
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Life Sensing Instruments, Inc. | CONFIDENTIAL pg. 1 Bedside Monitor Transmitter Setup and Assembly Instructions Life Sensing Instruments, Inc. Life Sensing Instruments, Inc. | CONFIDENTIAL pg. 2 Bedside Monitor Transmitter: Overview The Bedside Monitor Transmitter (“BMT”) is responsible for receiving data from a bedside monitor and transmitting the data to the Nexus Telemetry Receiver via a whip antenna. The BMT has a DB9 serial port that is for communication and power. The BMT can be powered by a bedside monitor or an external power supply. External Ports The BMT has (2) ports. • SMA: This port is used to connect the whip antenna. • DB9: This port is used for communication and power. Life Sensing Instruments, Inc. | CONFIDENTIAL pg. 3 Bedside Monitor Transmitter: Setup & Assembly Instructions Connecting the BMT Antenna Connect the whip antenna to the SMA jack labeled “Antenna” on the BMT housing. Life Sensing Instruments, Inc. | CONFIDENTIAL pg. 4 Powering the BMT with a Power Supply (Preferred Method) The BMT can be powered by either an external PSU or a bedside monitor. The preferred method is to power the BMT with the PSU. The PSU provided is a 3 Channel Siglent power supply. NOTE: The BMT will be set to “blast” data and doesn’t require an external data source for testing. Configuring the External Power Supply NOTE: Only Channel 1 is used. 1. Connect the power cord labeled “PSU Power” to the power port on the back of the PSU. 2. Plug in the power cord to an electrical outlet. 3. Power on the PSU by pressing the power button on the bottom left of the device. 4. Ensure that the Voltage and Current on Channel 1 are set to the default values of 5.0V / 1A. 5. Connect the banana connectors on the “BMT Interface” cable to the banana jacks for Channel 1. a. Black is Ground and Red is VCC Connecting the External Power Supply to the BMT 1. Connect the DB9 connector on the BMT’s RS-232 cable to the DB9 connector labeled “B” on the “Bedside Interface” cable. 2. Turn on the PSU output by pressing the “On/Off” button under “#1.” 3. The display will show the Power and Current Draw under the “OUT” dialog. a. The Power should read approximately 5.0V. b. The Current Draw should read approximately 15 mA. Powering Down the BMT • There is no power button on the device. • Power off the BMT by powering down the PSU by pressing the power button on the bottom left of the device. System Disassembly Instructions with a Power Supply • Power off the PSU by pressing the power button on the bottom left of the device. • Disconnect the banana connectors on the “BMT Interface” cable from the banana jacks for Channel 1. • Disconnect the DB9 connector on the BMT’s RS-232 cable from the DB9 connector labeled “B” on the “Bedside Interface” cable. • Unscrew and remove the whip antenna. • Unplug the PSU from the electrical outlet. • Disconnect the power cord labeled “PSU Power” from the power port on the back of the PSU. Life Sensing Instruments, Inc. | CONFIDENTIAL pg. 5 Powering the BMT with a Bedside Monitor Alternatively, the BMT can be powered with a bedside monitor using the DB9 connector on the BMT’s RS-232 cable and the DB9 port on the rear of the bedside monitor. NOTE: The BMT will be set to “blast” data and doesn’t require an external data source for testing. Connecting the BMT to the Bedside Monitor NOTE: Only connect the BMT to the bedside monitor when the bedside monitor is powered off. Connect the BMT’s RS-232 cable labeled “Bedside” to the DB9 port labeled “BMT” on the rear of the bedside monitor. NOTE: The bedside monitor must be powered on before the BMT will power on. There is no power switch or power button on the BMT. Powering on the Bedside Monitor Connect the power cord labeled “Bedside Power” to the port labeled “Power” on the rear of the bedside monitor. Plug the power cord into the electrical outlet. Turn on the bedside monitor by pressing the power button for 2 seconds. Life Sensing Instruments, Inc. | CONFIDENTIAL pg. 6 Powering Down the BMT • There is no power switch or power button on the BMT. • To power down the BMT, turn off the bedside monitor by pressing and holding the power button for 3 seconds or unplug the bedside monitor. System Disassembly Instructions with a Bedside Monitor • Power off the bedside monitor by pressing and holding the power button for 3 seconds. • Unplug the power cord from the electrical outlet. • Disconnect the power cord labeled “Bedside Power” from the bedside monitor. • Disconnect the DB9 connector on the BMT’s RS-232 cable connected to the port labeled “BMT” on the rear of the bedside monitor by unscrewing the (2) screws. • Remove the SMA antenna from the port labeled “Antenna” on the BMT housing. Life Sensing Instruments, Inc. | CONFIDENTIAL pg. 7 Bedside Monitor Transmitter: Disassembly Instructions (Unit) 1. Power down the external power source: a. Power Supply: i. Power off the PSU by pressing the power button on the bottom left of the device. ii. Disconnect the DB9 connector on the BMT’s RS-232 cable from the DB9 connector labeled “B” on the “Bedside Interface” cable. b. Bedside Monitor: i. Power off the bedside monitor by pressing and holding the power button for 3 seconds. ii. Disconnect the DB9 connector on the BMT’s RS-232 cable connected to the port labeled “BMT” on the rear of the bedside monitor by unscrewing the (2) screws. 2. Remove the SMA antenna from the port labeled “Antenna” on the BMT housing. 3. Remove (4) screws on the back of the BMT housing using Philips bit. 4. Gently slide the top housing off by wiggling it to the side. Ensure that the attached cable feeds through the hole. 5. Remove the (4) board screws to remove the board from the bottom of the housing. SI4464 SX1211
Life Sensing Instruments, Inc. | CONFIDENTIAL Pg. 1 BEDSIDE WIRELESS TRANSMITTER Operator’s Manual Life Sensing Instruments, Inc. December 17, 2025 Life Sensing Instruments, Inc. | CONFIDENTIAL Pg. 2 BMT Overview The Bedside Wireless Transmitter (BMT) is a component of a medical patient monitoring system designed to transmit physiological data from a third-party bedside monitor to a central monitoring station via a telemetry receiver. The BMT communicates with the telemetry receiver via the supplied external whip antenna. The BMT connects directly to a bedside monitor via an RS-232 interface cable. This connection serves two functions: • Power Supply – The bedside monitor provides 5 V DC power to the BMT over the RS-232 connection. • Data Interface – Patient physiological data is sent from the bedside monitor to the BMT through the same RS-232 link. The BMT transmits the data acquired from the bedside monitor to the telemetry receiver using the Wireless Medical Telemetry Service (WMTS) bands of 608–614 MHz, 1395–1400 MHz, and 1427–1432 MHz. The telemetry receiver then forwards the data to the central monitoring station for real-time display, trending, and analysis by healthcare professionals. In addition to transmitting patient data, the BMT can receive commands and configuration updates from the telemetry receiver over the ISM band (910–920 MHz). The following data can be transmitted from the bedside monitor using the BMT: • ECG Lead II waveform and Heart Rate data • SpO2 Pleth waveform, SpO2 level and Pulse Rate data • Respiration • NIBP • Temperature Instructions for Use Connect the DB-9 serial cable on the BMT to the designated/labeled port on the rear of the supplied bedside monitor. The bedside monitor will provide power and data to the BMT. There is no additional user interaction required. The BMT has no user- serviceable parts and no user controls. All configuration is performed through the telemetry receiver. Antenna Information The BMT is designed for operation only with the antenna supplied or expressly approved by Life Sensing Instruments, Inc. Substitution of other antennas is not permitted without the express written approval of Life Sensing Instruments, Inc. Use of unauthorized antennas may void the equipment authorization and the user’s authority to operate the device. Authorized Antenna: Manufacturer Antenna Description Type Peak Gain Ω Connector Type TE Connectivity IN7-3RD Whip Antenna Monopole 3 dBi 50 SMA Support Services The authorized support provider for the BMT is Life Systems International (LSI), located in Charlotte, NC. Support services include hardware support available through the Repair Depot. To learn more about the support services offered by LSI, call 800- 846-1279 x1. Repair Depot For repair services of the BMT, contact the authorized support provider: LSI Attn: Repair Depot 2102 Cambridge Beltway Dr., Ste. A Charlotte, NC 28273 800-846-1279 x1 [email protected] Life Sensing Instruments, Inc. | CONFIDENTIAL Pg. 3 BMT SPECIFICATIONS MECHANICAL PHYSICAL DIMENSIONS (WxHxD) 2" W x 3.2" H x .5" D WEIGHT 3.2 oz ANTENNA CONNECTOR CONNECTOR SMA FEMALE DATA PROTOCOL INFINIUM 2.0 TRANSMISSION RATE BAUD RATE: 57600 CONNECTOR DB-9 ELECTRICAL INPUT VOLTAGE 5VDC, SUPPLIED BY BEDSIDE MONITOR CONNECTOR DB-9 WIRELESS MODULATION 4GFSK (WMTS), FSK 150 KHz (ISM) FREQUENCY BAND (TRANSMIT) 608.00-614.00, 1395.00-1400.00, 1427.00-1432.00 MHz FREQUENCY BAND (RECEIVING) 910.00 – 920.00 MHz ANTENNA SPECIFICATION MECHANICAL DIMENSIONS H X W 6.2 H x 0.6 W CONNECTOR SMA MALE ELECTRICAL GAIN (AVG) 3 dBi VSWR (MAX) < 1.5:1 POLARIZATION ANTENNA ORIENTATION DEPENDENT (VERTICAL/HORIZONTAL) IMPEDANCE 50 OHM TYPE MONOPOLE INDOOR/OUTDOOR INDOOR USE ONLY Life Sensing Instruments, Inc. | CONFIDENTIAL Pg. 4 FCC Information Tested to Comply with FCC Standards Responsible Party: Product Name: Bedside Monitor Transmitter Life Sensing Instruments, Inc. Model Number: BMT 2102-A1 Cambridge Beltway Dr. FCC ID: OF8-BMT1 Charlotte, NC 28273 800-624-2732 Life Sensing Instruments, Inc. declares that the above device complies with the requirements of the Federal Communications Commission. 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. Changes or modifications not expressly approved by Life Sensing Instruments, Inc. could void the user’s authority to operate the equipment. This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. This equipment complies with FCC Part 95 Subpart H for Wireless Medical Telemetry Service (WMTS). Operation is subject to the condition that this device does not cause harmful interference. Use of this equipment is restricted to healthcare facilities by authorized health care providers or their designated agents. Manufacturers, installers, and users of WMTS equipment are cautioned that the operation of this equipment could result in harmful interference to other nearby medical devices, in accordance with FCC 95.2395. In accordance with FCC 95.2309(h), this WMTS transmitter must be registered with an FCC-designated frequency coordinator prior to use. Use of the equipment requires prior coordination with the ASHE frequency coordination designator. For further g…
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EUT Photo(s) EUT; Overall EUT; Side 1 EUT; Side 2 EUT; Side 3 EUT; Side 4 EUT; Side 5 EUT; Side 6
Sample ID Label Label size: 1.25 x 2.25 inches Sample ID Label Location Label is applied on top of housing
Life Sensing Instruments, Inc. | CONFIDENTIAL Bedside Monitor Transmitter: Internal Photos
P port No: RADIO FREQUENCY EXPOSURE REPORT FOR THE Device: BEDSIDE MONITOR TRANSMITTER Model: BMT Report No.: 111601-13 Date of issue: December 10, 2025 PREPARED FOR: Life Sensing Instrument, Inc 2102 Cambridge Beltway Drive, Suite A1 Charlotte, NC 28273 PREPARED BY: E. WONG CKC Laboratories, Inc. 5046 Sierra Pines Drive Mariposa, CA 95338 The test data contained in this report documents the observed testing parameters pertaining to and are relevant for only the sample equipment tested in the agreed upon operational mode(s) and configuration(s) as identified herein. Compliance assessment remains the client’s responsibility. This report may not be used to claim product endorsement by A2LA or any government agencies. This test report has been authorized for release under quality control from CKC Laboratories, Inc. Steve Behm Director of Quality Assurance & Engineering Services CKC Laboratories, Inc. Page 2 of 13 Report No: 111601-13 Purpose: To demonstrate compliance with United States, Canada, Australia, New Zealand, European Union and/or United Kingdom RF Exposure requirements for Portable equipment (devices used ≤20cm from the body) with power output below exemption levels or Mobile equipment (devices used >20cm from the body) where Maximum Permissible Exposure (MPE) Calculations apply. Device and Antenna Operating Configuration: Device operating at maximum output power with continuous transmission of modulated data. Method: This equipment is evaluated in accordance with the guidelines set forth in 47 CFR 1.1310, KDB 447498 & ANSI C95.1 for the US. Other Considerations: Report considers stand-alone equipment configurations only. RF Exposure limits are calculated at the mid-point of each operating band. Referenced Test Reports: The following test reports were referenced in conjunction with this assessment: 111601-6 Decision Rule: Outcome of RF exposure assessment is listed in the comment section(s) below as a binary statement for simple acceptance rule according to ILAC-G8 (2019). Designation Information: Location *NIST CB# FCC Canada Canyon Park, Bothell, WA US0103 US1024 3082C Brea, CA 3082D Fremont, CA 3082B Mariposa, CA 3082A Page 3 of 13 Report No: 111601-13 RF Exposure Mobile Equipment Assessment Power Density Calculations (Single Transmitter, Stand Alone) MPE Calculation: 푃표푤푒푟 퐷푒푛푠푖푡푦 ( 푆 ) = 퐸퐼푅푃 4휋 푑 2 Given: EIRP in mW or W and d in cm or m US/FCC MPE Assessment Power Reported is: ☒ Peak ☒ Average Limit Used is: ☒ General Population ☐ Occupational Exposure Operating Band MHz Power dBm Ant Type/Gain dBi EIRP dBm Distance cm MPE mW/cm 2 Limit mW/cm 2 Comment 610.5 5.30 * 3.00 8.30 20 0.0013 0.41 Pass 1397.0 1.20 ** 3.00 4.20 20 0.0005 0.93 Pass 1429.0 4.00 ** 3.00 7.00 20 0.0010 0.95 Pass * Quasi peak ** Average Page 4 of 13 Report No: 111601-13 Summary: Exemptions: Equipment demonstrating compliance by portable RF exposure exemption have been evaluated, without further testing, for use under either portable or mobile RF exposure configurations. Additional configurations including collocation or simultaneous transmission with other transmitters (including necessary separation distances) are subject to further assessment. Certain exemption criteria may define specific separation distances. It is assumed that the manufacturer shall design the equipment such that these minimum separation distance is met. MPE Calculation Results: Equipment demonstrating compliance with MPE calculations have been evaluated, without further testing, for use under mobile RF exposure configurations as identified herein. Additional configurations including collocation or simultaneous transmission with other transmitters (including necessary separation distances) are subject to further assessment. It is assumed that the manufacturer shall design the equipment such that the minimum separation distance of 20cm (or greater, as listed above) is met or that the manufacturer provides a protection guide (e.g. installation instructions) to the end user such that the antenna(s) may be installed in accordance with the manufacturer’s instructions in such a manor to maintain the minimum separation distance. General Comments: The absorption and distribution of Electromagnetic energy in the body is a very complex phenomena that depends on the mass, shape and physiological condition of the body; the orientation of the body with respect to the fields; and, the electrical properties of the body and the environment. Variables that may play a substantial role in possible biological effects are those that characterize the environment (including but not limited to: ambient temperature, air velocity, relative humidity and body insulation); and those that characterize the individual (including but not limited to: age, gender, activity level and existing debilitation or disease). Because innumerable factors may interact to determine specific biological effects of exposure to electromagnetic fields, any protection guide should consider both intended and unintended operational environments and provide guidance for installation and use of the equipment such that proper separation distances can be maintained. (ANSI C95.1) Page 5 of 13 Report No: 111601-13 APPENDIX A - RF Exposure Limits United States Compliance Requirements (1.1310): RF Exposure Evaluation Limits Occupational / Controlled Exposure Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Averaging Time (minutes) 0.3-3.0 614 1.63 *(100) < 6 3.0-30 1842 / f MHz 4.89 / f MHz *(900 / f MHz 2 ) < 6 30-300 61.4 0.163 1 < 6 300-1500 -- -- f MHz / 300 < 6 1500-100,000 -- -- 5.0 < 6 RF Exposure Evaluation Limits 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 MHz 2.19 / f MHz *(180 / f MHz 2 ) < 30 30-300 27.5 0.073 0.2 < 30 300-1500 -- -- f MHz / 1500 < 30…
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Life Sensing Instruments, Inc | CONFIDENTIAL Bedside Monitor Transmitter “BMT” Unlicensed Transmitters: Approved Antennas List Manufacturer Antenna Description Type Peak Gain (dBi) Min Cable loss (dB) Ω Connector Type Notes TE Connectivity IN7-3RD Whip Antenna Monopole 3 n/a 50 SMA Notes: TE CONNECTIVITY / DIGITAL DATA NETWORKS / IN7-3RD IN7-3RD 700 MHz Rubber Duck Antenna 700 MHZ APXTENDER OMNIDIRECTIONAL ANTENNA The 3 dBi APXtender Indoor Rubber Duck Omnidirectional Antenna is a high gain antenna for fixed or portable wireless equipment operating in the 700 MHz frequency range. The antenna features a 360 horizontal transmission pattern and a 50 vertical transmission pattern. The transmit/receive element can be tilted in relation to the base to direct signal where it is needed. The antennas are available in various connectors to fit most wireless radio equipment. FEATURES MARKETS •3 dBi gain 700 MHz omnidirectional indoor antenna •Extends range of 700 MHz wireless access points or wireless bridges •700 MHz wireless access points •700 MHz wireless client bridges •700 MHz wireless routers • OEM wireless equipment •WiMAX PARAMETER MIN TYP MAX UNITS Frequency Range 698 806 MHz Gain 3 DBI VSWR 1.5:1 Impedance 50 OHM Input Power 10 W Operating Temperature -10+60C Weight 1.3 (37) oz (gr) Dimension 6.2 x 0.6 D (157.5 x 15.2 D) in (mm) BMT ANTENNA DATASHEET TE CONNECTIVITY / DIGITAL DATA NETWORKS / IN7-3RD IN7-3RD-SMA3 dBi 700 Mhz APXtenderSMA Male Connector IN7-3RD-RSMA 3 dBi 700 Mhz APXtender Reverse Polarity SMA Connector IN7-3RD-RTNC 3 dBi 700 Mhz APXtender Reverse Polarity TNC Connector te.com TE, TE Connectivity, TE connectivity (logo), and EVERY CONNECTION COUNTS are trademarks owned or licensed by the TE Connectivity plc family of companies. Other product names, logos, and company names mentioned herein may be trademarks of their respective owners. While TE has made every reasonable effort to ensure the accuracy of the information in this document, TE does not guarantee that it is error-free, nor does TE make any other representation, warranty or guarantee that the information is accurate, complete, correct, reliable or current. TE reserves the right to make any adjustments to the information contained herein at any time without notice. TE EXPRESSLY DISCLAIMS ALL IMPLIED WARRANTIES REGARDING THE INFORMATION CONTAINED HEREIN, INCLUDING, BUT NOT LIMITED TO, ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. In no event will TE be liable for any direct, indirect, incidental, special or consequential damages arising from or related to recipient’s use of the information. It is the sole responsibility of recipient of this information to verify the results of this information using their engineering and product environment. Recipient assumes any and all risks associated with the use of the information. Antenna performance may vary. TE is a component manufacturer, and customer and/or end-user is responsible for all end-use compliance and regulatory requirements. ©2025 TE Connectivity. All Rights Reserved. 05/25 Original TE TECHNICAL SUPPORT CENTER USA: +1 (800) 522-6752 Canada: +1 (905) 475-6222 Mexico: +5 2 (0) 55-1106-0800 Latin/S. America: +54 (0) 11-4733-2200 Germany: +49 (0) 6251-133-1999 UK: +44 (0) 800-26 7666 France: +33 (0) 1-3420-8686 Netherlands: +31 (0) 73-6246-999 China: +86 (0) 400-820-6015 ORDERING INFO
This report contains a total of 62 pages and may be reproduced in full only. Partial reproduction may only be done with the written consent of CKC Laboratories, Inc. Life Sensing Instruments, Inc. REVISED EMC TEST REPORT TO 111601-6 Bedside Monitor Transmitter Model: BMT Tested to The Following Standards: SpecLimit: FCC PART 95 SUBPART H Report No.: 111601-6A Date of issue: February 26, 2026 This test report bears the accreditation symbol indicating that the testing performed herein meets the test and reporting requirements of ISO/IEC 17025 under the applicable scope of testing for CKC Laboratories, Inc. We strive to create long-term, trust based relationships by providing sound, adaptive, customer first testing services. We embrace each of our customers’ unique EMC challenges, not as an interruption to set processes, but rather as the reason we are in business. Test Certificate # 803.01 Page 2 of 62 Report No.: 111601-6A TABLE OF CONTENTS Administrative Information .......................................................................................................................... 3 Test Report Information ............................................................................................................................................ 3 Revision History ......................................................................................................................................................... 3 Report Authorization ................................................................................................................................................. 3 Test Facility Information ............................................................................................................................................ 4 Software Versions ...................................................................................................................................................... 4 Site Registration & Accreditation Information .......................................................................................................... 4 Summary of Results ................................................................................................................................................... 5 Standard / Specification: FCC Part 95 Subpart H ................................................................................................... 5 Modifications During Testing ..................................................................................................................................... 5 Conditions During Testing.......................................................................................................................................... 5 Equipment Under Test (EUT) ..................................................................................................................................... 6 General Product Information: ................................................................................................................................... 7 FCC Part 95 SUBPART H............................................................................................................................... 14 95.2369 WMTS Field Strength Limits....................................................................................................................... 14 2.1049 20dB Occupied Bandwidth .......................................................................................................................... 22 95.2379(a)/95.2379(b) Unwanted Emissions Limits ................................................................................................ 27 95.2365 WMTS Frequency Accuracy ....................................................................................................................... 56 Supplemental Information .......................................................................................................................... 61 Measurement Uncertainty ...................................................................................................................................... 61 Emissions Test Details .............................................................................................................................................. 61 Page 3 of 62 Report No.: 111601-6A Administrative Information Test Report Information REPORT PREPARED FOR: REPORT PREPARED BY: Life Sensing Instruments, Inc. 2102 Cambridge Beltway Drive, Suite A1 Charlotte, NC 28273 Viviana Prado CKC Laboratories, Inc. 5046 Sierra Pines Drive Mariposa, CA 95338 Representatives: Karen Whipkey - F-Squared Laboratories Alejandro Melchor - Life Sensing Instruments, Inc. Project Number: 111601 Customer Reference Number: 7132 DATE OF EQUIPMENT RECEIPT: September 15, 2025 DATE(S) OF TESTING: September 16, 17, 18, 19, and 25, 2025 and February 3, 2026 Revision History Original: Testing of the Bedside Monitor Transmitter, Model: BMT to SpecLimit: FCC PART 95 SUBPART H. Revision A: To update test dates, Summary of Results table, Unwanted Emissions Limits, and WMTS Frequency Accuracy data. Report Authorization The test data contained in this report documents the observed testing parameters pertaining to and are relevant for only the equipment provided by the client, tested in the agreed upon operational mode(s) and configuration(s) as identified herein. Compliance assessment remains the client’s responsibility. This report may not be used to claim product endorsement by A2LA or any government agencies. This test report has been authorized for release under quality control from CKC Laboratories, Inc. . Steve Behm Director of Quality Assurance & Engineering Services CKC Laboratories, Inc. Page 4 of 62 Report No.: 111601-6A Test Facility Information Our laboratories are configured to effectively test a wide variety of product types. CKC utilizes first class test equipment, anechoic chambers, data acquisition and in…
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CKCCS Inquiry: On pages 28 and 31 of report 111601-6 includes a description of channels which includes confusing indication of channel selections. Please clarify the context of the channel declaration and if necessary provide either a supplementary explanation or an updated report. Lab Reply: Clarification: Page 28,31 of test report 111601-6 contains typographical error the listed High channel associated with 608.375MHz is Low Channel. CKC 12/10/25
2102-A1 Cambridge Beltway Dr. · Charlotte, North Carolina, 28273 · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 95H | 608.375 MHz - 613.625 MHz | 3.40 mW | 54KF1D | 10ppm |
| 2 | 95H | 1.40 GHz - 1.40 GHz | 1.30 mW | 54KF1D | 10ppm |
| 3 | 95H | 1.43 GHz - 1.43 GHz | 2.50 mW | 54KF1D | 10ppm |

Medical telemetry receiver
Equipment Class
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Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Medical telemetry transmitter
Equipment Class
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Equipment Class
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