
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
ONEWIRELESS RELEASE 323 Field Device Access Point User's Guide OWDOC-X256-en-323A June 2022 2 DISCLAIMER This document contains Honeywell proprietary information. Information contained herein is to be used solely for the purpose submitted, and no part of this document or its contents shall be reproduced, published, or disclosed to a third party without the express permission of Honeywell International Sàrl. While this information is presented in good faith and believed to be accurate, Honeywell disclaims the implied warranties of merchantability and fitness for a purpose and makes no express warranties except as may be stated in its written agreement with and for its customer. In no event is Honeywell liable to anyone for any direct, special, or consequential damages. The information and specifications in this document are subject to change without notice. Copyright 2022- Honeywell International Sàrl OWDOC-X256-en-323A 3 Table of contents ABOUT THIS GUIDE .................................................................................................................................................................. 6 Revision history ........................................................................................................................................................................... 6 Intended audience ..................................................................................................................................................................... 6 Prerequisite skills ....................................................................................................................................................................... 6 How to use this guide ............................................................................................................................................................... 6 Related guides ............................................................................................................................................................................. 6 INTRODUCTION TO FDAP ..................................................................................................................................................... 8 FDAP description ....................................................................................................................................................................... 8 FDAP types ................................................................................................................................................................................. 10 FDAP as backbone router ........................................................................................................................................... 10 FDAP as field router ....................................................................................................................................................... 10 Physical description............................................................................................................................................................... 11 FDAP Gen3 and FDAP Gen3 Anchor components ........................................................................................ 11 FDAP2 components ...................................................................................................................................................... 12 Features of FDAP .................................................................................................................................................................... 14 FDAP security ............................................................................................................................................................................ 15 FDAP compliance information ......................................................................................................................................... 17 FDAP INSTALLATION .......................................................................................................................................................... 18 Prerequisites .............................................................................................................................................................................. 18 Inspect FDAP and associated hardware ..................................................................................................................... 18 Identify FDAP site locations ............................................................................................................................................... 19 Connect antennas .................................................................................................................................................................. 19 FDAP Gen3 and FDAP Gen3 Anchor .................................................................................................................... 19 FDAP2 ................................................................................................................................................................................. 22 Grounding ................................................................................................................................................................................... 22 FDAP Gen3 and FDAP Gen3 Anchor .................................................................................................................... 23 FDAP2 ................................................................................................................................................................................. 23 Mount the FDAP ...................................................................................................................................................................... 23 FDAP Gen3 and FDAP Gen3 Anchor ..........................…
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Model Differences Summary (add extra details if applicable) Model name Rated voltage Rated power Same circuit diagram / Schematic ? Same PCB layout? Mains transformer Sensor Output character (voltage, frequency, wavelength) Motor name, voltage and power Heating element Same programmable electrical medical system / software? Same constructi on, shape of enclosure ? Intended use FDAP31 24VDC 1W Yes Yes Yes NA Same NA NA Yes Yes Device Access Point used in Zone 1 Location FDAP32 24VDC 2.2W Yes Yes Yes NA Same NA NA Yes Yes Device Access Point used in Zone 2 Location FDAP3P 60V Max POE 2.3W Yes Yes Yes NA Same NA NA Yes Yes Device Access Point with provision POE Powering & Zone2 Location for AC/DC N/A is not applicable All the Internal circuitry are same for the three models, FDAP31 is used in Zone1 Hazardous Location, So the interface like RS485 cannot be used because it can create fire hazard if the energy is not limited. So the power consumption is less on FDAP32. FDAP3P is powered through POE, because of POE convertor the power consumption is slightly different.
Page 1 of 1 Authority to Act as Agent Date: 17-05-2022 Honeywell International Inc 512 Virginia Dr Fort Washington, Pennsylvania United States 19034 To Whom It May Concern: I appoint Mr. Raghavendra Kulkarni of TUV Rheinland India Ltd. 27/B, 2nd cross, Electronic City, Phase 1 Bangalore – 560 100. INDIA to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in the FCC or Industry Canada’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for Certification, as specified by TUV Rheinland Group, still resides with Richard Allen, Honeywell International Inc, 512 Virginia Dr Fort Washington, Pennsylvania United States 19034. For TCB applications, We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. Thank you, Agency Agreement Date: 17-05-2022 Agreement is valid for 12 months from the above date. By: Richard Allen (Signature) (Print name) Lead Certification Engineer Tel: +1 (215) 641-3189 (Title) (Telephone) On behalf of: Honeywell International Inc
Date: 22-04-2022 Federal Communications Commission Authorization and Evaluation division Subject: Confidentiality Request for GXRM Radio FCC ID: S5751308987 Pursuant to 47 CRF 0.457(d) and 0.459, Honeywell Internal Inc. Industrial Measurement & Control requests that a part of the subject application be held confidential Type of Confidentiality requested Exhibit Type File name Long Term Operational Description Operational Description GXRM Long Term Block Diagram Block Diagram GXRM Long Term Bill of Material Bill of Material GXRM Long Term Schematic -GXRM Schematics GXRM Long Term Operational Description Operational Description Anchor Long Term Block Diagram Block Diagram Anchor Long Term Bill of Material Bill of Material Anchor Long Term Schematic -GXRM Schematics Anchor Long Term Schematic-Host Schematics FDAP Power Board Long Term Schematic-Host Schematics FDAP Base Board Short Term Host User Manual User Manual FDAP Short-term Host Internal Photos Internal Photos The above materials contain proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the applicant and provide unjustified benefits to its competitors. Short term confidentiality period is 45days. Hand signed (not electronic) Prasad Samudrala Company Honeywell International Inc Address: 1860, W. Rose garden Lane, Phoenix, Arizona, US-85027 Phone: 917348936728
Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 1 von 8 Page 1 of 8 EUT External Photos Figure 1: Front view of Anchor Figure 2: Rear view of Anchor Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 2 von 8 Page 2 of 8 Figure 3: Dimensional view of Anchor Figure 4: Dimensional view of Anchor Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 3 von 8 Page 3 of 8 Figur 5: Anchor with 5dBi AIR-ANT2450V-N Antenna Figure 6: Dimensional view of Anchor with 5dBi AIR-ANT2450V-N Antenna Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 4 von 8 Page 4 of 8 Figure 7: Dimensional view of Antenna with 5dBi AIR-ANT2450V-N Antenna Figure 8: Anchor with 5dBi and 8dBi Antennas Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 5 von 8 Page 5 of 8 Figure 9: Dimensional view of 5dBi SG1015NM-2450-5dBi Antenna Figure 10: Dimensional view of 5dBi SG1015NM-2450-5dBi Antenna Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 6 von 8 Page 6 of 8 Figure 11: Dimensional view of 8dBi AIR-ANT2480V-N Omni Antenna Figure 12: Dimensional view of 8dBi AIR-ANT2480V-N Omni Antenna Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 7 von 8 Page 7 of 8 Figure 13: Dimensional view of 8dBi L-COM HGV-2409U Antenna Figure 14: Dimensional view of 8dBi L-COM HGV-2409U Antenna Produkte Products www.tuv.com EUT External Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 8 von 8 Page 8 of 8 Figure 15: Dimensional view of 5dBi Laird Technologies-OD24M-5 Antenna Figure 16: Dimensional view of Laird Technologies-OD24M-5Antenna ****End of EUT External Photos****
FDAP31 Gen3 Anchor FDAP32 Gen3 Anchor FDAP3P Gen3 Anchor On front surface
Produkte Products www.tuv.com EUT Internal Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 1 von 6 Page 1 of 6 EUT Internal Photos Figure 1: Anchor Front panel removed Figure 2: Front view of the PCB Produkte Products www.tuv.com EUT Internal Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 2 von 6 Page 2 of 6 Figure 3: Dimensional view of PCB Figure 4: Dimensional view of PCB Produkte Products www.tuv.com EUT Internal Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 3 von 6 Page 3 of 6 Figure 5: Front view of RF module (GXRM) Figure 6: Rear view of RF module (GXRM) Produkte Products www.tuv.com EUT Internal Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 4 von 6 Page 4 of 6 Figure 7: Dimensional view of RF module (GXRM) Figure 8: Dimensional view of RF module (GXRM) Produkte Products www.tuv.com EUT Internal Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 5 von 6 Page 5 of 6 Figure 9: Front view of RF module (Anchor 1) Figure 10: Rear view of RF module (Anchor 1) Produkte Products www.tuv.com EUT Internal Photos Reference Test Report No: ULR- TC568822300000032F/33F/34F Seite 6 von 6 Page 6 of 6 Figure 11: Dimensional view of RF module (Anchor 1) Figure 12: Dimensional view of RF module (Anchor 1) ****End of EUT Internal Photos****
Produkte Products www.tuv.com RF Exposure Reference test Report No: ULR-TC568822300000032F Seite 1 von 4 Page 1 of 4 1 RF Exposure 1.1 RF Exposure Compliance Requirement The limit for Maximum Permissible Exposure (MPE) specified in FCC 1.1310 is followed. The gain of the antennas used in the product is extracted from the Antenna data sheets provided and also the maximum total power input to the antenna is measured. Through the Friis transmission formula and the maximum gain of the antenna, we can calculate the distance, away from the product, where the limit of MPE is reached. Although the Friis Transmission formula is far field assumption, the calculated result of that is an over-prediction for near field power density. It is taken as worst case to specify the safety range. Exemption limits for Routine Evaluation is applied according to RSS- 102 issue 5, section 2.5.2. 1.2 RF Exposure Limits: 1.2.1 For FCC 1. According to FCC Part 1 Subpart I 1.1310: The criteria listed in the following table shall be used to evaluate the environmental impact of the human exposure to radio-frequency (RF) radiation as specified in 1.1307 (b) showed in Table 1. F or ƒ = Frequency in MHz Friss Formula Friss Transmission Formula: Pd = (Pout * G) / (4*pi*r²) Where Pd = power density in mW/cm² Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = Distance between observation point and the center of radiator in cm If we know the maximum gain of the antenna and the total output power to the antenna, through calculation, we will know MPE value at distance 20cm. Produkte Products www.tuv.com RF Exposure Reference test Report No: ULR-TC568822300000032F Seite 2 von 4 Page 2 of 4 Test Results: Manufacturer has declared the tune-up value as ±1 dB is considered in MPE calculation. Antenna Gain: 5dBi Protocol Frequenc y (MHz) Maxim um m easured RF output pow er at antenna term inal (dBm ) Tune-up tolerance (dB) Max pow er Including tune-up tolerance * (m W) Min Separation distance (CM) Pow er Density (Pd) (m W/cm ²) FCC Lim it (m W/cm 2) IEEE 802.15.4 (GXRM Transmitter) 2440 18.99 ±1 99.77 20 0.0627 1.00 BLE 2402 3.94 ±1 3.11 20 0.0019 1.00 IEEE 802.15.4 (Anchor 1) 2440 17.93 ±1 78.16 20 0.0491 1.00 Proprietary (Anchor 1) 2442.5 17.32 ±1 67.92 20 0.0427 1.00 Proprietary (Anchor 1) 2476 14.22 ±1 33.26 20 0.0209 1.00 Antenna Gain: 8dBi Protocol Frequenc y (MHz) Maxim um m easured RF output pow er at antenna term inal (dBm ) Tune-up tolerance (dB) Max pow er Including tune-up tolerance * (m W) Min Separation distance (CM) Pow er Density (Pd) (m W/cm ²) FCC Lim it (m W/cm 2) IEEE 802.15.4 (GXRM Transmitter) 2440 16.11 ±1 51.40 20 0.0645 1.00 BLE 2402 3.94 ±1 3.11 20 0.0039 1.00 IEEE 802.15.4 (Anchor 1) 2440 17.93 ±1 78.16 20 0.0980 1.00 Proprietary (Anchor 1) 2442.5 17.32 ±1 67.92 20 0.0853 1.00 Proprietary (Anchor 1) 2476 14.22 ±1 33.26 20 0.0418 1.00 Simultaneous Calculation IEEE 802.15.4 (GXRM Transmitter) BLE IEEE 802.15.4 (Anchor 1) Proprietary (Anchor 1) Proprietary (Anchor 1) Total Ratio Limit 0.0645 0.0039 0.0980 0.0853 0.0418 0.3 0.3 1.00 Produkte Products www.tuv.com RF Exposure Reference test Report No: ULR-TC568822300000032F Seite 3 von 4 Page 3 of 4 1.2.2 For IC According to IC RSS 102 : The criteria listed in the following table shall be used to evaluate the environmental impact of the human exposure to radio-frequency (RF) radiation as specified in section 4 showed in Table 4. Antenna Gain: 5dBi Protocol Frequency (MHz) Maxim um m easured RF output pow er at antenna term inal (dBm ) Tune-up tolerance (dB) Max pow er Including tuneup tolerance * (m W) Pow er Density (Pd) (m W/cm ²) IC Lim it (m W/cm 2) IEEE 802.15.4 (GXRM Transmitter) 2440 18.99 ±1 99.77 0.0627 0.54 BLE 2402 3.94 ±1 3.11 0.0019 0.53 IEEE 802.15.4 (Anchor 1) 2440 17.93 ±1 78.16 0.0491 0.54 Proprietary (Anchor 1) 2442.5 17.32 ±1 67.92 0.0427 0.54 Proprietary (Anchor 1) 2476 14.22 ±1 33.26 0.0209 0.54 Produkte Products www.tuv.com RF Exposure Reference test Report No: ULR-TC568822300000032F Seite 4 von 4 Page 4 of 4 Antenna Gain: 8dBi Protocol Frequency (MHz) Maxim um m easured RF output pow er at antenna term inal (dBm ) Tune-up tolerance (dB) Max pow er Including tuneup tolerance * (m W) Pow er Density (Pd) (m W/cm ²) IC Lim it (m W/cm 2) IEEE 802.15.4 (GXRM Transmitter) 2440 16.11 ±1 51.40 0.0645 0.54 BLE 2440 3.94 ±1 3.11 0.0039 0.54 IEEE 802.15.4 (Anchor 1) 2440 17.93 ±1 78.16 0.0980 0.54 Proprietary (Anchor 1) 2442.5 17.32 ±1 67.92 0.0853 0.54 Proprietary (Anchor 1) 2476 14.22 ±1 33.26 0.0418 0.54 Simultaneous Calculation IEEE 802.15.4 (GXRM Transmitter) BLE IEEE 802.15.4 (Anchor 1) Proprietary (Anchor 1) Proprietary (Anchor 1) Total Ratio Limit 0.0645 0.0039 0.0980 0.0853 0.0418 0.3 0.3/0.54 1.00 Note: 1. Tune up tolerance of ± 1 dB is considered for MPE calculation, this value is declared by manufacturer. 2. Calculation is performed for 20 cm separation distance 3. Calculation is performed for highest antenna gain of 5dBi and 8dBi. 1.3 Conclusion The Power density of the EUT is less than defined limit as shown above, hence EUT is exempted from routine SAR.
Prüfbericht – Produkte Test Report - Products Prüfbericht-Nr.: Test report no.: ULR-TC568822300000033F Auftrags-Nr.: Order no.: 146643820 010 Seite 1 von 96 Page 1 of 96 Kunden-Referenz-Nr.: Client reference no.: 2024735 Auftragsdatum: Order date: 2021-12-20 Auftraggeber: Client: 1. HONEYWELL INTERNATIONAL INC 1860W, ROSE GARDEN LANE, AZ75,M-16-7988, PHOENIX, ARIZON, UNITED STATES 2. Honeywell LTD 500 Brooksbank Avenue, North Vancouver, BC, V7J 3S4; Canada Prüfgegenstand: Test item: Field Device Access Point Gen3 Anchor Bezeichnung Identification FDAP31, FDAP32, FDAP3P Serien -Nr.: Serial no.: FC-00 Auftrags-Inhalt: Order content: Testing and issue of Test Report and Grant Certificate Prüfgrundlage: Test specification: FCC Part 15 Subpart C 15.247,15.205, 15.207 & 15.209 RSS 247 Issue 2,RSS Gen Issue 5 Wareneingangsdatum: Date of sample receipt: 2022-01-27 Prüfmuster-Nr.: Test sample no: A003207433-001 Prüfzeitraum: Testing period: 2022-01-27 - 2022-02-23 Ort der Prüfung: Place of testing: Wireless laboratory, Bangalore Prüflaboratorium: Testing laboratory: TÜV Rheinland (India) Pvt. Ltd. 27/B,2nd cross road, Electronic city Phase1, Banglore-560100, India FCC Test Site Registration No: 496599 IC Test Site Registration No: 3665-1 Prüfergebnis*: Test result*: Pass geprüft von: tested by: genehmigt von: authorized by: Datum: Date: 2022-01-27 Ausstellatum: Issue date: 2022-05-20 Stellung / Position: Yogesh V Engineer Stellung / Position: Lokesh Ramu Manager Sonstiges / Other: FCC ID: S5751308987 IC: 573W-51308987 Zustand des Prüfgegenstandes bei Anlieferung: Condition of the test item at delivery: Prüfmuster vollständig und unbeschädigt Test item complete and undamaged * Legende: 1 = sehr gut 2 = gut 3 = befriedigend 4 = ausreichend 5 = mangelhaft P(ass) = entspricht o.g. Prüfgrundlage(n) F(ail) = entspricht nicht o.g. Prüfgrundlage(n) N/A = nicht anwendbar N/T = nicht getestet * Legend: 1 = very good 2 = good 3 = satisfactory 4 = sufficient 5 = poor P(ass) = passed a.m. test specification(s) F(ail) = failed a.m. test specification(s) N/A = not applicable N/T = not tested Dieser Prüfbericht bezieht sich nur auf das o.g. Prüfmuster und darf ohne Genehmigung der Prüfstelle nicht auszugsweise vervielfältigt werden. Dieser Bericht berechtigt nicht zur Verwendung eines Prüfzeichens. This test report only relates to the a. m. test sample. Without permission of the test center this test report is not permitted to be duplicated in extracts. This test report does not entitle to carry any test mark. TÜV Rheinland (India) Pvt. Ltd, Plot No.27/B, 2nd Cross, Electronic city, Industrial Area, Phase I, Hosur Road Bangalore-560 100, India Mail: [email protected] ∙ Web: www.ind.tuv.com Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 2 von 96 Page 2 of 96 TEST SUMMARY Test Item FCC IC Result Maximum conducted (Peak) output power 15.247 (b)(2) RSS 247 Issue 2, Section 5.4 (b) Pass Occupied bandwidth and 20dB Bandwidth 15.247 (a) (i) RSS 247 Issue 2, Section 5.1 (b) Pass Number of Hopping channels 15.247 (a) (i) RSS 247 Issue 2, Section 5.1 (d) Pass Carrier Frequency Separation 15.247 (a) (1) RSS 247 Issue 2, Section 5.1 (b) Pass Time of Occupancy (Dwell Time) 15.247 (a) (i) RSS 247 Issue 2, Section 5.1 (d) Pass Emissions in non-restricted frequency bands 15.247 (d) RSS 247 Issue 2, Section 5.5 Pass Spurious Radiated Emissions and Restricted Bands of Operation FCC 15.209 / FCC 15.205 RSS-Gen Issue 5, Section 8.9 /8.10 Pass Conducted Emission test on AC Power Line FCC 15.207 RSS-Gen Issue 5, Section 8.8 Pass Product Category: Electronics Testing Test Discipline: EMC Test Facility Note: 1. Host products Field device access point (FDAP) has following model variants, all the models are electrically identical & RF characteristics are similar, please refer the Previous FDAP Report. Model name Model number FDAP31 FDAP32 FDAP3P 2. Radio1 (ZigBee) module Considered as approved referring to previous FDAP report FCC ID: S5751307990 and IC:573W-51307990 3. BLE approved module as Listed FCC ID:XPYNINAB1 and IC 8595A-NINAB1 4. FDAP unit integrated with Three Transmitters as simultaneous operation. 1. BLE transmitter 2. Radio 1(GXRM transmitter) 3. Radio2( Anchor Transmitter) Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 3 von 96 Page 3 of 96 REVISION HISTORY OF THIS REPORT Report Number Version Description Issue date ULR-TC568822300000033F 01 Initial issue of report 2022-05-20 ULR-TC568822300000033F 02 Reviewer comments updated 2002-06-06 Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 4 von 96 Page 4 of 96 Table of Contents 1 GENERAL REMARKS ........................................................................................................................................... 5 1.1 Attachments .................................................................................................................................................. 5 2 TEST SITES .......................................................................................................................................................... 6 2.1 Testing Facilities............................................................................................................................................ 6 2.2 List of Test and Measurement Instruments ................................................................................................... 6 3 GENERAL PRODUCT INFORMATION ................................................................................................................. 7 3.1 Product Function and Intended Use.............................................................................................................. 7 3.2 Ratings and System Details of Equipment under Test ................................................................................. 7 3.3 Antenna Details .......................…
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Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 51 von 96 Page 51 of 96 Channel Frequency: 2405MHz Polarization: Vertical Channel Frequency: 1GHz -18GHz Polarization: Vertical 13 20 30 40 50 60 70 80 90 100 110 120 130 143 2300 2350 2400 2450 2500 2550 2600 Level in dBμV/m Frequency in MHz FCC Part 15C Peak FCC Part 15C AVG 2.405000000 GHz 115.646 dBμV/m 2.390250000 GHz 42.133 dBμV/m 2.390000000 GHz 54.744 dBμV/m 2.384000000 GHz 63.914 dBμV/m 2.425750000 GHz 78.141 dBμV/m 2.480000000 GHz 82.398 dBμV/m 2.405000000 GHz 115.646 dBμV/m 0 10 20 30 40 50 60 70 80 90 100 110 120 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 Level in dBμV/m Frequency in GHz FCC Part 15C Peak FCC Part 15C AVG 2.405000000 GHz 69.251 dBμV/m 2.405000000 GHz 69.137 dBμV/m 4.810000000 GHz 32.516 dBμV/m 7.215000000 GHz 36.386 dBμV/m 4.810000000 GHz 42.107 dBμV/m 7.215000000 GHz 47.334 dBμV/m Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 52 von 96 Page 52 of 96 Channel Frequency: 2405MHz Polarization: Horizontal Channel Frequency: 1GHz -18GHz Polarization: Horizontal 0 10 20 30 40 50 60 70 80 90 100 110 120 130 2300 2350 2400 2450 2500 2550 2600 Level in dBμV/m Frequency in MHz FCC Part 15C Peak FCC Part 15C AVG 2.405000000 GHz 97.914 dBμV/m 2.405000000 GHz 97.866 dBμV/m 2.390000000 GHz 38.696 dBμV/m 2.390000000 GHz 26.689 dBμV/m 2.402250000 GHz 69.268 dBμV/m 2.426000000 GHz 70.541 dBμV/m 2.479750000 GHz 70.472 dBμV/m 0 10 20 30 40 50 60 70 80 90 100 110 120 12 4 6 8 10 12 14 16 18 Level in dBμV/m Frequency in GHz FCC Part 15C Peak FCC Part 15C AVG 2.405000000 GHz 50.634 dBμV/m 4.810000000 GHz 32.016 dBμV/m 7.214750000 GHz 35.557 dBμV/m 2.405000000 GHz 49.716 dBμV/m 4.810000000 GHz 41.983 dBμV/m 7.215000000 GHz 47.674 dBμV/m Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 53 von 96 Page 53 of 96 Channel Frequency: 2442.5MHz Polarization: Vertical Channel Frequency: 1GHz -18GHz Polarization: Vertical 13 20 30 40 50 60 70 80 90 100 110 120 130 143 2300 2350 2400 2450 2500 2550 2600 Level in dBμV/m Frequency in MHz FCC Part 15C Peak FCC Part 15C AVG 2.442500000 GHz 117.558 dBμV/m 2.442500000 GHz 117.558 dBμV/m 2.402250000 GHz 74.102 dBμV/m 2.425750000 GHz 73.174 dBμV/m 2.479750000 GHz 83.656 dBμV/m 2.468250000 GHz 46.064 dBμV/m 2.458750000 GHz 66.416 dBμV/m 2.366000000 GHz 44.502 dBμV/m 0 10 20 30 40 50 60 70 80 90 100 110 120 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 Level in dBμV/m Frequency in GHz FCC Part 15C Peak FCC Part 15C AVG 2.442500000 GHz 75.633 dBμV/m 2.442500000 GHz 75.633 dBμV/m 4.885000000 GHz 35.653 dBμV/m 4.885000000 GHz 43.460 dBμV/m 7.327500000 GHz 39.362 dBμV/m 7.328000000 GHz 47.268 dBμV/m Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 54 von 96 Page 54 of 96 Channel Frequency: 2442.5MHz Polarization: Horizontal Channel Frequency: 1GHz -18GHz Polarization: Horizontal 0 10 20 30 40 50 60 70 80 90 100 110 120 130 2300 2350 2400 2450 2500 2550 2600 Level in dBμV/m Frequency in MHz FCC Part 15C Peak FCC Part 15C AVG 2.442500000 GHz 98.762 dBμV/m 2.402250000 GHz 65.927 dBμV/m 2.426000000 GHz 66.439 dBμV/m 2.442500000 GHz 98.762 dBμV/m 2.480250000 GHz 75.424 dBμV/m 2.480000000 GHz 32.166 dBμV/m 0 10 20 30 40 50 60 70 80 90 100 110 120 12 4 6 8 10 12 14 16 18 Level in dBμV/m Frequency in GHz FCC Part 15C Peak FCC Part 15C AVG 2.442500000 GHz 58.889 dBμV/m 2.442500000 GHz 58.551 dBμV/m 4.885000000 GHz 32.740 dBμV/m 4.885750000 GHz 43.775 dBμV/m 7.327500000 GHz 39.708 dBμV/m 7.328000000 GHz 47.942 dBμV/m Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 55 von 96 Page 55 of 96 Channel Frequency: 2477.5MHz Polarization: Vertical Channel Frequency: 1GHz -18GHz Polarization: Vertical 0 10 20 30 40 50 60 70 80 90 100 110 120 130 2300 2350 2400 2450 2500 2550 2600 Level in dBμV/m Frequency in MHz FCC Part 15C Peak FCC Part 15C AVG 2.477500000 GHz 115.441 dBμV/m 2.477500000 GHz 115.417 dBμV/m 2.483500000 GHz 61.848 dBμV/m 2.483500000 GHz 49.881 dBμV/m 2.426250000 GHz 82.599 dBμV/m 2.401750000 GHz 79.892 dBμV/m 2.528750000 GHz 63.383 dBμV/m 2.480250000 GHz 86.084 dBμV/m 0 10 20 30 40 50 60 70 80 90 100 110 120 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 Level in dBμV/m Frequency in GHz FCC Part 15C Peak FCC Part 15C AVG 2.477500000 GHz 79.759 dBμV/m 2.477500000 GHz 79.800 dBμV/m 4.955000000 GHz 34.552 dBμV/m 4.955000000 GHz 42.773 dBμV/m 7.432500000 GHz 39.411 dBμV/m 7.432500000 GHz 49.309 dBμV/m Produkte Products www.tuv.com Prüfbericht - Nr.: Test Report No.: ULR-TC568822300000033F Seite 56 von 96 Page 56 of 96 Channel Frequency: 2477.5MHz Polarization: Horizontal Channel Frequency: 1GHz -18GHz Polarization: Horizontal 0 10 20 30 40 50 60 70 80 90 100 110 120 130 2300 2350 2400 2450 2500 2550 2600 Level in dBμV/m Frequency in MHz FCC Part 15C Peak FCC Part 15C AVG 2.477500000 GHz 99.877 dBμV/m 2.477500000 GHz 99.837 dBμV/m 2.426000000 GHz 69.135 dBμV/m 2.401750000 GHz 66.571 dBμV/m 2.480250000 GHz 72.005 dBμV/m 2.483500000 GHz 46.709 dBμV/m 2.483500000 GHz 34.975 dBμV/m 0 10 20 30 40 50 60 70 80 90 100 110 120 12 4 6 8 10 12 14 16 18 Level in dBμV/m Fre…
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DEVARABISANAHALLI VILLAGE · BANGALORE · India
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 53.90 mW |

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