TC05 DOG TRAINING COLLAR Test Report SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO., LTD.

SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO., LTD. DOG TRAINING COLLAR

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Shenzhen Anbotek Compliance Laboratory Limited
FCC ID: 2AKG5-TC05 Page 1 of 33 Report No.: SZAWW181128003-01
FCC TEST REPORT
For
SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO.,LTD.
DOG TRAINING COLLAR
Model No.: TC05
Prepared For
: SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO.,LTD.
Address
Prepared By
: Shenzhen Anbotek Compliance Laboratory Limited
: 1/F, Building D, Sogood Science and Technology Park, Sanwei
Address
Room 201, Building A, No. 1 Qianwan Road, Qianhai Shenzhen-HK
Cooperation Zone, Shenzhen,China
community, Hangcheng Street, Bao'an District, Shenzhen, Guangdong,
China.518102
Tel: (86) 755-26066440
Report Number
: SZAWW181128003-01
Date of Receipt
: Nov. 28, 2018
Date of Test
: Nov. 28~Dec. 12, 2018
Date of Report
: Dec. 12, 2018
Fax: (86) 755-26014772
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Contents
1. General Information..................................................................................................................................................4
1.1. Client Information......................................................................................................................................... 4
1.2. Description of Device (EUT)........................................................................................................................ 4
1.3. Auxiliary Equipment Used During Test........................................................................................................ 4
1.4. Description of Test Modes.............................................................................................................................5
1.5. Description Of Test Setup..............................................................................................................................6
1.6. Test Equipment List....................................................................................................................................... 7
1.7. Description of Test Facility........................................................................................................................... 8
2. Summary of Test Results.......................................................................................................................................... 9
3. Conducted Emission Test........................................................................................................................................10
3.1. Test Standard and Limit...............................................................................................................................10
3.2. Test Setup.....................................................................................................................................................10
3.3. Test Procedure..............................................................................................................................................10
3.4. Test Data...................................................................................................................................................... 10
4. Radiation Spurious Emission and Band Edge........................................................................................................ 13
4.1. Test Standard and Limit...............................................................................................................................13
4.2. Test Setup.....................................................................................................................................................14
4.3. Test Procedure..............................................................................................................................................15
4.4. Test Data...................................................................................................................................................... 15
5. 20DB Occupy Bandwidth Test............................................................................................................................... 21
5.1. Test Standard and Limit...............................................................................................................................21
5.2. Test Setup.....................................................................................................................................................21
5.3. Test Procedure..............................................................................................................................................21
5.4. Test Data...................................................................................................................................................... 21
6. Dwell Time Test......................................................................................................................................................23
6.1. Test Standard and Limit...............................................................................................................................23
6.2. Test Setup.....................................................................................................................................................23
6.3. Test Procedure..............................................................................................................................................23
6.4. Test Data...................................................................................................................................................... 23
7. Antenna Requirement............................................................................................................................................. 25
7.1. Test Standard and Requirement................................................................................................................... 25
7.2. Antenna Connected Construction................................................................................................................ 25
APPENDIX I -- TEST SETUP PHOTOGRAPH....................................................................................................... 26
APPENDIX II -- EXTERNAL PHOTOGRAPH....................................................................................................... 28
APPENDIX III -- INTERNAL PHOTOGRAPH.......................................................................................................31
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TEST REPORT
Applicant
: SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO.,LTD.
Manufacturer
: Suzhou Wudao Smart Technologies Co.,Ltd
Product Name
: DOG TRAINING COLLAR
Model No.
: TC05
Trade Mark
: N.A.
Rating(s)
: Input: DC 5V, 500mA(with DC 3.7V, 450 mAh Battery inside)
Test Standard(s)
FCC Part15 Subpart C 2018, Section 15.231
Test Method(s)
ANSI C63.10: 2013
The device described above is tested by Shenzhen Anbotek Compliance Laboratory Limited to determine the
maximum emission levels emanating from the device and the severe levels of the device can endure and its
performance criterion. The measurement results are contained in this test report and Shenzhen Anbotek
Compliance Laboratory Limited is assumed full of responsibility for the accuracy and completeness of these
measurements. Also, this report shows that the EUT (Equipment Under Test) is technically compliant with the
FCC Part 15 Subpart C requirements.
This report applies to above tested sample only and shall not be reproduced in part without written approval of
Shenzhen Anbotek Compliance Laboratory Limited.
Date of Test
Nov. 28~Dec. 12, 2018
Prepared by
(Engineer / Dolly Mo)
Reviewer
(Supervisor / Snowy Meng)
Approved & Authorized Signer
(Manager / Sally Zhang)
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1. General Information
1.1. Client Information
Applicant
SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO.,LTD.
Address
Room 201, Building A, No. 1 Qianwan Road, Qianhai Shenzhen-HK Cooperation
Zone, Shenzhen,China
Manufacturer
Suzhou Wudao Smart Technologies Co.,Ltd
Address
2F Building E,No.9,Shenghong Road,Wuzhong District,Suzhou,China
Factory
Suzhou Wudao Smart Technologies Co.,Ltd
Address
2F Building E,No.9,Shenghong Road,Wuzhong District,Suzhou,China
1.2. Description of Device (EUT)
Product Name
DOG TRAINING COLLAR
Model No.
TC05
Trade Mark
N.A.
Test Power Supply
AC 120V, 60Hz for adapter
DC 3.7V Battery inside
Test Sample No.
S1(Normal Sample), S2(Engineering Sample)
Product
Description
Operation Frequency:
433.92 MHz
Modulation Type:
FSK
Antenna Type:
Spring Antenna
Antenna Gain(Peak):
-1.5 dBi
Remark: 1)For a more detailed features description, please refer to the manufacturer’s specifications or the
User’s Manual.
1.3. Auxiliary Equipment Used During Test
Adapter
Manufacturer: ZTE
M/N: STC-A2050I1000USBA-C
S/N: 201202102100876
Input: 100-240V~50/60Hz 0.3A
Output: DC 5V, 1000mA
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1.4. Description of Test Modes
To investigate the maximum EMI emission characteristics generates from EUT, the test system was pre-scanning
tested base on the consideration of following EUT operation mode or test configuration mode which possible have
effect on EMI emission level. Each of these EUT operation mode(s) or test configuration mode(s) mentioned
above was evaluated respectively.
Pretest Mode
Mode 1
Mode 2
Description
Charging + TX Mode
TX Mode
For Conducted Emission
Final Test Mode
Description
Mode 1
Charging + TX Mode
For Radiated Emission
Final Test Mode
Description
Mode 2
TX Mode
Note: During the test, the EUT was keeping continuous transmission.
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1.5. Description Of Test Setup
CE
USB
E-1
EUT
E-2
Adapter
AC Line
LISN
0.8m
Table
Table
1.5m
RE
E-1
EUT
0.8m
Table
1.5m
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1.6. Test Equipment List
Item
Equipment
Cal.
Manufacturer
Model No.
Serial No.
Last Cal.
Rohde & Schwarz
ENV216
100055
Nov. 05, 2018
1 Year
Interval
L.I.S.N.
1.
Artificial Mains
Network
2.
EMI Test Receiver
Rohde & Schwarz
ESPI3
101604
Nov. 05, 2018
1 Year
3.
RF Switching Unit
Compliance Direction
RSU-M2
38303
Nov. 05, 2018
1 Year
4.
Spectrum Analysis
Agilent
E4407B
US39390582
Nov. 05, 2018
1 Year
Agilent
N9020A
MY51170037
Nov. 05, 2018
1 Year
Preamplifier
SKET Electronic
BK1G18G30D
KD17503
Nov. 05, 2018
1 Year
Double Ridged Horn
Instruments
Antenna
corporation
GTH-0118
351600
Nov. 20, 2018
1 Year
Schwarzbeck
VULB9163
VULB 9163-289
Nov. 19, 2018
1 Year
FMZB1519B
00053
Nov. 20, 2018
1 Year
J211060628
Nov. 20, 2018
1 Year
5.
6.
7.
8.
MAX Spectrum
Analysis
Bilog Broadband
Antenna
9.
Loop Antenna
Schwarzbeck
10.
Horn Antenna
A-INFO
11.
Pre-amplifier
SONOMA
310N
186860
Nov. 05, 2018
1 Year
SHURPLE
N/A
N/A
N/A
N/A
YIHENG
YH3000
2017430
Nov. 05, 2018
1 Year
12.
13.
EMI Test Software
EZ-EMC
RF Test Control
System
LB-180400-K
14.
Power Sensor
DAER
RPR3006W
15I00041SN045
Nov. 05, 2018
1 Year
15.
Power Sensor
DAER
RPR3006W
15I00041SN046
Nov. 05, 2018
1 Year
Agilent
N9020A
MY51170037
Nov. 05, 2018
1 Year
Agilent
N5182A
MY48180656
Nov. 05, 2018
1 Year
16.
17.
MXA Spectrum
Analysis
MXG RF Vector Signal
Generator
18.
Signal Generator
Agilent
E4421B
MY41000743
Nov. 05, 2018
1 Year
19.
DC Power Supply
IVYTECH
IV3605
1804D360510
Apr. 02, 2018
1 Year
ZHONGJIAN
ZJ-KHWS80B
N/A
Nov. 01, 2018
1 Year
20.
Constant Temperature
Humidity Chamber
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1.7. Description of Test Facility
The test facility is recognized, certified, or accredited by the following organizations:
FCC-Registration No.: 184111
Shenzhen Anbotek Compliance Laboratory Limited, EMC Laboratory has been registed and fully described in a
report filed with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is
maintained in our files. Registration No. 184111, July 31, 2017.
ISED-Registration No.: 8058A-1
Shenzhen Anbotek Compliance Laboratory Limited, EMC Laboratory has been registered and fully described in a
report filed with the (ISED) Innovation, Science and Economic Development Canada. The acceptance letter from
the ISED is maintained in our files. Registration 8058A-1, June 13, 2016.
Test Location
Shenzhen Anbotek Compliance Laboratory Limited.
1/F, Building D, Sogood Science and Technology Park, Sanwei community, Hangcheng Street, Bao'an District,
Shenzhen, Guangdong, China.518102
Shenzhen Anbotek Compliance Laboratory Limited
Tel:(86)755-26066440
Fax:(86)755-26014772
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FCC ID: 2AKG5-TC05 Page 9 of 33 Report No.: SZAWW181128003-01
2. Summary of Test Results
Standard Section
Test Item
Result
15.203
Antenna Requirement
PASS
15.207
Conducted Emission
PASS
15.205/15.209/15.231(b)
Spurious Emission
PASS
15.231(c)
20dB Occupied Bandwidth
PASS
15.231(a)
Dwell time
PASS
Remark: “N/A” is an abbreviation for Not Applicable.
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3. Conducted Emission Test
3.1. Test Standard and Limit
Test Standard
FCC Part15 Section 15.207
Frequency
Test Limit
Maximum RF Line Voltage (dBuV)
Quasi-peak Level
Average Level
150kHz~500kHz
66 ~ 56 *
56 ~ 46 *
500kHz~5MHz
56
46
5MHz~30MHz
60
50
Remark: (1) *Decreasing linearly with logarithm of the frequency.
(2) The lower limit shall apply at the transition frequency.
3.2. Test Setup
3.3. Test Procedure
The EUT system is connected to the power mains through a line impedance stabilization network (L.I.S.N.). This
provides a 50ohm coupling impedance for the EUT system. Please refer the block diagram of the test setup and
photographs. Both sides of AC line are checked to find out the maximum conducted emission. In order to find the
maximum emission levels, the relative positions of equipment and all of the interface cables shall be changed
according to FCC ANSI C63.10-2013 on Conducted Emission Measurement.
The bandwidth of test receiver (ESCI) set at 9kHz.
The frequency range from 150kHz to 30MHz is checked.
3.4. Test Data
Please to see the following pages.
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Conducted Emission Test Data
Test Site:
1# Shielded Room
Operating Condition:
Charging + TX Mode
Test Specification:
AC 120V, 60Hz for adapter
Comment:
Live Line
Tem.: 22.2℃ Hum.: 60%
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Conducted Emission Test Data
Test Site:
1# Shielded Room
Operating Condition:
Charging + TX Mode
Test Specification:
AC 120V, 60Hz for adapter
Comment:
Neutral Line
Tem.: 22.2℃ Hum.: 60%
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4. Radiation Spurious Emission and Band Edge
4.1. Test Standard and Limit
Test Standard
Test Limit
FCC Part15 C Section 15.209, 15.205 and 15.231(b)
Frequency
(MHz)
Field strength
(microvolt/meter)
Limit
(dBuV/m)
Remark
Measurement
distance (m)
0.009MHz~0.490MHz
2400/F(kHz)
300
0.490MHz-1.705MHz
24000/F(kHz)
30
1.705MHz-30MHz
30
30
30MHz~88MHz
100
40.0
Quasi-peak
88MHz~216MHz
150
43.5
Quasi-peak
216MHz~960MHz
200
46.0
Quasi-peak
960MHz~1000MHz
500
54.0
Quasi-peak
500
54.0
Average
74.0
Peak
Above 1000MHz
Remark:
(1)The lower limit shall apply at the transition frequency.
(2) 15.35(b), Unless otherwise specified, the limit on peak radio frequency emissions is 20dB above the maximum permitted average
emission limit applicable to the equipment under test. This peak limit applies to the total peak emission level radiated by the device.
the formulas for calculating the maximum permitted fundamental field strengths are as follows:
for the band 260-470 MHz, μV/m at 3 meters = 41.6667(F) - 7083.3333.
The maximum permitted unwanted emission level is 20 dB below the maximum permitted fundamental level
Emission Level (dBuV/m)=20log Emission Level(uV/m)
The field strength of emission limits have been calculated in below table:
Fundamental Frequency
(MHz)
Field Strength of Fundamental
(dBuV/m)@3m
433.920
80.82 (AVG)
433.920
100.82 (Peak)
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4.2. Test Setup
Figure 1. Below 30MHz
Figure 2. 30MHz to 1GHz
Figure 3. Above 1 GHz
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4.3. Test Procedure
For below 1GHz: The EUT is placed on a turntable, which is 0.8m above the ground plane.
For above 1GHz: The EUT is placed on a turntable, which is 1.5m above the ground plane.
The turn table can rotate 360 degrees to determine the position of the maximum emission level. The EUT is set 3
meters away from the receiving antenna which is mounted on a antenna tower. The antenna can be moved up and
down from 1 to 4 meters to find out the maximum emission level. Rotated the EUT through three orthogonal axes
to determine the maximum emissions, both horizontal and vertical polarization of the antenna are set on test. The
EUT is tested in 9*6*6 Chamber. The device is evaluated in xyz orientation.
For 9kHz to 150kHz, Set the spectrum analyzer as:
RBW = 200Hz, VBW =1kHz, Detector= Quasi-Peak, Trace mode= Max hold, Sweep- auto couple.
For 150kHz to 30MHz, Set the spectrum analyzer as:
RBW = 9KHz, VBW =30kHz, Detector= Quasi-Peak, Trace mode= Max hold, Sweep- auto couple.
For 30MHz to 1000MHz, Set the spectrum analyzer as:
RBW = 100kHz, VBW =300kHz,Detector= Quasi-Peak, Trace mode= Max hold, Sweep- auto couple.
For above 1GHz,Set the spectrum analyzer as:
RBW =1MHz, VBW =1MHz, Detector= Peak, Trace mode= Max hold, Sweep- auto couple.
RBW =1MHz, VBW =10Hz, Detector= Average, Trace mode= Max hold, Sweep- auto couple.
4.4. Test Data
PASS
During the test, Pre-scan all kind of the place mode (X-axis, Y-axis, Z-axis), and found the X-axis is the worst
case.
The test results of 9kHz-30MHz and above 1735.68MHz are attenuated more than 20dB below the permissible
limits, so the results don't record in the report.
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Test Results (Fundamental 433.920MHz)
Frequency
Antenna
Reading
Cable
Ant
Loss
Factor
Duty
Amplifier
cycle
Results
Limits
Det.
Factor
(MHz)
Pol.
(dBuV/m)
(dB)
(dB)
(dB)
(dB)
(dBuV/m)
(dBuV/m)
Mode
433.92
94.85
1.52
12.64
31.45
77.56
100.82
PK
433.92
94.85
1.52
12.64
31.45
-7.74
69.82
80.82
AV
433.92
97.67
1.52
12.64
31.45
80.38
100.82
PK
433.92
97.67
1.52
12.64
31.45
-7.74
72.64
80.82
AV
Remark:
1. Result = Reading + Cable Loss +Ant Factor –Amplifier + Duty cycle Factor
2. Pulse Desensitization Correction Factor
Pulse Width (PW)= 0.483ms
2/PW=2/0.362=4.14kHz
RBW(1000kHz)> 2/PW (4.14KHz)
Therefore PDCF is not needed.
3. Duty Cycle Factor
Calculate Formula:
AV=PEAK +Duty Cycle Factor
Duty Cycle Factor=20log(Duty Cycle)
Duty Cycle= on time/ period
Test Data:
T on time=0.483*1=0.483 ms
T period=1.18ms
Duty Cycle=41%
Duty Cycle Factor =20log(Duty Cycle)=-7.74
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T on time slot-1
T period
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FCC ID: 2AKG5-TC05 Page 18 of 33 Report No.: SZAWW181128003-01
Test Results
Frequency
(Spurious Emissions)
Antenna
Reading
Cable
Ant
Loss
Factor
Duty
Amplifier
cycle
Results
Limits
Det
Factor
(MHz)
Pol.
(dBuV/m)
(dB)
(dB)
(dB)
(dB)
(dBuV/m)
(dBuV/m)
Mode
867.84
74.39
1.92
12.71
31.72
57.30
80.82
PK
867.84
74.39
1.92
12.71
31.72
-7.74
49.56
60.82
AV
867.84
76.04
1.92
12.71
31.72
58.95
80.82
PK
867.84
76.04
1.92
12.71
31.72
-7.74
51.21
60.82
AV
1301.76
63.82
2.38
21.43
32.45
55.18
74
PK
1301.76
63.82
2.38
21.43
32.45
-7.74
47.44
54
AV
1301.76
65.56
2.38
18.56
32.45
54.05
74
PK
1301.76
65.56
2.38
18.56
32.45
-7.74
46.31
54
AV
1735.68
74
PK
1735.68
54
AV
1735.68
74
PK
1735.68
54
AV
2169.60
74
PK
2169.60
54
AV
2169.60
74
PK
2169.60
54
AV
Remark:
1. Result = Reading + Cable Loss +Ant Factor –Amplifier + Duty cycle Factor
2. Pulse Desensitization Correction Factor
Pulse Width (PW)= 0.483ms
2/PW=2/0.362=4.14kHz
RBW(1000kHz)> 2/PW (4.14KHz)
Therefore PDCF is not needed.
3. Duty Cycle Factor=-7.74
4. Only the worst data was recorded in this report.
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FCC ID: 2AKG5-TC05 Page 19 of 33 Report No.: SZAWW181128003-01
Test Results (30~1000MHz)
Job No.:
SZAWW181128003-02
Temp.(℃)/Hum.(%RH):
24.6℃/53%RH
Standard:
FCC PART 15C
Power Source:
AC 120V, 60Hz for adapter
Test Mode:
TX Mode
Polarization:
Horizontal
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FCC ID: 2AKG5-TC05 Page 20 of 33 Report No.: SZAWW181128003-01
Test Results (30~1000MHz)
Job No.:
SZAWW181128003-02
Temp.(℃)/Hum.(%RH):
24.6℃/53%RH
Standard:
FCC PART 15C
Power Source:
AC 120V, 60Hz for adapter
Test Mode:
TX Mode
Polarization:
Vertical
Remark:
1. Results = Reading + Cable Loss +Ant Factor –Amplifier
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FCC ID: 2AKG5-TC05 Page 21 of 33 Report No.: SZAWW181128003-01
5. 20DB Occupy Bandwidth Test
5.1. Test Standard and Limit
Test Standard
Test Limit
FCC Part15 C Section 15.231 (c)
According to FCC Part 15.231(c), The bandwidth of the emission shall be no wider than
0.25% of the center frequency for devices operating above 70MHz and below 900MHz.
For devices operating above 900MHz, the emission shall be no wider than 0.5% of the
center frequency. Bandwidth is determined at the points 20dB down from the
modulated carrier.
So the emission bandwidth limits have been calculated in below table:
Fundamental Frequency
Limit of 20dB Bandwidth
433.920 MHz
433920 * 0.0025=1084.80 kHz
5.2. Test Setup
5.3. Test Procedure
1. Place the EUT on the table and set it in the continuously 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 = 30kHz, VBW≥3*RBW =100kHz,
Span= 1MHz
Detector= Peak
Trace mode= Max hold.
Sweep- auto couple.
4. Mark the peak frequency and –20dB (upper and lower) frequency.
5. Repeat until all the rest channels are investigated.
5.4. Test Data
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Test Item
Test Voltage
Test Result
20dB Bandwidth
Test Mode
AC 120V, 60Hz for Temperature
adapter
PASS
Humidity
: Continuously transmitting
: 24℃
: 55%RH
Freq.
(MHz)
Modulation Type
Bandwidth (kHz)
Limit
(kHz)
Results
433.920
FSK
189.7
<1084.80
PASS
433.920MHz
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6. Dwell Time Test
6.1. Test Standard and Limit
Test Standard
FCC Part 15.231(a)(1)
Test Limit
According to FCC Part 15.231(a)(1), A manually operated transmitter shall employ a
switch that will automatically deactivate the transmitter within not more than 5
seconds of being released
6.2. Test Setup
6.3. Test Procedure
1. Place the EUT on the table and set it in continuously transmitting mode. Remove the antenna from the EUT and
then connect a low loss RF cable from the antenna port to the spectrum analyzer.
2. Set the spectrum analyzer as
RBW=1000kHz, VBW= 1000 kHz, Span= 0Hz, Sweep Time= 80 Seconds.
3. Record the Delta mark time.
6.4. Test Data
Test Item
Test Voltage
Test Result
Dwell Time
AC 120V,
adapter
PASS
60Hz
Test Mode
for Temperature
Humidity
Continuously transmitting
24℃
55%RH
Test Mode
Transmitting time(s)
Limit(s)
Result
ASK mode
0.483
≤5
PASS
Please refer the following plot.
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FCC ID: 2AKG5-TC05 Page 24 of 33 Report No.: SZAWW181128003-01
Dwell Time
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FCC ID: 2AKG5-TC05 Page 25 of 33 Report No.: SZAWW181128003-01
7. Antenna Requirement
7.1. Test Standard and Requirement
Test Standard
FCC Part15 Section 15.203
Requirement
1) 15.203 requirement:
An intentional radiator shall be designed to ensure that no antenna other than that furnished
by the responsible party shall be used with the device.
Antenna requirement must meet at least one of the following:
1) Antenna must be permanently attached to device.
2) The antenna must use a unique type of connector to attach to the device.
3) Device must be professionally installed. The installer shall be responsible for ensuring
that the correct antenna is employed by the device.
7.2. Antenna Connected Construction
The antenna is a Spring Antenna which permanently attached, and the best case gain of the antenna is -1.5 dBi. It
complies with the standard requirement.
Spring Antenna
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FCC ID: 2AKG5-TC05 Page 26 of 33 Report No.: SZAWW181128003-01
APPENDIX I -- TEST SETUP PHOTOGRAPH
Photo of Conducted Emission Test
Photo of Radiation Emission Test
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APPENDIX II -- EXTERNAL PHOTOGRAPH
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Shenzhen Anbotek Compliance Laboratory Limited
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Shenzhen Anbotek Compliance Laboratory Limited
FCC ID: 2AKG5-TC05 Page 30 of 33 Report No.: SZAWW181128003-01
Shenzhen Anbotek Compliance Laboratory Limited
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Shenzhen Anbotek Compliance Laboratory Limited
FCC ID: 2AKG5-TC05 Page 31 of 33 Report No.: SZAWW181128003-01
APPENDIX III -- INTERNAL PHOTOGRAPH
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Shenzhen Anbotek Compliance Laboratory Limited
FCC ID: 2AKG5-TC05 Page 32 of 33 Report No.: SZAWW181128003-01
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---------------- End of Report ---------------Shenzhen Anbotek Compliance Laboratory Limited
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Download: TC05 DOG TRAINING COLLAR Test Report  SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO., LTD.
Mirror Download [FCC.gov]TC05 DOG TRAINING COLLAR Test Report  SHENZHEN DOGCARE INNOVATION & TECHNOLOGY CO., LTD.
Document ID4120613
Application IDDFIYfSgYPi4RYS1UoL9SGw==
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Date Submitted2018-12-28 00:00:00
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