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2AEIM-1614285Key Fob

Tesla, Inc
Key Fob - FCC ID 2AEIM-1614285 - Tesla, Inc
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
May 30, 2021
Application Purpose
Original Equipment
Date of Application
May 10, 2021
Equipment Note
Key Fob
Frequency Range
2402.00000000 - 2480.00000000
Company
Tesla, Inc
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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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

Consumer Information 361 Vehicle opening and closing Three Types of Keys This vehicle supports three types of keys: • Authenticated phone - You can set up your personal smartphone to communicate with your vehicle using Bluetooth. Supports automatic locking and unlocking as well as several other functions using the Tesla mobile app. An authenticated phone is the preferred key because you never need to remove it from your pocket or purse. • Key card - Tesla provides a key card that communicates with your vehicle using short range radio-frequency identification (RFID) signals. The key card is used to "authenticate" your phone to work with your vehicle and to add or remove other key cards, phones, or key fobs. In situations where your authenticated phone has a dead battery, or is lost or stolen, use your key card to unlock, drive, and lock your vehicle • Key fob - An accessory sold separately, similar to a traditional key fob, that allows you to press buttons to open the front and rear trunks, and unlock, lock, and drive your vehicle. Your vehicle also have UWB function for passive entry function. The door handle will present when you approaching your vehicle while you carrying your keyfob. Your vehicle supports a total of 19 keys, which can include authenticated phones, key cards, and up to four key fobs. Caution: Remember to bring a key with you when you drive. Although you can drive your vehicle away from its key, you will be unable to power it back on after it powers off. Authenticated Phone Using your phone is the most convenient way to access your vehicle. As you approach, your phone's Bluetooth signal is detected and doors unlock when you press a door handle. Likewise, when you exit and walk away with the phone, doors automatically lock Before you can use a phone to access your vehicle, follow these steps to authenticate it: 1. Download the Tesla mobile app to your phone. 2. Log into the Tesla mobile app using your Tesla Account user name and password. Note: You must remain logged in to your Tesla Account to use your phone to access your vehicle. 3. Ensure that your phone's Bluetooth setting is turned on. Note: Your vehicle communicates with your phone using Bluetooth. To authenticate your phone or use it as a key, the phone must be powered on and Bluetooth must be enabled. Keep in mind that your phone must have enough battery power to run Bluetooth and that many phones disable Bluetooth when the battery is low. 4. Ensure that Allow Mobile Access (Controls > Safety & Security > Allow Mobile Access) is enabled. 5. In the Tesla mobile app, touch PHONE KEY then touch START to search for your vehicle. When your vehicle is detected, the mobile app asks you to tap your key card. 6. Tap the key card against the your vehicle card reader on the door pillar or center console. When your vehicle detects your key card, the mobile app confirms that your phone has been successfully authenticated. Touch DONE. If the key card is not successfully scanned within approximately 30 seconds, the mobile app displays an error message. Touch PHONE KEY on the app again to retry. To view a list of keys that can currently access your vehicle, or to remove a phone, touch Controls > Locks. Note: Authenticating your phone allows you to use it as a key to access your vehicle. To use the phone hands-free, access your phone's contacts, play media from it, etc., you must also pair and connect to it using the Bluetooth settings. Note: Your vehicle can connect to three phones simultaneously. Therefore, if more than one phone is detected and you want to use, or authenticate, a different phone, move the other connected phone(s) out of range or turn off its Bluetooth setting. Note: Unlike the mobile app, once a phone has been authenticated, it no longer requires an internet connection to communicate with your vehicle. Authenticated phones communicate with your vehicle using Bluetooth. Note: Although Bluetooth typically communicates over distances of up to approximately 9 meters, performance can vary based on the phone you are using, environmental interference, etc. Note: If multiple vehicles are linked to the Tesla Account, you must switch the mobile app to the vehicle that you want to access before you can use the phone as a key. Key fob If you have purchased the key fob accessory (available for purchase from Tesla stores or online at www.tesla.com/shop), you can quickly familiarize yourself with this key by thinking of it as a miniature version of your vehicle, with the Tesla badge representing the front. The key has three buttons that feel like softer areas on the surface. 1. Front trunk - Double-click to open the front trunk. 2. Lock/Unlock All - Single-click to lock doors and trunks (all doors and trunks must be closed). Double-click to unlock doors and trunks. 3. Trunk - Double-click to open the rear trunk. Hold down for one to two seconds to open the charge port door. Once inside, power up your vehicle by pressing the brake pedal within two minutes of pressing the unlock button on the key fob (see Starting and Powering Off on page 46). If you wait longer than two minutes, you must press the unlock button again, or place the key fob near the card reader located behind the cup holders on the center console. When your key fob is detected, the two minute authentication period restarts. When approaching or leaving your vehicle carrying the key fob, you do not need to point the key fob at your vehicle as you 362 OWNER'S MANUAL press a button, but you must be within operating range. Radio equipment on a similar frequency can affect the key. If this happens, move the key at least 30 cm away from other electronic devices (phone, laptop, etc). If the key fob does not work (for example, its battery is dead), you can touch it's flat side against the card reader on the driver's side door pillar (like the key card). Instructions for changing the battery are provided below. Note: Walk-Away Door Lock operates only when using an authe…

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Cover Letter(s)

QA-FR-206-A 6/21/2016 Agent Power of Attorney 9/9/2020 Subject: Agent Authorization To whom it may concern: We Tesla, Inc , the undersigned, Hereby authorizes Bay Area Compliance Laboratory Corporation to act on its behalf in all matters relating to application for Equipment authorization, including the signing of all documents relating to these matters. All acts carried out by Bay Area Compliance Laboratory Corporation on our behalf shall have the same effect as our own action. This authorization apply to below six products only: This authorization is valid until further written notice from the applicant. Sincerely Yours, Peng Zhang Certification Engineer Tesla Motors, Inc 3500 Deer Creek Road, Palo Alto, CA 94304, USA Product name Security Controller Fascia Endpoint B-pillar Endpoint Key Fob Key Fob B-pillar Endpoint Model Name 1614280 1613851 1614291 1614283 1614285 1607773

Cover Letter(s)

Tesla, Inc. 3500 Deer Creek Road, Palo Alto, CA 94304 p +650 681 5100 f +650 681 5101 Federal Communications Commission Office of Engineering & Technology Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Via Electronic Filing Date: Oct 3, 2019 Re: Authorized Personnel for Grantee Code 2AEIM To Whom It May Concern: I currently serve as Tesla, Inc’s (Tesla) grantee contact (Grantee Code 2AEIM) for Federal Communications Commission (FCC) equipment authorizations. As prescribed in KDB 852134 Authorized Policy Form 731, I authorize the following personnel to act on Tesla’s behalf with regard to all matters that relate to FCC equipment authorization (i.e., signing Form 731, attestation letters, and confidentiality request letters). This (these) individual(s) also is (are) authorized to assign additional persons to act on Tesla’s behalf as authorized agents. Authorized Personnel:  Peng Zhang This authorization is valid until further written notice from any of Tesla’s authorized grantee contact(s). Sincerely Yours, Sean Lui Sr. Staff Charging Compliance Engineer 3500 Deer Creek Road, Palo Alto, California US 94304 Phone: (650)681-5109 [email protected]

Cover Letter(s)

QA-FR-172-A FCC Confidential Authorization 2021-04-27 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID: 2AEIM-1614285 In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, Tesla Motors, Inc hereby requests long-term confidential treatment of information accompanying this application as outlined below:  Block Diagram  Schematics  Operation Description As well as short-term (180 days) confidential treatment of information accompanying this application as outlined below:  Internal Photos  User’s Manual  External Photos  Test Set-up Photos The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Sincerely, Simon Ma RF Supervisor 1274 Anvilwood Ave., Sunnyvale, CA 94089, USA

External Photos

Tesla Motors, Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 EUT External Photographs 1.1 EUT Top View 1.2 EUT Bottom View Tesla Motors, Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 1.3 EUT Front View 1.4 EUT Left Side View Tesla Motors, Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 1.5 EUT Rear View 1.6 EUT Right Side View

ID Label/Location Info

Label & Label Location EUT Bottom Open View

Internal Photos

Tesla Motors, Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 EUT Internal Photographs 1.1 EUT Internal Board Top View #1 1.2 EUT Internal Board Top View #2 BLE Antenna Tesla Motors, Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 1.3 EUT Internal Board Bottom View #1 1.4 EUT Internal Board Bottom View #2 UWB Antenna

Test Report

Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. This report must not be used by the customer to claim product certification, approval, or endorsement by A2LA*, NIST, or any agency of the Federal Government. * This report may contain data that are not covered by the A2LA accreditation and are marked with an asterisk “*” (Rev.2) FCC PART 15, SUBPART C ISEDC RSS-247, ISSUE 2, FEBRUARY 2017 TEST AND MEASUREMENT REPORT For Tesla Motors, Inc. 3500 Deer Creek Road, Palo Alto, CA 94304, USA FCC ID: 2AEIM-1614285 IC: 20098-1614285 Report Type: Original Report Product Type: Automotive Part Prepared By: Allen Huang RF Test Technician Report Number R2009186-247 Report Date: 2021-04-26 Reviewed By: Christian McCaig RF Project Engineer Bay Area Compliance Laboratories Corp. 1274 Anvilwood Avenue, Sunnyvale, CA 94089, USA Tel: +1 (408) 732-9162, Fax: +1 (408) 732-9164 Tesla Motors, Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 Report Number: R2009186-247 Page 2 of 47 FCC Part 15C/ISEDC RSS-247 Test Report TABLE OF CONTENTS 1 General Description ..................................................................................................................................................... 5 1.1 Product Description for Equipment Under Test (EUT) ...................................................................................... 5 1.2 Mechanical Description of EUT ......................................................................................................................... 5 1.3 Objective ............................................................................................................................................................. 5 1.4 Related Submittal(s)/Grant(s) ............................................................................................................................. 5 1.5 Test Methodology ............................................................................................................................................... 5 1.6 Measurement Uncertainty ................................................................................................................................... 6 1.7 Test Facility Registrations .................................................................................................................................. 6 1.8 Test Facility Accreditations ................................................................................................................................ 7 2 System Test Configuration.......................................................................................................................................... 9 2.1 Justification ......................................................................................................................................................... 9 2.2 EUT Exercise Software....................................................................................................................................... 9 2.3 Duty Cycle Correction Factor ............................................................................................................................. 9 2.4 Equipment Modifications.................................................................................................................................. 10 2.5 Local Support Equipment ................................................................................................................................. 10 2.6 Remote Support Equipment .............................................................................................................................. 10 2.7 Interface Ports and Cabling ............................................................................................................................... 10 3 Summary of Test Results ............................................................................................................................................ 11 4 FCC §15.203 & ISEDC RSS-Gen §6.8 - Antenna Requirements ............................................................................ 12 4.1 Applicable Standards ........................................................................................................................................ 12 4.2 Antenna Description ......................................................................................................................................... 12 5 FCC §2.1093, §15.247(i) & ISEDC RSS-102 - RF Exposure .................................................................................... 13 5.1 Applicable Standards ........................................................................................................................................ 13 5.2 RF Exposure Evaluation Exemption for FCC ................................................................................................... 15 5.3 RF Exposure Evaluation Exemption for IC ...................................................................................................... 15 6 FCC §15.209, §15.247(d) & ISEDC RSS-247 §5.5, RSS-Gen §8.9, §8.10 - Spurious Radiated Emissions ........... 16 6.1 Applicable Standards ........................................................................................................................................ 16 6.2 Test Setup ......................................................................................................................................................... 17 6.3 Test Procedure .................................................................................................................................................. 18 6.4 Corrected Amplitude & Margin Calculation ..................................................................................................... 18 6.5 Test Setup…

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Test Setup Photos

Tesla Motors, Motors Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 EUT Test Setup Photographs 1.1 30 MHz – 1 GHz at 3 meters Front View 1.2 30 MHz – 1 GHz at 3 meters Rear View Tesla Motors, Motors Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 1.3 1 – 18 GHz at 3 Meters Front View 1.4 1 – 18GHz at 3 Meters Rear View Tesla Motors, Motors Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 1.5 1 – 18 GHz at 1 Meter Front View 1.6 1 – 18 GHz at 1 Meter Rear View Tesla Motors, Motors Inc. FCC ID: 2AEIM-1614285, IC: 20098-1614285 1.7 18 – 26.5 GHz at 1 Meter Front View 1.8 18 – 26.5 GHz at 1 Meter Rear View

Contact Information

Applicant

Sean Lui(International Compliance Engineer, Charging)
[email protected]650-681-5000Fax: 650-681-5000

Test Firm

Bay Area Compliance Laboratories Corp.Lisa Tang
[email protected]408-732-9162Fax: 408 732 9164

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz2.50 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted.

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