
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
OPERATIONS MANUAL BTE (Behind-The-Ear) Standard Products Smartphone-Compatible and Universal Connectivity Table of Contents Overview BTE 13 � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 4 Preparation Batteries/Battery Indicators � � � � � � � � � � � � � � � � � � � � � � � � 6 Insertion and Removal � � � � � � � � � � � � � � � � � � � � � � � � � � � 10 Operation Power On & Off � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 14 Auto On & Off � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 14 User Controls � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 15 Edge Mode � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 16 Volume Control � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 16 Volume Control Indicators � � � � � � � � � � � � � � � � � � � � � � � � 17 Memory Change � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 18 Mute � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 18 Multiflex Tinnitus Level Control � � � � � � � � � � � � � � � � � � � � 19 Activity Tracking � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 19 Directional Settings � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 19 Telephone Use � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 19 Multiflex Tinnitus Technology � � � � � � � � � � � � � � � � � � � � � � � � 24 Fall Alert Introduction � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 25 Auto Alert � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 25 Manual Alert � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 25 Alert Cancellation � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 26 Contacts � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 26 Auto Alert Sensitivity � � � � � � � � � � � � � � � � � � � � � � � � � � � � 27 Indicators � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 28 Adjustment Mobile Phone Use � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 29 Pairing with an iOS Device � � � � � � � � � � � � � � � � � � � � � � � � 31 Pairing with an Android Device � � � � � � � � � � � � � � � � � � � � 31 Accessories � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 32 Hearing Aid Care Hearing Aid Care � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 33 Standard Tubing/Thin Tubing � � � � � � � � � � � � � � � � � � � � � 34 Service and Repair � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 36 Troubleshooting Guide � � � � � � � � � � � � � � � � � � � � � � � � � � 37 Tips for Better Communication � � � � � � � � � � � � � � � � � � � � � � � � � � � �38 Regulatory Information Safety Information � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 40 FDA Information � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 41 FCC Information � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � 47 Hearing Aid Hearing Aid Controls Rocker Switch Controls � � � � � � � � � � � � � � � � � � � � � � �16 Size 13 Battery – Orange Table of Contents Features, Controls and Identification 1� Hearing aid 2� Earhook 3� Microphone 4� Rocker switch (user control) 5� Battery compartment (on/off control) 6� Location of left/right side hearing aid indicator RED is for right ear, BLUE is for left ear 7� Location of serial number 8� Location of manufacturer’s name and model name 9� Custom earmold with tubing 10� Thin tube with comfort earbud 11� Thin tube with custom earmold 00-000000 Serial Number 5 3 2 1 4 6 7 9 10 11 8 BTE 13 Overview | 5 4 | BTE 13 Overview 21 4 3 5 Preparation | 7 6 | Preparation Batteries Your hearing aid uses a battery as its power source� The battery size can be identified by the orange (13) color code on the packaging� To insert or replace the battery: 1� Use the finger pick on the battery door� 2� Open the battery door gently and remove the old battery� 3� Remove the colored tab from the new battery� For best results, wait 3–5 minutes after removing the tab before inserting the battery� 4� Insert into the battery door, “+” side up� 5� Close the battery door� Battery Indicators An indicator will sound when the battery voltage is low� You then have approximately 30 minutes * to replace the battery� An indicator may also sound just before the battery stops working� * Actual time between low battery indicator and shut down will vary depending on environmental noise levels and brand of battery used. Preparation | 9 8 | Preparation Helpful Hints • NEVER FORCE THE BATTERY DOOR SHUT; this could result in serious damage� If the door will not close securely, ensure the battery is inserted correctly� • Do not open the battery door too far or damage is likely to occur� • Dispose of used batteries immediately in the proper waste or recycling container� • Batteries vary in size and performance� Your hearing professional is your best source for lifespan estimates and verification that you are using the proper size and type� WARNINGS Batteries are dangerous if swallowed� To help prevent the accidental ingestion of batteries: • Keep out of reach of children and pets� • Check your medications before taking them – batteries have been mistaken for pills� • Never put batteries in your mouth, as they can easily be swallowed� NATIONAL BUTTON BATTERY INGESTION HOTLINE: 202-625-3333 5 Preparation | 11 10 | Preparation 1 2 3 4 Insertion and Removal To insert the custom earmold and hearing aid: 1� Hold the custom earmold with your thumb and forefinger on the outer side near the tubing� 2� Tilt your hand slightly forward and gently insert the canal tip of the custom earmold into your ear canal� 3� Rotate the custom earmold backward� 4� Softly press the custom earmold into place with your fingertip� 5� Carefully place the BTE behind your ear wrapping the earhook over t…
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Evolv AI BTE 13 external photos (scale in cm) External case photos External top External left side External right side External bottom External battery door end External ear hook end
Evolv AI Power Plus BTE 13 internal photos Internal photos Internal top Internal left side Internal right side Internal bottom PCB top PCB bottom
Evolv AI P+ BTE 13 Antenna Description The Bluetooth 2.4 GHz antenna is a bow tie. The antenna is constructed on a polyimide flexible circuit. The flexible circuit uses 1 ounce copper (1.4 mil). The peak gain of the antenna in the assembled DUT is -7.5 dBi. Figure 1 2.4 GHz Antenna Antenna Pattern
This report must not be used to claim product certification, approval, or endorsement by A2LA or any agency of the U.S. Government. This Report shall not be reproduced, except in full without written approval of the laboratory. EAR-Controlled Data - This document contains technical data whose export and reexport/retransfer is subject to control by the U.S. Department of Commerce under the Export Administration Act and the Export Administration Regulations. The Department of Commerce’s prior written approval may be required for the export or re- export/retransfer of such technical data to any foreign person, foreign entity or foreign organization whether in the United States or abroad. More: https://www.bis.doc.gov/index.php/forms-documents/regulations-docs/14-commerce-country-chart/fileT Starkey Laboratories, Inc. Evolv AI Power Plus BTE 13 BLE Hearing Aid FCC 2.1093:2021 Bluetooth Low Energy (DTS) Radio Report: STAK0238.3, Issue Date: August 16, 2021 CERTIFICATE OF EVALUATION 2018-09-14 Product compliance is the responsibility of the client; therefore, the tests and equipment modes of operation represented in this report were agreed upon by the client, prior to testing. The results of this test pertain only to the sample(s) tested. The specific description is noted in each of the individual sections of the test report supporting this certificate of test. This report reflects only those tests from the referenced standards shown in the certificate of test. It does not include inspection or verification of labels, identification, marking or user information. As indicated in the Statement of Work sent with the quotation, Element’s standard process is to always use the latest published version of the test methods even when earlier versions are cited in the test specification. Issuance of a purchase order was de facto acceptance of this approach. Otherwise, the client would have advised Element in writing of the specific version of the test methods they wanted applied to the subject testing Last Date of Evaluation: Monday, August 2, 2021 Starkey Laboratories, Inc. EUT: Evolv AI Power Plus BTE 13 BLE Hearing Aid RF Exposure Evaluation Standards Specification Method FCC 2.1093:2021 FCC 447498 D01 General RF Exposure Guidance v06 Results Method Clause Description Applied Results Comments 4.3.1 SAR Test Exclusion Yes Yes N/A Deviations From Evaluation Standards None Approved By: Donald Facteau, Process Architect Report No. STAK0238.3EAR-Controlled Data2/10 RF Exposure Condition 2018-07-17 The following RF Exposure conditions were used for the assessment documented in this report: Intended Use Portable Location on Body (if applicable) Head/Torso How is the Device Used Device is worn on the ear. Radios Contained in the Same Host Device BTLE Simultaneous Transmitting Radios None Body Worn Accessories N/A Environment General Population/Uncontrolled Exposure Report No. STAK0238.3EAR-Controlled Data3/10 REVISION HISTORY 2018.07.17 Revision Number Description Date (yyyy-mm-dd) Page Number 00 None Report No. STAK0238.3EAR-Controlled Data4/10 ACCREDITATIONS AND AUTHORIZATIONS 2021.02.26 United States FCC - Designated by the FCC as a Telecommunications Certification Body (TCB). Certification chambers, Open Area Test Sites, and conducted measurement facilities are listed with the FCC. A2LA - Each laboratory is accredited by A2LA to ISO / IEC 17025, and as a product certifier to ISO / IEC 17065 which allows Element to certify transmitters to FCC and IC specifications. Canada ISED - Recognized by Innovation, Science and Economic Development Canada as a Certification Body (CB) and as a CAB for the acceptance of test data. European Union European Commission – Recognized as an EU Notified Body validated for the EMCD and RED Directives. United Kingdom BEIS – Recognized by the UK as an Approved Body under the UK Radio Equipment and UK EMC Regulations. Australia/New Zealand ACMA - Recognized by ACMA as a CAB for the acceptance of test data. Korea MSIT / RRA - Recognized by KCC’s RRA as a CAB for the acceptance of test data. Japan VCCI - Associate Member of the VCCI. Conducted and radiated measurement facilities are registered. Taiwan BSMI – Recognized by BSMI as a CAB for the acceptance of test data. NCC - Recognized by NCC as a CAB for the acceptance of test data. Singapore IDA – Recognized by IDA as a CAB for the acceptance of test data. Israel MOC – Recognized by MOC as a CAB for the acceptance of test data. Hong Kong OFCA – Recognized by OFCA as a CAB for the acceptance of test data. Vietnam MIC – Recognized by MIC as a CAB for the acceptance of test data. SCOPE For details on the Scopes of our Accreditations, please visit: https://www.nwemc.com/emc-testing-accreditations Report No. STAK0238.3EAR-Controlled Data5/10 FACILITIES 2020.12.15 California Labs OC01-17 41 Tesla Irvine, CA 92618 (949) 861-8918 Minnesota Labs MN01-11 9349 W Broadway Ave. Brooklyn Park, MN 55445 (612)-638-5136 Oregon Labs EV01-12 6775 NE Evergreen Pkwy #400 Hillsboro, OR 97124 (503) 844-4066 Texas Labs TX01-09 3801 E Plano Pkwy Plano, TX 75074 (469) 304-5255 Washington Labs NC01-05 19201 120 th Ave NE Bothell, WA 98011 (425)984-6600 A2LA Lab Code: 3310.04 Lab Code: 3310.05 Lab Code: 3310.02 Lab Code: 3310.03 Lab Code: 3310.06 Innovation, Science and Economic Development Canada 2834B-1, 2834B-3 2834E-1, 2834E-3 2834D-1 2834G-1 2834F-1 BSMI SL2-IN-E-1154R SL2-IN-E-1152R SL2-IN-E-1017 SL2-IN-E-1158R SL2-IN-E-1153R VCCI A-0029 A-0109 A-0108 A-0201 A-0110 Recognized Phase I CAB for ISED, ACMA, BSMI, IDA, KCC/RRA, MIC, MOC, NCC, OFCA US0158 US0175 US0017 US0191 US0157 Report No. STAK0238.3EAR-Controlled Data6/10 PRODUCT DESCRIPTION 2018-07-17 Client and Equipment Under Evaluation Information Company Name: Starkey Laboratories, Inc. Address: 6600 Washington Ave S City, State, Zip: Eden Prairie, MN 55344-3404 Evaluation Requested By: Bill Mitchell EUT: Evolv AI Power Plus BTE 13 BLE Hearing Aid Date of Evaluation: Monday, August 2, 2021 Informati…
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This report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the U.S. Government. This Report shall not be reproduced, except in full without written approval of the laboratory. Starkey Laboratories, Inc. Evolv AI Power Plus BTE 13 BLE Hearing Aid FCC 15.247:2021 Bluetooth Low Energy (DTS) Radio Report: STAK0238, Issue Date: July 22, 2021 NVLAP LAB CODE: 200881-0 CERTIFICATE OF TEST 2018-09-14 Product compliance is the responsibility of the client; therefore, the tests and equipment modes of operation represented in this report were agreed upon by the client, prior to testing. The results of this test pertain only to the sample(s) tested. The specific description is noted in each of the individual sections of the test report supporting this certificate of test. This report reflects only those tests from the referenced standards shown in the certificate of test. It does not include inspection or verification of labels, identification, marking or user information. As indicated in the Statement of Work sent with the quotation, Element’s standard process is to always use the latest published version of the test methods even when earlier versions are cited in the test specification. Issuance of a purchase order was de facto acceptance of this approach. Otherwise, the client would have advised Element in writing of the specific version of the test methods they wanted applied to the subject testing. Last Date of Test: May 21, 2021 Starkey Laboratories, Inc. EUT: Evolv AI Power Plus BTE 13 BLE Hearing Aid Radio Equipment Testing Standards Specification Method FCC 15.247:2021 ANSI C63.10:2013, KDB 558074 Results Method Clause Test Description Applied Results Comments 6.2 Powerline Conducted Emissions No N/A Not required for a battery powered EUT. 11.12.1, 11.13.2, 6.5, 6.6 Spurious Radiated Emissions Yes Pass 11.6 Duty Cycle Yes Pass 11.8.2 Occupied Bandwidth Yes Pass 11.9.1.1 Output Power Yes Pass 11.9.1.1 Equivalent Isotropic Radiated Power Yes Pass 11.10.2 Power Spectral Density Yes Pass 11.11 Band Edge Compliance Yes Pass 11.11 Spurious Conducted Emissions Yes Pass Deviations From Test Standards None Approved By: Eric Brandon, Department Manager Report No. STAK02382/69 REVISION HISTORY 2018.07.17 Revision Number Description Date (yyyy-mm-dd) Page Number 00 None Report No. STAK02383/69 ACCREDITATIONS AND AUTHORIZATIONS 2021.02.26 United States FCC - Designated by the FCC as a Telecommunications Certification Body (TCB). Certification chambers, Open Area Test Sites, and conducted measurement facilities are listed with the FCC. A2LA - Accredited by A2LA to ISO / IEC 17065 as a product certifier. This allows Element to certify transmitters to FCC and IC specifications. NVLAP - Each laboratory is accredited by NVLAP to ISO 17025 Canada ISED - Recognized by Innovation, Science and Economic Development Canada as a Certification Body (CB) and as a CAB for the acceptance of test data. European Union European Commission – Recognized as an EU Notified Body validated for the EMCD and RED Directives. United Kingdom BEIS – Recognized by the UK as an Approved Body under the UK Radio Equipment and UK EMC Regulations. Australia/New Zealand ACMA - Recognized by ACMA as a CAB for the acceptance of test data. Korea MSIT / RRA - Recognized by KCC’s RRA as a CAB for the acceptance of test data. Japan VCCI - Associate Member of the VCCI. Conducted and radiated measurement facilities are registered. Taiwan BSMI – Recognized by BSMI as a CAB for the acceptance of test data. NCC - Recognized by NCC as a CAB for the acceptance of test data. Singapore IDA – Recognized by IDA as a CAB for the acceptance of test data. Israel MOC – Recognized by MOC as a CAB for the acceptance of test data. Hong Kong OFCA – Recognized by OFCA as a CAB for the acceptance of test data. Vietnam MIC – Recognized by MIC as a CAB for the acceptance of test data. SCOPE For details on the Scopes of our Accreditations, please visit: https://www.nwemc.com/emc-testing-accreditations Report No. STAK02384/69 FACILITIES 2020.12.15 California Labs OC01-17 41 Tesla Irvine, CA 92618 (949) 861-8918 Minnesota Labs MN01-11 9349 W Broadway Ave. Brooklyn Park, MN 55445 (612)-638-5136 Oregon Labs EV01-12 6775 NE Evergreen Pkwy #400 Hillsboro, OR 97124 (503) 844-4066 Texas Labs TX01-09 3801 E Plano Pkwy Plano, TX 75074 (469) 304-5255 Washington Labs NC01-05 19201 120 th Ave NE Bothell, WA 98011 (425)984-6600 NVLAP NVLAP Lab Code: 200676-0 NVLAP Lab Code: 200881-0 NVLAP Lab Code: 200630-0 NVLAP Lab Code:201049-0 NVLAP Lab Code: 200629-0 Innovation, Science and Economic Development Canada 2834B-1, 2834B-3 2834E-1, 2834E-3 2834D-1 2834G-1 2834F-1 BSMI SL2-IN-E-1154R SL2-IN-E-1152R SL2-IN-E-1017 SL2-IN-E-1158R SL2-IN-E-1153R VCCI A-0029 A-0109 A-0108 A-0201 A-0110 Recognized Phase I CAB for ISED, ACMA, BSMI, IDA, KCC/RRA, MIC, MOC, NCC, OFCA US0158 US0175 US0017 US0191 US0157 Report No. STAK02385/69 MEASUREMENT UNCERTAINTY TMU.2015.07.10 Measurement Uncertainty When a measurement is made, the result will be different from the true or theoretically correct value. The difference is the result of tolerances in the measurement system that cannot be completely eliminated. To the extent that technology allows us, it has been our aim to minimize this error. Measurement uncertainty is a statistical expression of measurement error qualified by a probability distribution. A measurement uncertainty estimation has been performed for each test per our internal quality document QM205.4.6. The estimation is used to compare the measured result with its "true" or theoretically correct value. The expanded measurement uncertainty (K=2) can be found in the table below. A lab specific value may also be found in the applicable test description section. Our measurement data meets or exceeds the measurement uncertainty requirements of the applicable specification; therefore, the test data can be compared directly to the specification…
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EMC TEST EQUIPMENT ID TIK AFM AMZ RFW MNL TEST DESCRIPTION CableMicro-CoaxUFD150A-1-0720-2002002020-09-142021-09-14 XMit 2020.12.30.0 Block - DCFairview Microwave BAND EDGE COMPLIANCE Testing was performed using the mode(s) of operation and configuration(s) noted within the report. The individuals and/or the organization requesting the test provided the modes, configurations and settings used to complete the evaluation. The actual test parameters are specified in the test data, this includes items such as investigated frequency range (scanned) and test levels. The testing methods and performance specifications, as well as the test site used for the evaluation are indicated in the test data. Generator - SignalAgilentN5183A2019-04-302022-04-30 DescriptionManufacturerModelLast Cal.Cal. Due SD33792020-11-042021-11-04 Analyzer - Spectrum AnalyzerKeysightN9010A2021-04-162022-04-16 AttenuatorS.M. ElectronicsSA26B-202021-02-052022-02-05 The spurious RF conducted emissions at the edges of the authorized bands were measured with the EUT set to low and high transmit frequencies in each available band. The channels closest to the band edges were selected. The EUT was transmitting at the data rate(s) listed in the datasheet. The spectrum was scanned below the lower band edge and above the higher band edge. Report No. STAK023854/69 XMit 2020.12.30.0 TbtTx 2021.03.19.1XMit 2020.12.30.0 EUT:Evolv AI Power Plus BTE 13 BLE Hearing AidWork Order:STAK0238 Serial Number:210990482 Date: Customer:Starkey Laboratories, Inc.Temperature:22.3 °C Attendees:John QuachHumidity:45.6% RH Project:NoneBarometric Pres.:1023 mbar Tested by:Andrew RogstadPower:BatteryJob Site:MN08 TEST SPECIFICATIONSTest Method COMMENTS DEVIATIONS FROM TEST STANDARD Signature ValueLimit (dBc)≤ (dBc)Result BLE/GFSK 1 Mbps Low Channel, 2402 MHz-35.33-20Pass BLE/GFSK 1 Mbps High Channel, 2480 MHz-43.51-20Pass BLE/GFSK 2 Mbps Low Channel, 2402 MHz-26.87-20Pass BLE/GFSK 2 Mbps High Channel, 2480 MHz-41.28-20Pass BAND EDGE COMPLIANCE 17-May-21 Configuration #1 FCC 15.247:2021ANSI C63.10:2013 None Reference level offset includes measurement cable, attenuator, and DC block. Report No. STAK023855/69 XMit 2020.12.30.0 TbtTx 2021.03.19.1XMit 2020.12.30.0 ValueLimit (dBc)≤ (dBc)Result -35.33-20Pass ValueLimit (dBc)≤ (dBc)Result -43.51-20Pass BAND EDGE COMPLIANCE BLE/GFSK 1 Mbps Low Channel, 2402 MHz BLE/GFSK 1 Mbps High Channel, 2480 MHz Report No. STAK023856/69 XMit 2020.12.30.0 TbtTx 2021.03.19.1XMit 2020.12.30.0 ValueLimit (dBc)≤ (dBc)Result -26.87-20Pass ValueLimit (dBc)≤ (dBc)Result -41.28-20Pass BAND EDGE COMPLIANCE BLE/GFSK 2 Mbps Low Channel, 2402 MHz BLE/GFSK 2 Mbps High Channel, 2480 MHz Report No. STAK023857/69 EMC TEST EQUIPMENT ID TIK AFM AMZ RFW MNL TEST DESCRIPTION CableMicro-CoaxUFD150A-1-0720-2002002020-09-142021-09-14 XMit 2020.12.30.0 Block - DCFairview Microwave SPURIOUS CONDUCTED EMISSIONS Testing was performed using the mode(s) of operation and configuration(s) noted within the report. The individuals and/or the organization requesting the test provided the modes, configurations and settings used to complete the evaluation. The actual test parameters are specified in the test data, this includes items such as investigated frequency range (scanned) and test levels. The testing methods and performance specifications, as well as the test site used for the evaluation are indicated in the test data. Generator - SignalAgilentN5183A2019-04-302022-04-30 DescriptionManufacturerModelLast Cal.Cal. Due SD33792020-11-042021-11-04 Analyzer - Spectrum AnalyzerKeysightN9010A2021-04-162022-04-16 AttenuatorS.M. ElectronicsSA26B-202021-02-052022-02-05 The spurious RF conducted emissions were measured with the EUT set to low, medium and high transmit frequencies. The EUT was transmitting at the data rate(s) listed in the datasheet. For each transmit frequency, the fundamental was measured with a 100 kHz resolution bandwidth and the highest value was recorded. The rest of the spectrum was then measured with a 100 kHz resolution bandwidth and the highest value was found. The difference between the value found on the fundamental and the rest of the spectrum was compared against the limit to determine compliance. Report No. STAK023858/69 XMit 2020.12.30.0 TbtTx 2021.03.19.1XMit 2020.12.30.0 EUT:Evolv AI Power Plus BTE 13 BLE Hearing AidWork Order:STAK0238 Serial Number:210990482 Date: Customer:Starkey Laboratories, Inc.Temperature:22.1 °C Attendees:John QuachHumidity:44.8% RH Project:NoneBarometric Pres.:1023 mbar Tested by:Andrew RogstadPower:BatteryJob Site:MN08 TEST SPECIFICATIONSTest Method COMMENTS DEVIATIONS FROM TEST STANDARD Signature FrequencyMeasuredMax ValueLimit RangeFreq (MHz)(dBc)≤ (dBc)Result BLE/GFSK 1 Mbps Low Channel, 2402 MHzFundamental2402.23N/AN/AN/A BLE/GFSK 1 Mbps Low Channel, 2402 MHz30 MHz - 12.5 GHz12131.58-42.38-20Pass BLE/GFSK 1 Mbps Low Channel, 2402 MHz12.5 GHz - 25 GHz24880.97-32.63-20Pass BLE/GFSK 1 Mbps Mid Channel, 2442 MHzFundamental2442.02N/AN/AN/A BLE/GFSK 1 Mbps Mid Channel, 2442 MHz30 MHz - 12.5 GHz6175.94-40.08-20Pass BLE/GFSK 1 Mbps Mid Channel, 2442 MHz12.5 GHz - 25 GHz23907.34-29.68-20Pass BLE/GFSK 1 Mbps High Channel, 2480 MHzFundamental2480.23N/AN/AN/A BLE/GFSK 1 Mbps High Channel, 2480 MHz30 MHz - 12.5 GHz1875.15-39.5-20Pass BLE/GFSK 1 Mbps High Channel, 2480 MHz12.5 GHz - 25 GHz24839.76-31.08-20Pass BLE/GFSK 2 Mbps Low Channel, 2402 MHzFundamental2402N/AN/AN/A BLE/GFSK 2 Mbps Low Channel, 2402 MHz30 MHz - 12.5 GHz5580.68-41.98-20Pass BLE/GFSK 2 Mbps Low Channel, 2402 MHz12.5 GHz - 25 GHz24952.69-32.02-20Pass BLE/GFSK 2 Mbps Mid Channel, 2442 MHzFundamental2442N/AN/AN/A BLE/GFSK 2 Mbps Mid Channel, 2442 MHz30 MHz - 12.5 GHz12480.21-39.26-20Pass BLE/GFSK 2 Mbps Mid Channel, 2442 MHz12.5 GHz - 25 GHz24966.43-28.51-20Pass BLE/GFSK 2 Mbps High Channel, 2480 MHzFundamental2480N/AN/AN/A BLE/GFSK 2 Mbps High Channel, 2480 MHz30 MHz - 12.5 GHz2683.55-41.1-20Pass BLE/GFSK 2 Mbps High Channel, 2480 MHz12.5 GHz - 25 GHz…
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SPURIOUS RADIATED EMISSIONS WTD.2021.04.01.1 EmiR5 2021.05.14.0 PSA-ESCI 2021.03.17.0 SPURIOUS RADIATED EMISSIONS WTD.2021.04.01.1 EmiR5 2021.05.14.0 PSA-ESCI 2021.03.17.0 SPURIOUS RADIATED EMISSIONS WTD.2021.04.01.1 EmiR5 2021.05.14.0 PSA-ESCI 2021.03.17.0 XMit 2020.12.30.0 MN08 002.jpg MN08 003.jpg DIRECT CONNECT
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 300.00 µW |

Starlink Edge TV
Equipment Class
DTS - Digital Transmission System
Edge AI ITE right
Equipment Class
DTS - Digital Transmission System
Edge AI CIC
Equipment Class
DTS - Digital Transmission System
Edge AI mRIC R
Equipment Class
DTS - Digital Transmission System
Edge AI ITE left
Equipment Class
DTS - Digital Transmission System