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2ALEPT0009468The KONA Mega Gen3 Gateway module is a LoRaWAN gateway designed for IoT applications.

TEKTELIC Communications Incorporated
The KONA Mega Gen3 Gateway module is a LoRaWAN gateway designed for IoT applications. - FCC ID 2ALEPT0009468 - TEKTELIC Communications Incorporated
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Sep 11, 2026
Application Purpose
Original Equipment
Equipment Note
The KONA Mega Gen3 Gateway module is a LoRaWAN gateway designed for IoT applications.
Frequency Range
923.00000000 - 928.00000000
Company
TEKTELIC Communications Incorporated
Country
Canada

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

PROPRIETARY: The information contained in this document is the property of TEKTELIC Communications Inc. © 2026 TEKTELIC Communications Inc., all rights reserved. All products, names, and services are trademarks and registered trademarks of their respective companies. TEKTELIC Communications Inc. 7657 10 th Street NE Calgary, AB, Canada T2E 8X2 Phone: (403) 338-6900 KONA MEGA GEN3 GATEWAY User Guide Document Type: User Guide Document Number: T0009468_UG Document Issue: 1.2 Document Status: Released Product Name: KONA Mega Gen3 Gateway Product Code: Table 1 Issue Date: August 12, 2026 KONA Mega Gen3 Gateway User Guide T0009468_UG Version 1.2 TEKTELIC Communications Inc. Page 2 of 20 Document Revision Revision Issue Date Status Comments 0.1 2025-11-03 Draft 0.2 2025-11-11 Draft Minor corrections after review 1.0 2025-11-28 Obsolete Updated and Released 1.1 2026-01-30 Obsolete Updated Table 1 1.2 2026-08-12 Released  Updated Table 1  Updated images in 1.2  Updated secion 1.4 KONA Mega Gen3 Gateway User Guide T0009468_UG Version 1.2 TEKTELIC Communications Inc. Page 3 of 20 Table of Contents 1 Product Description ................................................................................................................. 6 1.1 Overview .......................................................................................................................... 6 1.2 Bulkhead Layout ............................................................................................................... 8 1.3 Specifications.................................................................................................................. 11 1.4 Exposed Services ............................................................................................................ 11 2 Installation ............................................................................................................................. 12 2.1 Safety Precautions .......................................................................................................... 12 2.2 Unpacking and Inspection .............................................................................................. 13 2.3 Required Equipment for Installation .............................................................................. 13 2.4 KONA Mega Gen3 Gateway Mounting .......................................................................... 13 2.5 Ground Cable Installation .............................................................................................. 15 2.6 Direct DC Power Cable Installation ................................................................................ 16 2.7 RF Cable Installation ....................................................................................................... 16 2.8 Copper Ethernet Cable Installation ................................................................................ 17 2.9 Proposition 65 Statement .............................................................................................. 17 3 Radio Compliance Statements .............................................................................................. 18 KONA Mega Gen3 Gateway User Guide T0009468_UG Version 1.2 TEKTELIC Communications Inc. Page 4 of 20 List of Tables Table 1: KONA Mega Gen3 Gateway Models ................................................................................. 6 Table 2: KONA Mega Gen3 Gateway Interface Connector Types ................................................ 10 Table 3: KONA Mega Gen3 Gateway Specifications ..................................................................... 11 KONA Mega Gen3 Gateway User Guide T0009468_UG Version 1.2 TEKTELIC Communications Inc. Page 5 of 20 List of Figures Figure 1: KONA Mega Gen3 Gateway Common Dimensions ......................................................... 7 Figure 2: KONA Mega Gen3 Gateway, 2x LoRa, LTE backhaul........................................................ 8 Figure 3: KONA Mega Gen3 Gateway, 1x LoRa, LTE backhaul (FUTURE) ....................................... 8 Figure 4: KONA Mega Gen3 Gateway, 2x LoRa, Ethernet backhaul only ....................................... 9 Figure 5: KONA Mega Gen3 Gateway, 1x LoRa, Ethernet backhaul only (FUTURE) ....................... 9 Figure 6: KONA Module with Mounting Bracket .......................................................................... 14 Figure 7: Chassis Ground Connection ........................................................................................... 15 Figure 8: Direct DC Power Connection Polarity ............................................................................ 16 KONA Mega Gen3 Gateway User Guide T0009468_UG Version 1.2 TEKTELIC Communications Inc. Page 6 of 20 1 Product Description 1.1 Overview The KONA Mega Gen3 Gateway is a LoRaWAN IoT gateway. The gateway platform is designed to support a multitude of deployment configurations in an outdoor environment. The hardware architecture supports up to two LoRa antennas, a GPS antenna, direct DC input power or Power over Ethernet (PoE), copper Ethernet backhaul, and optional 3G/4G wireless backhaul. Table 1 presents the currently available KONA Mega Gen3 Gateway models. Table 1: KONA Mega Gen3 Gateway Models Region Gateway Model No. Channel Plan Radio PCBA Filter(s) LoRa Ant Cellular Backhaul North America T0009532 Custom T0009347 T0009450 Rx: 902-919.2 MHz Tx: 923-928 MHz 2 Yes T0009627 US915 T0009378 T0004144 Rx: 902-915 MHz Tx: 923-928 MHz 1 No T0009626 T0009347 1 Yes T0009519 T0009378 2 No T0009520 T0009347 2 Yes Europe T0009630 EU868 T0009379 T0007842 863-870 MHz 1 No T0009629 T0009348 1 Yes T0009523 T0009379 2 No T0009524 T0009348 2 Yes Figure 1 illustrates the common Gateway external form-factor. The differences between the options are limited to the bulkhead field. KONA Mega Gen3 Gateway User Guide T0009468_UG Version 1.2 TEKTELIC Communications Inc. Page 7 of 20 Figure 1: KONA Mega Gen3 Gatew…

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Attestation Statements

U.S. Agent Designation for Service of Process ATTENTION: Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA REGARDING: FCC Certification – Section 2.911(d)(7) Information Designated U.S. Agent Company Name: Approve-IT, Inc. Contact Name: Nathan Grinager Street Address: 8011 34 th Ave South, Suite 342 City/Province/Zip: Bloomington, MN 55425 Telephone No: 651-247-1678 Email: [email protected] FRN #: 0027533835 This letter is to confirm that we (“the Designated U.S. Agent) have accepted the responsibility to act as the Designated U.S. Agent for Service of Process as required by section 47 CFR 2.911(d)(7) on behalf of the Applicant noted below. U.S. Agent Signature: Date: May 16, 2024 Signed by (Printed Name/Title): Nathan Grinager / Co-President *This letter is valid indefinitely for all applications submitted within the period of May 16, 2024 – May 15, 2029. The Applicant confirms its explicit consent and acknowledges that they must maintain an agent for no less than one year after terminating all marketing and importation OR the conclusion of any Commission-related proceeding involving the equipment. The applicant further acknowledges their responsibility to inform the FCC whenever the Designated U.S. Agent information above changes. Applicant Company name: TEKTELIC Communications Inc. FRN #: 0026333831 Grantee Code: 2ALEP Contact Name: David Tholl Street Address: 7657 10 Street NE City/Province/Zip: Calgary, AB T2E 8X2 Telephone No: (office) 403-338-6902 (mobile) 403 819 5289 Email: [email protected] Applicant Signature: Date: May 16, 2024 David Tholl, Chief Technology Officer TEKTELIC Communications Inc.

Attestation Statements

Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: August 12, 2026 SUBJECT: Certification Attestation Statements for FCC ID: 2ALEPT0009468 To Whom It May Concern: 47 CFR section 2.911(d)(5)(i) Attestation Statement TEKTELIC Communications Inc certifies that as of the date of the application the equipment for which authorization is sought is not “covered” equipment1 prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. If the equipment for which the applicant seeks authorization is produced by any of the entities identified on the current Covered List, including affiliates or subsidiaries of the named companies, the applicant must include an explanation on why the equipment is not “covered” equipment. 47 CFR section 2.911(d)(5)(ii) Attestation Statement TEKTELIC Communications Inc, (“the applicant”), certifies that, as of the date of the filing of this application, the applicant is not identified on the Covered List (as a specifically named entity or any of its subsidiaries or affiliates) as an entity producing “covered” equipment Sincerely, David Tholl, P.Eng CTO/VP Engineering TEKTELIC Communications Inc

Cover Letter(s)

Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: August 12, 2026 Subject: Confidentiality Request regarding application for certification of FCC ID: 2ALEPT0009468 Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: Exhibit Type File Name Block Diagram T0009468_BlkDia.pdf Schematics T0009468_Sch.pdf Operational Description T0009468_OpDesc.pdf Parts List T0009468_PartList.pdf The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, David Tholl, P.Eng CTO/VP Engineering TEKTELIC Communications Inc

Cover Letter(s)

Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: August 12, 2026 SUBJECT: Application for FCC ID: 2ALEPT0009468 To Whom It May Concern: We, the undersigned, hereby authorize Marc Rousseau at Electronics Test Centre – Airdrie (MPB Technologies Inc.) on our behalf, to apply to the Federal Communications Commission on our equipment. Any and all acts carried out by Electronics Test Center – Airdrie (MPB Technologies Inc.) on our behalf shall have the same effect as acts of our own. This is to advise that we are in full compliance with the Anti- Drug Abuse Act. We, the applicant, are not subject to a denial of federal benefits pursuant to Section 5301 of the Anti- Drug Act of 1988, 21 USC853a, and no party to the application is subject to a denial of federal benefits pursuant to that section. Sincerely, David Tholl, P.Eng CTO/VP Engineering TEKTELIC Communications Inc

External Photos

FCC ID: 2ALEPT0009468 IC: 22504-T0009468 External Photos Top view FCC ID: 2ALEPT0009468 IC: 22504-T0009468 External Photos Bottom view FCC ID: 2ALEPT0009468 IC: 22504-T0009468 External Photos Front (view) FCC ID: 2ALEPT0009468 IC: 22504-T0009468 External Photos Back (view): FCC ID: 2ALEPT0009468 IC: 22504-T0009468 External Photos Side-1 View FCC ID: 2ALEPT0009468 IC: 22504-T0009468 External Photos Side-2 View

Internal Photos

FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Inside view – Chassis lid removed FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Inside view with cavity filters removed: FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Inside view with cavity filters and metal plate removed FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Close-up view LoRa radio shield FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Inside view without LoRa radio shield: FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Shield Top view: FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Shield Inside view: FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Close-up view of Pre-Certified LTE module: FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Close-up view of SIM / UART interface Close-up view of Ethernet / Power interface FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Main PCB Top View: FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Main PCB bottom View: FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Cavity filter top view FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Cavity filter TX / RX ports FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Cavity filter Side View FCC ID: 2ALEPT0009468 IC: 22504-T0009468 Internal Photos Cavity filter Antenna port

RF Exposure Info

FCC ID: 2ALEPT0009468 Maximum Permissible Exposure Report Date: August 31, 2026 1 Test Sample Description: Product Name: KONA Mega Gen3 Gateway Functional Description: The KONA Mega Gen3 Gateway module is a LoRaWAN gateway designed for IoT applications. Its intended purpose is to provide a carrier grade Gateway solution for LoRa networks. Several configuration options of the KONA Mega will be available to meet the requirements of the customer. The product is designed to operate in the North American Industrial, Scientific and Medical (ISM) Band. Category: Fix (Fixed RF source is one that is physically secured at one location, even temporarily, and is not able to be easily moved to another location while radiating) Power supply: 48VDC / POE LoRa: Radio 500 KHz Frequency Range: Mode of operation: Highest Gain Antenna Description: 923 – 928 MHz DTS MODLE:WTTX-OMNI920-8-NJ, Polarization: Vertical, Gain 8.0 dBi FCC ID: RI7LE910CXWWX Equipment Class: PCS Licensed Transmitter Modular Type: Single Modular Model#: LE910C4-WWX Manufacture: Telit Communications S.p.A Antenna Description: MODLE:WTTX-OMNILTE-2-NJ-TEC, Polarization: Vertical, Gain 2.0 dBi Prepared for: Tektelic Communication Inc. 7657 10 th Street NE Calgary, Alberta Canada T2E 8X2 Telephone: 1-403-338-6910 LTE: Pre-Certified Module KONA Mega Gen3 Gateway FCC ID: 2ALEPT0009468 Maximum Permissible Exposure Report 2 2 RF Exposure Limits: KONA Micro Gateway evaluated for RF radiation exposure according to the provisions of FCC §2.1091, MPE guidelines identified in FCC §1.1310 and FCC KDB 447498:2015. TABLE 1 TO §1.1310(E)(1)—LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency range (MHz) Electric field strength (V/m) Magnetic field strength (A/m) Power density (mW/cm 2 ) Averaging time (minutes) (i) Limits for Occupational/Controlled Exposure 0.3-3.0 614 1.63 *(100) ≤6 3.0-30 1842/f 4.89/f *(900/f 2 ) <6 30-300 61.4 0.163 1.0 <6 300-1,500 f/300 <6 1.500-100,000 5 <6 (ii) Limits for General Population/Uncontrolled Exposure 0.3-1.34 614 1.63 *(100) <30 1.34-30 824/f 2.19/f *(180/f 2 ) <30 30-300 27.5 0.073 0.2 <30 300-1.500 f/1500 <30 1.500-100,000 1.0 <30 Where f = frequency in MHz. * = Plane-wave equivalent power density. Using the lowest transmitter frequency of all possible on-board radio (module radio LE910C4-WWX) for worst case calculation: 699.7 MHz (LE910C4-WWX module, LTE band 12) is used. S = f/1500 mW/cm2, for General Population/Uncontrolled Exposure S = 699.7/1500 mW/cm2, for General Population/Uncontrolled Exposure S = 0.4665 mW/cm2, for General Population/Uncontrolled Exposure KONA Mega Gen3 Gateway FCC ID: 2ALEPT0009468 Maximum Permissible Exposure Report 3 2.1 Procedure The procedure used to determine the RF power density was based upon a calculation for determining compliance with the MPE requirements. The power generated by the transmitter used in this product was initially measured by a spectrum analyzer and the powers were recorded. Through use of the Friis transmission formula and knowledge of the maximum antenna gain to be used, the power density level is calculated at a distance of 20cm. Friis Transmission Formula Friis transmission formula: Pd = (Pout*G) / (4πr2) : Pd = (EIRP) / (4πr2) Where, Pd = Power Density (mW/cm2) π = 3.1416 EIRP = [Output power to antenna + antenna Gain (dBi)] mW r = distance between observation point and center of the radiator (cm) KONA Mega Gen3 Gateway FCC ID: 2ALEPT0009468 Maximum Permissible Exposure Report 4 3 Pre-certified LTE Module EIRP: As per Telit Communications S.p.A Pre-certified Module MPE Evaluation for LE910C4-WWX Radio Module Report dated January 6, 2021. The average EIRP calculations are shown in the table below for each mode of operation. Band/Mode Frequency [MHz] Max average powers [dBm] Maximum Antenna Gain [dBi] MPE@20cm (mW/cm²) FCC Limit (mW/cm²) Ratio (MPE@20cm / Limit) GSM/GPRS Cell 824.2 – 848.8 27.5 1.531 0.159 0.549 0.290 EDGE Cell 824.2 – 848.9 22 1.531 0.045 0.549 0.082 GSM/GPRS PCS 1850.2 – 1909.8 24.5 1.684 0.083 1.000 0.083 EDGE PCS 1850.2 – 1909.8 21 1.684 0.037 1.000 0.037 WCDMA Cell 826.4 – 846.6 24.5 1.531 0.080 0.551 0.145 WCDMA AWS 1712.4 – 1752.6 24.5 2.258 0.094 1.000 0.094 WCDMA PCS 1852.4 – 1907.6 24.5 1.684 0.083 1.000 0.083 LTE BAND25/2 1850.7 – 1914.3 24 1.684 0.074 1.000 0.074 LTE BAND4 1710.7 – 1754.3 24 2.258 0.084 1.000 0.084 LTE BAND26/5 824.7 – 848.3 24 1.531 0.071 0.550 0.129 LTE BAND7 2502.5 – 2667.5 24 1.818 0.076 1.000 0.076 LTE BAND8 898.2 – 899.8 24 0.070 0.051 0.599 0.085 LTE BAND12 699.7 – 715.3 24 0.412 0.055 0.466 0.118 LTE BAND13 779.5 – 784.5 24 0.864 0.061 0.520 0.117 LTE BAND14 790.5 – 795.5 24 0.864 0.061 0.527 0.116 LTE Band26(Part.90) 814.7 – 823.3 24 1.531 0.071 0.543 0.131 The antenna gain used with the Kona Mega Gen3 Gateway with LTE module is model#: WTTX- OMNILTE-2-NJ-TEC, Frequency range 698-960 / 1710-2690MHz with Gain of 2.0 dBi as provided by the tektelic to ETC. Re-calculating the MPE by using 2dBi antenna gain for all bands. Band/Mode Frequency [MHz] Max average powers [dBm] Maximum Antenna Gain [dBi] MPE@20cm (mW/cm²) FCC Limit (mW/cm²) Ratio (MPE@20cm / Limit) GSM/GPRS Cell 824.2 – 848.8 27.5 2.0 0.177 0.549 0.323 EDGE Cell 824.2 – 848.9 22 2.0 0.050 0.549 0.091 GSM/GPRS PCS 1850.2 – 1909.8 24.5 2.0 0.089 1.000 0.089 EDGE PCS 1850.2 – 1909.8 21 2.0 0.040 1.000 0.040 WCDMA Cell 826.4 – 846.6 24.5 2.0 0.089 0.551 0.161 WCDMA AWS 1712.4 – 1752.6 24.5 2.0 0.089 1.000 0.089 WCDMA PCS 1852.4 – 1907.6 24.5 2.0 0.089 1.000 0.089 LTE BAND25/2 1850.7 – 1914.3 24 2.0 0.079 1.000 0.079 LTE BAND4 1710.7 – 1754.3 24 2.0 0.079 1.000 0.079 LTE BAND26/5 824.7 – 848.3 24 2.0 0.079 0.550 0.144 LTE BAND7 2502.5 – 2667.5 24 2.0 0.079 1.000 0.079 LTE BAND8 898.2 – 899.8 24 2.0 0.079 0.599 0.132 LTE BAND12 699.7 – 715.3 24 2.0 0.079 0.466 0.170 LTE BAND13 779.5 – 784.5 24 2.0 0.079 0.520 0.152 LTE BAND14 790.5 – 795.5 24 2.0 0.079 0.527 0.150 LTE Band26(Part.90) 814.7 – 823.3 24 2.0 0.079 0.543 0.146 KONA Mega Gen3 Gateway FCC I…

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Test Report

This report shall not be reproduced, except in full, without prior written approval of MPB Technologies Page 1 of 81 Test Report Prepared By: Electronics Test Centre 27 East Lake Hill Airdrie, Alberta Canada T4A 2K3 [email protected] http://www.etc-mpb.com Telephone: 1-403-912-0037 ETC Report #: t29e26a284_DTS Release 2 Report date: September 4, 2026 EMC testing of the Tektelic Communication Inc. Kona Mega Gen3 Gateway in accordance with FCC Part 15.247and ANSI C63.10 as referenced by FCC OET KDB 558074 D01 15.247 Meas Guidance v05r02. FCC ID: 2ALEPT0009468 Test Dates: August 14, 15 &17, 2026 Test Personnel: Joseph Yumol Prepared for: Tektelic Communication Inc. 7657 10 th Street NE Calgary, Alberta Canada T2E 8X2 _________________________ _________________________ Imran Akram Marc Rousseau [email protected] [email protected] EMC Technologist QA Manager Electronics Test Centre (Airdrie) Electronics Test Centre (Airdrie) Test Sample: Kona Mega Gen3 Gateway FCC ID:2ALEPT0009468 FCC Part 15.247 Report #: t29e26a284_DTS Release 2 This report shall not be reproduced, except in full, without prior written approval of MPB Technologies Page 2 of 81 REVISION RECORD ISSUE DATE AUTHOR REVISIONS (Description) DRAFT 1 2026-08-20 I. Akram Initial draft submitted for review. DRAFT 2 2026-08-24 I. Akram Added EUT Model#, Serial# and antenna information in section 1.3. Release 1 2026-08-31 I. Akram Sign Off Release 2 2026-09-04 I. Akram Corrected typo in summary table test case 2.3 specification column and section 2.5 numbering. Added POE injector CE testing statement in Section 2.1.4. Added conducted output power compliance statement under §15.247(b)(4) requirements for 8dBi antenna in section 1.3 & 2.3.5 notes. Sign Off Test Sample: Kona Mega Gen3 Gateway FCC ID:2ALEPT0009468 FCC Part 15.247 Report #: t29e26a284_DTS Release 2 This report shall not be reproduced, except in full, without prior written approval of MPB Technologies Page 3 of 81 TABLE OF CONTENTS 1.0 INTRODUCTION 5 1.1 Scope .........................................................................................................................5 1.2 Applicant ....................................................................................................................5 1.3 Test Sample Description ............................................................................................5 1.4 General Test Conditions ............................................................................................5 1.5 Reference Standards .................................................................................... 6 1.6 Test Methodology .......................................................................................................6 1.6.1 Variations in Test Methodology ..................................................................... 6 1.6.2 Test Sample Verification, Configuration & Modifications .............................. 6 1.6.3 Uncertainty of Measurement: ............................................................................ 6 2.0 TEST CONCLUSION 7 2.1 AC Main Power Line Conducted Emissions ..............................................................8 2.1.1 Test Guidance ............................................................................................... 8 2.1.2 Deviations From The Standard ..................................................................... 9 2.1.3 Test Equipment ............................................................................................. 9 2.1.4 Test Sample Verification, Configuration & Modifications .............................. 9 2.1.5 Conducted Emissions Data TX Mode ......................................................... 10 2.1.6 Conducted Emissions Data RX Mode ........................................................ 12 2.2 6dB Bandwidth .........................................................................................................14 2.2.1 Test Guidance: ANSI C63.10, Clause 11.8 Option 2/ FCC OET KDB 558074 14 2.2.2 Deviations From The Standard: .................................................................. 14 2.2.3 Test Equipment ........................................................................................... 14 2.2.4 Test Sample Verification, Configuration & Modifications ............................ 15 2.2.5 Channel Bandwidth Data: ........................................................................... 15 2.2.6 Channel Bandwidth Data: LoRa .................................................................. 17 2.3 Max Average Output Power .....................................................................................19 2.3.1 Test Guidance: ANSI C63.10, Clause 11.9.2.2.2/ FCC OET KDB 558074 19 2.3.2 Deviations From The Standard: .................................................................. 19 2.3.3 Test Equipment ........................................................................................... 20 2.3.4 Test Sample Verification, Configuration & Modifications ............................ 20 2.3.5 Max Average Output Power Data: .............................................................. 20 2.3.6 Max Average Output Power Data: .............................................................. 23 2.4 Band Edge Attenuation ............................................................................................25 2.4.1 Test Guidance: ANSI C63.10 Clause 11.12.1 & 6.10.4, 6.10.6 / FCC OET KDB 558074 ............................................................................................................. 25 2.4.2 Deviations From The Standard: .................................................................. 25 2.4.3 Test Equipment ........................................................................................... 26 2.4.4 Test Sample Verification, Configuration & Modifications ............................ 26 2.4.5 Band Edge Data LoRa DTS ................................................…

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Test Report

Specification MODLE:WTTX-OMNI920-2.5-NJ 目录 1、Introduction ........................................................................................................................... 3 2、Features .................................................................................................................................. 3 3、Specifications ......................................................................................................................... 4 4、VSWR ...................................................................................................................................... 4 5、Radiation patterns .................................................................................................................. 4 6、Dimension sketch...................................................................................................................5 1、Introduction A high gain omnidirectional antenna with vertical polarization and feed forward is proposed, which is mainly used in900-930MHz frequency band. 2、Features  Vertical polarization  Dipole radiation element Figure 1 WTTX-OMNI920-2.5-NJ Appearance photograph 3、Specifications Table 1 电气指标 Antenna Sifi ti WTTX-OMNI920-2.5-N J 频率范围(MHz) Frequency Range 900-930 带宽(MHz) Bandwidth 30 极化方式 Polarization Vertical 通道数 Number of channels 1 增益(dBi) Gain 2.5 半功率波瓣宽度(°) HPBW 360 不圆度(dB) Non-Circularity ±0.5 输入阻抗(Ω) Imp dance 50 电压驻波比 VSWR ≤2.0 功率(W) Power 20 机械指标 尺寸-mm Size Φ24×470 重量-kg We i g h t ≤0.25 接头类型 Connector Type N-J 工作温度-°C Operating Tt -40~+70 天线罩颜色 Radome color gray 4、VSWR 5、Gain 6、Radiation patterns H-p lane E-plane 7、Dimension sketch Specification MODLE:WTTX-OMNI920-6-NJ 目录 1、Introduction ........................................................................................................................... 3 2、Features .................................................................................................................................. 3 3、Specifications ......................................................................................................................... 4 4、VSWR ...................................................................................................................................... 4 5、Radiation patterns .................................................................................................................. 4 6、Dimension sketch...................................................................................................................5 1、Introduction A high gain omnidirectional antenna with vertical polarization and feed forward is proposed, which is mainly used in900-930MHz frequency band. 2、Features  Vertical polarization  Dipole radiation element Figure 1 WTTX-OMNI920-6- NJ Appearance photograph 3、Specifications Table 1 电气指标 Antenna Sifi ti WTTX-OMNI920-6-NJ 频率范围(MHz) Frequency Range 900-930 带宽(MHz) Bandwidth 30 极化方式 Polarization Vertical 通道数 Number of channels 1 增益(dBi) Gain 6 半功率波瓣宽度(°) HPBW 360 不圆度(dB) Non-Circularity ±0.5 输入阻抗(Ω) Imp dance 50 电压驻波比 VSWR ≤2.0 功率(W) Power 20 机械指标 尺寸-mm Size Φ24×800 重量-kg We i g h t ≤0.25 接头类型 Connector Type N-J 工作温度-°C Operating Tt -40~+70 天线罩颜色 Radome color gray 防护等级 IPXX IP67 4、VSWR 5、Radiation patterns H-plane E-plane 6、Dimension sketch Specification MODLE:WTTX-OMNI920-8-NJ 目录 1、Introduction ........................................................................................................................... 3 2、Features .................................................................................................................................. 3 3、Specifications ......................................................................................................................... 4 4、VSWR ...................................................................................................................................... 4 5、Radiation patterns .................................................................................................................. 4 6、Dimension sketch...................................................................................................................5 1、Introduction A high gain omnidirectional antenna with vertical polarization and feed forward is proposed, which is mainly used in900-930MHz frequency band. 2、Features  Vertical polarization  Dipole radiation element Figure 1 WTTX-OMNI920-8- NJ Appearance photograph 3、Specifications Table 1 电气指标 Antenna Sifi ti WTTX-OMNI920-8-NJ 频率范围(MHz) Frequency Range 900-930 带宽(MHz) Bandwidth 30 极化方式 Polarization Vertical 通道数 Number of channels 1 增益(dBi) Gain 8 半功率波瓣宽度(°) HPBW 360 不圆度(dB) Non-Circularity ±0.5 输入阻抗(Ω) Imp dance 50 电压驻波比 VSWR ≤2.0 功率(W) Power 20 机械指标 尺寸-mm Size Φ24×1250 重量-kg We i g h t ≤0.5 接头类型 Connector Type N-J 工作温度-°C Operating Tt -40~+70 天线罩颜色 Radome color gray 4、VSWR 5、Gain 6、Radiation patterns 7、Dimension sketch

Test Setup Photos

FCC ID: 2ALEPT0009468 IC ID: 22504-T0009468 EUT Test Setup Photo EUT Antenna Port Conducted Measurement Test Setup: FCC ID: 2ALEPT0009468 IC ID: 22504-T0009468 EUT Test Setup Photo Radiated Emission below 30MHz FCC ID: 2ALEPT0009468 IC ID: 22504-T0009468 EUT Test Setup Photo Radiated Emission 30 MHz to 1 GHz Test Setup: Radiated Emission 1 GHz – 10 G…

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Contact Information

Applicant

David Tholl(Chief Technology Officer)
[email protected]Fax: 14033386949

Technical Contact

Approve-IT, Inc.Nathan Grinager
[email protected]

8011 34th Ave South, Suite 342 · Bloomington, Minnesota, 55425 · United States

Test Firm

Electronics Test Centre-Airdrie (MPB Technologies)Marc Rousseau
[email protected]Fax: 403-912-0083

Technical Specifications

#Rule PartsFrequency RangePower Output
115C923 MHz - 928 MHz586.00 mW
Confidentiality
Long Term
Grant Notes
Output power listed is the maximum conducted output power. Professional installation is required. This device is restricted to fixed installation use. The transmitter may operate through either authorized LoRa antenna port; simultaneous transmission from both LoRa antenna ports is not permitted. The antenna(s) used for this transmitter must be installed and operated to provide a minimum separation distance of 80 cm from all persons and must not be co-located or operated in conjunction with any other antenna or transmitter except as evaluated in this filing or in accordance with FCC multi-transmitter product procedures. End-users must be provided with the information necessary to satisfy RF exposure compliance requirements.