
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Steel SS Pop Rivet3M Adhesion Promoter OR Primer 94 pen *The scotch, cloth and coordinator are added per request for a kit of 5 devices. Installation Instructions By ArrowSpot Systems Ltd The Kit // What’s inside The Future is here... © 2022 ArrowSpot Systems Ltd. All Rights Reserved. ArrowTrackDV Drill with 10 mm Bit & 5 mm Bit PencilRivet Gun ArrowTrackDV Scotch-brite padCloth Coordinator www.arrowspot.com © 2022 ArrowSpot Systems Ltd. All Rights Reserved. Step 2 place the coordinator tightly next to the left lock rod and mark the designated light sensor circuit and device frame 3. Step 3 Drill a 10 mm hole for light sensor (Recommended to start with a 5 mm bit). Step 4 Brush off obstinate dirt from the overall surface. Step 5 Wipe for clean, smooth and dry surface. Step 7 Rub 94 primer or 111 promoter *one way move* (left to right). Wait for a full dry out. Step 6 If marking is needed, make sure the Coordinator is clean. Step 10 Drill 2 holes with 5 mm drill bit, Insert the 5mm rivet into the holes and use the rivet gun to attach it. Step 8 Remove the yellow label with a magnet from top and remove sticker liner from the bottom. Check for a flashing led light after magnet removal. Step 1 location: right container door, on the top notch between the 2 rods. Step 11 Send the container ID and Device S/N by email: [email protected] Operating temperature -40°C to +80°C. This device complies with FCC Rules Part 15: Operation is subject to two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference that may be received or that may cause undesired operation. Warning: changes or modications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. Step 9 Place the device inside the marked frame and apply pressure for 30 sec.
P 1 of 1 Date: 23 January 2023 Federal Communications Commission Office of Engineering and Technology Laboratory Division 7435 Oakland Mills Rd., Columbia, MD 21046, USA Simultaneous Transmission Declaration Model FCC ID ArrowTrack DV 2ANZW-ARROWTRAKDVLR To whom it may concern: We, ArrowSpot Systems Ltd., declare that the product’s transmitters don’t transmit simultaneously. Sincerely,
AmSoot \+r/ I Dale:26-12-2022 To Whom lt May Concern, We hereby authorize Mr. Moshe Zohar of l.T.L. Product Testing Ltd., to act on our behalf regarding the following FCC/ISED certification appl ication : FCC ID: 2ANZW-ARROWTRAKDVLR Thank you, fr Arrowspot Systems Ltd. I Kefar Hess., Hakerem 3,P.O.B 164 zip cocle 40692 lsrael. +9727225O223O www.arrowspot.corn
To: Timco Engineering, lnc., an llA Company 849 NW State Road 45 Newberry, Florida 32569 We hereby authorize Mr. Moshe Zohar of l,T.L. Product Testing Ltd., to sign Form 73'J" on our behalf, for the following FCCIISED certification a ppl ication/s: FCC I D : 24NZW-ARROWTRAKDVLR Thank you, AmSpot V"/ I Date:26-72-2022 Signatu re: Name: Ran Grinshtain Position: CEO f I I I I @.fl LTD f.., Arrowspot Systems Ltd. I Kefar Hess., Hakerem 3 ,P.O.B 164 zip code 40692 lsrael. +97272 25O223O www.arrowspot.corn
AmSoot \'/ I Dale:26-!2-2022 Federal Comm unications Commission Office of Englneering and Technology Laboratory Division 7435 Oakland Mills Rd. Columbia MD 21046 Ref: FCC lD number/s Model FCC ID ArrowTrack DV 24NZW-ARROWTRAKDVLR To whom it may concern: Pursuant to Sections 0.457 and 0.459 of the Commission's Rules, Arrowspot Systems Ltd. hereby requests confidential treatment for equipment authorization referenced above. Permanent Confidentiality Arrowspot Systems Ltd. requests that the Commission withholds the following documents from public viewing indefinitely: o Parts list . Block diagram . Schematics . Operationaldescription o lnternal Photographs The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. r\ Arrowspot Systems Ltd. I Kefar Hess., Hakerern 3 ,PO.B 164 zip codc 40692 lsrael. +972 72 25o223O www.arrowspot.com AfrrSpot \+r/ I Short Term Confidentiality ln addition to the above-mentioned documents, pursuant to Public Notice DA 04-1705 of the Commission,s policy, in order to comply with the marketing regulations in 47 CFR 52.803 and the importation rules in 47 CFR 52.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices, Arrowspot Systems Ltd. requests that the Commission withholds the following documents from public viewing for one hundred eighty days after the date the grant of equipment authorization is issued: o External Photographs o Test Setup Photographs . User Manual Sincerely, Signature: Name: Ran Grinshtain Position: CEO r\ Arrowspot Systems Ltd. I Kefar Hess., Hakerern 3 ,P.O.B 164 zip code 40692 lsrael. +9-12 -t2 25O223O ' , www.arrowspot.com
External Photos FCC ID: 2ANZW-ARROWTRAKDVLR
FCC ID: 2ANZW-ARROWTRAKDVLR
p. 1 of 2 2 4R GP S tt FCC RF Exposure report 1. Product information FCC ID 2ANZW-ARROWTRAKDVLR Product Ship Container Tracking Device Model No. ArrowTrack DV Power supply 3.6 V, battery Antenna type Integral Antenna gain -3.3dBi (max.) Assigned frequency range 2400.0-2483.5MHz Operating frequency range 2402.0-2480.0MHz Transmit power (conducted) -10dBm RF exposure considerations A worst-case test separation distance of 100mm=1m 2. Evaluation Method and Limit FCC: Part 1, Subpart I, Section 1.1310(e)(1),KDB447498 D01 V06 (October 23, 2015) According to KDB447498 D01 General RF Exposure Guidance v06 Section 4.3.1, the standalone SAR test exclusion considerations are: “Unless specifically required by the published RF exposure KDB procedures, standalone 1-g head or body and 10-g extremity SAR evaluation for general population exposure conditions, by measurement or numerical simulation, is not required when the corresponding SAR Test Exclusion Threshold condition, listed below, is satisfied. The minimum test separation distance is determined by the smallest distance from the antenna and radiating structures or outer surface of the device, according to the host form factor, exposure conditions and platform requirements, to any part of the body or extremity of a user or bystander (see 5) of section 4.1)." For MPE evaluation we take the following E.U.T values: 3. Max. power (conducted)=-10.3 dBm = 0.1mW 4. Antenna gain = -3.3dBi =0.5 5. Minimum distance from human body: 100.0cm=1m 6. The power density was calculated using the following formula: Where: p. 2 of 2 S: Power density (mW/cm 2 ) P t : Conducted Transmitted Power (mW ) G t : Antenna Gain (numeric) R: Distance from Transmitter (cm) FCC Test Limit Limits for General Population/Uncontrolled Exposure: Frequency range (MHz) Power density (mW/cm 2 ) Averaging time (min) 1,500.0- 100,000.0 1.0 ˂ 30 7. Test Results Frequency Calculation FCC limit Verdict (MHz) (mW/cm 2 ) (mW/cm 2 ) 2440.0 = [0.1*0.5]/[4*3.16*(1)]=0.004 ˂1.0 Pass Figure 1 Test Results 8. Conclusion The measurement results comply with the limit per FCC, Part 1, Subpart I, Section 1.1310(e)(1). End of Report
Test Report Ra254770.02 ArrowSpot Systems Ltd. Page 1 of 38 FCC 15.247 DTS Conducted Ver 1 25.11.2018 Date: 27 December 2022 I.T.L. Product Testing Ltd. FCC Part 15 Subpart C §15.247 Radio Test Report for ArrowSpot Systems Ltd. Equipment under test: Ship Container Tracking Device ArrowTrack DV Tested by: M. Zohar Approved by: I. Mansky pp. I. Cohen: This report must not be reproduced, except in full, without the written permission of I.T.L. Product Testing Ltd. This report relates only to items tested. Test Report Ra254770.01 ArrowSpot Systems Ltd. Page 2 of 38 FCC 15.247 DTS Conducted Ver 1 25.11.2018 Measurement/Technical Report for ArrowSpot Systems Ltd. Ship Container Tracking Device ArrowTrack DV FCC ID: 2ANZW-ARROWTRAKDVLR This report concerns: Original Grant Equipment type: FCC: Digital Transmission System (DTS) Limits used: 47CFR15 Section 15.247 Measurement procedure used: KDB 558074 D01 15.247 v05r02, ANSI C63.10:2013 Prepared by: Applicant: R. Ezrah I.T.L. Product Testing Ltd. 1 Bat Sheva St., Lod 7116002, Israel Email: [email protected] Dany Klein ArrowSpot Systems Ltd. P.O.B 164, Kfar Hess, Israel Email: [email protected] Test Report Ra254770.01 ArrowSpot Systems Ltd. Page 3 of 38 FCC 15.247 DTS Conducted Ver 1 25.11.2018 Table of Contents 1. GENERAL INFORMATION --------------------------------------------------------------------------- 5 1.1 Administrative Information ........................................................................... 5 1.2 List of Accreditations ................................................................................... 5 1.3 Product Description ..................................................................................... 6 1.4 Test Methodology ........................................................................................ 6 1.5 Test Facility ................................................................................................. 7 1.6 Measurement Uncertainty ........................................................................... 7 2. SYSTEM TEST CONFIGURATION ----------------------------------------------------------------- 8 2.1 Justification .................................................................................................. 8 2.2 EUT Exercise Software ............................................................................... 8 2.3 Special Accessories .................................................................................... 8 2.4 Equipment Modifications ............................................................................. 8 2.5 Configuration of Tested System .................................................................. 9 3. TEST SETUP PHOTOS ------------------------------------------------------------------------------ 10 4. 6 DB MINIMUM BANDWIDTH --------------------------------------------------------------------- 11 4.1 Test Specification ...................................................................................... 11 4.2 Test Procedure .......................................................................................... 11 4.3 Test Limit ................................................................................................... 11 4.4 Test Results............................................................................................... 11 4.5 Test Equipment Used; 6dB Bandwidth ..................................................... 13 5. MAXIMUM CONDUCTED OUTPUT POWER -------------------------------------------------- 14 5.1 Test Specification ...................................................................................... 14 5.2 Test Procedure .......................................................................................... 14 5.3 Test Limit ................................................................................................... 14 5.4 Test Results............................................................................................... 14 5.5 Test Equipment Used; Maximum Peak Power Output .............................. 16 6. BAND EDGE SPECTRUM -------------------------------------------------------------------------- 17 6.1 Test Specification ...................................................................................... 17 6.2 Test Procedure .......................................................................................... 17 6.3 Test Limit ................................................................................................... 17 6.4 Test Results............................................................................................... 17 6.5 Test Equipment Used; Band Edge ............................................................ 19 7. TRANSMITTED POWER DENSITY -------------------------------------------------------------- 20 7.1 Test Specification ...................................................................................... 20 7.2 Test Procedure .......................................................................................... 20 7.3 Test Limit ................................................................................................... 20 7.4 Test Results............................................................................................... 20 7.5 Test Equipment Used; Transmitted Power Density .................................. 22 8. OCCUPIED BANDWIDTH -------------------------------------------------------------------------- 23 8.1 Test Specification ...................................................................................... 23 8.2 Test Procedure .......................................................................................... 23 8.3 Test Limit ................................................................................................... 23 8.4 Test Results............................................................................................... 23 8.5 Test Equipment Used; Bandwidth .......................…
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1 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna ApplicationReport SWRU120D–April2007–RevisedJanuary2019 2.4-GHzInvertedF Antenna ABSTRACT Thisdocumentdescribesa printed-circuitboard(PCB)antennadesignthat can be usedwith all 2.4-GHz transceiversand transmittersfromTexasInstruments™. The maximumgainwhenusedon the reference boardis measuredto be +3.3dBi, and the overallsize requirementsfor this antennaare 25.7× 7.5 mm (not includinggroundplane). Contents 1Descriptionof the antennaDesign........................................................................................2 2MeasurementResults.......................................................................................................3 2.1RadiationPattern...................................................................................................3 2.2Reflection...........................................................................................................10 2.3Bandwidth..........................................................................................................11 3Conclusion..................................................................................................................11 4References..................................................................................................................11 Trademarks TexasInstrumentsis a trademarkof TexasInstruments. All othertrademarksare the propertyof theirrespectiveowners. Descriptionof the antennaDesignwww.ti.com 2 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna 1Descriptionof the antennaDesign It is importantto makean exactcopyof the antennadimensionsto obtainoptimumperformance.The easiestapproachto implementthe antennain a PCBCADtool is to importthe antennalayoutfroma gerberfile or a DXFfile. Suchfiles are includedin CC2430DBreferencedesign[1]. The gerberfile is calledInverted_F_Antenna.spland the DXFfile is calledInverted_F_Antenna.dxf.If the antennais implementedon a PCBthat is widerthanthe antenna,avoidplacingcomponentsor havinga ground planecloseto the end pointsof the antenna.If the CADtool beinguseddoesnot supportimportinggerber or DXFfiles,see Figure1 and Table1. The antennaimpedanceis tunedto 50 ohmon the referenceboard.The impedancewill howeverbe affectedby differentsize and shapeof the groundplane,objectsin the antennanearfieldsuchas mechanicalassemblies(housing,batteries,etc.),PCBthickness,PCBmaterialand so on. It is therefore recommendedto add a pi-networkcloseto the antennafeedpointfor impedancematching. The resultspresentedin this documentare basedon an antennaimplementedon a PCBwith a 1-mm thicknessusingstandardFR-4material. Figure1. IFA Dimensions Table1. IFA Dimensions H15.70mmW20.46mm H20.74mmL125.58mm H31.29mmL216.40mm H42.21mmL32.18mm H50.66mmL44.80mm H61.21mmL51.00mm H70.80mmL61.00mm H81.80mmL73.20mm H90.61mmL80.45mm W11.21mm www.ti.comMeasurementResults 3 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna 2MeasurementResults All of the resultspresentedin this sectionare basedon measurementsperformedwith the CC2430DB[1] evaluationboard. 2.1RadiationPattern Figure2 showshow to relateall of the radiationpatternsto the orientationof the antenna.The radiation patternsweremeasuredwith the CC2430deviceprogrammedto 0-dBmoutputpower. Figure2. RelatingAntennato RadiationPatterns MeasurementResultswww.ti.com 4 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna Figure3 showsthe XY planeverticalpolarization. Figure3. XY Plane–VerticalPolarization www.ti.comMeasurementResults 5 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna Figure4 showsthe XY planehorizontalpolarization. Figure4. XY Plane–HorizontalPolarization MeasurementResultswww.ti.com 6 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna Figure5 showsthe XZ planeverticalpolarization. Figure5. XZ Plane–VerticalPolarization www.ti.comMeasurementResults 7 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna Figure6 showsthe XZ planehorizontalpolarization. Figure6. XZ Plane–HorizontalPolarization MeasurementResultswww.ti.com 8 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna Figure7 showsthe YZ planeverticalpolarization. Figure7. YZ Plane–VerticalPolarization www.ti.comMeasurementResults 9 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna Figure8 showsthe YZ planehorizontalpolarization. Figure8. YZ Plane–HorizontalPolarization MeasurementResultswww.ti.com 10 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna 2.2Reflection Figure9 showsthat the IFA ensuresless than10%reflectionof the availablepowerfor a bandwidthof morethan300 MHz.A largebandwidthmakesthe antennaless sensitiveto detuningbecauseof plastic encapsulationor otherobjectsin the vicinityof the antenna. Figure9. MeasuredReflectionat FeedPointof Antenna www.ti.comMeasurementResults 11 SWRU120D–April2007–RevisedJanuary2019 SubmitDocumentationFeedback Copyright© 2007–2019,TexasInstrumentsIncorporated 2.4-GHzInvertedF Antenna 2.3Bandwidth Anotherway of measuringthe bandwidthafterthe antennais implementedon a PCBand connectedto a transmitteris to writetest softwarethat stepsa carrieracrossthe frequencybandof interest.By usingthe …
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This document was generated on 08/21/2019 PLEASE CHECK WWW.MOLEX.COM FOR LATEST PART INFORMATION Part Number: 2042860001 Status: Active Overview:GNSS/GPS Antennas Description:Ceramic GPS/BeiDou/GLONASS Antenna Documents: 3D ModelPackaging Specification 2042860001-PK (PDF) Drawing (PDF)RoHS Certificate of Compliance (PDF) Product Specification 2042860001-PS (PDF)Product Literature (PDF) Application Specification 2042860001-AS (PDF) General Product FamilyAntennas Series204286 Component TypeSurface Mount Device Antenna FunctionSignal OverviewGNSS/GPS Antennas Product Literature Order No987651-5071 Product NameCeramic GPS/BeiDou/GLONASS ProtocolBeiDou, Galileo, GLONASS, GPS TypeGNSS Antenna UPC191128317368 Physical Cable LengthN/A Length25.00mm Mounting StyleAdhesive, Surface Mount Net Weight9.209/g Packaging TypeTray PolarizationElliptic Radiation PatternOmnidirectional Thickness4.00mm Width25.00mm Electrical Band#1 F_End (MHz)1566 Band#1 F_Start (MHz)1556 Band#2 F_End (MHz)1580 Band#2 F_Start (MHz)1570 Band#3 F_End (MHz)1607 Band#3 F_Start (MHz)1597 Electrical ConnectivitySMD Peak Gain (dBi)5.2 @ 1561 MHz, 5.4 @ 1575 MHz, 5.6 @ 1602 MHz Return Loss - S11 (dB)< -10 Total Efficiency>70% @ 1575 MHz, >70% @ 1561 MHz, >75% @ 1602 MHz Material Info Reference - Drawing Numbers Application Specification2042860001-AS Packaging Specification2042860001-PK Product Specification2042860001-PS Sales Drawing2042860001-000 Series image - Reference only EU ELV Not Relevant EU RoHSChina RoHS Compliant REACH SVHC Not Contained Per - ED/71/2019 (16 July 2019) Halogen-Free Status Low-Halogen For more information, please visit Contact US China ROHSGreen Image ELVNot Relevant RoHS PhthalatesNot Contained Search Parts in this Series 204286 Series This document was generated on 08/21/2019 PLEASE CHECK WWW.MOLEX.COM FOR LATEST PART INFORMATION
Product Specification Inversa - SR4L034-PS-1.1 1 Page 1 Antennas for Wireless M2M Applications 1. Features Antenna for 4G and 3G applications LTE, GSM, CDMA, DCS, PCS, WCDMA, UMTS, HSPDA, GPRS, EDGE, IMT Frequencies: 698-960MHz; 1710-2170MHz; 2300-2400MHz; 2500-2690MHz Corner placement for ergonomic design-in SMD mounted device Supplied on Tape and Reel Automotive temperature rating. Compact 28 x 8 x 3.3 (mm) Ideal for MIMO systems 2. Description Inversa is intended for use with 4G/3G applications. As a single antenna or in MIMO systems, this antenna was specifically designed for coexistence and minimal space requirements by being corner placed on the host PCB. This product specification shows the performance of the antenna over all stated frequency ranges. 3. Applications 4G Mi -Fi Routers Medical equipment Tablets OBD++ systems MIMO Systems Femtocell / Pico stations Remote monitoring Inversa LTE Antenna Part No. SR4L034-L / SR4L034-R lamiiANT ® Product Specification Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 2 4. Part Number Inversa: SR4L034-L Inversa: SR4L034-R 5. General Data Product name Inversa Part Number SR4L034-L / SR4L034-R Frequency 698-960MHz 1710-2170MHz 2300-2400MHz 2500-2690MHz Polarization Linear Operating temperature -40°C to140°C Environmental Condition Test ISO16750-4 5.1.1.1/5.1.2.1/5.3.2 Impedance with matching 50 Ω Weight <2.5g Antenna type SMD Dimensions 28.0 x 8.0 x 3.3 (mm) Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 3 6. RF Characteristics All data measured on Antenova’s evaluation PCB Part No. SR4L034-EVB-1 698 - 798 MHz Peak gain 0.40dBi Average gain (Linear) -2.0dBi Average efficiency >55% Maximum return loss -6.0dB Maximum VSWR 2.8:1 824 - 960 MHz Peak gain 1.60dBi Average gain (Linear) -1.10dBi Average efficiency >70% Maximum return loss -6.6dB Maximum VSWR 2.8:1 1710 - 2170 MHz Peak gain 3.50dBi Average gain (Linear) -2.00dBi Average efficiency >60% Maximum return loss -5.1dB Maximum VSWR 3.5:1 2300 - 2400 MHz Peak gain 3.60dBi Average gain (Linear) -1.60dBi Average efficiency >60% Maximum return loss -7.0dB Maximum VSWR 2.5:1 2500 - 2690 MHz Peak gain 2.10dBi Average gain (Linear) -2.30dBi Average efficiency >55% Maximum return loss -4.9dB Maximum VSWR 3.7:1 Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 4 7. RF Performance 7.1 Return Loss 7.2 VSWR Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 5 7.3.0 Antenna Pattern 698 MHz – 798 MHz 3D pattern at 746 MHz Drag to rotate pattern and PCB by using Adobe Reader (Click to Activate) Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 6 7.3.1 Antenna Pattern 824 MHz – 960 MHz 3D pattern at 880 MHz Drag to rotate pattern and PCB by using Adobe Reader (Click to Activate) Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 7 7.3.2 Antenna Pattern 1710 MHz – 2170 MHz 3D pattern at 1990 MHz Drag to rotate pattern and PCB by using Adobe Reader (Click to Activate) Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 8 7.3.3 Antenna Pattern 2300 MHz – 2400 MHz 3D pattern at 2.35 G Hz Drag to rotate pattern and PCB by using Adobe Reader (Click to Activate) Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 9 7.3.3 Antenna Pattern 2500 MHz – 2690 MHz 3D pattern at 2.6 GHz Drag to rotate pattern and PCB by using Adobe Reader (Click to Activate) Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 10 7.4 Host PCB Length Vs. Efficiency The efficiency of Inversa is shown here over varying GND plane lengths. Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 11 8. Antenna Dimensions L W H Length Width Height 28.0 ±0.1 8.0 ±0.1 3.3 +0.1 -0.0 All Dimensions in (mm) -L and -R Dimensions are the same Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 12 Bottom Side SR4L034-L Bottom Side SR4L034-R -All Dimensions in (mm) -View from underneath each antenna Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 13 9.1 Schematic symbol and Pin definition The circuit symbol for the antenna is shown below. Pin Name Description 4 Feed Transceiver port 5 T1 Return/Tuning 1,6,7,8,9 NC Not used (Mechanical only) 2,3 SC Pins 2 and 3 short circuit on host PCB Inversa Schematic Symbol Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 14 10.0 Antenna footprint 10.1 Host PCB Layout The footprint and clearance of the host PCB must be designed-in as below. Copper Clearance Via Inversa Part No. SR4L034 Antennas for Wireless M2M Applications Product Specification Inversa-SR4L034-PS-1.11 Page 15 11. Electrical Interface 11.1 Transmission Line All transmission lines should be designed to have a characteristic impedance of 50Ω. • The length of the transmission lines should be kept to a minimum. • Any other parts of the RF system like transceivers, power amplifiers, etc, should also be designed to have an impedance of 50 Ω. Once the material for the PCB has been chosen (PCB thickness and dielectric constant), a coplanar transmission line can easily be designed using any of the commercial software packages for transmission line design. For the chosen PCB thickness, copper thickness and substrate dielectric constant, the program will calculate the appropriate transmission line width and gaps on either side o…
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Test Setup Photos FCC ID: 2ANZW-ARROWTRAKDVLR Figure 1. Conducted Emission Test (with Spectrum Analyzer) Figure 2. Radiated Emission Test, 0.009-30.0 MHz Figure 3. Radiated Emission Test, 30.0-200.0 MHz Figure 4. Radiated Emission Test, 200.0-1000.0 MHz Figure 5. Radiated Emission Test, 1.0-18.0 GHz Figure 6. Radiated Emission Test, 18-26.5 GHz
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 90.00 µW |