
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
石头科技产品包装图纸 北京石头世纪科技股份有限公司 图纸 提供 单位 材 质 工 艺 要 求 历 史 版 本 备 注 项目名称Tanos_S 说明书(FCC) 4.03.0264 V1.0 2020.09.17 许戈 料号 版本号 设计时间 设计师 设计师 比例1:1单位mm 材质:105g 哑粉,骑钉 成品尺寸:182*130mm 页数:44P 参考色:PANTONE Cool Gray 11 C PANTONE 185 C 尺寸偏差:±0.5mm 印刷偏位:±1mm 182mm 130mm 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: 版本号: 修改点: 修改人: Roborock S7 Robot Vacuum Cleaner User Manual Read this user manual carefully before using this product and store it properly for future reference. Roborock S7 Robot Vacuum Cleaner User Manual Read this user manual carefully before using this product and store it properly for future reference. 5 IMPORTANT SAFETY INSTRUCTIONS WARNING Safety Information When using an electrical appliance, basic precautions should always be followed, including the following: READ ALL IN- STRUCTIONS BEFORE USING (THIS APPLIANCE), Failure to follow the warnings and instructions may result in electric shock, fire and/or serious injury. To reduce the risk of fire, electric shock, or injury: • Do not use outdoors or on wet surfaces. • Do not allow to be used as a toy. Close attention is necessary when used by or near children, pets or plants. • Please clean up pet waste manually before automatic cleaning. • Use only as described in this manual. Use only manufacturer’s recommended attachments. • Do not use with damaged cord or plug. If appliance is not working as it should, has been dropped, damaged, left out- doors, or dropped into water, return it to a service center. • Do not pull or carry by cord, use cord as a handle, close a door on cord, or pull cord around sharp edges or corners. • Do not run appliance over cord. Keep cord away from heated surfaces. • Do not unplug by pulling on cord. To unplug, grasp the plug, not the cord. • Do not handle charger, including charger plug, and charger terminals with wet hands. • Do not put any object into openings. Do not use with any opening blocked; keep free of dust, lint, hair, and anything that may reduce air flow. • Keep hair, loose clothing, fingers, and all parts of body away from openings and moving parts. • Do not use to pick up flammable or combustible liquids, such as gasoline, or use in areas where they may be present. • Do not pick up anything that is burning or smoking, such as cigarettes, matches, or hot ashes. • Do not use without dust bag. • Prevent unintentional starting. Ensure the switch is in the off-position before connecting to battery pack, picking up or car- rying the appliance. Carrying the appliance with your finger on the switch or energizing appliance that have the switch on invites accidents. 6 Safety Information • For use only with roborock CDZ11RR or CDZ12RR charger. Recharge only with the charger specified by the manufacturer. A charger that is suitable for one type of battery pack may create a risk of fire when used with another battery pack. • Use appliances only with specifically designated battery packs. Use of any other battery packs may create a risk of injury and fire. • Turn off the appliance before making any adjustments, changing accessories, or storing appliance. Such preventive safety measures reduce the risk of starting the appliance accidentally. • When battery pack is not in use, keep it away from other metal objects, like paper clips, coins, keys, nails, screws or other small metal objects, that can make a connection from one terminal to another. Shorting the battery terminals together may cause burns or a fire. • Under abusive conditions, liquid may be ejected from the battery; avoid contact. If contact accidentally occurs, flush with water. If liquid contacts eyes, additionally seek medical help. Liquid ejected from the battery may cause irritation or burns. • Do not use a battery pack or appliance that is damaged or modified. Damaged or modified batteries may exhibit unpre- dictable behavior resulting in fire, explosion or risk of injury. • Do not expose a battery pack or appliance to fire or excessive temperature. Exposure to fire or temperature above 130°C may cause explosion. • Follow all charging instructions and do not charge the battery pack or appliance outside of the temperature range spec- ified in the instructions. Charging improperly or at temperatures outside of the specified range may damage the battery and increase the risk of fire. • Have servicing performed by a qualified repair person using only identical replacement parts.This will ensure that the safe- ty of the product is maintained. • Do not modify or attempt to repair the appliance or the battery pack except as indicated in the instructions for use and care. Place the cords from other appliances out of the area to be cleaned. • Do not operate the vacuum in a room where an infant or child is sleeping. • Do not operate the vacuum in an area where there are lit candles or fragile objects on the floor to be cleaned. • Do not operate the vacuum in a room that has lit candles on furniture that the vacuum may accidentally hit or bump into. • Do not allow children to sit on the vacuum. • Do not use the vacuum cleaner on a wet surface. 7 Safety Information • Risk Of Injury. Brush May Start Unexpectedly.Disconnect the main Brush Before Cleaning or Servicing. • Do not use the product when the temperature is higher than 40°C or lower than 4°C, or there is any liquid or sticky sub- stance on the floor. SAVE THESE INSTRUCTIONS IMPORTANTES MESURES DE S CURIT Household use only. L’utilisation d’un appareil électrique demande certaines précautions: LIRE TOUTES LES INSTRUCTIONS AVANT DE FAIRE FONCTIONNER (CETAPPAREIL), Le non-respect des mises en garde et des instructions peut causer des chocs électriques, des incendies et/ou des blessures graves. AVERTISSEMENT • Pour réduire les risques d’incendie, de choc électrique ou de blessure: • Ne pas exposer à la pluie, Ranger à l’intérieur. • Ne pas permettre aux enfants de jouer avec l’appareil. Une attention particulière est néce…
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Beijing Roborock Technology Co., Ltd. Date: 12.12.2020 To: Federal Communications Commission, Authorization & Evaluation Division, 7435 Oakland Mills Road, Columbia, MD 21046 To Whom It May Concern: I appoint Mr. Tony Chen of TÜV Rheinland Shanghai Co., Ltd, to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in the FCC or Industry Canada’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for Certification, as specified by TUV Rheinland Group, still resides with Beijing Roborock Technology Co., Ltd. For TCB applications, We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. Thank you for your attention to this matter. Yours Sincerely, Name :Qianqian Hu Title:Senior Engineer Company:Beijing Roborock Technology Co., Ltd.
Confidentiality Letter Date: 2020-03-20 Subject: Confidentiality Request for ID: 2AN2O-TSW02 Pursuant to FCC 47 CRF 0.457(d) and 0.459, the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term Permanent External Photos Short Term Permanent Internal Photos Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Part List/Tune-Up Procedure Short Term Permanent Schematics Short Term Permanent Test Setup Photos Short Term Permanent User’s Manual Beijing Roborock Technology Co., Ltd. has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Short-Term Confidentiality: The applicant requests the exhibits selected above as short term confidential be withheld from public view for a period of 60 days from the date of the Grant of Equipment Authorization and prior to marketing. This is to avoid premature release of sensitive information prior to marketing or release of the product to the public. Applicant is also aware that they are responsible to notify TUV Rheinland in the event information regarding the product or the product is made available to the public. TUV Rheinland will then release the documents listed above for public disclosure pursuant to FCC Public Notice DA 04- 1705. Sincerely, CertificationEngineer By: Qianqian Hu (Signature/Title) (Print name)
Report No.: 2009RSU063-U1-UE 1 of 15 EUT Photo (1) EUT Photo (2) EUT Photo Report No.: 2009RSU063-U1-UE (3) EUT Photo (4) EUT Photo Report No.: 2009RSU063-U1-UE (5) EUT Photo (6) EUT Photo Report No.: 2009RSU063-U1-UE (7) EUT Photo (8) EUT Photo Report No.: 2009RSU063-U1-UE (9) EUT Photo (10) EUT Photo Report No.: 2009RSU063-U1-UE (11) EUT Photo (12) EUT Photo Report No.: 2009RSU063-U1-UE (13) EUT Photo (14) EUT Photo
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MRT Technology (Suzhou) Co., Ltd Report No.:2009RSU063-U3 Phone: +86-512-66308358 Report Version: V01 Web: www.mrt-cert.com Issue Date: 12-17-2020 Page Number: 1 of 7 RF Exposure Evaluation Declaration FCC ID: 2AN2O-TSW02 IC: 23317-TSW02 APPLICANT: Beijing Roborock Technology Co., Ltd. Application Type: Certification Product: Robotic Vacuum Cleaner Model No.: roborock S7 FCC Rule Part(s): IC Rule Part(s): FCC Part 2.1091 RSS-102 Issue 5 Test Date: September 26 ~ November 16, 2020 Reviewed By: (Sherry Jiang) Approved By: (Robin Wu) The test results relate only to the samples tested. The test results shown in the test report are traceable to the national/international standards through the calibration of the equipment and evaluated measurement uncertainty herein. The test report shall not be reproduced except in full without the written approval of MRT Technology (Suzhou) Co., Ltd. Report No.: 2009RSU063-U3 Page Number: 2 of 7 Revision History Report No. Version Description Issue Date Note 2009RSU063-U3 Rev. 01 Initial Report 12-08-2020 Valid Report No.: 2009RSU063-U3 Page Number: 3 of 7 1. PRODUCT INFORMATION 1.1. Equipment Description Note:EUT can be shipped with two types of batteries of the same specification. We choose BRR-2P4S-5200S for testing. Product Name Robotic Vacuum Cleaner Model No. roborock S7 HVIN BL-M8189FS6 FVIN N/A Series number TSSB2S03400143 Wi-Fi Specification 802.11b/g/n Antenna Delivery 1*TX + 1*RX Accessories Rechargeable Li-ion Battery Model No.: BRR-2P4S-5200S; BRR-2P4S-5200D Capacitance: 5200mAh Rated Voltage: 14.4V, 74.88Wh Report No.: 2009RSU063-U3 Page Number: 4 of 7 2. RF Exposure Evaluation 2.1. Limits for FCC: According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in 1.1307(b) LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Average Time (Minutes) (A) Limits for Occupational/ Control Exposures 300-1500 -- -- f/300 6 1500-100,000 -- -- 5 6 (B) Limits for General Population/ Uncontrolled Exposures 300-1500 -- -- f/1500 6 1500-100,000 -- -- 1 30 f= Frequency in MHz Calculation Formula: Pd = (Pout*G)/(4*pi*r 2 ) Where Pd = power density in mW/cm 2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 r = distance between observation point and center of the radiator in cm Pd is the limit of MPE, 1mW/cm². If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. 2.2. Limits for IC: According to RSS-102: Exemption Limits for Routine Evaluation – RF exposure evaluation is required if the separation distance between the user and/or bystander and the device’s radiating element is greater than 20 cm, except when the device operates as follows: • below 20 MHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 1 W (adjusted for tune-up tolerance); • at or above 20 MHz and below 48 MHz and the source-based, time-averaged maximum e.i.r.p. of Report No.: 2009RSU063-U3 Page Number: 5 of 7 the device is equal to or less than 22.48/ƒ0.5 W (adjusted for tune-up tolerance), where ƒ is in MHz; • at or above 48 MHz and below 300 MHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 0.6 W (adjusted for tune-up tolerance); • at or above 300 MHz and below 6 GHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 1.31 x 10-2 ƒ0.6834 W (adjusted for tune-up tolerance), where ƒ is in MHz; • at or above 6 GHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 5 W (adjusted for tune-up tolerance). In these cases, the information contained in the RF exposure technical brief may be limited to information that demonstrates how the e.i.r.p. was derived. Report No.: 2009RSU063-U3 Page Number: 6 of 7 2.3. Test Result of RF Exposure Evaluation for FCC and IC Product Robotic Vacuum Cleaner Test Item RF Exposure Evaluation FCC: Test Mode Frequency Band (MHz) Maximum Average Output Power (dBm) E.I.R.P Including Tune-up (dBm) Power Density at R = 20 cm (mW/cm2) Limit (mW/cm2) 802.11b/g/n 2412 ~ 2462 20.53 24.40 0.0548 1 IC: Test Mode Frequency Band (MHz) Maximum EIRP (dBm) Tune-up (dBm) Maximum EIRP (W) Limit (W) 802.11b/g/n 2412 ~ 2462 24.40 24.40 0.27542 2.6840 CONCLUSION: The Max Power Density at R (20 cm) =0.0548mW/cm 2 < 1mW/cm 2 . The device is excluded for SAR test and complies with the IC exposure requirements since the maximum conducted peak output power is lower than the SAR test exclusion thresholds. So the EUT complies with RF Exposure requirement. The End Report No.: 2009RSU063-U3 Page Number: 7 of 7 Appendix A - EUT Photograph Refer to “2009RSU063-U1-UE” file.
MRT Technology (Suzhou) Co., Ltd Report No.: 2009RSU063-U1 Phone: +86-512-66308358 Report Version: V01 Web: www.mrt-cert.com Issue Date: 12-17-2020 Page Number: 1 of 110 FCC ID: 2AN2O-TSW02 IC: 23317-TSW02 Applicant: Beijing Roborock Technology Co., Ltd. Application Type: Certification Product: Robotic Vacuum Cleaner Model No.: roborock S7 FCC Classification: Digital Transmission System (DTS) FCC Rule Part(s): Part 15 Subpart C (Section 15.247) IC Rule(s): RSS 247 Issue 2, RSS-GEN Issue 5 Test Procedure(s): ANSI C63.10-2013 Test Date: September 26 ~ November 24, 2020 MEASUREMENT REPORT FCC PART 15C / RSS-247 WLAN 802.11b/g/n Reviewed By: (Sherry Jiang) Approved By: (Robin Wu) The test results relate only to the samples tested. This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in ANSI C63.10-2013. Test results reported herein relate only to the item(s) tested. The test report shall not be reproduced except in full without the written approval of MRT Technology (Suzhou) Co., Ltd. Report No.: 2009RSU063-U1 Page Number: 2 of 110 Revision History Report No. Version Description Issue Date Note 2009RSU063-U1 Rev. 01 Initial Report 12-17-2020 Valid Report No.: 2009RSU063-U1 Page Number: 3 of 110 CONTENTS Description Page 1. General Information ............................................................................................................... 5 1.1. Applicant ...................................................................................................................... 5 1.2. Manufacturer ................................................................................................................ 5 1.3. Testing Facility .............................................................................................................. 5 2. PRODUCT INFORMATION ...................................................................................................... 6 2.1. Equipment Description ................................................................................................. 6 2.2. Product Specification Subjective to this Report ............................................................ 6 2.3. Working Frequencies for this report .............................................................................. 7 2.4. Test Mode .................................................................................................................... 7 2.5. Description of Test Software ......................................................................................... 7 2.6. Duty Cycle .................................................................................................................... 8 2.7. EMI Suppression Device(s)/Modifications ..................................................................... 9 2.8. Test Environment Condition .......................................................................................... 9 2.9. Description of Test Configuration .................................................................................. 9 2.10. Test System Details ..................................................................................................... 9 3. ANTENNA REQUIREMENTS................................................................................................. 10 4. TEST EQUIPMENT CALIBRATION DATE ............................................................................. 11 5. MEASUREMENT UNCERTAINTY ......................................................................................... 15 6. TEST RESULT ....................................................................................................................... 16 6.1. Summary .................................................................................................................... 16 6.2. Occupied Bandwidth Measurement ............................................................................ 17 6.2.1. Test Limit ................................................................................................................ 17 6.2.2. Test Procedure used ............................................................................................... 17 6.2.3. Test Setting ............................................................................................................. 17 6.2.4. Test Setup .............................................................................................................. 18 6.2.5. Test Result .............................................................................................................. 19 6.3. Output Power Measurement ....................................................................................... 29 6.3.1. Test Limit ................................................................................................................ 29 6.3.2. Test Procedure Used .............................................................................................. 29 6.3.3. Test Setting ............................................................................................................. 29 6.3.4. Test Setup .............................................................................................................. 30 6.3.5. Test Result .............................................................................................................. 31 6.4. Power Spectral Density Measurement ........................................................................ 33 6.4.1. Test Limit ................................................................................................................ 33 Report No.: 2009RSU063-U1 Page Number: 4 of 110 6.4.2. Test Procedure Used .............................................................................................. 33 6.4.3. Test Setting ..........................................................…
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Report No.: 2009RSU063-U1 Page Number: 56 of 110 Product Robotic Vacuum Cleaner Test Engineer Allen Zou Test Site SIP-AC2 Test Date 2020/09/27 Test Mode: 802.11b Test Channel: 11 Remark: 1. Average measurement was not performed if peak level lower than average limit. 2. Other frequency was 20dB below limit line within 1-18GHz, there is not show in the report. Mark Frequency (MHz) Reading Level (dBμV) Factor (dB) Measure Level (dBμV/m) Limit (dBμV/m) Margin (dB) Detector Polarization 4924.0 66.2 -13.3 52.9 54 -1.1 Average Horizontal 4924.0 67.6 -13.4 54.2 74 -19.8 Peak Horizontal 7383.5 57.3 -6.4 50.9 74 -23.1 Peak Horizontal * 9848.5 49.4 -3.5 45.9 74 -28.1 Peak Horizontal * 10341.5 49.0 -2.3 46.7 74 -27.3 Peak Horizontal 4927.0 67.3 -13.4 53.9 74 -20.1 Peak Vertical 7383.5 55.1 -6.4 48.7 74 -25.3 Peak Vertical * 9848.5 49.0 -3.5 45.5 74 -28.5 Peak Vertical * 10358.5 48.9 -2.4 46.5 74 -27.5 Peak Vertical Note 1: “*” means test frequency didn't fall into restricted band. Note 2: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB) Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m) - Pre_Amplifier Gain (dB) Report No.: 2009RSU063-U1 Page Number: 57 of 110 Product Robotic Vacuum Cleaner Test Engineer Allen Zou Test Site SIP-AC2 Test Date 2020/09/27 Test Mode: 802.11g Test Channel: 01 Remark: 1. Average measurement was not performed if peak level lower than average limit. 2. Other frequency was 20dB below limit line within 1-18GHz, there is not show in the report. Mark Frequency (MHz) Reading Level (dBμV) Factor (dB) Measure Level (dBμV/m) Limit (dBμV/m) Margin (dB) Detector Polarization 4621.0 52.6 -14.0 38.6 74 -35.4 Peak Horizontal 4825.0 64.2 -13.5 50.7 74 -23.3 Peak Horizontal * 6499.5 50.9 -8.8 42.1 74 -31.9 Peak Horizontal * 7239.0 54.8 -6.6 48.2 74 -25.8 Peak Horizontal 4638.0 52.7 -13.7 39.0 74 -35.0 Peak Vertical 4816.5 62.5 -13.5 49.0 74 -25.0 Peak Vertical * 6440.0 50.8 -9.0 41.8 74 -32.2 Peak Vertical * 7230.5 57.0 -6.6 50.4 74 -23.6 Peak Vertical Note 1: “*” means test frequency didn't fall into restricted band. Note 2: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB) Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m) - Pre_Amplifier Gain (dB) Report No.: 2009RSU063-U1 Page Number: 58 of 110 Product Robotic Vacuum Cleaner Test Engineer Allen Zou Test Site SIP-AC2 Test Date 2020/09/27 Test Mode: 802.11g Test Channel: 06 Remark: 1. Average measurement was not performed if peak level lower than average limit. 2. Other frequency was 20dB below limit line within 1-18GHz, there is not show in the report. Mark Frequency (MHz) Reading Level (dBμV) Factor (dB) Measure Level (dBμV/m) Limit (dBμV/m) Margin (dB) Detector Polarization 4740.0 54.9 -13.4 41.5 74 -32.5 Peak Horizontal 5012.0 53.3 -12.8 40.5 74 -33.5 Peak Horizontal * 6397.5 52.6 -9.4 43.2 74 -30.8 Peak Horizontal * 7035.0 50.0 -6.9 43.1 74 -30.9 Peak Horizontal 4791.0 55.3 -13.3 42.0 74 -32.0 Peak Vertical 4995.0 54.5 -13.0 41.5 74 -32.5 Peak Vertical * 6142.5 53.4 -10.6 42.8 74 -31.2 Peak Vertical * 6499.5 50.4 -8.8 41.6 74 -32.4 Peak Vertical Note 1: “*” means test frequency didn't fall into restricted band. Note 2: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB) Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m) - Pre_Amplifier Gain (dB) Report No.: 2009RSU063-U1 Page Number: 59 of 110 Product Robotic Vacuum Cleaner Test Engineer Allen Zou Test Site SIP-AC2 Test Date 2020/09/27 Test Mode: 802.11g Test Channel: 11 Remark: 1. Average measurement was not performed if peak level lower than average limit. 2. Other frequency was 20dB below limit line within 1-18GHz, there is not show in the report. Mark Frequency (MHz) Reading Level (dBμV) Factor (dB) Measure Level (dBμV/m) Limit (dBμV/m) Margin (dB) Detector Polarization 4920.3 56.5 -13.2 43.3 54 -10.7 Average Horizontal 4920.3 68.2 -13.4 54.8 74 -19.2 Peak Horizontal 7375.0 62.2 -6.3 55.9 74 -18.1 Peak Horizontal 7375.1 52.4 -6.3 46.1 54 -7.9 Average Horizontal * 9644.5 49.3 -3.6 45.7 74 -28.3 Peak Horizontal * 10078.0 49.3 -3.1 46.2 74 -27.8 Peak Horizontal 4927.0 66.9 -13.4 53.5 74 -20.5 Peak Vertical 7383.5 62.2 -6.4 55.8 74 -18.2 Peak Vertical 7383.6 53.5 -6.4 47.1 54 -6.9 Average Vertical * 9950.5 47.5 -3.4 44.1 74 -29.9 Peak Vertical * 10341.5 46.2 -2.3 43.9 74 -30.1 Peak Vertical Note 1: “*” means test frequency didn't fall into restricted band. Note 2: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB) Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m) - Pre_Amplifier Gain (dB) Report No.: 2009RSU063-U1 Page Number: 60 of 110 Product Robotic Vacuum Cleaner Test Engineer Allen Zou Test Site SIP-AC2 Test Date 2020/09/27 Test Mode: 802.11n-HT20 Test Channel: 01 Remark: 1. Average measurement was not performed if peak level lower than average limit. 2. Other frequency was 20dB below limit line within 1-18GHz, there is not show in the report. Mark Frequency (MHz) Reading Level (dBμV) Factor (dB) Measure Level (dBμV/m) Limit (dBμV/m) Margin (dB) Detector Polarization 4825.0 69.0 -13.5 55.5 74 -18.5 Peak Horizontal 4825.1 57.4 -13.5 43.9 54 -10.1 Average Horizontal 5105.5 53.2 -12.6 40.6 74 -33.4 Peak Horizontal * 6559.0 52.4 -8.9 43.5 74 -30.5 Peak Horizontal * 7230.7 54.8 -6.6 48.2 54 -5.8 Average Horizontal * 7230.7 62.5 -6.4 56.1 74 -17.9 Peak Horizontal 4825.0 69.0 -13.5 55.5 74 -18.5 Peak Vertical 4825.1 58.6 -13.5 45.1 54 -8.9 Average Vertical 5114.0 53.9 -12.5 41.4 74 -32.6 Peak Vertical * 6202.0 53.7 -10.5 43.2 74 -30.8 Peak Vertical * 7239.3 64.1 -6.6 57.5 74 -16.5 Peak Vertical * 7239.3 56.9 -6.6 50.3 54 -3.7 Average Vertical Note 1: “*” means test frequency didn't fall into restricted band. Note 2: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB) Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m) - Pre_Amplifier Gain (dB) Report No.: 2009RSU063-U1 Page Number: 61 of 110 Product Robotic Vacuum Cleaner Test Engineer Allen Zou Test Site SIP-AC2 Test Date 2020/09/27 Test Mode: 802.11n-HT20 Test Channel: 0…
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Report No.: 2009RSU063-U1-UT 1 of 1 Test Setup Photo Description: Radiated Emission Test Setup for 30MHz ~ 1GHz Description: Radiated Emission Test Setup for Above 1GHz Report No.: 2009RSU063-U1-UT Description: AC conducted Emission Test Setup
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.42 GHz - 2.45 GHz | 471.00 mW |
Robotic Vacuum Cleaner
Equipment Class
DTS - Digital Transmission SystemRobotic Vacuum Cleaner
Equipment Class
DTS - Digital Transmission SystemRobotic Vacuum Cleaner
Equipment Class
DTS - Digital Transmission SystemRobotic Vacuum Cleaner
Equipment Class
DTS - Digital Transmission SystemRobotic Vacuum Cleaner
Equipment Class
DTS - Digital Transmission System