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HD5-CT37X1Nmobile computer

Honeywell International Inc

Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 08, 2024
Application Purpose
Original Equipment
Date of Application
Nov 04, 2024
Equipment Note
mobile computer
Frequency Range
2412.00000000 - 2462.00000000
Company
Honeywell International Inc
Country
United States

Documents & Files

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Attestation Statements

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Cover Letter(s)

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ID Label/Location Info

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RF Exposure Info

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Test Report

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Document Text

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

Attestation Statements

Honeywell International Inc Federal Communications Commission Date: October 29, 2024 7435 Oakland Mills Road Columbia, MD 21046 Subject: Attestation to FCC HAC Waiver DA 23-914 FCC ID: HD5-CT37X1N, Model No: CT37X1N To Whom It May Concern, We are certifying the HAC Compliance of FCC ID: HD5-CT37X1N under the ANSI C63.19-2019, and the Volume Control performance is assessed under the condition of the limited-term waiver DA 23-914. We attest that, the package label is compliance with 47 CFR 20.19(f)(1) and states the actual conversational gain obtained under the waiver for the passing codecs demonstrated in section 2.a. and 2.b. of KDB 285076 D05 HAC Wavier and for the lowest conversational gain achieved for each 2N and 8N. Sincerely, Cindy Jiang [email protected]

Attestation Statements

Honeywell International Inc Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 Date: October 29, 2024 Subject: Certifications concerning “covered” equipment pursuant to Part 2.911(d)(5)(i) and (ii) To whom it may concern, Honeywell International Inc certifies that the equipment FCC ID: HD5-CT37X1N for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Honeywell International Inc certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List (as a specifically named entity or any of its subsidiaries or affiliates) published on September 03, 2024 by Public Safety and Homeland Security Bureau (PSHSB) per Section 1.50002 of the Commission’s rules, as an entity producing “covered” equipment. Sincerely, ________________________ Name: Cindy Jiang E-mail: [email protected]

Attestation Statements

Honeywell International Inc Rev 1/26/2023 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: July 17, 2024 Ref: Attestation Statements Part 2.911(d)(7) Filing Grantee code: HD5 Honeywell International Inc certifies that, as of the date of the filing of the application, we designate ourselves as the U.S. agent for service of process. Designated U.S. Agent Information: FRN: 0022970339 Name: Honeywell International Inc Address: 9680 Old Bailes Rd, Fort Mill, South Carolina, United States 29707 Contact Person: Cindy Jiang Tel.: +86(512)82258162 Email: [email protected] Sincerely, Contact: Cindy Jiang E-mail: [email protected]

Cover Letter(s)

Federal Communications CommissionDA 23-914 Before the Federal Communications Commission Washington, D.C. 20554 In the Matter of Amendment of the Commission’s Rules Governing Standards for Hearing Aid-Compatible Handsets ) ) ) ) WT Docket No. 20-3 ORDER Adopted: September 29, 2023Released: September 29, 2023 By the Chief, Wireless Telecommunications Bureau: I.INTRODUCTION 1.Today we grant a limited waiver of section 20.19(b)(1) and (b)(3) of the Commission’s wireless hearing aid compatibility rules with respect to the volume control technical standard that handset manufacturers use in part to certify handsets as hearing aid-compatible under the 2019 ANSI Standard. 1 Our action is prompted by a request filed by the Alliance for Telecommunications Industry Solutions (ATIS) seeking waiver of certain aspects of these rules. 2 Under the terms of the time-limited waiver we grant today, a handset may be certified as hearing aid-compatible under the 2019 ANSI Standard if it meets the volume control testing requirements described in this Order as well as all other aspects of the 2019 ANSI Standard. 2.Consistent with ATIS’s September 12, 2023, ex parte letter (ATIS Ex Parte Letter) and as a condition of this waiver, we require a handset to pass the conversational gain test at the 2 Newton (N) force level on all available narrowband and wideband codecs and air interface combinations. 3 With respect to the 8N force level test, we agree with the ATIS Ex Parte Letter that this test should be performed, and we waive the requirement that a handset achieve at least an 18 dB conversational gain. 4 This waiver is conditioned on manufacturers performing the 8N force level test using the same testing parameters that we are requiring for the 2N force level test and to place on the handset’s package label the resulting conversational gain (even if it is below 18 dB) in a manner consistent with our existing hearing aid compatibility labeling rules. 3.With respect to the related receive distortion and noise performance (distortion/noise) and receive acoustic frequency response performance (frequency response) tests, we agree with the ATIS Ex Parte Letter that handsets must pass testing using at least one narrowband and one wideband codec of the 1 The 2019 ANSI Standard refers to the technical document entitled Accredited Standards Committee C63®– Electromagnetic Compatibility, American National Standard Methods of Measurement of Compatibility Between Wireless Communications Devices and Hearing Aids, ANSI C63.19-2019 (approved Aug. 19, 2019) (2019 ANSI Standard). 2 Petition of ATIS on Behalf of the Covered Entities of the Hearing Aid Compatibility Task Force for Limited, Interim Waiver, WT Docket Nos. 15-285 and 20-3 (filed Dec. 16, 2022) (ATIS Waiver Petition). ATIS filed its waiver petition on behalf of all manufacturers and service providers subject to section 20.19(b)(1) and (b)(3) of the Commission’s wireless hearing aid compatibility rules. Id. at 1, 4. 3 Letter from Thomas Goode, General Counsel, ATIS, to Marlene H. Dortch, Secretary, FCC, WT Docket Nos. 15- 285 and 20-3, at 2 (filed Sept. 12, 2023) (ATIS Ex Parte Letter); see also ATIS Waiver Petition at 4, 12-13. Below we explain the conversational gain test. See infra para. 9. 4 ATIS Ex Parte Letter at 2. Originally, ATIS had proposed to waive the entire 8N force level test. ATIS Waiver Petition at 10-11, 13. Federal Communications CommissionDA 23-914 2 manufacturer’s choosing. 5 We also accept ATIS’s suggestion that at least one narrowband and one wideband codec must pass testing for distortion/noise and frequency response and tests will be limited to one bit rate and only with those air interfaces associated with the chosen codecs and that the other codecs used for conversational gain at the 2N and 8N force levels are not required to undergo the distortion/noise and frequency response tests. 6 Further, as detailed below, we accept ATIS’s suggested method to set the volume control setting for testing these other codecs for conversational gain. 7 4.By taking these steps, we ensure that when the exclusive use transition period ends on December 5, 2023, new handset models can be certified as hearing aid-compatible using the 2019 ANSI Standard as modified by the conditions established in this Order. 8 Our actions allow consumers with hearing loss who use hearing aids or cochlear implants to benefit from wider availability of handsets offering improved hearing aid compatibility under the 2019 ANSI Standard’s radio frequency (RF) interference and inductive coupling requirements. In addition, our approach gives consumers assurance that a handset’s amplifier/speaker combination will provide improved volume control functionality over narrowband and wideband modes of voice communications, and that consumers have the information that they need to make informed purchasing decisions. Our actions today will move us closer to the Commission’s goal of reaching 100% hearing aid compatibility for wireless handsets, while also creating a path forward for testing to ensure that handsets have volume control capabilities. 9 5.This waiver is effective immediately upon release of this Order so that manufacturers may afford the benefits of this relief to consumers with hearing loss as soon as feasible. In reliance upon ATIS’s representations that efforts are underway to expeditiously develop a new volume control standard through the TIA standards setting process, we limit this waiver to a two-year period. 10 During this waiver period, we will evaluate the effectiveness of the waiver standard in meeting the needs of consumers with hearing loss and take action where appropriate. We expect that a two-year time limitation for the waiver will encourage all interested parties to work together to rapidly develop an improved volume control standard that we can incorporate into our rules in the future. To ensure this outcome, we condition this waiver in part on ATIS filing a status lett…

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Cover Letter(s)

Honeywell International Inc Declaration - MIF for HAC RF Interference Evaluation To whom it may concern: This device, with FCC ID: HD5-CT37X1N, Hearing Aid Compatibility Requirement is going to be certified under ANSI C63.19 2019 version per Part 20.19. The interference to comply with C63.19-2019 Clause 4 Evaluation of WDRF interference potential. The MIF values below for the worst-case operation mode for all air interfaces are pre-determined values provided by Speag. UID Communication System Name MIF(dB) 10021 GSM-FDD(TDMA,GMSK) 3.63 10025 EDGE-FDD (TDMA, 8PSK, TN 0) 3.75 10460 UMTS-FDD(WCDMA, AMR) -25.43 10225 UMTS-FDD (HSPA+) -20.39 10170 LTE-FDD(SC-FDMA,1RB,20MHz,16-QAM) -9.76 10173 LTE-TDD (SC-FDMA, 1 RB, 20 MHz, 16-QAM) -1.44 10769 5G NR (CP-OFDM, 1 RB, 15 MHz, QPSK, 15 kHz) -12.08 10973 5G NR (DFT-s-OFDM, 1 RB, 100 MHz, QPSK, 30 kHz) -1.64 10061 IEEE 802.11b WiFi 2.4 GHz (DSSS, 11 Mbps) -2.02 10077 IEEE 802.11g WiFi 2.4 GHz (DSSS/OFDM, 54 Mbps) 0.12 10427 IEEE 802.11n (HT Greeneld, 150 Mbps, 64-QAM) -13.44 10069 IEEE 802.11a/h WiFi 5 GHz (OFDM, 54 Mbps) -3.15 10616 IEEE 802.11ac WiFi (40MHz, MCS0, 90pc duty cycle) -5.57 10671 IEEE 802.11ax (20MHz, MCS0, 90pc duty cycle) -5.58 11026 IEEE 802.11be (320MHz, MCS0, 99pc duty cycle) -28.73 We confirmed that the Speag simulation provided represents all the air interface modes applicable for this handset. Sincerely, Cindy Jiang [email protected]

Cover Letter(s)

Honeywell International Inc. Date: October 29, 2024 Federal Communications Commission Office of Engineering and Technology Laboratory Division 7435 Oakland Mills Rd Columbia MD 21046-1609 Subject: Request for Confidentiality FCC ID: HD5-CT37X1N To Whom It May Concern, Pursuant to the provisions of Sections 0.457 and 0.459 of Commission’s rules (47CFR§§0.457, 0.459), we are requesting the Commission to withhold the following attachment(s) as confidential document from public disclosure indefinitely.  Block Diagram  Schematic Diagram  Part List  Operation Description  Tune-up Procedure Above mentioned document contains detailed system and equipment description are considered as proprietary information in operation of the equipment. The public disclosure of above documents might be harmful to our company and would give competitor an unfair advantage in the market. In additional to the above mentioned documents, pursuant to Public Notice DA 04-1705 of the Commission’ s policy, in order to comply with the marketing regulations in 47 CFR §2.803 and the importation rules in 47 CFR §2.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices. We request the commission to grant short-term confidentiality request on the following attachments for 180 days after the grant as outlined in Public Notice DA 04-1705.  External Photos  Internal Photos  Test Setup Photos  User Manual It is our understanding that all measurement test reports, FCC ID label format and correspondent during certification review process cannot be granted as confidential documents and those information will be available for public review once the grant of equipment authorization is issued. Best Regards, ______________________ Cindy Jiang [email protected]

Cover Letter(s)

Honeywell International Inc. Date: October 29, 2024 Statement We, Honeywell International Inc., states that our device, FCC ID: HD5-CT37X1N, The label will put under the battery inside the battery compartment and it is visible to the users as they purchase the products and install the battery. Sincerely yours, _______________ Cindy Jiang [email protected]

Cover Letter(s)

Honeywell International Inc Date: October 29, 2024 Power of Attorney To whom it may concern, Please be notified that I, Cindy Jiang, have designated Jim Tsai in Sporton International Inc. (Kunshan) as the person being responsible for this project and to sign the form 731 and other documentation. Any and all acts carried out in their professional capacity by Sporton International Inc. (Kunshan) on the matters of relating to all processes required in the FCC approval and any communication needed with the national authority, shall have the same legal authority as acts on our own behalf including the release of confidential information. We further certifies that neither the applicant nor any party to this application, as defined in 47 CFR Ch. 1.2002 (b), is subject to a denial to Federal benefits, that include FCC benefits, pursuant to section 5301 of the Anti-Drug Abuse Act of 1998, 21 U.S.C. 835(a). This authorization is limited to the product of as following: FCC ID: HD5-CT37X1N If you have any acknowledgement and response, please send it to Sporton International Inc. (Kunshan) directly. Should you have any questions or comments regarding this matter, please have my best attention. Sincerely yours, Cindy Jiang [email protected]

ID Label/Location Info

Marketing Prod. Series Name: CT37 中国制造 / 中國製造 Brand owner:Honeywell International Inc sps.honeywell.com Patent: ww w .hsmpats.com Model/ 型号 / 型號 : CT37X1N Mobile Computer Made in China/ Input/ 输入 / 輸入 5G无线数据终端/5G無線數據終端 FCC ID: HD5-CT37X1N IC: 1693B-CT37X1N US: CAN ICES (B)/NMB (B)

RF Exposure Info

Appendix C Report No. : FA461912 Page:1/106 Appendix C Report No. : FA461912 Page:2/106 Appendix C Report No. : FA461912 Page:3/106 Appendix C Report No. : FA461912 Page:4/106 Appendix C Report No. : FA461912 Page:5/106 Appendix C Report No. : FA461912 Page:6/106 D750V3, Serial No. 1087 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. D750V3 – serial no. 1087 750 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022.2.24 -29.078 52.625 -2.4779 2023.2.23 -25.021 -13.95 49.974 2.651 -5.5764 3.0985 2024.2.23 -27.142 -6.66 53.849 -1.224 -1.9335 -0.5444 <Justification of the extended calibration> The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. Dipole Verification Data> D750V3, serial no. 1087 750MHz – Head-2023.2.23 Appendix CReport No. : FA461912 Page:7/106 750MHz – Head-2024.2.23 Appendix CReport No. : FA461912 Page:8/106 Appendix C Report No. : FA461912 Page:9/106 Appendix C Report No. : FA461912 Page:10/106 Appendix C Report No. : FA461912 Page:11/106 Appendix C Report No. : FA461912 Page:12/106 Appendix C Report No. : FA461912 Page:13/106 Appendix C Report No. : FA461912 Page:14/106 Appendix C Report No. : FA461912 Page:15/106 Appendix C Report No. : FA461912 Page:16/106 Appendix C Report No. : FA461912 Page:17/106 Appendix C Report No. : FA461912 Page:18/106 Appendix C Report No. : FA461912 Page:19/106 Appendix C Report No. : FA461912 Page:20/106 Appendix C Report No. : FA461912 Page:21/106 D1750V2, Serial No. 1090 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. D1750V2 – serial no. 1090 1750 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022.2.24 -37.115 49.899 -1.3891 2023.2.23 -35.184 -5.2 49.092 0.807 -2.9814 1.5923 2024.2.23 -36.717 -1.07 50.143 -0.244 -1.4581 0.069 <Justification of the extended calibration> The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. Dipole Verification Data> D1750V2, serial no. 1090 1750MHz – Head - 2023-2-23 1750MHz – Head - 2024-2-23 Appendix CReport No. : FA461912 Page:22/106 Appendix C Report No. : FA461912 Page:23/106 Appendix C Report No. : FA461912 Page:24/106 Appendix C Report No. : FA461912 Page:25/106 Appendix C Report No. : FA461912 Page:26/106 Appendix C Report No. : FA461912 Page:27/106 Appendix C Report No. : FA461912 Page:28/106 D1900V2, Serial No. 5d118 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. D1900V2 – serial no. 5d118 1900 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022.3.30 -23.393 52.598 6.4525 2023.3.29 -25.861 10.55 50.443 2.155 4.8447 1.6078 2024.3.29 -23.315 -0.33 52.154 0.444 4.5235 1.929 <Justification of the extended calibration> The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. Dipole Verification Data> D1900V2, serial no. 5d118 1900MHz – Head - 2023-3-29 1900MHz – Head - 2024-3-29 Appendix CReport No. : FA461912 Page:29/106 Appendix C Report No. : FA461912 Page:30/106 Appendix C Report No. : FA461912 Page:31/106 Appendix C Report No. : FA461912 Page:32/106 Appendix C Report No. : FA461912 Page:33/106 Appendix C Report No. : FA461912 Page:34/106 Appendix C Report No. : FA461912 Page:35/106 D2300V2, Serial No. 1055 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. <Justification of the extended calibration> The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. Dipole Verification Data> D2300V2, serial no. 1055 2300MHz – Head – 2024.8.20 D2300V2 – serial no. 1055 2300 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2023.8.21 -25.741 47.552 -4.4083 2024.8.20 -24.901 -3.26 45.499 2.053 -3.0690 -1.3393 Appendix CReport No. : FA461912 Page:36/106 Appendix C Report No. : FA461912 Page:37/106 Appendix C Report No. : FA461912 Page:38/106 Appendix C Report No. : FA461912 Page:39/106 Appendix C Report No. : FA461912 Page:40/106 Appendix C Report No. : FA461912 Page:41/106 Appendix C Report No. : FA461912 Page:42/106 Appendix C Report No. : FA461912 Page:43/106

RF Exposure Info

Appendix C Report No. : FA461912 Page:44/106 Appendix C Report No. : FA461912 Page:45/106 Appendix C Report No. : FA461912 Page:46/106 Appendix C Report No. : FA461912 Page:47/106 Appendix C Report No. : FA461912 Page:48/106 Appendix C Report No. : FA461912 Page:49/106 Appendix C Report No. : FA461912 Page:50/106 Appendix C Report No. : FA461912 Page:51/106 Appendix C Report No. : FA461912 Page:52/106 Appendix C Report No. : FA461912 Page:53/106 Appendix C Report No. : FA461912 Page:54/106 Appendix C Report No. : FA461912 Page:55/106 Appendix C Report No. : FA461912 Page:56/106 Appendix C Report No. : FA461912 Page:57/106 Appendix C Report No. : FA461912 Page:58/106 Appendix C Report No. : FA461912 Page:59/106 Appendix C Report No. : FA461912 Page:60/106 Appendix C Report No. : FA461912 Page:61/106 Appendix C Report No. : FA461912 Page:62/106 Appendix C Report No. : FA461912 Page:63/106 Appendix C Report No. : FA461912 Page:64/106 Appendix C Report No. : FA461912 Page:65/106 Appendix C Report No. : FA461912 Page:66/106 Appendix C Report No. : FA461912 Page:67/106 Appendix C Report No. : FA461912 Page:68/106 D3900V2, Serial No. 1048 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. D3900V2 – serial no. 1048 3900 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2023.3.9 -27.281 47.345 -3.2717 2024.3.8 -24.492 -10.22 47.733 -0.388 -5.7212 2.4495 D3900V2 – serial no. 1048 4100 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2023.3.9 -21.099 59.664 0.078695 2024.3.8 -21.721 2.95 58.764 0.9 0.18556 -0.106865 <Justification of the extended calibration> The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. Dipole Verification Data> D3900V2, serial no. 1048 3900MHz&4100Mhz – Head Appendix CReport No. : FA461912 Page:69/106 Appendix C Report No. : FA461912 Page:70/106 Appendix C Report No. : FA461912 Page:71/106 Appendix C Report No. : FA461912 Page:72/106 Appendix C Report No. : FA461912 Page:73/106 Appendix C Report No. : FA461912 Page:74/106 Appendix C Report No. : FA461912 Page:75/106 Appendix C Report No. : FA461912 Page:76/106 Appendix C Report No. : FA461912 Page:77/106 D5GHzV2, Serial No. 1113 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. D5GHzV2 – serial no. 1113 5250 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022/9/23 -23.942 49.021 -6.2252 2023/9/22 -26.63 11.23 46.533 2.488 -4.0285 -2.1967 2024/9/22 -21.740 -9.2 46.759 2.262 -7.4819 1.2657 D5GHzV2 – serial no. 1113 5600 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022/9/23 -25.273 55.212 -2.3941 2023/9/22 -23.746 -6.04 57.759 -2.547 1.4943 -3.8884 2024/9/22 -22.278 -11.85 51.114 4.098 -1.9900 -0.4041 D5GHzV2 – serial no. 1113 5750 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022/9/23 -27.750 54.124 -1.0959 2023/9/22 -31.350 12.97 50.097 4.027 -3.1053 2.0094 2024/9/22 -28.462 2.57 56.821 -2.697 -0.53015 -0.56575 <Justification of the extended calibration> The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Appendix CReport No. : FA461912 Page:78/106 Therefore the verification result should support extended calibration. Dipole Verification Data> D5GHzV2, serial no. 1113 5250MHz&5600MHz&5750MHz – Head – 2023.9.22 5250MHz&5600MHz&5750MHz – Head – 2024.9.22 Appendix CReport No. : FA461912 Page:79/106 Appendix CReport No. : FA461912 Page:80/106 Appendix CReport No. : FA461912 Page:81/106 Appendix CReport No. : FA461912 Page:82/106 Appendix CReport No. : FA461912 Page:83/106 Appendix CReport No. : FA461912 Page:84/106 Appendix C Report No. : FA461912 Page:85/106

RF Exposure Info

Appendix C Report No. : FA461912 Page:86/106 Appendix C Report No. : FA461912 Page:87/106 Appendix C Report No. : FA461912 Page:88/106 Appendix C Report No. : FA461912 Page:89/106 Appendix C Report No. : FA461912 Page:90/106 Appendix C Report No. : FA461912 Page:91/106 Appendix C Report No. : FA461912 Page:92/106 Appendix C Report No. : FA461912 Page:93/106 Appendix C Report No. : FA461912 Page:94/106 Appendix C Report No. : FA461912 Page:95/106 Appendix C Report No. : FA461912 Page:96/106 Appendix C Report No. : FA461912 Page:97/106 Appendix C Report No. : FA461912 Page:98/106 Appendix C Report No. : FA461912 Page:99/106 Appendix C Report No. : FA461912 Page:100/106 Appendix C Report No. : FA461912 Page:101/106 Appendix C Report No. : FA461912 Page:102/106 Appendix C Report No. : FA461912 Page:103/106 Appendix C Report No. : FA461912 Page:104/106 Appendix C Report No. : FA461912 Page:105/106 Appendix C Report No. : FA461912 Page:106/106

RF Exposure Info

Power measurement connection diagram: The power measurement for 3G/LTE/5G FR1/UL and DL CA is to establish a connection between device and call box, and via call box to configure Bands, channel, BWs, RB size, carrier aggregation of CA, frequency channels, SCS and maximum output power. Hereunder is screenshot call box connection information for 3G/LTE/5G FR1/UL and DL CA. <WCDMA> Appendix FReport No. : FA461912 Page:1/15 <LTE> Appendix FReport No. : FA461912 Page:2/15 <LTE TDD Power class 3> <LTE TDD Power class 2> Appendix FReport No. : FA461912 Page:3/15 <5GNR FR1> Appendix FReport No. : FA461912 Page:4/15 Appendix FReport No. : FA461912 Page:5/15 LTE Uplink and Downlink Carrier Aggregation configurations: 1. Change the Scenario in the Configuration of Phone1 LTE Signaling and Preset. 2. If Select “RMC (DL/UL CA)” for Uplink Carrier Aggregation; If Select “RMC (DL CA)” for Downlink Carrier Aggregation. For example, Uplink Carrier Aggregation: Detailed operation: PCC  Common  Signal  Channel Coding  Select【RMC (DL/UL CA)】 Appendix FReport No. : FA461912 Page:6/15 3. PCC parameter Settings: on the screen, and then select the PCC tab and Set operating band, BW, channel and RB configurations for PCC; RB configurations (Number of RB / Starting RB) for PCC; Appendix FReport No. : FA461912 Page:7/15 4. SCC parameter Settings: Select the SCC1 tab, Set operating band, BW, channel, and RB configurations for SCC1; RB configurations (Number of RB / Starting RB) for SCC1; Appendix FReport No. : FA461912 Page:8/15 5. Select the PCC tab, then set “SIM Model Number” and select max power; 6. Click the “Connect” button at the Right of the screen, if necessary, turn the Airplane mode on/off in the DUT 7. The inter-band ULCA test method is similar to intra-band ULCA, and DLCA test method is similar to intra-band ULCA too. Appendix FReport No. : FA461912 Page:9/15 LTEBWBWULULUL#UL LTE BWDLDLWith CAWithout CA Freq.RB Freq.Tx. PowerTx. Power (MHz)Offset(MHz)(dBm)(dBm) Band 2Ant 020M188018900QPSK104x4MIMOBand 720M265531004x4MIMO22.9023.15 Band 2Ant 120M188018900QPSK104x4MIMOBand 720M265531004x4MIMO22.7422.89 Band 7Ant 020M253521100QPSK104x4MIMOBand 220M19609004x4MIMO22.3122.45 Band 7Ant 120M253521100QPSK104x4MIMOBand 220M19609004x4MIMO21.5221.63 Band 2Ant 020M188018900QPSK104x4MIMOBand 1710M740579023.0223.15 Band 2Ant 120M188018900QPSK104x4MIMOBand 1710M740579022.7022.89 Band 17Ant 110M71023790QPSK10Band 220M19609004x4MIMO23.9024.02 Band 4Ant 010M1732.520175QPSK104x4MIMOBand 1710M740579023.0823.19 Band 4Ant 110M1732.520175QPSK104x4MIMOBand 1710M740579022.8422.93 Band 17Ant 110M71023790QPSK10Band 410M2132.521754x4MIMO23.8524.02 Band 4Ant 020M1732.520175QPSK104x4MIMOBand 4820M3609558304x4MIMO23.0623.19 Band 4Ant 120M1732.520175QPSK104x4MIMOBand 4820M3609558304x4MIMO22.8722.93 Band 48Ant 220M360955830QPSK104x4MIMOBand 420M2132.521754x4MIMO23.8523.96 CA_5A-5ABand 5Ant 110M836.520525QPSK10Band 55M891.5262524.0124.15 Band 5Ant 110M836.520525QPSK10Band 720M265531004x4MIMO24.1224.15 Band 7Ant 020M253521100QPSK104x4MIMOBand 510M881.5252522.2422.45 Band 7Ant 120M253521100QPSK104x4MIMOBand 510M881.5252521.4421.63 Band 7Ant 020M253521100QPSK104x4MIMOBand 75M2687.534254x4MIMO22.2822.45 Band 7Ant 120M253521100QPSK104x4MIMOBand 75M2687.534254x4MIMO21.6121.63 Band 7Ant 020M253521100QPSK104x4MIMOBand 720M2554.832984x4MIMO22.3322.45 Band 7Ant 120M253521100QPSK104x4MIMOBand 720M2554.832984x4MIMO21.4321.63 Band 25Ant 020M188026340QPSK104x4MIMOBand 255M1891.784574x4MIMO22.9923.17 Band 25Ant 120M188026340QPSK104x4MIMOBand 255M1891.784574x4MIMO22.7622.93 Band 38Ant 020M258037850QPSK104x4MIMOBand 3820M2599.8380484x4MIMO21.9522.13 Band 38Ant 120M258037850QPSK104x4MIMOBand 3820M2599.8380484x4MIMO21.3921.52 CA_25A-25A CA_38C CA_4A-17A DL Antenna Configuration CA_2A-7A CA_2A-17A CA_7C CA_5A-7A CA_7A-7A CA_4A-48A 2CA DL Power Mod. CA List Band(MHz)ChannelRBBand(MHz)Channel DL Antenna Configuration SCCPCC Ant Appendix FReport No. : FA461912 Page:10/15 LTEBWBWULULUL#UL LTE BWDLDLLTE BW DLDLWith CAWithout CA Freq.RB Freq.Freq.Tx. PowerTx. Power (MHz)Offset(MHz)(MHz)(dBm)(dBm) Band 2Ant 020M188018900QPSK104x4MIMOBand 420M2132.521754x4MIMOBand 1310M751523023.0323.15 Band 2Ant 120M188018900QPSK104x4MIMOBand 420M2132.521754x4MIMOBand 1310M751523022.6822.89 Band 4Ant 020M1732.520175QPSK104x4MIMOBand 1310M7515230Band 220M19609004x4MIMO22.9923.19 Band 4Ant 120M1732.520175QPSK104x4MIMOBand 1310M7515230Band 220M19609004x4MIMO22.7322.93 Band 13Ant 110M78223230QPSK10Band 220M19609004x4MIMOBand 420M2132.521754x4MIMO23.9824.16 Band 2Ant 020M188018900QPSK104x4MIMOBand 510M881.52525Band 1310M751523022.9323.15 Band 2Ant 120M188018900QPSK104x4MIMOBand 510M881.52525Band 1310M751523022.7822.89 Band 5Ant 110M836.520525QPSK10Band 1310M7515230Band 220M19609004x4MIMO24.0724.15 Band 13Ant 110M78223230QPSK10Band 220M19609004x4MIMOBand 510M881.5252524.0124.16 Band 2Ant 020M188018900QPSK104x4MIMOBand 1410M7635330Band 3010M235598204x4MIMO23.0523.15 Band 2Ant 120M188018900QPSK104x4MIMOBand 1410M7635330Band 3010M235598204x4MIMO22.7422.89 Band 14Ant 110M79323330QPSK10Band 3010M235598204x4MIMOBand 220M19609004x4MIMO24.0624.12 Band 30Ant 010M231027710QPSK104x4MIMOBand 220M19609004x4MIMOBand 1410M763533022.5122.53 Band 30Ant 110M231027710QPSK104x4MIMOBand 220M19609004x4MIMOBand 1410M763533021.9021.95 Band 2Ant 020M188018900QPSK104x4MIMOBand 4820M3609558304x4MIMOBand 6620M2155668864x4MIMO22.9023.15 Band 2Ant 120M188018900QPSK104x4MIMOBand 4820M3609558304x4MIMOBand 6620M2155668864x4MIMO22.8022.89 Band 48Ant 220M360955830…

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Contact Information

Applicant

Cindy Jiang(Global Regulatory Compliance Manager)
[email protected]+86(512)82258162Fax: +86(512)62571517

Test Firm

Sporton International Inc. (Kunshan)Jim Tsai
[email protected]+86 0512 57900158

Technical Specifications

#Rule PartsFrequency RangePower Output
215C2.41 GHz - 2.46 GHz679.20 mW
Confidentiality
Long Term
Grant Notes
Output Power listed is the maximum conducted output power. SAR compliance for body-worn operating configurations is limited to belt-clips and holsters that have no metallic components in the assembly and cause the device to operate with the minimum separation distance of 10.0 mm, as described in this filing. End-users must be informed of the body-worn operating requirements for satisfying RF exposure compliance. The highest reported SAR for head, body-worn accessory, product specific (wireless router) and simultaneous transmission exposure conditions are 1.18 W/kg, 0.59 W/kg, 0.39 W/kg and 1.59 W/kg, respectively. This device supports 20 and 40 MHz bandwidth mode. HAC-2019, under the waiver DA 23-914. The lowest conversational gain is 13.0 dB with a hearing aid and 18.4 dB without a hearing aid.

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