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LDKJ98213058Wireless Phone

Cisco Systems Inc
Wireless Phone - FCC ID LDKJ98213058 - Cisco Systems Inc
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
May 25, 2026
Application Purpose
Original Equipment
Equipment Note
Wireless Phone
Frequency Range
2402.00000000 - 2480.00000000
Company
Cisco Systems Inc
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

CONFIDENTIAL DRAFT Cisco Wireless Phone 9821 User Guide CONFIDENTIAL DRAFT Chapter 1. Special Notes This User Guide contains information about the phone's hardware features, installation instructions, and available software features as to the time of file generation. Note: •The contents of this file are confidential. Do not distribute it until its official release. •The contents of this file are subject to change as the development progresses. CONFIDENTIAL DRAFT Chapter 2. Get started with your phone About Cisco Wireless Phone 9821 Cisco Wireless Phone 9821 is a 802.11 triple-band wireless device running Cisco Unified PhoneOS. It supports Cisco Unified Communications Manager (Unified CM), Webex Calling, and third-party call control platforms, offering flexibility to meet evolving business needs. This phone enables comprehensive voice communication over the same wireless LAN used by your computer, allowing you to place and receive calls, hold, transfer, and conduct conference calls seamlessly. Cisco Wireless Phone 9821 is a 802.11 triple-band wireless device running Cisco Unified PhoneOS. It supports Cisco Unified Communications Manager (Unified CM) and Webex Calling, offering flexibility to meet evolving business needs. This phone enables comprehensive voice communication over the same wireless LAN used by your computer, allowing you to place and receive calls, hold, and transfer calls seamlessly. Audio and codec support CONFIDENTIAL DRAFT Cisco Wireless Phone 9821 User Guide | 2 - Get started with your phone | 4 Cisco Wireless Phone 9821 supports a wide range of codecs, including G.711a, G.711u, G.722, G.722.2, G.729a, G.729ab, iLBC, iSAC, and OPUS. It also supports uncompressed wideband audio (16 bits, 16 kHz) for superior voice quality. Designed for demanding environments, Cisco Wireless Phone 9821 features AI- powered noise removal technology to ensure crystal-clear conversations even in noisy settings. Accessibility and physical features •Hearing aid compatible (HAC); however, it does not support TTY features. •The number 5 key includes tactile ridges for easy identification. •The physical characteristics include: ◦Shockproof and vibration-proof ◦IP54-rated for dust and water resistance ◦Tolerance of antibacterial wipes ◦Latex-free and lead-free ◦USB On-the-Go (OTG) 2.0 interface •A customizable red Action button allows quick access to critical functions. •Integrated man-down detection enhances safety for at-risk employees. •Compatibility with existing Cisco Wireless IP Phone 8821 desktop charger and multichargers, maximizing your investment and simplifying upgrades. Charge with a desktop charger for a single phone or a multicharger for up to six phones. For more information, see Accessories. For details about your phone specifications and features, see the Cisco Wireless Phone 9821 Data Sheet. Enhanced productivity features Beyond basic call handling, the phone supports advanced productivity features depending on configuration: •Bluetooth wireless headset support, including certain hands-free call capabilities. •Access to your phone number and corporate directory. •Access to network data, XML applications, and web-based services. •Online customization of phone features and services via the Cisco Unified Communications Self Care Portal . •Location reporting upon initial registration, with updates when the phone moves (for example, walking around a building) and periodic reports every 24 hours if stationary. For more information, see the Cisco Unified CM documentation and the administration articles in the Help Center. CONFIDENTIAL DRAFT Cisco Wireless Phone 9821 User Guide | 2 - Get started with your phone | 5 What's in the box The following items are bundled with your Cisco Wireless Phone 9821 (part number WP-9821-BUN-K9 and WP-9821-BUN-CN-K9). If any items are missing, contact your administrator. •Battery x 1 •Power adapter x 1 •Power adapter replacement plug x 1 •USB cable x 1 •Pointer card x 1, containing the links to the product help and compliance information Hardware and buttons Your wireless phone has many buttons and hardware features that you will use regularly. Use the following figures and tables to identify the important button and hardware features. Figure 1 . Cisco Wireless Phone 9821 front and right view CONFIDENTIAL DRAFT Cisco Wireless Phone 9821 User Guide | 2 - Get started with your phone | 6 Table 1. Hardware and buttons on the front and right side Number Hardware FeaturePurpose 1Indicator light (LED)Indicates the states of call, message, and the phone. •Steady amber: The phone is connected to the AC power source and the battery is charging. •Steady green: The phone is connected to the AC power source and the battery is fully charged. •Fast blinking amber: The phone may be in one of the following states: Incoming call, Remote incom­ ing call. •Fast blinking green: There is a voice message. When the phone is connected to the AC power source, the green light displays longer than when using only the battery. •Slow blinking green (every 2.5 seconds): The phone is operating on battery power and is registered to the wireless network within the service coverage area. The phone may be in one of the following states: Idle, Display off, Ongoing call, Call on hold, Remote in use, Remote on hold, Muted, Missed call. •Off: The phone has a network or SIP connection failure. Or, the phone is in a silent emergency call. 2ReceiverThe phone’s built-in receiver. 3Speaker buttonToggle the speaker mode on or off for the phone. When there is more than one audio path, press and hold for 3 seconds to change the audio path. 4Phone screen2.4" color screen (Resolution 240 x 320) CONFIDENTIAL DRAFT Cisco Wireless Phone 9821 User Guide | 2 - Get started with your phone | 7 Table 1. Hardware and buttons on the front and right side (continued) Number Hardware FeaturePurpose 5Action buttonPress the button to place a service call, such as an emer­ gency call, or to run a service application, if…

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RF Exposure Info

Report No.: BTL-FCC SAR-1-2601H016_Appendix A. Page 1 of 9 Test Laboratory: BTL Inc. (Dongguan) Date: 2026/3/6 System Check_H2450_0306 DUT: Dipole 2450 MHz D2450V2;SN:919; Communication System: UID 0, CW (0); Frequency: 2450 MHz; Duty Cycle: 1:1 Medium parameters used: f = 2450 MHz; σ = 1.834 S/m; ε r = 38.048; ρ = 1000 kg/m 3 Ambient Temperature:22.8 °C; Liquid Temperature:22.4 °C DASY Configuration: • Probe: EX3DV4 - SN7544; ConvF(7.63,7.63,7.63) @2450 MHz; Calibrated: 2025/6/19 • Sensor-Surface: 1.4mm (Mechanical Surface Detection), z = 1.0, 31.0 • Electronics: DAE4 Sn420; Calibrated: 2025/4/8 • Phantom: Twin-SAM V5.0 (30deg probe tilt); Type: QD000P40CB; Serial: TP:1469 • DASY52 52.10.4(1535); SEMCAD X 14.6.14(7501) Area Scan (8x9x1): Measurement grid: dx=12mm, dy=12mm Maximum value of SAR (measured) = 6.30 W/kg Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 70.31 V/m; Power Drift = -0.02 dB Peak SAR (extrapolated) = 11.1 W/kg SAR(1 g) = 5.28 W/kg; SAR(10 g) = 2.41 W/kg Smallest distance from peaks to all points 3 dB below = 9.3 mm Ratio of SAR at M2 to SAR at M1 = 48.2% Maximum value of SAR (measured) = 8.80 W/kg Report No.: BTL-FCC SAR-1-2601H016_Appendix A. Page 2 of 9 Test Laboratory: BTL Inc. (Dongguan) Date: 2026/4/15 System Check_H2450_0415 DUT: Dipole 2450 MHz D2450V2;SN:919; Communication System: UID 0, CW (0); Frequency: 2450 MHz; Duty Cycle: 1:1 Medium parameters used: f = 2450 MHz; σ = 1.846 S/m; ε r = 38.801; ρ = 1000 kg/m 3 Ambient Temperature:23.2 °C; Liquid Temperature:22.9 °C DASY Configuration: • Probe: EX3DV4-SN7544;ConvF(7.63, 7.63, 7.63) @ 2450 MHz; Calibrated: 2025/6/19 • Sensor-Surface: 1.4mm (Mechanical Surface Detection), z = 1.0, 31.0 • Electronics: DAE4 Sn1717; Calibrated: 2025/6/19 • Phantom: SAM Mid v5.0; Type: QD000P40CD; Serial: S/N:1896 • DASY52 52.10.4(1535); SEMCAD X 14.6.14(7501) Area Scan (8x9x1): Measurement grid: dx=12mm, dy=12mm Maximum value of SAR (measured) = 6.94 W/kg Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 69.35 V/m; Power Drift = 0.09 dB Peak SAR (extrapolated) = 10.8 W/kg SAR(1 g) = 5.18 W/kg; SAR(10 g) = 2.38 W/kg Smallest distance from peaks to all points 3 dB below = 9.3 mm Ratio of SAR at M2 to SAR at M1 = 48.9% Maximum value of SAR (measured) = 8.55 W/kg Report No.: BTL-FCC SAR-1-2601H016_Appendix A. Page 3 of 9 Measurement Report for System Check (2450.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] SN DUT Type Device, 50.0 x 10.0 x 8.0 919 D2450V2 Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid 5.00 CW, 0- 2450.000, 0 7.29 1.80 37.9 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Tw i n-SAM V8.0 (30deg probe tilt) - 2081 2300-2700MHz EX3DV4 - SN7693, 2025-11-26 DAE4 Sn1390, 2025-11-19 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 80.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 10.0 x 10.0 5.0 x 5.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Ye s Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-04-19 2026-04-19 psSAR1g [W/kg] 5.05 5.07 psSAR10g [W/kg] 2.44 2.41 Power Drift [dB] 0.01 -0.04 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 82.9 Dist 3dB Peak [mm] 9.9 Report No.: BTL-FCC SAR-1-2601H016_Appendix A. Page 4 of 9 Measurement Report for System Check (5250.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] SN DUT Type Device, 50.0 x 10.0 x 8.0 1160 D5GHzV2 Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid 5.00 CW, 0- 5250.000, 0 5.71 4.71 35.9 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Tw i n-SAM V8.0 (30deg probe tilt) - 2081 H4500-6500MHz EX3DV4 - SN7693, 2025-11-26 DAE4 Sn1390, 2025-11-19 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 80.0 22.0 x 22.0 x 22.0 Grid Steps [mm] 10.0 x 10.0 4.0 x 4.0 x 1.4 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Ye s Grading Ratio N/A 1.4 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-04-20 2026-04-20 psSAR1g [W/kg] 6.84 7.71 psSAR10g [W/kg] 2.08 2.24 Power Drift [dB] 0.00 -0.02 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 64.5 Dist 3dB Peak [mm] 7.4 Report No.: BTL-FCC SAR-1-2601H016_Appendix A. Page 5 of 9 Measurement Report for System Check (5600.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] SN DUT Type Device, 50.0 x 10.0 x 8.0 1160 D5GHzV2 Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid 5.00 CW, 0- 5600.000, 0 5.33 5.11 35.1 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Tw i n-SAM V8.0 (30deg probe tilt) - 2081 H4500-6500MHz EX3DV4 - SN7693, 2025-11-26 DAE4 Sn1390, 2025-11-19 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 80.0 22.0 x 22.0 x 22.0 Grid Steps [mm] 10.0 x 10.0 4.0 x 4.0 x 1.4 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Ye s Grading Ratio N/A 1.4 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-04-20 2026-04-20 psSAR1g [W/kg] 7.32 8.14 psSAR10g [W/kg] 2.13 2.31 Power Drift [dB] 0.00 0.02 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 60.9 Dist 3dB Peak [mm] 7.2 Report No.: BTL-FC…

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Test Setup Photos

Report No.: BTL-FCCP-1-2601H016 Report Version:R00 Page 28 of 101 11. EUT TEST PHOTO Radiated Emissions Test Photos 9 kHz to 30 MHz Report No.: BTL-FCCP-1-2601H016 Report Version:R00 Page 29 of 101 Radiated Emissions Test Photos 30 MHz to 1 GHz Report No.: BTL-FCCP-1-2601H016 Report Version:R00 Page 30 of 101 Radiated Emissions Test Photos 1 GHz to 18 GHz Report No.: BTL-FCCP-1-2601H016 Report Version:R00 Page 31 of 101 Radiated Emissions Test Photos 18 GHz to 40 GHz Report No.: BTL-FCCP-1-2601H016 Report Version:R00 Page 32 of 101 AC Power Line Conducted Emissions Test Photos

Test Report

Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 1 of 88 FCC Radio Test Report FCC ID: LDKJ98213058 This report concerns: Original Grant Project No. : 2601H016 Equipment : Wireless Phone Brand Name : CISCO Model Name : WP-9821 Applicant : Cisco Systems, Inc. Address : 125 West Tasman Dr. Bldg. P ,San Jose CA 95134 Manufacturer : Cisco Systems, Inc. Address : 125 West Tasman Dr. Bldg. P ,San Jose CA 95134 Date of Receipt : Jan. 19, 2026 Date of Test : Jan. 20, 2026~ Apr. 22, 2026 Issued Date : Apr. 27, 2026 Test Sample : Engineering Sample No.: SH920260119490 Standard(s) : FCC CFR Title 47, Part 15, Subpart C The above equipment has been tested and found compliance with the requirement of the relative standards by BTL Inc. (Shanghai) Prepared by : Grani Zhou Approved by : Riley Wei Add: No. 29, Jintang Road, Tangzhen Industry Park, Pudong New Area, Shanghai 201210, People’s Republic of China. Tel: +86-021-61765666 Web: www.newbtl.com Service mail: [email protected] Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 2 of 88 Declaration BTL represents to the client that testing is done in accordance with standard procedures as applicable and that test instruments used has been calibrated with standards traceable to international standard(s) and/or national standard(s). BTL's reports apply only to the specific samples tested under conditions. It is manufacture’s responsibility to ensure that additional production units of this model are manufactured with the identical electrical and mechanical components. BTL assumes no responsibility for the data provided by the customer, any statements, inferences or generalizations drawn by the customer or others from the reports issued by BTL. The report must not be used by the client to claim product certification, approval, or endorsement by A2LA or any agency of the U.S. Government. This report is the confidential property of the client. As a mutual protection to the clients, the public and ourselves, the test report shall not be reproduced, except in full, without our written approval. BTL’s laboratory quality assurance procedures are in compliance with the ISO/IEC 17025: 2017 requirements, and accredited by the conformity assessment authorities listed in this test report. BTL is not responsible for the sampling stage, so the results only apply to the sample as received. The information, data and test plan are provided by manufacturer which may affect the validity of results, so it is manufacturer’s responsibility to ensure that the apparatus meets the essential requirements of applied standards and in all the possible configurations as representative of its intended use. Limitation For the use of the authority's logo is limited unless the Test Standard(s)/Scope(s)/Item(s) mentioned in this test report is (are) included in the conformity assessment authorities acceptance respective. Please note that the measurement uncertainty is provided for informational purpose only and are not use in determining the Pass/Fail results. Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 3 of 88 Table of Contents Page REPORT ISSUED HISTORY 6 1 . APPLICABLE STANDARDS 7 2 . SUMMARY OF TEST RESULTS 7 2.1 TEST FACILITY 8 2.2 MEASUREMENT UNCERTAINTY 8 2.3 TEST ENVIRONMENT CONDITIONS 8 3 . GENERAL INFORMATION 9 3.1 GENERAL DESCRIPTION OF EUT 9 3.2 DESCRIPTION OF TEST MODES 11 3.3 PARAMETERS OF TEST SOFTWARE 12 3.4 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 13 3.5 SUPPORT UNITS 13 3.6 CUSTOMER INFORMATION DESCRIPTION 13 4 . AC POWER LINE CONDUCTED EMISSIONS 14 4.1 LIMIT 14 4.2 TEST PROCEDURE 14 4.3 DEVIATION FROM TEST STANDARD 14 4.4 TEST SETUP 15 4.5 EUT OPERATING CONDITIONS 15 4.6 TEST RESULTS 15 5 . RADIATED EMISSIONS 16 5.1 LI MIT 16 5.2 TEST PROCEDURE 17 5.3 DEVIATION FROM TEST STANDARD 18 5.4 TEST SETUP 18 5.5 EUT OPERATING CONDITIONS 19 5.6 TEST RESULTS - 9 KHZ TO 30 MHZ 19 5.7 TEST RESULTS - 30 MHZ TO 1000 MHZ 19 5.8 TEST RESULTS - ABOVE 1000 MHZ 19 6 . NUMBER OF HOPPING FREQUENCY 20 6.1 LIMIT 20 6.2 TEST PROCEDURE 20 6.3 DEVIATION FROM STANDARD 20 Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 4 of 88 Table of Contents Page 6.4 TEST SETUP 20 6.5 EUT OPERATION CONDITIONS 20 6.6 TEST RESULTS 20 7 . AVERAGE TIME OF OCCUPANCY 21 7.1 LIMIT 21 7.2 TEST PROCEDURE 21 7.3 DEVIATION FROM STANDARD 21 7.4 TEST SETUP 21 7.5 EUT OPERATION CONDITIONS 21 7.6 TEST RESULTS 21 8 . HOPPING CHANNEL SEPARATION 22 8.1 LIMIT 22 8.2 TEST PROCEDURE 22 8.3 DEVIATION FROM STANDARD 22 8.4 TEST SETUP 22 8.5 EUT OPERATION CONDITIONS 22 8.6 TEST RESULTS 22 9 . BANDWIDTH 23 9.1 LIMIT 23 9.2 TEST PROCEDURE 23 9.3 DEVIATION FROM STANDARD 23 9.4 TEST SETUP 23 9.5 EUT OPERATION CONDITIONS 23 9.6 TEST RESULTS 23 10 . MAXIMUM OUTPUT POWER 24 10.1 LIMIT 24 10.2 TEST PROCEDURE 24 10.3 DEVIATION FROM STANDARD 24 10.4 TEST SETUP 24 10.5 EUT OPERATION CONDITIONS 24 10.6 TEST RESULTS 24 11 . CONDUCTED SPURIOUS EMISSION 25 11.1 LIMIT 25 11.2 TEST PROCEDURE 25 Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 5 of 88 Table of Contents Page 11.3 DEVIATION FROM STANDARD 25 11.4 TEST SETUP 25 11.5 EUT OPERATION CONDITIONS 25 11.6 TEST RESULTS 25 12 . MEASUREMENT INSTRUMENTS LIST 26 13 . EUT TEST PHOTO 29 APPENDIX A - AC POWER LINE CONDUCTED EMISSIONS 34 APPENDIX B - RADIATED EMISSION - 9 KHZ TO 30 MHZ 37 APPENDIX C - RADIATED EMISSION - 30 MHZ TO 1000 MHZ 42 APPENDIX D - RADIATED EMISSION - ABOVE 1000 MHZ 45 APPENDIX E - NUMBER OF HOPPING FREQUENCY 68 APPENDIX F - AVERAGE TIME OF OCCUPANCY 70 APPENDIX G - HOPPING CHANNEL SEPARATION 75 APPENDIX H - BANDWIDTH 77 APPENDIX I - MAXIMUM OUTPUT POWER 79 APPENDIX J - CONDUCTED SPURIOUS EMISSION 83 APPENDIX K - DECLARATION FOR BLUETOOTH DEVICE 86 Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 6 of 88 REPORT ISSUED HISTORY Report No. Version Description Issued Date Note BTL-FCCP-5-2601H016 R00 Original Report. Apr. 27, 2026 Invalid Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 7 of 88 1. APPLICABLE STANDARDS Accordi…

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Test Report

CiscoJupiterantennatuningreport August-19.2025 Amphenol Confidential VersionDescriptionDate V1.0Original antenna performance2025-03-28 V1.1Fine-tuned antenna based on previous version device2025-04-24 V2.0Antenna passive performance basedon P0 device2025-08-01 V2.1Add active performance2025-08-07 V2.2Update 3 rd party TRP test results2025-08-19 AmphenolReport history AmphenolTestsetup E5071CVNA(100KHz-8500MHz) AmphenolConfidential Test fixture AlltheS-parameterisgottenbytheKeysightE5071CVNA. FrontsideRearside Amphenol|Antennaperformance—S11 & efficiency & Peak Gain (previous report) AmphenolConfidential AntennaEfficiency AntennaS11 Efficiency.%Efficiency.dBGain.dB 240052.7-2.81.5 242052.7-2.81.5 244053.9-2.71.5 246057.2-2.41.8 248058.6-2.31.9 250059.6-2.32.0 515053.6 -2.72.0 525052.7 -2.81.7 535051.1 -2.92.2 545051.5 -2.93.5 555050.8 -2.93.5 565051.4 -2.93.2 575052.0 -2.83.0 585049.8 -3.02.1 592549.4 -3.11.6 600047.5 -3.21.4 610048.8 -3.12.2 620045.3 -3.42.2 630043.2 -3.70.4 640042.7 -3.71.0 650044.4 -3.51.4 660045.3 -3.42.2 670046.9 -3.32.6 680047.6 -3.23.2 690048.1 -3.23.1 700045.6 -3.42.5 712548.3 -3.22.5 -3.0 -2.0 -1.0 0.0 1.0 2.0 3.0 4.0 5.0 240024202440246024802500515052505350545055505650575058505925600061006200630064006500660067006800690070007125 Peak Gain.dB Frequency.MHz Antenna Peak Gain.dB P0 device -7.0 -6.0 -5.0 -4.0 -3.0 -2.0 -1.0 0.0 240024202440246024802500515052505350545055505650575058505925600061006200630064006500660067006800690070007125 Efficiency.dB Frequency.MHz Antenna Efficiency.dB P0 device AntennaPeak Gain Amphenol|Antennaperformance comparison (previous report) AmphenolConfidential AntennaEfficiency Comparison -7.0 -6.0 -5.0 -4.0 -3.0 -2.0 -1.0 0.0 240024202440246024802500515052505350545055505650575058505925600061006200630064006500660067006800690070007125 Efficiency.dB Frequency.MHz Antenna Efficiency Comparison (dB) Previous deivceP0 device Antenna Efficiency(dB) Comparison Previous deivceP0 deviceDelta.dB 2400-3.6-2.80.8 2420-3.6-2.80.8 2440-3.5-2.70.8 2460-3.3-2.40.9 2480-3.4-2.31.1 2500-3.6-2.31.3 5150-2.6-2.7-0.1 5250-2.7-2.8-0.1 5350-2.7-2.9-0.2 5450-2.8-2.9-0.1 5550-2.9-2.90.0 5650-3.0-2.90.1 5750-2.7-2.8-0.2 5850-2.7-3.0-0.4 5925-3.0-3.10.0 6000-3.4-3.20.1 6100-3.1-3.10.0 6200-3.0-3.4-0.5 6300-3.0-3.7-0.6 6400-3.3-3.7-0.4 6500-3.6-3.50.1 6600-3.6-3.40.1 6700-3.5-3.30.2 6800-3.4-3.20.2 6900-3.4-3.20.2 7000-3.6-3.40.2 7125-3.4-3.20.2 We compared the passive performance of the P0 device with that of the previous device. For the 2.4GHz part, the efficiency of the P0 device is about 1db higher than that of the previous. For the 5GHz&6GHz parts, the overall efficiency of the P0 device is close to that of the previous one. Amphenol|Antennaperformance—2D radiation pattern (previous report) AmphenolConfidential Theta=90degPhi=0degPhi=90deg Amphenol|Antennaperformance—3D radiation pattern (previous report) AmphenolConfidential 2440MHz5550MHz6500MHz Amphenol|Antennaperformance—Active (08.19 updated) AmphenolConfidential We updated the 3 rd party TRP test results of 5GHz and 6GHz band, it seems the TRP is ok. 802.11b (Data rate 11M) (test in SAA Lab)802.11an (HT20_MCS7) (test in 3 rd party lab) ChannelCH1CH7CH13ChannelCH36CH100CH149 Frequency241224422472Frequency518055005745 TRP15.4 15.8 16.0 TRP10.8 10.2 10.6 802.11AX (HT20_HE11)(test in 3 rd party lab) ChannelCH6G1CH6G97CH6G117CH6G185 Frequency5955643565356875 TRP8.07.19.26.3 for PLM 1 2 3 4 5 6 7 8 A B CD 1 2 3 4 5 6 7 8 A B CD 7.900.15 9.42 0.15 10.92 0.20 REV DESCRIPTION DATE BY Draft Draft Release. 2025-04-23 Karson D THE DRAWING AND INFORMATION THEREWITH ARE PROPRIETA RY TO SAA,AND SHALL NOT BE DISCUSSED IN WHOLE OR PA RT WITHOUT SAA'S CONSENT MATERIAL: Shanghai Amphenol Airwave Communication Electronics Co.,Ltd TREATMENT: 0.30 mm1 Unit:mm Scale: PART OCJ112-11-000-R PROJECT: DESIGN: VERIFY: NUMBER: P146 EE/ME: CHECK: PART WIFI ANT A3 SHEET 1/1 DATE: 2014-03-12 SHEET: 125 NAME: NO. PART NUMBER NAME USAGE 1 R-J112-11-000-47 CARRIER 12 R-J112-11-000-46 STAMPING 1 NOTES:1. C - INDICATE A CRITICAL DIMENSION. * - CRITICAL DIMENSION NEED TO CALCULATE CPK WH EN PART APPROVAL,CPK>1.33. A - CRITICAL DIMENSION NEED TO CALCULATE CPK WHE N PART APPROVAL,CPK>1.33, NEED CONTROL SPC IN MP. "()"-INDICATE A SUPPLEMENT DIMENSION,ONLY FOR REF ERENCE. 2. ANY UN-SPECIFIED DIMENSION REFERS TO CAD DRAWING. 3. PARTS MUST BE CLEANED AND DEGREASED. 4. THE PRODUCTS MUST COMPLY WITH SAA RESTRICTED SUBSTANCE S CONTROL REQUIREMENT:SAA/E-Z-01 LATEST VERSION. BASICALLY MEET ROHS, HALOGEN FREE AND REACH. DETAI L SEE THE STANDARD. 5. SURFACE INSPECTED REQUIREMENT:ACCORDING TO SAA/Q-S07 -01 LATEST VERSION. 6. RELIABILITY TEST REQUIREMENT: ACCORDING TO SAA/Q-S0 7-10 LATEST VERSION AS DEFAULT. 7. IF WITH CONNECTOR, ITS RELATED DIMENSION AND UNMAT ING FORCE, MEASURE ACCORDING TO SAA/R-Q00-17 LATEST VE RSION. C 1 2 Thanks

Test Report

Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 80 of 88 Test Mode TX Mode _1Mbps Channel Frequency (MHz) Output Power (dBm) Max. Limit (dBm) Max. Limit (W) Test Result 00 2402 6.36 20.97 0.1250 Pass 39 2441 6.45 20.97 0.1250 Pass 78 2480 6.98 20.97 0.1250 Pass CH00 CH39 CH78 Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 81 of 88 Test Mode TX Mode _2Mbps Channel Frequency (MHz) Output Power (dBm) Max. Limit (dBm) Max. Limit (W) Test Result 00 2402 8.53 20.97 0.1250 Pass 39 2441 9.38 20.97 0.1250 Pass 78 2480 9.64 20.97 0.1250 Pass CH00 CH39 CH78 Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 82 of 88 Test Mode TX Mode _3Mbps Channel Frequency (MHz) Output Power (dBm) Max. Limit (dBm) Max. Limit (W) Test Result 00 2402 9.08 20.97 0.1250 Pass 39 2441 9.82 20.97 0.1250 Pass 78 2480 10.08 20.97 0.1250 Pass Note: Output power = Measure result + Cable loss CH00 CH39 CH78 Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 83 of 88 APPENDIX J - CONDUCTED SPURIOUS EMISSION Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 84 of 88 Test Mode TX Mode _1Mbps Bandedge CH00 (Lower) Bandedge CH78 (Upper) Hopping on mode (Lower) Hopping on mode (Upper) CH00 – 10th Harmonic of the fundamental frequency CH39 – 10th Harmonic of the fundamental frequency CH78 – 10th Harmonic of the fundamental frequency Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 85 of 88 Test Mode TX Mode _3Mbps Bandedge CH00 (Lower) Bandedge CH78 (Upper) Hopping on mode (Lower) Hopping on mode (Upper) CH00 – 10th Harmonic of the fundamental frequency CH39 – 10th Harmonic of the fundamental frequency CH78 – 10th Harmonic of the fundamental frequency Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 86 of 88 APPENDIX K - DECLARATION FOR BLUETOOTH DEVICE Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 87 of 88 1. Output power and channel separation of a Bluetooth device in the different operating modes: The different operating modes (data-mode, acquisition-mode) of a Bluetooth device has no influence on the output power and the channel spacing. There is only one transmitter which is driven by identical input parameters concerning these two parameters. Only a different hopping sequence will be used. For this reason the check of these RF parameters in one op-mode is sufficient. 2. Frequency range of a Bluetooth device: Hereby we declare that the maximum frequency of this device is: 2402 - 2480MHz. This is according to the Bluetooth Core Specification (+ critical errata) for devices which will be operated in the USA. This was checked during the Bluetooth Qualification tests (Test Case: TRM/CA/04-E). Other frequency ranges (e.g. for Spain, France, Japan) which are allowed according the Core Specification are not supported by this device. 3. Co-ordination of the hopping sequence in data mode to avoid simultaneous occupancy by multiple transmitters: Bluetooth units which want to communicate with other units must be organised in a structure called piconet. This piconet consist of max. 8 Bluetooth units. One unit is the master the other seven are the slaves. The master co-ordinates frequency occupation in this piconet for all units. As the master hop sequence is derived from its BD address which is unique for each Bluetooth device, additional masters intending to establish new piconets will always use different hop sequences. 4. Example of a hopping sequence in data mode: Example of a 79 hopping sequence in data mode: 40, 21, 44, 23, 42, 53, 46, 55, 48, 33, 52, 35, 50, 65, 54, 67, 56, 37, 60, 39, 58, 69, 62, 71, 64, 25, 68, 27, 66, 57, 70, 59, 72, 29, 76, 31, 74, 61, 78, 63, 01, 41, 05, 43, 03, 73, 07, 75, 09, 45, 13, 47, 11, 77, 15, 00, 64, 49, 66, 53, 68, 02, 70, 06, 01, 51, 03, 55, 05, 04 5. Equally average use of frequencies in data mode and behaviour for short transmissions: The generation of the hopping sequence in connection mode depends essentially on two input values: a) LAP/UAP of the master of the connection. b) Internal master clock. The LAP (lower address part) are the 24 LSB’s of the 48 BD_ADDRESS. The BD_ADDRESS is an unambiguous number of every Bluetooth unit. The UAP (upper address part) are the 24 MSB’s of the 48 BD_ADDRESS. The internal clock of a Bluetooth unit is derived from a free running clock which is never adjusted and is never turned off. For synchronisation with other units only offset are used. It has no relation to the time of the day. Its resolution is at least half the RX/TX slot length of 312.5 μs. The clock has a cycle of about one day (23h30). In most case it is implemented as 28 bit counter. For the deriving of the hopping sequence the entire. LAP (24 bits), 4 LSB’s (4 bits) (Input 1) and the 27 MSB’s of the clock (Input 2) are used. With this input values different mathematical procedures (permutations, additions, XOR- operations) are performed to generate the sequence. This will be done at the beginning of every new transmission. Regarding short transmissions the Bluetooth system has the following behaviour: The first connection between the two devices is established, a hopping sequence was generated. For transmitting the wanted data the complete hopping sequence was not used. The connection ended. The second connection will be established. A new hopping sequence is generated. Due to the fact that the Bluetooth clock has a different value, because the period between the two transmission is longer (and it cannot be shorter) than the minimum resolution of the clock (312.5 μs). The hopping sequence will always differ from the first one. Report No.:BTL-FCCP-5-2601H016 Report Version:R00 Page 88 of 88 6. Receiver input bandwidth and behaviour for repeated single or multiple packets: The input bandwidth of the receiver is 1 MHz. In every connection one Bluetooth device is the master and the other one is the slave. The master determines the hopping sequence (see chapter 5). The slave follows this sequence. Both devices shift between RX and TX time slot according t…

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RF Exposure Info

Dipole Internal Calibration Record Asset No. : E-434 Model No. : D2450V2 Serial No. : 919 Environmental 22.5 °C, 57 % Original Cal.Date: April 22, 2024 Next Cal. Date : April 22, 2027 Standard List 1 IEC/IEEE 62209 -1528:2020 Measurement Procedure For The Assessment Of Specific Absorption Rate Of Human Exposure To Radio Frequency Fields From Hand -Held And Body -Worn Wireless Communication Devices - Part 1528:Human Models,Instrumentation And Procedures(Frequency Range of 4 MHz to 10GHz) 2KDB865664SAR Measurement Requirements for 100 MHz to 6 GHz Equipment Inf…

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Contact Information

Applicant

Samuel Kim(Manager, Engineering)
[email protected]Fax: 408-527-1446

Technical Contact

Cisco Systems IncSamuel Kim
[email protected]

125 West Tasman Drive · San Jose, California, 95134-1706 · United States

Test Firm

BTL Inc. (Shanghai)Riley Wei
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz10.20 mW
Confidentiality
Long Term
Grant Notes
RF output power is conducted. The antenna(s) used for this transmitter must not be co-located with any other transmitters, except in accordance with FCC multi-transmitter product procedures. SAR compliance for body-worn operating conditions is restricted to belt clips, holsters or similar accessories that have no metallic component in the assembly and must provide a minimum separation distance of 5 mm between the device and the body. End-users must be informed of the body-worn operating requirements for satisfying RF exposure compliance. The highest reported standalone 1g SAR for head and body (separation 5 mm) exposure conditions are 0.17 W/kg and 0.12 W/kg respectively.

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