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S5751490045Honeywell Versatilis Transmitter

Honeywell International Inc.
Honeywell Versatilis Transmitter - FCC ID S5751490045 - Honeywell International Inc.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Feb 14, 2023
Application Purpose
Original Equipment
Date of Application
Feb 14, 2023
Equipment Note
Honeywell Versatilis Transmitter
Frequency Range
902.30000000 - 914.90000000
Company
Honeywell International Inc.
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

HoneywellVersatilis TM Transmitter Multi-VariantSensing(MVS) Release100 EquipmentHealthMonitoring(EHM) InstallationandUser'sGuide 34-VT-25-01 November2022 DISCLAIMER ThisdocumentcontainsHoneywellproprietaryinformation. Informationcontainedhereinistobeusedsolelyforthepurpose submitted,andnopartofthisdocumentoritscontentsshallbe reproduced,published,ordisclosedtoathirdpartywithoutthe expresspermissionofHoneywellInternationalInc. Whilethisinformationispresentedingoodfaithandbelievedtobe accurate,Honeywelldisclaimstheimpliedwarrantiesof merchantabilityandfitnessforapurposeandmakesnoexpress warrantiesexceptasmaybestatedinitswrittenagreementwithand foritscustomer. InnoeventisHoneywellliabletoanyoneforanydirect,special,or consequentialdamages.Theinformationandspecificationsinthis documentaresubjecttochangewithoutnotice. Copyright2022-HoneywellInternationalInc. 2 3 CONTENTS Chapter1-Aboutthisguide5 Revisionhistory5 Relateddocuments5 Termsandabbreviations5 Chapter2-Instructionsandsafetymeasures7 Precautions7 Hazardouslocations7 Bestpractices8 Chapter3-HoneywellVersatilisTransmitterOverview10 Keyfeatures10 Illustrationsanddimensions11 Chapter4-Specifications12 Chapter5-SetttinguptheHoneywellVersatilisTransmitter15 Unpackingthecontents15 MountingHoneywellVersatilisTransmitter17 MagneticMounting17 AdhesiveMounting17 ScrewMounting18 Chapter6-Configuration20 InstallationoftheHoneywellVersatilisConnectapp21 ConfigureLoRaGateway24 ConfigureLoRaWAN25 Chapter7-Security27 Securityfeatures27 Physicalsecurity27 Chapter8-Maintenance28 ReplacementofHoneywellVersatilisTransmitter28 Firmwareupdate28 Systemlogs28 Chapter9-Troubleshooting29 Chapter10-Certifications34 Notices42 4 CHAPTER 1 ABOUTTHISGUIDE Thisguideprovidesinformationtoassistyouininstallation, configuration,maintenance,andtroubleshootingscenariosofthe HoneywellVersatilisTransmitter. Revisionhistory RevisionDateDescription ANovember2022TheinitialreleaseofthedocumentforR100. Relateddocuments DocumentNameDocumentNumber HoneywellVersatilisConnectAppUser'sGuide34-VT-25-03 ExperionHSUser'sGuide34-VT-25-05 HoneywellVersatilisTransmitterTechnicalSpecification34-VT-03-01 Termsandabbreviations TermsDefinitions ATEXAppareilsdestinésàêtreutilisésenAtmosphèresExplosives BLEBluetooth®LowEnergy CCoEChiefControllerofExplosives CAPEXCapitalExpenditures iOSiPhoneOperatingSystem IIoTIndustrialInternetofThings 5 TermsDefinitions LoRa"LongRange"RadioCommunicationTechnique LPWA"LowPower,WideArea"networkingprotocol MPSMolecularPropertySpectrometer OPEXOperationalExpenditure 6 Chapter1-Aboutthisguide CHAPTER 2 INSTRUCTIONSANDSAFETYMEASURES Precautions ThefollowingprecautionsmustbeexercisedtousetheHoneywell VersatilisTransmittersafelyandeffectively: nHoneywellwillnotprovideanyguarantee,iftheHoneywell VersatilisTransmitterisdisassembled. nThebatterymaypresentapotentialelectrostaticignitionhazard whendissembled. nImproperusemayleadtobatteryfluidleakage,excessiveheat, ignition,orexplosion. nHoneywellwillnotbeliableforanyhazardthatmightbecaused duetonegligenceinhandlingtheHoneywellVersatilis Transmitter. nCareshouldbetakentoprotectthisHoneywellVersatilis TransmitterfromimpactorabrasioniflocatedinaZone0/ClassI Div1environment. nItistheresponsibilityoftheendusertoverifythattheHoneywell VersatilisTransmitterhasthenecessaryapprovalsrequiredforthe intendedareaofuse. nVerifythattheoperatingenvironmentoftheTransmitteris consistentwiththeappropriatehazardouslocation’scertification. Hazardouslocations HoneywellVersatilisTransmitterisavailablewithIECEx,ATEX,UKCA Ex,NorthAmericaClassIDivI& CCoEapprovals. Formoredetails,seecertificationsandthesameinformationisalso availableinHoneywellVersatilisTransmitterTechnicalSpecification document. 7 Bestpractices Table2-1:Bestpractices-DOs DOs EnsurethereisadequatespacetoaccesstheHoneywell VersatilisTransmitterbeforeselectinganinstallation position. InstalltheHoneywellVersatilisTransmitterverticallyonthe targetmachineforoverallbestperformance. ItisrecommendedtoinstalltheHoneywellVersatilis Transmitterverticallyperpendiculartotherotatingshaft. Payspecialattentionincaseofnecessitytoinstallthe HoneywellVersatilisTransmitterhorizontallyonthetarget machine. Whileusingamagneticmountingadapter,thevibration measurementfrequencybanddrops.Ensurethetarget surfaceisfreefromgreasy,corrosion,abrasion,anduneven surfacessothatthemagneticadapterattachesfirmlytothe target,therebyimprovingthemeasurementoffrequency response. Whileusingamagneticmountingadapter,thesurface temperatureaccuracymayvary,ifthesurfaceisnotclean enough.Ensurethetargetsurfaceisfreefromgreasy, corrosion,abrasion,andunevensurfacessothatthe magneticadapterattachesfirmlytothetarget,thereby improvingtheaccuracyofsurfacetemperature. Ensuretherearenodamages,pigments,dents,or contortiontothesurfaceoftheHoneywellVersatilis Transmitterbase.Anysuchdeformationsorpigmentsmay affectperformanceandmeasurementaccuracy. Performsuitableadjustmentstoalignthex-axis,y-axis,and z-axistothedesiredorientationonthetargetmachine. Disposethetransmitterandbatteryaccordingtolawsand regulations. 8 Chapter2-Instructionsandsafetymeasures 9 DOs Installationinanexplosiveenvironmentmustbeunderthe appropriatelocal,national,andinternationalstandards, codes,andpractices. Table2-2:Bestpractices-DON'Ts DON'Ts DonotremovetheHoneywellVersatilisTransmitter enclosurewithoutwrittenconsentfromHoneywell.The HoneywellVersatilisTransmitterispackagedwithbattery andsensitiveelectronics,thatmaybedamagedwithout propercare.Payattentiontodon’tswhentheHoneywell VersatilisTransmitterenclosureisremoved: lDonotshort-circuit. lDonotdisassembleorchange lDonotexposetoheatorfire. lDonotspillwaterorliquids. Avoidusingbarehandswhileinstallingthemagnetic adapteronthetargetmachine. Chapter2-Instructionsandsafetymeasures CHAPTER 3 HONEYWELLVERSATILISTRANSMITTER OVERVIEW HoneywellVersatilisTransmitterisamulti-variantsensingplatform basedonthelatestLoRaWAN®protocolcommunicationtechnology. It’sinherentlylowpowercompactdesigncoupledwithquickandeasy installationandcommis…

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Attestation Statements

Form: RFT-AMER-TCB-OP-19o Revision: 1 Page 1 of 1 Date: 1/25/2023 Process Solutions Honeywell International Inc. 512 Virginia Drive Fort Washington, Pennsylvania 19034 Attention: Application Examiner Re: Certification designating a U.S. agent for service of process pursuant to 47 CFR part §2.911(d)(7) of the FCC rules To whom it may concern, This letter is to certify that [Honeywell International Inc.] (“Applicant”) accepts responsibilities to act as its own agent pursuant to 47 CFR part §2.911(d)(7) of the FCC rules for service of process. I consent to the obligation to accept service of process on behalf of the applicant in regard to the FCC ID designated below. I HEREBY CERTIFY THAT I am authorized to make the representations above on behalf of the Applicant. I further acknowledge the requirement to maintain an agent extends for no less than one year after the termination of all marketing and importation or the conclusion of and commission-related proceeding involving the equipment and agree to immediately notify the FCC if there is any change in the status identified above. Applicant Company Name : Honeywell International Inc. Contact Name : Richard Allen Address : 512 Virginia Drive, Fort Washinton, Pennsylvania, 19034, United States. Telephone No : 215-641-3189 Email : [email protected] FCC ID : S5751490045 Signature: ____________ Date: _10 FEB 2023______________

Cover Letter(s)

Process Solutions Honeywell International Inc. 512 Virginia Drive Fort Washington, Pennsylvania 19034 I, an officer of Honeywell International Inc. do hereby authorize Intertek Testing Services (Mr. Tim Lee / Herbert Wong / Kenneth Wong) to act on our behalf in front of the Federal Communications Commission with respect to all matters relating to certification of equipment under Part 15 and Part 18 of the FCC Rules until further notice." I further certify that no party (as defined in §1.2002(b) of CFR 47, 2004) to this application, including myself, is subject to a 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. Dated this _22_ day of September 2022 Signature: Printed Name: Richard Allen Title: Lead Certification Engineer

Cover Letter(s)

Process Solutions Honeywell International Inc. 512 Virginia Drive Fort Washington, Pennsylvania 19034 22 September 2022 Attention: Application Examiner RE: Request for Confidentiality Applicant: Honeywell International Inc. FCC ID: S5751490045 To Whom It May Concern: Permanent Confidentiality Request is hereby submitted by Honeywell International Inc. to withhold permanently from public review certain portions of the application for equipment certification for the referenced FCC identifiers. This request for confidentiality is made pursuant to 47 CFR 0.457(d) and 0.459 of the FCC Rules. In particular, the following sections of the application are to be kept permanently confidential:  Schematics  Detailed Block Diagrams  Detailed Operational/Functional Description Honeywell International Inc. has invested considerable time and materials in research and development to produce the referenced product. Disclosure of the permanently confidential portions of this application to competitors would not only give them significant competitive advantages in developing similar products, but would also disclose successful implementation of unpublished, leading-edge technology developed by us. If you have questions or need further information, please contact the undersigned. Sincerely, Richard Allen Lead Certification Engineer Honeywell International Inc.

External Photos

INTERTEK TESTING SERVICE Report No.: HK22070851 Equipment Photographs (External) =

Internal Photos

INTERTEK TESTING SERVICE Report No.: HK22070851 Equipment Photographs (Internal) INTERTEK TESTING SERVICE Report No.: HK22070851 Equipment Photographs (Internal) INTERTEK TESTING SERVICE Report No.: HK22070851 Equipment Photographs (Internal) INTERTEK TESTING SERVICE Report No.: HK22070851 Equipment Photographs (Internal) INTERTEK TESTING SERVICE Report No.: HK22070851 Equipment Photographs (Internal)

RF Exposure Info

INTERTEK TESTING SERVICE FCC ID: S5751490045 IC: 573W-51490045 MPE Analysis Report For Maximum Permissible Exposure (MPE) evaluation of the unit, the maximum power density at 20 cm from this transmitter shall be less than the General Population / Uncontrolled MPE limit in OET Bulletin 65 and meet the requirement listed in KDB447498. 1) For the Bluetooth portion of the unit, the measured powers among all the measured channels were within its production tolerance. The antenna gain is 0.286 dBi = 1.068 (num gain) and its maximum source-based time-averaging duty factor is 100%. From these data and its operating configuration, the exposed power density at a distance (R) of 20 cm from the center of radiation of the antenna can be calculated according to OET Bulletin 65 as follow: The EIRP radiated power = 3.48 mW * 1.068 = 3.72 mW The radiated (EIRP) source-based time-averaging output power = (3.72 * 1) mW = 3.72 mW The power density at 20 cm = 3.72 / 4πR 2 = 0.00074 mW cm -2 2) For the 900MHz portion of the unit, the measured powers among all the measured channels were within its production tolerance. The antenna gain is 6.4 dBi = 4.37 (num gain) and its maximum source-based time-averaging duty factor is 100%. From these data and its operating configuration, the exposed power density at a distance (R) of 20 cm from the center of radiation of the antenna can be calculated according to OET Bulletin 65 as follow: The EIRP radiated power = 20 dBm + 6.4dBi = 26.4 dBm (436.5 mW) The radiated (EIRP) source-based time-averaging output power = (436.5 * 1) mW = 436.5 mW The power density at 20 cm = 436.5 / 4πR 2 = 0.087 mW cm -2 In the frequency range of 1,500 - 100,000MHz, the MPE limit is 1.0 mWcm-2 for general population and uncontrolled exposure. As the measured power density at 20cm from the transmitter is lower than the MPE limit, the compliance to the MPE limit can be ensured by indicating the minimum 20cm separation between the transmitter's radiating structures and body of the user or nearby persons. The following RF exposure statement is proposed to be included in the user manual: “ FCC RF Radiation Exposure Statement Caution: To maintain compliance with the FCC’s RF exposure guidelines, place the unit at least 20cm from nearby persons.” INTERTEK TESTING SERVICE FCC ID: S5751490045 IC: 573W-51490045 In addition, for this product with multiple transmitter and antenna (Bluetooth and WiFi), the requirement of Simultaneous Transmission evaluation has also been considered and has complied with the following conditions of the worse case; MPE1/Limit1 + MPE2/Limit2 ≤ 1 Thus, 0.00074/1 + 0.087/1 = 0.08774 ≤ 1 Bluetooth 900MHz It is concluded that no Simultaneous Transmission evaluation is required.

Test Report

TEST REPORT Honeywell International Inc. Intertek Report No: 22070851HKG-001 Issuing Laboratory: Intertek Testing Services Hong Kong Limited HKAS has accredited this laboratory (Reg. No. HOKLAS 005) under HOKLAS for specific laboratory activities as listed in the HOKLAS directory of accredited laboratories. Page 2 of 62 GENERAL INFORMATION Grantee: Honeywell International Inc. Grantee Address: 512 Virginia Drive, Fort Washinton, Pennsylvania, 19034, United States. Manufacturer Name: Honeywell Technology Solutions Lab PVT Ltd. Manufacturer Address: 19/2 Devarabisanahalli Village, Varthur Hobli, Bangalote East Taluk, Banalore, India (Republic Of) FCC Specification Standard: FCC Part 15, October 1, 2021 Edition FCC ID: S5751490045 FCC Model(s): 51490045 Type of EUT: DTS/Hybrid System Description of EUT: Honeywell Versatilis Transmitter (902-928MHz Transceiver) Serial Number: A41 Sample Receipt Date: July 15, 2022 Date of Test: July 15, 2022 to September 16, 2022 Report Date: September 27, 2022 Environmental Conditions: Temperature: +10 to 40°C Humidity: 10 to 90% Conclusion: Test was conducted by client submitted sample. The submitted sample as received complied with the 47 CFR Part 15 Certification. TEST REPORT Honeywell International Inc. Intertek Report No: 22070851HKG-001 Issuing Laboratory: Intertek Testing Services Hong Kong Limited HKAS has accredited this laboratory (Reg. No. HOKLAS 005) under HOKLAS for specific laboratory activities as listed in the HOKLAS directory of accredited laboratories. Page 3 of 62 TABLE OF CONTENTS EXHIBIT 1 TEST RESULTS SUMMARY & STATEMENT OF COMPLIANCE ................................ 4 1.1 Summary of Test Results ........................................................................................... 4 1.2 Statement of Compliance ......................................................................................... 4 EXHIBIT 2 GENERAL DESCRIPTION ..................................................................................... 5 2.1 Product Description .................................................................................................. 5 2.2 Test Methodology ..................................................................................................... 5 2.3 Test Facility ................................................................................................................ 5 2.4 Related Submittal(s) Grants ...................................................................................... 5 EXHIBIT 3 SYSTEM TEST CONFIGURATION ......................................................................... 6 3.1 Justification ............................................................................................................... 6 3.2 EUT Exercising Software............................................................................................ 7 3.3 Details of EUT and Description of Accessories ......................................................... 7 3.4 Measurement Uncertainty........................................................................................ 7 EXHIBIT 4 TEST RESULTS .................................................................................................... 8 4.1 Maximum Conducted (Peak) Output Power at Antenna Terminals ......................... 8 4.2 Minimum 6dB RF Bandwidth and Occupied Bandwidth ........................................ 13 4.3 Minimum Power Spectral Density .......................................................................... 20 4.4 Hopping Channel 20dB RF Bandwidth .................................................................... 29 4.5 Minimum Number of Hopping Frequencies ........................................................... 32 4.6 Minimum Hopping Channel Carrier Frequency Separation ................................... 34 4.7 Average Channel Occupancy Time ......................................................................... 36 4.8 Out of Band Conducted Emissions .......................................................................... 39 4.9 Radiated Emission Test Setup ................................................................................. 49 4.10 Field Strength Calculation ....................................................................................... 50 4.11 Transmitter Radiated Emissions in Restricted Bands and Spurious Emissions ...... 51 4.12 AC Power Line Conducted Emission ....................................................................... 59 EXHIBIT 5 EQUIPMENT LIST ............................................................................................. 60 TEST REPORT Honeywell International Inc. Intertek Report No: 22070851HKG-001 Issuing Laboratory: Intertek Testing Services Hong Kong Limited HKAS has accredited this laboratory (Reg. No. HOKLAS 005) under HOKLAS for specific laboratory activities as listed in the HOKLAS directory of accredited laboratories. Page 4 of 62 EXHIBIT 1 TEST RESULTS SUMMARY & STATEMENT OF COMPLIANCE 1.1 Summary of Test Results Test Items FCC Part 15 Section RSS-210/ RSS-Gen # Results Details See Section Antenna Requirement 15.203 7.1.2# Pass 2.1 Maximum Conducted Output Power at Antenna Terminals 15.247(b)(3)&(4) 5.4(4) Pass 4.1 Minimum 6dB RF Bandwidth 15.247(a)(2) 5.2(1) Pass 4.2 99% Occupied Bandwidth -- 4.6.1# Pass 4.2 Maximum Power Spectral Density Reading 15.247(e) 5.2(2) Pass 4.3 Minimum Number of Hopping Frequencies 15.247(a)(1)(iii) 5.1(4) Pass 4.3 Minimum Hopping Channel Carrier Frequency Separation 15.247(a)(1) 5.1(2) Pass 4.4 Average Channel Occupancy Time 15.247(a)(1)(iii) 5.1(4) Pass 4.5 Out of Band Conducted Emission 15.247(d) 5.5 Pass 4.4 Radiated Emission in Restricted Bands and Spurious Emissions 15.247(d), 15.209 & 15.109 5.5 Pass 4.7 Note: Pursuant to FCC Part 15 Section 15.215(c), the 20dB bandwidth of the emission was contained within the frequency band designated (mentioned as above) which the EUT operated. The effects, if any, from frequency s…

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Test Report

Datasheet ANT-916-HESM ANT-916-HETH HE Series 916 MHz Helical Antenna Features • Performance at 916 MHz ―VSWR: ≤ 1.5 ―Peak Gain: 6.4 dBi ―Efficiency: 75% • Direct PCB attachment • Reflow- or hand-solder assembly • Omnidirectional radiation pattern • Compact size ―25.4 mm x 15.3 mm x 8.9 mm Linx 916 MHz HE series compact printed circuit board (PCB) mount helical monopole antennas support low-power, wide-area (LPWA) applications including LoRaWAN ® , remote controls, and ISM band applications in the 902 MHz to 930 MHz range. The HE series antennas are made from 1.3 mm diameter berylium copper for use in PCB-mount installations requiring a rugged antenna design. Designed for reflow-solder mounting directly to a printed circuit board for high-volume applications, the 916-HESM offers a surface-mount design and the 916-HETH is for use in a through-hole installation. Ordering Information Part NumberDescription ANT-916-HESM 916 MHz helical surface-mount antenna ANT-916-HETH 916 MHz helical through-hole antenna Available from Linx Technologies and select distributors and representatives. Applications • Low-power, wide-area (LPWA) applications ―LoRaWAN ® • Remote sensing, monitoring and control ―Security systems ―Industrial machinery ―Automated equipment ―AMR (automated meter reading) • Internet of Things (IoT) devices • Smart Home networking • Hand-held devices 2 DatasheetANT-916-HE Series Table 1. Electrical Specifications ANT-916-HExx916 MHz Frequency Range 902 MHz to 930 MHz VSWR (max) 1.5 Peak Gain (dBi) 6.4 Average Gain (dBi) -1.4 Efficiency (%) 75 Polarization Linear Radiation Omnidirectional Max Power 15 W Wavelength 1/4-wave Electrical Type Monopole Impedance 50 Ω ESD Sensitivity NOT ESD sensitive. As a best practice, Linx may use ESD packaging. Electrical specifications and plots measured with a 84.0 mm x 38.0 mm (3.31 in x 1.50 in) reference ground plane. Table 2. Mechanical Specifications ANT-916-HExx Connection ANT-916-HESM = surface-mount, ANT-916-HETH = through-hole Operating Temperature Range -40 °C to +85 °C Weight 1.0 g (0.04 oz) Dimensions 25.4 mm x 15.3 mm x 8.9 (1.00 in x 0.60 in x 0.35 in) Product Dimensions Figure 1 provides dimensions of the 916-HESM antenna. The dimensions of the 916-HETH antenna are shown in Figure 2. 38.1 mm (1.50 in) 315 1.3mm 0.05in 15.3mm 0.60in 8.9mm 0.35in Ø1.3 mm (0.05 in) 15.3 mm (0.60 in) Ø8.9 mm (0.35 in) Ø1.3 mm (0.05 in) 15.3 mm (0.60 in) Ø8.9 mm (0.35 in) Ø1.3 mm (0.05 in) 15.3 mm (0.60 in) Ø8.9 mm (0.35 in) 25.4 mm (1.00 in) 868/ 916 38.1 mm (1.50 in) 433 38.1 mm (1.50 in) 418 HESM Series Figure 1. 916-HESM Antenna Dimensions 38.1 mm (1.50 in) 315 Ø1.3 mm (0.05 in) 15.3 mm (0.60 in) Ø8.9 mm (0.35 in) Ø1.3 mm (0.05 in) 15.3 mm (0.60 in) Ø8.9 mm (0.35 in) 38.1 mm (1.50 in) 418 Ø1.3 mm (0.05 in) 15.3 mm (0.60 in) Ø8.9 mm (0.35 in) 38.1 mm (1.50 in) 433 Ø1.3 mm (0.05 in) 15.3 mm (0.60 in) Ø8.9 mm (0.35 in) 25.4 mm (1.00 in) 868/ 916 HETH Series Figure 2. 916-HETH Antenna Dimensions Packaging Information The HE series antennas are packed in a clear plastic PVC bag, labeled with model number and quantity. Distribution channels may offer alternative packaging options. 3 DatasheetANT-916-HE Series VSWR Figure 3 provides the voltage standing wave ratio (VSWR) across the antenna bandwidth. VSWR describes the power reflected from the antenna back to the radio. A lower VSWR value indicates better antenna performance at a given frequency. Reflected power is also shown on the right-side vertical axis as a gauge of the percentage of transmitter power reflected back from the antenna. 902930 0 10 20 30 40 1 2 3 4 5 900905910915920925930935 Reflected Power (%) VSWR Frequency (MHz) Figure 3. ANT-916-HE Series VSWR Return Loss Return loss (Figure 4), represents the loss in power at the antenna due to reflected signals. Like VSWR, a lower return loss value indicates better antenna performance at a given frequency. 902930 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 900905910915920925930935 Return Loss (dB) Frequency (MHz) Figure 4. ANT-916-HE Series Return Loss 4 DatasheetANT-916-HE Series Peak Gain The peak gain across the antenna bandwidth is shown in Figure 5. Peak gain represents the maximum antenna input power concentration across 3-dimensional space, and therefore peak performance at a given frequency, but does not consider any directionality in the gain pattern. 902930 -20 -15 -10 -5 0 5 10 900905910915920925930935 Peak Gain (dBi) Frequency (MHz) Figure 5. ANT-916-HE Series Peak Gain Average Gain Average gain (Figure 6), is the average of all antenna gain in 3-dimensional space at each frequency, providing an indication of overall performance without expressing antenna directionality. 902930 -20 -15 -10 -5 0 5 10 900905910915920925930935 Average Gain (dBi) Frequency (MHz) Figure 6. ANT-916-HE Series Antenna Average Gain 5 DatasheetANT-916-HE Series Radiation Efficiency Radiation efficiency (Figure 7), shows the ratio of power delivered to the antenna relative to the power radiated at the antenna, expressed as a percentage, where a higher percentage indicates better performance at a given frequency. 902930 0 10 20 30 40 50 60 70 80 90 100 900905910915920925930935 Efficiency (%) Frequency (MHz) Figure 7. ANT-916-HE Series Antenna Radiation Efficiency 6 DatasheetANT-916-HE Series Radiation Patterns Radiation patterns provide information about the directionality and 3-dimensional gain performance of the antenna by plotting gain at specific frequencies in three orthogonal planes. Antenna radiation patterns for an edge straight orientation are shown in Figure 8 using polar plots covering 360 degrees. The antenna graphic at the top of the page provides reference to the plane of the column of plots below it. Note: when viewed with typical PDF viewing software, zooming into radiation patterns is possible to reveal fine detail. XZ-Plane GainYZ-Plane GainXY-Plane Gain 902 MHz to 930 MHz (915 MHz) -50 -45 -40 -35 -30 -25 -20 -15 -10 -5 0 5 1 2 3 4 5 6 7 8 9 10 11 12 13 14 1…

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Test Setup Photos

INTERTEK TESTING SERVICE Report No: HK22070851 Configuration Photographs Worst-Case Radiated Emissions (Front View) INTERTEK TESTING SERVICE Report No: HK22070851 Configuration Photographs Worst-Case Radiated Emissions (Rear View)

Contact Information

Applicant

Richard Allen(Regulatory Compliance)
[email protected]215-641-3189Fax: 215-641-4447

Technical Contact

Intertek Testing Services Hong Kong Ltd.Kenneth Wong
[email protected](852) 2173 8888

2/F., Garment Centre, ¡ Hong Kong

Non-Technical Contact

Intertek Testing Services Hong Kong Ltd.Kenneth Wong
[email protected](852) 2173 8888

Test Firm

Intertek Testing Services Hong Kong Ltd.Billy Chow
[email protected]85221738528Fax: 85227410521

Technical Specifications

#Rule PartsFrequency RangePower Output
115C902.3 MHz - 914.9 MHz42.50 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. This device must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. End-users must be informed of the operating requirements for satisfying RF exposure compliance.

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