
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
LUBA Robotic Lawn Mower Model: AWD 5000, LUBA0001, AWD 3000 Quick Start Guide V 1.0 1 Thank you for choosing MAMMOTION as your garden care kit. This Quick Start Guide will help you learn and operate MAMMOTION LUBA. Safety and Regulations Operating MAMMOTION products requests training and practice. Please read through this document before operating it in your garden. They are: Do NOT charge the LUBA by third-party charger Do NOT flip over the mower when running Do NOT put foot/hand under mower when running Do NOT push/pull the mower when running Do NOT disassemble any part when powered on Do NOT use hands to touch or replace the running blades Do NOT use hands to touch the charging ports Do NOT run mower in the puddle Do NOT run mower on ground with sticks or rubbles Clean the lawn before deploying the mower for work Keep the charging port clean and dry 2 Introduction About MAMMOTION LUBA MAMMOTION LUBA is a 4-wheels-differential (4WD) perimeter wire free robotic lawn mower. The 4WD a n d p e r i m e t e r w i r e f r e e enable LUBA to break the limits of mowing jobs and free the user’s hands. LUBA Robotic Mower 1. E-stop 2. Start button 3. Power button 4. Auto-return button 5. Cutting button 6. Ultrasonic sensor 7. Left light 8. Side collision sensor 9. Protecting bracket 10. Front bumper 11. Connecting indicator 12. Rain sensor 1 2 3 4 5 6 7 8 9 10 11 6 12 6 3 1. Secure key 2. SIM port(Reserved *1 ) 3. USB port 4. Charging port 5. Infrared sensor Note: 1. The reserved port might not function in some previous version mowers. 1. Cutting blade*8 2. Blade disk*2 1 2 3 4 5 4 1 2 2 1 4 Charging Station 1. Mounting hole for RTK base pole 2. Mounting holes*3 3. Charging ports for LUBA 4. Screws*3 5. Power adaptor 6. Extension wire(10meters) 1 2 3 2 4 5 6 5 RTK base 1. Antenna 2. RTK base 3. RTK wire(2.5meter) 4. Mounting pole 1 2 3 4 6 Preparation & Activation a. Install the front bumper and blade plates on LUBA The front bumper can be inserted and locked to the front of LUBA body directly. As shown in the following figures: (图) The blade disks are tightened up (图) b. Install MAMMOTION APP 1. APP download & Installations Option1. Search the MAMMOTION on App Store (For iOS). Option2. Go to below download link for the MAMMOTION App (For Android). Link:https://www.pgyer.com/5WVG 2. LUBA registration and activation Keep pressing the POWER BUTTON on the LUBA until you hear“Di...”sound from it. Then the LUBA is on already. Open the App for binding and activating the LUBA. 7 Step 1: Sign up on the App for the first use Turn on the GPS and Bluetooth on your phone. Select the country and input your email address. Then, click Code on the App. It will send a verifying code to your email. Input the six figures verifying code to the App and click Next to complete the signup. It will need users to setup their own password for the account. Step2: Add your LUBA After you select the correct Bluetooth ID of your LUBA, it will need to connect it to Wi-Fi for activation. The App will search the available WiFi signal nearby. Then select your own WiFi, enter the password and then click Next. Wait until the App shows Device added successfully. Then click to finish. 8 9 App introduction As shown in the following figure, the meanings of each icon are listed below: 1:Cutting height setting. When user changes the value of it, the lift motor will drive the blade to the corresponding height. 2:Positioning/navigation status. There are two statuses. One is GPS and the other is RTK. In normal work, the status should be in RTK status. 3:Bluetooth connecting status. If the Bluetooth was connected successfully, it will light up to be blue. 4:Mower battery power left. 5:LUBA SSID. The current LUBA added to the App. 6:LUBA status. There are five status: Initializing, Charging, Standby, Task planning, Working and Task suspended. 7:Error logs. It’s used for troubleshooting. 8:Map display in the central. 9:Manually drive forward/backward. 10:Create task. Click here to create a new map with mowing task. 11:Setting. Display setting, docking and recharging, user prompts and RTK base reset. 12:Manually drive steering left/right. 1 4 3 2 5 11 12 9 8 7 10 6 10 RTK Base Installation Recommendation of selecting the RTK base point for typical installation: 1. Install the RTK base on the ground This way is for the property with relatively opened areas of the yard. For example, there are no tall buildings around the yard except the owner’s house or the buildings are far away from it. In such a case, please select the location of RTK base by following the below recommendations: Height of the building or obstacle Distance between the RTK base and the building or obstacle 1m >1m 2m >2m 3m >3m 4m >4m a. RTK base is installed on the charging station Over view of the installation when it’s completed: RTK base& charging station 11 Installation Kit: ① Charging station ② RTK base ③ Power adaptor for charging station ④ Extension wire for charging station(10 meters) ⑤ RTK wire(2.5 meters) ⑥ RTK base mounting pole with tools ① ② ③ ④ ⑤ ⑥ 12 Step1:Go through the 2.5meters RTK wire from A to B and then connect it to C. Step2:Insert and fix the RTK bas mounting pole to the ground from hole A on charging station. 13 Step3:Screw the other part of RTK base mounting pole together. Fix the RTK base to the mounting pole. The RTK base can be locked on the pole by driving the plastic screw on the back. Users can fix the RTK base on the pole first before fixing the pole to the ground as well. Step5: Then connect the wires for each part. Done! Setup mowing task Step1:RESET RTK antenna When the LUBA is in charging state, go to Setting--->RTK Antenna Reset. Reset the RTK antenna. Then the LUBA will recognize the current point of the charging station. This step is very important for the success of automatic recharge. 14 Note: 1. The LUBA status must be on Charging when clicking to reset the RTK antenna. 2. The RTK antenna reset will clear all the previous planed data. So …
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FCC ID: 2A8QJ-LUBA FCC ID: 2A8QJ-LUBA FCC ID: 2A8QJ-LUBA
LUBA Model: AWD 5000 FCC ID: 2A8QJ-LUBA IC: 29682-LUBA This device complies with part 15 of the FCC Rules and with Industry Canada license -exempt RSS standard(s). 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.
FCC ID: 2A8QJ-LUBA FCC ID: 2A8QJ-LUBA BT/WIFI Antenna GPS(RX) Antenna SRD(RX) Antenna BT/WIFI Module SRD(RX) Module GPS(RX) Module FCC ID: 2A8QJ-LUBA FCC ID: 2A8QJ-LUBA FCC ID: 2A8QJ-LUBA FCC ID: 2A8QJ-LUBA
RF Exposure evaluation FCC ID: 2A8QJ-LUBA Exposure category: General population/uncontrolled environment EUT Type: Production Unit Device Type: Mobile Device 1. Reference According to §1.1307(b)(1), systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission’s guidelines. According to §1.1310 and §2.1091 RF exposure is calculated. KDB447498 D01: Mobile and Portable Devices RF Exposure Procedures and Equipment Authorization Policies 2. Limit Limits for Maximum Permissible Exposure (MPE)/Controlled Exposure Frequency Range(MHz) Electric Field Strength(V/m) Magnetic Field Strength(A/m) Power Density (mW/cm²) Averaging Time (minute) Limits for Occupational/Controlled Exposure 0.3 – 3.0 3.0 – 30 30 – 300 300 – 1500 1500 – 100,000 614 1842/f 61.4 / / 1.63 4.89/f 0.163 / / (100) * (900/f 2 )* 1.0 f/300 5 6 6 6 6 6 Limits for Maximum Permissible Exposure (MPE)/Uncontrolled Exposure Frequency Range(MHz) Electric Field Strength(V/m) Magnetic Field Strength(A/m) Power Density (mW/cm²) Averaging Time (minute) Limits for Occupational/Controlled Exposure 0.3 – 3.0 3.0 – 30 30 – 300 300 – 1500 1500 – 100,000 614 824/f 27.5 / / 1.63 2.19/f 0.073 / / (100) * (180/f 2 )* 0.2 f/1500 1.0 30 30 30 30 30 F=frequency in MHz *=Plane-wave equivalent power density 3. MPE Calculation Method Predication of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 S=PG/4πR² Where: S=power density P=power input to antenna G=power gain of the antenna in the direction of interest relative to an isotropic radiator R=distance to the center of radiation of the antenna 4. Antenna Information The device can only use antennas certificated as follows provided by manufacturer; Internal Identification Antenna Identification in Internal photos Antenna type and antenna number Operate frequency band Maximum antenna gain Antenna 1 ANT PIFA antenna 2.4GHz – 2.5 GHz 3.0dBi 5. Conducted power and Manufacturing Tolerance 802.11b(AV) Channel Channel 01 Channel 06 Channel 11 Target (dBm) 11.0 11.0 11.0 Tolerance ±(dB) 1.0 1.0 1.0 802.11g(AV) Channel Channel 01 Channel 06 Channel 11 Target (dBm) 10.0 10.0 10.0 Tolerance ±(dB) 1.0 1.0 1.0 802.11n(HT)20(AV) Channel Channel 01 Channel 06 Channel 11 Target (dBm) 10.0 10.0 10.0 Tolerance ±(dB) 1.0 1.0 1.0 BLE_1Mbps(Peak) Channel Channel 00 Channel 19 Channel 39 Target (dBm) 5.0 5.0 5.0 Tolerance ±(dB) 1.0 1.0 1.0 6. Standalone MPE Result As declared by the Applicant, the EUT is a wireless device used in a fix application, at least 20 cm from any body part of the user or nearby persons; from the maximum EUT RF output power, the minimum separation distance, r =20cm, as well as the gain of the used antenna is 3.0dBi for WIFI, the RF power density can be obtained. Modulation Type Max tune up power tolerance(dBm) Max Output power to antenna (mW) Antenna Gain (Numeric) Power Density at R=20cm (mW/cm 2 ) Limit (mW/cm 2 ) Result 802.11b 12 15.8489 1.9953 0.0063 1.0000 Pass 802.11g 11 12.5893 1.9953 0.0050 1.0000 Pass 802.11n(HT)20 11 12.5893 1.9953 0.0050 1.0000 Pass BLE_1Mbps 6 3.9811 1.9953 0.0016 1.0000 Pass 7. Conclusion The measurement results comply with the FCC Limit per 47 CFR 2.1091 for the uncontrolled RF Exposure of mobile device. ----------------THE END OF REPORT---------------
2.4GHzFPCBUILT-INANTENNA TECHNICALDATASHEET DZP(TX2400-FPC-5015) VERSION:3.3DATE:2021-08-03 TEL:028-61542639WEBSITE:WWW.ZIISOR.COM CHENGDUZIISORTECHNOLOGYCO.,LTD.EXPERTOFIOTANTENNAS TX2400-FPC-5015 Copyright@ChengduZiisorTechnologyCo.,Ltd2020ExpertofIoTAntenna TX2400-FPC-5015 NO.MECHANICALSPECIFICATIONSVALUECOMMENT 01PartNumberDZP(TX2400-FPC-5015)OmniAntenna 02MaterialFPC 03ConnectorTypeIPEX-1 04AntennaColourBlack 05OverallSize50*15mm 06CableLength130mm CableCustomizable 07Weight1g NO.ELECTRICALSPECIFICATIONSVALUECOMMENT 01Frequency2.4GHz2.4~2.5GHz 02AntennaGain3.0dBi 03RadiationtypeOmnidirectional 04PolarizationLinearVertical 05NominalImpedance50Ω 06MaxInputPower2W 077S.W.R.≤1.5 NO.ENVIRONMENTALSPECIFICATIONSVALUECOMMENT 01OperationTemperature-30°C~+75°C 02StorageTemperature-30°C~+75°C 03RoHSCompliantYES 2/5 TX2400-FPC-5015 Copyright@ChengduZiisorTechnologyCo.,Ltd2020ExpertofIoTAntenna Antenna Gain Frequency (MHz) Gain (dBi) Frequency (MHz) Gain (dBi) 2400 2.75 2455 2.98 2405 1.88 2460 1.75 2410 2.57 2465 2.28 2415 2.72 2470 1.33 2420 1.50 2475 1.96 2425 1.60 2480 1.51 2430 2.95 2485 1.99 2435 2.87 2490 1.96 2440 2.70 2495 2.69 2445 2.63 2500 1.80 2450 3.00 Pattern X: 2450 MHz 3/5 TX2400-FPC-5015 Copyright@ChengduZiisorTechnologyCo.,Ltd2020ExpertofIoTAntenna Y: 2450 MHz Z: 2450 MHz 4/5 TX2400-FPC-5015 Copyright@ChengduZiisorTechnologyCo.,Ltd2020ExpertofIoTAntenna CompanyNameChengduZiisorTechnologyCo.,Ltd Telephone+86-028-61542639 Websitewww.ziisor.com [email protected] [email protected] CompanyAddress B5MoldingToolIndustryPark,No.199XiQuAvenue, Chengdu,China DISCLAIMER Inordertoprovideouruserswithbetterservice,ChengduZiisorTechnologyCo.,Ltd(hereinafter referredtoasziisor)willtrytopresentasdetailedandaccurateproductinformationaspossiblein thismanual.However,duetothetimelinessofthemanualcontent,ziisorshallnotabsolutelyguarantee theunlimitedtimelinessandapplicabilityofthefile.Ziisorhastherighttoupdatethemanualcontent withoutfurthernotice.Togetthelatesteditioninformation,plsvisittheofficialwebsiteofziisor orcontactourcustomerservicestaff.Thanksforyourtrustandsupport! CONTACTUS 5/5
FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 1 of 19 1 Bandwidth 1.1 1.1 OBW 1.1.1 Test Result Mode TX Type Frequency (MHz) ANT 99% Occupied Bandwidth (MHz) Verdict Result 1M SISO 2402 1 1.016 Pass 2440 1 1.017 Pass 2480 1 1.016 Pass FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 2 of 19 1.1.2 Test Graph 1M_LCH_2402MHz_Ant1_NTNV 1M_MCH_2440MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 3 of 19 1M_HCH_2480MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 4 of 19 1.2 6dB BW 1.2.1 Test Result Mode TX Type Frequency (MHz) ANT 6dB Bandwidth (MHz) Verdict Result Limit 1M SISO 2402 1 0.643 >=0.5 Pass 2440 1 0.647 >=0.5 Pass 2480 1 0.650 >=0.5 Pass FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 5 of 19 1.2.2 Test Graph 1M_LCH_2402MHz_Ant1_NTNV 1M_MCH_2440MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 6 of 19 1M_HCH_2480MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 7 of 19 2 Maximum Conducted Output Power 2.1 Power 2.1.1 Test Result Mode TX Type Frequency (MHz) Maximum Peak Conducted Output Power (dBm) Verdict ANT1 Limit 1M SISO 2402 4.76 <=30 Pass 2440 5.38 <=30 Pass 2480 4.98 <=30 Pass Note1: Antenna Gain: Ant1: 3.00dBi; FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 8 of 19 2.1.2 Test Graph 1M_LCH_2402MHz_Ant1_NTNV 1M_MCH_2440MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 9 of 19 1M_HCH_2480MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 10 of 19 3 Maximum Power Spectral Density 3.1 PSD 3.1.1 Test Result Mode TX Type Frequency (MHz) Maximum PSD (dBm/3kHz) Verdict ANT1 Limit 1M SISO 2402 -10.70 <=8 Pass 2440 -10.17 <=8 Pass 2480 -10.52 <=8 Pass Note1: Antenna Gain: Ant1: 3.00dBi; FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 11 of 19 3.1.2 Test Graph 1M_LCH_2402MHz_Ant1_NTNV 1M_MCH_2440MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 12 of 19 1M_HCH_2480MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 13 of 19 4 Unwanted Emissions In Non-restricted Frequency Bands 4.1 Ref 4.1.1 Test Result Mode TX Type Frequency (MHz) ANT Level of Reference (dBm) 1M SISO 2402 1 4.39 2440 1 5.15 2480 1 4.64 Note1: Refer to FCC Part 15.247 (d) and ANSI C63.10-2013, the channel contains the maximum PSD level was used to establish the reference level. FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 14 of 19 4.1.2 Test Graph 1M_LCH_2402MHz_Ant1_NTNV 1M_MCH_2440MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 15 of 19 1M_HCH_2480MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 16 of 19 4.2 CSE 4.2.1 Test Result Mode TX Type Frequency (MHz) ANT Level of Reference (dBm) Limit (dBm) Verdict 1M SISO 2402 1 5.15 -14.85 Pass 2440 1 5.15 -14.85 Pass 2480 1 5.15 -14.85 Pass Note1: Refer to FCC Part 15.247 (d) and ANSI C63.10-2013, the channel contains the maximum PSD level was used to establish the reference level. FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 17 of 19 4.2.2 Test Graph 1M_LCH_2402MHz_Ant1_NTNV 1M_LCH_2402MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 18 of 19 1M_MCH_2440MHz_Ant1_NTNV 1M_HCH_2480MHz_Ant1_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 19 of 19 1M_HCH_2480MHz_Ant1_NTNV
FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 1 of 34 1 Bandwidth 1.1 OBW 1.1.1 Test Result Mode TX Type Frequency (MHz) ANT 99% Occupied Bandwidth (MHz) Verdict Result 802.11b SISO 2412 1 13.289 Pass 2437 1 13.273 Pass 2462 1 13.277 Pass 802.11g SISO 2412 1 18.574 Pass 2437 1 18.502 Pass 2462 1 18.520 Pass 802.11n (HT20) SISO 2412 1 19.285 Pass 2437 1 19.241 Pass 2462 1 19.261 Pass FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 2 of 34 1.1.2 Test Graph 802.11b_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11b_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 3 of 34 802.11b_HCH_2462MHz_Ant1 (SISO)_NTNV 802.11g_LCH_2412MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 4 of 34 802.11g_MCH_2437MHz_Ant1 (SISO)_NTNV 802.11g_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 5 of 34 802.11n(HT20)_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11n(HT20)_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 6 of 34 802.11n(HT20)_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 7 of 34 1.2 6dB BW 1.2.1 Test Result Mode TX Type Frequency (MHz) ANT 6dB Bandwidth (MHz) Verdict Result Limit 802.11b SISO 2412 1 10.069 >=0.5 Pass 2437 1 10.075 >=0.5 Pass 2462 1 10.036 >=0.5 Pass 802.11g SISO 2412 1 16.393 >=0.5 Pass 2437 1 16.400 >=0.5 Pass 2462 1 16.397 >=0.5 Pass 802.11n (HT20) SISO 2412 1 17.641 >=0.5 Pass 2437 1 17.634 >=0.5 Pass 2462 1 17.627 >=0.5 Pass FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 8 of 34 1.2.2 Test Graph 802.11b_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11b_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 9 of 34 802.11b_HCH_2462MHz_Ant1 (SISO)_NTNV 802.11g_LCH_2412MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 10 of 34 802.11g_MCH_2437MHz_Ant1 (SISO)_NTNV 802.11g_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 11 of 34 802.11n(HT20)_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11n(HT20)_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 12 of 34 802.11n(HT20)_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 13 of 34 2 Maximum Conducted Output Power 2.1 Power 2.1.1 Test Result Mode TX Type Frequency (MHz) Maximum Average Conducted Output Power (dBm) Verdict ANT1 Limit 802.11b SISO 2412 11.23 <=30 Pass 2437 11.19 <=30 Pass 2462 10.92 <=30 Pass 802.11g SISO 2412 9.40 <=30 Pass 2437 9.61 <=30 Pass 2462 9.18 <=30 Pass 802.11n (HT20) SISO 2412 9.45 <=30 Pass 2437 9.60 <=30 Pass 2462 9.16 <=30 Pass Note1: Antenna Gain: Ant1: 3.00dBi; FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 14 of 34 3 Maximum Power Spectral Density 3.1 PSD 3.1.1 Test Result Mode TX Type Frequency (MHz) Maximum PSD (dBm/3kHz) Verdict ANT1 Limit 802.11b SISO 2412 -17.99 <=8 Pass 2437 -18.36 <=8 Pass 2462 -18.93 <=8 Pass 802.11g SISO 2412 -20.65 <=8 Pass 2437 -20.85 <=8 Pass 2462 -20.67 <=8 Pass 802.11n (HT20) SISO 2412 -21.12 <=8 Pass 2437 -20.39 <=8 Pass 2462 -20.82 <=8 Pass Note1: Antenna Gain: Ant1: 3.00dBi; FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 15 of 34 3.1.2 Test Graph 802.11b_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11b_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 16 of 34 802.11b_HCH_2462MHz_Ant1 (SISO)_NTNV 802.11g_LCH_2412MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 17 of 34 802.11g_MCH_2437MHz_Ant1 (SISO)_NTNV 802.11g_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 18 of 34 802.11n(HT20)_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11n(HT20)_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 19 of 34 802.11n(HT20)_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 20 of 34 4 Unwanted Emissions In Non-restricted Frequency Bands 4.1 Ref 4.1.1 Test Result Mode TX Type Frequency (MHz) ANT Level of Reference (dBm) 802.11b SISO 2412 1 1.98 2437 1 1.95 2462 1 1.64 802.11g SISO 2412 1 -1.75 2437 1 -1.48 2462 1 -1.92 802.11n (HT20) SISO 2412 1 -1.70 2437 1 -1.48 2462 1 -1.92 Note1: Refer to FCC Part 15.247 (d) and ANSI C63.10-2013, the channel contains the maximum PSD level was used to establish the reference level. FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 21 of 34 4.1.2 Test Graph 802.11b_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11b_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 22 of 34 802.11b_HCH_2462MHz_Ant1 (SISO)_NTNV 802.11g_LCH_2412MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 23 of 34 802.11g_MCH_2437MHz_Ant1 (SISO)_NTNV 802.11g_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 24 of 34 802.11n(HT20)_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11n(HT20)_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 25 of 34 802.11n(HT20)_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 26 of 34 4.2 CSE 4.2.1 Test Result Mode TX Type Frequency (MHz) ANT Level of Reference (dBm) Limit (dBm) Verdict 802.11b SISO 2412 1 1.98 -28.02 Pass 2437 1 1.98 -28.02 Pass 2462 1 1.98 -28.02 Pass 802.11g SISO 2412 1 -1.48 -31.48 Pass 2437 1 -1.48 -31.48 Pass 2462 1 -1.48 -31.48 Pass 802.11n (HT20) SISO 2412 1 -1.48 -31.48 Pass 2437 1 -1.48 -31.48 Pass 2462 1 -1.48 -31.48 Pass Note1: Refer to FCC Part 15.247 (d) and ANSI C63.10-2013, the channel contains the maximum PSD level was used to establish the reference level. FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 27 of 34 4.2.2 Test Graph 802.11b_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11b_LCH_2412MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 28 of 34 802.11b_MCH_2437MHz_Ant1 (SISO)_NTNV 802.11b_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 29 of 34 802.11b_HCH_2462MHz_Ant1 (SISO)_NTNV 802.11g_LCH_2412MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 30 of 34 802.11g_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11g_MCH_2437MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 31 of 34 802.11g_HCH_2462MHz_Ant1 (SISO)_NTNV 802.11g_HCH_2462MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 32 of 34 802.11n(HT20)_LCH_2412MHz_Ant1 (SISO)_NTNV 802.11n(HT20)_LCH_2412MHz_Ant1 (SISO)_NTNV FCC ID: 2A8QJ-LUBA IC: 29682-LUBA Page 33 o…
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Shenzhen CTL Testing Technology Co., Ltd. Tel: +86-755-89486194 E-mail: [email protected] TEST REPORT FCC PART 15.247 Report Reference No. ................ : CTL2208103044-WF01 Compiled by: ( position+printed name+signature) Happy Guo (File administrators) Tested by: ( position+printed name+signature) Gary Gao (Test Engineer) Approved by: ( position+printed name+signature) Ivan Xie (Manager) Product Name ............................ : LUBA Model/Type reference ................ : AWD 5000 List Model(s)............................... : LUBA0001, AWD 3000 Trade Mark .................................. : Mammotion FCC ID ........................................ : 2A8QJ-LUBA Applicant’s name ....................... : Mammotion Technology Co., Limited Address of applicant ................. : 98 CHEONG TAI COMM BLDG 66 WING LOK ST SHEUNG WAN HONG KONG Test Firm ..................................... : Shenzhen CTL Testing Technology Co., Ltd. Address of Test Firm ................. : Floor 1-A, Baisha Technology Park, No.3011, Shahexi Road, Nanshan District, Shenzhen, China 518055 Test specification ....................... : Standard ...................................... : FCC Part 15.247: Operation within the bands 902-928 MHz, 2400-2483.5 MHz and 5725-5850 MHz. TRF Originator ............................. : Shenzhen CTL Testing Technology Co., Ltd. Master TRF .................................. : Dated 2011-01 Date of receipt of test item ........ : Sep. 28, 2022 Date of Test Date ........................ : Sep. 28, 2022-Nov. 28, 2022 Date of Issue .............................. : Nov. 28, 2022 Result ......................................... : Pass Shenzhen CTL Testing Technology Co., Ltd. All rights reserved. This publication may be reproduced in whole or in part for non-commercial purposes as long as the Shenzhen CTL Testing Technology Co., Ltd. is acknowledged as copyright owner and source of the material. Shenzhen CTL Testing Technology Co., Ltd. takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. V1.0 Page 2 of 37 Report No.: CTL2208103044-WF01 TEST REPORT Test Report No. : CTL2208103044-WF01 Nov. 28, 2022 Date of issue Equipment under Test : LUBA Sample No : CTL220810304-1-S001 Model /Type : AWD 5000 Listed Models : LUBA0001, AWD 3000 Applicant : Mammotion Technology Co., Limited Address : 98 CHEONG TAI COMM BLDG 66 WING LOK ST SHEUNG WAN HONG KONG Manufacturer : Mammotion Technology Co., Limited Address : 98 CHEONG TAI COMM BLDG 66 WING LOK ST SHEUNG WAN HONG KONG Test result Pass * * In the configuration tested, the EUT complied with the standards specified page 5. The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the issuing testing laboratory. V1.0 Page 3 of 37 Report No.: CTL2208103044-WF01 ** Modified History ** Revisions Description Issued Data Report No. Remark Version 1.0 Initial Test Report Release 2022-11-28 CTL2208103044-WF01 Tracy Qi V1.0 Page 4 of 37 Report No.: CTL2208103044-WF01 Table of Contents Page 1. SUMMARY ............................................................................................................................................................... 5 1.1. TEST STANDARDS .................................................................................................................................................... 5 1.2. TEST DESCRIPTION ....................................................................................................................................................... 5 1.3. TEST FACILITY ............................................................................................................................................................. 6 1.4. STATEMENT OF THE MEASUREMENT UNCERTAINTY .............................................................................................................. 6 2. GENERAL INFORMATION.......................................................................................................................................... 8 2.1. ENVIRONMENTAL CONDITIONS ....................................................................................................................................... 8 2.2. GENERAL DESCRIPTION OF EUT...................................................................................................................................... 8 2.3. SPECIAL ACCESSORIES ................................................................................................................................................... 8 2.4. DESCRIPTION OF TEST MODES AND TEST FREQUENCY ......................................................................................................... 9 2.5. EQUIPMENTS USED DURING THE TEST ............................................................................................................................ 10 2.6. RELATED SUBMITTAL(S) / GRANT (S) ............................................................................................................................. 10 2.7. MODIFICATIONS ........................................................................................................................................................ 10 3. TEST CONDITIONS AND RESULTS ............................................................................................................................ 11 3.1. CONDUCTED EMISSIONS TEST ...................................................................................................................................... 11 3.2. RADIATED EMISSIONS AND BAND EDGE .......................................................................................................................... 14 3.3. MAXIMUM CONDUCTED OUTPUT POWER ...........................................................................…
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Shenzhen CTL Testing Technology Co., Ltd. Tel: +86-755-89486194 E-mail: [email protected] TEST REPORT FCC PART 15.247 Report Reference No. ................ : CTL2208103044-WF02 Compiled by: ( position+printed name+signature) Happy Guo (File administrators) Tested by: ( position+printed name+signature) Gary Gao (Test Engineer) Approved by: ( position+printed name+signature) Ivan Xie (Manager) Product Name ............................ : LUBA Model/Type reference ................ : AWD 5000 List Model(s)............................... : LUBA0001, AWD 3000 Trade Mark .................................. : Mammotion FCC ID ........................................ : 2A8QJ-LUBA Applicant’s name ....................... : Mammotion Technology Co., Limited Address of applicant ................. : 98 CHEONG TAI COMM BLDG 66 WING LOK ST SHEUNG WAN HONG KONG Test Firm ..................................... : Shenzhen CTL Testing Technology Co., Ltd. Address of Test Firm ................. : Floor 1-A, Baisha Technology Park, No.3011, Shahexi Road, Nanshan District, Shenzhen, China 518055 Test specification ....................... : Standard ...................................... : FCC Part 15.247: Operation within the bands 902-928 MHz, 2400-2483.5 MHz and 5725-5850 MHz. TRF Originator ............................. : Shenzhen CTL Testing Technology Co., Ltd. Master TRF .................................. : Dated 2011-01 Date of receipt of test item ........ : Sep. 28, 2022 Date of Test Date ........................ : Sep. 28, 2022-Nov. 28, 2022 Date of Issue .............................. : Nov. 28, 2022 Result ......................................... : Pass Shenzhen CTL Testing Technology Co., Ltd. All rights reserved. This publication may be reproduced in whole or in part for non-commercial purposes as long as the Shenzhen CTL Testing Technology Co., Ltd. is acknowledged as copyright owner and source of the material. Shenzhen CTL Testing Technology Co., Ltd. takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. V1.0 Page 2 of 29 Report No.: CTL2208103044-WF02 TEST REPORT Test Report No. : CTL2208103044-WF02 Nov. 02, 2022 Date of issue Equipment under Test : LUBA Sample No : CTL220810304-1-S001 Model /Type : AWD 5000 Listed Models : LUBA0001, AWD 3000 Applicant : Mammotion Technology Co., Limited Address : 98 CHEONG TAI COMM BLDG 66 WING LOK ST SHEUNG WAN HONG KONG Manufacturer : Mammotion Technology Co., Limited Address : 98 CHEONG TAI COMM BLDG 66 WING LOK ST SHEUNG WAN HONG KONG Test result Pass * * In the configuration tested, the EUT complied with the standards specified page 5. The test results presented in this report relate only to the object te…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.41 GHz - 2.46 GHz | 13.30 mW |