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Norav Medical Section 2.911 (d)(7) USA Agent for Service of Process Company name: Norav Medical Address: 1300 Wallace Dr. Delray Beach FL 33444 USA Product Name: PC-ECG 1200WR FCC ID: 2BHLM-1200WRV3 Model(s): 1200WR 2.911(d)(7) USA Designated Agent for Service of Process We, Norav Medical designate Noa Compliance NOTE1 for the purpose of accepting service of process on behalf of the applicant. Applicant consent:We Acknowledge our consent to accept service of process in the United States for matters related to the applicable equipment, and at the physical U.S. address and email address of the designated agent and acknowledge our acceptance of our obligation to maintain an agent for service of process in the United States for no less than one year after either the grantee has permanently terminated all marketing and importation of the applicable equipment within the U.S., or the conclusion of any Commission-related administrative or judicial proceeding involving the equipment, whichever is later. Agent obligation:We Acknowledge our obligation to accept service of process in the United States for matters related to the applicable equipment at our physical U.S. address and email add ress for no less than one year after either the grantee has permanently terminated all marketing and importation of the applicable equipment within the U.S., or the conclusion of any Commission-related administrative or judicial proceeding involving the equipment, whichever is later. Norav Medical USA Agent Company name: Noa Compliance Address: 844 HIGHLAND AVE P.O. Box 644, NEEDHAM HEIGHTS, MASSACHUSETTS 2494, USA FRN: 0033529363 Contact Name: Nateev Meidan Telephone No: +1 (818) 619-1 185 Email: [email protected] Signature: -;;-7�:z;:;.-,, - Title: Private Sector, Sole Proprietor Date: 29 October 2025 Applicant Company name: No rav Medical Address: 1300 Wallace Dr. Delray Beach FL 33444 USA FRN: 0035690593 Contact Name: Boris Wainshtein Telephone No: +97249893001 Email: [email protected] Signature. ? - · Title: Electronic Engineering Date: 29 October 2025 NOTE 1: An applicant located in the United States may designate itself as the agent for service of process. Reference; Federal Register document 2022-28263 published on 02/06/23 https://www.federalregister.gov/documents/2023/02/06/2022-28263/protecting-against national-security-threats-to-the-communications-suppl y-chain-through-the
Norav Medical Agent Authorization Company: Norav Medical Address: 1300 Wallace Dr. Delray Beach FL 33444 USA Product Name: PC-ECG 1200WR M odel Number(s): 1200WR We authorize MiCOM Labs Inc., 575 Boulder Court, Pleasanton, California 94566, USA, to act on our behalf on all m atters concerning the certification of above named equipment. We declare that MiCOM Labs Inc. is allowed to forward all information related to the a pproval and certification of equipment to the regulatory agencies as required and to discuss any issues concerning the approval application. Any and all acts carried out by MiCO M Labs on our behalf shall have the same effect as acts of our own. Name: Boris Wainshtein Title: Electronic Engineering Company Signature :ra� Date /
FCC ID: 2BHLM-1200WRV3 RF Exposure Evaluation Limits The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in 1.1307(b) 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) (A) Limits for Occupational/Controlled Exposures 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 6 300–1500 f/300 6 1500–100,000 5 6 (B) 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 30 300–1500 f/1500 30 1500–100,000 1.0 30 f = frequency in MHz Friis transmission formula: Pd = (Pout*G)/(4*pi*r 2 ) Where Pd = power density in mW/cm 2 , Pout = output power to antenna in mW; G = gain of antenna in linear scale, Pi = 3.1416; R = distance between observation point and center of the radiator in cm Pd id the limit of MPE, 1 mW/cm 2 . If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. Test Procedure Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. FCC ID: 2BHLM-1200WRV3 Test Result of RF Exposure Evaluation Band Frequency Max output power (dBm) Output power (mW) Antenna gain (dBi) Power Density at R=20cm (mW/cm 2 ) Limit (mW/cm 2 ) Verdict 2.4G 2402MHz 4.34 2.72 2.20 0.00088 1.0 PASS Remark: The max power density is less than MPE exempt limit, so it is compliance.
– 1 – Revised 1/13/14 Product Description The RCT Series ½-wave antenna delivers outstanding performance with an innovative articulating base that allows it to tilt 90° and rotate 360° for optimum orientation. The antenna’s internal counterpoise eliminates external ground plane dependence and maximizes performance. The RCT attaches via a standard SMA or Part 15 compliant RP-SMA connector Features • Internal counterpoise • Tilts and rotates • Excellent performance • Omni-directional pattern • Very low VSWR • Fully weatherized • Rugged and damage-resistant • Standard SMA or Part 15 compliant RP-SMA connector Electrical Specifications Center Frequency: 2.45GHz Recom. Freq. Range: 2.40–2.50GHz Wavelength: ½-wave VSWR: ≤ 1.9 typical at center Peak Gain: 2.2dBi Impedance: 50-ohms Connector: RP-SMA Oper. Temp. Range: –40°C to +90°C Electrical specifications and plots measured on 10.16 cm x 10.16 cm (4.00" x 4.00") reference ground plane ANT-2.4-CW-RCT-xx Data Sheet by Ordering Information ANT-2.4-CW-RCT-RP (with RP-SMA connector) ANT-2.4-CW-RCT-SS (with SMA connector) 10.0 mm (0.39") 95.6 mm (3.76") 8.4 mm (0.33") 9.0 mm (0.35") 113.0 mm (4.44") 5.1 mm (0.20") 28.0 mm (1.10") – 2 – by Data Sheet ANT-2.4-CW-RCT-xx 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 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% 2450MHz2550MHz2350MHz 1.003
Report No.:GTS2025100161F01 Page 1 of 14 1. Bandwidth 1.1 Test Result 1.1.1 OBW Mode TX Type Frequency (MHz) ANT 99% Occupied Bandwidth (MHz) Verdict Result Limit GFSK SISO 2402 1 1.795 / Pass 2442 1 1.840 / Pass 2477 1 1.894 / Pass 1.1.2 6dB BW Mode TX Type Frequency (MHz) ANT 6dB Bandwidth (MHz) Verdict Result Limit GFSK SISO 2402 1 0.846 >=0.5 Pass 2442 1 0.863 >=0.5 Pass 2477 1 0.846 >=0.5 Pass Report No.:GTS2025100161F01 Page 2 of 14 1.2 Test Graph 1.2.1 OBW GFSK_LCH_2402MHz_Ant1_NTNV GFSK_MCH_2442MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 3 of 14 GFSK_HCH_2477MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 4 of 14 1.2.2 6dB BW GFSK_LCH_2402MHz_Ant1_NTNV GFSK_MCH_2442MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 5 of 14 GFSK_HCH_2477MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 6 of 14 2. Maximum Conducted Output Power 2.1 Test Result 2.1.1 Power Mode TX Type Frequency (MHz) Maximum Peak Conducted Output Power (dBm) Verdict ANT1 Limit GFSK SISO 2402 4.34 <=30 Pass 2442 3.88 <=30 Pass 2477 3.25 <=30 Pass Note1: Antenna Gain: Ant1: 2.20dBi; 3. Maximum Power Spectral Density 3.1 Test Result 3.1.1 PSD Mode TX Type Frequency (MHz) Maximum PSD (dBm) Verdict ANT1 Limit GFSK SISO 2402 3.26 <=8 Pass 2442 2.77 <=8 Pass 2477 2.49 <=8 Pass Note1: Antenna Gain: Ant1: 2.20dBi; Report No.:GTS2025100161F01 Page 7 of 14 3.2 Test Graph 3.2.1 PSD GFSK_LCH_2402MHz_Ant1_NTNV GFSK_MCH_2442MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 8 of 14 GFSK_HCH_2477MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 9 of 14 4. Unwanted Emissions In Non-restricted Frequency Bands 4.1 Test Result 4.1.1 Ref Mode TX Type Frequency (MHz) ANT Level of Reference (dBm) GFSK SISO 2402 1 3.27 2442 1 2.78 2477 1 2.51 4.1.2 CSE Mode TX Type Frequency (MHz) ANT Level of Reference (dBm) Limit (dBm) Verdict GFSK SISO 2402 1 3.27 -16.73 Pass 2442 1 3.27 -16.73 Pass 2477 1 3.27 -16.73 Pass Report No.:GTS2025100161F01 Page 10 of 14 4.2 Test Graph 4.2.1 Ref GFSK_LCH_2402MHz_Ant1_NTNV GFSK_MCH_2442MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 11 of 14 GFSK_HCH_2477MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 12 of 14 4.2.2 CSE GFSK_LCH_2402MHz_Ant1_NTNV GFSK_LCH_2402MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 13 of 14 GFSK_MCH_2442MHz_Ant1_NTNV GFSK_HCH_2477MHz_Ant1_NTNV Report No.:GTS2025100161F01 Page 14 of 14 GFSK_HCH_2477MHz_Ant1_NTNV ------End------
Global United Technology Services Co., Ltd. Report No.: GTS2025100161F01 Authorized Signature: Robinson Luo Laboratory Manager This results shown in this test report refer only to the sample(s) tested, this test report cannot be reproduced, except in full, without prior written permission of the company. The report would be invalid without specific stamp of test institute and the signatures of compiler and approver. Page 1 of 27 TEST REPORT Applicant: Norav Medical Address of Applicant: 1300 Wallace Dr. Delray Beach FL 33444 USA Manufacturer: Norav Medical Address of Manufacturer: 1300 Wallace Dr. Delray Beach FL 33444 USA Factory: Norav Medical GmbH Address of Factory: Christof-Ruthof-Weg 10,55252 Mainz-Kastel,Germany Equipment Under Test (EUT) Product Name: PC-ECG 1200WR Model No.: 1200WR Trade Mark: PC-ECG 1200WR FCC ID: 2BHLM-1200WRV3 Applicable standards: FCC CFR Title 47 Part 15 Subpart C Section 15.247 Date of sample receipt: October 15, 2025 Date of Test: October 16, 2025- January 28, 2026 Date of report issued: January 28, 2026 Test Result : PASS * * In the configuration tested, the EUT complied with the standards specified above. Report No.: GTS2025100161F01 Page 2 of 27 2 Version Version No. Date Description 00 January 28, 2026 Original Tested By: Date: January 28, 2026 Test Engineer Prepared By: Date: January 28, 2026 Project Engineer Check By: Date: January 28, 2026 Reviewer Report No.: GTS2025100161F01 Page 3 of 27 3 Contents Page 1 COVER PAGE ........................................................................................................................................... 1 2 VERSION .................................................................................................................................................. 2 3 CONTENTS .............................................................................................................................................. 3 4 TEST SUMMARY ..................................................................................................................................... 4 5 GENERAL INFORMATION ...................................................................................................................... 5 5.1 GENERAL DESCRIPTION OF EUT ......................................................................................................... 5 5.2 TEST MODE ........................................................................................................................................ 7 5.3 DESCRIPTION OF SUPPORT UNITS ....................................................................................................... 7 5.4 DEVIATION FROM STANDARDS ............................................................................................................. 7 5.5 ABNORMALITIES FROM STANDARD CONDITIONS ................................................................................... 7 5.6 TEST FACILITY .................................................................................................................................... 7 5.7 TEST LOCATION ................................................................................................................................. 7 5.8 ADDITIONAL INSTRUCTIONS ................................................................................................................. 7 6 TEST INSTRUMENTS LIST ..................................................................................................................... 8 7 TEST RESULTS AND MEASUREMENT DATA .................................................................................... 10 7.1 ANTENNA REQUIREMENT ................................................................................................................... 10 7.2 CONDUCTED EMISSIONS ................................................................................................................... 11 7.3 CONDUCTED OUTPUT POWER ........................................................................................................... 14 7.4 CHANNEL BANDWIDTH ...................................................................................................................... 15 7.5 POWER SPECTRAL DENSITY ............................................................................................................. 16 7.6 SPURIOUS EMISSION IN NON-RESTRICTED & RESTRICTED BANDS ....................................................... 17 7.6.1 Conducted Emission Method ..................................................................................................... 17 7.6.2 Radiated Emission Method ........................................................................................................ 18 8 TEST SETUP PHOTO ............................................................................................................................ 27 9 EUT CONSTRUCTIONAL DETAILS ..................................................................................................... 27 Report No.: GTS2025100161F01 Page 4 of 27 4 Test Summary Test Item Section in CFR 47 Result Antenna requirement 15.203/15.247 (c) Pass AC Power Line Conducted Emission 15.207 Pass Conducted Output Power 15.247 (b)(3) Pass Channel Bandwidth 15.247 (a)(2) Pass Power Spectral Density 15.247 (e) Pass Band Edge 15.247(d) Pass Spurious Emission 15.205/15.209 Pass Remarks: 1. Pass: The EUT complies with the essential requirements in the standard. 2. Test according to ANSI C63.10:2020 Measurement Uncertainty No. Item Measurement Uncertainty 1 Radio Frequency ±7.25×10 -8 2 Duty cycle ±0.37% 3 Occupied Bandwidth ±3% 4 RF conducted power ±0.75dB 5 RF power density ±3dB 6 Conducted Spurious emissions ±2.58dB 7 AC Power Line Conducted Emission ±3.44dB (0.15MHz ~ 30MHz) 8 Radiated Spurious emission test ±3.1dB (9kHz-30MHz) ±3.8039dB (30MHz-200MHz) ±3.9679dB (200MHz-1GHz) ±4.29dB (1GHz-18GHz) ±3.30dB (18GHz-40GHz) 9 Temperature test ±1°C 10 Humidity test ±3% 11 Time ±3…
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844 HIGHLAND AVE P.O BOX 644 NEEDHAM HEIGHTS, · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 2.72 mW |
PC-ECG 1200W
Equipment Class
DTS - Digital Transmission System