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2BGQ6KM100AThe KM100A module is a 915Mhz based radio module for low data rate, long range applications.

Aether RF
The KM100A module is a 915Mhz based radio module for low data rate, long range applications. - FCC ID 2BGQ6KM100A - Aether RF
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Feb 17, 2026
Application Purpose
Original Equipment
Equipment Note
The KM100A module is a 915Mhz based radio module for low data rate, long range applications.
Frequency Range
902.00000000 - 928.00000000
Company
Aether RF
Country
United States

Documents & Files

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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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RF Exposure Info

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Test Report

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Document Text

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

External Photos

External photos: Top Bo1om With Antenna: Example installa6on on a host board:

ID Label/Location Info

Label and placement:

RF Exposure Info

Certificates and reports shall not be reproduced except in full, without the written permission of H.B Compliance Solutions, LLC. RF Exposure MPE Report For the Aether RF LLC KM100A January 30, 2026 Prepared for: Aether RF LLC 6020 N. 55 th Avenue Glendale, AZ 85301 Prepared By: H.B. Compliance Solutions 5005 S. Ash Avenue, Suite # A-10 Tempe, Arizona 85282 Reviewed By: Hoosamuddin Bandukwala Cert # ATL-0062-E HBCS RF Exposure Report # EMC_26001 Page 2 of 4 1. Equipment Overview Product Name: KM100A Model(s) Tested: - FCC ID: 2BGQ6KM100A Supply Voltage Input: Primary Power: 16-24 VAC/VDC Frequency Range: 902-928 MHz No. of Channels: 200 / 50 Channels Type(s) of Modulation: OQPSK Range of Operation Power: 0.973W Emission Designator: N/A Channel Spacing(s) 128 KhZ (200 Channel) & 512kHz (50 Channel) Test Item: Pre-Production Type of Equipment: Mobile Antenna Requirement (§15.203) : Type of Antenna: External Whip Antenna Gain of Antenna: 2.7dBi Environmental Test Conditions: Temperature: 15-35⁰C Humidity: 30-60% Barometric Pressure: 860-1060 mbar Modification to the EUT: None HBCS RF Exposure Report # EMC_26001 Page 3 of 4 2. Applicable Standard According to §1.1307 the criteria listed in table 1 shall be used to evaluate the environmental impact of human exposure to radio frequency (RF) radiation as specified in §1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of §2.1093 of this chapter. Test Limits Evaluated against exposure limits: General Use _X_ or Controlled Use ___ Maximum Permissible Exposure (MPE) f = frequency in MHz* = Plane-wave equivalent power density RF exposure compliance will need to be determined with respect to 1.1307(c) and (d) of the FCC rules. The emissions should be within the limits at 300kHz in the above table. (Use 300kHz limits for 150kHz) HBCS RF Exposure Report # EMC_26001 Page 4 of 4 3. Test Results Equation from page 18 of OET Bulletin 65, Edition 97-01 S = PG/4πR² Where, S = power density (mW/cm2) P = output power at the antenna terminal (mW) G = gain of transmit antenna (numeric) R = distance from transmitting antenna (cm) For Transmitter Maximum peak output power = 29.88 (dBm) Maximum peak output power at antenna input terminal = 972.74 (mW) Antenna gain (typical) = 2.7 (dBi) Maximum antenna gain = 1.86 (numeric) Prediction distance = 20 (cm) Prediction frequency = 928 (MHz) MPE limit for uncontrolled exposure at prediction frequency = 0.619 (mW/cm^2) Power density at prediction frequency = 0.35995 (mW/cm^2) To solve for the minimum mounting distance required; R = √ (PG/4πS) R = √ (0.972.74 x 1.86 / 4π x 0.35995) = 20 cm (Based on continuous transmission) Therefore, at 20cm the spectral power density is less than the 0.619 mW/cm² limit for uncontrolled exposure. END OF TEST REPORT

Test Report

– 1 – Revised 8/1/2017 Product Description HWR Series ½-wave center-fed dipole antennas deliver outstanding performance in a rugged and cosmetically attractive package. The articulating base allows the antenna to tilt 90 degrees and rotate 360 degrees. The antenna’s internal counterpoise eliminates external ground plane dependence and maximizes performance. HWR Series antennas attach via a standard SMA or Part 15 compliant RP-SMA connector. Custom colors and connectors are available for volume OEM customers. Features sInternal counterpoise sLow cost sTilts and rotates sOmni-directional pattern sOutstanding VSWR sRugged & damage-resistant sStandard SMA or Part 15 compliant RP-SMA connector sCustom colors and terminations for volume OEMs sInternal O-ring seal on connector (OHFWULFDO6SHFLĬFDWLRQV Center Frequency: 916MHz Recom. Freq. Range: 900–930MHz Bandwidth: 30MHz Wavelength: ½-wave VSWR: d 2.0 typical Peak Gain: 1.2dBi Impedance: 50-ohms Connection: RP-SMA or SMA Oper. Temp. Range: –30°C to +80°C Electrical specifications and plots measured with a 10.16 cm x 10.16 cm (4.00” x 4.00”) reference ground plane ANT-916-CW-HWR-ccc Data Sheet by Ordering Information ANT-916-CW-HWR-RPS (with RP-SMA connector) ANT-916-CW-HWR-SMA (with SMA connector) 142 mm (5.59") 116 mm (4.57") 10 mm (0.39") 8.2 mm (0.32") 26 mm (1.02") 30 mm (1.18") – 2 – Copyright © 2017 Linx Technologies 159 Ort Lane, Merlin, OR 97532 Phone: +1 541 471 6256 Fax: +1 541 471 6251 www.linxtechnologies.com 3:1 2:1 1:1 816MHz916MHz1016MHz VSWR 25% 11% 0% Reflected Power1.282 VSWR Graph What is VSWR? The Voltage Standing Wave Ratio (VSWR) is a measurement of how well an antenna is matched to a source impedance, typically 50-ohms. It is calculated by measuring the voltage wave that is headed toward the load versus the voltage wave that is reflected back from the load. A perfect match has a VSWR of 1:1. The higher the first number, the worse the match, and the more inefficient the system. Since a perfect match cannot ever be obtained, some benchmark for performance needs to be set. In the case of antenna VSWR, this is usually 2:1. At this point, 88.9% of the energy sent to the antenna by the transmitter is radiated into free space and 11.1% is either reflected back into the source or lost as heat on the structure of the antenna. In the other direction, 88.9% of the energy recovered by the antenna is transferred into the receiver. As a side note, since the “:1” is always implied, many data sheets will remove it and just display the first number. How to Read a VSWR Graph VSWR is usually displayed graphically versus frequency. The lowest point on the graph is the antenna’s operational center frequency. In most cases, this is different than the designed center frequency due to fabrication tolerances. The VSWR at that point denotes how close to 50-ohms the antenna gets. Linx specifies the recommended bandwidth as the range where the typical antenna VSWR is less than 2:1. by ANT-916-CW-HWR-ccc Data Sheet te.com TE Connectivity, TE, TE connectivity (logo), Linx and Linx Technologies are trademarks owned or licensed by the TE Connectivity Ltd. family of companies. All other logos, pr oducts and/or company names ref erred to herein might be trademarks of their respective owners. The information given herein, including drawings, illustr ations and schematics which are intended for illustr ation purposes only, is believed to be reliable. However , TE Connectivity makes no warranties as to its accurac y or completeness and disclaims any liability in connection with its use. TE Connectivity‘s obligations shall only be as set forth in TE Connectivity‘s Standard Terms and Conditions of Sale for this product and in no case will TE Connectivity be liable for any incidental, indirect or consequential damages arising out of the sale, r esale, use or misuse of the product. Users of TE Connectivity products should make their own evaluation to determine the suitability of each such product for the specific application. TE Connectivity warrants to the original end user customer of its products that its products are free from defects in material and workmanship. Subject to conditions and limitations TE Connectivity will, at its option, either repair or replace any part of its products that prove defective because of improper workmanship or materials. This limited warranty is in for ce for the useful lifetime of the original end product into which the TE Connectivity product is installed. Useful lifetime of the original end product may vary but is not warrantied to exceed one (1) year from the original date of the end product purchase. ©2023 TE Connectivity. All Rights Reserved. USA: +1 (800) 522-6752 Canada: +1 (905) 475-6222 Mexico: +52 (0) 55-1106-0800 La tin/S. America: +54 (0) 11-4733-2200 Germany: +49 (0) 6251-133-1999 UK: +44 (0) 800-267666 Fr ance: +33 (0) 1-3420-8686 Netherlands: +31 (0) 73-6246-999 China: +86 (0) 400-820-6015 TE TECHNICAL SUPPORT CENTER

Test Report

900 MHz RPSMA Antenna Product code: ARF-A100 Overview The ARF-A100 Articulating antenna for transmission in the 902-928 MHz ISM band. The antenna has ~2.1 dBi gain and terminates in an RPSMA Male connector. Suitable for any wireless transmission in the standard 900 MHz bands. Specifications Electrical Frequency band: 900 MHz Frequency range: 902 – 928MHz Impedance: 50 Ohms VSWR 1:1.5 Gain: 2.1dBi Polarization: Vertical ANTENNA DATASHEET REV. 03 2 Radiation Pattern Omni Max power: 20W Mechanical Length: 172mm Termination: Reverse Polarity SMA Male (RPSMA Male) Type: Whip/Tilt Lightening Protection: DC Grounding Fig. 1 Mechanical Dimensions

Test Report

Certificates and reports shall not be reproduced except in full, without the written permission of H.B Compliance Solutions, LLC. Intentional Radiator Test Report For the Aether RF LLC KM100A Tested under The FCC Rules contained in Title 47 of the CFR, Part 15.247 for Frequency Hopping Spread Spectrum January 27, 2026 Prepared for: Aether RF LLC 6020 N. 55 th Avenue Glendale, AZ 85301 Prepared By: H.B. Compliance Solutions 5005 S. Ash Avenue, Suite # A-10 Tempe, Arizona 85282 Reviewed By: Hoosamuddin Bandukwala Cert # ATL-0062-E Engineering Statement: The measurements shown in this report were made in accordance with the procedure indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurement made, the equipment tested is capable of operation in accordance with the requirements of Part 15 of the FCC Rules under normal use and maintenance. All results contained herein relate only to the sample tested. HBCS Report # EMC_26001 Page 2 of 57 Report Status Sheet Revision # Report Date Reason for Revision Ø January 27, 2026 Initial Issue HBCS Report # EMC_26001 Page 3 of 57 Table of Contents EXECUTIVE SUMMARY ............................................................................................ 5 1. Testing Summary ....................................................................................... 5 EQUIPMENT CONFIGURATION ................................................................................ 6 1. Overview ................................................................................................... 6 2. Test Facility ............................................................................................... 7 3. Description of Test Sample ........................................................................ 8 4. Equipment Configuration .......................................................................... 8 5. Support Equipment ................................................................................... 8 6. Ports and Cabling Information ................................................................... 8 7. Method of Monitoring EUT Operation ...................................................... 8 8. Mode of Operation .................................................................................... 9 9. Modifications ............................................................................................ 9 10. Disposition of EUT ..................................................................................... 9 Criteria for Un-Intentional Radiators .................................................................... 10 1. Radiated Emissions .................................................................................. 10 Emissions Tests Calculations ...................................................................... 11 2. Conducted Emissions ............................................................................... 13 Criteria for Intentional Radiators .......................................................................... 18 1. Occupied Bandwidth ............................................................................... 18 2. RF Power Output ..................................................................................... 25 3. Conducted Spurious Emissions ................................................................ 32 4. Radiated Spurious Emissions and Restricted Band .................................. 39 6. Emissions At Band Edges ......................................................................... 42 7. Time of Occupancy (Dwell Time) ............................................................. 46 8. Number of Hopping Frequencies ............................................................. 51 9. Carrier Frequency Separation .................................................................. 54 HBCS Report # EMC_26001 Page 4 of 57 10. Test Equipment ........................................................................................... 56 11. Measurement Uncertainty ......................................................................... 57 HBCS Report # EMC_26001 Page 5 of 57 EXECUTIVE SUMMARY 1. Testing Summary These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with Part 15.247. All tests were conducted using measurement procedure from ANSI C63.10-2020, FCC Guidance document 558074 D01 v05r02 April 02, 2019 as appropriate. Test Name Test Method/Standard Result Comments Unintentional Radiated Emissions 15.209 Pass A/C Powerline Conducted Emissions 15.207 Pass Occupied Bandwidth 15.247(a)(2) Pass Peak Output Power 15.247(b) Pass Conducted Spurious Emissions 15.247(d) Pass Radiated Spurious Emissions & Restricted Band 15.247(d), 15.209(a), 15.205 Pass Emissions at Band Edges 15.247(d), 15.209(a), 15.205 Pass Time of Occupancy (Dwell Time) 15.247(a) Pass Number of Hopping Channels 15.247(a) Pass Carrier Frequency Separation 15.247(a) Pass HBCS Report # EMC_26001 Page 6 of 57 EQUIPMENT CONFIGURATION 1. Overview H.B Compliance Solutions was contracted by Aether RF to perform testing on the KM100A under purchase order number 1002. This document describes the test setups, test methods, required test equipment, and the test limit criteria used to perform compliance testing of the Aether RF, KM100A. The tests were based on FCC Part 15 Rules. The tests described in this document were formal tests as described with the objective of the testing was to evaluate compliance of the Equipment Under Test (EUT) to the requirements of the aforementioned specifications. Aether RF is to retain a copy of this document and it should be kept on file for at least five years after the manufacturing of the EUT has been permanently discontinued. Th…

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Test Report

DATA AND DEVICES / ANT-915-IPW1-RPS The ANT-915-IPW1-RPS antenna is a hinged-whip IP67-rated dipole antenna designed for use in 915 MHz frequency bands for low-power, wide-area (LPWA) applications such as LoRaWAN® and WiFi HaLow™ as well as ISM and remote control applications. The ANT-915-IPW1-RPS provides a ground plane independent dipole antenna solution. The hinged design allows for the antenna to be positioned for optimum performance and reduces the potential for damage from impact compared to a fixed whip design. The antenna attaches with an RP-SMA plug (female socket) connector. FEATURESAPPLICATIONS • Performance at 902 MHz to 930 MHz –VSWR: ≤ 1.8 –Peak Gain: 2.7 dBi –Efficiency: 99% • Hinged design with detents for straight, 45 degree and 90 degree positioning • RP-SMA plug (female socket) connector • Low-power, wide-area (LPWA) applications –LoRaWAN®, ITU-T Y.4480 –WiFi HaLow™ (802.11ah) • Remote control, monitoring and sensing • Internet of Things (IoT) devices • ISM applications ORDERING INFORMATION Part NumberDescription ANT-915-IPW1-RPSHinged whip LPWA antenna with RP-SMA plug (female socket) connector Available from Linx Technologies and select distributors and representatives. ANT-915-IPW1-RPS 915 MHz LPWA Weatherproof Antenna DATA AND DEVICES / ANT-915-IPW1-RPS2 TABLE 1. ELECTRICAL SPECIFICATIONS ANT-915-IPW1-RPS915 MHz Frequency Range902 MHz to 930 MHz VSWR (max.)1.8 Peak Gain (dBi)2.7 Average Gain (dBi)-0.1 Efficiency (%)99 Impedance50 Ω Wavelength1/2-wave Electrical TypeDipole PolarizationLinear RadiationOmnidirectional Max Power2 W Electrical specifications and plots measured with the antenna at the edge of a 102 mm x 102 mm ground plane, bent 90 degrees. Figure 1. ANT-915-IPW1-RPS Antenna Dimensions TABLE 2. MECHANICAL SPECIFICATIONS ParameterValue ConnectionRP-SMA plug (female socket) Operating Temperature Range-30 °C to +70 °C Ingress Protection Rating (IP)IP67 rated Antenna ColorBlack Weight24.9 g (0.88 oz) Dimensions203.0 mm x 13.2 mm x 13.2 mm (7.99 in x 0.52 in x 0.52 in) PRODUCT DIMENSIONS IP (INGRESS PROTECTION) RATING Figure 1 provides dimensions of the ANT-915-IPW1-RPS. The antenna whip can be tilted 90 degrees, with a detent at 45 degrees enabling the antenna to be oriented in any direction. The rotating base allows for continuous positioning through 360 degrees even while installed. An ingress protection rating (IP rating) refers to the capability of a device to withstand the ingress of dust and/or water under specified conditions. IP rating is typically reserved for marketable product (device) rather than constituent components because design and assembly may affect performance of the device under testing. IP-rated antennas are designed to support the specified level of ingress protection and may be tested in a standalone configuration, however IP testing should be performed on the complete end product to ensure desired performance. 37.6 mm (1.48 in) Ø13.2 mm (0.52 in) 203.0 mm (7.99 in) Full 360° rotation 178.7 mm (7.04 in) 0°, 45°, 90° 13.2mm 0.52in 203.0mm 7.99in 37.6mm 1.48in 13.2mm 0.52in 178.7mm 7.04in DATA AND DEVICES / ANT-915-IPW1-RPS3 PACKAGING INFORMATION ANTENNA ORIENTATION The ANT-915-IPW1-RPS antenna is packaged in a plastic bag. Distribution channels may offer alternative packaging options. L PWA: LoRaWAN® ITU-T Y.4480, and Sigfox® LoRaWAN and Sigfox LPWA technologies operate within several of the frequencies supported by the 915-IPW1-RPS antenna. Notably, LoRaWAN operates at the frequency bands shown in Table 3. Sigfox operates at different frequencies determined by country (Table 4). The ANT-915-IPW1-RPS antenna is characterized in two antenna orientations as shown in Figure 2. The antenna straight orientation characterizes use of an antenna attached to an enclosure-mounted connector which is connected by cable to a printed circuit board. Although the antenna is a dipole not requiring a ground plane for function, characterization with an adjacent ground plane, (102 mm x 102 mm) provides insight into antenna performance when attached directly to a printed circuit board mounted connector. The two orientations represent the most common end-product use cases. Figure 2. ANT-915-IPW1-RPS Antenna on Evaluation PCB Table 3. LoRaWAN® Channel plan Table 4. Sigfox® Frequencies by Country/Region Frequency BandLoRaWAN Channel Plan 779 MHz to 787 MHzCN779-787 865 MHz to 867 MHzIN765-867 868 MHz to 873 MHzEU863-870 902 MHz to 928 MHzUS902-928, AS923 915 MHz to 928 MHzAU915-928 917 MHz to 923.5 MHzKR920-923 Center FrequencySelect Countries/Regions 868 MHzEurope 902 MHzUSA, Mexico, Brazil 920 MHzAustralia 923 MHzJapan On edge of ground plane, bent 90 degreesStraight, without ground plane DATA AND DEVICES / ANT-915-IPW1-RPS4 EDGE OF GROUND PLANE The charts on the following pages represent data taken with the antenna oriented at the edge of the ground plane, bent 90 degrees as shown in Figure 3. Figure 3. ANT-915-IPW1-RPS at Edge of Ground Plane, Bent 90 Degrees (Edge Bent) VSWR Figure 4 provides the voltage standing wave ratio (VSWR) across the antenna bandwidth. VSWR describes the power reflected from the antenna back to the radio. A lower VSWR value indicates better antenna performance at a given frequency. Reflected power is also shown on the right-side vertical axis as a gauge of the percentage of transmitter power reflected back from the antenna. 915902930 0 10 20 30 40 1 2 3 4 5 900905910915920925930935 Reflected Power (%) VSWR Frequency (MHz) Figure 4. ANT-915-IPW1-RPS Antenna VSWR, Edge Bent DATA AND DEVICES / ANT-915-IPW1-RPS5 RETURN LOSS Figure 5. ANT-915-IPW1-RPS Antenna Return Loss, Edge Bent Figure 6. ANT-915-IPW1-RPS Antenna Peak Gain, Edge Bent PEAK GAIN The peak gain across the antenna bandwidth is shown in Figure 6. Peak gain represents the maximum antenna input power concentration across 3-dimensional space, and therefore peak performance, at a given frequency, but does not consider any directionality in the gain pattern. Return loss (Fig…

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Contact Information

Applicant

Danette Sosna(Admin)
[email protected]Fax: 4808315278

Technical Contact

Aether RF LLCDanette Sosna
[email protected]

6020 N. 55th Ave. · Glendale, Arizona, 85301 · United States

Test Firm

H.B. Compliance SolutionsHoosamuddin Bandukwala
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115C902 MHz - 928 MHz973.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Single Module Approval. Output Power listed is the maximum conducted output power. This device must be installed and operated so as 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, except in accordance with FCC multi-transmitter product procedures, or as evaluated in this filing.