49:51

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Hopping Numbers-DH5

Date: 11.SEP.2018 13:48:02

EDR Mode (π/4-DQPSK):

Hopping Numbers-2DH1

Date: 11.SEP.2018 13:42:12

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Hopping Numbers-2DH3

Date: 11.SEP.2018 13:43:22

Hopping Numbers-2DH5

Date: 11.SEP.2018 13:45:34

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EDR Mode (8DPSK):

Hopping Numbers-3DH1

Date: 11.SEP.2018 13:38:10

Hopping Numbers-3DH3

Date: 11.SEP.2018 13:39:23

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Hopping Numbers-3DH5

Date: 11.SEP.2018 13:40:27

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INTERFERENCE PREVENTION FUNCTION Requirement The EUT shall have the interference prevention capability to transmit or to receive the identification automatically, so that sender and receiver shall exclude other equipment. Test Procedure In the case that the EUT has the function of automatically transmitting the identification code: 1. Transmit the predetermined identification codes from EUT 2. Check the transmitted identification codes with the demodulator.

In the case of receiving the identification codes: 1. Transmit the predetermined identification codes from the counterpart. 2. Check if communication is normal 3. Transmit the signal other than predetermined ID codes from the counterpart. 4. Check if the EUT stops the transmission, or if it displays that identification codes are different from

the predetermined ones. Test Data Environmental Conditions

Temperature: 24.3°C

Relative Humidity: 50 %

ATM Pressure: 100.1 kPa

The testing was performed by Alisa Gao on 2018-09-11. Test Result: Good

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CONSTRUCTION PROTECTION CONFIRMATION Limit The high-frequency section and modulation section of the radio equipment except for the antenna system shall not be capable of being opened easily. Confirmation Method

The EUT’s shielding cover has been locked by special screws, so the shielding cover cannot be opened easily.

****END OF REPORT****