CE EMC TEST REPORT

Harris

Test Report (LTE, Master)

Langogo Technology Co., LTD. T1 Wearable & handheld translation device 2AQLY-T1 2AQLYT1 t1

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TEST REPORT
FCC ID: 2AQLY-T1 Product: Wearable & handheld translation device
Model No.: Langogo Genesis Additional Model No.: SPK01, S1, T1
Trade Mark: Report No.: TCT180706E022 Issued Date: Aug. 01, 2018
Issued for: Langogo Technology Co., LTD. 2 / F, Boxun Building, Keyuan North Road, Nanshan District, Shenzhen,
518000 China
Issued By: Shenzhen Tongce Testing Lab. 1B/F., Building 1, Yibaolai Industrial Park, Qiaotou, Fuyong, Baoan District, Shenzhen, Guangdong, China
TEL: +86-755-27673339 FAX: +86-755-27673332
Note: This report shall not be reproduced except in full, without the written approval of Shenzhen Tongce Testing Lab.
This document may be altered or revised by Shenzhen Tongce Testing Lab. personnel only, and shall be noted in the revision section of the document. The test results in the report only apply to the tested sample.
Hotline: 400-6611-140 Tel: 86-755-27673339 Fax: 86-755-27673332 http://www.tct-lab.com

TABLE OF CONTENTS

Report No.: TCT180706E022

1. Test Certification ..................................................................................... 3 2. Test Result Summary .............................................................................. 3 3. EUT Description....................................................................................... 5 4. Genera Information.................................................................................. 8
4.1. Test environment and mode................................................................................. 8 4.2. Test Mode............................................................................................................. 11 4.3. Description of Support Units .............................................................................. 14 4.4. Configuration of Tested System ........................................................................ 14 4.5. Measurement Results Explanation Example..................................................... 14
5. Facilities and Accreditations ................................................................ 15
5.1. Facilities ............................................................................................................... 15 5.2. Location ............................................................................................................... 15 5.3. Measurement Uncertainty................................................................................... 15
6. Test Results and Measurement Data ................................................... 16
6.1. Conducted Output Power Measurement ........................................................... 16 6.2. Peak to Average Ratio......................................................................................... 17 6.3. Band Edge and Conducted Spurious Emission Measurement ....................... 19 6.4. Field Strength of Spurious Radiation Measurement ........................................ 21 6.5. Frequency Stability Measurement ..................................................................... 24
Appendix A: Photographs of Test Setup Appendix B: Photographs of EUT Test Data: Refer to Appendix For LTE Band 2, Appendix For LTE Band 5,
Appendix For LTE Band 7, Appendix For LTE Band 17, Appendix For LTE Band 41

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1. Test Certification

Product:

Wearable & handheld translation device

Model No.:
Additional Model:

Langogo Genesis SPK01, S1, T1

Report No.: TCT180706E022

Trade Mark:

Applicant: Langogo Technology Co., LTD.

Address:

2 / F, Boxun Building, Keyuan North Road, Nanshan District, Shenzhen, 518000 China

Manufacturer: Shenzhen Shuangping tai Medical Technology Co., LTD

Address:

7 / F, Boxun Building, Keyuan North Road, Nanshan District, Shenzhen

Date of Test: Jul. 09, 2018 - Jul. 31, 2018

Applicable Standards:

FCC CFR Title 47 Part 2 FCC CFR Title 47 Part24 FCC CFR Title 47 Part27

The above equipment has been tested by Shenzhen Tongce Testing Lab. and found compliance with the requirements set forth in the technical standards mentioned above. The results of testing in this report apply only to the product/system, which was tested. Other similar equipment will not necessarily produce the same results due to production tolerance and measurement uncertainties.

Tested By: Reviewed By: Approved By:

Jin Wang Beryl Zhao
Tomsin

Date:

Jul. 31, 2018

Date:

Aug. 01, 2018

Date:

Aug. 01, 2018

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2. Test Result Summary

Requirement
Conducted Output Power
Peak-to-Average Ratio
Effective Radiated Power
Equivalent Isotropic Radiated Power
Occupied Bandwidth
Band Edge

CFR 47 Section
§2.1046; §24.232(c); §27.50(h);
§24.232(d);
§2.1046; §27.50(d)(4);
§2.1046; §27.50(d); §2.1049; §24.238(b); §27.53(h)(3); §27.53(m)(6); §2.1051; §27.53(g); §27.53(g); §24.238(a);

Conducted Spurious Emission

§2.1051; §27.53(h); §24.238(a);

Field Strength of Spurious Radiation

§2.1053; §27.53(g) ; §27.53(h); §24.238(a);

Frequency Stability for Temperature &
Voltage

§2.1055;§27.54; §24.235;

Note:

1. PASS: Test item meets the requirement.

2. Fail: Test item does not meet the requirement.

3. N/A: Test case does not apply to the test object.

4. The test result judgment is decided by the limit of test standard.

Report No.: TCT180706E022
Result
PASS PASS PASS PASS PASS PASS
PASS
PASS PASS

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3. EUT Description

Report No.: TCT180706E022

Product: Model No.: Additional Model:

Wearable & handheld translation device Langogo Genesis SPK01, S1, T1

Trade Mark:

Hardware Version:

YK909-V1.2

Software Version:

YK909_lwtg_36_HEYAN_V001_180709_2247

LTE Band 2: 1850 MHz ~ 1910 MHz

LTE Band 5: 824 MHz ~ 849 MHz

Tx Frequency:

LTE Band 7: 2500 MHz ~ 2570 MHz

LTE Band 17: 704 MHz ~ 716 MHz

LTE Band 41: 2555 MHz ~ 2655 MHz

LTE Band 2: 1930MHz ~ 1990 MHz

LTE Band 5: 869 MHz ~ 894 MHz

Rx Frequency:

LTE Band 7: 2620MHz ~ 2690 MHz

LTE Band 17: 734 MHz ~ 746 MHz

LTE Band 41: 2555 MHz ~ 2655 MHz

LTE Band 2: 1.4MHz /3MHz /5MHz /10MHz /15MHz / 20MHz

LTE Band 5: 1.4MHz /3MHz /5MHz /10MHz

Bandwidth:

LTE Band 7: 5MHz /10MHz /15MHz / 20MHz

LTE Band 17: 5MHz /10MHz

LTE Band 41: 5MHz /10MHz /15MHz / 20MHz

LTE Band 2: 22.74dBm

Maximum Output Power to Antenna:

LTE Band 5: 23.88dBm LTE Band 7: 22.83dBm LTE Band 17:23.49dBm

LTE Band 41: 23.95dBm

LTE Band 2: 17M9G7D

99% Occupied Bandwidth:

LTE Band 5: 8M95G7D LTE Band 7: 17M9G7D LTE Band 17: 8M95G7D

LTE Band 41: 17M9G7D

Type of Modulation:

QPSK / 16QAM

Antenna Type: Antenna Gain: Power Supply:

Internal Antenna
LTE Band 2: 1dBi LTE Band 5: 1dBi LTE Band 7: 1dBi LTE Band 17: 1dBi LTE Band 41: 1dBi
Rechargeable Li-ion Battery DC 3.7V

Page 5 of 26
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Remark:

Report No.: TCT180706E022
All models above are identical in interior structure, electrical circuits and components, and just model names are different for the marketing requirement.

Emission Designator

LTE Band 2

BW(MHz)

Emission Designator (99%OBW)

1.4

1M08G7D

3

2M68G7D

5

4M48G7D

10

8M95G7D

15

13M4G7D

20

17M9G7D

QPSK Maximum EIRP(W)
0.2333 0.2307 0.2344 0.2317 0.2307 0.2366

LTE Band 5
BW(MHz)
1.4 3 5 10

Emission Designator (99%OBW)
1M08G7D
2M68G7D
4M48G7D
8M95G7D

QPSK Maximum EIRP(W)
0.2917 0.2972 0.3041 0.3076

LTE Band 7
BW(MHz)
5 10 15 20

Emission Designator (99%OBW) 4M48G7D
8M95G7D
13M4G7D
17M9G7D

QPSK Maximum EIRP(W)
0.2344 0.0018 0.1968 0.2415

LTE Band 17 BW(MHz)
5 10

Emission Designator (99%OBW)
4M48G7D
8M95G7D

QPSK Maximum EIRP(W)
0.2799 0.2812

16QAM

Emission Designator (99%OBW)

Maximum EIRP(W)

1M08W7D

0.1936

2M68W7D

0.1936

4M48W7D

0.1986

8M95W7D

0.1959

13M4W7D

0.2000

17M9W7D

0.1972

Emission Designator (99%OBW)

16QAM Maximum EIRP(W)

1M08W7D

0.2388

2M68W7D

0.2421

4M48W7D

0.2449

8M94W7D

0.2415

16QAM

Emission Designator (99%OBW)

Maximum EIRP(W)

4M48W7D

0.1914

8M95W7D

0.1722

13M4W7D

0.1675

17M9W7D

0.1774

Emission Designator (99%OBW)
4M48W7D
8M94W7D

16QAM Maximum EIRP(W)
0.2339 0.2234

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LTE Band41
BW(MHz)
5 10 15 20

Emission Designator (99%OBW) 4M49G7D
8M94G7D
13M4G7D
17M9G7D

QPSK Maximum EIRP(W)
0.2951 0.3097 0.2972 0.3126

Report No.: TCT180706E022
16QAM

Emission Designator (99%OBW)

Maximum EIRP(W)

4M47W7D

0.2360

8M95W7D

0.2438

13M4W7D

0.2553

17M9W7D

0.2500

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4. Genera Information
4.1. Test environment and mode

Report No.: TCT180706E022

Operating Environment: Temperature: Humidity: Atmospheric Pressure:

24.0 C 54 % RH 1010 mbar

Test Mode: Operation mode:

Keep the EUT in continuous transmitting with modulation

The sample was placed 0.8m above the ground plane of 3m chamber. Measurements in both horizontal and vertical polarities were performed. During the test, each emission was maximized by: having the EUT continuously working, investigated all operating modes, rotated about all 3 axis (X, Y & Z) and considered typical configuration to obtain worst position, manipulating interconnecting cables, rotating the turntable, varying antenna height from 1m to 4m in both horizontal and vertical polarizations. The emissions worst-case are shown in Test Results of the following pages.

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Description Operation Frequency

LTE Band 2(1.4MHz)

Channel

Frequency (MHz)

18607

1850.7

18900

1880

19193

1909.3

LTE Band 2(5MHz)

Channel

Frequency (MHz)

18625

1852.5

18900

1880

19175

1907.5

LTE Band 2(15MHz)

Channel

Frequency (MHz)

18675

1857.5

18900

1880

19125

1902.5

Report No.: TCT180706E022

LTE Band 2(3MHz)

Channel

Frequency (MHz)

18615

1851.5

18900

1880

19185

1908.5

LTE Band 2(10MHz)

Channel

Frequency (MHz)

18650

1855

18900

1880

19150

1905

LTE Band 2(20MHz)

Channel

Frequency (MHz)

18700

1860

18900

1880

19100

1900

LTE Band 5(1.4MHz)

Channel

Frequency (MHz)

20407

824.7

20525

836.5

20643

848.3

LTE Band 5(5MHz)

Channel

Frequency (MHz)

20425

826.5

20525

836.5

20625

846.5

LTE Band 5(3MHz)

Channel

Frequency (MHz)

20415

825.5

20525

836.5

20635

847.5

LTE Band 5(10MHz)

Channel

Frequency (MHz)

20450

829

20525

836.5

20600

844

LTE Band 7(5MHz)

Channel

Frequency (MHz)

20775

2502.5

21100

2535

21425

2567.5

LTE Band 7(15MHz)

Channel

Frequency (MHz)

20825

2507.5

21100

2535

21375

2562.5

LTE Band 7(10MHz)

Channel

Frequency (MHz)

20800

2505

21100

2535

21400

2565

LTE Band 7(20MHz)

Channel

Frequency (MHz)

20850

2510

21100

2535

21350

2560

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LTE Band 17(5MHz)

Channel

Frequency (MHz)

23755

706.5

23790

710

23825

713.5

LTE Band 41(5MHz)

Channel

Frequency (MHz)

40265

2557.5

40740

2605

41215

2652.5

LTE Band 41(15MHz)

Channel

Frequency (MHz)

40315

2562.5

40740

2605

41165

2647.5

Report No.: TCT180706E022

LTE Band 17(10MHz)

Channel

Frequency (MHz)

23780

709

23790

710

23800

711

LTE Band 41(10MHz)

Channel

Frequency (MHz)

40290

2560

40740

2605

41190

2650

LTE Band 41(20MHz)

Channel

Frequency (MHz)

40340

2565

40740

2605

41140

2645

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4.2. Test Mode

Report No.: TCT180706E022

All modes and data rates and positions were investigated. Test modes are chosen to be reported as the worst case configuration below:

Test Mode

Band

Radiated TCs

Conducted TCs

LTE Band 2

QPSK Link (1.4MHz / 3MHz / 5MHz / 10MHz / 15MHz / 20MHz)

16QAM Link (1.4MHz / 3MHz / 5MHz / 10MHz / 15MHz / 20MHz)

LTE Band 5

QPSK Link (1.4MHz / 3MHz / 5MHz /
10MHz)

16QAM Link (1.4MHz / 3MHz / 5MHz /
10MHz)

LTE Band 7

QPSK Link ( 5MHz / 10MHz / 15MHz /
20MHz)

16QAM Link ( 5MHz / 10MHz / 15MHz /
20MHz)

LTE Band 17

QPSK Link (5MHz / 10MHz)

16QAM Link (5MHz / 10MHz)

LTE Band 41

QPSK Link ( 5MHz / 10MHz / 15MHz /
20MHz)

16QAM Link (5MHz / 10MHz / 15MHz /
20MHz)

Antenna port conducted and radiated test items were performed according to KDB 971168 D01 Power Meas License Digital Systems v03 with maximum output power. Radiated measurements were performed with rotating EUT in different three orthogonal test planes to find the maximum emission.

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Report No.: TCT180706E022

Test Items

Bandwidth (MHz)

Modulation

RB #

Test Channel

Band

1.4 3

5 10 15 20 QPSK 16QAM 1 Half Full L M H

2

v

v v

v

v v

v

v

v v

v v

v

v

Max. Output

5

v

v v

v

v

v

Power

7

v

v

v v

v

v

v v v v

v v v v

v

v

v

v

17

v

v

v

v

v v

v v

v

v

41

v

v

v v

v

v

v v

v v

v

v

2

v

v v

v

v v

v

v

v v

v v

v

v

Peak-to-Average

5

v

v v

v

v

v

Ratio

7

v

v

v v

v

v

v v v v

v v v v

v

v

v

v

17

v

v

v

v

v v

v v

v

v

41

v

v

v v

v

v

v v

v v

v

v

26dB and 99%

2

v

v v

v

v v

v

v

v v

v v

v

v

Bandwidth

5

v

v v

v

v

v

v v

v v

v

v

7

v

v

v v

v

v

v v

v v

v

v

17

v

v

v

v

v v

v v

v

v

41

v

v

v v

v

v

v v

v v

v

v

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Report No.: TCT180706E022

Test Items
Conducted Band Edge
Conducted Spurious Emission

Bandwidth (MHz)

Modulation

RB #

Test Channel

Band

1.4 3

5 10 15 20 QPSK 16QAM 1 Half Full L

M H

2

v

v

v

v

v v

v

5

v

v

v

v

v

7

v

v

v v

v

17

v

v

v

41

v

v

v v

v

2

v

v

v

v

v v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v

v v

5

v

v

v

v

v

v

v

v

v v

7

v

v

v v

v

v

v

v

v v

17

v

v

v

v

v

v

v v

41

v

v

v v

v

v

v

v

v v

2

v

v

v

v

v

v v

Frequency

5

v

Stability

7

v

v

v

v

v

v

v

v v

v

v

v v

17

v

v

v

v

v

v v

41

v

v

v

v

v

v v

2

v

v v

v

v v

v

v

v

v

v

v

v v

E.R.P./ E.I.R.P.

5

v

v v

v

v

v

v

v

v

v

v v

7

v

v

v v

v

v

v

v

v

v

v v

17

v

v

v

v

v

v

v

v

v v

41

v

v

v v

v

v

v

v

v

v

v v

Radiated

2

v

v

v

v

v

v v

Spurious

5

v

v

v

v

v

v v

Emission

7

v

v

v

v

v

v v

17

v

v

v

v

v

v v

41

v

v

v

v

Note

1. The mark "v " means that this configuration is chosen for testing

v

v v

2. The mark "-" means that this bandwidth is not supported.

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4.3. Description of Support Units

Report No.: TCT180706E022

The EUT has been tested as an independent unit together with other necessary accessories or support units. The following support units or accessories were used to form a representative test configuration during the tests.

Equipment

Model No. Serial No.

FCC ID

Trade Name

Note:
1. All the equipment/cables were placed in the worst-case configuration to maximize the emission during the test. 2. Grounding was established in accordance with the manufacturer's requirements and conditions for the intended
use.
4.4. Configuration of Tested System

4.5. Measurement Results Explanation Example
For all conducted test items:
The offset level is set in the spectrum analyzer to compensate the RF cable loss and attenuator factor between RF conducted output port and spectrum analyzer. With the offset compensation, the spectrum analyzer reading level will be exactly the RF output level. The spectrum analyzer offset is derived from RF cable loss and attenuator factor. Offset = RF cable loss + attenuator factor.
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Report No.: TCT180706E022
5. Facilities and Accreditations
5.1. Facilities
The test facility is recognized, certified, or accredited by the following organizations:  FCC - Registration No.: 645098
Shenzhen Tongce Testing Lab. The 3m Semi-anechoic chamber has been registered and fully described in a report with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is maintained in our files.  IC - Registration No.: 10668A-1 The 3m Semi-anechoic chamber of Shenzhen TCT Testing Technology Co., Ltd. has been registered by Certification and Engineering Bureau of Industry Canada for radio equipment testing

5.2. Location
Shenzhen Tongce Testing Lab Address: 1B/F., Building 1, Yibaolai Industrial Park, Qiaotou, Fuyong, Baoan District,
Shenzhen, Guangdong, China TEL: +86-755-27673339
5.3. Measurement Uncertainty

The reported uncertainty of measurement y ±U, where expended uncertainty U is based on a standard uncertainty multiplied by a coverage factor of k=2, providing a level of confidence of approximately 95 %.

No. Item

MU

1

Conducted Emission

±2.56dB

2

RF power, conducted

±0.12dB

3

Spurious emissions, conducted

±0.11dB

4

All emissions, radiated(<1G)

±3.92dB

5

All emissions, radiated(>1G)

±4.28dB

6

Temperature

±0.1°C

7

Humidity

±1.0%

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6. Test Results and Measurement Data

Report No.: TCT180706E022

6.1. Conducted Output Power Measurement

6.1.1. Test Specification Test Requirement: Test Method:

FCC part 27.50(c), FCC part 27.50(d) and FCC part 27.50(h), FCC part 24.232(c),
FCC part 2.1046

Limits:

LTE Band 2: 2W LTE Band 4: 1W

Test Setup:

Test Procedure: Test Result:

1. The transmitter output port was connected to the system simulator.
2. Set EUT at maximum power through system simulator.
3. Select lowest, middle, highest channels for each band and different modulation.
4. Measure and record the power level from the system simulator.
PASS

6.1.2. Test Instruments

Equipment

Manufacturer

Wideband Radio Communication
Tester RF cable (9kHz-40GHz)

R&S TCT

Antenna Connector

TCT

Model CMW500
RE-05 RFC-02

Serial Number Calibration Due

114220

Sep. 27, 2018

N/A

Sep. 27, 2018

N/A

Sep. 27, 2018

Note: The calibration interval of the above test instruments is 12 months and the calibrations are traceable to
international system unit (SI).

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6.2. Peak to Average Ratio

Report No.: TCT180706E022

6.2.1. Test Specification

Test Requirement: Test Method: Limit:

FCC part 24.232(d)
FCC KDB 971168 D01v03 The peak-to-average ratio (PAR) of the transmission may not exceed 13 dB.

Test Setup:

Test Procedure: Test Result:

1. The testing follows FCC KDB 971168 D01v03 Section 5.7.1.
2. The EUT was connected to spectrum analyzer and system simulator via a power divider.
3. Set EUT to transmit at maximum output power. 4. Set the CCDF (Complementary Cumulative
Distribution Function) option of the spectrum analyzer. Record the maximum PAPR level associated with a probability of 0.1%.
PASS

6.2.2. Test Instruments

Equipment

Manufacturer

Wideband Radio Communication
Tester

R&S

Spectrum Analyzer

Agilent

RF cable (9kHz-40GHz)

TCT

Antenna Connector

TCT

Model CMW500 N9020A
RE-05 RFC-02

Serial Number Calibration Due

114220

Sep. 27, 2018

MY49100060 N/A N/A

Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018

Note: The calibration interval of the above test instruments is 12 months and the calibrations are traceable to
international system unit (SI).

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Report No.: TCT180706E022

6.3. 99% Occupied Bandwidth and 26dB Bandwidth Measurement

6.3.1. Test Specification

Test Requirement: Test Method: Limit:

FCC part 27.53(h)(3) and FCC part 27.53(m)(6), FCC part 24.238(b) FCC part 2.1049
N/A

Test Setup:

Test Procedure: Test Result:

1. The testing follows FCC KDB 971168 D01v03 Section 4.2.
2. The EUT was connected to the spectrum analyzer and system simulator via a power divider.
3. The RF output of the EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement.
4. The 99% occupied bandwidth were measured, set RBW= 1% of OBW, VBW= 3*RBW, sample detector, trace maximum hold.
5. The 26dB bandwidth were measured, set RBW= 1% of EBW, VBW= 3*RBW, peak detector, trace maximum hold.
PASS

6.3.2. Test Instruments

Equipment

Manufacturer

Wideband Radio Communication
Tester

R&S

Spectrum Analyzer

Agilent

RF cable (9kHz-40GHz)

TCT

Antenna Connector

TCT

Model CMW500 N9020A
RE-05 RFC-02

Serial Number Calibration Due

114220

Sep. 27, 2018

MY49100060 N/A N/A

Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018

Note: The calibration interval of the above test instruments is 12 months and the calibrations are traceable to
international system unit (SI).

Page 18 of 26
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Report No.: TCT180706E022
6.4. Band Edge and Conducted Spurious Emission Measurement
6.4.1. Test Specification

Test Requirement:
Test Method: Limit:

FCC part 27.53(h), FCC part 27.53(g) , FCC part 27.53(m)(4), FCC part 24.238(a) FCC part2.1051 -13dBm

Test Setup: Test Procedure: Test Result:

1. The testing follows FCC KDB 971168 D01v03 Section 6.0.
2. The EUT was connected to the spectrum analyzer and system simulator via a power divider.
3. The RF output of EUT was connected to the spectrum analyzer by an RF cable and attenuator. The path loss was compensated to the results for each measurement.
4. The band edges of low and high channels for the highest RF powers were measured.
5. The conducted spurious emission for the whole frequency range was taken.
6. The RF fundamental frequency should be excluded against the limit line in the operating frequency band.
7. The limit line is derived from 43 + 10log(P) dB below the transmitter power P(Watts) = P(W) - [43 + 10log(P) ] (dB) = [30 + 10log(P)] (dBm) - [43 + 10log(P) ] (dB) = -13dBm. For Band 17, he limit line is derived from 55 + 10log(P) dB below the transmitter power
PASS

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6.4.2. Test Instruments

Report No.: TCT180706E022

Equipment

Manufacturer

Wideband Radio Communication
Tester

R&S

Spectrum Analyzer

Agilent

RF cable (9kHz-40GHz)

TCT

Antenna Connector

TCT

Model CMW500 N9020A
RE-05 RFC-02

Serial Number Calibration Due

114220

Sep. 27, 2018

MY49100060 N/A N/A

Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018

Note: The calibration interval of the above test instruments is 12 months and the calibrations are traceable to
international system unit (SI).

Page 20 of 26
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Report No.: TCT180706E022

6.5. Field Strength of Spurious Radiation Measurement

6.5.1. Test Specification

Test Requirement:
Test Method: Limit:

FCC part 27.53(g) ,FCC part 27.53(h), FCC part 27.53(m)(4), FCC part 24.238(b) FCC part 2.1053 30MHz~20GHz -13dBm From 30MHz to 1GHz

Test setup:

Above 1GHz

Test Procedure:

1. The testing follows FCC KDB 971168 D01v03 Section 5.8 and ANSI / TIA-603-D-2010Section 2.2.12.
2. The EUT was placed on a rotatable wooden table 0.8 meters above the ground.
3. The EUT was set 3 meters from the receiving antenna, which was mounted on the antenna tower.
4. The table was rotated 360 degrees to determine the position of the highest spurious emission.
5. The height of the receiving antenna is varied between one meter and four meters to search for the maximum spurious emission for both horizontal and vertical polarizations.

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Test results:

Report No.: TCT180706E022
6. Make the measurement with the spectrum analyzer's RBW = 1MHz, VBW = 3MHz, taking record of maximum spurious emission.
7. A horn antenna was substituted in place of the EUT and was driven by a signal generator.
8. Tune the output power of signal generator to the same emission level with EUT maximum spurious emission.
9. Taking the record of output power at antenna port. 10. Repeat step 7 to step 8 for another polarization. 11. EIRP (dBm) = S.G. Power ­ Tx Cable Loss + Tx
Antenna Gain 12. ERP (dBm) = EIRP - 2.15 13. The RF fundamental frequency should be excluded
against the limit line in the operating frequency band. 14. The limit line is derived from 43 + 10log(P) dB below
the transmitter power P(Watts) = P(W) - [43 + 10log(P)] (dB) = [30 + 10log(P)] (dBm) - [43 + 10log(P)] (dB) = -13dBm. For Band 17, he limit line is derived from 55 + 10log(P) dB below the transmitter power
PASS

6.5.2. Test Instruments

Radiated Emission Test Site (966)

Name of Equipment

Manufacturer

Model

Serial Number

System simulator

R&S

CMU200

111382

Spectrum Analyzer

ROHDE&SCHW ARZ

R&S

FSQ

Signal Generator

HP

83623B 3614A00396

Broadband Antenna Schwarzbeck VULB9163

340

Calibration Due
Sep. 27, 2018
Sep. 27, 2018
Sep. 27, 2018 Sep. 27, 2018

Horn Antenna

Schwarzbeck BBHA 9120D

631

Sep. 27, 2018

Broadband Antenna Horn Antenna Horn Antenna Dipole Antenna Coax cable (9kHz-1GHz) Coax cable

Schwarzbeck Schwarzbeck Schwarzbeck
TCT
TCT
TCT

VULB9163 BBHA 9120D
BBH 9170 TCT-RF
RE-low-01
RE-high-02

412 1201 582 N/A
N/A
N/A

Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018
Sep. 27, 2018
Sep. 27, 2018

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(9kHz-40GHz) Coax cable (9kHz-1GHz) Coax cable
(9kHz-40GHz)
Antenna Mast
EMI Test Software

TCT
TCT
Keleto Shurple Technology

RE-low-03 RE-High-04
CC-A-4M EZ-EMC

Report No.: TCT180706E022

N/A

Sep. 27, 2018

N/A

Sep. 27, 2018

N/A

N/A

N/A

N/A

Note: The calibration interval of the above test instruments is 12 months and the calibrations are traceable to
international system unit (SI).

Page 23 of 26
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6.6. Frequency Stability Measurement

6.6.1. Test Specification

Test Requirement:
Test Method: Limit:

FCC part 27.54, FCC part 24.235
FCC Part 2.1055 ±2.5 ppm

Report No.: TCT180706E022

Test Setup:

Test Procedure: Test Result:

Test Procedures for Temperature Variation 1. The testing follows FCC KDB 971168 D01v03 Section
9.0. 2. The EUT was set up in the thermal chamber and
connected with the system simulator. 3. With power OFF, the temperature was decreased to
-30°C and the EUT was stabilized before testing. Power was applied and the maximum change in frequency was recorded within one minute. 4. With power OFF, the temperature was raised in 10°C steps up to 50°C. The EUT was stabilized at each step for at least half an hour. Power was applied and the maximum frequency change was recorded within one minute. Test Procedures for Voltage Variation 1. The testing follows FCC KDB 971168 D01v03 Section 9.0. 2. The EUT was placed in a temperature chamber at 25±5°C and connected with the system simulator. 3. The power supply voltage to the EUT was varied from BEP to 115% of the nominal value measured at the input to the EUT. 4. The variation in frequency was measured for the worst case.
PASS

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6.6.2. Test Instruments

Report No.: TCT180706E022

Equipment
Wideband Radio Communication
Tester Programable tempratuce and humidity chamber

Manufacturer R&S JQ

DC power supply

Kingrang

RF cable (9kHz-40GHz)

TCT

Antenna Connector

TCT

Model
CMW500
JQ-2000 KR3005K
30V/5A RE-04 RFC-03

Serial Number Calibration Due

114220

Sep. 27, 2018

N/A

Sep. 27, 2018

N/A

Sep. 27, 2018

N/A

Sep. 27, 2018

N/A

Sep. 27, 2018

Note: The calibration interval of the above test instruments is 12 months and the calibrations are traceable to
international system unit (SI).

Page 25 of 26
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Appendix A: Photographs of Test Setup
Refer to test report TCT180706E004
Appendix B: Photographs of EUT
Refer to test report TCT180706E004
*****END OF REPORT*****

Report No.: TCT180706E022

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