
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
English version v1.2 June 2024 Play User Manual www.kelvinlight.com Play / Play Pro User Manual English English version v1.2 June 2024 Play User Manual www.kelvinlight.com Table of Contents 1. Introduction ........................................................................................................................................... 3 2. Precautions (Important for your safety) ........................................................................................... 4 3. Description ............................................................................................................................................ 5 4. In the box ............................................................................................................................................... 7 5. Warnings and indicators..................................................................................................................... 9 6. Operation .............................................................................................................................................. 11 7. Firmware updates ............................................................................................................................. 20 8. Battery .................................................................................................................................................. 21 9. IP protection ........................................................................................................................................ 21 10. 3 Years Keep Rolling Warranty ...................................................................................................... 22 11. Trademarks ........................................................................................................................................ 24 12. Specifications .................................................................................................................................... 25 13. FCC Compliance Statement .......................................................................................................... 26 14. IC Compliance Statement ................................................................................................................ 27 15. Materials statement ......................................................................................................................... 28 Play / Play Pro User Manual 3 www.kelvinlight.com 1. Introduction The Kelvin Play, an RGBACL LED Panel by Rift Labs, offers a full color spectrum for film industry professionals. Its advanced lighting technology ensures high accuracy and quality across the entire spectrum, enhancing predictability and consistency for creative projects. Focused on superior user experience, both in digital and physical interactions, it exceeds market standards. Durable and robust, it's built to endure the demands of on-set use and more. 1.1. Features The Kelvin Play offers eco-friendly lighting for professionals, featuring LED lamps for efficient power use and high light output. Its casing is mostly composed of recyclable materials, enhancing its sustainability. The product's lasting quality further reduces its environmental impact. Efficient and sustainable practices in manufacturing, logistics, and packaging make this high-performance product, made in Norway, a greener choice. 1.2. Properties The Cantastoria Light Engine in the Kelvin Play ensures consistent, precise lighting across the full spectrum, with 0.01% accuracy in light intensity. Its superior build quality meets and exceeds industry standards, offering durability, sturdiness, and compactness. The design's strength lies in its materials and construction, and its form is not only aesthetically pleasing but also functional, allowing versatile storage without compromising the delicate internal electronics. The Kelvin Play surpasses expectations in its category, aiming to raise the bar in industrial design and attention to detail in film lighting. Its design embodies Kelvin's core values: precision, robustness, usability, and accessibility. 1.3. Idea For creators, cinematographers, photographers, studios, and filmmakers, lighting is crucial in setting a scene's ambiance, transforming a good story into exceptional visual storytelling. Recognizing this, the Kelvin Play is not just about high-quality light but also emphasizes smooth usability for on-set efficiency. It features an intuitive app, Kelvin Narrator, compatible with iOS and Android, allowing users to control the light via Bluetooth, alongside its touchscreen and buttons. This enables seamless integration of a full lighting kit, controllable via smartphone or the light units themselves. Additionally, the Kelvin Play's design and engineering specifically address reliability and power efficiency, key considerations for professionals in the field. 1.4. Form Electronics and lamps, delicate in nature, benefit from strong casing to protect against damage from drops, tough usage, and exposure to adverse weather conditions. The Kelvin Play's design communicates the essence of a high-tech, precision instrument, while being robust, reliable, and practical. Its inherent simplicity also represents the efficiency of modular production and smart logistics, alongside its recyclability. The prevalent use of aluminum in its construction offers a sturdy yet recyclable build, ensuring long-lasting protection for its sensitive electronics inside. 1.5. Function The light may be controlled remotely from the Bluetooth, Kelvin Narrator App for iOS/Android, Lumen Radio/Wireless DMX (Play Pro). The light unit can thus be fixed remotely and in out of reach positions. The front of the lamp has magnetic mounts for various accessories that modify the light. Play / Play Pro User Manual 4 www.kelvinlight.com 2. Precautions (Important for your safety) The light fixture is used for professional lighting. The lightin…
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FederalCommunicationsCommission AuthorizationandEvaluationDivision EquipmentAuthorizationBranch 7435OaklandMillsRoad Columbia,MD - - 21046 6/26/24 U.S.AgentDesignation NameandcompanyofU.S.agent:LinkwldLLC PhysicalU.S.addressofagent:1942BroadwaySt.STE314C,Boulder,CO,80302,US FRNofU.S.agent:0033625682 EmailaddressofU.S. [Rift Labs AS]acknowledges their consent for the following contact located in the United States to act as their agent for service of process for the equipment for which authorization is sought (FCC ID:[2BG3G-KPLAYPRO]): agent:[email protected] Bysigningthisform,weconfirmtheaboveandthatweareawareoftheapplicationrequirementslistedunder§ [Rift Labs AS]with the FRN[0035557727]accepts its 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 [Linkwld LLC]acknowledges their obligation to accept service of process on behalf of[Rift Labs AS]. administrative or judicial proceeding involving the equipment, whichever is later. 2.911(d)(7). TheinformationprovidedinthisletterisbasedonthereferencedrulepartsofTitle47oftheCFRaswellasKDB 986446D01. Anexpirationdateforthisletterdoesnotexist.IncasetheU.S.agentchanges,thegranteeisobligatedtonotify theFCCwithin30daysviathegrantingTCB. Sincerely, Signature [Name]Mr Morten Hjerde [Title]CIO [Company]Rift Labs AS Signature [NameofU.S.agent]TimothyZhu [TitleofU.S.agent]Manager [CompanyofU.S.agent]LinkwldLLC 48_[model] US_Agent_2.911(d)(7)-U, V05
C5266091_X24_Ed.2 1/1 “Attestation Statements” TO: Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 The Commission adopted rules that prohibit equipment authorization for “covered” telecommunications equipment and video surveillance equipment produced by entities identified on the Commission’s Covered List 1 , which is periodically updated. See the Covered List for more details. This Attestation Statement is to confirm that we follow the Section 2.911(d)(5)(i)-(ii) Applicant Company name: Rift Labs AS Grantee code: 2BG3G FRN: 0035557727 FCC ID: 2BG3G-KPLAYPRO Contact Name: Morten Hjerde Address: Sjoskogenveien 5, 1407 Vinterbro, Norway Telephone No: 90061037 Fax No: / Email: [email protected] i. Rift Labs AS (“the applicant”) certifies that the equipment for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. The applicant must sign this certification. ii. Rift Labs AS (“the applicant”) certifies that, as of the date of the filing of the application, the applicant is not (as a specifically named entity or any of its subsidiaries or affiliates) identified on the Covered List as an entity producing “covered” equipment. The applicant must sign this certification. Rift Labs AS certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List as an entity producing “covered” equipment. Date: 2024/07/04 Applicant’s Name: Morten Hjerde Title: CIO Signature 1 The Commission’s Covered List is published by the Public Safety and Homeland Security Bureau and posted on the Commission’s website. This Covered List, which is periodically updated, identifies particular equipment, produced by particular entities, that constitutes “covered” equipment. https://www.fcc.gov/supplychain/coveredlist
C5266091_X8_Ed.1 1/1 Letter of Authorization RNG International Inc. Company: Rift Labs AS Address: Sjoskogenveien 5, 1407 Vinterbro, Norway Product Name: Kelvin Play Pro Model Number: K-PLAY-PRO FCC Identifier: 2BG3G-KPLAYPRO We authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bellaterra, Spain, to act on our behalf on all matters concerning the above named equipment. Any individual within LGAI Technological Center S.A. is authorized to act on our behalf and take action on the application. We declare that authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bellaterra, Spain, is allowed to forward all information related to the approval project to the Federal Communication Commission and to discuss any issues concerning the approval application. Any and all acts carried out by LGAI Technological Center S.A. on our behalf shall have the same effect as acts of our own. Name: Morten Hjerde Date: 2024.07.04 Title: CIO Signature of applicant:
C5266091_X10_Ed.2 1/1 RiftLabsAS OfficeofEngineeringTechnology FederalCommunicationsCommission 7435OaklandMillsRoad Columbia,MD21046 Date:2024-07-05 Subject:RequestforConfidentiality FCCID: 2BG3G-KPLAYPRO ToWhomItMayConcern, PursuanttotheprovisionsofSections0.457and0.459ofCommission'srules (47CFR0.457,0.459),wearerequestingtheCommissiontowithholdthefollowing attachment(s)asconfidentialdocumentfrompublicdisclosure. ExhibitsLong-TermConfidentialityShort-TermConfidentiality NOTE2 IDLabel/LocationNoNo AttestationStatementNoNo ExternalPhotosNo ☒ BlockDiagram ☒☐ Schematics ☒☐ TestReportNoNo TestSetupPhotosNo ☒ User’sManual ☐ NOTE 1 ☒ InternalPhotos ☐ NOTE 1 ☒ PartsList/TuneUp ☐☐ RFExposureInfoNoNo OperationalDescription ☒☐ CoverLetter(s)NoNo SDRSoftware/SecurityInfo ☐ No NOTE1:Long-TermConfidentialitymaybepermittedunderspecialconditions(SeeII.LONG-TERMCONFIDENTIALITY,Section3of KDB726920,uselastinforce) NOTE2:Short-TermConfidentialitycanberequestedforamaximumof180daysfromthedateofthegrant. Abovementioneddocumentcontainsdetailedsystemandequipmentdescriptionare consideredasproprietaryinformationinoperationoftheequipment.Thepublic disclosureofabovedocumentsmightbeharmfultoourcompanyandwouldgive competitoranunfairadvantageinthemarket. Incaseofshort-termConfidentiality,theapplicantrequeststheexhibitsselected abovearewithheldfrompublicviewforaperiodof180daysfromthedateofthe GrantofEquipmentAuthorizationandpriortomarketing. Itisourunderstandingthatallmeasurementtestreports,FCCIDlabelformatand correspondentduringcertificationreviewprocesscannotbegrantedasconfidential documentsandthoseinformationwillbeavailableforpublicreviewoncethegrantof equipmentauthorizationisissued. Sincerely, Signature: Name:MortenHjerde Title:CIO 2024.07.05
ProjectNo.:182518C4000221Page 1 of 4 AppendixII--ExternalPhotograph ProjectNo.:182518C4000221Page 2 of 4 ProjectNo.:182518C4000221Page 3 of 4 ProjectNo.:182518C4000221Page 4 of 4
LabelLocationOnEUT Label
ProjectNo.:182518C4000221Page 1 of 7 AppendixIII--InternalPhotograph ProjectNo.:182518C4000221Page 2 of 7 ProjectNo.:182518C4000221Page 3 of 7 ProjectNo.:182518C4000221Page 4 of 7 ProjectNo.:182518C4000221Page 5 of 7 2.4G-ANTBLE-ANT:: ProjectNo.:182518C4000221Page 6 of 7 ProjectNo.:182518C4000221Page 7 of 7
MAXIMUMPERMISSIBLEEXPOSURE KDB447498D01MobileandPortableDevicesRFExposureProceduresand EquipmentAuthorizationPoliciesv06. AccordingtoFCC1.1310:Thecriterialistedinthefollowingtableshallbeused toevaluatetheenvironmentimpactofhumanexposuretoradiofrequency(RF) Radiationasspecifiedin§1.1307(b) EUTSpecification FCCID2BG3G-KPLAYPRO EUTKelvinPlayPro Frequencyband(Operating) BLE:2.402GHz~2.480GHz WLAN:2.412GHz~2.462GHz RLAN:5.180GHz~5.240GHz RLAN:5.260GHz~5.320GHz RLAN:5.500GHz~5.700GHz RLAN:5.745GHz~5.825GHz Others: SRD2.4G:2.402GHz~2.480GHz DevicecategoryPortable(<20cmseparation) Mobile(>20cmseparation) Others___ ExposureclassificationOccupational/Controlledexposure GeneralPopulation/Uncontrolledexposure AntennadiversitySingleantenna Multipleantennas Txdiversity Rxdiversity Tx/Rxdiversity Antennagain(Max)BLEANT:2.5dBi SRD2.4GANT:2.5dBi EvaluationappliedMPEEvaluation SAREvaluation LimitsforMaximumPermissibleExposure(MPE) Frequency Range(MHz) ElectricField Strength(V/m) MagneticField Strength(A/m) Power Density(mW/cm 2 ) AverageTime (A)LimitsforOccupational/ControlExposures 300-1500----F/3006 1500-100000----56 (B)LimitsforGeneralPopulation/UncontrolExposures 300-1500----F/150030 1500-100000----130 Friistransmissionformula:Pd=(Pout*G)\(4*pi*R2) Where Pd=PowerdensityinmW/cm 2 Pout=outputpowertoantennainMw G=gainofantennainlinearscale Pi=3.1416 R=distancebetweenobservationpointandcenteroftheradiatorincm PdthelimitofMPE.Ifweknowthemaximumgainoftheantennaandtotalpowerinputto theantenna,throughthecalculation,wewillknowthedistancewheretheMPElimitis reached. MeasurementResult OperatingMode Maximum output power (dBm) Tuneup tolerance (dBm) Max.Tuneup Power (dBm) Antenna Gain (dBi) Power densityat 20cm (mW/cm 2 ) Power density Limits (mW/cm 2 ) BLE-0.32-0.32±10.682.50.00041 SRD2.4G0.980.98±11.982.50.00061 TheMaximumsimultaneoustransmissionforBLE+SRD2.4G: =SBLEANT/Slimit-2.4+SSRD2.4GANT/Slimit-2.4 =0.0004/1+0.0006/1 =0.001 <1.0 Result:NoStandaloneSARtestisrequired.
ReportNo.:182518C400022102FCCID:2BG3G-KPLAYPROPage1of32 Code:AB-RF-05-b FCCTestReport Applicant:RiftLabsAS Address:Sjoskogenveien5,1407Vinterbro,Norway ProductName:KelvinPlayPro ReportDate:Jul.05,2024 ShenzhenAnbotekComplianceLaboratoryLimited ReportNo.:182518C400022102FCCID:2BG3G-KPLAYPROPage2of32 Code:AB-RF-05-b Contents 1.GeneralInformation ............................................................................................................................................6 1.1.ClientInformation .....................................................................................................................................6 1.2.DescriptionofDevice(EUT) ..................................................................................................................6 1.3.AuxiliaryEquipmentUsedDuringTest .................................................................................................7 1.4.DescriptionofTestConfiguration ..........................................................................................................7 1.5.DescriptionOfTestSetup .......................................................................................................................8 1.6.TestEquipmentList .................................................................................................................................9 1.7.MeasurementUncertainty ....................................................................................................................10 1.8.DescriptionofTestFacility ....................................................................................................................10 1.9.Disclaimer ................................................................................................................................................11 2.SummaryofTestResults .................................................................................................................................12 3.ConductedEmissionTest ................................................................................................................................13 3.1.TestStandardandLimit ........................................................................................................................13 3.2.TestSetup ...............................................................................................................................................13 3.3.TestProcedure .......................................................................................................................................13 3.4.TestData .................................................................................................................................................13 4.RadiationSpuriousEmissionandBandEdgeTest .....................................................................................16 4.1.TestStandardandLimit ........................................................................................................................16 4.2.TestSetup ...............................................................................................................................................16 4.3.TestProcedure .......................................................................................................................................17 4.4.TestData .................................................................................................................................................18 5.MaximumConductedOutputPowerTest .....................................................................................................25 5.1.TestStandardandLimit ........................................................................................................................25 5.2.TestSetup ...............................................................................................................................................25 5.3.TestProcedure .......................................................................................................................................25 5.4.TestData .................................................................................................................................................25 6.20dBBandwidthand99%OccupiedBandwidthTest .................................................................................26 6.1.TestStandard ..........................................................................................................................................26 6.2.TestSetup ...............................................................................................................................................26 6.3.TestProcedure .......................................................................................................................................26 6.4.TestData .................................................................................................................................................26 7.CarrierFrequencySeparationTest ................................................................................................................27 7.1.TestStandardandLimit ........................................................................................................................27 7.2.TestSetup ...............................................................................................................................................27 7.3.TestProcedure .......................................................................................................................................27 7.4.TestData .................................................................................................................................................27 8.NumberofHoppingChannelTest ..................................................................................................................28 ReportNo.:182518C400022102FCCID:2BG3G-…
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Page 1 of 20 AppendixTestData ReportNo:182518C400022102TestSampleNO:1-2-2 StartTestDate:2024.6.24FinishTestDate:2024.6.25 TestEngineer:Auditor: Temperature:25.3 °C RelativeHumidity:45% Pressure:101kPa AppendixA:20dBEmissionBandwidth TestResult TestModeAntennaFrequency[MHz] 20db EBW[MHz] FL[MHz]FH[MHz]Limit[MHz]Verdict 2.4GAnt124020.872401.542402.41------ 2.4GAnt124410.872440.542441.41------ 2.4GAnt124800.872479.542480.41------ Page 2 of 20 TestGraphs 2.4G-Ant1-2402 2.4G-Ant1-2441 Page 3 of 20 2.4G-Ant1-2480 Page 4 of 20 AppendixB:OccupiedChannelBandwidth TestResult TestModeAntennaFrequency[MHz] OCB[MHz] FL[MHz]FH[MHz]Limit[MHz]Verdict 2.4GAnt124020.7742401.61042402.3846------ 2.4GAnt124410.7642440.61542441.3796------ 2.4GAnt124800.7592479.61042480.3696------ Page 5 of 20 TestGraphs 2.4G-Ant1-2402 2.4G-Ant1-2441 Page 6 of 20 2.4G-Ant1-2480 Page 7 of 20 AppendixC:Maximumconductedoutputpower TestResultPeak Test Mode AntennaFrequency[MHz] ConductedPeak Power[dBm] Conducted Limit[dBm] Verdict 2.4GAnt124020.32≤30PASS 2.4GAnt124410.50≤30PASS 2.4GAnt124800.98≤30PASS TestGraphs 2.4G-Ant1-2402-PASS 2.4G-Ant1-2441-PASS Page 8 of 20 2.4G-Ant1-2480-PASS Page 9 of 20 AppendixD:Carrierfrequencyseparation TestResult TestModeAntennaFrequency[MHz]Result[MHz]Limit[MHz]Verdict 2.4GAnt1Hop1≥0.58PASS TestGraphs 2.4G-Ant1-Hop-PASS Page 10 of 20 AppendixE:Timeofoccupancy TestResult TestModeAntennaFrequency[MHz] BurstWidth [ms] TotalHops [Num] Result[s]Limit[s]Verdict 2.4GAnt1Hop2.8781210.348≤0.4PASS TestGraphs 2.4G-Ant1-Hop Page 11 of 20 AppendixF:Numberofhoppingchannels TestResult TestModeAntennaFrequency[MHz]Result[Num]Limit[Num]Verdict 2.4GAnt1Hop79≥15PASS TestGraphs 2.4G-Ant1-Hop-PASS Page 12 of 20 AppendixG:Bandedgemeasurements TestResult TestModeAntennaChNameFrequency[MHz] RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 2.4GAnt1Low2402-0.38-46.56≤-20.38PASS 2.4GAnt1High24800.44-45.06≤-19.56PASS 2.4GAnt1LowHop_2402-0.64-47.3≤-20.64PASS 2.4GAnt1HighHop_24800.45-46.18≤-19.55PASS Page 13 of 20 TestGraphs 2.4G-Ant1-2402-PASS 2.4G-Ant1-2480-PASS Page 14 of 20 2.4G-Ant1-Hop_2402-PASS 2.4G-Ant1-Hop_2480-PASS Page 15 of 20 AppendixH:ConductedSpuriousEmission TestResult TestModeAntennaFrequency[MHz] FreqRange [MHz] RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 2.4GAnt124020~Reference-0.20-0.20---PASS 2.4GAnt1240230~1000-0.20-58.61≤-20.2PASS 2.4GAnt124021000~26500-0.20-50.49≤-20.2PASS 2.4GAnt124410~Reference-0.03-0.03---PASS 2.4GAnt1244130~1000-0.03-57.68≤-20.03PASS 2.4GAnt124411000~26500-0.03-50.1≤-20.03PASS 2.4GAnt124800~Reference0.390.39---PASS 2.4GAnt1248030~10000.39-58.66≤-19.61PASS 2.4GAnt124801000~265000.39-50.29≤-19.61PASS Page 16 of 20 TestGraphs 2.4G-Ant1-2402-0~Reference-PASS 2.4G-Ant1-2402-30~1000-PASS Page 17 of 20 2.4G-Ant1-2402-1000~26500-PASS 2.4G-Ant1-2441-0~Reference-PASS Page 18 of 20 2.4G-Ant1-2441-30~1000-PASS 2.4G-Ant1-2441-1000~26500-PASS Page 19 of 20 2.4G-Ant1-2480-0~Reference-PASS 2.4G-Ant1-2480-30~1000-PASS Page 20 of 20 2.4G-Ant1-2480-1000~26500-PASS ---END---
SPE-13-8-067/D/EZ Page 1 of 12 Specification Patent Pending Part No. : FXP75.07.0045B Product Name : FXP.75 Atom 2.4GHz Series Ultra-Miniaturized 2dBi Bluetooth Antenna Features : Patent Pending Worldwide smallest cabled 2.4GHz antenna Ideal for Bluetooth earphones Flexible Ultra Low Profile 5.9*4.1*0.24mm Adheres directly to inside of product housing Form factor and cable routing convenient for integration IPEX MHF1 Connector (U.FL compatible) 45mm Ø 0.81mm mini-coaxial cable RoHS Compliant SPE-13-8-067/D/EZ Page 2 of 12 1. Introduction The FXP75 Atom is a super small monopole ultra-low profile antenna for 2.4GHz band that includes Bluetooth, Wi-Fi, ZigBee and ISM bands application. The FXP75 has a peak gain of 2.5dBi at 2.4GHz and efficiencies of 45%. This Taoglas patent pending antenna is unique in the market. Two years of constant research and development have created the world's smallest coax cabled true 2.4GHz antenna. Made from poly-flexible material, the antenna has a tiny form factor of 5.9*4.1*0.24mm and has double-sided 3M tape for easy “peel and stick” mounting. The cable routes conveniently directly out of the bottom of the antenna, reducing the volume the antenna takes up in the device to an absolute minimum compared to other designs. The FXP75 is the ideal all-round antenna solution for fitting into narrow spaces and still maintaining high performance, for example in a Bluetooth earphone where metal and electrical noise degrades onboard SMT antenna performance. The FXP75 is small enough to be routed away from metal and electrical noise to deliver much improved range and reliable sound quality in Bluetooth earphones. Many module manufacturers specify peak gain limits for any antennas that are to be connected to that module. Those peak gain limits are based on free-space conditions. In practice, the peak gain of an antenna tested in free-space can degrade by at least 1 or 2dBi when put inside a device. So ideally you should go for a slightly higher peak gain antenna than mentioned on the module specification to compensate for this effect, giving you better performance. Upon testing of any of our antennas with your device and a selection of appropriate layout, integration technique, or cable, Taoglas can make sure any of our antennas’ peak gain will be below the peak gain limits. Taoglas can then issue a specification and/or report for the selected antenna in your device that will clearly show it complying with the peak gain limits, so you can be assured you are meeting regulatory requirements for that module. For example, a module manufacturer may state that the antenna must have less than 2dBi peak gain, but you don’t need to select an embedded antenna that has a peak gain of less than 2dBi in free-space. This will give you a less optimized solution. It is better to go for a slightly higher free-space peak gain of 3dBi or more if available. Once that antenna gets integrated into your device, performance will degrade below this 2dBi peak gain due to the effects of GND plane, surrounding components, and device housing. If you want to be absolutely sure, contact Taoglas and we will test. Choosing a Taoglas antenna with a higher peak gain than what is specified by the module manufacturer and enlisting our help will ensure you are getting the best performance possible without exceeding the peak gain limits. SPE-13-8-067/D/EZ Page 3 of 12 Due to the potential for detuning in a tiny device environment, Taoglas recommends that you contact us at our regional sales office for integration support and testing and optimization of the antenna in your device before going to production. SPE-13-8-067/D/EZ Page 4 of 12 2. Specification ELECTRICAL Antenna FXP75 Standard 2400-2500MHz Operation Frequency (MHz) 2400-2500 MHz Polarization Linear Impedance 50 Ohms Max VSWR 2:1 Max Return Loss (dB) <-10 Peak Gain (dBi) 2.5 Efficiency (%) 45 Average Gain (dB) -3.4 Radiation Properties Omni Max Input Power 2W max * The FXP.75 antenna performance was measured on a 30x30 mm 2mm thick ABS plastic ground plane. MECHANICAL Dimensions (mm) 5.9*4.1*0.24mm Required Space (mm) 5.9*4.1*0.24mm Material Polymer Cable Ø0.81mm coaxial cable Connector IPEX MHF1 ENVIRONMENTAL Operation Temperature -40°C to 85°C Storage Temperature -40°C to 85°C Relative Humidity 40% to 95% RoHs Compliant Yes SPE-13-8-067/D/EZ Page 5 of 12 3. Antenna Characteristics 3.1 Test set-up Figure 1. Impedance measurements (left side) and peak gain, efficiency and radiation pattern measurements (right side). 3.2 Return Loss Figure 2. Return loss of the FXP75 antenna from 2200 MHz to 2700 MHz. Y X Z SPE-13-8-067/D/EZ Page 6 of 12 3.3 VSWR Figure 3. VSWR of the FXP75 antenna from 2200 MHz to 2700 MHz. 3.4 Efficiency Figure 4. Efficiency of the FXP75 antenna from 2300 MHz to 2700 MHz. SPE-13-8-067/D/EZ Page 7 of 12 3.5 Peak Gain Figure 5. Peak Gain of the FXP75 antenna from 2300 MHz to 2700 MHz. 3.6 Average Gain Figure 6. Average Gain of the FXP75 antenna from 2300 MHz to 2700 MHz. SPE-13-8-067/D/EZ Page 8 of 12 3.7 3D radiation patterns Figure 7. 3D Radiation Pattern at 2450 of the FXP75 Antenna. Gain:2.5 dBi SPE-13-8-067/D/EZ Page 10 of 12 4. Antenna Drawing SPE-13-8-067/D/EZ Page 11 of 12 5. Packaging SPE-13-8-067/D/EZ Page 12 of 12 Taoglas makes no warranties based on the accuracy or completeness of the contents of this document and reserves the right to make changes to specifications and product descriptions at any time without notice. Taoglas reserves all rights to this document and the information contained herein. Reproduction, use or disclosure to third parties without express permission is strictly prohibited. Copyright © Taoglas Ltd.
ProjectNo.:182518C4000221Page1of2 Code:AB-RF-05-b AppendixI--TestSetupPhotograph_RF ConductedemissionsonACmains PhotoofRadiationEmissionTest(below1GHz) ProjectNo.:182518C4000221Page2of2 Code:AB-RF-05-b PhotoofRadiationEmissionTest(above1GHz)
Shenzhen · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.30 mW |