
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Quick Start Guide Smart Wireless Floodlight Camera Model: E97P Floodlight Camera Welcome Thank you for choosing our Floodlight Camera.Getting started is easy. 01 1. What’s Included Floodlight Camera Bracket Screws Wire Nuts Silicone Cap Bracket Screw Bracket Screw Wire Nuts Waterproof Cushion Quick Start Guide American Version Quick Start Guide Smart Wireless Floodlight Camera Model: E97P Floodlight Camera 02 Europe/Australia Version Floodlight Camera Wall Screws Junction Box Silicone Cap Bracket Screw Screw stopper Waterproof Cushion Quick Start Guide Quick Start Guide Smart Wireless Floodlight Camera Model: E97P Floodlight Camera 03 2. Product Details Lens Camera Lock Collar PIR Motion Detector Reset USB interface Micro SD Card Slot Speaker LED IndicatorMicrophone 1800 Lm Floodlight Light Adjustment Knob Light Lock Collar Floodlight Camera 04 If you don’t know where your breaker is or how to turn off power to your floodlight circuit, consult with a licensed electrician. WARNING: Risk of electrical shock Disconnect power at the fuse or circuit breaker before installing.Verify that the supply voltage is correct. Connect fixture to a AC100V-240V,50/60 Hz power source. Properly ground fixture.Always follow code standards when installing wired connections.If you are outside of North America, installation and wiring must be performed by a licensed electrcian. CAUTION: Risk of fire NOTICE Do not install near combustible or flamable surfaces.Do not connect this light fixture to a dimmer switch or timer.Floodlight Camera must be installed on a wall and on a UL listed junction box. WARNING LIVEWIRES KEEP OUT 3. Shut power off at the breaker Floodlight Camera 05 The proper installation height to optimizethe motion sensor performance is around 2.5m (8ft) 2.5m(8ft) 1m(3.28ft) UP to 10m(32ft) Motion Detection Zone 4.Proper Installation Height Floodlight Camera 06 American gauge power cord color Black , White, Yellow green. Connect Floodlight Camera cables with same color junction box cables. Junction Box(not included) white Black BracketScrews WaterproofCushion WireNuts Light Adjustment Knob Light Lock Collar CameraLockCollar Motion Detector Silicone Cap 5. How it fits all together Floodlight Camera 07 Light Adjustment Knob Light Lock Collar CameraLockCollar Motion Detector Silicone Cap Europe/Australia gauge power cord color Blue , Brown, Yellow green. Connect Floodlight Camera cables with same color junction box cables. Blue Brown Junction Box(not included) SiliconeCap WaterproofCushion Floodlight Camera 08 Loosen the knobs on the light fixtures to rotate them out of the way and allow access to the mounting screws. 1 2 According to your actualscene to adjust the view angle of camera 6. Prepare your Floodlight Camera for installation Floodlight Camera 09 8.Connection Preparation Please install the Floodlight Camera within WiFi covered area to ensure the best working performance. Router (Suggest 30cm~100cm) Camera Smartphone Note: Make sure smart phone is connected with your wireless router. Please note the camera is only working under 2.4G Wi-Fi, not support 5G Wi-Fi. 7. Restore power at the breaker After restoring power, the lights will turn on and your Floodlight Camera will begin speaking to you to let you known it’s in setup mode. Floodlight Camera 10 Smartphone ( IOS 9.0 or Android 4.4 system and higher version is available. Tablet PC, Mac or Windows PC is not available. Please don't use special characters,symbols to name the WiFi and its Password. 9. Get the APP and Account For the best experience, please download the ‘TuyaSmart’ APP to your smartphone from App Store or Google Play Store, or you can also scan the QR code below, the APP icon will be displayed after installed successfully. Floodlight Camera 11 Launch the app from your smartphone and click to register and then sign in. Follow the on-screen instructions. After installation, switch on the button. 10.Connect the power to the camera Floodlight Camera 12 If the indicator is not red and flashing quickly, use the reset button to press the reset button of camera above 5 seconds, then release the button, a red LED on the front of camera will blink quickly. Power the device on and make sure the indicator is red and flashing quickly or a prompt tone is heard. Follow App's instructions to complete network pairing process, the device will connect to your Wi-Fi network successfully. The blue light is on, camera is ready for viewing. 11. Set up your camera Red light blinks Press the Reset button for above 5 seconds to start Reset processing Floodlight Camera 13 To ensure SD card video recording works steady, we recommend Class 10 or higher speed Micro SD card. 11. Micro SD card To make sure the device works normally, please format the SD card to FAT32 before the first time use. Before insert or pull out the SD card, please power off the device.Insert the SD card properly into the slot as below. Micro SD Floodlight Camera 14 12. APP Details Switch for motion detection Alarm Switch on/off lamp manually Lamp PIR motion zone settings Motion After setting alarm and motion zone, lamp can be triggered to turn on automatically if camera is in night vision mode Alarm\Motion\Lamp Enable manually. Can't be triggered automatically Buzzer Video recorded for motion or full time Local video Video saved in mobile phone Record If need two way audio, please set in "Settings"-"Basic function settings" Talk and Listen Photos saved in mobile phone Sceenshot SettingsFull screen Listen Resolution change Record Lamp Talk alarm Screenshot Local Video Floodlight Camera 15 Congratulations! Your camera is set up and ready to go. You’re done! Floodlight Camera 16 Appendix: Camera LED Guide Camera StatusSystem starting up Red LED on Standby for configuration Red LED blinks Network pairing Blue LED blinks Camera online Blue LED on All trademarks are used for reference purposes only. Thanks again for choosing our Floodlight camera! Make life safe in your hands!Boost security…
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FCC ID: Z63-E97 TB-RF-074-1.0 Appendix III EUT External Photographs Photo 1 Appearance of Adapter Photo 2 Appearance of EUT FCC ID: Z63-E97 TB-RF-074-1.0 Photo 3 Appearance of EUT Photo 4 Appearance of EUT FCC ID: Z63-E97 TB-RF-074-1.0 Photo 5 Appearance of EUT
FCC ID: Z63-E97 TB-RF-074-1.0 Appendix IID Label Smart Floodlight Camera FCC ID: Z63-E97 Model: E97P FCC ID: Z63-E97 TB-RF-074-1.0 Appendix II ID Label Location
FCC ID: Z63-E97 TB-RF-074-1.0 Appendix IV EUT Internal Photographs Photo 7 Internal of EUT Photo 8 Appearance of EUT FCC ID: Z63-E97 TB-RF-074-1.0 Photo 9 Appearance of EUT Photo 10 Appearance of PCB 2.4GWiFi Antenna FCC ID: Z63-E97 TB-RF-074-1.0 Photo 11 Appearance of PCB Photo 12 Appearance of PCB FCC ID: Z63-E97 TB-RF-074-1.0 Photo 13 Appearance of PCB Photo 14 Appearance of Battery#1
Shenzhen Toby Technology Co., Ltd. Report No.: TBR-C-202312-0138-1 Page: 1 of 3 TB-RF-075-1.0 1 A/F., Building.6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao’an, Shenzhen, Guangdong, China Tel: +86 75526509301 Fax: +86 75526509195 Maximum Permissible Exposure Evaluation FCC ID: Z63-E97 1. Client Information Applicant : SHENZHEN AONI ELECTRONIC CO., LTD. Address : No.5,Bldg., Honghui Industrial Park, 2nd Liuxian Road, Xin'An streets, Bao'an District, ShenZhen, China 518101 Manufacturer : SHENZHEN AONI ELECTRONIC CO., LTD. Address : No.5,Bldg., Honghui Industrial Park, 2nd Liuxian Road, Xin'An streets, Bao'an District, ShenZhen, China 518101 2. General Description of EUT EUT Name : Smart Floodlight Camera Models No. : E97P, MI-CW073-199W EFXY(X:0~9,A~Z ;Y:0~9,A~Z) Model Different : All these models are identical in the same PCB, layout and electrical circuit, The only difference is model name. Product Description : Operation Frequency: 802.11b/g/n(HT20): 2412MHz~2462MHz 802.n(HT40): 2422MHz~2452MHz Number of Channel: 802.11b/g/n(HT20):11 channels 802.n(HT40):7 channels Antenna Gain: 3.63dBi FPC Antenna Power Rating : Input: AC 110~240V Software Version : N/A Hardware Version : V1.2 Connecting I/O Port(S) : : Please refer to the User's Manual Remark : the evaluation report used the EUT(HC-C-202312-0138-01-01-2#). Report No.: TBR-C-202312-0138-1 Page: 2 of 3 TB-RF-075-1.0 MPE Calculations for WIFI 1. EUT Operation Condition: Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. 2. Exposure Evaluation: Equation from page 18 of OET Bulletin 65, Edition 97-01 S=(PG)/4πR 2 Where S: power density P: power input to the antenna G: power gain of the antenna in the direction of interest relative to an isotropic radiator. R: distance to the center of radiation of the antenna 3. Simultaneous transmission MPE Considerations According to KDB447498: All transmitters and antennas in the host must be either evaluated for MPE compliance, by measurement or computational modeling, or qualify for the standalone MPE test exclusion in section 7.1. Simultaneous transmission MPE test exclusion applies when the sum of the MPE ratios for all simultaneous transmitting antennas incorporated in a host device, based on the calculated/estimated, numerically modeled or measured field strengths or power density, is ≤ 1.0. This means that: ∑ of MPE ratios ≤ 1.0 4. Test Result: 2.4G WiFi worst reported. Mode Frequency (MHz) Conducted Power(max) (dBm) Turn-up Power (dB) Max tune up power (dBm) [P] ANT Gain (dBi) [G] Distance (cm) [R] Power Density (mW/ cm 2 ) [S] Limit of Power Density (mW/ cm 2 ) (S) 802.11b 2412 18.372 18±1 19 3.63 20 0.0365 1 2437 18.515 18±1 19 3.63 20 0.0365 1 2462 18.504 18±1 19 3.63 20 0.0365 1 802.11g 2412 15.133 15±1 16 3.63 20 0.0183 1 2437 15.47 15±1 16 3.63 20 0.0183 1 2462 15.39 15±1 16 3.63 20 0.0183 1 802.11 n(HT20) 2412 14.813 14±1 15 3.63 20 0.0145 1 2437 14.744 14±1 15 3.63 20 0.0145 1 2462 14.629 14±1 15 3.63 20 0.0145 1 802.11 n(HT40) 2422 12.729 12±1 13 3.63 20 0.0092 1 2437 13.623 13±1 14 3.63 20 0.1153 1 2452 11.829 11±1 12 3.63 20 0.0073 1 Report No.: TBR-C-202312-0138-1 Page: 3 of 3 TB-RF-075-1.0 5. Conclusion: As specified in Table 1B of 47 CFR 1.1310- Limits for Maximum Permissible Exposure (MPE), Limits for General Population/ Uncontrolled Exposure Frequency Range (MHz) Power density (mW/ cm 2 ) 300-1,500 F/1500 1,500-100,000 1.0 For 2.4WIFI:2412~2462 MHz and Bluetooth LE MPE limit S: 1mW/ cm 2 The MPE is calculated as 0.0365 < limit 1mW / cm 2 . So, RF exposure limit warning or SAR test are not required. The EUT will only be used with a separation of 20cm or greater between the antenna and nearby persons and can therefore be considered a mobile transmitter per 47 CFR2.1091 (b). The RF Exposure Information page from the manual is included here for reference. Note For a more detailed features description, please refer to the RF Test Report. 6. Conclusion: The measurement results comply with the FCC Limit per 47 CFR 2.1091 for the uncontrolled RF Exposure of mobile device. -----END OF REPORT-----
E97PJAF Antenna Study Project Name: E97PJAF Debugging frequency band: 2400‐2500MHz Valuation date : 2023.09.23 08 Client Name: 奥尼 1 Internal Antenna 2 Testing environment Testing 3D microwave darkroom(6m*6m*6m) External Antenna 3 Antenna • Antenna name: WIFI • Size:35.2mm*8mm( FPC) • Antenna Type : Monopole • Covers : 2.4G • P/N : UB01C50F2D3a08A • Coaxial cable: 50mm 4 S Parameter_Return Loss&VSWR 5 Efficiency and Gain Item Measurement Total 1TRP 18.72 2TRP 19.05 3TRP 17.23 4 TIS(EIRP) -87.25 5 TIS(EIRP) -87.09 6 TIS(EIRP) -87.16 Frequency ID 1 2 3 4 5 6 7 8 9 10 11 Frequency (MHz) 2400.0 2410.0 2420.0 2430.0 2440.0 2450.0 2460.0 2470. 0 2480.0 2490.0 2500.0 Gain (dBi) 2.73 2.76 2.91 3.48 3.63 3.36 3.18 3.09 3.31 3.37 3.39 Efficiency (%) 61.91 62.30 61.95 64.31 63.94 64.11 65.10 65.86 65.17 64.1 9 65.48 Freespace Environment Performance – WIFI 6 Freespace Environment Performance – WIFI 7 Conclusion 8 • Antenna covers 2.4G. • Test shows excellent performance, VSWR match < 2.0in working b and. • Antenna is small: = 35.2mm*8mm ( FPC)
Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 1 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 RF Test Data for 2.4G WiFi (Conducted Measurements) General Description of EUT Product Name: Smart Floodlight Camera Test Model: E97P Sample ID: HC-C-202312-0138-01-01-2# Environmental Conditions Temperature: 24°C Relative Humidity: 50% Test Voltage: AC 120V Test Engineer: Liyingjing Note: For a more detailed features description, please refer to the report TBR-C-202312-0138-9 The report only show the worst case data. Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 2 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Duty Cycle Condition Mode Frequency (MHz) Antenna Duty Cycle (%) Correction Factor (dB) 1/T (kHz) NVNT b 2412 Ant1 98.65 0.06 0.08 NVNT b 2437 Ant1 99.04 0.04 0.08 NVNT b 2462 Ant1 99.68 0.01 0.08 NVNT g 2412 Ant1 94.52 0.24 0.48 NVNT g 2437 Ant1 94.06 0.27 0.49 NVNT g 2462 Ant1 95.37 0.21 0.49 NVNT n(HT20) 2412 Ant1 94.58 0.24 0.52 NVNT n(HT20) 2437 Ant1 94.58 0.24 0.52 NVNT n(HT20) 2462 Ant1 95.05 0.22 0.52 NVNT n(HT40) 2422 Ant1 86.24 0.64 1.06 NVNT n(HT40) 2437 Ant1 84.82 0.72 1.05 NVNT n(HT40) 2452 Ant1 95 0.22 1.05 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 3 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Test Graphs Duty Cycle NVNT b 2412MHz Ant1 Duty Cycle NVNT b 2437MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 4 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Duty Cycle NVNT b 2462MHz Ant1 Duty Cycle NVNT g 2412MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 5 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Duty Cycle NVNT g 2437MHz Ant1 Duty Cycle NVNT g 2462MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 6 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Duty Cycle NVNT n(HT20) 2412MHz Ant1 Duty Cycle NVNT n(HT20) 2437MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 7 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Duty Cycle NVNT n(HT20) 2462MHz Ant1 Duty Cycle NVNT n(HT40) 2422MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 8 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Duty Cycle NVNT n(HT40) 2437MHz Ant1 Duty Cycle NVNT n(HT40) 2452MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 9 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Maximum Conducted Output Power Condition Mode Frequency (MHz) Antenna Conducted Power (dBm) Duty Factor (dB) Total Power (dBm) Limit (dBm) Verdict NVNT b 2412 Ant1 18.312 0.06 18.372 30 Pass NVNT b 2437 Ant1 18.475 0.04 18.515 30 Pass NVNT b 2462 Ant1 18.494 0.01 18.504 30 Pass NVNT g 2412 Ant1 14.893 0.24 15.133 30 Pass NVNT g 2437 Ant1 15.2 0.27 15.47 30 Pass NVNT g 2462 Ant1 15.18 0.21 15.39 30 Pass NVNT n(HT20) 2412 Ant1 14.573 0.24 14.813 30 Pass NVNT n(HT20) 2437 Ant1 14.504 0.24 14.744 30 Pass NVNT n(HT20) 2462 Ant1 14.409 0.22 14.629 30 Pass NVNT n(HT40) 2422 Ant1 12.089 0.64 12.729 30 Pass NVNT n(HT40) 2437 Ant1 12.903 0.72 13.623 30 Pass NVNT n(HT40) 2452 Ant1 11.609 0.22 11.829 30 Pass Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 10 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 -6dB Bandwidth Condition Mode Frequency (MHz) Antenna -6 dB Bandwidth (MHz) Limit -6 dB Bandwidth (MHz) Verdict NVNT b 2412 Ant1 8.5 0.5 Pass NVNT b 2437 Ant1 8.56 0.5 Pass NVNT b 2462 Ant1 9.51 0.5 Pass NVNT g 2412 Ant1 16.35 0.5 Pass NVNT g 2437 Ant1 16.34 0.5 Pass NVNT g 2462 Ant1 16.35 0.5 Pass NVNT n(HT20) 2412 Ant1 17.56 0.5 Pass NVNT n(HT20) 2437 Ant1 17.5 0.5 Pass NVNT n(HT20) 2462 Ant1 17.3 0.5 Pass NVNT n(HT40) 2422 Ant1 35.91 0.5 Pass NVNT n(HT40) 2437 Ant1 35.66 0.5 Pass NVNT n(HT40) 2452 Ant1 35.47 0.5 Pass Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 11 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 Test Graphs -6dB Bandwidth NVNT b 2412MHz Ant1 -6dB Bandwidth NVNT b 2437MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 12 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 -6dB Bandwidth NVNT b 2462MHz Ant1 -6dB Bandwidth NVNT g 2412MHz Ant1 Shenzhen Toby Technology Co., Ltd. Http://www.tobylab.cn Add:1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. Report No.: TBR-C-202312-0138-9 Page: 13 of 62 FCC ID: Z63-E97 TB-RF-074-1.0 -6dB Bandwidth NVNT g 2437MHz An…
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Shenzhen Toby Technology Co., Ltd. Report No.: TBR-C-202312-0138-9 Page: 1 of 44 TB-RF-074-1.0 1/F.,Building 6, Rundongsheng Industrial Zone, Longzhu, Xixiang, Bao'an District, Shenzhen, Guangdong, China Tel: +86 75526509301 Fax: +86 75526509195 Radio Test Report FCC ID: Z63-E97 Report No. : TBR-C-202312-0138-9 Applicant : SHENZHEN AONI ELECTRONIC CO., LTD. Equipment Under Test (EUT) EUT Name : Smart Floodlight Camera Model No. : E97P Series Model No. : MI-CW073-199W EFXY(X:0~9,A~Z;Y:0~9,A~Z) Brand Name : Merkury Sample ID : HC-C-202312-0138-01-01-1# & HC-C-202312-0138-01-01-2# Receipt Date : 2023-12-15 Test Date : 2023-12-15 to 2023-12-28 Issue Date : 2023-12-29 Standards : FCC Part 15 Subpart C 15.247 Test Method : ANSI C63.10: 2013 KDB 558074 D01 15.247 Meas Guidance v05r02 Conclusions : PASS In the configuration tested, the EUT complied with the standards specified above. Witness Engineer : Seven Wu Engineer Supervisor : Ivan Su Engineer Manager : Ray Lai 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. The manufacturer should ensure that all products in series production are in conformity with the product sample detailed in the report. Report No.: TBR-C-202312-0138-9 Page: 2 of 44 TB-RF-074-1.0 Contents CONTENTS ............................................................................................................................................. 2 1. GENERAL INFORMATION ABOUT EUT ............................................................................. 5 1.1 Client Information ................................................................................................................. 5 1.2 General Description of EUT (Equipment Under Test) ................................................... 5 1.3 Block Diagram Showing the Configuration of System Tested ...................................... 6 1.4 Description of Support Units .............................................................................................. 7 1.5 Description of Test Mode .................................................................................................... 7 1.6 Description of Test Software Setting ................................................................................ 9 1.7 Measurement Uncertainty .................................................................................................. 9 1.8 Test Facility ......................................................................................................................... 10 2. TEST SUMMARY ..................................................................................................................... 11 3. TEST SOFTWARE ................................................................................................................... 11 4. TEST EQUIPMENT .................................................................................................................. 12 5. CONDUCTED EMISSION TEST ........................................................................................... 14 5.1 Test Standard and Limit .................................................................................................... 14 5.2 Test Setup ........................................................................................................................... 14 5.3 Test Procedure ................................................................................................................... 14 5.4 Deviation From Test Standard ......................................................................................... 15 5.5 EUT Operating Mode ........................................................................................................ 15 5.6 Test Data ............................................................................................................................. 15 6. RADIATED AND CONDUCTED UNWANTED EMISSIONS ............................................ 16 6.1 Test Standard and Limit .................................................................................................... 16 6.2 Test Setup ........................................................................................................................... 18 6.3 Test Procedure ................................................................................................................... 19 6.4 Deviation From Test Standard ......................................................................................... 20 6.5 EUT Operating Mode ........................................................................................................ 20 6.6 Test Data ............................................................................................................................. 20 7. RESTRICTED BANDS REQUIREMENT ............................................................................. 21 7.1 Test Standard and Limit .................................................................................................... 21 7.2 Test Setup ........................................................................................................................... 21 7.3 Test Procedure ................................................................................................................... 22 7.4 Deviation From Test Standard ......................................................................................... 23 Report No.: TBR-C-202312-0138-9 Page: 3 of 44 TB-RF-074-1.0 7.5 EUT Operating Mode ........................................................................................................ 23 7.6 Test Data ............................................................................................................................. 23 8. BANDWIDTH TEST ................................................................................................................. 24 8.1 Test Sta…
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FCC ID: Z63-E97 TB-RF-074-1.0 Appendix V EUT Test Photographs Photo of Setup for Radiated Emission (Below 1 GHz) Photo of Setup for Radiated Emission (Above 1 GHz) FCC ID: Z63-E97 TB-RF-074-1.0 Photo of Setup for Conducted Emission -----END OF THE REPORT-----
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 71.00 mW |

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