
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
K206 Network Controller Instruction Manual KELSIUS LTD AN FÁL CARRACH, CO. DHÚN NA NGALL, F92 AF8N Version 2 15 th July 2026 TABLE OF CONTENTS 1 Network Controller .............................................................................................. 2 1.1 General Description and Purpose ................................................................ 2 1.2 Specification ................................................................................................. 3 1.3 Connections, Switches and Signals ............................................................. 4 1.3.1 Connections and Switches .................................................................... 4 1.3.2 Signals .................................................................................................. 5 2 Installation, storage and recycling ....................................................................... 6 2.1 Installation .................................................................................................... 6 2.2 Disposal and Recycling ................................................................................ 6 3 Regulatory Information ........................................................................................ 8 3.1 FCC Interference Statement ........................................................................ 8 3.2 ISED Canada Interference Statement .......................................................... 9 3.3 RF Exposure Statement (FCC / ISED RSS-102) ......................................... 9 Version 2 15 th July 2026 1 NETWORK CONTROLLER Product Code: K206 Product Name : Network Controller 1.1 General Description and Purpose The K206 Network Controller is a robust computer with a 7” touchscreen interface and communications to both the local device network and the Internet. It is powered by a 5VDC Power Supply Unit or a PoE RJ45 and is activated using the power on button. Connection to the internet is achieved via an RJ45 cable connection or over Wi-Fi. All current and historical records can be viewed on the graphic screen. Simple functions such as send / receive / alarm disable are accessible on open menu. Management and engineering functions are available, but password protected. The unit has an integral back-up battery that enables the system to continue operating for several hours during power interruptions. Version 2 15 th July 2026 1.2 Specification [1] Antenna datasheet (*) mains power supply is not provided. See standard specifications for power supply: • Input Voltage 100 to 240VAC (50-60Hz) • Output Voltage 5VDC • Output Power 10W • Plug Connector is USB-C Specification Internet Access: Ethernet or Wi-Fi Wireless Network Band: 902–928 MHz FHSS Antenna: ( INTERNAL ) Linx ANT-916-PW-LP [1] Wi-Fi: 2.4 GHz 802.11 b/g/n Operating System: The system operates on a proprietary embedded operating system; no user OS maintenance or antivirus required Alarms: (a) Email/SMS (b) Local audible buzzer / Flashing LEDs (c) Voice-call (can escalate sequentially if unanswered) Management: Each installation has a matching website portal for data viewing and adjustment of system settings. System firmware is updated remotely via cryptographically signed, manufacturer-issued updates. Radio parameters are factory-set and not user-adjustable. Sensor Capacity: 125 sensors ( 250 measurement channels ) Power Supply: 5VDC USB-C or PoE Battery Back-up: 3.6V 3.5Ah (Integral). Approx. 5hrs Battery Back-up Size: W 207mm, H 152mm, D 52mm Weight: 0.63Kg. (1.39 lbs.) Installation conditions Ambient temperature 5 ºC to 35 ºC Relative humidity 20% to 80% Atmospheric Pressure 870 hPa to 1085hPa Version 2 15 th July 2026 1.3 Connections, Switches and Signals 1.3.1 Connections and Switches The K206 Network Controller has a suite of ports located at the bottom of the device, They include: • CPU shut down button to power down the processor • USB-A and USB-C ports to connect USB OTG devices • 2 position toggle switch used to disconnect the battery for a complete power down of the K206 Network Controller • Left position battery active • Right position battery deactive • USB-C port for powering the device and recharging the battery • RJ45 socket used to connector to the internet and also provide power using a PoE switch • • • • • • • • • • CPU Power Button USB OTG Ports Type A and Type C Battery Toggle Switch USB-C Power Input Ethernet PoE connector Version 2 15 th July 2026 1.3.2 Signals The K206 Network Controller has two light pipes on the right of the device. They have two differnet functions. The light pipe at the bottom will illumiate to signal that the device is receiving power from either a 5VDC or POE source. The light pipe at the top is an input and is used to read light signals from our RF devices. On the front of the K206 Network Controller two LED will illiumiate if any of the RF devices installed have broken an alarm state treshold. Device Power Signal Output Li-Fi Reader input 2 Alarm LEDs Version 2 15 th July 2026 2 INSTALLATION, STORAGE AND RECYCLING 2.1 Installation The tasks in the following sections may only be performed by qualified personnel. Please refer to the K206 installation manual The K206 Network Controller should be mounted (screw-fix to wall) where all user personnel have access. The graphic screen will be used to view data, set or cancel alarm states & send or receive information. The system is PIN Code protected against tampering. This also generates an audit trail for all changes made & by each user. The K206 Network Controller should be mounted with the screen at eye level and beside a convenient Power Socket for connection of 5V PSU and an Ethernet socket for internet access. Sensors are placed within the cabinet / area they are monitoring and, once activated, they will communicate via radio to the Network Controller. Repeaters are placed amongst clusters of sensors to enhance communication signal strength between the sensors and the Network Controlle…
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CKC Certification Services, LLC CB: US0103; NB/AB: 0976 5046 Sierra Pines Drive Mariposa, CA 95338 Phone: 1 800-500-4EMC (4362) Fax: 209-787-5568 Email: [email protected] APP-FCC-A Page 1 of 6 Rev 8a APP-FCC-A Covered List Attestation Applicant Information Company Name: Cora Tine Teoranta t/a Kelsius Contact Name: Karl Simmons Contact Title: CEO Company Address: Unit 2 Ballyconnell Industrial Estate, Falcarragh, County Donegal, Ireland F92 AF8N Telephone No: +353749162982 Facsimile No: Email Address: [email protected] Certification Type / Equipment Identification Certification Program: FCC Equipment Authorization / Radio Certification Certification Number: 2BWIPK206 The equipment identified above ☐ is / ☒ is not “covered” equipment prohibited from receiving an equipment authorization pursuant to 47 CFR Part 2, Subpart J, §2.903. The equipment identified above ☐ is / ☒ is not “covered” UAS equipment, including UAS critical components produced in a foreign country and communications and video surveillance equipment and services listed in Section 1709(a)(1) of the FY25 National Defense Authorization Act (Pub. L. 118-159). The equipment identified above ☐ is / ☒ is not a “covered” router produced in a foreign country. The applicant identified above ☐ is / ☒ is not identified on the FCC’s “Covered List” as an entity, affiliate, or subsidiary which produces equipment on the “Covered List” or identified as an entity which has rebranded or relabeled equipment produced by entities identified on the “Covered List.” The software to be loaded prior to marketing of the equipment identified above ☐ is / ☒ is not “covered” software manufactured by any entity including predecessors, successors, parents, subsidiaries, or affiliates or any entity which has rebranded or relabeled the software produced by the entity(ies) identified on the “Covered List.” I hereby attest and certify that the above statements are true and correct. Signature of Authorized Individual: 1 Printed Name: Karl Simmons Title of authorized signature: CEO Date 7/14/2026 1 Signature is not subject to the FCC’s authorized individual policy ( KDB 852134) and may be signed by any appropriate company official. CKC Certification Services, LLC CB: US0103; NB/AB: 0976 5046 Sierra Pines Drive Mariposa, CA 95338 Phone: 1 800-500-4EMC (4362) Fax: 209-787-5568 Email: [email protected] APP-FCC-A Page 2 of 6 Rev 8a Note this attestation shall be signed by the applicant or their direct appointee within the same legal entity. A third party agent is not permitted to sign on behalf of the applicant. CKC Certification Services, LLC CB: US0103; NB/AB: 0976 5046 Sierra Pines Drive Mariposa, CA 95338 Phone: 1 800-500-4EMC (4362) Fax: 209-787-5568 Email: [email protected] APP-FCC-A Page 3 of 6 Rev 8a Attachment A – Additional Information The FCC’s “Covered List” includes certain “telecommunications equipment” and “video surveillance equipment” produced by specific manufacturers, their Affiliates or Subsidiaries and including any products produced by these entities which are rebranded or relabeled by other entities. (191, 184, 185, 188) 2 Furthermore, the Covered List items includes software produced or provided by specific manufacturers, their predecessors, successors, parents, subsidiaries, or affiliates and includes any software produced by these entities which is rebranded or relabeled by other entities. The FCC claims under Section 2 of the Secure Networks Act that the identified equipment and/or software poses an unacceptable risk to United States national security. Telecommunications Equipment (195) : Any equipment used in fixed or mobile networks that provides advanced communications service, provided the equipment includes or uses electronic components, as defined under section 1.50001(c). Video Surveillance Equipment (205) : Any equipment that is used in fixed and mobile networks that provides advanced communications service in the form of a video surveillance service, provided the equipment includes or uses electronic components. Advanced Communications Service (195, 205) Any equipment that can be used in such a fixed or mobile broadband network to enable users to originate and receive high quality voice, data, graphics, and video telecommunications service using any technology with connection speeds of at least 200 kbps in either direction. Affiliate (183) : An entity that (directly or indirectly) owns or controls, is owned or controlled by, or is under common ownership or control with, another entity, where the term “own” means to have, possess, or otherwise control an equity interest (or the equivalent thereof) of more than 10 percent. Subsidiary (184) : Any entity in which such named entity directly or indirectly (1) holds de facto control or (2) owns or controls more than 50% of the total voting power of the entity’s outstanding voting stock. 2 Parenthetical references are citations of paragraph numbers in FCC Report and Order FCC 22-84 (ET Docket 21.232). CKC Certification Services, LLC CB: US0103; NB/AB: 0976 5046 Sierra Pines Drive Mariposa, CA 95338 Phone: 1 800-500-4EMC (4362) Fax: 209-787-5568 Email: [email protected] APP-FCC-A Page 4 of 6 Rev 8a Additional Definitions Router The term Router is defined by National Institute of Standards and Technology’s Internal Report 8425A to mean consumer-grade networking devices that are primarily intended for residential use and can be installed by the customer. Routers forward data packets, most commonly Internet Protocol (IP) packets, between networked systems. UA (Uncrewed Aircraft): For the purpose of this determination, the term “uncrewed aircraft (UA)” has the meaning found in 47 CFR 88.5: An aircraft operated without the possibility of direct human intervention from within or on the aircraft. UAS (Uncrewed Aircraft System): For the purpose of this determination, the term “uncrewed aircraft system (UAS)” has the meaning found in 47 CFR 88.5: An Uncrewed Aircraft and its associated elements (includi…
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Certification designating a U.S. Agent for service of process: As required by section 2.911(d)(7), the applicant must designate a contact located in the United States for purposes of acting as the applicant’s agent for service of process, regardless of whether the applicant is a domestic or foreign entity. An applicant located in the United States may designate itself as the agent for service of process. In either scenario, the designation of the U.S. agent for service of process should be provided as an attachment to the equipment authorization application. The applicant must provide a written certification, which must: i. Be signed by both the applicant and designated agent for service of process, if the agent is different from the applicant. ii. Acknowledge the applicant’s consent and the designated agent’s obligation to accept service of process. iii. Provide a physical U.S. address and email for the designated agent. iv. Acknowledge the applicant’s acceptance to maintain an agent for no less than one year after the grantee has terminated all marketing and importation or the conclusion of any Commission-related proceeding involving the equipment. Unofficial information provided by FCC personnel on February 14, 2023, via the monthly call with the TCB Council: The Agent for Process of Service: •cannot be a TCB or affiliated with a TCB (e.g. could not be a person who works for a TCB or a company that owns or is owned by the TCB) • cannot be a [FCC recognised] Lab or affiliated with a test lab (e.g. could not be a person who works for a Lab or a company that owns or is owned by the Lab) • Agent can be Individual Entity or a Company Entity •Agent Entity must be located in US, US address/phone •Entity acting as Agent must have FRN (best practice, put FRN on Agent Letter) •Agent letter does not have to be FCC ID specific, can be general Agent for Grantee For devices being marketed or for which marketing has ceased for less than 1 year, if the Agent for Process of Service changes, then for every TC Number the TCB must request the FCC to put application into Audit Mode and Agent Letter needs to be updated (superseded). NOTE: The U.S. Agent for Service of Process should not be confused with the authorized agent used for signing the 731 form, other cover letters within the application, and/or the agent who may interface with the TCB. Kelsius, Unit 2, Industrial Estate, Falcarragh, Co. Donegal, F92AF8N Tel +353 74 91 62982 KELSIUS U.S. Agent Designation for Service of Process ATI'ENTION: Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA REGARDING: FCC Ce1tification - Section 2.91 l(d)(7) Information Designated U.S. Agent Company Name: Approve-IT, Inc. Contact Name: Nathan Grinager Street Address: 8011 34 11 ' Ave South, Suite 342 Cit y /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: July 6, 2026 Signed by (Printed Name/Title): Nathan Grinager / Co-President .................................. -, ........................................................... , ................................................. ----........................................ -, ....................... _,_ ...... ........ -.............. .......... . The Applicant confirms its explicit consent and acknowledges that they must maintain an agent for no less than one yeaT 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 infonnation above change � . Applicant Company name: Cora Tine Teora.nta t/aKelsius ·Grantee FRN: 0038503355 Grantee Code:2B WIPK FCC ID: 2BWIPK200S 2BWIPK200R, 2BWIPK206 Contact Name: Karl Simmons SlTeet Address: Unit 2 BaUyconnell lndustrial Estate City/Province/Zip: Falcarragh, County Donegal, Ireland F92 AF8N Telephone No: +353 74 91 62982 Email: [email protected] Applicant Signature: t� � . Date: 05 /07 / 1-.0 �t Signed by (Printed Name/Title): Karl Simmons / CEO
Sample ID Label
Compliance Engineering Ireland Ltd Clonross Lane, Derrockstown, Dunshaughlin Co. Meath, Ireland A85 XN59 Ph +353 1 8017000 , 8256722 Contents 1. EQUIPMENT UNDER TEST (EUT) .........................................................................................................2 1.1. Fixed / Mobile Application ................................................................................................................ 2 2. MAXIMUM PERMISSIBLE EXPOSURE FCC ........................................................................................2 2.1 Frequency hopping radio only ................................................................................................................. 2 2.1.1 Limit ................................................................................................................................................. 2 2.1.2 Result ............................................................................................................................................... 2 2.2 Wifi radio only .................................................................................................................................. 3 2.2.1 Limit ................................................................................................................................................. 3 2.2.2 Result ............................................................................................................................................... 3 2.3 Co-locating frequency hopping and Wifi Radios ............................................................................. 4 2.3.1 Limit ................................................................................................................................................. 4 2.3.2 Result ............................................................................................................................................... 4 Report Ref: RF Exposure FCC K206 Page 2 of 4 1. Equipment Under Test (EUT) K206 Controller Manufacturer declaration The EUT is designed for fixed / mobile applications application environments. 1.1. Fixed / Mobile Application MPE for bystanders which are considered to be ≥20cm away from the front of the transmit antenna 2. Maximum Permissible Exposure FCC 2.1 Frequency hopping radio only 2.1.1 Limit § 1.1310(e)(1) 2.1.2 Result where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Prediction frequency: 924 MHz Conducted Output Power 22.12 dBm Antenna Gain 2.4 dBi Tune up tolerance 1.00 dB Time Averaging Factor 0 dB EIRP Peak 25.52 dBm EIRP Peak 356 mW Prediction distance: 20 cm Prediction frequency: 924 MHz MPE limit for Uncontrolled/General Population exposure at mid band frequency (915MHz): 0.610 mW/cm^2 Power density at prediction frequency: 0.071 mW/cm^2 Power density at prediction frequency: 0.709 W/m^2 Test Result Pass Exempt from routine evaluation for RF Exposure 0.071 < = 0.61 Notes The table above shows that for a prediction distance of 20 cm, RF exposure evaluation is not required. Report Ref: RF Exposure FCC K206 Page 3 of 4 2.2 Wifi radio only 2.2.1 Limit § 1.1310(e)(1) 2.2.2 Result where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Prediction frequency: 2412 MHz Radiated Field Strength at 3m 113.3 dBuV/m Power Conversion factor for antenna distance 3m -95.2 dB Tune up tolerance 1.00 dB Time Averaging Factor 0 dB EIRP Peak 19 dBm EIRP Peak 81 mW Prediction distance: 20 cm Prediction frequency: 2412 MHz MPE limit for Uncontrolled/General Population exposure at prediction frequency: 1.000 mW/cm^2 Power density at prediction frequency: 0.016 mW/cm^2 Power density at prediction frequency: 0.162 W/m^2 Test Result Pass Exempt from routine evaluation for RF Exposure 0.016 < = 1 Notes The table above shows that for a prediction distance of 20 cm, RF exposure evaluation is not required. Report Ref: RF Exposure FCC K206 Page 4 of 4 2.3 Co-locating frequency hopping and Wifi radios 2.3.1 Limit § 1.1307(b)(3)(ii)(B) Where: a = number of fixed, mobile, or portable RF sources claiming exemption using paragraph (b)(3)(i)(B) of this section for P th , including existing exempt transmitters and those being added. b = number of fixed, mobile, or portable RF sources claiming exemption using paragraph (b)(3)(i)(C) of this section for Threshold ERP, including existing exempt transmitters and those being added. c = number of existing fixed, mobile, or portable RF sources with known evaluation for the specified minimum distance including existing evaluated transmitters. P i = the available maximum time-averaged power or the ERP, whichever is greater, for fixed, mobile, or portable RF source i at a distance between 0.5 cm and 40 cm (inclusive). P th,i = the exemption threshold power (P th ) according to paragraph (b)(3)(i)(B) of this section for fixed, mobile, or portable RF source i. ERP j = the ERP of fixed, mobile, or portable RF source j. ERP th,j = exemption threshold ERP for fixed, mobile, or portable RF source j, at a distance of at least λ/2π according to the applicable formula of paragraph (b)(3)(i)(C) of this section. Evaluated k = the maximum reported SAR or MPE of fixed, mobile, or portable RF source k either in the device or at the transmitter site from an existing evaluation at the location of exposure. Exposure Limit k = either the general population/uncontrolled maximum permissible exposure (MPE) or specific absorption rate (SAR) limit for each fixed, mobile, or portable RF source k, as applicable from § 1.1310 of this chapter. 2.3.2 Result 0.071/0.61 + 0.016/1 = 0.13 Limit ≤ 1 This result shows that for a prediction distance of 20cm RF exposure evaluation is not required when co-loc…
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–1 – Product Description The LP Series antennas utilize a helical element which greatly reduces the antenna’s size while allowing favorable performance characteristics. These compact antennas are cosmetically attractive and inexpensive, making them ideal for volume applications. The LP Series mounts directly to a PCB with a single screw, eliminating the expense of a connector while meeting FCC Part 15 requirements. Features s Very low cost s Compact housing s Excellent performance s Omni-directional pattern s Weather-resistant s Screw-mount s Use with plastic* or metal enclosures * Requires proximity ground plane (OHFWULFDO6SHFLĬFDWLRQV 916MHz 70MHz ¼-wave d 1.9 typical 2.4dBi 50-ohms Screw-mount - 6-32 x ¼in SS PHP Included Center frequency: Bandwidth: Wavelength: VSWR: Peak Gain: Impedance: Connection: Oper. Temp. Range: –20°C to +85°C Electrical specifications and plots measured with a 3.81 cm x 8.38 cm (1.5" x 3.3") reference ground plane ANT-916-PW-LP Data Sheet by Ordering Information ANT-916-PW-LP Recommended Footprint 8.89 mm (0.350”) 6.60 mm (0.260”) 5.33 mm (0.210”) 3.30 mm (0.130”) Ø3.88 mm (0.150”) ANT-xxx-PW-LP Recommended Footprint 50.5 mm (1.99") 33.5 mm (1.32") 17.0 mm (0.67") 8.0 mm (0.31") 10.4 mm (0.41") 9.5 mm (0.37") 1.7 mm (0.07") 3.7 mm (0.15") 2.3 mm (0.09") 1.5 mm (0.06") 5.3 mm (0.21") 3.2 mm (0.13") 8.0 mm (0.31") 7.4 mm (0.29") 6.0 mm (0.24") 3.1mm (0.12") 6/32 UNC –2 – by Data Sheet ANT-916-PW-LP VSWR Graph Counterpoise Quarter-wave or monopole antennas require an associated ground plane counterpoise for proper operation. The size and location of the ground plane relative to the antenna will affect the overall performance of the antenna in the final design. When used in conjunction with a ground plane smaller than that used to tune the antenna, the center frequency typically will shift higher in frequency and the bandwidth will decrease. The proximity of other circuit elements and packaging near the antenna will also affect the final performance. For further discussion and guidance on the importance of the ground plane counterpoise, please refer to Linx Application Note AN-00501: Understanding Antenna Specifications and Operation. 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 will have 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 will be 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. VSWRReflected Power 3:1 2:1 1:1 25% 11% 0% 916MHz1016MHz816MHz 1.362 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, products and/or company names referred to herein might be trademarks of their respective owners. The information given herein, including drawings, illustrations and schematics which are intended for illustration purposes only, is believed to be reliable. However, TE Connectivity makes no warranties as to its accuracy 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, resale, 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 force 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 Latin/S. America: +54 (0) 11-4733-2200 Germany: +49 (0) 6251-133-1999 UK: +44 (0) 800-267666 France: +33 (0) 1-3420-8686 Netherlands: +31 (0) 73-6246-999 China: +86 (0) 400-820-6015 TE TECHNICAL SUPPORT CENTER
A Compliance Engineering Ireland Ltd Clonross Lane, Derrockstown, Dunshaughlin Co. Meath, Ireland A85 XN59 Ph +353 1 8017000 , 8256722 www.cei.ie Test Report Report No. 26E12072a-2 Quotation Q26-280117-1 Prepared For Cora Tine Teoranta t/a Kelsius Company Address Unit 2 Ballyconnell Industrial Estate, Falcarragh, Co. Donegal, Ireland F92 AF8N Contact Paul Gallagher Contact Email [email protected] Contact Phone +353 (0)74 9162982 Prepared By Compliance Engineering Ireland Test Lab Address Clonross Lane, Derrockstown, Dunshaughlin, Co. Meath, Ireland Tested By Joy Dalayap Test Report By Michael Kirby FCC Test Firm Designation IE0002 ISED Cab Identifier IE0001 Date 6 th Aug 2026 EUT Description Network Controller K206 FCC ID 2BWIPK206 IC ID 35798-K206 Authorised by Paul Reilly Authorised Signature: This report supersedes 26E12072a-1 Report Ref: 26E12072a-2 Page 2 of 38 TEST SUMMARY The equipment complies with the requirements according to the following standards. 15.-247 Section TEST PARAMETERS Test Result 15.247(a) 20dB bandwidth of hopping Channel Pass 15.247(a) Hopping Frequency Separation Pass 1.247(a) Number of Hopping Channels Pass 15.247(a) Average Time of Occupancy Pass 15.247(b) Output power Pass 15.247(d) Conducted Spurious Emissions Pass 99% bandwidth Pass 15.205 15.209 Radiated Spurious Emissions for restricted bands Pass 15.207 Conducted Emissions on the mains Pass Test procedures ANSI C63.10:2020 American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices This report shall not be reproduced except in full, without the written approval of Compliance Engineering Ireland Ltd. Report Ref: 26E12072a-2 Page 3 of 38 Contents 1 EUT DESCRIPTION ................................................................................................................................ 4 1.1 EUT Operation ....................................................................…
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8011 34th Ave South · Bloomington, Minnesota, 55425 · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 903.2 MHz - 924 MHz | 163.00 mW |