Test Report

Shenzhen Auros Technology Innovation Co., Ltd WT2000R ThermoMaven G1 Wireless Thermometer 2BC6K-WT2000R 2BC6KWT2000R wt2000r

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Prüfbericht - Produkte Test Report - Products
Prüfbericht-Nr.: Test report no.:
Kunden-Referenz-Nr.: Client reference no.:
Auftraggeber: Client:
Prüfgegenstand: Test item:
Bezeichnung / Typ-Nr.: Identification / Type no.:
Auftrags-Inhalt: Order content:
Prüfgrundlage: Test specification:

CN24SAFO 002

Auftrags-Nr.: Order no.:

168495639

Seite 1 von 23 Page 1 of 23

N/A

Auftragsdatum: 2024-07-22

Order date:

Shenzhen Auros Technology Innovation Co., Ltd. Building AB-10A1037, New Energy Building No. 2239 Nanhai Avenue, Nanguang Community, Nanshan Street, Nanshan District, Shenzhen, China

ThermoMaven G1 Wireless Thermometer

WT10

Test Report

CFR47 FCC Part 15: Subpart C Section 15.247 RSS-247 Issue 3 August 2023 RSS-Gen Issue 5 February 2021

Wareneingangsdatum: Date of sample receipt:

2024-07-29

Prüfmuster-Nr.: Test sample no:

A003759833-006 A003774686-001~002

Prüfzeitraum: Testing period:

2024-08-12 - 2024-09-20

Ort der Prüfung: Place of testing:

Refer to section 2.1

Prüflaboratorium: Testing laboratory:

TÜV Rheinland (Shenzhen) Co., Ltd.

Prüfergebnis*: Test result*:

Pass

geprüft von:

tested by:

X

Datum: Date: 2024-09-25

Lin Lin

Stellung / Position:

Sachverständige(r)/Expert

Sonstiges / FCC ID: 2BC6K-WT2000R

Other:

IC: 31431-WT2000R, HVIN: WT10

Please refer to Photo Document

genehmigt von:

authorized by:

X

Ausstellungsdatum: Issue date: 2024-09-25

Hardy Suo

Stellung / Position:

Sachverständige(r)/Expert

Zustand des Prüfgegenstandes bei Anlieferung: Condition of the test item at delivery:

Prüfmuster vollständig und unbeschädigt Test item complete and undamaged

* Legende: * Legend:

P(ass) = entspricht o.g. Prüfgrundlage(n) P(ass) = passed a.m. test specification(s)

F(ail) = entspricht nicht o.g. Prüfgrundlage(n) F(ail) = failed a.m. test specification(s)

N/A = nicht anwendbar N/A = not applicable

N/T = nicht getestet N/T = not tested

Dieser Prüfbericht bezieht sich nur auf das o.g. Prüfmuster und darf ohne Genehmigung der Prüfstelle nicht auszugsweise vervielfältigt werden. Dieser Bericht berechtigt nicht zur Verwendung eines Prüfzeichens.
This test report only relates to the above mentioned test sample. Without permission of the test center this test report is not permitted to be duplicated in extracts. This test report does not entitle to carry any test mark.

TUV Rheinland (Shenzhen) Co., Ltd., 1601-1604, 17-18F, Tower A Building 2, Shenzhen International Innovation Valley, Dashi 1st Road, Xili

Street, Xili Community, Nanshan District, Shenzhen 518052, P. R. China

V101023GCNSR

Mail: service-gc@tuv.com ·Web: www.tuv.com

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Anmerkungen Remarks

Seite 2 von 23 Page 2 of 23

1 Alle eingesetzten Prüfmittel waren zum angegebenen Prüfzeitraum gemäß eines festgelegten Kalibrierungsprogramms unseres Prüfhauses kalibriert. Sie entsprechen den in den Prüfprogrammen hinterlegten Anforderungen. Die Rückverfolgbarkeit der eingesetzten Prüfmittel ist durch die Einhaltung der Regelungen unseres Managementsystems gegeben. Detaillierte Informationen bezüglich Prüfkonditionen, Prüfequipment und Messunsicherheiten sind im Prüflabor vorhanden und können auf Wunsch bereitgestellt werden.
The equipment used during the specified testing period was calibrated according to our test laboratory calibration program. The equipment fulfils the requirements included in the relevant standards. The traceability of the test equipment used is ensured by compliance with the regulations of our management system. Detailed information regarding test conditions, equipment and measurement uncertainty is available in the test laboratory and could be provided on request.
2 Wie vertraglich vereinbart, wurde dieses Dokument nur digital unterzeichnet. Der TÜV Rheinland hat nicht überprüft, welche rechtlichen oder sonstigen diesbezüglichen Anforderungen für dieses Dokument gelten. Diese Überprüfung liegt in der Verantwortung des Benutzers dieses Dokuments. Auf Verlangen des Kunden kann der TÜV Rheinland die Gültigkeit der digitalen Signatur durch ein gesondertes Dokument bestätigen. Diese Anfrage ist an unseren Vertrieb zu richten. Eine Umweltgebühr für einen solchen zusätzlichen Service wird erhoben. Informationen zur Verifizierung der Authentizität unserer Dokumente erhalten Sie auf folgender Webseite: go.tuv.com/digital-signature
As contractually agreed, this document has been signed digitally only. TUV Rheinland has not verified and unable to verify which legal or other pertaining requirements are applicable for this document. Such verification is within the responsibility of the user of this document. Upon request by its client, TUV Rheinland can confirm the validity of the digital signature by a separate document. Such request shall be addressed to our Sales department. An environmental fee for such additional service will be charged. For information on verifying the authenticity of our documents, please visit the following website: go.tuv.com/digital-signature
3 Prüfklausel mit der Note * wurden an qualifizierte Unterauftragnehmer vergeben und sind unter der jeweiligen Prüfklausel des Berichts beschrieben. Abweichungen von Prüfspezifikation(en) oder Kundenanforderungen sind in der jeweiligen Prüfklausel im Bericht aufgeführt.
Test clauses with remark of * are subcontracted to qualified subcontractors and descripted under the respective test clause in the report. Deviations of testing specification(s) or customer requirements are listed in specific test clause in the report.
4 Die Entscheidungsregel für Konformitätserklärungen basierend auf numerischen Messergebnisen in diesem Prüfbericht basiert auf der "Null-Grenzwert-Regel" und der "Einfachen Akzeptanz" gemäß ILAC G8:2019 und IEC Guide 115:2021, es sei denn, in der auf Seite 1 dieses Berichts genannten angewandten Norm ist etwas anderes festgelegt oder vom Kunden gewünscht. Dies bedeutet, dass die Messunsicherheit nicht berücksichtigt wird und daher auch nicht im Prüfbericht angegeben wird. Zu weiteren Informationen bezueglich des Risikos durch diese Entscheidungsregel siehe ILAC G8:2019.
The decision rule for statements of conformity, based on numerical measurement results, in this test report is based on the "Zero Guard Band Rule" and "Simple Acceptance" in accordance with ILAC G8:2019 and IEC Guide 115:2021, unless otherwise specified in the applied standard mentioned on Page 1 of this report or requested by the customer. This means that measurement uncertainty is not taken in account and hence also not declared in the test report. For additional information to the resulting risk based of this decision rule please refer to ILAC G8:2019.

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Test Summary

5.1.1 ANTENNA REQUIREMENT RESULT: Pass
5.1.2 MAXIMUM PEAK CONDUCTED OUTPUT POWER RESULT: Pass
5.1.3 CONDUCTED POWER SPECTRAL DENSITY RESULT: Pass
5.1.4 6DB BANDWIDTH RESULT: Pass
5.1.5 99% BANDWIDTH RESULT: Pass
5.1.6 CONDUCTED SPURIOUS EMISSIONS MEASURED IN 100 KHZ BANDWIDTH RESULT: Pass
5.1.7 RADIATED SPURIOUS EMISSION RESULT: Pass
5.1.8 CONDUCTED EMISSION ON AC MAINS RESULT: Pass

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Contents

1

GENERAL REMARKS ...........................................................................................................................5

1.1 COMPLEMENTARY MATERIALS ............................................................................................................5

2

TEST SITES ........................................................................................................................................6

2.1 TEST FACILITIES .................................................................................................................................6

2.2 LIST OF TEST AND MEASUREMENT INSTRUMENTS.................................................................................6

2.3 TRACEABILITY ....................................................................................................................................7

2.4 CALIBRATION .....................................................................................................................................7

2.5 MEASUREMENT UNCERTAINTY.............................................................................................................7

2.6 LOCATION OF ORIGINAL DATA.............................................................................................................7

2.7 STATUS OF FACILITY USED FOR TESTING.............................................................................................7

3

GENERAL PRODUCT INFORMATION ......................................................................................................8

3.1 PRODUCT FUNCTION AND INTENDED USE.............................................................................................8

3.2 RATINGS AND SYSTEM DETAILS ..........................................................................................................8

3.3 INDEPENDENT OPERATION MODES ....................................................................................................10

3.4 NOISE GENERATING AND NOISE SUPPRESSING PARTS .......................................................................10

3.5 SUBMITTED DOCUMENTS...................................................................................................................10

4

TEST SET-UP AND OPERATION MODES ..............................................................................................11

4.1 PRINCIPLE OF CONFIGURATION SELECTION .......................................................................................11

4.2 TEST OPERATION AND TEST SOFTWARE............................................................................................11

4.3 SPECIAL ACCESSORIES AND AUXILIARY EQUIPMENT ..........................................................................11

4.4 COUNTERMEASURES TO ACHIEVE EMC COMPLIANCE ........................................................................11

4.5 TEST SETUP DIAGRAM ......................................................................................................................12

5

TEST RESULTS .................................................................................................................................14

5.1 TRANSMITTER REQUIREMENT & TEST SUITES ....................................................................................14 5.1.1 Antenna Requirement ................................................................................................................14 5.1.2 Maximum Peak Conducted Output Power .................................................................................15 5.1.3 Conducted Power Spectral Density ...........................................................................................17 5.1.4 6dB Bandwidth ...........................................................................................................................18 5.1.5 99% Bandwidth ..........................................................................................................................19 5.1.6 Conducted Spurious Emissions Measured in 100 kHz Bandwidth ............................................20 5.1.7 Radiated Spurious Emission ......................................................................................................21 5.1.8 Conducted Emission on AC Mains.............................................................................................22

6

PHOTOGRAPHS OF THE TEST SET-UP ................................................................................................23

7

LIST OF TABLES................................................................................................................................23

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1 General Remarks

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1.1 Complementary Materials
All attachments are integral parts of this test report. This applies especially to the following appendix: Appendix A: Test Results of Bluetooth Low Energy Appendix B: Test Results of 2.4GHz Wi-Fi Appendix C: Photographs of the Test Set-up

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2 Test Sites

CN24SAFO 002

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2.1 Test Facilities
Shenzhen UnionTrust Quality and Technology Co., Ltd. Unit D/E of 9/F and 16/F, Block A, Building 6, Baoneng science and technology park, Longhua district, Shenzhen, China CNAS Registration No.: CNAS L9069 A2LA Certificate Number: 4312.01

2.2 List of Test and Measurement Instruments

Table 1: List of Test and Measurement Equipment

Used        

    

Equipment
3m SAC
Receiver EXA Spectrum
Analyzer
Loop Antenna
Broadband Antenna
6dB Attenuator Preamplifier
Band Rejection Filter (2400MHz~2500MHz)
Double-Ridged Waveguide Horn Antenna (Pre-amplifier)
Pre-amplifier Double-Ridged Waveguide Horn Antenna (Pre-amplifier)
Pre-amplifier
Multi device Controller
Test Software

Radiated Emission Test Equipment List

Manufacturer ETS-
LINDGREN R&S

Model No. 3m
ESIB26

Serial Number EuroshiedpnCT001270-1317
100114

Cal. date 11-Nov-2023 27-Oct-2023

Cal. Due date 10-Nov-2026 26-Oct-2024

KEYSIGHT
ETSLINDGREN
ETSLINDGREN
Talent
HP

N9010A 6502 3142E
RA6A5-N-18 8447F

MY51440197 00202525 00201566 18103001
2805A02960

29-Mar-2024 30-Oct-2023 30-Oct-2023 30-Oct-2023 31-Oct-2023

28-Mar-2025 29-Oct-2024 29-Oct-2024 29-Oct-2024 30-Oct-2024

Micro-Tronics BRM50702

G248

27-Oct-2023 26-Oct-2024

ETSLINDGREN
ETS-Lindgren
ETSLINDGREN
ETS-Lindgren ETS-
LINDGREN Audix

3117-PA 00118385 3116C-PA 00118384 7006-001
e3

00201541

1-Apr-2024 31-Mar-2025

00201874

1-Apr-2024 31-Mar-2025

00202652

30-Oct-2023 29-Oct-2024

00202652

30-Oct-2023 29-Oct-2024

00160105

N/A

N/A

Software Version: 9.160323

Used

Equipment

 Spectrum Analyzer

Conducted RF test Equipment List

Manufacturer Model No. Serial Number

KEYSIGHT

N9020A

MY51286807

Cal. date 27-Oct-2023

Cal. Due date 26-Oct-2024

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2.3 Traceability
All measurement equipment calibrations are traceable to NIM (National Institute of Metrology) or where calibration is performed in other countries, to equivalent nationally recognized standards organizations.

2.4 Calibration
Equipment requiring calibration is calibrated periodically by the manufacturer or according to manufacturer's specifications. Additionally all equipment is verified for proper performance on a regular basics using in house standards or comparisons.

2.5 Measurement Uncertainty

Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the Product as specified in CISPR 16-4-2. This uncertainty represents an expanded uncertainty expressed at approximately the 95% confidence level using a coverage factor of k=2.

Table 2: Measurement Uncertainty

No.

Item

1

Conducted emission 9kHz-150kHz

2

Conducted emission 150kHz-30MHz

3

Radiated emission 9kHz-30MHz

4

Radiated emission 30MHz-1GHz

5

Radiated emission 1GHz-18GHz

6

Radiated emission 18GHz-26GHz

7

Radiated emission 26GHz-40GHz

8

Conducted spurious emissions

9

RF Power, Conducted

10

Occupied Bandwidth

11

Radio Frequency

12

Transmission Time

Measurement Uncertainty ± 3.2 dB ± 2.7 dB ± 4.7 dB ± 4.9 dB ± 4.8 dB ± 5.1 dB ± 5.1 dB ± 2.7 dB ± 0.68 dB ± 1.86 %
2.4 GHz: ± 6.5 x 10-8 ± 0.19 %

2.6 Location of Original Data
The original copies of all test data taken during actual testing were attached at Appendix A & B & C of this report and delivered to the applicant. A copy has been retained in the TÜV Rheinland (Shenzhen) Co., Ltd. file for certification follow-up purposes.
2.7 Status of Facility Used for Testing
The Shenzhen UnionTrust Quality and Technology Co., Ltd. Test facility located at Unit D/E of 9/F and 16/F, Block A, Building 6, Baoneng science and technology park, Longhua district, Shenzhen, China is listed on the US Federal Communications Commission list of facilities approved to perform measurements.

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3 General Product Information

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3.1 Product Function and Intended Use
The product is ThermoMaven G1 Wireless Thermometer which supports 2.4GHz Band Wi-Fi, Bluetooth low energy and SUB-1GHz(Rx) wireless functions.
For details refer to the User Manual, Technical Description and Circuit Diagram.

3.2 Ratings and System Details

Table 3: Technical Specification of EUT

General Information of EUT Value

Kind of Equipment:

ThermoMaven G1 Wireless Thermometer

Type Designation:

WT10

FCC ID:

2BC6K-WT2000R

IC:

31431-WT2000R

HVIN:

WT10

Operating Voltage:

AC 100-240V, 50/60Hz input via AC/DC Adapter or Internal battery operated (3.7Vdc, 2000mAh)

Technical Specification of Bluetooth LE

Operating Frequency:

2402 - 2480MHz

Type of Modulation:

GFSK

Data Rate:

1Mbps, 2Mbps

Channel Number:

40 channels

Channel Separation:

2MHz

Antenna Type:

Integral Antenna

Antenna Number:

1

Antenna Gain:

1.83 dBi (Provided by the Client)

The type of wideband data Non-FHSS

transmission equipment:

Technical Specification of 2.4GHz Wi-Fi

Operating Frequency:

2412 - 2462MHz for 802.11b/g/n(HT20) 2422 - 2452MHz for 802.11n(HT40)

Type of Modulation:

DSSS(DBPSK/DQPSK/CCK) OFDM(BPSK/QPSK/16QAM/64QAM)

Data Rate:

1/2/5.5/11 Mbps for 802.11b 6/9/12/18/24/36/48/54 Mbps for 802.11g MCS0 ~ MCS7 for 802.11n

Channel Number:

11 channels for 802.11b/g/n(HT20) 7 channels for 802.11n(HT40)

Channel Separation:

5 MHz

Antenna Type:

Integral Antenna

Antenna Number:

1

Antenna Gain:

1.83 dBi (Provided by the Client)

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The type of wideband data transmission equipment:

DTS

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Table 4: RF Channel and Frequency of Bluetooth LE

RF Channel
0 1 2 3 4 5 6 7 8 9

Frequency (MHz) 2402 2404 2406 2408 2410 2412 2414 2416 2418 2420

RF Channel
10 11 12 13 14 15 16 17 18 19

Frequency (MHz) 2422 2424 2426 2428 2430 2432 2434 2436 2438 2440

RF Channel
20 21 22 23 24 25 26 27 28 29

Frequency (MHz) 2442 2444 2446 2448 2450 2452 2454 2456 2458 2460

RF Channel
30 31 32 33 34 35 36 37 38 39

Frequency (MHz) 2462 2464 2466 2468 2470 2472 2474 2476 2478 2480

Test frequencies are lowest channel: 2402 MHz, middle channel: 2440 MHz and highest channel: 2480 MHz for Bluetooth LE

Table 5: RF Channel and Frequency of 2.4GHz Wi-Fi

RF Channel
01 02 03 04 05 06 07 08 09 10 11

802.11 b/g/n(HT20) Frequency (MHz)
2412 2417 2422 2427 2432 2437 2442 2447 2452 2457 2462

802.11 n(HT40) Frequency (MHz)
/ / 2422 2427 2432 2437 2442 2447 2452 / /

Test frequencies are lowest channel: 2412 MHz, middle channel: 2437 MHz and highest channel: 2462 MHz for 802.11b/g/n(HT20)
Test frequencies are lowest channel: 2422 MHz, middle channel: 2437 MHz and highest channel: 2452 MHz for 802.11n(HT40)

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3.3 Independent Operation Modes

The basic operation modes are: A. On, Bluetooth wireless transmitting mode
1) Low Channel 2) Middle Channel 3) High Channel B. On, Wi-Fi 802.11 b/g/n wireless transmitting mode 1) Low Channel 2) Middle Channel 3) High Channel C. On, Charging + Wireless link D. Off

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3.4 Noise Generating and Noise Suppressing Parts
Refer to Circuit Diagram for further details.

3.5 Submitted Documents
- Application Form - ID Label and Location Info - Schematics

- Operation Description - Block Diagram - PCB Layout

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4 Test Set-up and Operation Modes

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4.1 Principle of Configuration Selection

Radio Spectrum:

The equipment under test (EUT) was configured at its highest power output in

order to measure its highest possible radiation and conducted level. The test modes were adapted

accordingly in reference to the instructions for use.

Emission: The equipment under test (EUT) was configured to measure its highest possible radiation level. The test modes were adapted accordingly in reference to the instructions for use.

4.2 Test Operation and Test Software
Test operation refers to test setup in chapter 5. All tests were performed according to the procedures in ANSI C63.10: 2013. According to clause 3.1, all tests were performed on model WT10 in this report.

4.3 Special Accessories and Auxiliary Equipment

Table 6: List of Accessories and Auxiliary Equipment

Description Notebook Adapter

Manufacturer DELL
HUAWEI

Model Latitude 3400 HW-050200C01

S/N 16238087894 B78578GBT02395

Supplied by UnionTrust UnionTrust

4.4 Countermeasures to Achieve EMC Compliance
The test sample which has been tested contained the noise suppression parts as described in the Technical Construction File (TCF). No additional measures were employed to achieve compliance.

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4.5 Test Setup Diagram

Diagram of Measurement Configuration for Radiation Test (Below 1GHz)

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Diagram of Measurement Configuration for Radiation Test (Above 1GHz)

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Diagram of Measurement Configuration for Mains Conduction Measurement

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Diagram of Measurement Configuration for Conducted Transmitter Measurement

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5 Test Results

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5.1 Transmitter Requirement & Test Suites

5.1.1 Antenna Requirement

RESULT:

Test Specification Test standard

: FCC Part 15.247(b)(4) and Part 15.203 RSS-Gen Clause 6.8

Pass

According to the manufacturer declared, the EUT has an Integral Antenna, the directional gain of antenna is 1.83 dBi for Bluetooth & 2.4GHz Wi-Fi, and the antenna connector is designed with permanent attachment and no consideration of replacement.

Therefore the EUT is considered sufficient to comply with the provision.

Refer to EUT Photo for further details.

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5.1.2 Maximum Peak Conducted Output Power
RESULT:

Test Specification Test standard
Basic standard Limits Kind of test site

: FCC Part 15.247(b)(3)

RSS-247 Clause 5.4(d)

: ANSI C63.10: 2013

:

DSSS < 1.0 Watts e.i.r.p. <4W

: Shielded Room

Test Setup Date of testing Input voltage Operation mode Test channel Ambient temperature Relative humidity Atmospheric pressure

: 2024-08-19 to 2024-09-12 : Fully charged battery : A, B : Low / Middle / High : 25.2  : 55.3 % : 100.4 kPa

For details refer to following test result.

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Pass

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Table 7: Test Result of Maximum Peak Conducted Output Power, Bluetooth LE

Test Mode

Data Rate

Test Channel (MHz)

Measured Peak Power

(dBm)

(W)

2402

11.73

0.0149

1 Mbps

2440

12.28

0.0169

Bluetooth

2480

8.50

0.0071

LE

2402

11.89

0.0155

2 Mbps

2440

12.29

0.0169

2480

8.49

0.0071

Maximum Measured Value

12.29

0.0169

Max. e.i.r.p.=12.29dBm+1.83dBi=14.12dBm, which is less than 36dBm=4W.

Limit (W)
< 1.0

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Table 8: Test Result of Maximum Peak Conducted Output Power, 2.4GHz Wi-Fi

Test Mode

Data Rate

Test Channel (MHz)

Measured Peak Power

(dBm)

(W)

2412

16.75

0.0473

802.11b

1 Mbps

2437

15.48

0.0353

2462

16.51

0.0448

2412

23.10

0.2042

802.11g

6 Mbps

2437

23.02

0.2004

2462

23.14

0.2061

802.11n (HT20)

MCS0

2412 2437 2462

23.35 23.15 22.80

0.2163 0.2065 0.1905

802.11n (HT40)

MCS0

2422 2437 2452

23.39 23.13 22.79

0.2183 0.2056 0.1901

Maximum Measured Value

23.39

0.2183

Max. e.i.r.p.=23.39dBm+1.83dBi=25.22dBm, which is less than 36dBm=4W.

Limit (W)
< 1.0

Note: 1) The cable loss is taken into account in results. 2) Antenna gain(G): 1.83 dBi for Bluetooth & 2.4GHz Wi-Fi

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5.1.3 Conducted Power Spectral Density
RESULT:

Test Specification Test standard
Basic standard Limits Kind of test site

: FCC Part 15.247(e) RSS-247 Clause 5.2(b)
: ANSI C63.10: 2013 : < 8 dBm / 3kHz : Shielded Room

Test Setup Date of testing Input voltage Operation mode Test channel Ambient temperature Relative humidity Atmospheric pressure

: 2024-08-19 to 2024-09-12 : Fully charged battery : A, B : Low / Middle / High : 25.2  : 55.3 % : 100.4 kPa

For the measurement records, refer to the appendix A, B.

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Pass

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5.1.4 6dB Bandwidth
RESULT:

Test Specification Test standard
Basic standard Limits Kind of test site

: FCC Part 15.247(a)(2) RSS-247 Clause 5.2(a)
: ANSI C63.10: 2013 : > 500 kHz : Shielded Room

Test Setup Date of testing Input voltage Operation mode Test channel Ambient temperature Relative humidity Atmospheric pressure

: 2024-08-19 to 2024-09-12 : Fully charged battery : A, B : Low / Middle / High : 25.2  : 55.3 % : 100.4 kPa

For the measurement records, refer to the appendix A, B.

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Pass

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5.1.5 99% Bandwidth
RESULT:

Test Specification Test standard
Basic standard Limits Kind of test site

: FCC Part 15.247(a) RSS-Gen Clause 6.7
: ANSI C63.10: 2013 : Within assigned band 2400-2483.5MHz : Shielded Room

Test Setup Date of testing Input voltage Operation mode Test channel Ambient temperature Relative humidity Atmospheric pressure

: 2024-08-19 to 2024-09-12 : Fully charged battery : A, B : Low / Middle / High : 25.2  : 55.3 % : 100.4 kPa

For the measurement records, refer to the appendix A, B.

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Pass

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5.1.6 Conducted Spurious Emissions Measured in 100 kHz Bandwidth

RESULT:

Pass

Test Specification Test standard Basic standard Limits
Kind of test site

: FCC Part 15.247(d)
RSS-247 Clause 5.5
: ANSI C63.10: 2013 : 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, must also comply with the radiated emission limits specified in 15.209(a) : Shielded Room

Test Setup Date of testing Input voltage Operation mode Test channel Ambient temperature Relative humidity Atmospheric pressure

: 2024-08-19 to 2024-09-12 : Fully charged battery : A, B : Low / Middle / High : 25.2  : 55.3 % : 100.4 kPa

Test results of 100kHz Bandwidth of Frequency Band Edge by Conducted method refer to test plots, and compliance is achieved as well.

For the measurement records, refer to the appendix A, B.

Prüfbericht - Produkte Test Report - Products

Prüfbericht - Nr.: CN24SAFO 002
Test Report No.:

5.1.7 Radiated Spurious Emission
RESULT:

Test Specification Test standard
Basic standard Limits
Kind of test site

: FCC Part 15.247(d) & FCC Part 15.205 RSS-247 Clause 3.3
: ANSI C63.10: 2013 : Refer to 15.209(a) of FCC part 15.247(d)
RSS-Gen Section 8.9 & 8.10 : 3m Semi-anechoic Chamber

Seite 21 von 23 Page 21 of 23
Pass

Test Setup Date of testing Input voltage Operation mode Test channel Ambient temperature Relative humidity Atmospheric pressure

: 2024-08-18 to 2024-09-20 : AC 120V, 60Hz : A, B : Low / Middle / High : Refer to test result : Refer to test result : Refer to test result

Remark: Testing was carried out within frequency range 9kHz to the tenth harmonics. Only the worst case spurious emissions configuration of the each mode were reported.

For the measurement records, refer to the appendix A, B.

Prüfbericht - Produkte Test Report - Products

Prüfbericht - Nr.: CN24SAFO 002
Test Report No.:

5.1.8 Conducted Emission on AC Mains
RESULT:

Test Specification Test standard
Basic standard Frequency range Classification Limits
Kind of test site

: FCC Part 15.207(a) RSS-Gen Section 8.8
: ANSI C63.10: 2013 : 0.15 ­ 30MHz : Class B : FCC Part 15.207(a)
RSS-Gen Table 4 : Shielded Room

Test Setup Date of testing Input voltage Operation mode Earthing Ambient temperature Relative humidity Atmospheric pressure

: 2024-08-12 : AC 120V, 60Hz : C : Not connected : 25.6  : 61.6 % : 100.4 kPa

For the measurement records, refer to the appendix A, B.

Seite 22 von 23 Page 22 of 23
Pass

Prüfbericht - Produkte Test Report - Products
Prüfbericht - Nr.:
Test Report No.:

CN24SAFO 002

6 Photographs of the Test Set-Up

For photographs of the test set-up, refer to the appendix C.

Seite 23 von 23 Page 23 of 23

7 List of Tables
Table 1: List of Test and Measurement Equipment..................................................................... 6 Table 2: Measurement Uncertainty ............................................................................................. 7 Table 3: Technical Specification of EUT ..................................................................................... 8 Table 4: RF Channel and Frequency of Bluetooth LE ................................................................. 9 Table 5: RF Channel and Frequency of 2.4GHz Wi-Fi ................................................................ 9 Table 6: List of Accessories and Auxiliary Equipment ............................................................... 11 Table 7: Test Result of Maximum Peak Conducted Output Power, Bluetooth LE ..................... 16 Table 8: Test Result of Maximum Peak Conducted Output Power, 2.4GHz Wi-Fi .................... 16


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