
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Guardian-100™ Guardian-200™ Guardian-400™ Guardian-900™ Narrowband IP Router User Manual PN 001-5008-000 Rev 8E Preliminary ETSI Version Revised May 27, 2010 REVISION HISTORY REV DATE REVISION DETAILS 0 Dec 11, 2010 Initial Release as 001-5006-000. IMPORTANT NOTICE Because of the nature of wireless communication, transmission and reception of data can never be guaranteed. Data may be delayed, corrupted (i.e., have errors), or be totally lost. Significant delays or losses of data are rare when wireless devices such as the Guardian are used in a normal manner with a well-constructed network. Guardian should not be used in situations where failure to transmit or receive data could result in damage of any kind to the user or any other party, including but not limited to personal injury, death, or loss of property. CalAmp accepts no responsibility for damages of any kind resulting from delays or errors in data transmitted or received using Guardian, or for the failure of Guardian to transmit or receive such data. COPYRIGHT NOTICE © Copyright 2007 CalAmp. Products offered may contain software proprietary to CalAmp. The offer of supply of these products and services does not include or infer any transfer of ownership. No part of the documentation or information supplied may be divulged to any third party without the express written consent of CalAmp. RF EXPOSURE COMPLIANCE REQUIREMENTS The Guardian radio is intended for use in the Industrial Monitoring and Control and SCADA markets. The Guardian unit must be professionally installed and must ensure a minimum separation distance listed in the table below between the radiating structure and any person. An antenna mounted on a pole or tower is the typical installation and in rare instances, a 1/2-wave whip antenna is used. Antenna Gain 5 dBi 10 dBi 15 dBi Min Safety Distance (VHF @ max Power) 123cm 218.8cm 389cm Min Safety Distance (UHF @ max Power) 105.7cm 188cm 334.4cm Min Safety Distance (900 MHz @ max power) 63.8cm 115 cm 201.7 cm Note: It is the responsibility of the user to guarantee compliance with the FCC MPE regulations when operating this device in a way other than described above. The Guardian radio uses a low power radio frequency transmitter. The concentrated energy from an antenna may pose a health hazard. People should not be in front of the antenna when the transmitter is operating. The installer of this equipment must ensure the antenna is located or pointed such that it does not emit an RF field in excess of Health Canada limits for the general population. Recommended safety guidelines for the human exposure to radio frequency electromagnetic energy are contained in the Canadian Safety Code 6 (available from Health Canada) and the Federal Communications Commission (FCC) Bulletin 65. RF Exposure Any changes or modifications not expressly approved by the party responsible for compliance (in the country where used) could void the user's authority to operate the equipment. REGULATORY CERTIFICATIONS The Guardian radio is available in several different models each with unique frequency bands. Each model of Guardian may have different regulatory approval as shown in the table below. UL Certification All models UL approved when powered with a listed Class 2 source. DECLARATION OF CONFORMITY FOR MODEL # 140-5046-400 This device (Guardian model #140-5046-400) is a data transceiver intended for commercial and industrial use in all EU and EFTA member states. Česky [Czech] CalAmp tímto prohlašuje, že tento rádio je ve shodě se základními požadavky a dalšími příslušnými ustanoveními směrnice 1999/5/ES. Dansk [Danish] Undertegnede CalAmp erklærer herved, at følgende udstyr radio overholder de væsentlige krav og øvrige relevante krav i direktiv 1999/5/EF. Deutsch [German] Hiermit erklärt CalAmp, dass sich das Gerät radio in Übereinstimmung mit den grundlegenden Anforderungen und den übrigen einschlägigen Bestimmungen der Richtlinie 1999/5/EG befindet. Eesti [Estonian] Käesolevaga kinnitab CalAmp seadme raadio vastavust direktiivi 1999/5/EÜ põhinõuetele ja nimetatud direktiivist tulenevatele teistele asjakohastele sätetele. English Hereby, CalAmp, declares that this radio is in compliance with the essential requirements and other relevant provisions of Directive 1999/5/EC. Español [Spanish] Por medio de la presente CalAmp declara que el radio cumple con los requisitos esenciales y cualesquiera otras disposiciones aplicables o exigibles de la Directiva 1999/5/CE. Ελληνική [Greek] ΜΕ ΣΗΝ ΠΑΡΟΤΑ CalAmp ΔΗΛΩΝΕΙ ΟΣΙ ΡΑΔΙΌΦΩΝΟ ΤΜΜΟΡΦΩΝΕΣΑΙ ΠΡΟ ΣΙ ΟΤΙΩΔΕΙ ΑΠΑΙΣΗΕΙ ΚΑΙ ΣΙ ΛΟΙΠΕ ΥΕΣΙΚΕ ΔΙΑΣΑΞΕΙ ΣΗ ΟΔΗΓΙΑ 1999/5/ΕΚ. Français [French] Par la présente CalAmp déclare que l'appareil radio est conforme aux exigences essentielles et aux autres dispositions pertinentes de la directive 1999/5/CE. Italiano [Italian] Con la presente CalAmp dichiara che questo radio è conforme ai requisiti essenziali ed alle altre disposizioni pertinenti stabilite dalla Certifications Model Number Frequency Range FCC IC (DOC) European Union EN 300 113 Australia/New Zealand 140-5016-500 136 – 174 MHz NP4-5016-500 773B-5016500 140-5016-501 136 – 174 MHz NP4-5016-500 773B-5016500 140-5026-500 216 – 222 MHz NP4-5026-500 773B-5026500 140-5026-501 216 – 222 MHz NP4-5026-500 773B-5026500 140-5046-300 406 - 470 MHz NP4-5046-500 773B-5046500 140-5046-301 406 - 470 MHz NP4-5046-500 773B-5046500 140-5046-500 450 - 512 MHz NP4-5046-500 773B-5046500 140-5046-501 450 - 512 MHz NP4-5046-500 773B-5046500 140-5096-500 928 - 960 MHz NP4-5096-500 773B-5096500 140-5096-501 928 - 960 MHz NP4-5096-500 773B-5096500 direttiva 1999/5/CE. Latviski [Latvian] Ar šo CalAmp deklarē, ka radio atbilst Direktīvas 1999/5/EK būtiskajām prasībām un citiem ar to saistītajiem noteikumiem. Lietuvių [Lithuanian] Šiuo CalAmp deklaruoja, kad šis radijo atitinka esminius reikalavimus ir kitas 1999/5/EB Direktyvos nuostatas. Nederlands [Dutch] Hierbij verklaart CalAmp dat het toestel radio in overeenstemming is …
Text truncated - open the document above for the full version.
Calamp Wireless Networks Corporation Waseca, Minnesota Calamp Wireless Networks Corporation hereby requests that our grant for NP4-5016-500 list frequencies outside of the FCC allocated Part 90 frequencies per FCC 2.807. The reason for this request is that Calamp Wireless Networks Corporation has United States government and military customers that require use of these frequencies. Chris Ludewig Director of Engineering
Attn: Reviewing Engineer December 17, 2010 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 RE: CONFIDENTIALITY REQUEST FOR Guardian RADIO TRANSCEIVER FCC ID: NP4-5016-500 To Whom It May Concern: This letter serves as an official request for confidentiality under FCC Rule Secton 0.457 and 0.459. We have requested the item listed below as items 1 – 4, required to be submitted with this application be withheld from public review. 1. Circuit Schematics Attachment entitled: #11 Guardian LED Display Board Schematic.pdf Attachment entitled: #11 Guardian Modem Schematic.pdf Attachment entitled: #11 Guardian RF Board Schematic.pdf 2. Bills of materials Attachment entitled: #12 Guardian LED Display Board BOM.pdf Attachment entitled: #12 Guardian Modem BOM.pdf Attachment entitled: #12 Guardian RF BOM.pdf 3. Block Diagrams Attachment entitled: #10 Guardian LED Display Board Block Diagram.pdf Attachment entitled: #10 Guardian Modem Block Diagram.pdf Attachment entitled: #10 Guardian RF Block Diagram.pdf 4. Circuit Description Attachment entitled: #5 Guardian Circuit Description.pdf This request is based on the fact that these are proprietary trade secrets of CalAmp. CalAmp does not make this information available to the public. Releasing this information gives competitors an unfair advantage of our proprietary research and development efforts. Sincerely, Chris Ludewig Director of Engineering
101210-19 THIS MUST BE SIGNED BY THE APPLICANT AND SHOULD BE PLACED ON APPLICANTS LETTERHEAD ONLY IF AGENT IS SUBMITTING APPLICATION Attn: Director of Certification Authority to Act as Agent I appoint American Certification Body Inc.__ to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in Industry Canada’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for Certification, as specified by American Certification Body, Inc. (ACB), still resides with ___(applicant name and address)___. Dated this 17 th day of December, 2010. Agency Agreement Expiration Date: (Typically 8-12 months) By: __________________ _Chris Ludewig____________ (Signature) (Print name) Title: _Director of Engineering___________ On behalf of: Calamp Wireless Networks Corpoeration_______________ (Company Name) Telephone: ____________507-833-6717______________
General Information The following report has been generated for FCC Certification of Calamp Wireless Networks Corporation Model 140-5016-500, VHF Transceiver. Unless otherwise noted, all of the measurements were conducted following the procedures set forth in the TIA/EIA-603-C standards. Trade Name: Guardian Model Number: 140-5016-500 Manufacturer: Calamp Wireless Networks Corporation Waseca, MN 56093 FCC ID Number: FCC ID: NP4-5016-500 FCC Rules and Regulations: FCC Part 90 Frequency Range: 136-174 MHz Serial Number (s): Pilot #1 Transmitter: Type of Emissions: 9K55F1D 9K35F1D 11K6F1D 14K6F1D 16K4F1D Maximum Power Ratings: 12 Watts Number of Channels: 8 Input Impedance: 50 Ohms, Nominal Voltage Requirement: 10-30 Vdc
External Photos for the Guardian 100 Top, Front, Left Side Bottom, Back, Right Side Duplex Radio Radio with Fan Option
Internal Photos for the Guardian 100 LED Display Board Bottom Top In Chassis Bottom In Chassis Top RF Board Simplex Top Bottom Top with Shields In Chassis With Mid-Plate RF Board Duplex Top Bottom With Shields In Chassis With Mid-Plate Guardian Modem Board Top Bottom In Chassis
RF Exposure Compliance Requirements Guardian Analog Telemetry Radio Modem FCC Rule: 1.1307, 1.1310, 2.1091 (b) (d), 2.1093 Description of Compliance: The Guardian will be professionally installed in the SCADA (Supervisory Control And Data Acquisition) market and will be mounted with a fixed RTU (Remote Terminal Unit). A minimum separation distance listed in the table below must be maintained between the radiating structure and any person to classify as a mobile under FCC MPE regulations. Antenna Gain vs. Recommended Safety Distance Antenna Gain 5 dBi 10 dBi 15 dBi Min Safety Distance (max power) 122.8cm 218.4 cm 388.4 cm Note: It is the responsibility of the user to guarantee compliance with the FCC MPE regulations when operating this device in a way other than described above. The calculation for the more stringent specification, a General Population/Uncontrolled Mobile device according to section 2.1091(b) and section 1.1310 Note 2 is shown below: Limits for General Population/Uncontrolled Exposure: Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Averaging Time (mins) 0.3-1.34 614 1.63 *(100) 30 1.34-30 824/f 2.19/f *(180/f2) 30 30-300 27.5 0.073 0.2 30 300-1500 --- --- f (MHz)/1500 (MHz) 30 1500-100000 --- --- 1.0 30 Environmental Specification: 0.2 mW/cm 2 S = (PG)/(4R 2 ) (OET Bulletin 65) Where: S = Power Density (mW/cm 2 ) P = Power input to the antenna (mW) G = Power Gain of the antenna in the direction of interest relative to an isotropic radiator R = Distance to the center of radiation of the antenna (cm) Distance Calculation for 5dBi antenna: R = ((PG)/(4S)) Antenna Gain: 5.0 dBi 10 (5 dBi/10) = 3.16 Power input to the Antenna: 40.8dBm = 10 (40.8dBm/10) = 12000 mW R = ((12000mW*3.16)/(4*0.2 mW/cm 2 )) = 122.8 cm (Minimum Distance) Distance Calculation for 10dBi antenna: R = ((PG)/(4S)) Antenna Gain: 10.0 dBi 10 (10 dBi/10) = 10 Power input to the Antenna: 40.0dBm = 10 (40.8dBm/10) = 12000 mW R = ((12000mW*10)/(4*0.2 mW/cm 2 )) = 218.5 cm (Minimum Distance) Distance Calculation for 15dBi antenna: R = ((PG)/(4S)) Antenna Gain: 15.0 dBi 10 (15dBi/10) = 31.6 Power input to the Antenna: 40.0dBm = 10 (40.8dBm/10) = 12000 mW R = ((12000mW*31.6)/(4*0.2 mW/cm 2 )) = 388.4 cm (Minimum Distance)
Page 1 of 39 CAlamp Wireless Networks Corp. 299 Johnson Avenue, Suite 110 Waseca, MN 56093-0833 USA Phone: 507-833-8819 Fax: 507-833-6748 FCC Part 90 Certification Application FCC Form 731 For The Guardian VHF RADIO MODEM FCC ID: NP4-5016-500 Page 2 of 39 TABLE OF CONTENTS Page # Test 1: Transmitter Rated Output Power 3 Test 2: Transmitter Spurious and Harmonic Output 4 Test 3: Transient Frequency Behavior 7 Test 4: Frequency Stability with Variation in Supply Voltage 10 Test 5: Frequency Stability with Variation in Ambient Temperature 12 Test 6: Transmitter Occupied Bandwidth - Mask D 14 12.5 kHz Half Channel Mask D 16 25 kHz Full Channel Mask C 21 Test 7: Field Strength of Spurious Radiation 28 Calibration Information 39 Page 3 of 39 NAME OF TEST: Transmitter Rated Power Output RULE PART NUMBER: FCC: 2.1046 (a) (c) TEST RESULTS: See results below TEST CONDITIONS: Standard Test Conditions TEST EQUIPMENT: 50-Ohm Atten, Bird Electronics Model 50-A-FFN-20 (20dB, 50W) 50-Ohm Atten, Bird Electronics Model 10-A-MFN-10 (10dB, 10W) Power Supply, Instek Model GPS-2303 Digital Multimeter, Fluke 8012A Power Meter, Model HP437B TEST SET-UP: TEST RESULTS: Frequency ( MHz ) DC Voltage at Final ( Vdc ) DC Current into Final ( Adc ) DC Power into Final ( W ) RF Power Output ( W ) 155.1 12.0 2.34 28.1 12.0 155.1 8.2 0.71 5.8 1.0 TEST UNIT ATTENUATOR POWER METER POWER SUPPLY DIGITAL MULTIMETER Page 4 of 39 NAME OF TEST: Transmitter Spurious and Harmonic Outputs RULE PART NUMBER: FCC: 2.1051, 90.210 (c,3)(d,3) MINIMUM STANDARDS: For 12 Watts: 50+10Log 10 (12 Watts) = -60.8 dBc or -65dBc, whichever is the lesser attenuation. For 1 Watt: 50+10Log 10 (1 Watt) = -50 dBc or –65 dBc, whichever is the lesser attenuation. TEST RESULTS: Meets minimum standards ( see data on following pages ) TEST CONDITIONS: Standard Test Conditions, 25 C RF Voltage measured at antenna terminals TEST PROCEDURE: TIA/EIA – 603-C TEST EQUIPMENT: 50-Ohm Atten, Bird Electronics Model 50-A-FFN-20 (20dB, 50W) 50-Ohm Atten, Bird Electronics Model 10-A-MFN-10 (10dB, 10W) Power Supply, Instek Model GPS-2303 Spectrum Analyzer, HP8561B Power Meter, Model HP437B Reference Generator, Agilent E8257D High Pass Filter, Mini Circuits BHP-300 TEST SET-UP: MEASUREMENT PROCEDURE: 1. The transmitter carrier output frequency is 136.025, 138.025, 150.1, 173.975MHz. The reference oscillator frequency is 23.040 MHz. The power amplifier has voltage levels at 12.0 Volts and 8.3 Volts for 12 watts and 1 watt, respectively. 2. The carrier reference was established on the spectrum analyzer with the filter by-pass in place. Then the spectrum was scanned from DC to 2 Fc. Finally, the high pass filter was inserted to null the carrier fundamental and extend the range of the spectrum analyzer for harmonic measurements above 2 Fc. 3. At each spurious frequency, generation substitution was used to establish the true spurious level. 4. The spectrum was scanned to the 10 th harmonic of the highest internally generated frequency. Filter By-Pass TEST UNIT ATTENUATORS HIGH PASS FILTER POWER SUPPLY SPECTRUM ANALYZER REFERENCE GENERATOR POWER METER Page 5 of 39 Tuned Frequency 136.025 MHz Tuned Frequency 136.025 MHz Power 12.0 Watts Power 1.0 Watts 40.8 dBm 30.0 dBm Min Specification -60.8 dBc Min Specification -50.0 dBc Worse Case -75 dBc Worse Case -69 dBc Spurious Relative to Spurious Relative to Frequency (MHz) Harmonic Carrier (dBc) Frequency (MHz) Harmonic Carrier (dBc) 272.050 2 -75 272.050 2 -69 408.075 3 -107 408.075 3 -113 544.100 4 -116 544.100 4 -120 680.125 5 -120 680.125 5 -122 816.150 6 -124 816.150 6 -128 952.175 7 -126 952.175 7 -128 1088.200 8 -123 1088.200 8 -128 1224.225 9 -128 1224.225 9 -128 1360.250 10 -132 1360.250 10 -128 Tuned Frequency 138.025 MHz Tuned Frequency 138.025 MHz Power 12.0 Watts Power 1.0 Watts 40.8 dBm 30.0 dBm Min Specification -60.8 dBc Min Specification -50.0 dBc Worse Case -81 dBc Worse Case -71 dBc Spurious Relative to Spurious Relative to Frequency (MHz) Harmonic Carrier (dBc) Frequency (MHz) Harmonic Carrier (dBc) 276.050 2 -81 276.050 2 -71 414.075 3 -106 414.075 3 -111 552.100 4 -116 552.100 4 -117 690.125 5 -118 690.125 5 -120 828.150 6 -123 828.150 6 -124 966.175 7 -126 966.175 7 -128 1104.200 8 -126 1104.200 8 -128 1242.225 9 -129 1242.225 9 -128 1380.250 10 -129 1380.250 10 -128 Page 6 of 39 Tuned Frequency 150.1 MHz Tuned Frequency 150.1 MHz Power 12.0 Watts Power 1.0 Watts 40.8 dBm 30.0 dBm Min Specification -60.8 dBc Min Specification -50.0 dBc Worse Case -96 dBc Worse Case -90 dBc Spurious Relative to Spurious Relative to Frequency (MHz) Harmonic Carrier (dBc) Frequency (MHz) Harmonic Carrier (dBc) 300.200 2 -96 300.200 2 -90 450.300 3 -107 450.300 3 -110 600.400 4 -116 600.400 4 -118 750.500 5 -119 750.500 5 -121 900.600 6 -123 900.600 6 -123 1050.700 7 -125 1050.700 7 -128 1200.800 8 -130 1200.800 8 -128 1350.900 9 -132 1350.900 9 -128 1501.000 10 -134 1501.000 10 -128 Tuned Frequency 173.975 MHz Tuned Frequency 173.975 MHz Power 12.0 Watts Power 1.0 Watts 40.8 dBm 30.0 dBm Min Specification -60.8 dBc Min Specification -50.0 dBc Worse Case -102 dBc Worse Case -105 dBc Spurious Relative to Spurious Relative to Frequency (MHz) Harmonic Carrier (dBc) Frequency (MHz) Harmonic Carrier (dBc) 347.950 2 -102 347.950 2 -105 521.925 3 -110 521.925 3 -110 695.900 4 -116 695.900 4 -117 869.875 5 -116 869.875 5 -120 1043.850 6 -120 1043.850 6 -122 1217.825 7 -123 1217.825 7 -128 1391.800 8 -128 1391.800 8 -128 1565.775 9 -130 1565.775 9 -128 1739.750 10 -129 1739.750 10 -128 Page 7 of 39 NAME OF TEST: Transient Frequency Behavior RULE PART NUMBER: FCC: 90.214 MINIMUM STANDARD: 6.25 kHz channel (used worst case numbers from 136 to 174 MHz) TIME INTERVAL MAXIMUM FREQUENCY DIFFERENCE (kHz) TIME (ms) T1 +/- 6.25 10 T2 +/- 3.125 25 T3 +/- 6.25 10 TEST RESULTS: Meets minimum standards, see data on following pages TEST CONDITIONS: RF Power Level = 12 Watts and 1.0 Watt Standard Test Conditions, 25 C TEST PROCEDURE: TIA/EIA – 603-C TEST…
Text truncated - open the document above for the full version.
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 5 | 9 | 136 MHz - 174 MHz | 12 W | 16K4F1D | 1 ppm |

Viper SC+ 928-960 MHz
Equipment Class
PCB - PCS Licensed Transmitter
VIPER SC+ 900 VHF 880-902 MHZ
Equipment Class
PCB - PCS Licensed Transmitter
VIPER SC+ 200 VHF 215-240MHZ
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
UHF Wireless Radio Modem
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
UHF Wireless Radio Modem
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter