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2AKAF-MDM01LTE CAT.1 Module

Waylens Inc.
LTE CAT.1 Module - FCC ID 2AKAF-MDM01 - Waylens Inc.
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Jul 16, 2024
Application Purpose
Original Equipment
Date of Application
Jul 16, 2024
Equipment Note
LTE CAT.1 Module
Frequency Range
1720.00000000 - 1770.00000000
Company
Waylens Inc.
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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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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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

MDM01 Hardware Design Version: V1.0 Date: 2024-03-27 Status: Released MDM01 Hardware Design Page 1 Important Notice No Guarantee Statement There makes no express or implied representations or warranties regarding any content in this document, and shall not be liable for any indirect, special, or consequential losses for specific purposes or suitability. Confidentiality Statement The information contained in this document (including any attachments) is confidential. The recipient understands that the document obtained is confidential and shall not be used for any purpose other than the specified purpose, nor shall it be disclosed to any third party. Disclaimers Our company does not assume any responsibility for property or personal injury caused by abnormal customer operations. Please develop the corresponding product according to the technical specifications and reference design in the manual. Before declaration, our company has the right to make changes to the content of this manual according to the needs of technological development, and the modified version will not be notified separately. MDM01 Hardware Design Page 2 Caution Any Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2)This device must accept any interference received, including interference that may cause undesired operation. Note: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: — Reorient or relocate the receiving antenna. —Increase the separation between the equipment and receiver. —Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. — Consult the dealer or an experienced radio/TV technician for help. FCC Label Instructions If using a permanently affixed label, the modular transmitter must be labeled with its own FCC identification number, and, if the FCC identification number is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains FCC ID: 2AKAF-MDM01”. Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. MDM01 Hardware Design Page 3 OEM Guidance •Applicable FCC rules This device complies with part 22H/24E/27 of the FCC Rules. •The specific operational use conditions This module can be used in IoT devices. The input voltage to the module is nominally 3.8V DC. The operational ambient temperature of the module is -35°C~75°C. the external antenna is allowed, such as rod antenna. •Limited module procedures N/A •Trace antenna designs N/A •RF exposure considerations The equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance 20cm between the radiator and your body. If the equipment built into a host as a portable usage, the additional RF exposure evaluation may be required as specified by 2.1093. •Antennas To meet RF exposure & ERP/ERIP, the maximum net gains of antennas allowed are 8.0 dBi @ FDD (Band 2), 5.0 dBi @ FDD (Band 4) , 9.41 dBi @ FDD (Band 5), 8.69 dBi @ FDD (Band 12),8.7 dBi @ FDD (Band 17), 5 dBi @ FDD (Band 66).The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co- located or operating in conjunction with any other antenna or transmitter. Label and compliance information An exterior label on OEM’s end product can use wording such as the following: “Contains Transmitter Module FCC ID: 2AKAF-MDM01” or “Contains FCC ID: 2AKAF-MDM01” •Information on test modes and additional testing requirements The modular transmitter has been fully tested by the module grantee on the required number of channels, modulation types, and modes, it should not be necessary for the host installer to re-test all the available transmitter modes or settings. It is recommended that the host product manufacturer, installing the modular transmitter, perform some investigative measurements to confirm that the resulting composite system does not exceed the spurious emissions limits or band edge limits (e.g., where a different antenna may be causing additional emissions). The testing should check for emissions that may occur due to the intermixing of emissions with the other transmitters, digital circuitry, or due to physical properties of the host product (enclosure). This investigation is especially important when integrating multiple modular transmitters where the certification is based on testing each of them in a stand-alone configuration. It is important to note that host product manufacturers should not assume that because the modular transmitter is certified that they do not…

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Attestation Statements

Company name: Waylens Inc. Address: 2711 Centerville Road ‐ Suite 400, Wilmington, Delaware, United States 19808 Tel: +14084975377 Fax: +14084975377 Email: [email protected] Date: 04/08/2024 Attestation Letter FEDERAL COMMUNICATIONS COMMISSION Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 To whom it may concern: We, Waylens Inc., declared that the device only apply LTE (LTE Band 2: 1850‐1910 MHz(TX), 1930‐1990 MHz(RX) LTE Band 4: 1710‐1755 MHz(TX), 2110‐2155 MHz(RX) LTE Band 5: 824‐849 MHz(TX), 869‐894 MHz(RX) LTE Band 12: 699‐716 MHz(TX), 729‐746 MHz(RX) LTE Band 17: 704‐716 MHz(TX), 734‐746 MHz(RX) LTE Band 66: 1710‐1780 MHz(TX), 2110‐2200 MHz(RX)). Other functions were shielded by software, the end users can’t have the capacity to active it. Product type or description: LTE CAT.1 Module Model number: MDM01 FCC ID: 2AKAF‐MDM01 Please contact me if there is need for any additional clarification or information. Best Regards, Sincerely Yours, Signature: Typed or Printed Name: Ding Gang Title: COO

Cover Letter(s)

QA- FR-171-A Company name: Waylens Inc. Address: 2711 Centerville Road - Suite 400, Wilmington, Delaware, United States 19808 Tel: +14084975377 Fax: +14084975377 Email: [email protected] FCC Confidential Authorization D ate: 2024-04-08 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID: 2AKAF-MDM01 In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, Waylens Inc. hereby requests long-term confidential treatment of information accompanying this application as outlined below: Block Diagram Schematics Op eration Descriptio n BOM Tune up Th e 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, Signature: Printed Name: Ding Gang Title: COO

Cover Letter(s)

Company name: Waylens Inc. Address: 2711 Centerville Road - Suite 400, Wilmington, Delaware, United States 19808 Tel: +14084975377 Fax: +14084975377 Email: [email protected] Applicant Waylens Inc. FCC ID: 2AKAF‐MDM01 Section 15.212 Modular Transmitters Request for Modular Approval Request for Limited Modular Approval Requirements EUT Conditions Comply(Y/N) Single Modular Approval Requirements 1 The radio elements of the modular transmitter must have their own shielding. The physical crystal and tuning capacitors may be located external to the shielded radio elements. Refer to external photos. This module does have shield cover. Y 2 The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with part 15 requirements under conditions of excessive data rates or over‐modulation. All inputs to the modules are buffered through logic or microprocessor inputs. Refer to Schematics. Y 3 The modular transmitter must have its own power supply regulation. The Module uses the chip ASR1606N with built-in power management components, the module rated power is 3.8V power, Refer to schematics. Y 4 The modular transmitter must comply with the antenna and transmission system requirements of §§15.203, 15.204(b) and 15.204(c). The antenna must either be permanently attached or employ a “unique” antenna coupler (at all connections between the module and the antenna, including the cable). The “professional installation” provision of §15.203 is not applicable to modules but can apply to limited modular approvals under paragraph (b) of this section. The modular transmitter has a rod antenna arrangement for LTE Y 5 The modular transmitter must be tested in a stand‐alone configuration, i.e., the module must not be inside another device during testing for compliance with part 15 requirements. Unless the transmitter module will be battery powered, it must comply with the AC line conducted requirements found in §15.207. AC or DC power lines and data input/output lines connected to the module must not contain ferrites, unless they will be marketed with the module (see §15.27(a)). The length of these lines shall be the length typical of actual use or, if that length is unknown, at least 10 centimeters to insure that there is no coupling between the case of the module and supporting equipment. Any accessories, peripherals, or support equipment connected to the module during testing shall be unmodified and commercially available (see §15.31(i)). The modular transmitter is connected to the controlled board when testing. Please refer to setup photo. Y 6 If using a permanently affixed label, the modular transmitter must be labeled with its own FCC identification number, and, if the FCC identification number is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: 2AKAF‐MDM01” Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included Refer to the label. Y in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. In the latter case, a copy of these instructions must be included in the application for equipment authorization. 7 The modular transmitter must comply with any specific rules or operating requirements that ordinarily apply to a complete transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instructions must be included in the application for equipment authorization. Refer to manual Y 8 The modular transmitter must comply with any applicable RF exposure requirements in its final configuration. The EUT comply with RF exposure requirements § 2.1091.If the device built into a host as a portable usage, the RF exposure evaluation may be required as specified by § 2.1093. Y Sincerely Yours, Signature: Printed Name: Ding Gang Title: COO

External Photos

Bay Area Compliance Laboratories Corp. (Kunshan) Project No.: RSHA240408005 1 / 4 EXHIBIT A - EUT EXTERNAL PHOTOGRAPHS Bay Area Compliance Laboratories Corp. (Kunshan) Project No.: RSHA240408005 2 / 4 Bay Area Compliance Laboratories Corp. (Kunshan) Project No.: RSHA240408005 3 / 4 Bay Area Compliance Laboratories Corp. (Kunshan) Project No.: RSHA240408005 4 / 4 EUT on debug board Antenna

ID Label/Location Info

20.45 mm 19.45 mm LTE CAT.1 Module IMEI: XXXXXXXXXXXXXXX S/N: XXXXXXXXXXXXXXXXXXX FCC ID: 2AKAF-MDM01 MDM01 B01

Internal Photos

Bay Area Compliance Laboratories Corp. (Kunshan) Project No.: RSHA240408005 1 / 2 EXHIBIT B - EUT INTERNAL PHOTOGRAPHS Bay Area Compliance Laboratories Corp. (Kunshan) Project No.: RSHA240408005 2 / 2

RF Exposure Info

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. (Kunshan). This report must not be used by the customer to claim product certification, approval, or endorsement by NVLAP, or any agency of the U.S.Govemment. RF EXPOSURE REPORT For Waylens Inc. 2711 Centerville Road - Suite 400, Wilmington, Delaware, United States 19808 FCC ID: 2AKAF-MDM01 Report Type: Original Report Product Name: LTE CAT.1 Module Re port Number: RSHA240408005-00B Re port Date: 2024-05-30 Reviewed By: Jenny Yang Approves By: Kyle Xu Prepared By: Bay Area Compliance Laboratories Corp. (Kunshan) No.248 Chenghu Road, Kunshan, Jiangsu Province, China Tel: +86-512-86175000 Fax: +86-512-88934268 www.baclcorp.com.cn Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA240408005-00B FCC §1.1310 & §2.1091 Page 2 of 9 TABLE OF CONTENTS REPORT REVISION HISTORY................................................................................................................................. 3 GENERAL INFORMATION ....................................................................................................................................... 4 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT) ..................................................................................... 4 FCC §1.1310 & §2.1091 –MAXIMUM PERMISSIBLE EXPOSURE (MPE) ......................................................... 5 EUT PHOTOGRAPHS ................................................................................................................................................. 8 Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA240408005-00B FCC §1.1310 & §2.1091 Page 3 of 9 REPORT REVISION HISTORY Number of Revisions Report No. Version Issue Date Description 0 RSHA240408005-00B R1V1 2024-05-30 Initial Release Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA240408005-00B FCC §1.1310 & §2.1091 Page 4 of 9 GENERAL INFORMATION Product Description for Equipment under Test (EUT) Applicant: Waylens Inc. Tested Model: MDM01 Product Name: LTE CAT.1 Module Power Supply: DC 3.8V Maximum Conducted Output Power: Band 2: 24.04 dBm; Band 4: 24.82 dBm; Band 5: 24.66; Band 12: 24.78 dBm; Band 17: 23.93 dBm; Band 66: 22.86 dBm RF Function: LTE Operating Band/Frequency: LTE Band 2: 1850-1910 MHz(TX), 1930-1990 MHz(RX) LTE Band 4: 1710-1755 MHz(TX), 2110-2155 MHz(RX) LTE Band 5: 824-849 MHz(TX), 869-894 MHz(RX) LTE Band 12: 699-716 MHz(TX), 729-746 MHz(RX) LTE Band 17: 704-716 MHz(TX), 734-746 MHz(RX) LTE Band 66: 1710-1780 MHz (TX), 2110-2200 MHz(RX) Modulation Type: QPSK, 16QAM Antenna Type: Rod Antenna ★Maximum Antenna Gain: Band 2: 2.06 dBi; Band 4: 1.75 dBi; Band 5: -0.22 dBi; Band 12: -0.14 dBi; Band 17: -0.14 dBi; Band 66: 1.75 dBi ★Maximum Cable Loss: 0.2dB(Below 1GHz),0.4dB(Above 1GHz) Note: The maximum antenna gain is provided by the applicant. All measurement and test data in this report was gathered from production sample serial number: RSHA240408005-1 (Assigned by the BACL (Kunshan). The EUT supplied by the applicant was received on 2024-04-08.) Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA240408005-00B FCC §1.1310 & §2.1091 Page 5 of 9 FCC §1.1310 & §2.1091 –MAXIMUM PERMISSIBLE EXPOSURE (MPE) Applicable Standard According to subpart §2.1091 and subpart §1.1310, systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission’s guidelines. Limits for Maximum Permissible Exposure (MPE) (§1.1310, §2.1091) (B) Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Averaging Time (minutes) 0.3-1.34 614 1.63 *(100) 30 1.34-30 824/f 2.19/f *(180/f²) 30 30-300 27.5 0.073 0.2 30 300-1500 / / f/1500 30 1500-100,000 / / 1.0 30 f = frequency in MHz; * = Plane-wave equivalent power density; According to §1.1310 and §2.1091 RF exposure is calculated. Calculated Formulary Predication of MPE limit at a given distance S = PG/4πR² = power density (in appropriate units, e.g. mW/cm 2 ); P = power input to the antenna (in appropriate units, e.g., mW); G = power gain of the antenna in the direction of interest relative to an isotropic radiator, the power gain factor, is normally numeric gain; R = distance to the center of radiation of the antenna (appropriate units, e.g., cm); Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA240408005-00B FCC §1.1310 & §2.1091 Page 6 of 9 Calculated Data: Mode Frequency (MHz) Antenna Gain with cable loss ★Tune-up Output Power Evaluation Distance (cm) Power Density (mW/cm 2 ) MPE Limit (mW/cm 2 ) (dBi) (numeric) (dBm) (mW) LTE Band 2 1850-1910 1.66 1.47 25.0 316.23 20 0.0922 1.0 LTE Band 4 1710-1755 1.35 1.36 25.0 316.23 20 0.0858 1.0 LTE Band 5 824-849 -0.42 0.91 25.0 316.23 20 0.0571 0.5493 LTE Band 12 699-716 -0.34 0.92 25.0 316.23 20 0.0582 0.466 LTE Band 17 704-716 -0.34 0.92 25.0 316.23 20 0.0582 0.4693 LTE Band 66 1710-1780 1.35 1.36 25.0 316.23 20 0.0858 1.0 Calculation of maximum antenna gain based on ERP/EIRP Mode Max Tune-up Power (dBm) ERP/EIRP Limit (dBm) Max Antenna Gain (dBi) FDD (Band 2) 25.0 33.00 8.00 FDD (Band 4) 25.0 30.00 5.00 FDD (Band 5) 25.0 38.45 15.60 FDD (Band 12) 25.0 34.77 11.92 FDD (Band 17) 25.0 34.77 11.92 FDD (Band 66) 25.0 30.00 5.00 Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHA240408005-00B FCC §1.1310 & §2.1091 Page 7 of 9 Calculation of maximum antenna gain based on MPE Ratio Mode Frequency Range Tune-up Conducted Power Power Density Limit Maximum Power Density Evaluation Distance Maximun Antenna Gain Allowed based on MPE (MHz) (dBm) (mW) (mW/cm 2 ) (mW/cm 2 ) (cm) (numeric) (dBi) FDD (Band 2) 1850-1910 25.0 316.23 1.0 0.9970 …

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Test Report

Shenzhen Deman Electronics Co.,Ltd Specification of Antenna P/N:TD1146B-H3253 Shenzhen Deman Electronics Co.,Ltd 1.Ant Picture 2.S11 VSWR Shenzhen Deman Electronics Co.,Ltd 3. Eff&Gain Band Fre(MHz) Eff(dB) Gain(dBi) B12/17 690 -3.89 -0.14 750 -4.41 -0.31 B5 820 -4.4 -0.22 900 -4.71 -0.25 B2 1850 -3.46 2.06 1990 -3.35 1.69 B4/66 1710 -3.52 1.75 2200 -2.73 0.36 4.2D pattern B2 B4/66 Shenzhen Deman Electronics Co.,Ltd B5 B12/17 Shenzhen Deman Electronics Co.,Ltd 5. Dimensions: 6.ADD:Building C, Shunluo Industrial Park, Dafu Industrial Zone, Guanlan Town, Longhua New District, Shenzhen City, Guangdong Province

Test Report

Report No.:RSHA240408005-00A TR-4-E-D93 B2 , Normal Mode Value (dBm) Limit Result 1.4MHz_Low_QPSK_1@0 -18.58 See Graphs Pass 1.4MHz_Low_QPSK_6@0 -24.09 See Graphs Pass 1.4MHz_High_QPSK_1@5 -19.45 See Graphs Pass 1.4MHz_High_QPSK_6@0 -25.64 See Graphs Pass 3MHz_Low_QPSK_1@0 -19.25 See Graphs Pass 3MHz_Low_QPSK_15@0 -25.39 See Graphs Pass 3MHz_High_QPSK_1@14 -18.91 See Graphs Pass 3MHz_High_QPSK_15@0 -23.11 See Graphs Pass 5MHz_Low_QPSK_1@0 -19.58 See Graphs Pass 5MHz_Low_QPSK_25@0 -20.05 See Graphs Pass 5MHz_High_QPSK_1@24 -22.82 See Graphs Pass 5MHz_High_QPSK_25@0 -22.03 See Graphs Pass 10MHz_Low_QPSK_1@0 -14.40 See Graphs Pass 10MHz_Low_QPSK_50@0 -28.60 See Graphs Pass 10MHz_High_QPSK_1@49 -13.68 See Graphs Pass 10MHz_High_QPSK_50@0 -28.01 See Graphs Pass 15MHz_Low_QPSK_1@0 -25.29 See Graphs Pass 15MHz_Low_QPSK_75@0 -28.10 See Graphs Pass 15MHz_High_QPSK_1@74 -14.43 See Graphs Pass 15MHz_High_QPSK_75@0 -28.93 See Graphs Pass 20MHz_Low_QPSK_1@0 -16.47 See Graphs Pass 20MHz_Low_QPSK_100@0 -32.23 See Graphs Pass 20MHz_High_QPSK_1@99 -17.26 See Graphs Pass 20MHz_High_QPSK_100@0 -31.48 See Graphs Pass 1.4MHz_Low_16QAM_1@0 -23.81 See Graphs Pass 1.4MHz_Low_16QAM_6@0 -21.06 See Graphs Pass 1.4MHz_High_16QAM_1@5 -22.98 See Graphs Pass 1.4MHz_High_16QAM_6@0 -21.20 See Graphs Pass 3MHz_Low_16QAM_1@0 -20.96 See Graphs Pass 3MHz_Low_16QAM_15@0 -20.11 See Graphs Pass 3MHz_High_16QAM_1@14 -21.45 See Graphs Pass 3MHz_High_16QAM_15@0 -21.21 See Graphs Pass 5MHz_Low_16QAM_1@0 -19.09 See Graphs Pass 5MHz_Low_16QAM_25@0 -23.26 See Graphs Pass 5MHz_High_16QAM_1@24 -17.53 See Graphs Pass 5MHz_High_16QAM_25@0 -22.03 See Graphs Pass 10MHz_Low_16QAM_1@0 -25.67 See Graphs Pass 10MHz_High_16QAM_1@49 -26.54 See Graphs Pass 10MHz_Low_16QAM_27@0 -35.61 See Graphs Pass Report No.:RSHA240408005-00A TR-4-E-D93 10MHz_High_16QAM_27@23 -33.67 See Graphs Pass 15MHz_Low_16QAM_1@0 -30.03 See Graphs Pass 15MHz_High_16QAM_1@74 -29.56 See Graphs Pass 20MHz_Low_16QAM_1@0 -37.39 See Graphs Pass 20MHz_High_16QAM_1@74 -40.45 See Graphs Pass 15MHz_Low_16QAM_27@0 -30.88 See Graphs Pass 15MHz_High_16QAM_27@48 -30.62 See Graphs Pass 20MHz_Low_16QAM_27@0 -33.60 See Graphs Pass 20MHz_High_16QAM_27@73 -33.54 See Graphs Pass Report No.:RSHA240408005-00A TR-4-E-D93 B2 , Normal 1.4MHz_Low_QPSK_1@0 -18.58 dBm 1.4MHz_Low_QPSK_6@0 -24.09 dBm 1.4MHz_High_QPSK_1@5 -19.45 dBm 1.4MHz_High_QPSK_6@0 -25.64 dBm 3MHz_Low_QPSK_1@0 -19.25 dBm 3MHz_Low_QPSK_15@0 -25.39 dBm Report No.:RSHA240408005-00A TR-4-E-D93 3MHz_High_QPSK_1@14 -18.91 dBm 3MHz_High_QPSK_15@0 -23.11 dBm 5MHz_Low_QPSK_1@0 -19.58 dBm 5MHz_Low_QPSK_25@0 -20.05 dBm 5MHz_High_QPSK_1@24 -22.82 dBm 5MHz_High_QPSK_25@0 -22.03 dBm Report No.:RSHA240408005-00A TR-4-E-D93 10MHz_Low_QPSK_1@0 -14.40 dBm 10MHz_Low_QPSK_50@0 -28.60 dBm 10MHz_High_QPSK_1@49 -13.68 dBm 10MHz_High_QPSK_50@0 -28.01 dBm  15MHz_Low_QPSK_1@0 -25.29 dBm 15MHz_Low_QPSK_75@0 -28.10 dBm Report No.:RSHA240408005-00A TR-4-E-D93 15MHz_High_QPSK_1@74 -14.43 dBm 15MHz_High_QPSK_75@0 -28.93 dBm 20MHz_Low_QPSK_1@0 -16.47 dBm 20MHz_Low_QPSK_100@0 -32.23 dBm 20MHz_High_QPSK_1@99 -17.26 dBm 20MHz_High_QPSK_100@0 -31.48 dBm Report No.:RSHA240408005-00A TR-4-E-D93 1.4MHz_Low_16QAM_1@0 -23.81dBm 1.4MHz_Low_16QAM_6@0 -21.06dBm 1.4MHz_High_16QAM_1@5 -22.98dBm 1.4MHz_High_16QAM_6@0 -21.20dBm 3MHz_Low_16QAM_1@0 -20.96dBm 3MHz_Low_16QAM_15@0 -20.11dBm Report No.:RSHA240408005-00A TR-4-E-D93 3MHz_High_16QAM_1@14 -21.45dBm 3MHz_High_16QAM_15@0 -21.21dBm 5MHz_Low_16QAM_1@0 -19.09dBm 5MHz_Low_16QAM_25@0 -23.26dBm 5MHz_High_16QAM_1@24 -17.53dBm 5MHz_High_16QAM_25@0 -22.03dBm Report No.:RSHA240408005-00A TR-4-E-D93 10MHz_Low_16QAM_1@0 -25.67dBm 10MHz_High_16QAM_1@49 -26.54dBm 10MHz_Low_16QAM_27@0 10MHz_High_16QAM_27@23 Report No.:RSHA240408005-00A TR-4-E-D93 15MHz_Low_16QAM_1@0 -30.03dBm 15MHz_High_16QAM_1@74 -29.56dBm 20MHz_Low_16QAM_1@0 -37.39dBm 20MHz_High_16QAM_1@99 -40.45dBm Report No.:RSHA240408005-00A TR-4-E-D93 15MHz_Low_16QAM_27@0 15MHz_High_16QAM_27@48 20MHz_Low_16QAM_27@0 Report No.:RSHA240408005-00A TR-4-E-D93 20MHz_High_16QAM_27@73

Test Report

Report No.:RSHA240408005-00A TR-4-E-D93 B12 , Normal Mode Value (dBm) Limit Result 1.4MHz_Low_QPSK_1@0 -19.46 See Graphs Pass 1.4MHz_Low_QPSK_6@0 -24.77 See Graphs Pass 1.4MHz_High_QPSK_1@5 -19.03 See Graphs Pass 1.4MHz_High_QPSK_6@0 -24.67 See Graphs Pass 3MHz_Low_QPSK_1@0 -19.90 See Graphs Pass 3MHz_Low_QPSK_15@0 -28.34 See Graphs Pass 3MHz_High_QPSK_1@14 -20.56 See Graphs Pass 3MHz_High_QPSK_15@0 -28.04 See Graphs Pass 5MHz_Low_QPSK_1@0 -13.28 See Graphs Pass 5MHz_Low_QPSK_25@0 -26.02 See Graphs Pass 5MHz_High_QPSK_1@24 -13.54 See Graphs Pass 5MHz_High_QPSK_25@0 -26.00 See Graphs Pass 10MHz_Low_QPSK_1@0 -18.25 See Graphs Pass 10MHz_Low_QPSK_50@0 -30.65 See Graphs Pass 10MHz_High_QPSK_1@49 -19.58 See Graphs Pass 10MHz_High_QPSK_50@0 -30.92 See Graphs Pass 1.4MHz_Low_16QAM_1@0 -26.05 See Graphs Pass 1.4MHz_Low_16QAM_6@0 -21.36 See Graphs Pass 1.4MHz_High_16QAM_1@5 -24.1 See Graphs Pass 1.4MHz_High_16QAM_6@0 -23.64 See Graphs Pass 3MHz_Low_16QAM_1@0 -23.67 See Graphs Pass 3MHz_Low_16QAM_15@0 -25.28 See Graphs Pass 3MHz_High_16QAM_1@14 -21.65 See Graphs Pass 3MHz_High_16QAM_15@0 -27.63 See Graphs Pass 5MHz_Low_16QAM_1@0 -24.76 See Graphs Pass 5MHz_Low_16QAM_25@0 -28.87 See Graphs Pass 5MHz_High_16QAM_1@24 -22.30 See Graphs Pass 5MHz_High_16QAM_25@0 -30.12 See Graphs Pass 10MHz_Low_16QAM_1@0 -31.64 See Graphs Pass 10MHz_High_16QAM_1@49 -30.55 See Graphs Pass 10MHz_Low_16QAM_27@0 -30.98 See Graphs Pass 10MHz_High_16QAM_27@23 -32.58 See Graphs Pass Report No.:RSHA240408005-00A TR-4-E-D93 B17 , Normal Mode Value (dBm) Limit Result 5MHz_Low_QPSK_1@0 -14.48 See Graphs Pass 5MHz_Low_QPSK_25@0 -24.76 See Graphs Pass 5MHz_High_QPSK_1@24 -14.00 See Graphs Pass 5MHz_High_QPSK_25@0 -26.44 See Graphs Pass 10MHz_Low_QPSK_1@0 -18.17 See Graphs Pass 10MHz_Low_QPSK_50@0 -29.70 See Graphs Pass 10MHz_High_QPSK_1@49 -19.58 See Graphs Pass 10MHz_High_QPSK_50@0 -30.64 See Graphs Pass 5MHz_Low_16QAM_1@0 -23.11 See Graphs Pass 5MHz_Low_16QAM_25@0 -28.66 See Graphs Pass 5MHz_High_16QAM_1@24 -23.65 See Graphs Pass 5MHz_High_16QAM_25@0 -29.66 See Graphs Pass 10MHz_Low_16QAM_1@0 -31.55 See Graphs Pass 10MHz_High_16QAM_1@49 -30.85 See Graphs Pass 10MHz_Low_16QAM_27@0 -31.83 See Graphs Pass 10MHz_High_16QAM_27@23 -32.89 See Graphs Pass B4 , Normal Mode Value (dBm) Limit Result 1.4MHz_Low_QPSK_1@0 -19.16 See Graphs Pass 1.4MHz_Low_QPSK_6@0 -24.88 See Graphs Pass 1.4MHz_High_QPSK_1@5 -17.58 See Graphs Pass 1.4MHz_High_QPSK_6@0 -26.77 See Graphs Pass 3MHz_Low_QPSK_1@0 -19.94 See Graphs Pass 3MHz_Low_QPSK_15@0 -23.33 See Graphs Pass 3MHz_High_QPSK_1@14 -20.56 See Graphs Pass 3MHz_High_QPSK_15@0 -25.33 See Graphs Pass Report No.:RSHA240408005-00A TR-4-E-D93 Mode Value (dBm) Limit Result 5MHz_Low_QPSK_1@0 -44.19 See Graphs Pass 5MHz_Low_QPSK_25@0 -21.14 See Graphs Pass 5MHz_High_QPSK_1@24 -18.76 See Graphs Pass 5MHz_High_QPSK_25@0 -21.66 See Graphs Pass 10MHz_Low_QPSK_1@0 -14.39 See Graphs Pass 10MHz_Low_QPSK_50@0 -26.20 See Graphs Pass 10MHz_High_QPSK_1@49 -14.14 See Graphs Pass 10MHz_High_QPSK_50@0 -28.21 See Graphs Pass 15MHz_Low_QPSK_1@0 -25.28 See Graphs Pass 15MHz_Low_QPSK_75@0 -25.60 See Graphs Pass 15MHz_High_QPSK_1@74 -14.45 See Graphs Pass 15MHz_High_QPSK_75@0 -27.31 See Graphs Pass 20MHz_Low_QPSK_1@0 -17.05 See Graphs Pass 20MHz_Low_QPSK_100@0 -29.57 See Graphs Pass 20MHz_High_QPSK_1@99 -17.44 See Graphs Pass 20MHz_High_QPSK_100@0 -30.78 See Graphs Pass 1.4MHz_Low_16QAM_1@0 -24.24 See Graphs Pass 1.4MHz_Low_16QAM_6@0 -18.92 See Graphs Pass 1.4MHz_High_16QAM_1@5 -23.00 See Graphs Pass 1.4MHz_High_16QAM_6@0 -20.21 See Graphs Pass 3MHz_Low_16QAM_1@0 -21.85 See Graphs Pass 3MHz_Low_16QAM_15@0 -19.71 See Graphs Pass 3MHz_High_16QAM_1@14 -21.68 See Graphs Pass 3MHz_High_16QAM_15@0 -20.58 See Graphs Pass 5MHz_Low_16QAM_1@0 -20.08 See Graphs Pass 5MHz_Low_16QAM_25@0 -21.51 See Graphs Pass 5MHz_High_16QAM_1@24 -17.09 See Graphs Pass 5MHz_High_16QAM_25@0 -21.70 See Graphs Pass 10MHz_Low_16QAM_1@0 -26.21 See Graphs Pass 10MHz_High_16QAM_1@49 -26.7 See Graphs Pass 10MHz_Low_16QAM_27@0 -30.37 See Graphs Pass 10MHz_High_16QAM_27@23 -30.35 See Graphs Pass 15MHz_Low_16QAM_1@0 -29.53 See Graphs Pass 15MHz_High_16QAM_1@74 -30.16 See Graphs Pass 20MHz_Low_16QAM_1@0 -37.78 See Graphs Pass 20MHz_High_16QAM_1@99 -37.74 See Graphs Pass 15MHz_Low_16QAM_27@0 -26.44 See Graphs Pass 15MHz_High_16QAM_27@48 -27.46 See Graphs Pass 20MHz_Low_16QAM_27@0 -25.94 See Graphs Pass 20MHz_High_16QAM_27@73 -27.33 See Graphs Pass Report No.:RSHA240408005-00A TR-4-E-D93 B12 , Normal 1.4MHz_Low_QPSK_1@0 -19.46 dBm 1.4MHz_Low_QPSK_6@0 -24.77 dBm 1.4MHz_High_QPSK_1@5 -19.03 dBm 1.4MHz_High_QPSK_6@0 -24.67 dBm 3MHz_Low_QPSK_1@0 -19.90 dBm 3MHz_Low_QPSK_15@0 -28.34 dBm Report No.:RSHA240408005-00A TR-4-E-D93 3MHz_High_QPSK_1@14 -20.56 dBm 3MHz_High_QPSK_15@0 -28.04 dBm 5MHz_Low_QPSK_1@0 -13.28 dBm 5MHz_Low_QPSK_25@0 -26.02 dBm 5MHz_High_QPSK_1@24 -13.54 dBm 5MHz_High_QPSK_25@0 -26.00 dBm Report No.:RSHA240408005-00A TR-4-E-D93 10MHz_Low_QPSK_1@0 -18.25 dBm 10MHz_Low_QPSK_50@0 -30.65 dBm 10MHz_High_QPSK_1@49 -19.58 dBm 10MHz_High_QPSK_50@0 -30.92 dBm 1.4MHz_Low_16QAM_1@0 -26.05dBm 1.4MHz_Low_16QAM_6@0 -21.36dBm Report No.:RSHA240408005-00A TR-4-E-D93 1.4MHz_High_16QAM_1@5 -24.1dBm 1.4MHz_High_16QAM_6@0 -23.64dBm 3MHz_Low_16QAM_1@0 -23.67dBm 3MHz_Low_16QAM_15@0 -25.28dBm 3MHz_High_16QAM_1@14 -21.65dBm 3MHz_High_16QAM_15@0 -27.63dBm Report No.:RSHA240408005-00A TR-4-E-D93 5MHz_Low_16QAM_1@0 -24.76dBm 5MHz_Low_16QAM_25@0 -28.87dBm 5MHz_High_16QAM_1@24 -22.30dBm 5MHz_High_16QAM_25@0 -30.12dBm 10MHz_Low_16QAM_1@0 -31.64dBm 10MHz_High_16QAM_1@49 -30.55dBm Report No.:RSHA240408005-00A TR-4-E-D93 10MHz_Low_16QAM_27@0 10MHz_High_16QAM_27@23 Report No.:RSHA240408005-00A TR-4-E-D93 B17 , Normal 5MHz_Low_QPSK_1@0 -14.48 dBm 5MHz_Low_QPSK_25@0 -24.76 dBm Report No.:RSHA240408005-00A TR-4-E-D93 5MHz_High_QPSK_1@24 -14.00 dBm 5MHz_High_QPSK_25@0 -26.44 dBm 10MHz_Low_QPSK_1@0 -18.17 dBm 10MHz_Low_QPSK_50@0 -29.70 dBm 10MHz_High_QPSK_1@49 -19.58 dBm 10MHz_High_QPSK_50@0 -30.64…

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Test Report

Report No.:RSHA240408005-00A TR-4-E-D93 B5 , Normal Mode Value (dBm) Limit Result 1.4MHz_Low_QPSK_1@0 -18.12 See Graphs Pass 1.4MHz_Low_QPSK_6@0 -25.70 See Graphs Pass 1.4MHz_High_QPSK_1@5 -17.77 See Graphs Pass 1.4MHz_High_QPSK_6@0 -26.03 See Graphs Pass 3MHz_Low_QPSK_1@0 -18.67 See Graphs Pass 3MHz_Low_QPSK_15@0 -28.55 See Graphs Pass 3MHz_High_QPSK_…

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Contact Information

Applicant

Ding Gang(COO)
[email protected]+14084975377Fax: +14084975377

Test Firm

Bay Area Compliance Laboratories Corp. (Kunshan)John Chan
[email protected]86-512-86175000

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
22271.72 GHz - 1.77 GHz181.00 mW5M14D7W2.5 ppm
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Modular Approval. Output power listed is conducted. LTE supports 1.4/3/5/10/15/20 MHz BW modes in Band 2 & Band 4/66, 1.4/3/5/10 MHz BW modes in Band 5 & Band 12, and 5/10MHz BW modes in Band 17. Antenna gain including cable loss must not exceed 8 dBi in Band 2, 5 dBi in Band 4, 9.41 dBi in Band 5, 8.69 dBi in Band 12, 8.77 dBi in Band 17 and 5 dBi in Band 66 for the purpose of satisfying the requirements of CFR 47 §2.1043 and §2.1091. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons. Co-location of this module with other transmitters that operate simultaneously is required to be evaluated using the FCC multi-transmitter procedures. Compliance of this device in all final product configurations is the responsibility of the Grantee. Installation of this device into specific final products may require the submission of a Class II permissive change application containing data pertinent to RF Exposure, spurious emissions, ERP/EIRP, and host/module authentication, or new application if appropriate. This device contains functions that are not operational in U.S Territories. This filing is only applicable for US operations.

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