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  3. 2AYYS-CM001

2AYYS-CM001onn. 2MP Indoor Smart Camera

Luxshare Precision Industry Co., Ltd.
onn. 2MP Indoor Smart Camera - FCC ID 2AYYS-CM001 - Luxshare Precision Industry Co., Ltd.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Apr 30, 2021
Application Purpose
Original Equipment
Date of Application
Apr 28, 2021
Equipment Note
onn. 2MP Indoor Smart Camera
Frequency Range
2412.00000000 - 2462.00000000
Company
Luxshare Precision Industry Co., Ltd.
Country
China

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Top Bottom onn. 2MP INDOOR SMART CAMERA QUICK GUIDE 狣 What'sinthebox Check to make sure you have everything below. Consult the checklist below for all components. 狤 Description Power DC5V ± 10%. Status lightSolid red light on: the camera is turning on or malfunctional. Blinking red light: awaiting WiFi connection (faster blinking). Solid blue light on: the camera runs correctly. Blinking blue light: currently connecting. Microphone Capture sound for your video (built in Microphone). SD card slot SD Card storage support up to 128G (SD card sold separately). Press and hold on reset bottom for 5 seconds to reset the. camera (if you have modified settings, it will return to factory defaults). Reset 狥 /TYZGRRGZOUT Installation 1. Stick the adhesive tape in the middle of camera bottom. 2. Place the camera on the clean and flat surface. 狦 )UTTKIZOUT Connection01 Download SmartLife or Tuya Smart is available for both iOS and Android OS. Search the name 'SmartLife', 'Tuya Smart' in App Store or Google Play, or scan the QR- Code to download the App. Set up router The router supports the 2.4GHz WiFi (doesn't support the 5GHz). Please set up your router to the channel to 2.4GHz and this device doesn’t support 5GHz, after finish set up, please record the SSID and password details of your WiFi. 狧 )UTTKIZOUT Connection02 Registration process Step 1. Open the Smart Life App, click "Sign Up", read the "User Agreement Privacy Policy" and click "Agree" . Step 2. Enter a valid Mobile number or Email addressand click "Get Verification Code". Input the verification code to log in. 狨 78 )UJK )UTLOM[XGZOUT Connection03 Open the Smart Life App, click "My" >> "Home Management" >> "Create a home", and you can customize the home name and related settings . Click "Add Device" or "+", and then select "Security & Sensor" >> "Smart Camera" to add camera. Power on and reset camera until the status indicator is flashing quickly or a prompt tone is heard, and then click "Next". Then input your WiFi's passwords and click "Next". Click " to change network. In this interface, you should scan the QR code in your phone with the camera,when the camera comes out "dong dong dong". And you can complete the configuration about 30s. When connecting, you should make sure your router,mobile,and camera are as close as possible.When camera added successffully,click" " you could also DIY the camera's name. Note: 1)Camera only supports 2.4GHz WiFi network. 2)Please do not use more than 24 digits for SSID and passwords. 狣 狤 狥 狧 狦 狩 9KZZOTMY Settings & Functions & FCC Warning Settings In "Smart Camera" interface,click " ",you can set the camera common functions. Functions Video flip Flip your video stream vertically anytime for maximum flexibility. Motion detection Motion sensors will notify you when movement is detected. Record Up to 128G high-capacity SD card storage. Day & Night Powerful night vision, so you never get blind spot. 狪 ,'7 FAQ Q: The device cannot work properly? A: Check the internet network connection, you can place the camera close to the router for better reception. if still no connection, we recommended to reset the device and search and add the camera device again. Q: Why is it still in the list of devices after resetting? A: In order to remove the device, please delete the device from the App. Reset device only resets the network configuration. Q: How to switch the camera network to another router? A: First, remove and reset the device on the App and then reconfigure the device again by the App. Q: Why SD card can’t be found? A: It is recommended to plug in SD card when power is off. Make sure plug-in position is correct and the format is FAT32. When the Internet connection is not stable, the SD card function will be lost. Q: Why I can’t get the notifications with my cell phone App? A: Please confirm that the App has been running on the phone, and the relevant reminder function has been opened; Message notification and authority confirmation in the mobile phone system has been opened. 狫 ,[TIZOUTY Need help? We're here for you every day from 7 a.m. - 9 p.m. CST. Give us a call at 1-888-516-2630". We'd love to hear from you. Scan with your Walmart app and let us know what you think. TM Smart Camera Quick Guide_V�.�-��.��*��.��mm Smart camera Power adapter USB cable Adhesive tape Quick Guide ipad IOS Android Please keep network available 2.4GHz 5GHz Support This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Radiation Exposure Statement This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance 20cm between the radiator and your body. FCC Warning This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: ·Reorient or relocate the receiving antenna. ·Increase the separation between the equipment and receiver. ·Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. ·Consult the dealer or an experienced radio/TV technician for hel…

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External Photos

2AYYS-CM001

Internal Photos

2AYYS-CM001 The antenna

RF Exposure Info

©Copyright. All rights reserved by CTTL. No. I21Z60329-SEM01 for Luxshare Precision Industry Co.,Ltd onn. 2MP Indoor Smart Camera Model Name: 100022770 Hardware Version: PCB-MINI16S-A2MB_F37 REV1_0 Software Version: ppstrong-a3-tuya2_std-4.0 FCC ID: 2AYYS-CM001 Issued Date: 2021-4-25 Note: The test results in this test report relate only to the devices specified in this report. This report shall not be reproduced except in full without the written approval of CTTL. Test Laboratory: CTTL, Telecommunication Technology Labs, Academy of Telecommunication Research, MIIT No. 51 Shouxiang Science Building, Xueyuan Road, Haidian District, Beijing, P. R. China100191 Tel:+86(0)10-62304633-2512,Fax:+86(0)10-62304633-2504 Email: [email protected], website: www.caict.ac.cn No.I21Z60329-SEM01 ©Copyright. All rights reserved by CTTL. REPORT HISTORY Report Number Revision Issue Date Description I21Z60329-SEM01 Rev.0 2021-4-21 Initial creation of test report I21Z60329-SEM01 Rev.1 2021-4-25 Update the antenna gain and maximum power in section7.1/7.2/7.3 No.I21Z60329-SEM01 ©Copyright. All rights reserved by CTTL. CONTENTS 1. TEST LABORATORY ............................................................................................................... 4 1.1. TESTING LOCATION ........................................................................................................... 4 1.2. TESTING ENVIRONMENT ................................................................................................... 4 1.3. PROJECT DATA ................................................................................................................... 4 1.4. SIGNATURE .......................................................................................................................... 4 2. CLIENT INFORMATION ........................................................................................................... 5 2.1. APPLICANT INFORMATION ................................................................................................ 5 2.2. MANUFACTURER INFORMATION ...................................................................................... 5 3. EQUIPMENT UNDER TEST (EUT) AND ANCILLARY EQUIPMENT (AE) ............................ 6 3.1. ABOUT EUT .......................................................................................................................... 6 3.2. INTERNAL IDENTIFICATION OF EUT ................................................................................ 6 3.3. INTERNAL IDENTIFICATION OF AE ................................................................................... 6 4. REFERENCE DOCUMENTS .................................................................................................... 7 4.1. REFERENCE DOCUMENTS FOR TESTING....................................................................... 7 5. RF EXPOSURE LIMIT .............................................................................................................. 7 6. CLASSIFICATION .................................................................................................................... 8 7. TEST RESULTS ........................................................................................................................ 8 7.1. THE MAXIMUM ANTENNA GAIN ........................................................................................ 8 7.2. THE MAXIMUM RATED POWER LIMITS ............................................................................ 8 7.3. OUTPUT POWER INTO ANTENNA & RF EXPOSURE VALUE AT DISTANCE 20CM ...... 8 No.I21Z60329-SEM01 ©Copyright. All rights reserved by CTTL. 1. Test Laboratory 1.1. Testing Location Company Name: CTTL(Shouxiang) Address: No. 51 Shouxiang Science Building, Xueyuan Road, Haidian District, Beijing, P. R. China100191 Postal Code: 100191 Telephone: 00861062304633 Fax: 00861062304793 1.2. Testing Environment Normal Temperature: 15-35°C Relative Humidity: 20-75% 1.3. Project data Project Leader: Lin Hao Testing Start Date: 2021-4-20 Testing End Date: 2021-4-20 1.4. Signature Lin Hao (Prepared this test report) Qi Dianyuan (Reviewed this test report) Lu Bingsong Deputy Director of the laboratory (Approved this test report) No.I21Z60329-SEM01 ©Copyright. All rights reserved by CTTL. 2. Client Information 2.1. Applicant Information Company Name: Luxshare Precision Industry Co.,Ltd Address /Post: Floor 2,Block A,Sanyo New Industrial Area,West Haoyi Community,Shajing Subdistrict Office Contact: Bin Lin Email: Bin [email protected] Telephone: 15197269372 Fax: \ 2.2. Manufacturer Information Company Name: LUXSHARE -ICT(NGHE AN) Address /Post: No. 18, Street 03, VSIP Nghe An Industrial Park, Hung Tay Commune, Hung Nguyen District, Nghe An Province Contact: Nan Zhang Email: Nan [email protected] Telephone: +86 13237197110 Fax: \ No.I21Z60329-SEM01 ©Copyright. All rights reserved by CTTL. 3. Equipment Under Test (EUT) and Ancillary Equipment (AE) 3.1. About EUT Description onn. 2MP Indoor Smart Camera Model name 100022770 Operation mode Wi-Fi 2.4G 3.2. Internal Identification of EUT EUT ID* IMEI HW Version SW Version EUT1 / / / *EUT ID: is used to identify the test sample in the lab internally. 3.3. Internal Identification of AE AE ID* Description SN AE1 / / *AE ID: is used to identify the test sample in the lab internally. No.I21Z60329-SEM01 ©Copyright. All rights reserved by CTTL. 4. Reference Documents 4.1. Reference Documents for testing The following documents listed in this section are referred for testing. ANSI C95.1–1999: IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz. 447498 D01 General RF Exposure Guidance v06: Mobile and Portable Devices RF Exposure Procedures and Equipment Authorization Policies Canadian RSS-102: standard for uncontrolled environment requires the RF-exposure value in W/m2 unit, therefore the MPE limit value determined in mW/cm2 unit, shoul…

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Test Report

©Copyright. All rights reserved by CTTL. FCC PART 15C TEST REPORT No.I21Z60329-IOT01 for Luxshare Precision Industry Co.,Ltd onn. 2MP Indoor Smart Camera 100022770 With FCC ID: 2AYYS-CM001 Hardware Version: PCB-MINI16S-A2MB_F37 REV1_0 Software Version: ppstrong-a3-tuya2_std-4.0 Issued Date: 2021-04-25 Note: The test results in this test report relate only to the devices specified in this report. This report shall not be reproduced except in full without the written approval of CTTL. The report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the U.S.Government. Test Laboratory: CTTL-Telecommunication Technology Labs, CAICT No. 52, Huayuan North Road, Haidian District, Beijing, P. R. China 100191. Tel:+86(0)10-62304633-2512, Fax:+86(0)10-62304633-2504 Email: [email protected], website: www.caict.ac.cn No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 2 of 104 REPORT HISTORY Report Number Revision Description Issue Date I21Z60329-IOT01 Rev.0 1st edition 2021-04-20 I21Z60329-IOT01 Rev.1 Updata the note in A6.2. 2021-04-25 No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 3 of 104 CONTENTS 1. TEST LABORATORY ......................................................................................................................... 5 1.1. INTRODUCTION & ACCREDITATION ................................................................................................. 5 1.2. TESTING LOCATION ......................................................................................................................... 5 1.3. TESTING ENVIRONMENT .................................................................................................................. 5 1.4. PROJECT DATE ................................................................................................................................. 5 1.5. SIGNATURE ...................................................................................................................................... 5 2. CLIENT INFORMATION ................................................................................................................... 6 2.1. APPLICANT INFORMATION ............................................................................................................... 6 2.2. MANUFACTURER INFORMATION ...................................................................................................... 6 3. EQUIPMENT UNDER TEST (EUT) AND ANCILLARY EQUIPMENT (AE) ............................. 7 3.1. ABOUT EUT .................................................................................................................................... 7 3.2. INTERNAL IDENTIFICATION OF EUT ................................................................................................ 7 3.3. INTERNAL IDENTIFICATION OF AE ................................................................................................... 7 3.4. GENERAL DESCRIPTION ................................................................................................................... 8 3.5. INTERPRETATION OF THE TEST ENVIRONMENT ................................................................................ 8 4. REFERENCE DOCUMENTS ............................................................................................................. 8 4.1. DOCUMENTS SUPPLIED BY APPLICANT ............................................................................................ 8 4.2. REFERENCE DOCUMENTS FOR TESTING ........................................................................................... 8 5. TEST RESULTS ................................................................................................................................... 9 5.1. SUMMARY OF TEST RESULTS ........................................................................................................... 9 5.2. STATEMENTS .................................................................................................................................... 9 5.3. TEST CONDITIONS ........................................................................................................................... 9 6. TEST FACILITIES UTILIZED ........................................................................................................ 10 7. MEASUREMENT UNCERTAINTY ................................................................................................. 11 7.1. MAXIMUM OUTPUT POWER ............................................................................................................11 7.2. PEAK POWER SPECTRAL DENSITY ..................................................................................................11 7.3. DTS 6-DB SIGNAL BANDWIDTH .....................................................................................................11 7.4. BAND EDGES COMPLIANCE ............................................................................................................11 7.5. TRANSMITTER SPURIOUS EMISSION ...............................................................................................11 7.6. AC POWER-LINE CONDUCTED EMISSION .......................................................................................11 ANNEX A: EUT PARAMETERS............................................................................................................... 11 ANNEX B: DETAILED TEST RESULTS ................................................................................................ 12 B.1. MEASUREMENT METHOD ............................................................................................................ 12 B.2. MAXIMUM OUTPUT POWER ........................................................................................................ 13 No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 4 of 104 B.2.1. PEAK OUTPUT POWER-CONDUCTED ..................…

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Test Report

No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 36 of 104 802.11n-HT20 mode MODE Channel Frequency Range Test Results Conclusion 802.11n (HT20) 1 2.412 GHz Fig.B.6.1.49 P 30 MHz ~ 1 GHz Fig.B.6.1.50 P 1 GHz ~ 2.5 GHz Fig.B.6.1.51 P 2.5 GHz ~ 7.5 GHz Fig.B.6.1.52 P 7.5 GHz ~ 10 GHz Fig.B.6.1.53 P 10 GHz ~ 15 GHz Fig.B.6.1.54 P 15 GHz ~ 20 GHz Fig.B.6.1.55 P 20 GHz ~ 26 GHz Fig.B.6.1.56 P 6 2.437 GHz Fig.B.6.1.57 P 30 MHz ~ 1 GHz Fig.B.6.1.58 P 1 GHz ~ 2.5 GHz Fig.B.6.1.59 P 2.5 GHz ~ 7.5 GHz Fig.B.6.1.60 P 7.5 GHz ~ 10 GHz Fig.B.6.1.61 P 10 GHz ~ 15 GHz Fig.B.6.1.62 P 15 GHz ~ 20 GHz Fig.B.6.1.63 P 20 GHz ~ 26 GHz Fig.B.6.1.64 P 11 2.462 GHz Fig.B.6.1.65 P 30 MHz ~ 1 GHz Fig.B.6.1.66 P 1 GHz ~ 2.5 GHz Fig.B.6.1.67 P 2.5 GHz ~ 7.5 GHz Fig.B.6.1.68 P 7.5 GHz ~ 10 GHz Fig.B.6.1.69 P 10 GHz ~ 15 GHz Fig.B.6.1.70 P 15 GHz ~ 20 GHz Fig.B.6.1.71 P 20 GHz ~ 26 GHz Fig.B.6.1.72 P No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 37 of 104 802.11n-HT40 mode MODE Channel Frequency Range Test Results Conclusion 802.11n (HT40) 3 2.422 GHz Fig.B.6.1.73 P 30 MHz ~ 1 GHz Fig.B.6.1.74 P 1 GHz ~ 2.5 GHz Fig.B.6.1.75 P 2.5 GHz ~ 7.5 GHz Fig.B.6.1.76 P 7.5 GHz ~ 10 GHz Fig.B.6.1.77 P 10 GHz ~ 15 GHz Fig.B.6.1.78 P 15 GHz ~ 20 GHz Fig.B.6.1.79 P 20 GHz ~ 26 GHz Fig.B.6.1.80 P 6 2.437 GHz Fig.B.6.1.81 P 30 MHz ~ 1 GHz Fig.B.6.1.82 P 1 GHz ~ 2.5 GHz Fig.B.6.1.83 P 2.5 GHz ~ 7.5 GHz Fig.B.6.1.84 P 7.5 GHz ~ 10 GHz Fig.B.6.1.85 P 10 GHz ~ 15 GHz Fig.B.6.1.86 P 15 GHz ~ 20 GHz Fig.B.6.1.87 P 20 GHz ~ 26 GHz Fig.B.6.1.88 P 9 2.452 GHz Fig.B.6.1.89 P 30 MHz ~ 1 GHz Fig.B.6.1.90 P 1 GHz ~ 2.5 GHz Fig.B.6.1.91 P 2.5 GHz ~ 7.5 GHz Fig.B.6.1.92 P 7.5 GHz ~ 10 GHz Fig.B.6.1.93 P 10 GHz ~ 15 GHz Fig.B.6.1.94 P 15 GHz ~ 20 GHz Fig.B.6.1.95 P 20 GHz ~ 26 GHz Fig.B.6.1.96 P Conclusion: Pass Test graphs as below: No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 38 of 104 Fig.B.6.1.1 Transmitter Spurious Emission - Conducted (802.11b, Ch1, Center Frequency) Fig.B.6.1.2 Transmitter Spurious Emission - Conducted (802.11b, Ch1, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 39 of 104 Fig.B.6.1.3 Transmitter Spurious Emission - Conducted (802.11b, Ch1, 1 GHz-2.5 GHz) Fig.B.6.1.4 Transmitter Spurious Emission - Conducted (802.11b, Ch1, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 40 of 104 Fig.B.6.1.5 Transmitter Spurious Emission - Conducted (802.11b, Ch1, 7.5 GHz-10 GHz) Fig.B.6.1.6 Transmitter Spurious Emission - Conducted (802.11b, Ch1, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 41 of 104 Fig.B.6.1.7 Transmitter Spurious Emission - Conducted (802.11b, Ch1, 15 GHz-20 GHz) Fig.B.6.1.8 Transmitter Spurious Emission - Conducted (802.11b, Ch1, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 42 of 104 Fig.B.6.1.9 Transmitter Spurious Emission - Conducted (802.11b, Ch6, Center Frequency) Fig.B.6.1.10 Transmitter Spurious Emission - Conducted (802.11b, Ch6, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 43 of 104 Fig.B.6.1.11 Transmitter Spurious Emission - Conducted (802.11b, Ch6, 1 GHz-2.5 GHz) Fig.B.6.1.12 Transmitter Spurious Emission - Conducted (802.11b, Ch6, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 44 of 104 Fig.B.6.1.13 Transmitter Spurious Emission - Conducted (802.11b, Ch6, 7.5 GHz-10 GHz) Fig.B.6.1.14 Transmitter Spurious Emission - Conducted (802.11b, Ch6, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 45 of 104 Fig.B.6.1.15 Transmitter Spurious Emission - Conducted (802.11b, Ch6, 15 GHz-20 GHz) Fig.B.6.1.16 Transmitter Spurious Emission - Conducted (802.11b, Ch6, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 46 of 104 Fig.B.6.1.17 Transmitter Spurious Emission - Conducted (802.11b, Ch11, Center Frequency) Fig.B.6.1.18 Transmitter Spurious Emission - Conducted (802.11b, Ch11, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 47 of 104 Fig.B.6.1.19 Transmitter Spurious Emission - Conducted (802.11b, Ch11, 1 GHz-2.5 GHz) Fig.B.6.1.20 Transmitter Spurious Emission - Conducted (802.11b, Ch11, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 48 of 104 Fig.B.6.1.21 Transmitter Spurious Emission - Conducted (802.11b, Ch11, 7.5 GHz-10 GHz) Fig.B.6.1.22 Transmitter Spurious Emission - Conducted (802.11b, Ch11, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 49 of 104 Fig.B.6.1.23 Transmitter Spurious Emission - Conducted (802.11b, Ch11, 15 GHz-20 GHz) Fig.B.6.1.24 Transmitter Spurious Emission - Conducted (802.11b, Ch11, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 50 of 104 Fig.B.6.1.25 Transmitter Spurious Emission - Conducted (802.11g, Ch1, Center Frequency) Fig.B.6.1.26 Transmitter Spurious Emission - Conducted (802.11g, Ch1, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 51 of 104 Fig.B.6.1.27 Transmitter Spurious Emission - Conducted (802.11g, Ch1, 1 GHz-2.5 GHz) Fig.B.6.1.28 Transmitter Spurious Emission - Conducted (802.11g, Ch1, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 52 of 104 Fig.B.6.1.29 Transmitter Spurious Emission - Conducted (802.11g, Ch1, 7.5 GHz-10 GHz) Fig.B.6.1.30 Transmitter Spurious Emission - Conducted (802.11g, Ch1, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 53 of 104 Fig.B.6.1.31 Transmitter Spurious Emission - Conducted (802.11g, Ch1, 15 GHz-20 GHz) Fig.B.6.1.32 Transmitter Spurious Emission - Conducted (802.11g, Ch1, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 54 of 104 Fig.B.6.1.33 Transmitter Spurious Emission - Conducted (802.11g, Ch6, Center Frequency) Fig.B.6.1.34 Transmitter Spurious Emission - Conducted (802.…

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Test Report

No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 67 of 104 Fig.B.6.1.59 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 1 GHz-2.5 GHz) Fig.B.6.1.60 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 68 of 104 Fig.B.6.1.61 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 7.5 GHz-10 GHz) Fig.B.6.1.62 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 69 of 104 Fig.B.6.1.63 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 15 GHz-20 GHz) Fig.B.6.1.64 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 70 of 104 Fig.B.6.1.65 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, Center Frequency) Fig.B.6.1.66 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 71 of 104 Fig.B.6.1.67 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 1 GHz-2.5 GHz) Fig.B.6.1.68 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 72 of 104 Fig.B.6.1.69 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 7.5 GHz-10 GHz) Fig.B.6.1.70 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 73 of 104 Fig.B.6.1.71 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 15 GHz-20 GHz) Fig.B.6.1.72 Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 74 of 104 Fig.B.6.1.73 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, Center Frequency) Fig.B.6.1.74 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 75 of 104 Fig.B.6.1.75 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, 1 GHz-2.5 GHz) Fig.B.6.1.76 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 76 of 104 Fig.B.6.1.77 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, 7.5 GHz-10 GHz) Fig.B.6.1.78 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 77 of 104 Fig.B.6.1.79 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, 15 GHz-20 GHz) Fig.B.6.1.80 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch3, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 78 of 104 Fig.B.6.1.81 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, Center Frequency) Fig.B.6.1.82 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 79 of 104 Fig.B.6.1.83 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, 1 GHz-2.5 GHz) Fig.B.6.1.84 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 80 of 104 Fig.B.6.1.85 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, 7.5 GHz-10 GHz) Fig.B.6.1.86 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 81 of 104 Fig.B.6.1.87 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, 15 GHz-20 GHz) Fig.B.6.1.88 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch6, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 82 of 104 Fig.B.6.1.89 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, Center Frequency) Fig.B.6.1.90 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, 30 MHz-1 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 83 of 104 Fig.B.6.1.91 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, 1 GHz-2.5 GHz) Fig.B.6.1.92 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, 2.5 GHz-7.5 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 84 of 104 Fig.B.6.1.93 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, 7.5 GHz-10 GHz) Fig.B.6.1.94 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, 10 GHz-15 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 85 of 104 Fig.B.6.1.95 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, 15 GHz-20 GHz) Fig.B.6.1.96 Transmitter Spurious Emission - Conducted (802.11n-HT40, Ch9, 20 GHz-26 GHz) No.I21Z60329-IOT01 ©Copyright. All rights reserved by CTTL. Page 86 of 104 B.6.2 Transmitter Spurious Emission - Radiated Measurement Limit: Standard Limit FCC 47 CFR Part 15.247, 15.205, 15.209 20dB below peak output power In addition, radiated emissions which fall in the restricted bands, as defined in § 15.205(a), must also comply with the radiated emission limits specified in § 15.209(a) (see § 15.205(c)). The measurement is made according to ANSI C63.10. Limit in restricted band: Frequency of emission (MHz) Field strength(uV/m) Field strength(dBuV/m) 30-88 100 40 88-216 150 43.5 216-960 200 46 Above 960 500 54 Frequency (MHz) Field strength(μV/m) Measurement distance (m) 0.009 - 0.490 2400/F(kHz) 300 0.490 - 1.705 24000/F(kHz) 30 1.705 – 30.0 30 30 Test Condition The EUT was placed on a non-conductive table. The measurement antenna was placed at a distance of 3 meters from the EUT. During the tests, the antenna height and the EUT azimuth were varied in order to identify the maximum level of emissions from the EUT. This maximization process was repeated with the EUT pos…

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Contact Information

Applicant

Bin Lin(Product Design Engineer)
[email protected]+86 15197269372Fax: +86 15197269372

Technical Contact

CTTL, Telecommunication Technology Labs, CAICTXue Zhen
[email protected]86-10-62304633

No. 52, Huayuan Bei Road, Haidian District, · China

Test Firm

Telecommunication Technology Labs, CAICTYaqin Shen
[email protected]8610-62304633Fax: 8610-62300586

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz258.20 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. RF exposure compliance is addressed for 1.1310 and 2.1091 MPE limits - this filing complies with KDB 447498 and is approved for mobile/fixed operation. Installers and end-users must be provided with transmitter installation and operation conditions for satisfying RF exposure compliance. The antenna(s) used for this transmitter must not transmit simultaneously with any other antenna or transmitter, except in accordance with FCC multi- transmitter product procedures. Grantee must provide installation and operating instructions for complying with FCC multi-transmitter product procedures and RF exposure compliance. This device has both 20 MHz and 40 MHz bandwidth modes.

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