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APV-3030GBTVehicle tracking unit with GPS, GSM/GPRS and Bluetooth.

CalAmp
Vehicle tracking unit with GPS, GSM/GPRS and Bluetooth. - FCC ID APV-3030GBT - CalAmp
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Sep 22, 2014
Application Purpose
Original Equipment
Date of Application
Sep 22, 2014
Equipment Note
Vehicle tracking unit with GPS, GSM/GPRS and Bluetooth.
Frequency Range
2402.00000000 - 2480.00000000
Company
CalAmp
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

LMU-3030 Hardware & Installation Guide LMU-3030™ Hardware and Installation Guide IMPORTANT: DO NOT INSTALL OR USE THE SOFTWARE OR DOCUMENTATION UNTIL YOU HAVE READ AND AGREED TO THE LICENSE AGREEMENT AND REVIEWED THELIMITED WARRANTY AND REGULATORY INFORMATION. [edit][top]1 Introduction Welcome to the LMU-3030™ Hardware and Installation Guide. This manual is intended to give you information on the basic setup and installation of the CalAmp LMU-3030™ product(s) including hardware descriptions, environmental specifications, wireless network overviews and device installation. 1.1 About This Manual The LMU-3030™ is one of the most flexible economy mobile tracking hardware products available. In order to accurately describe the functionality of these units we have broken this manual into the following sections:  System Overview – A basic description of a CalAmp LMU-3030™ based tracking system. This includes a description of roles and responsibilities of each of the CalAmp components as well as a brief overview of the wireless data technologies used by the LMU-3030™.  Hardware Overview – Describes the physical characteristics and interfaces of the LMU-3030™.  Installation and Verification – Provides guidance for the installation of the LMU-3030™ in a vehicle and instructions on how to verify the installation is performing adequately. 1.2 About the Reader In order to limit the size and scope of this manual, the following assumptions have been made about the reader.  You are familiar with GPS concepts and terminology  You have some experience with installing equipment in vehicles  You are familiar with the use of AT Commands  You are familiar with the use of terminal programs such as HyperTerminal or PuTTY 1.3 About CalAmp CalAmp is a leading provider of wireless communications products that enable anytime/anywhere access to critical information, data and entertainment content. With comprehensive capabilities ranging from product design and development through volume production, CalAmp delivers cost-effective high quality solutions to a broad array of customers and end markets. CalAmp is the leading supplier of Direct Broadcast Satellite (DBS) outdoor customer premise equipment to the U.S. satellite television market. The Company also provides wireless data communication solutions for the telemetry and asset tracking markets, private wireless networks, public safety communications and critical infrastructure and process control applications. For additional information, please visit the Company’s website at www.calamp.com. 1.4 About the CalAmp Location Messaging Unit-LMU-3030™ The CalAmp Location and Messaging Unit-LMU-3030™ (LMU-3030™) is a mobile device that resides in private, commercial or government vehicles. The LMU-3030™ is a single box enclosure incorporating a processor, a GPS receiver, a wireless data modem, and a vehicle-rated power supply. The LMU-3030™ also supports inputs and outputs to monitor and react to the vehicular environment and/or driver actions. Flexibility The LMU-3030™ features CalAmp's industry leading advanced on-board alert engine that monitors vehicle conditions giving you the most flexible tracking device in its class. The PEG™ (Programmable Event Generator) application supports hundreds of customized exception-based rules to help meet customers' dynamic requirements. Customers can modify the behavior of the device to meet with a range of applications preprogrammed before shipment or in the field. Combining affordability and device intelligence with your unique application can give you distinct advantages over your competition. Over-the-Air Serviceability The LMU-3030™ also incorporates CalAmp's industry leading over-the-air device management and maintenance system software, PULS™ (Programming, Updates, and Logistics System). Configuration parameters, PEG rules, and firmware can all be updated over the air. Our web-based maintenance server, PULS™ scripts, and firmware, can all be updated over-the-air. PULS™ offers out-of-the-box hands free configuration and automatic post-installation upgrades. You can also monitor unit health status across your customers' fleets to quickly identify issues before they become expensive problems. 2 - System Overview 2.1 Overview The entire purpose behind a fleet management system is to be able to remotely contact a vehicle, determine its location or status, and do something meaningful with that information. This could include displaying the vehicle location on a map, performing an address look-up, providing real-time driving directions, updating the vehicles ETA, monitoring vehicle and driver status or dispatching the vehicle to its next pick up. These functions, of course, are completely dependent on the capabilities of the vehicle management application. The role of the CalAmp LMU-3030™ is to deliver the location information when and where it is needed. A typical fleet management system based on a CalAmp device includes the following components:  A wireless data network  An LMU-3030™  Host Device (GPS NMEA only)  An LM Direct™ communications server  Backend mapping and reporting software which typically includes mapping and fleet reporting functions  PULS™  LMU Manager™ Basic System Architecture 2.2 Component Descriptions 2.2.1 Wireless Data Network The Wireless Data Network provides the information bridge between the LM Direct™ server and the LMU-3030™. Wireless data networks can take a variety of forms, such as cellular networks, satellite systems or local area networks. Contact the CalAmp sales team for the networks available to the LMU- 3030™. 2.2.2 LMU-3030™ The LMU-3030™ is responsible for delivering the location and status information when and where it is needed. Data requests mainly come from the following sources:  PEG™ script within the LMU-3030™  A location or status request from the LM Direct™ server  A location or status request from LMU Manager  An SMS request made from a mobile device such as a custom…

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Users Manual

Application Note Version: 1.0 Feature: Bluetooth Support Page #: 1 of 11 LMU Bluetooth Chipset Application Note Boris Velev Application Note Version: 1.0 Feature: Bluetooth Support Page #: 2 of 11 1 Introduction ........................................................................................................................ 3 2 Description .......................................................................................................................... 3 3 Setup ................................................................................................................................... 4 3.1 LMU BT LE driver streams and serial port configuration parameters setup example. 4 3.2 LMU BTST SPP driver streams and serial port configuration parameters setup example. ................................................................................................................................. 4 3.3 LMU Bluetooth driver configuration parameters setup. ............................................ 5 3.4 LMU user serial message configuration parameters setup example......................... 6 3.5 BTCS version format. ................................................................................................... 7 3.6 BTCS default Pass key. ................................................................................................. 7 3.7 Verification of LMU BTST SPP mode “Data” state example. ...................................... 7 3.8 Verification of LMU configuration for BLE “connection” mode example. ................. 8 3.9 Verification of LMU BLE “Advert broadcast scanning” mode configuration example. ................................................................................................................................. 8 4 Usage .................................................................................................................................. 9 4.1 Demonstration of LMU BT SPP mode. ........................................................................ 9 4.2 Demonstration of BLE “connection” mode based remote temperature sensor device. .................................................................................................................................... 9 4.3 Demonstration of BLE “broadcast scanning” mode based remote KeyFob DriverID device. .................................................................................................................................. 11 Application Note Version: 1.0 Feature: Bluetooth Support Page #: 3 of 11 1 Introduction This application note documents the use of Bluetooth chipset device based on TI MSP430F5438A microcontroller and CC2564 RF processor. The BTCS device has Bluetooth LE4.0 dual mode capabilities. The firmware is based on Stonestreet One Bluetopia protocol stack. The document uses as an example the Texas Instruments CC 2541 Sensor Tag with the purpose of reading the temperature from TI TMP006 temperature sensor. A “KeyFob” device which broadcasts “Button xx press” events together with “battery charge state as percentage“ information is used as another example. 2 Description The BTCS device is connected to a LMU serial port. The BTCS unit supports Bluetooth SPP mode of operation. BTCS plays a server slave device which upon connection with a Remote Bluetooth client master device can exchange data. There are two Bluetooth low energy (BLE) modes of operation: “Connection” based and an “Advert Broadcast Scanning” mode. In “Connection” mode, the LMU firmware starts the discovery process of all BLE remote devices. If a match is found based on the remote address stored as an “APP PARAM 2082”, the discovery sequence is ended and the connection process starts. Upon the reception of “CONNECTED_OK” event, the user will be able to send setup commands to the remote device, and consequently receive the sensor data. In “Advert Broadcast scanning” mode BT driver simply receives the broadcast advertisements from all remote BLE devices. The block diagram is presented in Figure 1 below. Application Note Version: 1.0 Feature: Bluetooth Support Page #: 4 of 11 Figure 1 3 Setup 3.1 LMU BT LE driver streams and serial port configuration parameters setup example. • Map debug stream to Aux1 port. AT$APP PARAM 3072,3,0 • Bluetooth stream to AUX 2. AT$APP PARAM 3072,14,1 • A Bluetooth stream baud rate set to 115200 AT$APP PARAM 3073,14,12 • A Bluetooth stream set to 8, n, 1 AT$APP PARAM 3074,14,3 • User0 Stream to Bluetooth Port AT$APP PARAM 3072,0,8 3.2 LMU BTST SPP driver streams and serial port configuration parameters setup example. • LMU BT driver SPP mode setup: at$app param 2083,0,0 User Serial Tx Data BT STREAM BLE “AT cmd” Parser BT_DRV BT_ Sensor BT_ Sensor BT_DRV BT STREAM User Serial Rx Data BTCS BTCS SPP Application Note Version: 1.0 Feature: Bluetooth Support Page #: 5 of 11 • Turn off stream for User 0: at$app param 3072,0,255 • Map Debug stream to BT_port: at$app param 3072,3,8 • Reset LMU : ATRESET LMU debug log will be visible on BT remote Android device console upon connection. The connection process is initiated by Android master device. 3.3 LMU Bluetooth driver configuration parameters setup. • PID 2082 holds up to 8 remote device addresses 6 Bytes long. at$app param 2082,0,144,89,175,10,169,169 corresponding to remote device MAC address: 0x9059AF0AA9A9 The first location in the array of addresses above is used to establish a BLE connection to a remote BLE device in BLE” Connected” mode. All unused addresses must contain 255,255,255,255,255,255. • PID 2083 holds the mode of operation and it is 2 Bytes long. Bit 0 is used for mode selection 0- standard-SPP, and 1- Low Energy. For instance to configure BT driver in SPP mode use the following: at$app param 2083,0,0 For example in order to configure BT driver in BLE “Connection” mode use: at$app param 2083,0,1 Bit 1 defines if broadcast scanning is enabled 0 – disabled , 1 – enabled. Bit 2: 0- whitelist should be used to filter out th…

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Attestation Statements

TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 TÜV SÜD America Inc. (San Diego) August 22, 2014 TUV SUD BABT Octagon House, Concorde Way Segensworth Rd N, Fareham PO15 5RL RE: FCC ID APV-3030GBT IC: 5843C-3030GBT M/N: LMU30G60BT By my signature below, I attest: That the original test data from CCS Inc. Report T130123W06-RP, according to FCC Part 22H/24E and RSS-132/133 remain valid and applicable to Model LMU30G60BT and is/are representative of the compliance for this device. Sincerely, Ferdinand S. Custodio EMC/Senior Wireless Test Engineer

Cover Letter(s)

A E R C E P T D A T A R A D I O L A N D C E L L O M E G A S MA R T L I N K www.calamp.com Mobile resource Management MRM/M2M Products 2177 Salk Ave, STE 100 Carlsbad, CA 92008 PH: (760) 438-9010 – Fax: (760) 438-5835 August 18, 2014 TUV SUD BABT TCB Octagon House, Segensworth Road, Fareham, Hampshire, PO15 5RL Re: FCC ID: APV-3030GBT IC: 5843C-3030GBT Dir Sir and Madam, We, CalAmp, 2177 Salk Ave, STE 100, Carlsbad, CA 92008 hereby authorize Ferdinand S Custodio at TUV SUD America, Inc. 10040 Mesa Rim Road, San Diego, CA 92121 Tel: (858) 678-1400, to act as our agent in all matters relating to applications for equipment authorization, including the signing of all documents relating to these matters. This authorization expire on February 15, 2015 Sincerely, August 18 2014 Product Certification Manager Imad Rizk Phone number: (760) 814-9697 Email: [email protected]

Cover Letter(s)

A E R C E P T D A T A R A D I O L A N D C E L L O M E G A S MA R T L I N K www.calamp.com Mobile resource Management MRM/M2M Products 2177 Salk Ave, STE 100 Carlsbad, CA 92008 PH: (760) 438-9010 – Fax: (760) 438-5835 September 16, 2014 TUV SUD BABT TCB Octagon House, Segensworth Road, Fareham, Hampshire, PO15 5RL Confidentiality Request FCC ID: APV-3030GBT Pursuant to Sections 0.457(d)(1)(ii) and 0.459 of the Commission’s Rules, CalAmp Wireless networks hereby requests permanent confidential treatment of information accompanying this application as outlined below: Block Diagram: - 134669 LMU-3030 BT Block Diagram Operation description - LMU3030 BT Operation description Schematic: - 134223-3030_REVC1 - APP-GSM - 134226-3030_REVC – OBD - 134229-3030_REVD – GPS Part list: - LMU3030 APP-GSM PWA - LMU3030 DB BT PWA - LMU3030 GPS PWA - LMU3030 GPS PWA Also hereby requests short-term confidential treatment of information accompanying this application as outlined below for a period of 180 days: - Internal photos - External photos The above materials contain trade secrets and 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. The Applicant understands that pursuant to Rule 0.457(d)(1)(ii), disclosure of this Application and all accompanying materials will not be made before the date of the Grant for this Application. Sincerely, September 16 2014 Product Certification Manager Imad Rizk Phone number: (760) 814-9697 Email: [email protected] A E R C E P T D A T A R A D I O L A N D C E L L O M E G A S MA R T L I N K www.calamp.com Mobile resource Management MRM/M2M Products 2177 Salk Ave, STE 100 Carlsbad, CA 92008 PH: (760) 438-9010 – Fax: (760) 438-5835

External Photos

FCC ID APV-3030GBT IC: 5843C-3030GBT

ID Label/Location Info

UNLESS OTHERWISE SPECIFIED DIMENSIONS ARE IN INCHES TOLERANCES ARE: FRACTIONS DECIMALS ANGLES ±1/32 .XX ±.01 ±0°30’ .XXX ± .005 USED ON REVISIONS MATERIAL FINISH DRAWN: CHECKED: ISSUED: TITLE DO NOT SCALE DRAWING SIZE CAGE CODE DWG NO. REV A 6T925 SHEET 1 OF 1 SCALE ITEM NO. QTY REQD IDENTIFYING NO. DESCRIPTION MKTG: 1 1 LABEL BLANK, 1.5” x 1.0”, 1.0” SPOOL SIZE 79-00326 NOTES: UNLESS OTHERWISE SPECIFIED 1. APPLICABLE STANDARDS / SPECIFICATIONS; MIL-STD-100E, ENGINEERING DRAWING PRACTICES. ANSI Y14.5M-1982, DIMENSIONS AND TOLERANCES. 2. FONT : BARCODE FORMAT 39, BLACK INK 3. DATE CODE SHALL BE DEFINED AS : WWYY WW – TWO DIGIT WORK WEEK YY – TWO DIGIT YEAR 4. MATERIAL MUST BE LEAD (Pb) FREE PER THE EUROPEAN UNION’S RESTRICTION OF HAZARDOUS SUBSTANCE (RoHS) DIRECTIVE. A. HARGITAI MM/DD/YYYY C. WONG 04/22/2014 A. ANGELES MM/DD/YYYY 134591-G1000 B REV ECO NO. DESCRIPTION DATE APPROVED A 65251 PRODUCTION RELEASE 04/22/2014 C. WONG B xxxxx CHANGE FCC ID AND IC TO NEW NUMBER 8-18-2014 S.EICHMAN LABEL MARKING, UNIT, LMU3030, SARA GSM, BLUETOOTH LMU30G60BT-G1000 Elec. File: 134591-G1000_B.doc 3 1” 1.5” WWYY P/N: LMU30G60BT CC:G1000 Assembled in China FCC ID: APV-3030GBT IC: 5843C-3030GBT nnnnnnnnnn ESN nnnnnnnnnnnnnnn IMEI

Internal Photos

FCC ID APV-3030GBT IC: 5843C-3030GBT

RF Exposure Info

TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 August 20, 2014 TUV SUD BABT Octagon House, Concorde Way Segensworth Rd N, Fareham PO15 5RL Attention: Director of Certification RE: Analysis of RF Exposure for Portable use per Title 47, Part 1 Subpart I, §1.1310, Title 47, Part 2 Subpart J, §2.1091 and RSS-102 Issue 4 March 2010. FCC ID: APV-3030GBT IC: 5843C-3030GBT 1. Mobile MPE Calculation Summary using a 20cm separation distance: Mode Output Power Antenna Gain Power Density (mW/m 2 ) GSM/GPRS 850 32.20 dBm (824.2 MHz) -9.8 dBi* 0.0346 GSM/GPRS 1900 29.90 dBm (1880.0 MHz) -4.5 dBi* 0.0690 Bluetooth 100.4 dBμV/m @ 3 meters 0 dBi 0.00065441 Bluetooth LE 86.6 dBμV/m @ 3 meters 0 dBi 0.00002728 2. Co-Located Transmitters transmission table: Transmitter type Transmitter type that can transmit at the same time GSM/GPRS 850 Bluetooth GSM/GPRS 850 Bluetooth LE GSM/GPRS 1900 Bluetooth GSM/GPRS 1900 Bluetooth LE 3. Simultaneous Transmission MPE (Worst Case Combination): Transmitter type MPE (mw/cm 2 ) Limit (mW/cm 2 ) MPE ratio (MPE/Limit) GSM/GPRS 1900 0.0690 1.0 0.0690 Bluetooth 0.00065441 1.0 0.00065441 Sum of the ratios (should be <1.0) 0.06965441 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 4. Mobile MPE Calculation using a 20cm separation distance (GSM/GPRS 850): Using Power Density formula: S= PG 4πR 2 where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to isotropic R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal: 32.20 (dBm) Maximum peak output power at antenna input terminal: 1659.59 (mW) Antenna gain(typical): -9.8 (dBi) Maximum antenna gain: 0.105 (numeric) Prediction distance: 20 (cm) Sourse Based Time Average Duty Cycle: 100 (%) Prediction frequency: 824.2 (MHz) MPE limit for uncontrolled exposure at prediction frequency: 0.549 (mW/cm 2 ) Power density at prediction frequency: 0.0346 (mW/cm 2 ) Power density at prediction frequency: 0.346 (W/m 2 ) Margin of Compliance: -12.01 (dB) 5. Mobile MPE Calculation using a 20cm separation distance (GSM/GPRS 1900): Maximum peak output power at antenna input terminal: 29.90 (dBm) Maximum peak output power at antenna input terminal: 977.24 (mW) Antenna gain(typical): -4.5 (dBi) Maximum antenna gain: 0.355 (numeric) Prediction distance: 20 (cm) Sourse Based Time Average Duty Cycle: 100 (%) Prediction frequency: 1880 (MHz) MPE limit for uncontrolled exposure at prediction frequency: 1.000 (mW/cm 2 ) Power density at prediction frequency: 0.0690 (mW/cm 2 ) Power density at prediction frequency: 0.690 (W/m 2 ) Margin of Compliance: -11.61 (dB) TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 6. Mobile MPE Calculation using a 20cm separation distance (Bluetooth): Measured Field Strength --Radiated: 100.4 (dBuV/m) Maximum peak output power --Radiated: 0.0032894 (W) Antenna gain(typical): 0.00 (dBi) Maximum antenna gain: 1.00 (numeric) Prediction distance: 20.00 (cm) Prediction frequency: 319.00 (MHz) Limit from table below: 1 (mW/cm 2 ) Power density at prediction frequency: 0.00065441 (mW/cm 2 ) Margin of Compliance: -31.84 (dB) 7. Mobile MPE Calculation using a 20cm separation distance (Bluetooth LE): Measured Field Strength --Radiated: 86.6 (dBuV/m) Maximum peak output power --Radiated: 0.0001371 (W) Antenna gain(typical): 0.00 (dBi) Maximum antenna gain: 1.00 (numeric) Prediction distance: 20.00 (cm) Prediction frequency: 319.00 (MHz) Limit from table below: 1 (mW/cm 2 ) Power density at prediction frequency: 0.00002728 (mW/cm 2 ) Margin of Compliance: -45.64 (dB) *Notes: Power level and worst case channel information for the cellular radio were derived from the MPE exhibit of the original filing. Antenna gains information of the cellular radio were also derived from this exhibit as well as the CTIA Over The Air Performance Summation Test Report (7 layers, Inc. Project Name: MUS_CALAMP_1310) provided by the client. Sincerely, Ferdie S. Custodio Name Authorized Signatory Title: EMC/ Senior Wireless Test Engineer

Test Report

Report No. SC1406705B August 2014 America Report On Application for Grant of Equipment Authorization of the CalAmp Wireless Networks Corp. LMU-3030 Tracking Unit with OBD-II Interface FCC Part 15 Subpart C §15.247 IC RSS-210 Issue 8 December 2010 FCC ID APV-3030GBT IC: 5843C-3030GBT Report No. SC1406705B Page 2 of 91 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 REPORT ON TEST REPORT NUMBER PREPARED FOR Radio Testing of the CalAmp Wireless Networks Corp. Tracking Unit with OBD-II Interface SC1406705B CalAmp Wireless Networks Corp. 1401 N Rice Ave. Oxnard, CA 93030 CONTACT PERSON Imad Rizk Carrier & Product Certifications Manager (805) 987-9000 [email protected] PREPARED BY Ferdinand S. Custodio Name Authorized Signatory Title: EMC/Wireless Test Engineer APPROVED BY Chip R. Fleury Name Authorized Signatory DATED August 14, 2014 FCC ID APV-3030GBT IC: 5843C-3030GBT Report No. SC1406705B Page 3 of 91 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 Revision History SC1406705B CalAmp Wireless Networks Corp. LMU-3030 Tracking Unit with OBD-II Interface DATE OLD REVISION NEW REVISION REASON PAGES AFFECTED APPROVED BY 08/14/2014 Initial Release Chip R. Fleury FCC ID APV-3030GBT IC: 5843C-3030GBT Report No. SC1406705B Page 4 of 91 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 CONTENTS Section Page No 1 REPORT SUMMARY ............................................................................................................................... 5 1.1 Introduction ................................................................................................................................................ 6 1.2 Brief Summary Of Results ........................................................................................................................... 7 1.3 Product Information ................................................................................................................................... 8 1.4 EUT Test Configuration ............................................................................................................................. 10 1.5 Deviations From The Standard ................................................................................................................. 12 1.6 Modification Record ................................................................................................................................. 12 1.7 Test Methodology ..................................................................................................................................... 12 1.8 Test Facility Location ................................................................................................................................. 12 1.9 Test Facility Registration ........................................................................................................................... 12 2 TEST DETAILS ...................................................................................................................................... 14 2.1 Conducted Emissions ................................................................................................................................ 15 2.2 Carrier Frequency Separation ................................................................................................................... 16 2.3 Number Of Hopping Frequencies ............................................................................................................. 18 2.4 Time Of Occupancy (Dwell Time) .............................................................................................................. 20 2.5 20 dB Bandwidth ....................................................................................................................................... 28 2.6 99% Emission Bandwidth .......................................................................................................................... 39 2.7 Peak Output Power ................................................................................................................................... 50 2.8 Band-Edge Compliance Of Rf Conducted Emissions ................................................................................. 61 2.9 Spurious Rf Conducted Emissions ............................................................................................................. 68 2.10 Spurious Radiated Emissions .................................................................................................................... 69 2.11 Radiated Immediate Restricted Bands ..................................................................................................... 79 2.12 Receiver Spurious Emissions ..................................................................................................................... 83 3 TEST EQUIPMENT USED ...................................................................................................................... 84 3.1 Test Equipment Used ................................................................................................................................ 85 3.2 Measurement Uncertainty ....................................................................................................................... 86 4 DIAGRAM OF TEST SETUP ................................................................................................................... 87 4.1 Test Setup Diagram ................................................................................................................................... 88 5 ACCREDITATION, DISCLAIMERS AND COPYRIGHT ............................................................................... 90 5.1 Accreditation, Disclaimers and Copyright .....................................................................…

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Test Setup Photos

FCC ID APV-3030GBT IC: 5843C-3030GBT Radiated Emissions Test Setup (below 1GHz) Radiated Emissions Test Setup (above 1GHz) Radiated Emissions Test Setup

Contact Information

Applicant

Imad Rizk(Carrier & Product Certifications Manager)
[email protected]760-814-9697Fax: 760-438-5835

Test Firm

TUV SUD America Inc.Mac Elliott
[email protected]813-284-2736Fax: 978 977 0182

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz3.80 mW
Confidentiality
Long Term
Grant Notes
Output power is conducted. The antenna(s) used for this transmitter must be used 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 provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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