Test Report

X-Media Tech, Inc MBC005 Bluetooth module 2AJFZ-MBC005 2AJFZMBC005 mbc005

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Document DEVICE REPORTGetApplicationAttachment.html?id=3202994
TEST REPORT
of
FCC Part 15 Subpart C
Full Modular Approval

New Application;

Class I PC;

Product :

Bluetooth module

Class II PC

Brand:

N/A

Model:

MBC005; BTD1

Model Difference: For market segmentation

FCC ID:

2AJFZ-MBC005

FCC Rule Part: §15.247, Cat: DSS

Applicant:

X-Media Tech, Inc

Address:

519 Marine View Ave Ste G-H Belmont CA 94002 USA

Test Performed by: International Standards Laboratory
<Lung-Tan LAB> *Site Registration No. BSMI: SL2-IN-E-0013; MRA TW1036; TAF: 0997; IC: IC4067B-3; *Address: No. 120, Lane 180, Hsin Ho Rd. Lung-Tan Dist., Tao Yuan City 325, Taiwan *Tel : 886-3-407-1718; Fax: 886-3-407-1738
Report No.: ISL-16LR208FCDSS
Issue Date : 2016/08/18

Test results given in this report apply only to the specific sample(s) tested and are traceable to national or international standard through calibration of the equipment and evaluating measurement uncertainty herein. This report MUST not be used to claim product endorsement by TAF, NVLAP or any agency of the Government. This test report shall not be reproduced except in full, without the written approval of International Standards Laboratory.

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FCC ID: 2AJFZ-MBC005

VERIFICATION OF COMPLIANCE

Applicant: Product Description: Brand Name: Model No.:
Model Difference: FCC ID: Date of test: Date of EUT Received:

X-Media Tech, Inc Bluetooth module N/A MBC005; BTD1 FOR MARKET SEGMENTATION 2AJFZ-MBC005 2016/07/27 ~ 2016/08/16 2016/07/27

We hereby certify that:
All the tests in this report have been performed and recorded in accordance with the standards described above and performed by an independent electromagnetic compatibility consultant, International Standards Laboratory.
The test results contained in this report accurately represent the measurements of the characteristics and the energy generated by sample equipment under test at the time of the test. The sample equipment tested as described in this report is in compliance with the limits of above standards.

Test By:

Dion Chang / Engineer

Date:

Prepared By:

Date:

Gigi Yeh / Specialist

Approved By:

Date:

Vincent Su / Technical Manager

2016/08/18 2016/08/18 2016/08/18

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

Version No. 00

Date 2016/08/17

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FCC ID: 2AJFZ-MBC005

Version
Description Initial creation of document

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

Table of Contents
1. GENERAL INFORMATION .................................................................................................... 6
1.1. Product Description .......................................................................................................................6 2.1. Related Submittal(s) / Grant (s) .....................................................................................................7 2.2. Test Methodology ..........................................................................................................................7 2.3. Test Facility....................................................................................................................................7 2.4. Special Accessories........................................................................................................................7 2.5. Equipment Modifications...............................................................................................................7
2. SYSTEM TEST CONFIGURATION ....................................................................................... 8
2.1. EUT Configuration ........................................................................................................................8 2.2. EUT Exercise .................................................................................................................................8 2.3. Test Procedure................................................................................................................................8 2.4. Configuration of Tested System.....................................................................................................9
3. SUMMARY OF TEST RESULTS .......................................................................................... 11
4. DESCRIPTION OF TEST MODES ....................................................................................... 11
5. AC POWER LINE CONDUCTED EMISSION TEST ......................................................... 12
5.1. Standard Applicable: ....................................................................................................................12 5.2. Measurement Equipment Used: ...................................................................................................12 5.3. EUT Setup:...................................................................................................................................12 5.4. Measurement Procedure: .............................................................................................................13 5.5. Measurement Result: ...................................................................................................................13
6. PEAK OUTPUT POWER MEASUREMENT....................................................................... 16
6.1. Standard Applicable: ....................................................................................................................16 6.2. Measurement Equipment Used: ...................................................................................................16 6.3. .Test Set-up: .................................................................................................................................16 6.4. Measurement Procedure: .............................................................................................................16 6.5. Measurement Result: ...................................................................................................................17
7. 100KHz BANDWIDTH OF BAND EDGES MEASUREMENT.......................................... 18
7.1. Standard Applicable: ....................................................................................................................18 7.2. Measurement Equipment Used: ...................................................................................................18 7.3. Test SET-UP:................................................................................................................................19 7.4. Measurement Procedure: .............................................................................................................20 7.5. Field Strength Calculation ...........................................................................................................20 7.6. Measurement Result: ...................................................................................................................20
8. SPURIOUS EMISSION TEST ................................................................................................ 24
8.1. Standard Applicable: ....................................................................................................................24 8.2. Measurement Equipment Used: ...................................................................................................24 8.3. Test SET-UP:................................................................................................................................24 8.4. Measurement Procedure: .............................................................................................................25 8.5. Field Strength Calculation ...........................................................................................................25 8.6. Measurement Result: ...................................................................................................................25

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

9. FREQUENCY SEPARATION ................................................................................................ 32
9.1. Standard Applicable: ....................................................................................................................32 9.2. Measurement Equipment Used: ...................................................................................................32 9.3. Test Set-up: ..................................................................................................................................32 9.4. Measurement Procedure: .............................................................................................................32 9.5. Measurement Result: ...................................................................................................................32
10. NUMBER OF HOPPING FREQUENCY .............................................................................. 35
10.1. Standard Applicable: ....................................................................................................................35 10.2. Measurement Equipment Used: ...................................................................................................35 10.3. Test Set-up: ..................................................................................................................................35 10.4. Measurement Procedure: .............................................................................................................35 10.5. Measurement Result: ...................................................................................................................35
11. TIME OF OCCUPANCY (DWELL TIME) .......................................................................... 37
11.1. Standard Applicable: ....................................................................................................................37 11.2. Measurement Equipment Used: ...................................................................................................37 11.3. Test Set-up: ..................................................................................................................................37 11.4. Measurement Procedure: .............................................................................................................37 11.5. Measurement Result: ...................................................................................................................38
12. 20dB Bandwidth Bandwidth .................................................................................................... 44
12.1. Standard Applicable: ....................................................................................................................44 12.2. Measurement Equipment Used: ...................................................................................................44 12.3. Test Set-up: ..................................................................................................................................44 12.4. Measurement Procedure: .............................................................................................................44 12.5. Measurement Result: ...................................................................................................................45
13. ANTENNA REQUIREMENT ................................................................................................. 52
13.1. Standard Applicable: ....................................................................................................................52 13.2. Antenna Connected Construction: ...............................................................................................52

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

1. GENERAL INFORMATION

1.1. Product Description

Product Name

Bluetooth module

Brand Name

N/A

Model Name

MBC005; BTD1

Model Difference Input port

FOR MARKET SEGMENTATION One provided for data link and power input

AUX Port

One provided for audio in

Power Supply

5Vdc

Bluetooth: Bluetooth Version

V3.0 + EDR (GFSK +  /4 DQPSK + 8DPSK)

Frequency Range

2402 ­ 2480MHz

Channel number

79 channels

Modulation type

Frequency Hopping Spread Spectrum (FHSS)

Rated Power

4.0 dBm (Peak)

Tune-Up Power

1dB

Dwell Time

<= 0.4s

Antenna Designation Printing Antenna, 2.75dBi
The EUT is compliance with Bluetooth EDR V3.0 Standard.
Remark: The above DUT's information was declared by manufacturer. Please refer to the specifications or user's manual for more detailed description.

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

1.2. Related Submittal(s) / Grant (s) This submittal(s) (test report) is intended for FCC ID: 2AJFZ-MBC005 filing to comply with Section 15.247 of the FCC Part 15C, Subpart C Rules.
1.3. Test Methodology Both conducted and radiated testing were performed according to the procedures in ANSI C63.10: 2013. Radiated testing was performed at an antenna to EUT distance 3 meters. Tested in accordance with FCC Public Notice DA 00-705
1.4. Test Facility The measurement facilities used to collect the 3m Radiated Emission and AC power line
conducted data are located on the address of International Standards Laboratory
<Lung-Tan LAB> No. 120, Lane 180, Hsin Ho Rd., Lung-Tan Dist., Tao Yuan City 325, Taiwan which are constructed and calibrated to meet the FCC requirements in documents ANSI C63.10: 2013. FCC Registration Number is: TW1036, Canada Registration Number: 4067B-3.
1.5. Special Accessories Not available for this EUT intended for grant.
1.6. Equipment Modifications Not available for this EUT intended for grant.

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

2. SYSTEM TEST CONFIGURATION
2.1. EUT Configuration The EUT configuration for testing is installed on RF field strength measurement to meet the Commissions requirement and operating in a manner which intends to maximize its emission characteristics in a continuous normal application.
2.2. EUT Exercise The EUT (Transmitter) was tested with a test program to fix the TX/RX frequency that was for the purpose of the measurements. For more information please see test data and APPENDIX 1 for set-up photographs.
2.3. Test Procedure 2.3.1 Conducted Emissions
The EUT is a placed on as turn table which is 0.8 m above ground plane. According to the requirements in Section 7, 13 of ANSI C63.10-2013. Conducted emissions from the EUT measured in the frequency range between 0.15 MHz and 30MHz using CISPR 16-1-1 Quasi-Peak and Average detector mode.
2.3.2 Radiated Emissions
The EUT is a placed on as turn table which is 0.8/1.5 m above ground plane. The turn table shall rotate 360 degrees to determine the position of maximum emission level. EUT is set 3m away from the receiving antenna which varied from 1m to 4m to find out the highest emission. And also, each emission was to be maximized by changing the polarization of receiving antenna both horizontal and vertical. In order to find out the max. emission, the relative positions of this hand-held transmitter (EUT) was rotated through three orthogonal axes and measurement procedures for electric field radiated emissions above 1 GHz the EUT measurement is to be made "while keeping the antenna in the `cone of radiation' from that area and pointed at the area both in azimuth and elevation, with polarization oriented for maximum response." is still within the 3dB illumination BW of the measurement antenna. according to the requirements in Section 8 and 13 and Subclause 8.3.1.2 of ANSI C63.10: 2013.

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

Radiated

Fig. 2-1 Radiated/Conducted Emission Configuration

Conduction:

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FCC ID: 2AJFZ-MBC005

Table 1 Equipment Used in Tested System

Item Equipment

Model/ Mfr/Brand
Type No.

Series No. Data Cable Power Cord

1

NB

24" LCD Moni2
tor

Portable Com3
puter

4 USB mouse

HP DELL DELL DELL

440

N/A

U2412Mb

N/A

PP05L

N/A

MO56UC G17009ZJ

5

Printer

LEXMARK Z43

4101002

Speaker/ 6
microphone

HTC

RC-E160

N/A

7

Modem

ACEEX DM 1414

N/A

M.CRAFTS BT0214091

8

Speaker

MAN

023

N/A

9 Smart phone

HTC

PL99110

N/A

Non-shield shielded /
1.8M
N/A
Shielded /1.8M
Shielded /1.8M
Non-shield /1.4M
Shielded /1.8M
Non-shield /0.1M N/A

Non-shield Non-shield /
1.8M Non-shielded
/1.8M
N/A
Non-shielded /1.8M
N/A
Non-shielded /1.8M
N/A
N/A

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FCC ID: 2AJFZ-MBC005

3. SUMMARY OF TEST RESULTS

FCC Rules §15.207(a) §15.247(b)(1)
§15.247(d)
§15.247(c)

Description Of Test AC Power line Conducted Emission
Peak Output Power 100 KHz Bandwidth Of Frequency Band Edges
TX Spurious Emission

§15.247(a)(1) §15.247(a)(1)(iii) §15.247(a)(1)(ii)
§15.247(a)(1) §15.203, §15.247(c)

Frequency Separation Number of hopping frequency
Time of Occupancy 20dB Bandwidth
Antenna Requirement

4. DESCRIPTION OF TEST MODES

Result Compliant Compliant
Compliant
Compliant
Compliant Compliant Compliant Compliant Compliant

Test program used to control the EUT for staying in continuous transmitting and receiving mode is programmed.
Channel low (2402MHz)

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FCC ID: 2AJFZ-MBC005

5. AC POWER LINE CONDUCTED EMISSION TEST

5.1. Standard Applicable: According to §15.207, frequency range within 150KHz to 30MHz shall not exceed the Limit table as below.

Frequency range

Limits dB(uV)

MHz

Quasi-peak

Average

0.15 to 0.50

66 to 56

56 to 46

0.50 to 5

56

46

5 to 30

60

50

Note

1.The lower limit shall apply at the transition frequencies

2.The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.50 MHz.

5.2. Measurement Equipment Used:

Conducted Emission Test Site

EQUIPMENT TYPE
Conduction 04-3 Cable
EMI Receiver 17
LISN 18
LISN 19

MFR
WOKEN
Rohde & Schwarz ROHDE & SCHWARZ ROHDE & SCHWARZ

MODEL NUMBER CFD 300-NL
ESCI 7
ENV216
ENV216

SERIAL
NUMBER Conduction 04
-3 100887

LAST CAL DUE.
CAL. 07/27/2016 07/26/2017
09/08/2015 09/07/2016

101424 02/11/2016 02/10/2017

101425 03/12/2016 03/11/2017

5.3. EUT Setup: 1. The conducted emission tests were performed in the test site, using the setup in accordance with the ANSI C63.10-2013 2. The AC/DC Power adaptor of EUT was plug-in LISN. The EUT was placed flushed with the rear of the table. 3. The LISN was connected with 120Vac/60Hz power source.

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

5.4. Measurement Procedure: 1. The EUT was placed on a table which is 0.8m above ground plane. 2. Maximum procedure was performed on the six highest emissions to ensure EUT compliance. 3. Repeat above procedures until all frequency measured were complete.
5.5. Measurement Result: The initial step in collecting conducted data is a spectrum analyzer peak scan of the measurement range. Significant peaks are then marked as shown on the following data page, and these signals are then quasi-peaked. Note: Refer to next page for measurement data and plots.

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

AC POWER LINE CONDUCTED EMISSION TEST DATA

Operation Mode: Operation Mode

Test By:

Dino

Test Date: 2016/08/17

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

International Standards Laboratory

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6. PEAK OUTPUT POWER MEASUREMENT
6.1. Standard Applicable: According to §15.247(b)(1), For frequency hopping systems operating in the 2400-2483.5 MHz band employing at least 75 hopping channels, and all frequency hopping systems in the 5725-5850MHz band: 1Watt. For all other frequency hopping systems in the 2400 ­ 2483.5MHz band: 0.125 Watts.

6.2. Measurement Equipment Used:

Conducted Emission Test Site

EQUIPMENT

MFR

MODEL

SERIAL

TYPE

NUMBER NUMBER

Power Meter 05

Anritsu

ML2495A

1116010

Power Sensor 05 DC Power supply

Anritsu ABM

MA2411B 8185D

34NKF50 N/A

AC Power supply Splitter
Spectrum analyzer

EXTECH MCLI Agilent

CFC105W PS4-199 N9030A

NA 12465 MY51360021

LAST CAL DUE. CAL. 07/28/2016 07/27/2017 07/28/2016 07/27/2017 09/05/2015 09/04/2016
12/26/2015 12/25/2016 12/26/2015 12/25/2017
10/02/2015 10/01/2016

6.3. .Test Set-up:

EUT

Power Meter

6.4. Measurement Procedure: 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to the power meter or spectrum. (Channel power function, RBW, VBW = 1MHz) 3. Record the max. reading. 4. Repeat above procedures until all frequency measured were complete.

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

6.5. Measurement Result:

BDR Mode
Frequency (MHz)
Low Mid High

Peak Reading Power (dBm)
4.89
4.78
4.75

Cable Loss

Output Power (dBm)

Output Power (W)

0.0

4.89

0.00371

0.0

4.78

0.00361

0.0

4.75

0.00359

Limit (W)
1 1 1

EDR 2M Mode

Frequency (MHz)

Peak Reading Power (dBm)

Cable Loss

Output Power (dBm)

Output Power (W)

Limit (W)

Low

4.14

0.0

4.14

0.00312

0.125

Mid

3.94

0.0

3.94

0.00298

0.125

High

3.54

0.0

3.54

0.00272

0.125

EDR 3M Mode

Frequency (MHz)

Peak Reading Power (dBm)

Cable Loss

Output Power (dBm)

Output Power (W)

Limit (W)

Low

4.11

0.0

4.11

0.00310

0.125

Mid

4.03

0.0

4.03

0.00304

0.125

High

3.62

0.0

3.62

0.00277

0.125

Offset Cable loss 0.8dB

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

7. 100KHz BANDWIDTH OF BAND EDGES MEASUREMENT
7.1. Standard Applicable: According to §15.247(d), in any 100 KHz bandwidth outside the frequency bands in which the spread spectrum intentional radiator in operating, the radio frequency power that is produced by the intentional radiator shall be at least 20dB below that in the 100KHz bandwidth within the band that contains the highest level of the desired power, In addition, radiated emissions which fall in the restricted bands, as defined in §15.205(a), must also comply with the radiated emission limits specified in15.209(a).

7.2. Measurement Equipment Used:

7.2.1. Conducted Emission at antenna port:

Refer to section 6.2 for details.

7.2.2. Radiated emission:

EQUIPMENT TYPE
Spectrum Analyzer 21(26.5GHz)
Spectrum Analyzer 20(6.5GHz)
Spectrum Analyzer 22(43GHz)
Dipole antenna
Dipole antenna
Loop Antenna9K-30M Bilog Antenna30-1G
Horn antenna1-18G

MFR
Agilent

Chamber 14(966) MODEL SERIAL NUMBER NUMBER

LAST CAL DUE. CAL.

N9010A MY49060537 07/29/2016 07/28/2017

Agilent

E4443A MY48250315 05/20/2016 05/19/2017

R&S

FSU43

SCHWARZBECK VHAP,30-300

SCHWARZBECK

UHAP,300-100 0

A.H.SYSTEM

SAS-564

SCHWARZBECK VULB9168

ETS

3117

100143 919 1195
294 644 00066665

05/22/2016 05/21/2017

12/28/2015 12/27/2017

12/28/2015 12/27/2017

06/17/2015 03/02/2016 11/30/2015

06/16/2017 03/01/2017 11/29/2016

Horn antenna26-40G(05) Horn antenna18-26G(04)
Preamplifier9-1000M
Preamplifier1-18G Preamplifier1-26G

Com-power Com-power
HP MITEQ
EM

AH-640 AH-826
8447D AFS44-001018 00-25-10P-44
EM01M26G

100A 081001
NA 1329256
NA

01/21/2015 01/20/2017 07/24/2015 07/23/2017 03/11/2016 03/10/2017 07/27/2016 07/26/2017 03/10/2016 03/09/2017

Preamplifier26-40G
Cable1-18G Cable UP to 1G
SUCOFLEX 1GHz~40GHz cable
Signal Generator Signal Generator
2.4G Filter

MITEQ

JS-26004000-2 7-5A

HUBER SUHNER Sucoflex 106

818471 NA

07/23/2015 11/25/2015

HUBER SUHNER RG 214/U

NA

10/02/2015

HUBER SUHNER

Sucoflex 102

27963/2&3742 1/2

11/03/2015

R&S

SMU200A

102330 03/28/2016

Anritsu

MG3692A

20311

11/04/2015

Micro-Tronics Brm50702

76

12/26/2015

07/22/2017
11/24/2016 10/01/2016
11/02/2017 03/27/2017 11/03/2016 12/25/2016

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7.3. Test SET-UP: 7.3.1. Conducted Emission at antenna port: Refer to section 6.3 for details.

7.3.2. Radiated emission: (A) Radiated Emission Test Set-Up, Frequency Below 1000MHz

Turntable EUT
Spectrum Analyzer

3m 0.8m

1m to 4m

Ground Plane

Coaxial Cable

(B) Radiated Emission Test Set-UP Frequency Over 1 GHz

Turntable

3m

EUT

Ground Plane

1.5 m 1m to 4m Coaxial Cable

Test Receiver

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FCC ID: 2AJFZ-MBC005

7.4. Measurement Procedure: 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to the spectrum analyzer. 3. Set center frequency of spectrum analyzer = operating frequency. 4. Set the spectrum analyzer as RBW, VBW=100KHz, Span=25MHz, Sweep = auto 5. Mark Peak, 2.390GHz and 2.4835GHz and record the max. level. 6. Repeat above procedures until all frequency measured were complete.

7.5. Field Strength Calculation
The field strength is calculated by adding the Antenna Factor and Cable Factor and subtracting the Amplifier Gain and Duty Cycle Correction Factor(if any) from the measured reading. The basic equation with a sample calculation is as follows:
FS = RA + AF + CL - AG

Where

FS = Field Strength RA = Reading Amplitude AF = Antenna Factor

CL = Cable Attenuation Factor (Cable Loss) AG = Amplifier Gain

7.6. Measurement Result: Note: Refer to next page spectrum analyzer data chart and tabular data sheets.

International Standards Laboratory

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Bandedge Mode

Radiated Emission: (BDR mode)

Operation Mode

TX CH Low

Fundamental Frequency 2402 MHz

Temperature

25

FCC ID: 2AJFZ-MBC005
Test Date 2016/08/04 Test By Dino

International Standards Laboratory

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Radiated Emission (EDR 2M mode):

Operation Mode

TX CH Low

Fundamental Frequency 2402 MHz

Temperature

25

FCC ID: 2AJFZ-MBC005
Test Date 2016/08/04 Test By Dino

International Standards Laboratory

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Radiated Emission (EDR 3M mode):

Operation Mode

TX CH Low

Fundamental Frequency 2402 MHz

Temperature

25

FCC ID: 2AJFZ-MBC005
Test Date 2016/08/04 Test By Dino

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

8. SPURIOUS EMISSION TEST
8.1. Standard Applicable: According to §15.247(d), all other emissions outside these bands shall not exceed the general radiated emission limits specified in §15.209(a). And according to §15.33(a)(1), for an intentional radiator operates below 10GHz, the frequency range of measurements: to the tenth harmonic of the highest fundamental frequency or to 40GHz, whichever is lower.

8.2. Measurement Equipment Used: 8.2.1. Conducted Emission at antenna port:
Refer to section 6.2 for details.
8.2.2. Radiated emission: Refer to section 7.2 for details.
8.3. Test SET-UP: 8.3.1. Conducted Emission at antenna port:
Refer to section 6.3 for details.
8.3.2. Radiated emission: Refer to section 7.3 for details.

International Standards Laboratory

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8.4. Measurement Procedure: 1. The EUT was placed on a turn table which is 0.8m above ground plane. 2. The turn table shall rotate 360 degrees to determine the position of maximum emission level. 3. EUT is set 3m away from the receiving antenna which varied from 1m to 4m to find out the highest emissions. 4. When measurement procedures for electric field radiated emissions above 1 GHz the EUT measurement is to be made "while keeping the antenna in the `cone of radiation' from that area and pointed at the area both in azimuth and elevation, with polarization oriented for maximum response." is still within the 3dB illumination BW of the measurement antenna. 5. Maximum procedure was performed on the six highest emissions to ensure EUT compliance. 6. And also, each emission was to be maximized by changing the polarization of receiving antenna both horizontal and vertical. 7. Repeat above procedures until all frequency measured were complete.

8.5. Field Strength Calculation
The field strength is calculated by adding the Antenna Factor and Cable Factor and subtracting the Amplifier Gain and Duty Cycle Correction Factor(if any) from the measured reading. The basic equation with a sample calculation is as follows:
FS = RA + AF + CL - AG

Where

FS = Field Strength RA = Reading Amplitude AF = Antenna Factor

CL = Cable Attenuation Factor (Cable Loss) AG = Amplifier Gain

8.6. Measurement Result: Note: Refer to next page spectrum analyzer data chart and tabular data sheets.

International Standards Laboratory

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FCC ID: 2AJFZ-MBC005

Radiated Spurious Emission Measurement Result: (below 1GHz) (Worst case: BDR Mode)

Operation Mode

TX CH Low

Fundamental Frequency 2402MHz

Temperature

25

Test Date 2016/08/04 Test By Dino

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

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FCC ID: 2AJFZ-MBC005

Radiated Spurious Emission Measurement Result (below 1GHz)

Operation Mode

TX CH Mid

Fundamental Frequency 2441MHz

Temperature

25

Test Date Test By

2016/08/04 Dino

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

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FCC ID: 2AJFZ-MBC005

Radiated Spurious Emission Measurement Result (below 1GHz)

Operation Mode

TX CH High

Fundamental Frequency 2480MHz

Temperature

25

Test Date Test By

2016/08/04 Dino

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

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FCC ID: 2AJFZ-MBC005

Radiated Spurious Emission Measurement Result (above 1GHz)

Operation Mode

TX CH Low

Fundamental Frequency 2402 MHz

Temperature

25

Test Date Test By

2016/08/04 Dino

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-30 of 52-

FCC ID: 2AJFZ-MBC005

Radiated Spurious Emission Measurement Result (above 1GHz)

Operation Mode

TX CH Mid

Fundamental Frequency 2441 MHz

Temperature

25

Test Date Test By

2016/08/04 Dino

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-31 of 52-

FCC ID: 2AJFZ-MBC005

Radiated Spurious Emission Measurement Result (above 1GHz)

Operation Mode

TX CH High

Fundamental Frequency 2480 MHz

Temperature

25

Test Date Test By

2016/08/04 Dino

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-32 of 52-

FCC ID: 2AJFZ-MBC005

9. FREQUENCY SEPARATION
9.1. Standard Applicable: According to §15.247(a)(1), Frequency hopping systems shall have hopping channel carrier frequencies separated by minimum of 25KHz or the 20dB bandwidth of the hopping channel, whichever is greater.

9.2. Measurement Equipment Used: Refer to section 6.2 for details.

9.3. Test Set-up: Refer to section 6.3 for details.

9.4. Measurement Procedure: 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to the spectrum analyzer. 3. Set center frequency of spectrum analyzer = middle of hopping channel . 4. Set the spectrum analyzer as RBW,VBW=100KHz, Adjust Span to 3.0 MHz, Sweep = auto. 5. Max hold. Mark 3 Peaks of hopping channel and record the 3 peaks frequency.

9.5. Measurement Result:
C hannel separation (MHz)
1

Limit
>=25K Hz or 2/3 tim e s 20 dB ba nd w id th

R e su lt P A SS

Note: Refer to next page for plots.

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-33 of 52-
Frequency Separation Test Data Low

FCC ID: 2AJFZ-MBC005

Mid

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

High

-34 of 52-

FCC ID: 2AJFZ-MBC005

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-35 of 52-

FCC ID: 2AJFZ-MBC005

10. NUMBER OF HOPPING FREQUENCY
10.1. Standard Applicable: According to §15.247(a)(1)(iii), Frequency hopping systems operating in the 2400MHz-2483.5 MHz bands shall use at least 15 hopping frequencies.

10.2. Measurement Equipment Used: Refer to section 6.2 for details.
10.3. Test Set-up: Refer to section 6.3 for details.
10.4. Measurement Procedure: 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to the spectrum analyzer. 3. Set spectrum analyzer Start=2400MHz, Stop = 2441MHz and Start=2441MHz, Stop = 2483.5MHz, Sweep = auto. 4. Set the spectrum analyzer as RBW=300KHz, VBW=1MHz 5. Max hold, view and count how many channel in the band.

10.5. Measurement Result: Test Result : 79 Channel > 15 Channel Note: Refer to next page for plots.

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

Channel Number 2.4 GHz ­ 2.441GHz

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FCC ID: 2AJFZ-MBC005

2.441 GHz ­ 2.4835GHz

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-37 of 52-

FCC ID: 2AJFZ-MBC005

11. TIME OF OCCUPANCY (DWELL TIME)
11.1. Standard Applicable: According to §15.247(a)(1)(iii), Frequency hopping systems operating in the 2400MHz-2483.5 MHz. The average time of occupancy on any frequency shall not greater than 0.4 s within period of 0.4 seconds multiplied by the number of hopping channel employed.
11.2. Measurement Equipment Used: Refer to section 6.2 for details.
11.3. Test Set-up: Refer to section 6.3 for details.
11.4. Measurement Procedure: 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to the spectrum analyzer. 3. Set center frequency of spectrum analyzer = operating frequency. 4. Set the spectrum analyzer as RBW / VBW =1MHz, Span = 0Hz , Adjust Sweep = 2.5ms. 5. Repeat above procedures until all frequency measured were complete.

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-38 of 5211.5. Measurement Result:
A period time = 0.4 (ms) * 79 = 31.6 (s)

FCC ID: 2AJFZ-MBC005

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

Low Channel DH1

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FCC ID: 2AJFZ-MBC005

DH3

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

DH5

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FCC ID: 2AJFZ-MBC005

Mid Channel DH1

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

DH3

-41 of 52-

FCC ID: 2AJFZ-MBC005

DH5

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

High Channel DH1

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FCC ID: 2AJFZ-MBC005

DH3

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

DH5

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FCC ID: 2AJFZ-MBC005

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-44 of 52-

FCC ID: 2AJFZ-MBC005

12. 20dB Bandwidth
12.1. Standard Applicable: According to §15.247(a)(1), for frequency hopping systems operating in the 2400MHz-2483.5 MHz no limit for 20dB bandwidth.
12.2. Measurement Equipment Used: Refer to section 6.2 for details.
12.3. Test Set-up: Refer to section 6.3 for details.
12.4. Measurement Procedure: 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to the spectrum analyzer. 3. Set the spectrum analyzer as RBW=10KHz (1 % of Bandwidth.), Span= 3MHz, Sweep=auto 4. Mark the peak frequency and ­20dB (upper and lower) frequency. 5. Repeat above procedures until all frequency measured were complete.

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

12.5. Measurement Result:
BDR Mode CH

-45 of 5220dB Bandwidth

FCC ID: 2AJFZ-MBC005

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-46 of 52-
BDR Mode 20dB Bandwidth Test Data CH-Low

FCC ID: 2AJFZ-MBC005

20dB Bandwidth Test Data CH-Mid

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-47 of 52-
20dB Bandwidth Test Data CH-High

FCC ID: 2AJFZ-MBC005

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-48 of 52-
EDR 2M Mode 20dB Bandwidth Test Data CH-Low

FCC ID: 2AJFZ-MBC005

20dB Bandwidth Test Data CH-Mid

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-49 of 52-
20dB Bandwidth Test Data CH-High

FCC ID: 2AJFZ-MBC005

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-50 of 52-
EDR 3M Mode 20dB Bandwidth Test Data CH-Low

FCC ID: 2AJFZ-MBC005

20dB Bandwidth Test Data CH-Mid

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-51 of 52-
20dB Bandwidth Test Data CH-High

FCC ID: 2AJFZ-MBC005

International Standards Laboratory

Report Number: ISL-16LR208FCDSS

-52 of 52-

FCC ID: 2AJFZ-MBC005

13. ANTENNA REQUIREMENT
13.1. Standard Applicable: According to §15.203, an intentional radiator shall be designed to ensure that no antenna other than furnished by the responsible party shall be used with the device. And according to §15.247(c), if transmitting antennas of directional gain greater than 6dBi are used the power shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6 dBi.

13.2. Antenna Connected Construction: The directional gains of BT antenna used for transmitting is 2.75dBi, and the antenna type is PCB antenna which is designed with permanent attachment and no consideration of replacement. Please see EUT photo for details.

International Standards Laboratory

Report Number: ISL-16LR208FCDSS



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