Shenzhen Zhongjian Nanfang Testing Co., Ltd.

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1 Report No: CCISE8572 Cover Page FCC REPORT (Bluetooth) pplicant: ddress of pplicant: Equipment Under Test (EUT) GROUPSFIT 8/84 route de la Libération 7734 PONTULT COMBULT France Product Name: Model No.: Trade mark: FCC ID: 3.3-INCH 2 IN TBLET HERO3C THOMSON 2QOO-HERO3C pplicable standards: FCC CFR Title 47 Part 5 Subpart C Section Date of sample receipt: 5 Nov., 28 Date of Test: 5 Nov., to 3 Dec., 28 Date of report issued: 8 Dec., 28 Test Result: PSS * * In the configuration tested, the EUT complied with the standards specified above. uthorized Signature: Bruce Zhang Laboratory Manager This report details the results of the testing carried out on one sample. The results contained in this test report do not relate to other samples of the same product and does not permit the use of the CCIS product certification mark. The manufacturer should ensure that all products in series production are in conformity with the product sample detailed in this report. This report may only be reproduced and distributed in full. If the product in this report is used in any configuration other than that detailed in the report, the manufacturer must ensure the new system complies with all relevant standards. This document cannot be reproduced except in full, without prior written approval of the Company. ny unauthorized alteration, forgery or falsification of the content or appearance of this document is unlawful and offenders may be prosecuted to the fullest extent of the law. Unless otherwise stated the results shown in this test report refer only to the sample(s) tested and such sample(s) are retained for 9 days only.

2 2 Version Version No. Date Description 8 Dec., 28 Original Report No: CCISE8572 Tested by: Date: 8 Dec., 28 Test Engineer Reviewed by: Date: 8 Dec., 28 Project Engineer Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 2 of 54

3 3 Contents Report No: CCISE8572 COVER PGE... 2 VERSION CONTENTS TEST SUMMRY GENERL INFORMTION CLIENT INFORMTION GENERL DESCRIPTION OF E.U.T TEST ENVIRONMENT ND TEST MODE DESCRIPTION OF SUPPORT UNITS MESUREMENT UNCERTINTY LBORTORY FCILITY LBORTORY LOCTION TEST INSTRUMENTS LIST TEST RESULTS ND MESUREMENT DT NTENN REQUIREMENT CONDUCTED EMISSIONS CONDUCTED OUTPUT POWER DB OCCUPY BNDWIDTH CRRIER FREQUENCIES SEPRTION HOPPING CHNNEL NUMBER DWELL TIME PSEUDORNDOM FREQUENCY HOPPING SEQUENCE BND EDGE Conducted Emission Method Radiated Emission Method SPURIOUS EMISSION Conducted Emission Method Radiated Emission Method TEST SETUP PHOTO EUT CONSTRUCTIONL DETILS Page Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 3 of 54

4 Report No: CCISE Test Summary Test Items Section in CFR 47 Result ntenna Requirement 5.23 & (c) Pass C Power Line Conducted Emission 5.27 Pass Conducted Peak Output Power (b)() Pass 2dB Occupied Bandwidth (a)() Pass Carrier Frequencies Separation (a)() Pass Hopping Channel Number (a)() Pass Dwell Time (a)() Pass Spurious Emission 5.25 & 5.29 Pass Band Edge 5.247(d) Pass Pass: The EUT complies with the essential requirements in the standard. N/: Not pplicable. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 4 of 54

5 5 General Information 5. Client Information pplicant: ddress: Manufacturer: ddress: Factory: ddress: GROUPSFIT Report No: CCISE8572 8/84 route de la Libération 7734 PONTULT COMBULT France GROUPSFIT 5.2 General Description of E.U.T. Product Name: Model No.: Operation Frequency: Transfer rate: Number of channel: 79 Modulation type: Modulation technology: ntenna Type: ntenna gain: Power supply: C adapter: Test Sample Condition: 8/84 route de la Libération 7734 PONTULT COMBULT France Shenzhen Ou Du Li Fang Technology Co., Ltd. -3 Floor, building, 3rd factory, Yujianfeng Industry park, 289# Huafan Road, Tongsheng community, Dalang, Honghua District, Shenzhen 3.3-INCH 2 IN TBLET HERO3C 242MHz~248MHz /2/3 Mbits/s GFSK, π/4-dqpsk, 8DPSK FHSS Internal ntenna.8 dbi Rechargeable Li-ion Battery DC7.6V-55mh Model: K36WG-225U Input: C-24V, 5/6Hz,.8 Output: DC 2.V, 25m The test samples were provided in good working order with no visible defects. Operation Frequency each of channel for GFSK, π/4-dqpsk, 8DPSK Channel Frequency Channel Frequency Channel Frequency Channel Frequency 242MHz MHz MHz MHz 243MHz MHz MHz MHz 2 244MHz MHz MHz MHz 3 245MHz MHz MHz MHz 4 246MHz MHz MHz MHz 5 247MHz MHz MHz MHz 5 247MHz MHz MHz MHz 6 248MHz MHz MHz MHz 7 249MHz MHz MHz MHz 8 242MHz MHz MHz MHz 9 242MHz MHz MHz Remark: Channel, 39 &78 selected for GFSK, π/4-dqpsk and 8DPSK. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 5 of 54

6 5.3 Test environment and test mode Operating Environment: Temperature: Humidity: tmospheric Pressure: Test Modes: Non-hopping mode: Hopping mode: Remark 24. C 54 % RH mbar Report No: CCISE8572 Keep the EUT in continuous transmitting mode with worst case data rate. Keep the EUT in hopping mode. GFSK ( Mbps) is the worst case mode. The sample was placed.8m (below GHz)/.5m (above GHz) above the ground plane of 3m chamber*. Measurements in both horizontal and vertical polarities were performed. During the test, each emission was maximized by: having the EUT continuously working with a fresh battery, investigated all operating modes, rotated about all 3 axis (X, Y & Z) and considered typical configuration to obtain worst position, manipulating interconnecting cables, rotating the turntable, varying antenna height from m to 4m in both horizontal and vertical polarizations. The emissions worst-case are shown in Test Results of the following pages. 5.4 Description of Support Units The EUT has been tested as an independent unit. 5.5 Measurement Uncertainty Parameters Conducted Emission (9kHz ~ 3MHz) Radiated Emission (9kHz ~ 3MHz) Radiated Emission (3MHz ~ MHz) Radiated Emission (GHz ~ 8GHz) Radiated Emission (8GHz ~ 4GHz) Expanded Uncertainty ±2.22 db (k=2) ±2.76 db (k=2) ±4.28 db (k=2) ±5.72 db (k=2) ±2.88 db (k=2) 5.6 Laboratory Facility The test facility is recognized, certified, or accredited by the following organizations: FCC - Registration No.: has been accredited as a testing laboratory by FCC (Federal Communications Commission). The Registration No. is IC - Registration No.: 6- The 3m Semi-anechoic chamber of has been Registered by Certification and Engineering Bureau of Industry Canada for radio equipment testing with Registration No.: 6-. CNS - Registration No.: CNS L648 is accredited to ISO/IEC 725:25 General Requirements for the Competence of Testing and Calibration laboratories for the competence of testing. The Registration No. is CNS L648. 2L - Registration No.: This laboratory is accredited in accordance with the recognized International Standard ISO/IEC 725:25 General requirements for the competence of testing and calibration laboratories. The test scope can be found as below link: Laboratory Location ddress: No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Tel: , Fax: info@ccis-cb.com, Website: Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 6 of 54

7 5.8 Test Instruments list Radiated Emission: Test Equipment Manufacturer Model No. Serial No. Report No: CCISE8572 Cal. Date (mm-dd-yy) Cal. Due date (mm-dd-yy) 3m SC SEMC 9m*6m*6m Loop ntenna SCHWRZBECK FMZB59B BiConiLog ntenna SCHWRZBECK VULB Horn ntenna SCHWRZBECK BBH92D Horn ntenna SCHWRZBECK BBH92D Horn ntenna SCHWRZBECK BBH 97 BBH EMI Test Software UDIX E3 Version: 6.99b Pre-amplifier HP 8447D Pre-amplifier CD PP-G Spectrum analyzer Rohde & Schwarz FSP Spectrum analyzer Rohde & Schwarz FSP EMI Test Receiver Rohde & Schwarz ESRP Cable ZDECL Z8-NJ-NJ Cable MICRO-COX MFR64639 K Cable SUHNER SUCOFLEX 5893/4PE RF Switch Unit MWRFTEST MW2 N/ N/ N/ Test Software MWRFTEST MTS82 Version: 2... Conducted Emission: Test Equipment Manufacturer Model No. Serial No. Cal. Date (mm-dd-yy) Cal. Due date (mm-dd-yy) EMI Test Receiver Rohde & Schwarz ESCI Pulse Limiter SCHWRZBECK OSRM LISN CHSE MN25D LISN Rohde & Schwarz ESH3-Z / Cable HP 53 N/ EMI Test Software UDIX E3 Version: 6.99b Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 7 of 54

8 6 Test results and measurement data 6. ntenna Requirement Report No: CCISE8572 Standard requirement: FCC Part 5 C Section 5.23 & 247(b) 5.23 requirement: n intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator, the manufacturer may design the unit so that a broken antenna can be replaced by the user, but the use of a standard antenna jack or electrical connector is prohibited (b) (4) requirement: (4) The conducted output power limit specified in paragraph (b) of this section is based on the use of antennas with directional gains that do not exceed 6 dbi. Except as shown in paragraph (c) of this section, if transmitting antennas of directional gain greater than 6 dbi are used, the conducted output power from the intentional radiator shall be reduced below the stated values in paragraphs (b)(), (b)(2), and (b)(3) of this section, as appropriate, by the amount in db that the directional gain of the antenna exceeds 6 dbi. E.U.T ntenna: The Bluetooth antenna is an Internal antenna which permanently attached, and the best case gain of the antenna is.8 dbi. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 8 of 54

9 6.2 Conducted Emissions Test Requirement: FCC Part 5 C Section 5.27 Test Method: Test Frequency Range: Class / Severity: Receiver setup: Limit: Test setup: NSI C63.:23 5 khz to 3 MHz Class B Report No: CCISE8572 RBW=9 khz, VBW=3 khz, Sweep time=auto Frequency range Limit (dbuv) (MHz) Quasi-peak verage to 56* 56 to 46* * Decreases with the logarithm of the frequency. Test procedure: Test Instruments: Test mode: Test results:. The E.U.T and simulators are connected to the main power through a line impedance stabilization network (L.I.S.N.). This provides a 5ohm/5uH coupling impedance for the measuring equipment. 2. The peripheral devices are also connected to the main power through a LISN that provides a 5ohm/5uH coupling impedance with 5ohm termination. (Please refer to the block diagram of the test setup and photographs). 3. Both sides of.c. line are checked for maximum conducted interference. In order to find the maximum emission, the relative positions of equipment and all of the interface cables must be changed according to NSI C63.4: 24 on conducted measurement. Refer to section 5.8 for details Hopping mode Pass Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 9 of 54

10 Report No: CCISE8572 Measurement Data: Product name: 3.3-INCH 2 IN TBLET Product model: HERO3C Test by: Carey Test mode: BT Tx mode Test frequency: 5 khz ~ 3 MHz Phase: Line Test voltage: C 2 V/6 Hz Environment: Temp: 22.5 Huni: 55% Notes:. n initial pre-scan was performed on the line and neutral lines with peak detector. 2. Quasi-Peak and verage measurement were performed at the frequencies with maximized peak emission. 3. Final Level =Receiver Read level + LISN Factor + Cable Loss. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page of 54

11 Report No: CCISE8572 Product name: 3.3-INCH 2 IN TBLET Product model: HERO3C Test by: Carey Test mode: BT Tx mode Test frequency: 5 khz ~ 3 MHz Phase: Neutral Test voltage: C 2 V/6 Hz Environment: Temp: 22.5 Huni: 55% Notes:. n initial pre-scan was performed on the line and neutral lines with peak detector. 2. Quasi-Peak and verage measurement were performed at the frequencies with maximized peak emission. 3. Final Level =Receiver Read level + LISN Factor + Cable Loss. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page of 54

12 6.3 Conducted Output Power Test Requirement: FCC Part 5 C Section (b)() Test Method: NSI C63.:23 and KDB Receiver setup: Limit: Test setup: Report No: CCISE8572 RBW=MHz, VBW=3MHz, Detector=Peak (If 2dB BW MHz) RBW=3MHz, VBW=MHz, Detector=Peak (If 2dB BW > MHz and < 3MHz) For frequency hopping systems operating in the MHz band employing at least 75 non-overlapping hopping channels: watt. For all other frequency hopping systems in the MHz band:.25 watts. Test Instruments: Test mode: Test results: Refer to section 5.8 for details Non-hopping mode Pass Measurement Data: Test channel Peak Output Power (dbm) Limit (dbm) Result GFSK mode Lowest channel Pass Middle channel Pass Highest channel Pass π/4-dqpsk mode Lowest channel.9 2. Pass Middle channel.2 2. Pass Highest channel Pass 8DPSK mode Lowest channel.3 2. Pass Middle channel.5 2. Pass Highest channel.3 2. Pass Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 2 of 54

13 Report No: CCISE8572 Test plot as follows: Modulation mode: GFSK Ref 6.5 dbm * tt 2 db * RBW MHz * VBW 3 MHz Marker [T ] 4.78 dbm GHz Modulation mode: π/4-dqpsk * RBW 3 MHz Marker [T ] * VBW MHz.9 dbm Ref 6.5 dbm * tt 2 db 2.49 GHz PK PK C C -8-8 Center 2.42 GHz 5 khz/ Span 5 MHz Center 2.42 GHz MHz/ Span MHz Date: 2.NOV.28 5:39:2 Lowest channel Date: 2.NOV.28 5:38:58 Lowest channel * RBW MHz Marker [T ] * RBW 3 MHz Marker [T ] * VBW 3 MHz 4.8 dbm * VBW MHz.2 dbm Ref 6.5 dbm * tt 2 db 2.44 GHz Ref 6.5 dbm * tt 2 db GHz PK PK C C -8-8 Center 2.44 GHz 5 khz/ Span 5 MHz Center 2.44 GHz MHz/ Span MHz Date: 2.NOV.28 5:39:35 Middle channel Date: 2.NOV.28 5:38:38 Middle channel * RBW MHz Marker [T ] * RBW 3 MHz Marker [T ] * VBW 3 MHz 4.7 dbm * VBW MHz.42 dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz PK PK C C -8-8 Center 2.48 GHz 5 khz/ Span 5 MHz Center 2.48 GHz MHz/ Span MHz Date: 2.NOV.28 5:39:52 Highest channel Date: 2.NOV.28 5:38:7 Highest channel Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 3 of 54

14 Report No: CCISE8572 Modulation mode: 8DPSK * RBW 3 MHz Marker [T ] * RBW 3 MHz Marker [T ] * VBW MHz.3 dbm * VBW MHz.5 dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz PK PK C C -8-8 Center 2.42 GHz MHz/ Span MHz Center 2.44 GHz MHz/ Span MHz Date: 2.NOV.28 5:26:2 Lowest channel Date: 2.NOV.28 5:2:45 Middle channel * RBW 3 MHz Marker [T ] * VBW MHz.3 dbm Ref 6.5 dbm * tt 2 db GHz PK Center 2.48 GHz MHz/ Span MHz Date: 3.DEC.28 3:4:8 Highest channel Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 4 of 54

15 6.4 2dB Occupy Bandwidth Test Requirement: FCC Part 5 C Section (a)() Test Method: NSI C63.:23 and KDB Receiver setup: RBW=3 khz, VBW= khz, detector=peak Limit: N Test setup: Report No: CCISE8572 Test Instruments: Test mode: Test results: Refer to section 5.8 for details Non-hopping mode Pass Measurement Data: Test channel 2dB Occupy Bandwidth (khz) GFSK π/4-dqpsk 8DPSK Lowest Middle Highest Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 5 of 54

16 Report No: CCISE8572 Test plot as follows: Modulation mode: GFSK Ref 6.5 dbm * tt 2 db * * RBW 3 khz VBW khz Delta [T ] -.64 db 952. khz Modulation mode: π/4-dqpsk * RBW 3 khz Delta [T ] * VBW khz -.48 db Ref 6.5 dbm * tt 2 db SWT 5 ms.482 MHz Marker [T ] Marker [T ] dbm GHz dbm GHz PK D.72 dbm PK D dbm D dbm -2 D dbm C C -8-8 Center 2.42 GHz 2 khz/ Span 2 MHz Center 2.42 GHz 3 khz/ Span 3 MHz Date: 2.NOV.28 5:35:2 Lowest channel Date: 2.NOV.28 5:36:9 Lowest channel * RBW 3 khz Delta [T ] * RBW 3 khz Delta [T ] * VBW khz. db * VBW khz -.93 db Ref 6.5 dbm * tt 2 db 96. khz Ref 6.5 dbm * tt 2 db SWT 5 ms.488 MHz Marker [T ] Marker [T ] -8.6 dbm GHz dbm GHz PK D.87 dbm PK D -4.4 dbm D2-8.3 dbm -2 D dbm C C -8-8 Center 2.44 GHz 2 khz/ Span 2 MHz Center 2.44 GHz 3 khz/ Span 3 MHz Date: 2.NOV.28 5:34:29 Middle channel Date: 2.NOV.28 5:36:5 Middle channel * RBW 3 khz Delta [T ] * RBW 3 khz Delta [T ] * VBW khz.5 db * VBW khz.4 db Ref 6.5 dbm * tt 2 db 968. khz Ref 6.5 dbm * tt 2 db SWT 5 ms.494 MHz Marker [T ] Marker [T ] dbm GHz dbm GHz PK D.99 dbm PK D -4.9 dbm D2-9. dbm -2 D dbm C C -8-8 Center 2.48 GHz 2 khz/ Span 2 MHz Center 2.48 GHz 3 khz/ Span 3 MHz Date: 2.NOV.28 5:33:34 Highest channel Date: 2.NOV.28 5:37:44 Highest channel Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 6 of 54

17 Report No: CCISE8572 Modulation mode: 8DPSK * RBW 3 khz Delta [T ] * RBW 3 khz Delta [T ] * VBW khz.36 db * VBW khz.23 db Ref 6.5 dbm * tt 2 db SWT 5 ms.476 MHz Ref 6.5 dbm * tt 2 db SWT 5 ms.476 MHz Marker [T ] Marker [T ] dbm GHz dbm GHz PK D -4.3 dbm PK D -4. dbm D dbm -2 D2-24. dbm C C -8-8 Center 2.42 GHz 3 khz/ Span 3 MHz Center 2.44 GHz 3 khz/ Span 3 MHz Date: 2.NOV.28 5:22:7 Lowest channel Date: 2.NOV.28 5:23:5 Middle channel * RBW 3 khz Delta [T ] * VBW khz -. db Ref 6.5 dbm * tt 2 db SWT 5 ms.476 MHz Marker [T ] dbm GHz PK D dbm - -2 D dbm C -8 Center 2.48 GHz 3 khz/ Span 3 MHz Date: 2.NOV.28 5:25:3 Highest channel Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 7 of 54

18 6.5 Carrier Frequencies Separation Test Requirement: FCC Part 5 C Section (a)() Test Method: NSI C63.:23 and KDB Receiver setup: Limit: Test setup: RBW= khz, VBW=3 khz, detector=peak Report No: CCISE8572 a).25mhz or the 2dB bandwidth (whichever is greater) b).25mhz or 2/3 of the 2dB bandwidth (whichever is greater) Test Instruments: Test mode: Test results: Refer to section 5.8 for details Hopping mode Pass Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 8 of 54

19 Report No: CCISE8572 Measurement Data: Test channel Carrier Frequencies Separation (khz) GFSK Limit (khz) Result Lowest 952. Pass Middle 952. Pass Highest 952. Pass π/4-dqpsk mode Lowest Pass Middle 988. Pass Highest Pass 8DPSK mode Lowest Pass Middle 984. Pass Highest Pass Note: ccording to section 6.4 Mode 2dB bandwidth (khz) (worse case) Limit (khz) (Carrier Frequencies Separation) GFSK π/4-dqpsk DPSK Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 9 of 54

20 Report No: CCISE8572 Test plot as follows: Modulation mode: GFSK Ref 6.5 dbm * tt 2 db * * RBW khz VBW 3 khz Delta [T ] -.9 db. MHz Modulation mode: π/4-dqpsk * RBW khz Delta [T ] * VBW 3 khz -.9 db Ref 6.5 dbm * tt 2 db.4 MHz Marker [T ] Marker [T ] 4.6 dbm GHz -.24 dbm GHz PK PK C C -8-8 Center GHz 2 khz/ Span 2 MHz Center GHz 2 khz/ Span 2 MHz Date: 2.NOV.28 5:42:48 Lowest channel Date: 2.NOV.28 5:43:59 Lowest channel * RBW khz Delta [T ] * RBW khz Delta [T ] * VBW 3 khz.2 db * VBW 3 khz.2 db Ref 6.5 dbm * tt 2 db. MHz Ref 6.5 dbm * tt 2 db. MHz Marker [T ] Marker [T ] 4.57 dbm GHz -.29 dbm GHz PK PK C C -8-8 Center GHz 2 khz/ Span 2 MHz Center GHz 2 khz/ Span 2 MHz Date: 2.NOV.28 5:4:45 Middle channel Date: 2.NOV.28 5:45:2 Middle channel * RBW khz Delta [T ] * RBW khz Delta [T ] * VBW 3 khz -.2 db * VBW 3 khz. db Ref 6.5 dbm * tt 2 db. MHz Ref 6.5 dbm * tt 2 db.4 MHz Marker [T ] Marker [T ] 4.5 dbm GHz -.82 dbm GHz PK PK C C -8-8 Center GHz 2 khz/ Span 2 MHz Center GHz 2 khz/ Span 2 MHz Date: 2.NOV.28 5:4:58 Highest channel Date: 2.NOV.28 5:46:6 Highest channel Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 2 of 54

21 Report No: CCISE8572 Modulation mode: 8DPSK * RBW khz Delta [T ] * RBW khz Delta [T ] * VBW 3 khz -.2 db * VBW 3 khz.3 db Ref 6.5 dbm * tt 2 db.4 MHz Ref 6.5 dbm * tt 2 db. MHz Marker [T ] Marker [T ] -.23 dbm GHz -.29 dbm GHz PK PK C C -8-8 Center GHz 2 khz/ Span 2 MHz Center GHz 2 khz/ Span 2 MHz Date: 2.NOV.28 5:5:24 Lowest channel Date: 2.NOV.28 5:48:59 Middle channel * RBW khz Delta [T ] * VBW 3 khz. db Ref 6.5 dbm * tt 2 db.4 MHz Marker [T ] -.82 dbm GHz PK - -2 C -8 Center GHz 2 khz/ Span 2 MHz Date: 2.NOV.28 5:47:37 Highest channel Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 2 of 54

22 6.6 Hopping Channel Number Test Requirement: FCC Part 5 C Section (a)() Test Method: NSI C63.:23 and KDB Receiver setup: Limit: Test setup: Report No: CCISE8572 RBW= khz, VBW=3 khz, Frequency range=24mhz mhz, Detector=Peak 5 channels Test Instruments: Test mode: Test results: Refer to section 5.8 for details Hopping mode Pass Measurement Data: Mode Hopping channel numbers Limit Result GFSK, π/4-dqpsk, 8DPSK 79 5 Pass Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 22 of 54

23 Report No: CCISE8572 Test plot as follows: GFSK * RBW khz Delta [T ] π/4-dqpsk * RBW khz Delta [T ] * VBW 3 khz -.7 db * VBW 3 khz -.56 db Ref 6.5 dbm * tt 2 db SWT ms 78. MHz Ref 6.5 dbm * tt 2 db SWT ms 78. MHz Marker [T ] Marker [T ] 4.89 dbm 2.42 GHz dbm 2.42 GHz PK PK C C -8-8 Center 2.44 GHz MHz/ Span MHz Center 2.44 GHz MHz/ Span MHz Date: 2.NOV.28 5:57:45 Date: 2.NOV.28 5:56:3 8DPSK * RBW khz Delta [T ] * VBW 3 khz -.3 db Ref 6.5 dbm * tt 2 db SWT ms 78.2 MHz Marker [T ] -.28 dbm 2.48 GHz PK - -2 C -8 Center 2.44 GHz MHz/ Span MHz Date: 2.NOV.28 5:54:5 Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 23 of 54

24 6.7 Dwell Time Report No: CCISE8572 Test Requirement: FCC Part 5 C Section (a)() Test Method: NSI C63.:23 and KDB Receiver setup: RBW= MHz, VBW= MHz, Span= Hz, Detector=Peak Limit:.4 Second Test setup: Test Instruments: Test mode: Test results: Refer to section 5.8 for details Hopping mode Pass Measurement Data (Worse case): Mode Packet Dwell time (second) Limit (second) Result GFSK π/4-dqpsk 8DPSK DH.268 DH3.278 DH DH DH DH DH DH DH Note: The test period =.4 Second/Channel x 79 Channel = 3.6 s Calculation Formula: Dwell time = Ton time per hop * Hopping numbers * Period For example: DH time slot=.394*(6/ (2*79)) * 3.6=26.8ms DH3 time slot=.668*(6/ (4*79)) * 3.6=27.8ms DH5 time slot=2.928*(6/ (6*79)) * 3.6=32.32ms.4 Pass.4 Pass.4 Pass Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 24 of 54

25 Report No: CCISE8572 Test plot as follows: Modulation mode: GFSK RBW MHz Delta [T ] * VBW MHz.9 db Ref 6.5 dbm * tt 2 db SWT ms 394. µs Modulation mode: π/4-dqpsk RBW MHz Delta [T ] * VBW MHz -.8 db Ref 6.5 dbm * tt 2 db SWT ms 42. µs Marker [T ] Marker [T ] dbm 446. µs SGL -66. dbm 394. µs SGL PK PK C C -8-8 Center 2.44 GHz µs/ Center 2.44 GHz µs/ Date: 2.NOV.28 5:59:9 Date: 2.NOV.28 6::7 DH 2-DH RBW MHz Delta [T ] RBW MHz Delta [T ] * VBW MHz 3.55 db * VBW MHz 3.5 db Ref 6.5 dbm * tt 2 db SWT 3 ms.668 ms Ref 6.5 dbm * tt 2 db SWT 3 ms.674 ms Marker [T ] Marker [T ] dbm 756. µs SGL dbm 78. µs SGL PK PK C C -8-8 Center 2.44 GHz 3 µs/ Center 2.44 GHz 3 µs/ Date: 2.NOV.28 6::35 Date: 2.NOV.28 6:3:3 DH3 2-DH3 RBW MHz Delta [T ] RBW MHz Delta [T ] * VBW MHz.2 db * VBW MHz -.97 db Ref 6.5 dbm * tt 2 db SWT 4 ms ms Ref 6.5 dbm * tt 2 db SWT 4 ms ms Marker [T ] Marker [T ] dbm 592. µs SGL dbm 584. µs SGL PK PK C C -8-8 Center 2.44 GHz 4 µs/ Center 2.44 GHz 4 µs/ Date: 2.NOV.28 6:4:43 Date: 2.NOV.28 6:5: DH5 2-DH5 Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 25 of 54

26 Report No: CCISE8572 Modulation mode: 8DPSK RBW MHz Delta [T ] RBW MHz Delta [T ] * VBW MHz 4.5 db * VBW MHz.87 db Ref 6.5 dbm * tt 2 db SWT ms 46. µs Ref 6.5 dbm * tt 2 db SWT 3 ms.668 ms Marker [T ] Marker [T ] dbm 82. µs SGL.87 dbm 726. µs SGL PK PK C C -8-8 Center 2.44 GHz µs/ Center 2.44 GHz 3 µs/ Date: 2.NOV.28 6::5 Date: 2.NOV.28 6:4:7 3-DH 3-DH3 RBW MHz Delta [T ] * VBW MHz -.68 db Ref 6.5 dbm * tt 2 db SWT 4 ms ms Marker [T ].5 dbm 376. µs SGL PK - -2 C -8 Center 2.44 GHz 4 µs/ Date: 2.NOV.28 6:5:39 3-DH5 Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 26 of 54

27 6.8 Pseudorandom Frequency Hopping Sequence Report No: CCISE8572 Test Requirement: FCC Part 5 C Section (a)() requirement: Frequency hopping systems shall have hopping channel carrier frequencies separated by a minimum of 25 khz or the 2 db bandwidth of the hopping channel, whichever is greater. lternatively. Frequency hopping systems operating in the MHz band may have hopping channel carrier frequencies that are separated by 25 khz or two-thirds of the 2 db bandwidth of the hopping channel, whichever is greater, provided the systems operate with an output power no greater than 25 mw. The system shall hop to channel frequencies that are selected at the system hopping rate from a Pseudorandom ordered list of hopping frequencies. Each frequency must be used equally on the average by each transmitter. The system receivers shall have input bandwidths that match the hopping channel bandwidths of their corresponding transmitters and shall shift frequencies in synchronization with the transmitted signals. EUT Pseudorandom Frequency Hopping Sequence The pseudorandom sequence may be generated in a nine-stage shift register whose 5th and 9th stage outputs are added in a modulo-two addition stage. nd the result is fed back to the input of the first stage. The sequence begins with the first ONE of 9 consecutive ONEs; i.e. the shift register is initialized with nine ones. Number of shift register stages: 9 Length of pseudo-random sequence: = 5 bits Longest sequence of zeros: 8 (non-inverted signal) n example of Pseudorandom Frequency Hopping Sequence as follow: Each frequency used equally on the average by each transmitter. The system receivers have input bandwidths that match the hopping channel bandwidths of their corresponding transmitters and shift frequencies in synchronization with the transmitted signals. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 27 of 54

28 6.9 Band Edge 6.9. Conducted Emission Method Test Requirement: FCC Part 5 C Section (d) Test Method: NSI C63.:23 and KDB Receiver setup: Limit: Test setup: RBW= khz, VBW=3 khz, Detector=Peak Report No: CCISE8572 In any khz bandwidth outside the frequency band in which the spread spectrum intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 2 db below that in the khz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement. Test Instruments: Test mode: Test results: Refer to section 5.8 for details Non-hopping mode and hopping mode Pass Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 28 of 54

29 Report No: CCISE8572 Test plot as follows: GFSK Lowest Channel * RBW khz Marker [T ] * RBW khz Marker [T ] * VBW 3 khz -39. dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz D 4.73 dbm D 4.49 dbm PK PK - - D dbm D2-5.5 dbm -2-2 C C -8 F -8 F Start 2.39 GHz.3 MHz/ Stop 2.43 GHz Start 2.39 GHz.3 MHz/ Stop 2.43 GHz Date: 2.NOV.28 6:7:5 Date: 2.NOV.28 6:8:6 No-hopping mode Hopping mode Highest Channel * RBW khz Marker [T ] * RBW khz Marker [T ] * VBW 3 khz -4.5 dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz D 3.74 dbm D 3.9 dbm PK PK - - D dbm D2-6.9 dbm -2-2 C C -8 F -8 F Start GHz 2.2 MHz/ Stop 2.5 GHz Start GHz 2.2 MHz/ Stop 2.5 GHz Date: 2.NOV.28 6:8: Date: 2.NOV.28 6:8:42 No-hopping mode Hopping mode Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 29 of 54

30 Report No: CCISE8572 π/4-dqpsk Lowest Channel * RBW khz Marker [T ] * RBW khz Marker [T ] * VBW 3 khz dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz PK D -.43 dbm PK D -.42 dbm D dbm -2 D dbm C C -8 F -8 F Start 2.39 GHz.3 MHz/ Stop 2.43 GHz Start 2.39 GHz.3 MHz/ Stop 2.43 GHz Date: 2.NOV.28 6:8:54 No-hopping mode Date: 2.NOV.28 6::7 Hopping mode Highest Channel * RBW khz Marker [T ] * RBW khz Marker [T ] * VBW 3 khz -4.4 dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz PK D -.87 dbm PK D -.69 dbm D dbm -2 D dbm C C -8 F -8 F Start GHz 2.2 MHz/ Stop 2.5 GHz Start GHz 2.2 MHz/ Stop 2.5 GHz Date: 2.NOV.28 6:6: No-hopping mode Date: 2.NOV.28 6:7:7 Hopping mode Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 3 of 54

31 Report No: CCISE8572 8DPSK Lowest Channel * RBW khz Marker [T ] * RBW khz Marker [T ] * VBW 3 khz dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz PK D -.23 dbm PK D -.4 dbm D dbm -2 D2-2.4 dbm C C -8 F -8 F Start 2.39 GHz.3 MHz/ Stop 2.43 GHz Start 2.39 GHz.3 MHz/ Stop 2.43 GHz Date: 2.NOV.28 6:: No-hopping mode Date: 2.NOV.28 6:2:4 Hopping mode Highest Channel * RBW khz Marker [T ] * RBW khz Marker [T ] * VBW 3 khz.6 dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db GHz Ref 6.5 dbm * tt 2 db GHz PK D -2.4 dbm PK D -.64 dbm D dbm -2 D dbm C C -8 F -8 F Start GHz 2.2 MHz/ Stop 2.5 GHz Start GHz 2.2 MHz/ Stop 2.5 GHz Date: 2.NOV.28 6:3:7 No-hopping mode Date: 2.NOV.28 6:4:8 Hopping mode Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 3 of 54

32 Report No: CCISE Radiated Emission Method Test Requirement: FCC Part 5 C Section 5.29 and 5.25 Test Method: NSI C63.: 23 Test Frequency Range: 2.3GHz to 2.5GHz Test Distance: 3m Receiver setup: Frequency Detector RBW VBW Remark bove GHz Peak MHz 3MHz Peak Value RMS MHz 3MHz verage Value Limit: Frequency Limit Remark bove GHz 54. verage Value 74. Peak Value Test setup: Test Procedure: Test Instruments: Test mode: Test results:. The EUT was placed on the top of a rotating table.5meters above the ground at a 3 meter camber. The table was rotated 36 degrees to determine the position of the highest radiation. 2. The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top of a variable-height antenna tower. 3. The antenna height is varied from one meter to four meters above the ground to determine the maximum value of the field strength. Both horizontal and vertical polarizations of the antenna are set to make the measurement. 4. For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned to heights from meter to 4 meters and the rota table was turned from degrees to 36 degrees to find the maximum reading. 5. The test-receiver system was set to Peak Detect Function and Specified Bandwidth with Maximum Hold Mode. 6. If the emission level of the EUT in peak mode was db lower than the limit specified, then testing could be stopped and the peak values of the EUT would be reported. Otherwise the emissions that did not have db margin would be re-tested one by one using peak, quasi-peak or average method as specified and then reported in a data sheet. Refer to section 5.8 for details Non-hopping mode Passed Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 32 of 54

33 Report No: CCISE8572 GFSK Mode: Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: DH Tx mode Test Channel: Lowest channel Polarization: Vertical Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 33 of 54

34 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: DH Tx mode Test Channel: Lowest channel Polarization: Horizontal Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 34 of 54

35 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: DH Tx mode Test Channel: Highest channel Polarization: Vertical Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 35 of 54

36 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: DH Tx mode Test Channel: Highest channel Polarization: Horizontal Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 36 of 54

37 Report No: CCISE8572 π/4-dqpsk mode Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 2DH Tx mode Test Channel: Lowest channel Polarization: Vertical Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 37 of 54

38 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 2DH Tx mode Test Channel: Lowest channel Polarization: Horizontal Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 38 of 54

39 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 2DH Tx mode Test Channel: Highest channel Polarization: Vertical Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 39 of 54

40 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 2DH Tx mode Test Channel: Highest channel Polarization: Horizontal Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 4 of 54

41 Report No: CCISE8572 8DPSK mode Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 3DH Tx mode Test Channel: Lowest channel Polarization: Vertical Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 4 of 54

42 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 3DH Tx mode Test Channel: Lowest channel Polarization: Horizontal Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 42 of 54

43 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 3DH Tx mode Test Channel: Highest channel Polarization: Vertical Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 43 of 54

44 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: 3DH Tx mode Test Channel: Highest channel Polarization: Horizontal Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 44 of 54

45 6. Spurious Emission 6.. Conducted Emission Method Test Requirement: FCC Part 5 C Section (d) Test Method: NSI C63.:23 and KDB Limit: Test setup: Report No: CCISE8572 In any khz bandwidth outside the frequency band in which the spread spectrum intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 2 db below that in the khz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement. Test Instruments: Test mode: Test results: Refer to section 5.8 for details Non-hopping mode Pass Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 45 of 54

46 Test plot as follows: GFSK Lowest channel * RBW khz Marker [T ] * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db SWT 2.5 s GHz Ref 6.5 dbm Report No: CCISE8572 π/4-dqpsk Lowest channel * RBW khz Marker [T ] * VBW 3 khz dbm * tt 2 db SWT 2.5 s 5.2 GHz D 4.4 dbm PK PK D -3.9 dbm - - D dbm -2-2 D dbm -8-8 Start 3 MHz GHz/ Stop 25 GHz Start 3 MHz GHz/ Stop 25 GHz Date: 2.NOV.28 2::5 Date: 2.NOV.28 2:8:22 Middle channel * RBW khz Marker [T ] Middle channel * RBW khz Marker [T ] * VBW 3 khz dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db SWT 2.5 s GHz Ref 6.5 dbm * tt 2 db SWT 2.5 s GHz D 4.6 dbm PK PK D dbm - - D dbm -2-2 D dbm -8-8 Start 3 MHz GHz/ Stop 25 GHz Start 3 MHz GHz/ Stop 25 GHz Date: 2.NOV.28 2:2:36 Date: 2.NOV.28 2:7:49 Highest channel * RBW khz Marker [T ] Highest channel * RBW khz Marker [T ] * VBW 3 khz dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db SWT 2.5 s GHz Ref 6.5 dbm * tt 2 db SWT 2.5 s 5.2 GHz D 3.6 dbm PK PK D -5.7 dbm - - D2-6.4 dbm -2-2 D dbm -8-8 Start 3 MHz GHz/ Stop 25 GHz Start 3 MHz GHz/ Stop 25 GHz Date: 2.NOV.28 2:5:4 Date: 2.NOV.28 2:7:9 Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 46 of 54

47 Report No: CCISE8572 Lowest channel * RBW khz Marker [T ] 8DPSK Middle channel * RBW khz Marker [T ] * VBW 3 khz dbm * VBW 3 khz dbm Ref 6.5 dbm * tt 2 db SWT 2.5 s GHz Ref 6.5 dbm * tt 2 db SWT 2.5 s GHz PK D dbm PK D dbm D dbm -2 D dbm -8-8 Start 3 MHz GHz/ Stop 25 GHz Start 3 MHz GHz/ Stop 25 GHz Date: 2.NOV.28 2::9 Date: 2.NOV.28 2::34 Ref 6.5 dbm Highest channel * RBW khz Marker [T ] * VBW 3 khz dbm * tt 2 db SWT 2.5 s GHz PK D dbm - -2 D dbm -8 Start 3 MHz GHz/ Stop 25 GHz Date: 2.NOV.28 2:2: Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 47 of 54

48 Report No: CCISE Radiated Emission Method Test Requirement: FCC Part 5 C Section 5.29 Test Method: NSI C63.: 23 Test Frequency Range: 9 khz to 25 GHz Test Distance: 3m Receiver setup: Frequency Detector RBW VBW Remark 3MHz-GHz Quasi-peak 2kHz 3kHz Quasi-peak Value bove GHz Peak MHz 3MHz Peak Value RMS MHz 3MHz verage Value Limit: Frequency Limit Remark 3MHz-88MHz 4. Quasi-peak Value 88MHz-26MHz 43.5 Quasi-peak Value 26MHz-96MHz 46. Quasi-peak Value 96MHz-GHz 54. Quasi-peak Value bove GHz 54. verage Value 74. Peak Value Test setup: Below GHz bove GHz Test Procedure:. The EUT was placed on the top of a rotating table.8m(below GHz) /.5m(above GHz) above the ground at a 3 meter chamber. The table was rotated 36 degrees to determine the position of the highest radiation. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 48 of 54

49 Report No: CCISE8572 Test Instruments: Test mode: Test results: Remark: 2. The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top of a variable-height antenna tower. 3. The antenna height is varied from one meter to four meters above the ground to determine the maximum value of the field strength. Both horizontal and vertical polarizations of the antenna are set to make the measurement. 4. For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned to heights from meter to 4 meters and the rota table was turned from degrees to 36 degrees to find the maximum reading. 5. The test-receiver system was set to Peak Detect Function and Specified Bandwidth with Maximum Hold Mode. 6. If the emission level of the EUT in peak mode was db lower than the limit specified, then testing could be stopped and the peak values of the EUT would be reported. Otherwise the emissions that did not have db margin would be re-tested one by one using peak, quasi-peak or average method as specified and then reported in a data sheet. Refer to section 5.8 for details Non-hopping mode Pass. Pre-scan all kind of the place mode (X-axis, Y-axis, Z-axis), and found the Y-axis is the worst case khz to 3 MHz is noise floor, so only shows the data of above 3MHz in this report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 49 of 54

50 Report No: CCISE8572 Measurement Data (worst case): Below GHz: Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: BT Tx mode Test Frequency: 3 MHz ~ GHz Polarization: Vertical Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 5 of 54

51 Report No: CCISE8572 Product Name: 3.3-INCH 2 IN TBLET Product Model: HERO3C Test By: Carey Test mode: BT Tx mode Test Frequency: 3 MHz ~ GHz Polarization: Horizontal Test Voltage: C 2/6Hz Environment: Temp: 24 Huni: 57% Remark:. Final Level = Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 5 of 54

52 Report No: CCISE8572 bove GHz: Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Test channel: Lowest channel Cable Loss (db) Detector: Peak Value Preamp Factor (db) Level (dbuv/m) Limit Line (dbuv/m) Over Limit (db) Polarization Vertical Horizontal Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Detector: verage Value Preamp Factor (db) Level (dbuv/m) Limit Line (dbuv/m) Over Limit (db) Polarization Vertical Horizontal Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Test channel: Middle channel Detector: Peak Value Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit Line (dbuv/m) Over Limit (db) Polarization Vertical Horizontal Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Detector: verage Value Preamp Factor (db) Level (dbuv/m) Limit Line (dbuv/m) Over Limit (db) Polarization Vertical Horizontal Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Test channel: Highest channel Cable Loss (db) Detector: Peak Value Preamp Factor (db) Level (dbuv/m) Limit Line (dbuv/m) Over Limit (db) Polarization Vertical Horizontal Detector: verage Value Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit Line (dbuv/m) Over Limit (db) Polarization Vertical Horizontal Remark:. Final Level =Receiver Read level + ntenna Factor + Cable Loss Preamplifier Factor. 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Project No.: CCISE857 No. B-C, /F., Building 2, Laodong No.2 Industrial Park, Xixiang Road, Telephone: +86 () Fax: +86 () Page 52 of 54

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