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OWDTR-0006-EPortable trunking radio

HARRIS CORPORATION
Portable trunking radio - FCC ID OWDTR-0006-E - HARRIS CORPORATION
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Application Details

Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Date of Grant
Aug 20, 2000
Application Purpose
Original Equipment
Date of Application
Apr 04, 2000
Equipment Note
Portable trunking radio
Frequency Range
851.00000000 - 869.00000000
Company
HARRIS CORPORATION
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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Operational Description

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Parts List/Tune Up Info

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RF Exposure Info

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Schematics

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Test Report

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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

OWDTR-0006-EExhibit 8Com-Net Ericsson 2.1033 ( c ) 3 INSTRUCTION BOOK (DRAFT) SPD-2000 800MHz 1. Receiver Circuit The FM dual-conversion super heterodyne receiver is designed for operation in the 851-870 MHz frequency range. The Receiver has intermediate frequencies (IF) of 115.65MHz and 450kHz. Adjacent channel selectivity is obtained by using two band pass filters, a 115.65MHz crystal filter and a 450kHz ceramic filter. The RX detector is the phase digitizer. 1-1 Receiver Front-end A RF signal from antenna is coupled though the low pass filter/antenna switch, and band pass filter to the input of low noise amplifier Q101. The output of Q101 is coupled through band pass filter to input of 1’st Mixer Z101. Front End selectivity is provided by these band pass filter. 1-2 1’st Mixer The 1’st Mixer is a Double-Balanced-Mixer Z101, that converts a RF signal the 851-870MHz range to 115.65MHz 1’st IF frequency. The signal on the output of Z101 is provided to the input of 1’st IF amplifier Q102. 1-3 1’st IF The 1’st IF signal 115.65MHz from the output of the 1’st Mixer is coupled through 1’st IF amplifier Q102 to Crystal filter FL103. The highly-selective crystal filter FL103 provide the first portion of the receiver IF selectivity. The output of the filter is coupled through the impedance-matching net work to IF Receiver U101. 1-4 2’nd Mixer, 2’nd IF filter and 2’nd IF amplifier IF Receiver U101 is an one-chip IC for digital communication system. It includes 2’nd Mixer, 2’nd IF amplifier and Limiter amplifier. With the internal circuits of U101, The 1’st IF signal is amplified an d applied to the input of 2’nd Mixer. The 2’nd local injection frequency 115.2MHz is applied from 2’nd local amplifier Q104 to another input of the 2’nd Mixer. The 2’nd Mixer converts a 1’st IF signal 115.65MHz to 2’nd IF frequency 450KHz. Then the 2’nd IF signal is applied to Ceramic Filter FL105(Wide Band) or FL106 (Narrow Band), which provides the 450KHz selectivity. Those IF filters are controlled by IF.NARROW signal from the microcomputer (HILLARY:U700). The output of the 2’nd IF filter is applied through 2’nd IF amplifier and Ceramic Filter FL104(Wide Band) to Limiter amplifier. This IF signal is amplified and balanced outputs, RXIF and RXIF, are sent to HILLARY. These two lines, one positive and the other negative, are used to cancel out any noise that might get on the line. These balance outputs is applied to the phase digitizer on HILLARY and detected. 2, Transmitter Circuit The Transmitter Circuit consists of Modulator IC (U203), Notch Filter, Variable attenuator (CR201), Buffer Amplifier (U202), Low Pass Filter, PA Module (U201). Automatic Power Control Circuit (Q207, Q201 and U301), Antenna Switch Module (Z302). 2-1 Modulator IC and Notch Filter The main VCO, in the synthesizer circuit, is programmed to generate the TX local Injection frequencies (806 to 815 MHz and 851 to 870 MHz). The transmitter carrier frequencies are same o f TX local Injection frequencies. Notch Filter consists of C212, C233, C244, and L210. The output of U203 is applied to Notch Filter that is through an attenuator pad R204-R206. OWDTR-0006-EExhibit 8Com-Net Ericsson 2-2 Variable attenuator The output of Notch Filter is applied to Variable attenuator circuit. Variable attenuator circuit consists of R202, R203, and CR201. The transmitter carrier power is controlled by applying control voltage from Power Control Circuit. This control voltage is applied through resistor R203 to the anode o f variable capacitor CR201 and R202. 2-3 Buffer Amplifier and Low Pass Filter The output of Variable attenuator circuit is applied to the Buffer Amplifier U202 that is amplified to +6dBm. The collector voltage for U202 is provided Switch circuit and is controlled by DPTT. Low Pass Filter consists of C207, C208, C232, and L201. The output of U202 is applied to PA module input through the Low Pass Filter. 2-4 PA Module The input of the PA Module is amplified to about 3W. B+ (7.5 V dc) is connected U201 through RF chokes L211. The PA Module consists of two stages RF amplifier. The first stage power supply voltage is supplied by power control circuit. The second RF amplifier operates in Class-C. This outpu t can be regulated by power control circuit. 2-5 Automatic Power Control The Automatic Power Control circuit samples the output power to the antenna to maintain a constant power level across the band. The Automatic Power Control circuit controls the Vcont voltage to PA Module U201. Directional coupler is include of Antenna Switch Module. Directional coupler provides a sample d signal of transmit power for diode. Diode produce a positive DC voltage proportional to the transmitter circuit output power level, that is compared to a comparator (U301) from TX POWER CONT of control unit. The output of U301 is applied to DC amplifier Q207, then the output voltage o f Q207 controls to the Vcont of PA Module for constant output power level. 2-6 Antenna Switch Module The Antenna Switch Module consists of switch circuit and the Low Pass Filter. During transmit, DPTT line from HILLARY is high level. Transistor Q205 turns on supply +7.2V to Antenna Switch Module Z302. When transmitting, the Antenna switch diode is low impedance. 3. Frequency Synthesizer Circuit It consists of the Reference Oscillator, PLL Frequency Synthesizer chip U305, Loop filter, Rx VCO Z303, and Tx VCO Z304. PLL Frequency Synthesizer chip receives PLL data, and control information from the microcomputer and from this generates the Tx/Rx RF frequencies. It also provides frequency lock status to the microcomputer. Rx VCO and Tx VCO are locked to the Reference Oscillator by a single direct-divide synthesis loop consisting of the Feedback Buffer, Prescaler, and PLL Frequency Synthesizer chip. The Tx VCO operates over a frequency range of 806-825MHz, 851-870MHz. The Rx VCO operates over a frequency range of 735.35-754.35MHz. OWDTR-0006-EExhibit 8Com-Net Ericsson -1 Reference Oscillator he reference o…

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Attestation Statements

OWDTR-0006-E EXHIBIT 2 Com-Net Ericsson. NOTIFICATION OF ATTESTATION The tec hnical data contained in this application has bee n taken under my sup ervision and is certified true and correct. Name: Kevin Markey Position: Senior Staff Engi nee r Com-Net Ericss on Date: April 5, 2000

Cover Letter(s)

April 4, 2000 Federal Communications Commissions Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Attention: Equipment Authorization Branch Subject: Type Acceptance FCC ID: OWDTR-0006-E Members of the Commission, Com-Net Ericsson Inc., 1 Mountain View Road, Lynchburg, VA, herein requests occupational/controlled environment Type Acceptance for the OWDTR-0006-E portable transceiver. The OWDTR-0006-E transceiver is a push-to-talk trunking portable that operates in the 806-869 MHz band at a power level of 1 to 3 watts. The OWDTR-0006-E complies with section 90.203 in that the user cannot program transmit frequencies into the transceiver without the use of additional external equipment, which is controlled by the administrator. The OWDTR-0006-E operates in both 25 kHz and NPSPAC modes. The OWDTR-0006-E is capable of talk-around in both the 25 kHz and NPSPAC mode. All tests have been performed in part 2 and part 90 pursuant to the Type Approval requirements. Emissions designators to cover both receive and transmit frequencies for the purpose of using the talk-around function is being requested. The OWDTR-0006-E has been evaluated for S.A.R. and found to be well within the limits specified in 47 CFR 2.1093 (d) for occupational use. Com-Net Ericsson will coordinate with organizations operating with this transceiver to ensure RF exposure requirements are met. Sincerely, Kevin Markey Sr. Staff Engineer (804) 592-6876 FAX (804) 592-7397 Email: [email protected]

External Photos

OWDTR-0006-EExhibit 3Ericsson Inc. Front View OWDTR-0006-EExhibit 3Ericsson Inc. Back View

ID Label/Location Info

OWDTR-0006-EEXHIBIT 1Com-Net Ericsson LABLES

Internal Photos

OWDTR-0006-EExhibt 9Com-Net Ericsson. Front Main Board Per. 2.1033 (c) 12 OWDTR-0006-EExhibt 9Com-Net Ericsson. Front Case Per. 2.1033 (c) 12 OWDTR-0006-EExhibt 9Com-Net Ericsson. Front KeyBoard Per. 2.1033 (c) 12 OWDTR-0006-EExhibt 9Com-Net Ericsson. Back Main Board Per. 2.1033 (c) 12 OWDTR-0006-EExhibt 9Com-Net Ericsson. Back Case Per. 2.1033 (c) 12 OWDTR-0006-EExhibt 9Com-Net Ericsson. Back KeyBoard Per. 2.1033 (c) 12

Operational Description

CIRCUIT AND DEVICE DESCRIPTION 2.1033 ( c ) (10 ) (11) cont. a. b. Circuit or Devices employed for limiting modulation: Reference is made to the schematic diagram MD00-TC-0081 in Exhibit 4. Instantaneous audio limiting is accomplished Mixed Digital-Analog IC (PATTI : U500). The PATTI provides both limiting and Post-Limiting filtering. The PATTI runs from a regulated supply voltage, which prevents deviation changes vs. changes in radio power supply voltage. Following the Limiter, an audio signal is provided though Post-Limiting filtering to the Transmit CODEC and is converted to PCM signal. PCM signal is sent to DSP. Any optional tone modulation such as CTCSS modulation is added in DSP (U600). (12) Since there are no detail data or information about the core of DSP, GOYO cannot describe this section. (10)Oscillator and other Frequency Stabilizing Circuit Descriptions: The frequency reference is a self-contained quartz crystal oscillator (TCXO) module, operating 19.2MHz. The TCXO is compensated by internal temperature compensating circuit providing 1.5ppm stability from –30°C to +60°C. (11) a. b. c. d. e. Circuit or devices employed for suppression of spurious radiation: The radio has metal rear cover and internal plastic molded case with shields to reduce radiation. The reverse side of front assembly is metallized to suppress radiation. Extensive use of chip bypass capacitors in each module to reduce radiation from interconnecting leads. The radio has Low pass filters to reduce harmonics at RF Power Amplifier input and VCO output. During acquisition of the synthesizer phase lock loop, the transmitter output is inhibited by the removal of DC voltage to the gain control stage of the RF power chain and by that DC power source is not applied to pre-amplifier and modulator. SECTION 3 OCCUPIED BANDWIDTH (FOR 25 kHz CHANNELIZATION) Method of Measurement Per 2.1049 Data on Occupied Bandwidth is presented in the form of a spectrum analyzer plot which illustrates the transmitter sidebands. A plot is taken of the car- rier sideband modulated with a 2500 Hz tone at a level 16 dB greater than that required to pro- duce 50 percent modulation. (The spectrum analyzer grid indicates the reference level of the carrier unmodulated in all exhibits.) SECTION 3 Page 9-12 Bn = 2M + 2DK where M = 3000 Hz Telephony D = 4000 Hz K= 1(assumed) Bn = 14000 Therefore, Emission Designator = 14K0F3E SECTION 3 Page 13,14 Bn = 2(B/2) + 2DK where B=9600Hz Data, Digital Voice D = 3000 Hz K=1(assumed) Bn=15600 Therefore, Emission Designators are, 15K6F1D 15K6F1E SECTION 3 OCCUPIED BANDWIDTH (FOR NPSPAC CHANNELIZATION) Method of Measurement Per 2.1049 Data on Occupied Bandwidth is presented in the form of a spectrum analyzer plot which illustrates the transmitter sidebands. A plot is taken of the carrier sideband modulated with a 2500 Hz tone at a level 16 dB greater than that required to produce 50 percent modulation. (The spectrum analyzer grid indicates the reference level of the carrier unmodulated in all exhibits.) Section 3, Page 20-23 Bn = 2M+2DK where M = 3000 Hz Voice D = 3500 Hz K = 1 (assumed) Bn = 13000 Hz Therefore, Emission Designator = 13K0F3E Section 3, Page 24,25 Bn = 2(B/2) + 2DK where B = 9600bps Data D = 2600 bps K=1 ( assumed Bn= 14800Hz Therefore, Emission Designator=14K8F1D, 14K8F1E

Parts List/Tune Up Info

OWDTR-0006-EExhibit 10Com-Net Ericsson FUNCTION OF ACTIVE CIRCUIT DEVICES 2.1033 (c) (10) Schematic Designation Function Interface Board Unit : SPD-2000 I/F P/B Schematic Diagram CR1-CR14Light Emission Z1LCD Module Main Board Unit : LOGIC SPD-2000 Main Logic Block Schematic Diagram CR500,CR706-CR709,CR810-CR81,CR900-CR902Protection CR702-CR705Switching diode R700,CR701Schottky Barrier diode Q700Buffer Q500,Q501,Q701-Q705,Q900,Q901,Q902,Q903,Q904Switch U500Digitizing, Voice CODEC and Digital to Analogue conversions U501,U503,U705OP Amp U502Audio Power Amplifier U600DSP U601SRAM U700CPU U701Flash ROM U702SRAM U703EEPROM U704SERIAL No. ROM U900,U902,U904Regulator OWDTR-0006-EExhibit 10Com-Net Ericsson FUNCTION OF ACTIVE CIRCUIT DEVICES 2.1033 (c) (10 ) (continued) Main Board Unit : RADIO SPD-2000 Main Radio Block Schematic Diagram CR101,CR103,CR104,CR203Protection CR201Attenuator CR202Switching diode Q101-Q104,U202RF Amplifier Q201,Q207DC Amplifier Q105,Q202-Q206,Q301,Q302Switch U102,U304,U306Switch U101 IF Amplifier and Mixer U201PA Module (RF Power Amplifier) U203QPSK Modulation IC U205,U206,U207Regulator IC U301OP Amp U305Synthesizer IC U307 Inverter Z302Switch and Filter Z303-Z305Oscillator OWDTR-0006-EExhibit 10Com-Net Ericsson ALIGNMENT PROCEDURE 2.1033 C (9) 1. Test Equipment Service Monitor( HP8920B or equivalent) DC Power Supply(7.5 Volts at 3A) IBM Personal Computer (or compatible equivalent) Programming Interface (TQ3370) Serial Interface Cable SPD Radio Programming Software (______) SPD Programming Cable ( _______) BNC-BNC Cable DC Power Cable with Dummy Battery 2. Initial setup a. Attach DC Power Cable with Dummy Battery to Radio and DC Power supply. b. Attach Serial Interface Cable to Programming Interface and personal Computer. c. Attach Programming Cable to Radio and Programming Interface. d. Attach RF coaxial cable (50 ohms) between antenna connector and service monitor (RF port). e. Attach BNC-BNC Cable between Programming Interface and Service Monitor. (from RX AUDIO to AUDIO INPUT HI and from TX AUDIO to AUDIO OUTPUT) f. Set DC Power Supply to 7.5 Volts dc. g. Apply power to Radio, and turn radio on/off switch to on position. h. Execute SPD Radio Programming Software. OWDTR-0006-EExhibit 10Com-Net Ericsson ALIGNMENT PROCEDURE 2.1033 C (9) (continued) 3. TX frequency Adjustment a. Enter Test Modecmd 0 b. Set TX frequencycmd 70 (frequency) (ex.) set to 806MHz cmd 70 806000000 c. Key transmittercmd 74 1 (Key : cmd 74 1 , Unkey : cmd 74 0 ) d. Adjust TX frequency cmd 8 (value) value : 0-1023 4. TX power Adjustment a. Enter Test Modecmd 0 b. Set TX frequencycmd 70 (frequency) c. Key transmittercmd 74 1 d. Set TX power levelcmd 71 x1 x2 x3x1:power level setting (0=0.5W , 1=1W , 2=3W) x2:Tx band (0= 806-825 MHz , 1= 851-870 MHz) x3:frequency band location (0=low, 1=mid, 2=high ) 5. Tx modulation a. Enter Test Modecmd 0 b. Set TX frequencycmd 70 (frequency) c. Key transmittercmd 74 1 d. Unmute Microphonecmd 75 1(Unmute : cmd 75 1 , Mute : cmd 75 0) e. Enable external miccmd 5 1 f. Adjust the input level until it becomes the modulation to expect. g. Otherwise, when radio transmit v.52 datacmd 76 6. RX frequency Adjustment a. Enter Test Modecmd 0 b. Set RX frequencycmd 50 (frequency)(ex.) set to 851MHz cmd 70 851000000

RF Exposure Info

Certification Report on Specific Absorption Rate (SAR) Experimental Analysis Com-Net Ericsson Jaguar 700P Test Date: 24 March, 2000 51 Spectrum Way Nepean ON K2R 1E6 Tel: (613) 820-2730 Fax: (613) 820-4161 email: [email protected] This report shall not be reproduced, except in full, without the express written premission of APREL laboratories CNEB-Jaguar 700P-3407 Page 1 of 21Project #: CNEB-Jaguar 700P w Clip-3407 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. CERTIFICATION REPORT Subject:Specific Absorption Rate (SAR) Experimental Analysis Product:800 MHz EDACS trunking radio Model:Jaguar 700P Client:Com-Net Ericsson Critical Radio Systems Address:Mountain View Road Lynchburg, VA 24501 USA Project #:CNEB-Jaguar 700P w Clip-3407 Prepared by:APREL Laboratories 51 Spectrum Way Nepean, Ontario K2R 1E6 Tested by___________________________Date: ________________ Paul G. Cardinal, Ph.D. Submitted by____________________________Date: _________________ Dr. Paul G. Cardinal Director, Laboratories Approved by_____________________________Date: _________________ Dr. Jacek J. Wojcik, P. Eng. Page 2 of 21Project #: CNEB-Jaguar 700P w Clip-3407 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. FCC ID:OWDTR0006-E Applicant:Com-Net Ericsson Critical Radio Systems Equipment:800 MHz EDACS trunking radio Model:Jaguar 700P Standard:FCC 96 –326, Guidelines for Evaluating the Environmental Effects of Radio- Frequency Radiation ENGINEERING SUMMARY This report contains the results of the engineering evaluation performed on a 800 MHz EDACS trunking radio. The measurements were carried out in accordance with FCC 96-326. The 800 MHz EDACS trunking radio was evaluated at its maximum nominal power level, 3 W (34.8 dBm). The 800 MHz EDACS trunking radio was tested at high, middle, and low frequencies in both of the 806-824 MHz EDACS transmit band and the 851-870 MHz talk-around transmit band with the belt clip against the phantom and with both types of antennas offered. The maximum SAR was found to coincide with the peak performance RF output power of the low channel in the EDACS transmit band (L1, 14, 807.5000 MHz) with the half-wavelength antenna. Test data and graphs are presented in this report. Based on the test results and on how the device will be used, it is certified that the product meets the requirements as set forth in the above specifications, for an occupational/controlled RF exposure environment for partial body exposure. The results presented in this report relate only to the sample tested. Page 3 of 21Project #: CNEB-Jaguar 700P w Clip-3407 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. TABLE OF CONTENTS 1.Introduction........................................................................................................................4 2.Applicable Documents.......................................................................................................4 3.Equipment Under Test.......................................................................................................4 4.Test Equipment..................................................................................................................5 5.Test Methodology..............................................................................................................5 6.Test Results........................................................................................................................6 6.1.Transmitter Characteristics........................................................................................6 6.2.SAR Measurements....................................................................................................7 7.Discussion..........................................................................................................................9 8.Conclusions......................................................................................................................10 Appendix A..............................................................................................................................11 Appendix C..............................................................................................................................17 Appendix D..............................................................................................................................18 Appendix E...............................................................................................................................21 Page 4 of 21Project #: CNEB-Jaguar 700P w Clip-3407 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. 1. INTRODUCTION Tests were conducted to determine the Specific Absorption Rate (SAR) of a sample of a Com-Net Ericsson Jaguar 700P 800MHz EDACS trunking radio. These tests were conducted at APREL Laboratories’ facility located at 51 Spectrum Way, Nepean, Ontario, Canada. A view of the SAR measurement setup can be seen in Appendix A Figure 1. This report describes the results obtained. 2. APPLICABLE DOCUMENTS The following documents are applicable to the work performed: 1) FCC 96-326, Guidelines for Evaluating the Environmental Effects of Radio- Frequency Radiation 2) ANSI/IEEE C95.1-1992, IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fi…

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RF Exposure Info

Certification Report on Specific Absorption Rate (SAR) Experimental Analysis Com-Net Ericsson Jaguar 700P Test Date: 18 May, 2000 51 Spectrum Way Nepean ON K2R 1E6 Tel: (613) 820-2730 Fax: (613) 820-4161 email: [email protected] This report shall not be reproduced, except in full, without the express written permission of APREL Laboratories CNEB-Jaguar 700P-3446 Page 1 of 23Project #: CNEB-Jaguar 700P at Face-3446 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. CERTIFICATION REPORT Subject:Specific Absorption Rate (SAR) Experimental Analysis Product:800 MHz EDACS trunking radio Model:Jaguar 700P Client:Com-Net Ericsson Critical Radio Systems Address:Mountain View Road Lynchburg, VA 24501 USA Project #:CNEB-Jaguar 700P at Face-3446 Prepared by:APREL Laboratories 51 Spectrum Way Nepean, Ontario K2R 1E6 Tested by___________________________Date: ________________ Paul G. Cardinal, Ph.D. Submitted by____________________________Date: _________________ Dr. Paul G. Cardinal Director, Laboratories Approved by_____________________________Date: _________________ Dr. Jacek J. Wojcik, P. Eng. Page 2 of 23Project #: CNEB-Jaguar 700P at Face-3446 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. FCC ID:OWDTR0006-E Applicant:Com-Net Ericsson Critical Radio Systems Equipment:800 MHz EDACS trunking radio Model:Jaguar 700P Standard:FCC 96 –326, Guidelines for Evaluating the Environmental Effects of Radio- Frequency Radiation ENGINEERING SUMMARY This report contains the results of the engineering evaluation performed on a Com-Net Ericsson Critical Radio Systems 800 MHz EDACS trunking radio. The measurements were carried out in accordance with FCC 96-326. The 800 MHz EDACS trunking radio was evaluated at its maximum nominal power level, 3 W (34.8 dBm). The 800 MHz EDACS trunking radio was tested at high, middle, and low frequencies in both of the 806-824 MHz EDACS transmit band and the 851-870 MHz talk-around transmit band with both types of antennas offered while held in front of a face phantom. The maximum SAR was found to coincide with the peak performance RF output power of the high channel in the EDACS transmit band (H1, 5, 824.9875 MHz) with the quarter-wavelength antenna. Test data and graphs are presented in this report. Based on the test results and on how the device will be used, it is certified that the product meets the requirements as set forth in the above specifications, for an occupational/controlled RF exposure environment for partial body exposure. The results presented in this report relate only to the sample tested. Page 3 of 23Project #: CNEB-Jaguar 700P at Face-3446 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. TABLE OF CONTENTS 1.Introduction........................................................................................................................4 2.Applicable Documents.......................................................................................................4 3.Equipment Under Test.......................................................................................................4 4.Test Equipment..................................................................................................................5 5.Test Methodology..............................................................................................................5 6.Test Results........................................................................................................................6 6.1.Transmitter Characteristics........................................................................................6 6.2.SAR Measurements....................................................................................................7 7.Discussion..........................................................................................................................9 8.Conclusions......................................................................................................................11 Appendix A..............................................................................................................................12 Appendix B..............................................................................................................................18 Appendix C..............................................................................................................................19 Appendix D..............................................................................................................................20 Appendix E...............................................................................................................................23 Page 4 of 23Project #: CNEB-Jaguar 700P at Face-3446 51 Spectrum WayTel. (613) 820-2730 Nepean, Ontario, K2R 1E6Fax (613) 820 4161 e-mail: [email protected] © APREL 2000 This report shall not be reproduced, except in full,without the express written approval of APREL Laboratories. 1. INTRODUCTION Tests were conducted to determine the Specific Absorption Rate (SAR) of a sample of a Com-Net Ericsson Critical Radio Systems Jaguar 700P 800MHz EDACS trunking radio. These tests were conducted at APREL Laboratories’ facility located at 51 Spectrum Way, Nepean, Ontario, Canada. A view of the SAR measurement setup can be seen in Appendix A Figure 1. This report describes the results obtained. 2. APPLICABLE DOCUMENTS The following documents are applicable to the work performed: 1) FCC 96-326, Guid…

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RF Exposure Info

AE/LZT 123 5271/1 R1A Operator’s Manual J AGUAR 700P System/Scan Portable Radio 2 Table Of Contents Page Safety Training Information ........................................................... 3 Operating Rules And Regulations .................................................. 6 Operating Tips ................................................................................. 7 User Interface ................................................................................... 8 Basic Operation .............................................................................. 13 Transmitting A Call In Trunked Mode ........................................ 17 Receiving A Call In Trunked Mode .............................................. 18 Conventional Operation ................................................................ 19 Alert Tones ..................................................................................... 20 Changing The Battery Pack .......................................................... 21 The software contained in this device is copyrighted by Ericsson Inc. Unpublished rights are reserved under the copyright laws of the United States. NOTICE! This manual is published by Ericsson Inc., without any warranty. Improvements and changes to this manual necessitated by typographical errors, inaccuracies of current information, or improvements to programs and/or equipment, may be made by Ericsson Inc., at any time and without notice. Such changes will be incorporated into new editions of this manual. No part of this manual may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying and recording, for any purpose, without the express written permission of Ericsson Inc. Copyright © 2000 Com-Net Ericsson Critical Radio Systems, Inc. All rights reserved. 3 SAFETY TRAINING INFORMATION Your Com-Net Ericsson radio generates RF electromagnetic energy during transmit mode. This radio is designed for and classified as “Occupational Use Only” meaning it must be used only during the course of employment by individuals aware of the hazards and the ways to minimize such hazards. This radio is NOT intended for use by the “General Population” in an uncontrolled environment. This radio has been tested and complies with the FCC RF exposure limits for “Occupational Use Only.” In addition, your Com-Net Ericsson radio complies with the following Standards and Guidelines with regard to RF energy and electromagnetic energy levels and evaluation of such levels for exposure to humans: • FCC OET Bulletin 65 Edition 97-01 Supplement C, Evaluating Compliance with FCC Guidelines for Human Exposure to Radio Frequency Electromagnetic Fields. • American National Standards Institute (C95.1 – 1992), IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz. • American National Standards Institute (C95.3 – 1992), IEEE Recommended Practice for the Measurement of Potentially Hazardous Electroma…

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Contact Information

Applicant

Thomas Camper, Jr.(Regulatory Manager)
[email protected]434-455-9367Fax: 434-455-6851

Technical Contact

Com-Net Ericsson Critical Radio Systems, Inc.Kevin p Markey
[email protected]804-592-6876

1 Mountain View Road · Lynchburg, Virginia · United States

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
69851 MHz - 869 MHz3 W14K8F1E1.5 ppm

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