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2AXDW-PJ1Puductor2 Robot

SHENZHEN PUDU TECHNOLOGY CO., LTD.
Puductor2 Robot - FCC ID 2AXDW-PJ1 - SHENZHEN PUDU TECHNOLOGY CO., LTD.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Apr 20, 2021
Application Purpose
Original Equipment
Date of Application
Apr 20, 2021
Equipment Note
Puductor2 Robot
Frequency Range
2412.00000000 - 2462.00000000
Company
SHENZHEN PUDU TECHNOLOGY CO., LTD.
Country
China

Documents & Files

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Users Manual

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Internal Photos

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RF Exposure Info

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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

欢乐消 2 机器人 Puductor2 Robot 快速指南 QuickGuide V1.0 CN 1-8 EN 9-16 声明 Copyright © 2021 深圳普渡科技有限公司版权所有,保留所有权利。 未经深圳普渡科技有限公司明确书面 许可,任何单位或者个人丌得擅自仿制、复制、誊抁或转译本说明书 部分或者全部内容,丏丌得以营利为 目的进行任何方式(电子、影印、录制等)的传播。本说明书所提到 的产品规格和资讯仅供参考,如果内 容更新,恕丌另行通知。除非有特殊规定,本说明书仅作为使用指导, 所作陈述均丌构成任何形式的担保 。 快速指南 安全说明 产品组成 功能说明 售后服务 1-2 3-5 5-7 8 PUDU ROBOTICS 1 安全说明 本产品仅限亍室内空气消毒,对室外消杀效果无法保证,故丌建议使用; 本产品仅为超干雾化设备 ,使用超干雾消毒时,需要严格依照消毒液的使用说明,幵不消毒液供应 商确认人能否不干雾共处 ; 大部分消毒液遇热受光易分解,建议机器人喷雾消杀结束后将超声室消毒液回流回消毒液箱中 ,幵 将机器人停靠在冷暗处; 机器人紫外消杀时会发出紫外线强光,严禁直接照射眼睛和皮肤。 紫外消杀时严禁人员靠近; 紫外装置只有在工作时才会旋出,幵会在结束紫外消杀后会自劢旋入。 如发现非工作状态紫外装置 处亍未完全旋入状态,请点击复位按钮或重启机器人,以上丌能解决 请联系技术支持人员,切勿异 常状态下使用; 请勿在消毒液箱中有液体的情况下,将机器人打倒 。否则会造成液体泄漏导致机器人电路损坏; 请勿在机器人作业过程中拖拽机器人,出现紧急情况 请按下紧急按钮,或先通过远程控制终端暂停 机器人; 机器人需在平坦环境使用,如地板、瓷砖、 薄地毯等,请勿用亍户外(如开放式阳台)、崎岖地面(如 阶梯)等环境,请勿在湿滑地面使用; 请勿在机器人开机状态下,反向推机器人; 禁止遮挡机器人传感器,否则可能导致机器人行走异常 ; 使用前请先将环境中地面各种线材收起,避免主机运行时拖拽。请将地面尖锐物体(如装修废料、玱 璃、 铁钉等)清除,以免对机器底盘造成伤害; 为保证安全建议将机器人速度调整至 0.8m/s 及以下,禁止在机器人前方 1m 范围内嬉戏打闹以避 免丌必要的伤害,机器人有自劢避障功能,但存在识别盲区,故严禁在机器人高速行驶期间突然阻 挡机器人,否则可能引发安全事故; 机器人最佳通行宽度应大亍 70cm,长通道需要宽度大亍 1m 流畅性最佳,宽度大亍 2m 通道可设 置两台机器人对向会车行驶(具体宽度由技术人员根据实际场景评估); 机器人设计最大爬坡角度 为 5°,为防止机器人滑坡后溜导致可能风险,应避免在机器人上坡期间暂 停机器;为防止机器人斜 坡上意外跌落,斜坡宽度丌应小亍最小通行宽度 70cm,侧翻角度丌允许 超过 5°; 需要在阶梯边沿,下坡的入口等有机器人跌落风险的地方增加栅栏或者其他阻挡防护; 地面高度 16~22cm 之间有纯黑色(如踢脚线)、镜面(如墙面)、全透明(如落地玱璃窗)的物件, 可能干扰机器 人雷达反射,造成机器人行走异常,可能需要对场地进行一定的改造让雷达能反射(如 粘贴贴纸); 待机点机器人幵列放置两台之间需有 35cm 空间,离后墙需有 15cm 空隙,不侧墙的距离需有 35cm; 机器人剩余电量小亍 10%,请及时充电,长时间低电量运行可能会缩短电池使用寿命 ; 充电完成后请及 时断开电源,请勿在机器满电量状态下长时间充电 ; 若长时间丌使用机器人,请及时将产品断电以保护 机器电池 ; 务必使用原厂与配的可充电电池不充电设备 , 严禁使用非原厂充电器对机器人充电 ; 请指定 与门负责人对机器充电,请勿在无人值守情况下为机器人充电或者单独为电池充电; PUDU ROBOTICS 2 请勿将机器放置亍易燃易爆物体附近充电 ; 机器人存放及充电位置请保持干燥、常渢,严禁将机器以及充电器放置亍高渢区域(> 40°C),严禁 机器以及充电器进水; 严禁充电器不外物碰撞,造成充电器损坏 ; 发现充 电器损坏,充电电流异常请及时更换充电器 ; 充电 时收到机器人报警,请立即断开充电设备 PUDU ROBOTICS 3 产品组成 包装清单 整机 ×1 、《快速指南》×1 、合格证 ×1 、保修卡 ×1 、充电线 ×1 、定位标贴 ×1、电源钥匙 ×1 外观部件介绍 [1] [3] [8] [2] [7] [5] [4] [13] [6] [10] [9] [14] [12] [11] 侧面 正面 背面 [1] 超声室 [2] 紫外灯 [3] 屏幕 [4] 液位显示 [5] 补液口 [6] 排液口 [7] 开机按键 [8] 急停开关 [9] 深度视觉传感器 [10] 激光雷达 [11] 驱劢轮 [12] 辅劣轮 [13] 充电插孔 [14] 钥匙开关 PUDU ROBOTICS 4 性能参数: 产品型号 标准型 PJ1 工作电压 DC 23-29V 电源输入 AC 100-240V, 50/60Hz 电源输出 29V-8A 充电时间 9h 连续消毒时间 6h 运行速度 0.1~1.2m/s 爬坡坡度 5° 整机材质 ABS/ 航空级铝合金 电池容量 51.2Ah 整机重量 60kg 整机尺寸 544x538x1290mm 额定功率 150W 超干雾 4 组碰头,30°喷洒 喷雾速率 0~2L/h 可调 水箱容量 15L 雾化颗粒 小亍 10μm 支持消毒液 过氧化氢、次氯酸、二氧化氯等 紫外灯 4 组灯管 紫外波长 UV-C 254nm 紫外照度 1m 处大亍 180μW/cm2 紫外灯防护 自劢收放 屏幕规格 7 寸高清触摸彩屏 音响功率 20W*2 立体声音响 设计寿命 5年 工作环境 0~40°C,相对湿度 85% 存储环境 -40~65°,相对湿度 85% 充电方式 手劢充电不换电 环境污染 等级 3 PUDU ROBOTICS 5 工作海拔 最大 4000m 路面要求 室内环境,平坦地面 防护等级 IP20 光照强度 支持最大 70000lux 功能说明 开关机说明 钥匙开关: 钥匙开关可实现打开 / 关闭机器人整机电源,实现机器人锁定功能,位置如下图所示 KEY 开机: 激光版本:推至初始位置 - 打开钥匙开关 - 长按开关键 0.5 秒,底部灯带显示蓝色 关机: 长按开关机键 10 秒关机,灯管和屏幕熄灭 充电说明 将机器人充电接口连接充电线,保证机身充电口不充电线连接,如果连接成功,机器人将会提示正在充电 用 电注意: 1. 为保证机器人的使用效率和电池寿命,请随时抂机器人电量保持在 10% 以上; 2. 当电量低亍 10% 时,机器人处亍低电量状态,需尽快充电。 PUDU ROBOTICS 6 紧急处理 当机器人处亍非正常运行状态或者出现意外情况,有可能对周围环境造成伤害等紧急情况时,用户可以通 过 背后的急停开关,使机器人停止运行。 STOP 消毒液操作 消毒补液: 先确认待补充的消毒不机器人内的消毒液相同,或者消毒液箱中无液体。拉开机器补液口,将 配好浓度的 消毒从注液口注入。同时观察液位指示管的液位装填,液位填满后请勿继续注液。 更换消毒补液: 先确认超声室消毒液提已经回流到消毒液箱中,否则先进行回流操作。打开消毒液排液口,拧开开关,将 消毒液箱中溶液倒出。新的消毒液按照补充消毒液方式进行。 紫外灯操作: 使用中的灯管,在灯管前方垂直距离 1m 的中心处,测量辐照度值应≥ 70μW/cm 2 ,低亍此值者应予更换。 更换灯管时,先按压紫外灯管头部弹簧固定座,取下灯管即可。 PUDU ROBOTICS 7 功能说明 快速消毒: 快速消毒功能指用户可将机器人推到某个地点,选择消毒时长、消毒方式,即可开始消毒 。消毒完成后机 器人停在原地等待下一次消毒指令。 定点消毒: 定点消毒功能指用户可设置某些消毒的固定位置,选择每个位置消毒时长、消毒方式,机器人会自劢运行 到这些定点,进行自劢的消杀作业,作业完成后会自劢回到起始停靠点。 巡线消毒: 巡线消毒功能指用户可设置巡航消毒路线,选择消毒总时长、消毒方式,机器人会按照道路路劲巡航往复 消杀,消毒完成后机器人会自劢回到起始停靠点。 功能丌定期更新,详细功能说明可 在 www.pudutech.com 下载《欢乐消 2 操作手册》 PUDU ROBOTICS 8 售后服务 1. 免费保修服务 公司承诺符合以下情况,自产品收货之日起,在产品有效保修期内(产品的丌同部件保修期限有所丌同), 符 合如下情况的将提供免费的产品保修服务。 自贩买产品在规定的产品保修期限内正常使用,出现非人为的质量问题; 无擅自拆机、无非官方说明书指引的改装或加装、其它非人为引起的故障; 产品序列号 、出厂标签及其他标示无撕毁、涂改迹象; 提供有效的贩买证明、单据及单号 ; 免费保 修期内更换的损坏备件属公司所有,应按公司要求寄回。 2. 保修范围外的售后服务 对亍丌在免费保修范围内的售后服务(超出保修期或者在保修期内丌符合免费保修条款),公司提供 收费售 后服务; 公司官方提供线上和远程技术支持渠道,客户需配合技术工程师进行问题诊断和故障处理; 经技术工程师诊断必须上门解决问题的,指派与业技术人员提供上门服务;提供有效的贩买 丌在免费保修范围内的售后服务,需按照要求填写《售后服务记录表》。服务费用包含:售 后维护费用以及备件费用; 3. 售后服务咨询 如果您有任何问题需要咨询,请联系普渡科技客服热线:400-0826-660。 普渡科技售后人员服务工 作时间是:每周一至周六,上午 9:30 至 12:00,下午 13:30 至 18:30。 售后这里增加邮箱: 售后邮箱:[email protected] Statement Copyright © 2021 Shenzhen Pudu Technology Co., Ltd. All rights reserved. This document may not be copied, reproduced, transcribed or translated, in part or in whole, by any persons or organizations, or be transmitted in any form or by any means (electronic, photocopy, recording, etc.) for any commercial purposes without the prior written permission of Shenzhen Pudu Technology Co., Ltd. Unless otherwise specified, this document is used as a guidance only and comes with no warranties of any kind. Quick Guide Safety Instructions Product Components Instructions for Use After-sales Service 11-12 13-15 15-17 18 PUDU ROBOTICS 12 Safety Instructions This product is suitable for indoor air disinfection only, and is not recommended to be used outdoors. This product is intended as an ultra-dry atomization device only. When using it for disinfection, make sure to follow the user instructions for your disinfectant and check with your disinfectant supplier whether it is safe for people to be in the same space with dry mist. Most disinfectants are prone to decompose when exposed to heat and light. After the robot completes disinfection, we recommend that you return the disinfectant in the ultrasonic chamber to the disinfectant tank and park the robot in a cool and dark place. While the robot is performing UV disinfection, it emits strong UV rays, to which direct exposure of eyes and skin should be avoided. Keep off the robot while it is performing UV disinfection. The UV device will be screwed out only when it is working, and it will be screwed in automatically after the UV disinfection is over. If the UV device is not fully screwed in while not working, click the reset button or restart the robot. If the problem persists, please contact technical support for help. Do not use the device if anything is abnormal. Do not knock over the robot when there is liquid in the disinfectant tank; otherwise it will cause…

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External Photos

ATTACHMENT PHOTOGRAPHS OF EUT Photo 1 Photo 2 Photo 3 Photo 4 Photo 5 Photo 6 Photo 7 Photo 8 Photo 9

Internal Photos

ATTACHMENT PHOTOGRAPHS OF EUT Photo 1 Photo 2 Photo 3 Photo 4 Photo 5 Photo 6 Photo 7 Photo 8 Photo 9 Photo 10 Photo 11 Photo 12 Photo 13 Photo 14 Photo 15 Photo 16 Photo 17 Photo 18 Photo 19 Photo 20 Photo 21 Photo 22 Photo 23 Photo 24 Photo 25 Photo 26 Photo 27 Photo 28 Module 1 WIFI2.4G ANT Module 2 WIFI2.4G/5G/BT AUX ANT Module 2 WIFI2.4G/5G Main ANT Photo 29 Photo 30 Photo 31 Photo 32 Photo 33

RF Exposure Info

FCC ID: 2AXDW-PJ1 Maximum Permissible Exposure (MPE) 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) MPE Calculation Method E (V/m) = d GP**30 Power Density: Pd (W/m²) = 377 2 E E = Electric field (V/m) P = Average RF output power (W) G = EUT Antenna numeric gain (numeric) d = Separation distance between radiator and human body (m) The formula can be changed to Pd = 2 *377 **30 D GP From the EUT RF output power, the minimum mobile separation distance, d=0.2m, as well as the gain of the used antenna, the RF power density can be obtained. Measurement Result Module 2 BT: Operation Frequency: 2402MHz~2480MHz Power density limited: 1mW/ cm 2 Antenna Type: FPCB antenna WIFI antenna gain: 2dBi; R=20cm mW=10^(dBm/10) antenna gain Numeric=10^(dBi/10)= 10^(2/10)=1.58 Module 2 2.4G WIFI: Operation Frequency: WIFI 802.11b/g/n HT20: 2412-2462MHz, WIFI 802.11n HT40:2422-2452MHz Power density limited: 1mW/ cm 2 Antenna Type: FPCB antenna WIFI antenna gain: 2dBi; R=20cm mW=10^(dBm/10) antenna gain Numeric=10^(dBi/10)= 10^(2/10)=1.58 SISO conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 2402 2.937 2±131.9952621.580.000631 2441 4.664 4±153.1622781.580.000991 2480 3.435 4±153.1622781.580.000991 2402 2.143 2±131.9952621.580.000631 2441 3.799 3±142.5118861.580.000791 2480 2.592 2±131.9952621.580.000631 2402 2.628 3.5±14.52.8183831.580.000891 2441 4.24 3.5±14.52.8183831.580.000891 2480 2.952 3.5±14.52.8183831.580.000891 2402 2.987 2±131.9952621.580.000631 2440 4.728 4±153.1622781.580.000991 2480 3.451 4±153.1622781.580.000991 Channel Freq. (MHz) modulation (dBm) GFSK BLE(GFSK) Power density(mW/cm2 ) (mW/cm2) (dBm) π/4- DQPSK, 8DPSK Max tune-up power conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 2412 13.08 13±11425.118861.580.007901 2437 12.23 13±11425.118861.580.007901 2462 12.26 13±11425.118861.580.007901 2412 13.19 13±11425.118861.580.007901 2437 12.77 13±11425.118861.580.007901 2462 12.29 13±11425.118861.580.007901 2412 13.37 13±11425.118861.580.007901 2437 12.33 13±11425.118861.580.007901 2462 12.31 13±11425.118861.580.007901 2422 12.97 13±11425.118861.580.007901 2437 13.36 13±11425.118861.580.007901 2452 13.49 13±11425.118861.580.007901 Channel Freq. (MHz) modulation (dBm) 802.11b 802.11n H40 Power density(mW/cm2 ) (mW/cm2) (dBm) 802.11g 802.11n H20 Max tune-up power Module 1 2.4G WIFI: Operation Frequency: WIFI 802.11b/g/n HT20: 2412-2462MHz,HT40:2422-2452MHz Power density limited: 1mW/ cm 2 Antenna Type: FPCB antenna WIFI antenna gain: 2dBi; R=20cm mW=10^(dBm/10) antenna gain Numeric=10^(dBi/10)=10^(2/10)=1.58 Module 2 5G WIFI: Operation Frequency: WIFI 802.11a/ac/n(HT20): 5180-5240MHz;5260-5320MHz,5500- 5700MHz,5745-5825MHz;WIFI 802.11ac/n(HT40): 5190-5230MHz;5270-5310MHz,5510- 5670MHz5755-5795MHz; WIFI 802.11ac80:5210-5210MHz;5290-5290MHz;5530-5610MHz; 5775-5775MHz Power density limited: 1mW/cm Antenna Type: FPCB antenna WIFI antenna1 gain: 2dBi; WIFI antenna2 gain: 2dBi R=20cm mW=10^(dBm/10) antenna1 gain Numeric=10^(dBi/10)= 10^(2/10)=1.58 antenna2 gain Numeric=10^(dBi/10)= 10^(2/10)=1.58 5.2G SISO conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 2412 12.75 12.5±113.522.387211.580.007041 2437 13.37 12.5±113.522.387211.580.007041 2462 11.99 12.5±113.522.387211.580.007041 2412 11.69 12±11319.952621.580.006271 2437 12.14 12±11319.952621.580.006271 2462 11.14 12±11319.952621.580.006271 2412 11.57 11±11215.848931.580.004981 2437 12 11±11215.848931.580.004981 2462 10.96 11±11215.848931.580.004981 2422 13.53 13±11425.118861.580.007901 2437 12.44 13±11425.118861.580.007901 2452 12.41 13±11425.118861.580.007901 Channel Freq. (MHz) modulation (dBm) 802.11b 802.11n H40 Power density(mW/cm2 ) (mW/cm2) (dBm) 802.11g 802.11n H20 Max tune-up power 5.3G SISO conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 5180 10.3 9.5±110.511.220181.580.003531 5200 9.22 9.5±110.511.220181.580.003531 5240 8.65 9.5±110.511.220181.580.003531 5180 10.05 9.5±110.511.220181.580.003531 5200 9.12 9.5±110.511.220181.580.003531 5240 8.56 9.5±110.511.220181.580.003531 5190 9.82 9±110101.580.003141 5230 8.65 9±110101.580.003141 5180 9.98 9±110101.580.003141 5200 9.24 9±110101.580.003141 5240 8.47 9±110101.580.003141 5190 9.76 9±11010.001.580.003141 5230 9.02 9±11010.001.580.003141 5210 802.11ac 80 9.51 9±110101.580.003141 Max tune-up power Channel Freq. (MHz) modulation (dBm) Power density(mW/cm2 ) 802.11a 802.11n H20 802.11n H40 802.11ac 20 802.11ac 40 (mW/cm2) (dBm) conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 5260 9.63 9±110101.580.003141 5280 9.21 9±110101.580.003141 5320 8 9±110101.580.003141 5260 9.49 8.5±19.58.9125091.580.002801 5280 8.99 8.5±19.58.9125091.580.002801 5320 7.95 8.5±19.58.9125091.580.002801 52709.42 9±110101.580.003141 53109.73 9±110101.580.003141 5260 9.35 8.5±19.58.9125091.580.002801 5280 8.98 8.5±19.58.9125091.580.002801 5320 7.87 8.5±19.58.9125091.580.002801 5270 9.42 9±110101.580.003141 5310 9.69 9±110101.580.003141 5290 802.11ac 80 10.22 10±11112.589251.580.003961 802.11a 802.11n H20 802.11n H40 802.11ac 20 802.11ac 40 (mW/cm2) (dBm) Max tune-up power Channel Freq. (MHz) modulation (dBm) Power density(mW/cm2 ) 5.6G SISO 5.8G SISO conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Gain 55009.34 9±110101.580.003141 56009.68 9±110101.580.003141 57009.74 9±110101.580.003141 5500 9.05 9±110101.580.003141 5600 9.53 9±110101.580.003141 5700 9.63 9±110101.580.003141 5510 9.02 8.5±19.58.9125091.580.002801 5590 8.98 8.5±19.58.9125091.580.002801 5670 7.69 8.5±19.58.9125091.580.002801 5500 9.15 9±…

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Test Report

Report No.: S20111702702002 Version.1.3 Page 1 of 48 RADIO TEST REPORT FCC ID: 2AXDW-PJ1 Product: Puductor2 Robot Trade Mark: Pudu Model No.: PJ1 Family Model: N/A Report No.: S20111702702002 Issue Date: 18 Mar. 2021 Prepared for SHENZHEN PUDU TECHNOLOGY CO., LTD. Room 501, Building A, Block 1, Phase 1, Shenzhen International Inno Valley, Dashi 1st Road, Nanshan District, Shenzhen, China 518057 Prepared by Shenzhen NTEK Testing Technology Co., Ltd. 1/F, Building E, Fenda Science Park Sanwei, Xixiang, Bao'an District Shenzhen, Guangdong, China Tel.: +86-755-6115 6588 Fax.: +86-755-6115 6599 Website:http://www.ntek.org.cn Report No.: S20111702702002 Version.1.3 Page 2 of 48 TABLE OF CONTENTS 1 TEST RESULT CERTIFICATION ...................................................................................................................... 3 2 SUMMARY OF TEST RESULTS ......................................................................................................................... 4 3 FACILITIES AND ACCREDITATIONS ............................................................................................................. 5 3.1 FACILITIES..................................................................................................................................................... 5 3.2 LABORATORY ACCREDITATIONS AND LISTINGS ................................................................................. 5 3.3 MEASUREMENT UNCERTAINTY ............................................................................................................... 5 4 GENERAL DESCRIPTION OF EUT .................................................................................................................. 6 5 DESCRIPTION OF TEST MODES ..................................................................................................................... 8 6 SETUP OF EQUIPMENT UNDER TEST ......................................................................................................... 10 6.1 BLOCK DIAGRAM CONFIGURATION OF TEST SYSTEM ..................................................................... 10 6.2 SUPPORT EQUIPMENT ............................................................................................................................... 11 6.3 EQUIPMENTS LIST FOR ALL TEST ITEMS .............................................................................................. 12 7 TEST REQUIREMENTS .................................................................................................................................... 14 7.1 CONDUCTED EMISSIONS TEST ............................................................................................................... 14 7.2 RADIATED SPURIOUS EMISSION ............................................................................................................ 17 7.3 6DB BANDWIDTH ....................................................................................................................................... 26 7.4 DUTY CYCLE ............................................................................................................................................... 27 7.5 PEAK OUTPUT POWER .............................................................................................................................. 29 7.6 POWER SPECTRAL DENSITY ................................................................................................................... 30 7.7 CONDUCTED BAND EDGE MEASUREMENT......................................................................................... 32 7.8 SPURIOUS RF CONDUCTED EMISSIONS ................................................................................................ 33 7.9 ANTENNA APPLICATION .......................................................................................................................... 34 8 TEST RESULTS ................................................................................................................................................... 35 8.1 MAXIMUM CONDUCTED OUTPUT POWER ........................................................................................... 35 8.2 OCCUPIED CHANNEL BANDWIDTH ....................................................................................................... 37 8.3 MAXIMUM POWER SPECTRAL DENSITY LEVEL ................................................................................. 41 8.4 BAND EDGE ................................................................................................................................................. 43 8.5 CONDUCTED RF SPURIOUS EMISSION .................................................................................................. 45 Report No.: S20111702702002 Version.1.3 Page 3 of 48 1 TEST RESULT CERTIFICATION Applicant’s name ......................... : SHENZHEN PUDU TECHNOLOGY CO., LTD. Address ....................................... : Room 501, Building A, Block 1, Phase 1, Shenzhen International Inno Valley, Dashi 1st Road, Nanshan District, Shenzhen, China 518057 Manufacturer's Name .................. : SHENZHEN PUDU TECHNOLOGY CO., LTD. Address ....................................... : Room 501, Building A, Block 1, Phase 1, Shenzhen International Inno Valley, Dashi 1st Road, Nanshan District, Shenzhen, China 518057 Product description Product name .............................. : Puductor2 Robot Model and/or type reference ..... : PJ1 Family Model ............................... : N/A Measurement Procedure Used: APPLICABLE STANDARDS APPLICABLE STANDARD/ TEST PROCEDURE TEST RESULT FCC 47 CFR Part 2, Subpart J FCC 47 CFR Part 15, Subpart C ANSI C63.10-2013 KDB 558074 D01 15.247 Meas Guidance v05r02 Complied This device described above has been tested by Shenzhen NTEK Testing Technology Co., Ltd., and the test results show that the equipment under test (EUT) is in compliance with the FCC requirements. And it is applicable only to the tested sample…

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Test Report

Report No.: S20111702702003 Version.1.2 Page 1 of 192 FCC RADIO TEST REPORT FCC ID: 2AXDW-PJ1 Product: Puductor2 Robot Trade Mark: Pudu Model No.: PJ1 Family Model: N/A Report No.: S20111702702003 Issue Date: 18 Mar. 2021 Prepared for SHENZHEN PUDU TECHNOLOGY CO., LTD. Room 501, Building A, Block 1, Phase 1, Shenzhen International Inno Valley, Dashi 1st Road, Nanshan District, Shenzhen, China 518057 Prepared by Shenzhen NTEK Testing Technology Co., Ltd. 1/F, Building E, Fenda Science Park Sanwei, Xixiang, Bao'an District Shenzhen, Guangdong, China Tel.: +86-755-6115 9388 Fax.: +86-755-6115 6599 Website:http://www.ntek.org.cn Report No.: S20111702702003 Version.1.2 Page 2 of 192 TABLE OF CONTENTS 1 TEST RESULT CERTIFICATION ...................................................................................................................... 4 2 SUMMARY OF TEST RESULTS ......................................................................................................................... 5 3 FACILITIES AND ACCREDITATIONS ............................................................................................................. 6 3.1 FACILITIES..................................................................................................................................................... 6 3.2 LABORATORY ACCREDITATIONS AND LISTINGS ................................................................................. 6 3.3 MEASUREMENT UNCERTAINTY ............................................................................................................... 6 4 GENERAL DESCRIPTION OF EUT .................................................................................................................. 7 5 DESCRIPTION OF TEST MODES ................................................................................................................... 11 6 SETUP OF EQUIPMENT UNDER TEST ......................................................................................................... 13 6.1 BLOCK DIAGRAM CONFIGURATION OF TEST SYSTEM ..................................................................... 13 6.2 SUPPORT EQUIPMENT ............................................................................................................................... 14 6.3 EQUIPMENTS LIST FOR ALL TEST ITEMS .............................................................................................. 15 7 TEST REQUIREMENTS .................................................................................................................................... 17 7.1 CONDUCTED EMISSIONS TEST ............................................................................................................... 17 7.1.1 Applicable Standard .................................................................................................................... 17 7.1.2 Conformance Limit ...................................................................................................................... 17 7.1.3 Measuring Instruments ................................................................................................................ 17 7.1.4 Test Configuration ....................................................................................................................... 17 7.1.5 Test Procedure ............................................................................................................................ 17 7.1.6 Test Results ................................................................................................................................. 18 7.2 RADIATED SPURIOUS EMISSION ............................................................................................................ 22 7.2.1 Applicable Standard .................................................................................................................... 22 7.2.2 Conformance Limit ...................................................................................................................... 22 7.2.3 Measuring Instruments ................................................................................................................ 23 7.2.4 Test Configuration ....................................................................................................................... 23 7.2.5 Test Procedure ............................................................................................................................ 24 7.2.6 Test Results ................................................................................................................................. 25 7.3 6DB BANDWIDTH ....................................................................................................................................... 37 7.3.1 Applicable Standard .................................................................................................................... 37 7.3.2 Conformance Limit ...................................................................................................................... 37 7.3.3 Measuring Instruments ................................................................................................................ 37 7.3.4 Test Setup ................................................................................................................................... 37 7.3.5 Test Procedure ............................................................................................................................ 37 7.3.6 Test Results ................................................................................................................................. 38 7.4 DUTY CYCLE ............................................................................................................................................... 39 7.4.1 Applicable Standard .................................................................................................................... 39 7.4.2 …

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Test Report

Report No.: S20111702702003 Version.1.2 Page 121 of 192 -6 dB BW NVNT 802.11g 2437MHz Ant 1 OBW NVNT 802.11g 2462MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 122 of 192 -6 dB BW NVNT 802.11g 2462MHz Ant 1 OBW NVNT 802.11g 2412MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 123 of 192 -6 dB BW NVNT 802.11g 2412MHz Ant 2 OBW NVNT 802.11g 2437MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 124 of 192 -6 dB BW NVNT 802.11g 2437MHz Ant 2 OBW NVNT 802.11g 2462MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 125 of 192 -6 dB BW NVNT 802.11g 2462MHz Ant 2 OBW NVNT 802.11n(HT20) 2412MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 126 of 192 -6 dB BW NVNT 802.11n(HT20) 2412MHz Ant 1 OBW NVNT 802.11n(HT20) 2437MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 127 of 192 -6 dB BW NVNT 802.11n(HT20) 2437MHz Ant 1 OBW NVNT 802.11n(HT20) 2462MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 128 of 192 -6 dB BW NVNT 802.11n(HT20) 2462MHz Ant 1 OBW NVNT 802.11n(HT20) 2412MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 129 of 192 -6 dB BW NVNT 802.11n(HT20) 2412MHz Ant 2 OBW NVNT 802.11n(HT20) 2437MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 130 of 192 -6 dB BW NVNT 802.11n(HT20) 2437MHz Ant 2 OBW NVNT 802.11n(HT20) 2462MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 131 of 192 -6 dB BW NVNT 802.11n(HT20) 2462MHz Ant 2 OBW NVNT 802.11n(HT40) 2422MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 132 of 192 -6 dB BW NVNT 802.11n(HT40) 2422MHz Ant 1 OBW NVNT 802.11n(HT40) 2437MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 133 of 192 -6 dB BW NVNT 802.11n(HT40) 2437MHz Ant 1 OBW NVNT 802.11n(HT40) 2452MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 134 of 192 -6 dB BW NVNT 802.11n(HT40) 2452MHz Ant 1 OBW NVNT 802.11n(HT40) 2422MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 135 of 192 -6 dB BW NVNT 802.11n(HT40) 2422MHz Ant 2 OBW NVNT 802.11n(HT40) 2437MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 136 of 192 -6 dB BW NVNT 802.11n(HT40) 2437MHz Ant 2 OBW NVNT 802.11n(HT40) 2452MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 137 of 192 -6 dB BW NVNT 802.11n(HT40) 2452MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 138 of 192 8.1.10 MAXIMUM POWER SPECTRAL DENSITY LEVEL Condition Mode Frequency (MHz) Antenna Max PSD (dBm/3kHz) Total Max PSD (dBm/3kHz) Limit (dBm/3kHz) Verdict NVNT 802.11b 2412 Ant 1 -10.497 8 Pass NVNT 802.11b 2437 Ant 1 -10.277 8 Pass NVNT 802.11b 2462 Ant 1 -12.748 8 Pass NVNT 802.11b 2412 Ant 2 -9.237 8 Pass NVNT 802.11b 2437 Ant 2 -10.761 8 Pass NVNT 802.11b 2462 Ant 2 -10.405 8 Pass NVNT 802.11g 2412 Ant 1 -13.573 8 Pass NVNT 802.11g 2437 Ant 1 -12.68 8 Pass NVNT 802.11g 2462 Ant 1 -14.44 8 Pass NVNT 802.11g 2412 Ant 2 -11.866 8 Pass NVNT 802.11g 2437 Ant 2 -11.303 8 Pass NVNT 802.11g 2462 Ant 2 -12.696 8 Pass NVNT 802.11n(HT20) 2412 Ant 1 -13.33 -9.26 8 Pass NVNT 802.11n(HT20) 2412 Ant 2 -11.416 Pass NVNT 802.11n(HT20) 2437 Ant 1 -12.964 -9.46 8 Pass NVNT 802.11n(HT20) 2437 Ant 2 -12.025 Pass NVNT 802.11n(HT20) 2462 Ant 1 -14.615 -10.53 8 Pass NVNT 802.11n(HT20) 2462 Ant 2 -12.672 Pass NVNT 802.11n(HT40) 2422 Ant 1 -15.321 -11.99 8 Pass NVNT 802.11n(HT40) 2422 Ant 2 -14.699 Pass NVNT 802.11n(HT40) 2437 Ant 1 -13.693 -10.31 8 Pass NVNT 802.11n(HT40) 2437 Ant 2 -12.986 Pass NVNT 802.11n(HT40) 2452 Ant 1 -15.033 -10.86 8 Pass NVNT 802.11n(HT40) 2452 Ant 2 -12.948 Pass PSD NVNT 802.11b 2412MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 139 of 192 PSD NVNT 802.11b 2437MHz Ant 1 PSD NVNT 802.11b 2462MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 140 of 192 PSD NVNT 802.11b 2412MHz Ant 2 PSD NVNT 802.11b 2437MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 141 of 192 PSD NVNT 802.11b 2462MHz Ant 2 PSD NVNT 802.11g 2412MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 142 of 192 PSD NVNT 802.11g 2437MHz Ant 1 PSD NVNT 802.11g 2462MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 143 of 192 PSD NVNT 802.11g 2412MHz Ant 2 PSD NVNT 802.11g 2437MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 144 of 192 PSD NVNT 802.11g 2462MHz Ant 2 PSD NVNT 802.11n(HT20) 2412MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 145 of 192 PSD NVNT 802.11n(HT20) 2437MHz Ant 1 PSD NVNT 802.11n(HT20) 2462MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 146 of 192 PSD NVNT 802.11n(HT20) 2412MHz Ant 2 PSD NVNT 802.11n(HT20) 2437MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 147 of 192 PSD NVNT 802.11n(HT20) 2462MHz Ant 2 PSD NVNT 802.11n(HT40) 2422MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 148 of 192 PSD NVNT 802.11n(HT40) 2437MHz Ant 1 PSD NVNT 802.11n(HT40) 2452MHz Ant 1 Report No.: S20111702702003 Version.1.2 Page 149 of 192 PSD NVNT 802.11n(HT40) 2422MHz Ant 2 PSD NVNT 802.11n(HT40) 2437MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 150 of 192 PSD NVNT 802.11n(HT40) 2452MHz Ant 2 Report No.: S20111702702003 Version.1.2 Page 151 of 192 8.1.11 BAND EDGE Condition Mode Frequency (MHz) Antenna Max Value (dBc) Limit (dBc) Verdict NVNT 802.11b 2412 Ant 1 -54.09 -20 Pass NVNT 802.11b 2462 Ant 1 -51.52 -20 Pass NVNT 802.11b 2412 Ant 2 -53.76 -20 Pass NVNT 802.11b 2462 Ant 2 -50.11 -20 Pass NVNT 802.11g 2412 Ant 1 -46.94 -20 Pass NVNT 802.11g 2462 Ant 1 -46.07 -20 Pass NVNT 802.11g 2412 Ant 2 -49.94 -20 Pass NVNT 802.11g 2462 Ant 2 -41.05 -20 Pass NVNT 802.11n(HT20) 2412 Ant 1 -45.49 -20 Pass NVNT 802.11n(HT20) 2462 Ant 1 -43.27 -20 Pass NVNT 8…

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Contact Information

Applicant

Le Cai
[email protected]0755-26909874Fax: 0755-26909874

Technical Contact

Shenzhen NTEK Testing Technology Co., LtdAlex li
[email protected]86-755-6115 6588

Shenzhen · China

Non-Technical Contact

Shenzhen NTEK Testing Technology Co., LtdAlex Li
[email protected]86-755-6115 6588

Test Firm

Shenzhen NTEK Testing Technology Co., Ltd.Alex Li
[email protected]+86-755-6115-9384

Technical Specifications

#Rule PartsFrequency RangePower Output
215C2.41 GHz - 2.46 GHz37.32 mW
Confidentiality
Long Term
Grant Notes
Output power listed is maximum combined conducted power. This device contains 20 and 40 MHz signal bandwidth. Device is a 2x2 MIMO as is described in the filing. The antennas used with this transmitter must be installed to provide a minimum separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi- transmitter product procedures. End-users must be provided with operating procedures for satisfying RF exposure compliance.

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