
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
PuduTech www.pudutech.com Cop yright © 2020 Pudu Technology Inc. All Rights Reserved. User manual V1.2 BL100 BL110BL101 Declaration: C opyright © 2020 Pudu Technology Inc. All Rights Reserved. W ithout the express written permission of Pudu Technology Inc., no unit or individual may i mitate, reproduce, copy or translate the contents of this manual in part or in whole, the dissemination by any means (electro nic, photocopying, recording, etc. shall not be carried out for the purpose of making profits. Product specifications and info rmati on mentioned in this manual are for reference only and are subject to change without notice. Unless otherwise specified, this manual is for guidance only and does not constitute a warra nty of any kind. Th is device complies with part 15 of the FCC Rules. Operation is subject to the condition that this device does not cause harmful inte rfe re nce (1 this device may not cause harmful interference, and (2 this device must a ccept any interference received , including interference that may cause undesired operation. Any changes or modifications not ex pres sly approved by the party responsible for compliance could void the user's authority to operate the equipment. NOTE: This equipment has been tested and found to comply with the limits for a Class B digital dev ice, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interfere nce 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 inte rference to radio communicat ions. However, there is no guarantee that interference will not occur in a particular installatio n. If this equipment does cause harmful interference to radio or telev ision reception, which can be determined by turning the equipment off and on, the user is encouraged to try to cor rect 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 fro m that to which the receiver is connected. - - Consult the dealer or an experienced radio/TV technician for help. To maintain compliance with FCC’s RF Exposure guidelines, This equipment should be installed and operated with minimum distance between 20cm the ra diator your body: Use only th e supplied antenna. FCC ID: 2AXDW-BL100 The W52 and W53 band can only be used indoors. CATALOG Safety Instructions Instructions for use Environmental notes Power and power requirements Safety instructions Product Composition Exterior parts introduction Performance parameters Tray size and height Product Use Charging instructions Charging interface Power ON, Power OFF, Pause, Start Mode selection Delivery mode Cruise mode B-day mode Direct delivery mode Special mode Alarm display 4 5-7 8-9 9-10 11 12 13-14 15 15 16-17 18-19 20-21 21-22 22-23 23-24 25-26 27 12 26 26 27 28 28 28 29 29 29 30 31 31 31 31 32 33 34-38 Service functions Map settings Voice settings Speed settings LED dot-matrix setting Version upgrade Advanced settings Music function Music playlist Music import Parking instructions Instructions on voice interaction Instructions on touch interaction Product Maintenance Troubleshooting After-sales Service Trays, drive wheel and auxiliary wheel Sensors maintenance Robot body maintenance Handling of robot Sign maintenance 1. DO NOT place any item with weight over the load of the tray: 10kg/tray(standard), 5kg/tray(obturated) 2. Click Finish to deliver the next task immediately, please take the food before clicking Finish. 3. Do NOT pick up and drop the food when the robot is moving, if necessary, please click the screen to pause the robot, and then pick and drop the food.The pause time of cruise mode is 20s, and the pause time of other modes is 10s, after the pause, the robot will resume walking automatically. 4. DO NOT press hard on the screen or tap the screen. 5. DO NOT pull the robot during operation. 6. DO NOT push the robot backwards while the robot is powered on. 7. If the robot enters the wrong position due to factors such as blockage, please pause the task and push it to the correct route to continue the task. 8. In the event of a collision, please cancel the current task or pause, re-enter the task, DO NOT artificially block the robot. 9. In the absence of special custom-made trays, it is not recommended in principle to deliver soup with PuduBot.When using, be sure to prevent the soup from being splashed and being scalded by the hot water. 10. Pay attention to the change of state of the robot during its travel, please avoid the robot when it is carrying hot tableware or soup pot to prevent collision with the robot and high temperature burns. 11. The top camera is used for precise positioning of the robot, DO NOT block it with a cover during starting and running. 12. DO NOT tap or make other actions to the robot, otherwise it may easily cause equipment damage. Instructions for use Safety Instruction 28 28 29 29 30 30 31 31 31 32 32 33 34 34 34 34 34 35 36-40 34 User manualUser manual 1. The robot is suitable for use in flat environments such as floors, tiles, and thin carpets, it is not suitable for use in environments where there are steps, the slope is too large, or the environment is too tight. 2. It is not recommended to use the robot on wet or obviously watery ground. 3. Any kind of debris such as the power cord that has been scattered on the ground may catch or wrap the robot, be sure to remove it before use. 4. The use of this product in the case of obvious protrusions such as sills may cause the food to sprinkle, please make sure that the height of the protrusions is within 1cm. 5. The minimum travel width of the robot should be greater than 80cm, the width of the long pass should be greater than 1m; if the width is greater than…
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FCC Software Configuration Control Declaration Rev1.0 SHENZHEN PUDU TECHNOLOGY CO., LTD. FCC Software Configuration Control Declaration Date: August 31, 2020 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Attn: OET Dept. Product: BellaBot Model Number: BL100, BL101, BL110 FCC ID: 2AXDW-BL100 Regarding FCC Country Code Selection guidelines identified in KDB 594280. “All applications for equipment authorization for transmitters that can have radio parameters, or other technical parameters, reported to the Commission set by software must have an attestation indicating that no third party will have software, or configuration control, to program the device out of compliance of the technical rules under which it has been certified.” We declare that no third party will have software, or configuration control, to program the device out of compliance of the technical rules under which it has been certified. Name: niangeng Date: August 31, 2020 Title: manager Signature of applicant
Letter of Authorization Company: SHENZHEN PUDU TECHNOLOGY CO., LTD. Address: Room 301, Wearnes Science and Technology Mansion, No.10, Kefa Road, Yuehai Street, Nanshan District , Shenzhen, Guangdong, China, 518057 Product Name: BellaBot Model Number: BL100, BL101, BL110 FCC Identifier: 2AXDW-BL100 We authorize MiCOM Labs Inc, 575 Boulder Court, Pleasanton, California 94566, USA, to act on our behalf on all matters concerning the above named equipment. Any individual within MiCOM Labs is authorized to act on our behalf and take action on the application. We declare that MiCOM Labs Inc, 575 Boulder Court, Pleasanton, California 94566, USA, is allowed to forward all information related to the approval project to the Federal Communication Commission and to discuss any issues concerning the approval application. Any and all acts carried out by MiCOM Labs on our behalf shall have the same effect as acts of our own. Name: niangeng Date: Aug. 29.2020 Title: Manager Signature of applicant:
SHENZHEN PUDU TECHNOLOGY CO., LTD. Date: Aug 29, 2020 FCC ID: 2AXDW-BL100 Model Number: BL100, BL101, BL110 To: Federal Communication Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21048 To Whom It May Concern, We, SHENZHEN PUDU TECHNOLOGY CO., LTD. , declare that this EUT (FCC ID: 2AXDW-BL100) will conduct FCC compliance testing, the SDOC part recognized test lab(Shenzhen NTEK Testing Technology Co., Ltd.( ShenZhen Lab.). 1/F, Building E, Fenda Science Park, Sanwei Community,Xixiang Street Bao’an District, Shenzhen 518126 P.R. China) Please contact me if you have any question. Sincerely, (Signed) Name / Title: niangeng/ Manager Company: SHENZHEN PUDU TECHNOLOGY CO., LTD. Address: Room 301, Wearnes Science and Technology Mansion, No.10, Kefa Road, Yuehai Street, Nanshan District , Shenzhen, Guangdong, China, 518057
ATTACHMENT PHOTOGRAPHS OF EUT Photo 1 Photo 2 Photo 3 Photo 4 Photo 5 Photo 6 Photo 7 Photo 8
Size:69*40mm
ATTACHMENT PHOTOGRAPHS OF EUT Photo 1 Photo 2 WIFI2.4G/ 5G Main ANT 2 WIFI2.4G/5G /BT AUX ANT 1 Photo 3 Photo 4 WIFI 2.4G Ant 3 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 Photo 29 Photo 30 Photo 31 Photo 32 Photo 33
FCC ID: 2AXDW-BL100 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 B BT: Operation Frequency: 2402MHz~2480MHz Power density limited: 1mW/ cm 2 Antenna Type: Built-in helical antenna WIFI antenna gain: 5.1dBi; R=20cm mW=10^(dBm/10) antenna gain Numeric=10^(dBi/10)= 10^(5.1/10)=3.24 Module B 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: Built-in helical Antenna WIFI antenna gain: 5.1dBi; R=20cm mW=10^(dBm/10) antenna gain Numeric=10^(dBi/10)= 10^(5.1/10)=3.24 SISO conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 2402 -1.494 -0.5±10.51.1220183.240.000721 2441 -0.702 -0.5±10.51.1220183.240.000721 2480 -0.942 -0.5±10.51.1220183.240.000721 2402 -0.361 -0.5±10.51.1220183.240.000721 2441 -1.261 -0.5±10.51.1220183.240.000721 2480 -1.329 -0.5±10.51.1220183.240.000721 2402 -1.166 -3±1-20.6309573.240.000411 2441 -2.776 -3±1-20.6309573.240.000411 2480 -1.607 -3±1-20.6309573.240.000411 2402 0.723 0±111.2589253.240.000811 2440 -0.314 0±111.2589253.240.000811 2480 -0.338 0±111.2589253.240.000811 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 12.39 12±11319.952623.240.012861 2437 11.94 12±11319.952623.240.012861 2462 11.83 12±11319.952623.240.012861 2412 12.12 12±11319.952623.240.012861 2437 11.83 12±11319.952623.240.012861 2462 11.65 12±11319.952623.240.012861 2412 12.07 12±11319.952623.240.012861 2437 11.79 12±11319.952623.240.012861 2462 11.73 12±11319.952623.240.012861 2422 11.33 12±11319.952623.240.012861 2437 12.16 12±11319.952623.240.012861 2452 11.66 12±11319.952623.240.012861 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 A 2.4G WIFI: Operation Frequency: WIFI 802.11b/g/n HT20: 2412-2462MHz, Power density limited: 1mW/ cm 2 Antenna Type: Built-in helical Antenna WIFI antenna gain: 4.6dBi; R=20cm mW=10^(dBm/10) antenna gain Numeric=10^(dBi/10)= 10^(4.6/10)=2.88 Module B 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: Built-in helical Antenna WIFI antenna1 gain: 5.1dBi; WIFI antenna2 gain: 4.9dBi R=20cm mW=10^(dBm/10) antenna1 gain Numeric=10^(dBi/10)= 10^(1/10)=3.24 antenna2 gain Numeric=10^(dBi/10)= 10^(1/10)=3.09 5.2G SISO conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 2412 11.25 11±11215.848932.880.009081 2437 11.12 11±11215.848932.880.009081 2462 11.45 11±11215.848932.880.009081 2412 11.61 11±11215.848932.880.009081 2437 11.55 11±11215.848932.880.009081 2462 11.6 11±11215.848932.880.009081 2412 11.43 11±11215.848932.880.009081 2437 11.43 11±11215.848932.880.009081 2462 11.45 11±11215.848932.880.009081 2422 11.35 11±11215.848932.880.009081 2437 10.9 11±11215.848932.880.009081 2452 11.46 11±11215.848932.880.009081 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 9.75 9±110103.090.006151 5200 9.59 9±110103.090.006151 5240 9.61 9±110103.090.006151 5180 9.75 9±110103.090.006151 5200 9.3 9±110103.090.006151 5240 9.43 9±110103.090.006151 5190 9.72 9±110103.090.006151 5230 9.39 9±110103.090.006151 5180 9.65 9±110103.090.006151 5200 9.44 9±110103.090.006151 5240 9.44 9±110103.090.006151 5190 9.89 9±110103.090.006151 5230 9.37 9±110103.090.006151 5210 802.11ac 80 7.89 7±186.3095733.090.003881 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 ) conducted power Tune-up power Antenna Evaluation result at 20cm Power density Limits Gain (dBm)(mW)Numeric 5260 9.5 9±110103.090.006151 5280 9.32 9±110103.090.006151 5320 9.6 9±110103.090.006151 5260 9.54 9±110103.090.006151 5280 9.98 9±110103.090.006151 5320 9.07 9±110103.090.006151 5270 9.38 9±110103.090.006151 5310 9.17 9±110103.090.006151 5260 9.45 9±110103.090.006151 5280 9.53 9±110103.090.006151 5320 9.33 9±110103.090.006151 5270 9.29 9±110103.090.006151 5310 9.01 9±110103.090.006151 5290 802.11ac 80 9.52 9±110103.090.006151 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 5500 9.68 10±11112.589253.090.007741 5600 9.42 10±11112.589253.090.007741 5700 9.69 10±11112.589253.090.007741 5500 9.51 10±11112.589253.090.007741 5600 9.53 10±11112.589253.090.007741 5700 9.44 10±11112.589253.090.007741 5510 9.28 10±11112.589253.090.007741 5590 9.31 10±11112.589253.090.007741 5670 9.31 10±11112.589253.090.007741 5500 9.53 10±11119.…
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Report No.: S20061602406004 Version.1.2 Page 1 of 475 FCC RADIO TEST REPORT FCC ID: 2AXDW-BL100 Product: BellaBot Trade Mark: Pudu Model No.: BL100 Family Model: BL101, BL110 Report No.: S20061602406004 Issue Date: 05 Aug. 2020 Prepared for SHENZHEN PUDU TECHNOLOGY CO., LTD. Room 301, Wearnes Science and Technology Mansion, No.10, Kefa Road, Yuehai Street, Nanshan District , Shenzhen, Guangdong, 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.: S20061602406004 Version.1.2 Page 2 of 475 TEST RESULT CERTIFICATION Applicant’s name ...................... : SHENZHEN PUDU TECHNOLOGY CO., LTD. Address ....................................... : Room 301, Wearnes Science and Technology Mansion, No.10, Kefa Road, Yuehai Street, Nanshan District , Shenzhen, Guangdong, China 518057 Manufacturer's Name ................ : SHENZHEN PUDU TECHNOLOGY CO., LTD. Address ....................................... : Room 301, Wearnes Science and Technology Mansion, No.10, Kefa Road, Yuehai Street, Nanshan District , Shenzhen, Guangdong, China 518057 Product description Product name .............................. : BellaBot Model and/or type reference ..... : BL100 Family Model ............................... : BL101, BL110 Standards ................................... : FCC Part15.407 Test procedure ................................. : ANSI C63.10-2013 and KDB 789033 D02 General UNII Test Procedures New Rules v02r01 FCC KDB 905462 D02 UNII DFS Compliance Procedures New Rules v02 FCC KDB 662911 D01 Multiple Transmitter Output v02r01 KDB 905462 D03 Client Without DFS New Rules v01r02 This device described above has been tested by NTEK, 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 identified in the report. This report shall not be reproduced except in full, without the written approval of NTEK, this document may be altered or revised by NTEK, personnel only, and shall be noted in the revision of the document. Date of Test ................................................... : Date (s) of performance of tests .................... : 22 Jun. 2020 ~ 03 Aug. 2020 Date of Issue .................................................. : 05 Aug, 2020 Test Result ...................................................... : Pass Testing Engineer : (Allen Liu) Technical Manager : (Jason Chen) Authorized Signatory : (Alex Li) Report No.: S20061602406004 Version.1.2 Page 3 of 475 Table of Contents Page 1. SUMMARY OF TEST RESULTS 7 1.1 FACILITIES AND ACCREDITATIONS 8 1.2 MEASUREMENT UNCERTAINTY 8 1 . GENERAL INFORMATION 9 1.1 GENERAL DESCRIPTION OF EUT 9 1.2 DESCRIPTION OF TEST MODES 12 1.3 BLOCK DIGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 13 1.4 DESCRIPTION OF SUPPORT UNITS(CONDUCTED MODE) 14 1.5 EQUIPMENTS LIST FOR ALL TEST ITEMS 15 2 . EMC EMISSION TEST 17 2.1 CONDUCTED EMISSION MEASUREMENT 17 2.1.1 APPLICABLE STANDARD 17 2.1.2 CONFORMANCE LIMIT 17 2.1.3 TEST CONFIGURATION 17 2.1.4 TEST PROCEDURE 17 2.2 RADIATED EMISSION MEASUREMENT 26 2.2.1 APPLICABLE STANDARD 26 2.2.2 CONFORMANCE LIMIT 26 2.2.3 MEASURING INSTRUMENTS 26 2.2.4 TEST CONFIGURATION 27 2.2.5 TEST PROCEDURE 28 2.2.6 TEST RESULTS (9KHZ – 30 MHZ) 29 2.2.7 TEST RESULTS (30MHZ – 1GHZ) 30 2.2.8 TEST RESULTS (1GHZ-18GHZ) 38 2.2.10 TEST RESULTS (18GHZ-40GHZ) 42 3 . POWER SPECTRAL DENSITY TEST 53 3.1 APPLIED PROCEDURES / LIMIT 53 3.2 TEST PROCEDURE 54 3.3 DEVIATION FROM STANDARD 54 3.4 TEST SETUP 54 3.5 EUT OPERATION CONDITIONS 54 3.6 TEST RESULTS 55 4 . 26DB & 99% EMISSION BANDWIDTH 56 4.1 APPLIED PROCEDURES / LIMIT 56 4.2 TEST PROCEDURE 56 4.3 EUT OPERATION CONDITIONS 57 4.4 TEST RESULTS 57 Report No.: S20061602406004 Version.1.2 Page 4 of 475 Table of Contents Page 5 . MINIMUM 6 DB BANDWIDTH 58 5.1 APPLIED PROCEDURES / LIMIT 58 5.2 TEST PROCEDURE 58 5.3 DEVIATION FROM STANDARD 58 5.4 TEST SETUP 58 5.5 EUT OPERATION CONDITIONS 58 5.6 TEST RESULTS 59 6 . MAXIMUM CONDUCTED OUTPUT POWER 60 6.1 PPLIED PROCEDURES / LIMIT 60 6.2 TEST RESULTS 62 7 . OUT OF BAND EMISSIONS 63 7.1 APPLICABLE STANDARD 63 7.2 TEST PROCEDURE 63 7.3 DEVIATION FROM STANDARD 63 7.4 TEST SETUP 63 7.5 EUT OPERATION CONDITIONS 64 7.6 TEST RESULTS 65 8. FREQUENCY STABILITY MEASUREMENT 66 8.1 LIMIT 66 8.2 TEST PROCEDURES 66 8.3 TEST SETUP LAYOUT 66 8.4 EUT OPERATION DURING TEST 66 8.5 TEST RESULTS 67 9. DYNAMIC FREQUENCY SELECTION(DFS) 79 9.1 APPLICABILITY OF DFS REQUIREMENTS 79 9.2 INTERFERENCE THRESHOLD VALUES, MASTER OR CLIENT INCORPORATING IN-SERVICE MONITORING 79 9.3 DFS RESPONSE REQUIREMENT VALUES 80 9.4 SHORT PULSE RADAR TEST WAVEFORMS 80 9.5 CALIBRATION SETUP AND DFS TEST RESULTS 81 9.6 CONDUCTED CALIBRATION SETUP 81 9.7 RADAR WAVEFORM CALIBRATION RESULT 82 9.8 IN-SERVICE MONITORING: CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME AND NON-OCCUPANCY PERIOD 83 9.9 RESULT OF CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME AND NON-OCCUPANCY PERIOD FOR CLIENT BEACON TEST 84 Report No.: S20061602406004 Version.1.2 Page 5 of 475 Table of Contents Page 10. ANTENNA REQUIREMENT 85 10.1 STANDARD REQUIREMENT 85 10.2 EUT ANTENNA 85 11. TEST RESULTS 86 5.2G: 86 11.1.1 DUTY CYCLE 86 11.1.2 MAXIMUM CONDUCTED OUTPUT POWER 101 11.1.3 OCCUPIED CHANNEL BANDWIDTH 102 11.1.4 MAXIMUM POWER SPECTRAL DENSITY LEVEL 131 11.1.5 BAND EDGE 146 11.1.6 CONDUCTED RF SPURIOUS EMISSION 159 5.3G: 174 11.2.1 DUTY CYCLE 174 11.2.2 MAXIMUM CONDUCTED OUTPUT POWER 189 11.2.3 OCCUPIED CHANNEL BANDWIDTH 190 11.2.4 MAXIMUM POWER SPECTRAL DENSITY LEVEL 219 11.2.5 BAND EDGE 234 11.2.6 CONDUCTED RF SPURIOUS EMISSION 246 5.6G: 261 11.3.1 DUTY CYCLE 261 11.3.2 MAXIMUM CONDUCTED OUTPUT POWER 279 11.3.3 OCCUPIED CHANNEL BANDWIDTH 280 11.3.4 MAXIMUM POWER SPECTRAL DENSITY LEVEL 315 11.3.5 BAND EDGE 333 11.3.6 CONDUCTED RF SPURIOUS EMISSION …
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Report No.: S20061602406004 Version.1.2 Page 151 of 475 Band Edge NVHT 802.11ac40 5230MHz High Ant 1 Band Edge NVNT 802.11ac40 5190MHz Low Ant 2 Report No.: S20061602406004 Version.1.2 Page 152 of 475 Band Edge NVNT 802.11ac40 5230MHz High Ant 2 Band Edge NVHT 802.11ac80 5210MHz High Ant 1 Report No.: S20061602406004 Version.1.2 Page 153 of 475 Band Edge NVHT 802.11ac80 5210MHz Low Ant 1 Band Edge NVNT 802.11ac80 5210MHz High Ant 2 Report No.: S20061602406004 Version.1.2 Page 154 of 475 Band Edge NVNT 802.11ac80 5210MHz Low Ant 2 Band Edge NVHT 802.11n(HT20) 5180MHz Low Ant 1 Report No.: S20061602406004 Version.1.2 Page 155 of 475 Band Edge NVHT 802.11n(HT20) 5240MHz High Ant 1 Band Edge NVNT 802.11n(HT20) 5180MHz Low Ant 2 Report No.: S20061602406004 Version.1.2 Page 156 of 475 Band Edge NVNT 802.11n(HT20) 5240MHz High Ant 2 Band Edge NVHT 802.11n(HT40) 5190MHz Low Ant 1 Report No.: S20061602406004 Version.1.2 Page 157 of 475 Band Edge NVHT 802.11n(HT40) 5230MHz High Ant 1 Band Edge NVNT 802.11n(HT40) 5190MHz Low Ant 2 Report No.: S20061602406004 Version.1.2 Page 158 of 475 Band Edge NVNT 802.11n(HT40) 5230MHz High Ant 2 Report No.: S20061602406004 Version.1.2 Page 159 of 475 11.1.6 CONDUCTED RF SPURIOUS EMISSION Condition Mode Frequency (MHz) Antenna Max Value (dBc) Limit (dBc) Verdict NVHT 802.11a 5180 Ant 1 -34.83 -27 Pass NVHT 802.11a 5200 Ant 1 -34.71 -27 Pass NVHT 802.11a 5240 Ant 1 -34.33 -27 Pass NVNT 802.11a 5180 Ant 2 -33.92 -27 Pass NVNT 802.11a 5200 Ant 2 -33.62 -27 Pass NVNT 802.11a 5240 Ant 2 -34.4 -27 Pass NVHT 802.11ac20 5180 Ant 1 -34.96 -27 Pass NVHT 802.11ac20 5200 Ant 1 -34.88 -27 Pass NVHT 802.11ac20 5240 Ant 1 -34.78 -27 Pass NVNT 802.11ac20 5180 Ant 2 -34.65 -27 Pass NVNT 802.11ac20 5200 Ant 2 -35.44 -27 Pass NVNT 802.11ac20 5240 Ant 2 -35.22 -27 Pass NVHT 802.11ac40 5190 Ant 1 -34.63 -27 Pass NVHT 802.11ac40 5230 Ant 1 -34.53 -27 Pass NVNT 802.11ac40 5190 Ant 2 -35.18 -27 Pass NVNT 802.11ac40 5230 Ant 2 -34.64 -27 Pass NVHT 802.11ac80 5210 Ant 1 -35.14 -27 Pass NVNT 802.11ac80 5210 Ant 2 -34.73 -27 Pass NVHT 802.11n(HT20) 5180 Ant 1 -34.89 -27 Pass NVHT 802.11n(HT20) 5200 Ant 1 -35.36 -27 Pass NVHT 802.11n(HT20) 5240 Ant 1 -34.83 -27 Pass NVNT 802.11n(HT20) 5180 Ant 2 -35.19 -27 Pass NVNT 802.11n(HT20) 5200 Ant 2 -35.39 -27 Pass NVNT 802.11n(HT20) 5240 Ant 2 -34.89 -27 Pass NVHT 802.11n(HT40) 5190 Ant 1 -34.66 -27 Pass NVHT 802.11n(HT40) 5230 Ant 1 -34.64 -27 Pass NVNT 802.11n(HT40) 5190 Ant 2 -34.52 -27 Pass NVNT 802.11n(HT40) 5230 Ant 2 -34.34 -27 Pass Tx. Spurious NVHT 802.11a 5180MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 160 of 475 Tx. Spurious NVHT 802.11a 5200MHz Ant 1 Emission Tx. Spurious NVHT 802.11a 5240MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 161 of 475 Tx. Spurious NVNT 802.11a 5180MHz Ant 2 Emission Tx. Spurious NVNT 802.11a 5200MHz Ant 2 Emission Report No.: S20061602406004 Version.1.2 Page 162 of 475 Tx. Spurious NVNT 802.11a 5240MHz Ant 2 Emission Tx. Spurious NVHT 802.11ac20 5180MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 163 of 475 Tx. Spurious NVHT 802.11ac20 5200MHz Ant 1 Emission Tx. Spurious NVHT 802.11ac20 5240MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 164 of 475 Tx. Spurious NVNT 802.11ac20 5180MHz Ant 2 Emission Tx. Spurious NVNT 802.11ac20 5200MHz Ant 2 Emission Report No.: S20061602406004 Version.1.2 Page 165 of 475 Tx. Spurious NVNT 802.11ac20 5240MHz Ant 2 Emission Tx. Spurious NVHT 802.11ac40 5190MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 166 of 475 Tx. Spurious NVHT 802.11ac40 5230MHz Ant 1 Emission Tx. Spurious NVNT 802.11ac40 5190MHz Ant 2 Emission Report No.: S20061602406004 Version.1.2 Page 167 of 475 Tx. Spurious NVNT 802.11ac40 5230MHz Ant 2 Emission Tx. Spurious NVHT 802.11ac80 5210MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 168 of 475 Tx. Spurious NVNT 802.11ac80 5210MHz Ant 2 Emission Tx. Spurious NVHT 802.11n(HT20) 5180MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 169 of 475 Tx. Spurious NVHT 802.11n(HT20) 5200MHz Ant 1 Emission Tx. Spurious NVHT 802.11n(HT20) 5240MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 170 of 475 Tx. Spurious NVNT 802.11n(HT20) 5180MHz Ant 2 Emission Tx. Spurious NVNT 802.11n(HT20) 5200MHz Ant 2 Emission Report No.: S20061602406004 Version.1.2 Page 171 of 475 Tx. Spurious NVNT 802.11n(HT20) 5240MHz Ant 2 Emission Tx. Spurious NVHT 802.11n(HT40) 5190MHz Ant 1 Emission Report No.: S20061602406004 Version.1.2 Page 172 of 475 Tx. Spurious NVHT 802.11n(HT40) 5230MHz Ant 1 Emission Tx. Spurious NVNT 802.11n(HT40) 5190MHz Ant 2 Emission Report No.: S20061602406004 Version.1.2 Page 173 of 475 Tx. Spurious NVNT 802.11n(HT40) 5230MHz Ant 2 Emission Report No.: S20061602406004 Version.1.2 Page 174 of 475 5.3G: 11.2.1 DUTY CYCLE Antenna Condition Mode Frequency (MHz) Duty Cycle (%) Ant 1 NVNT 802.11a 5260 100 Ant 1 NVNT 802.11a 5280 100 Ant 1 NVNT 802.11a 5320 100 Ant 2 NVNT 802.11a 5260 100 Ant 2 NVNT 802.11a 5280 100 Ant 2 NVNT 802.11a 5320 100 Ant 1 NVNT 802.11ac20 5260 100 Ant 1 NVNT 802.11ac20 5280 100 Ant 1 NVNT 802.11ac20 5320 100 Ant 2 NVNT 802.11ac20 5260 100 Ant 2 NVNT 802.11ac20 5280 100 Ant 2 NVNT 802.11ac20 5320 100 Ant 1 NVNT 802.11ac40 5270 100 Ant 1 NVNT 802.11ac40 5310 100 Ant 2 NVNT 802.11ac40 5270 100 Ant 2 NVNT 802.11ac40 5310 100 Ant 1 NVNT 802.11ac80 5290 100 Ant 2 NVNT 802.11ac80 5290 100 Ant 1 NVNT 802.11n(HT20) 5260 100 Ant 1 NVNT 802.11n(HT20) 5280 100 Ant 1 NVNT 802.11n(HT20) 5320 100 Ant 2 NVNT 802.11n(HT20) 5260 100 Ant 2 NVNT 802.11n(HT20) 5280 100 Ant 2 NVNT 802.11n(HT20) 5320 100 Ant 1 NVNT 802.11n(HT40) 5270 100 Ant 1 NVNT 802.11n(HT40) 5310 100 Ant 2 NVNT 802.11n(HT40) 5270 100 Ant 2 NVNT 802.11n(HT40) 5310 100 Duty Cycle NVNT 802.11a 5260MHz Ant 1 Report No.: S20061602406004 Version.1.2 Page 175 of 475 Duty Cycle NVNT 802.11a 5280MHz Ant 1 Duty Cycle NVNT 802.11a 5320MHz Ant 1 Report No.: S20061602406004 Version.1.2 …
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Report No.: S20061602406004 Version.1.2 Page 232 of 475 PSD NVNT 802.11n(HT40) 5310MHz Ant 1 PSD NVNT 802.11n(HT40) 5270MHz Ant 2 Report No.: S20061602406004 Version.1.2 Page 233 of 475 PSD NVNT 802.11n(HT40) 5310MHz Ant 2 Report No.: S20061602406004 Version.1.2 Page 234 of 475 11.2.5 BAND EDGE Condition Mode Frequency (MHz) Antenna Max Value (dBm) Limit (dBm) Verdict NVNT 802.11a 5260 Ant 1 -47.38 -27 Pass NVNT 802.11a 5320 Ant 1 -43.59 -27 Pass NVNT 802.11a 5260 Ant 2 -48.39 -27 Pass NVNT 802.11a 5320 Ant 2 -43.04 -27 Pass NVNT 802.11ac20 5260 Ant 1 -46.94 -27 Pass NVNT 802.11ac20 5320 Ant 1 -43.1 -27 Pass NVNT 802.11ac20 5260 Ant 2 -47.56 -27 Pass NVNT 802.11ac20 5320 Ant 2 -43 -27 Pass NVNT 802.11ac40 5270 Ant 1 -48.33 -27 Pass NVNT 802.11ac40 5310 Ant 1 -37.27 -27 Pass NVNT 802.11ac40 5270 Ant 2 -47.86 -27 Pass NVNT 802.11ac40 5310 Ant 2 -36.79 -27 Pass NVNT 802.11ac80 5290 Ant 1 -37.83 -27 Pass NVNT 802.11ac80 5290 Ant 2 -38.62 -27 Pass NVNT 802.11n(HT20) 5260 Ant 1 -47.6 -27 Pass NVNT 802.11n(HT20) 5320 Ant 1 -42.78 -27 Pass NVNT 802.11n(HT20) 5260 Ant 2 -47.74 -27 Pass NVNT 802.11n(HT20) 5320 Ant 2 -41.97 -27 Pass NVNT 802.11n(HT40) 5270 Ant 1 -48.45 -27 Pass NVNT 802.11n(HT40) 5310 Ant 1 -37.53 -27 Pass NVNT 802.11n(HT40) 5270 Ant 2 -46.92 -27 Pass NVNT 802.11n(HT40) 5310 Ant 2 -38.1 -27 Pass Band Edge NVNT 802.11a 5260MHz Low Ant 1 Report No.: S20061602406004 Version.1.2 Page 235 of 475 Band Edge NVNT 802.11a 5320MHz High Ant 1 Band Edge NVNT 802.11a 5260MHz Low Ant 2 Report No.: S20061602406004 Version.1.2 Page 236 of 475 Band Edge NVNT 802.11a 5320MHz High Ant 2 Band Edge NVNT 802.11ac20 5260MHz Low Ant 1 Report No.: S20061602406004 Version.1.2 Page 237 of 475 Band Edge NVNT 802.11ac20 5320MHz High Ant 1 Band Edge NVNT 802.11ac20 5260MHz Low Ant 2 Report No.: S20061602406004 Version.1.2 Page 238 of 475 Band Edge NVNT 802.11ac20 5320MHz High Ant 2 Band Edge NVNT 802.11ac40 5270MHz Low Ant 1 Report No.: S20061602406004 Version.1.2 Page 239 of 475 Band Edge NVNT 802.11ac40 5310MHz High Ant 1 Band Edge NVNT 802.11ac40 5270MHz Low Ant 2 Report No.: S20061602406004 Version.1.2 Page 240 of 475 Band Edge NVNT 802.11ac40 5310MHz High Ant 2 Band Edge NVNT 802.11ac80 5290MHz High Ant 1 Report No.: S20061602406004 Version.1.2 Page 241 of 475 Band Edge NVNT 802.11ac80 5290MHz High Ant 2 Band Edge NVNT 802.11n(HT20) 5260MHz Low Ant 1 Report No.: S20061602406004 Version.1.2 Page 242 of 475 Band Edge NVNT 802.11n(HT20) 5320MHz High Ant 1 Band Edge NVNT 802.11n(HT20) 5260MHz Low Ant 2 Report No.: S20061602406004 Version.1.2 Page 243 of 475 Band Edge NVNT 80…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 4 | 15E | 5.75 GHz - 5.83 GHz | 16.75 mW |

Pudu GW1
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Pudu HolaBot
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
PuduBot
Equipment Class
DTS - Digital Transmission System
KettyBot
Equipment Class
DTS - Digital Transmission System
Puductor2 Robot
Equipment Class
DTS - Digital Transmission System