
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Applicant : Matsushita Electric Works, Ltd. Transmitter Type : HHV20021106 Emergency Portable Cellular Telephone ECG2111 Operating Instructions Draft Version 1.0 November 20, 2001 Applicant: Matsushita Electric Works, Ltd. Transmitter Type: HHV20021106 Emergency Portable Cellular Telephone SAFETY INFORMATION EXPOSURE TO RADIO FREQUENCY SIGNALS In August 1996, the Federal Communications Commission (FCC) adopted RF exposure guidelines with safety levels for handheld wireless phones. Those guidelines are consistent with the safety standard previously set by both U.S. and international standards bodies. The design of this phone complies with the FCC guidelines and these international standards bodies; ANSI C95.1(1992)* NCRP Report 86(1986)* ICNIRP(1996)* * American National Standards Institute; National Council on Radiation Protection and Measurements; International Commission on Non-Ionizing Radiation Protection Those standards were based on comprehensive and periodic evaluations of the relevant scientific literature. Over 120 scientists, engineers, and physicians from universities, government health agencies, and industry reviewed the available body of research to develop the ANSI Standard (C95.1). The design of your phone complies with the FCC guidelines in addition to those standards. ANTENNA CARE Use only the supplied or an approved antenna. Unauthorized antennas, modifications, or attachments could damage the phone and may violate FCC regulations. BODY-WORN OPERATION This device is designed to use as a speakerphone which uses a loudspeaker and a high-sensitivity microphone. Accordingly, voice call is designed to be made while holding the device by hand or worn on the body by using a particular belt clip. For body worn operation, this phone has been tested and meets the FCC RF exposure guidelines when used with the accessories supplied or designated for this product. Use of other accessories may not ensure compliance with FCC RF exposure guidelines. Applicant: Matsushita Electric Works, Ltd. Transmitter Type: HHV20021106 Emergency Portable Cellular Telephone TABLE OF CONTENTS 1. OVERVIEW...............................................................................................................................................................2 1.1. F EATURES............................................................................................................................................................2 1.2. CONTROLS...........................................................................................................................................................2 2. OPERATION.............................................................................................................................................................4 2.1. P OWER DOWN MODE............................................................................................................................................4 2.2. EMERGENCY CALL MODE.......................................................................................................................................4 2.2.1. Initiating a Call.............................................................................................................................................4 2.2.2. Establishing Position...................................................................................................................................4 2.2.3. Voice Conversation.....................................................................................................................................5 2.2.4. Emergency Response Center (ERC)..........................................................................................................5 2.3. S ELF TEST MODE..................................................................................................................................................6 2.3.1. Indication by using TEST LED (Flashing/Solid)...........................................................................................6 2.3.1.1. GPS Module Test.................................................................................................................................6 2.3.1.2. AMPS RSSI Test..................................................................................................................................6 2.3.2. Indication by using BATTERY LED (Flashing/Solid)....................................................................................6 2.3.2.1. Battery Condition Test..........................................................................................................................6 2.3.3. Siren Test....................................................................................................................................................6 3. GENERAL SPECIFICATIONS..................................................................................................................................7 4. NOTICE FOR USING EMERGENCY PORTABLE CELLULAR TELEPHONE........................................................8 ECG2111 - 1 - Applicant: Matsushita Electric Works, Ltd. Transmitter Type: HHV20021106 Emergency Portable Cellular Telephone 1. Overview This phone will enable a user to place a call to the Emergency Response Center (ERC) in order to report an emergency condition, automatically provide global positioning, and dispatch to the user's location with minimal effort to the user. Upon activation, the terminal device will place the call via the local cellular system to the emergency reporting center utilizing pre-programmed, stored area code, NNX, and number. Once the call is completed to the emergency center, the terminal device will then automatically provide latitude and longitude positioning through GPS (Global Positioning System) via the selected cellular traffic channel. Once the latitude and longitude data is sent/received, the ERC will have the option to open up the cellulβ¦
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Applicant : Matsushita Electric Works, Ltd. Transmitter Type : HHV20021106 Description of the Caution Card Front side of the caution card Back side of the caution card Photo of the packaging CAUTION Hold it in your hand away from your ear, or use it while it is still on your waist. Never hold the unit close to your ear while using it. For body worn operation, this phone has been tested and meets the FCC RF exposure guidelines when used with the accessories supplied or designated for this product. Use of other accessories may not ensure compliance with FCC RF exposure guidelines. PLEASE READ IMPORTANT MESSAGE EXPOSURE TO RADIO FREQUENCY SIGNALS In August 1996, the Federal Communications Commission (FCC) adopted RF exposure guidelines with safety levels for handheld wireless phones. Those guidelines are consistent with the safety standard previously set by both U.S. and international standards bodies. The design of this phone complies with the FCC guidelines and these international standards bodies; ANSI C95.1(1992)* NCRP Report 86(1986)* ICNIRP(1996)* * American National Standards Institute; National Council on Radiation Protection and Measurements; International Commission on Non-Ionizing Radiation Protection Those standards were based on comprehensive and periodic evaluations of the relevant scientific literature. Over 120 scientists, engineers, and physicians from universities, government health agencies, and industry reviewed the available body of research to develop the ANSI Standard (C95.1). The design of your phone complies with the FCC guidelines in addition to those standards. ANTENNA CARE Use only the supplied or an approved antenna. Unauthorized antennas, modifications, or attachments could damage the phone and may violate FCC regulations. BODY-WORN OPERATION This device is designed to use as a speakerphone which uses a loudspeaker and a high-sensitivity microphone. Accordingly, voice call is designed to be made while holding the device by hand or worn on the body by using a particular belt clip. For body worn operation, this phone has been tested and meets the FCC RF exposure guidelines when used with the accessories supplied or designated for this product. Use of other accessories may not ensure compliance with FCC RF exposure guidelines. The exposure standard for wireless mobile phones employs a unit of measurement known as the Specific Absorption Rate, or SAR. The SAR limit set by FCC is 1.6 W/kg. The highest SAR value for this device when tested for worn on the body by using a particular belt clip is 1.26W/Kg. That is, tested SAR value does not exceed SAR limit which is set by FCC. Tests for SAR are conducted using standard operating positions specified by the FCC with the phone transmitting at its highest certified power level in all tested frequency bands. Although the SAR is determined at the highest certified power level, the actual SAR level of the phone while operating can be well below the maximum value. This is because the phone is designed to operate at multiple power levels so as to use only the power required to reach the network.
Document2 Page 1 of 1 CETECOM Inc. 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. Phone: + 1 408 586 6200 Fax: + 1 408 586 6299 e-mail: [email protected] URL: www.cetecom.com Statement Form 731 filed for the Application with the FCC ID HHV20021106 There is a typo in the emission designator field. The right numbers are please correct Section IV (a)Frequency range in MHz (b) Rated RF power output in watts* (c) Frequency tolerance %, Hz, ppm** (d) Emission designator (e) microprocessor model number 824.04-848.97 MHz 0.538 Watts 0.353 ppm 40K0F8W 824.04-848.97 MHz 0.538 Watts 0.353 ppm 40K0F1D * the output power reported is the higher of conducted power and radiated ERP ** max. measured values Lothar Schmidt Technical Manager
313145.DOC Page 1 of 1 CETECOM Inc. 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. Phone: + 1 408 586 6200 Fax: + 1 408 586 6299 e-mail: [email protected] URL: www.cetecom.com Statement Form 731 filed for the Application with the FCC ID HHV20021106 There is a typo in the emission designator field. The right numbers are please correct Section IV (a)Frequency range in MHz (b) Rated RF power output in watts* (c) Frequency tolerance %, Hz, ppm** (d) Emission designator (e) microprocessor model number 824.04-848.97 MHz 0.538 Watts 0.353 ppm 40K0F8W 824.04-848.97 MHz 0.538 Watts 0.353 ppm 40K0F1D * the output power reported is the higher of conducted power and radiated ERP ** max. measured values Lothar Schmidt Technical Manager
Applicant : Matsushita Electric Works, Ltd. Transmitter Type : HHV20021106 PAGE 1 OF 2 EXTERNAL PHOTOS Top View Bottom View Applicant : Matsushita Electric Works, Ltd. Transmitter Type : HHV20021106 PAGE 2 OF 2 EXTERNAL PHOTOS (Continued) Top View (with flip open)Bottom View (with Belt clip)
Applicant : Matsushita Electric Works, Ltd. Transmitter Type : HHV20021106 LABEL / LOCATION INFORMATION FCC Identification Label Location
Applicant : Matsushita Electric Works, Ltd. Transmitter Type : HHV20021106 PAGE 1 OF 2 INTERNAL PHOTOS Top View Bottom View Applicant : Matsushita Electric Works, Ltd. Transmitter Type : HHV20021106 PAGE 2 OF 2 INTERNAL PHOTOS (Continued) Top View (Shields Removed) Bottom View (Shields Removed)
CETECOM Inc. 411 Dixon Landing Road Β Milpitas, CA 95035 Β U.S.A. Phone: + 1 (408) 586 6200 Β Fax: + 1 (408) 586 6299 Β E-mail: [email protected] Β http://www.cetecom.com CETECOM Inc. is a Delaware Corporation with Corporation number: 2113686 Board of Directors: Dr. Harald Ansorge, Dr. Klaus Matkey, Hans Peter May V.2.16M-2002-03-12 f:\emc\projects\shintom\379_2002_mobilepal\updated_reports_1_24_03\sar_379_2002_fcc_850.doc Β© Copyright by CETECOM SAR Test Report No. SAR_379_2002_FCC_850 for the Matsushita Electric Works, Ltd. 824 MHz β 849 MHz Emergency Portable Cellular Telephone Model Number: ECG2111 FCC ID: HHV20021106 Date of Report: 12/02/2002 Date of issue: 12/02/2002 Report Copy No.: 01 SAR Test Report No. SAR_379_2002_FCC_850 Date of Report: 12/02/2002 Page 2 of 27 V.2.16M-2002-03-12 This report shall not be reproduced except in full without the written approval of: CETECOM Inc. Β SAR Β 411 Dixon Landing Road Β Milpitas, CA 95035 Β U.S.A. Contents 1. ASSESSMENT ...................................................................................................................4 2. ADMINISTRATIVE DATA...................................................................................................5 2.1. Identification of the Testing Laboratory Issuing the SAR Assessment Report ...............5 2.2. Identification of the Client...........................................................................................5 2.3. Identification of the Manufacturer...............................................................................5 3. EQUIPMENT UNDER INVESTIGATION (EUI)...................................................................6 3.1. Identification of the Equipment under Investigation ...................................................6 3.2. Front View of the Equipment under Investigation ......................................................7 4. SUBJECT OF INVESTIGATION ........................................................................................8 4.1. The IEEE Standard C95.1 and the FCC Exposure Criteria .......................................8 4.2. Distinction Between Exposed Population, Duration of Exposure and Frequencies...8 4.3. Distinction between Maximum Permissible Exposure and SAR Limits......................9 4.4. SAR Limit ...................................................................................................................9 5. THE FCC MEASUREMENT PROCEDURE .....................................................................10 5.1. General Requirements.............................................................................................10 5.2. Device Operating Next to a Personβs Ear ................................................................10 5.3. Test Positions ..........................................................................................................11 5.4. Test positions of device relative to head..................................................................11 5.5. Test to be Performed ...............................................................................................14 5.6. Body-worn and Other Configurations.......................................................................14 5.7. Procedure for assessing the peak spatial-average SAR .........................................15 5.8. Determination of the largest peak spatial-average SAR ..........................................17 6. THE MEASUREMENT SYSTEM ......................................................................................18 6.1. Robot system specification ......................................................................................18 6.2. Probe and amplifier specification .............................................................................19 6.3. Phantoms.................................................................................................................19 6.4. SAR measurement procedure .................................................................................20 SAR Test Report No. SAR_379_2002_FCC_850 Date of Report: 12/02/2002 Page 3 of 27 V.2.16M-2002-03-12 This report shall not be reproduced except in full without the written approval of: CETECOM Inc. Β SAR Β 411 Dixon Landing Road Β Milpitas, CA 95035 Β U.S.A. 6.5. SARA2 Interpolation and Extrapolation schemes ....................................................20 6.6. Interpolation of 2D area scan...................................................................................21 6.7. Extrapolation of 3D scan..........................................................................................21 6.8. Interpolation of 3D scan and volume averaging.......................................................21 7. UNCERTAINTY ASSESSMENT.......................................................................................23 7.1. Measurement Uncertainty Budget ...........................................................................24 8. TEST RESULTS SUMMARY............................................................................................25 8.1. Conducted Output Power.........................................................................................25 8.2. Body SAR results for 824 MHz to 849 MHz AMPS band for ECG2111...................25 8.3. Validation Check Results .........................................................................................26 9. REFERENCES..................................................................................................................27 SAR Test Report No. SAR_379_2002_FCC_850 Date of Report: 12/02/2002 Page 4 of 27 V.2.16M-2002-03-12 This report shall not be reproduced except in full without the written approval of: CETECOM Inc. Β SAR Β 411 Dixon Landing Road Β Milpitas, CA 95035 Β U.S.A. 1. Assessment The Matsushita Electric Works, Ltd. ECG2111 Emergency Portable Cellular Telephone is in compliance with the exposure criteria specified in Federal Communications β¦
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SAR Test Report No : SAR_379_2002_FCC_850 Date of Report: 12/02/2002 Appendix A Page 1 of 3 Appendix A: Measurement Plots Plot 1. Date: 11/19/2002 Temperature Air / Liquid: 20.1C / 20.1C Liquid mass density (): 1 DCP 1 20 Probe factors (S/N 0106) (ConvF): X=0.409, Y=0.602, Z=0.369 Simulated tissue dielectric parameters: r : 56.07 : 0.973 Position: Belt clip to phantom Channel / Frequency 991 / 824.04 MHz Maximum 1 gram SAR: 1.261W/Kg Maximum 10 gram SAR: 0.929W/Kg Power reference start: 0.684W/Kg Power reference end 0.685W/Kg Power reference change 2 0.09% 1 DCP: Diode compression potential for different types of modulation is determined during the calibration of the probe. See section 6.2 of this report Probe and Amplifier Specification. Crest factor is not used. 2 The power reference change is calculated by the test system with more digits than indicated in the power reference start and end values. SAR Test Report No : SAR_379_2002_FCC_850 Date of Report: 12/02/2002 Appendix A Page 2 of 3 Plot 2. Date: 11/19/2002 Temperature Air / Liquid: 20.1C / 20.1C Liquid mass density (): 1 DCP 1 20 Probe factors (S/N 0106) (ConvF): X=0.409, Y=0.602, Z=0.3698 Simulated tissue dielectric parameters: r : 55.55 : 0.987 Position: Belt clip to phantom Channel / Frequency 383 / 836.49 MHz Maximum 1 gram SAR: 1.170W/Kg Maximum 10 gram SAR: 0.863W/Kg Power reference start: 0.642W/Kg Power reference end 0.636W/Kg Power reference change 2 -1.01% 1 DCP: Diode compression potential for different types of modulation is determined during the calibration of the probe. See section 6.2 of this report Probe and Amplifier Specification. Crest factor is not used. 2 The power reference change is calculated by the test system with more digits than indicated in the power reference start and end values. SAR Test Report No : SAR_379_2002_FCC_850 Date of Report: 12/02/2002 Appendix A Page 3 of 3 Plot 3. Date: 11/19/2002 Temperature Air / Liquid: 20.3C / 20.1C Liquid mass density (): 1 DCP 1 20 Probe factors (S/N 0106) (ConvF): X=0.409, Y=0.602, Z=0.369 Simulated tissue dielectric parameters: r : 55.46 : 0.983 Position: Belt clip to phantom Channel / Frequency 799 / 848.97 MHz Maximum 1 gram SAR: 1.220W/Kg Maximum 10 gram SAR: 0.890W/Kg Power reference start: 0.652W/Kg Power reference end 0.655W/Kg Power reference change 2 0.34% 1 DCP: Diode compression potential for different types of modulation is determined during the calibration of the probe. See section 6.2 of this report Probe and Amplifier Specification. Crest factor is not used. 2 The power reference change is calculated by the test system with more digits than indicated in the power reference start and end values.
SAR Test Report No.:SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix B Page 1 of 6 Appendix B: Photos EUT Photos Photo 1. EUT front closed SAR Test Report No.:SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix B Page 2 of 6 Photo 2. EUT front open SAR Test Report No.:SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix B Page 3 of 6 Photo 3. EUT back SAR Test Report No.:SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix B Page 4 of 6 Set-up Photos Photo 4. Body SAR SAR Test Report No.:SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix B Page 5 of 6 Photo 5. Body SAR distance SAR Test Report No.:SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix B Page 6 of 6 Photo 6. Photo to demonstrate 15 cm Z-axis flat phantom
SAR Test Report No SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix C Page 1 of 19 Tissue Parameters 900MHz Head recipe: The following recipe is provided in percentage by weight. 49.46% distilled water 49.46% DGBE 1.0% salt 0.1% bactericide Di-electric constants measured on 11/19/2002. SAR measurements were made within 24 hours of the measurement of liquid parameters. 20.1C Freq. Rel. Condy (MHz) Perm. (S/m) 900 41.37 0.959 835MHz Body recipe: The following recipe is provided in percentage by weight. 52.4% distilled water 45.0% Sugar 1.4% salt 1.0% HEC (hydroxyethyl cellulose) 0.1% bactericide Di-electric constants measured on 11/19/2002. SAR measurements were made within 24 hours of the measurement of liquid parameters. 20.1C Freq. Rel. Condy (MHz) Perm. (S/m) 824.04 56.07 0.973 836.49 55.55 0.987 848.97 55.46 0.983 Environment 11/19/2002: Temperature: 20.1C Humidity: 45% _ 55 % SAR Test Report No SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix C Page 2 of 19 Test Equipment: Test Equipment Model Serial Instrument description Supplier/Manufacturer Model Serial No. Calibration (date) Bench top Robot Mitsubishi supplied by Indexsar RV-E2 Serial No. N/A SAM Phantom Upright shell phantom made by Antennessa digitized and mounted by Indexsar SAM 04/02 FT08 N/A 835/900MHz Head Tissue Simulant Cetecom Inc. 835/900 Head N/A 11/19/2002 835MHz Body Tissue Simulant Cetecom Inc. 835 Body N/A 11/19/2002 900MHz Dipole IndexSAR β IEEE 1528 design IXD-090 090-0016 07/01/2002 Netwok Analyzer Agilent 8753ES US39172511- 04/04/2002- RF Amplifier Vectawave N/A N/A N/A Power Meter Rohde and Schwartz NRVD 836875/020 5/2002 Power Sensor Rohde and Schwartz URV5-Z2 836029/034 5/2002- Power Sensor Rohde and Schwartz URV5-Z2 836029/035 5/2002- SAR Probe IndexSAR IXP-050 S/N 0106 7/10/2002 Probe amplifier Indexsar IXA-010 S/N 043 N/A- Thermometer Control Company 4039 20410549 11/20/2002 SAR Test Report No SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix C Page 3 of 19 IMMERSIBLE SAR PROBE CALIBRATION REPORT Part Number: IXP β 050 S/N 0106 10 th July 2002 Indexsar Limited Oakfield House Cudworth Lane Newdigate Surrey RH5 5DR Tel: +44 (0) 1306 631 233 Fax: +44 (0) 1306 631 834 e-mail: [email protected] SAR Test Report No SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix C Page 4 of 19 INTRODUCTION This Report presents measured calibration data for a particular Indexsar SAR probe (S/N 0106) and describes the procedures used for characterisation and calibration. Indexsar probes are characterised using procedures that, where applicable, follow the recommendations of CENELEC [1] and IEEE [2] standards. The procedures incorporate techniques for probe linearisation, isotropy assessment and determination of liquid factors (conversion factors). Calibrations are determined by comparing probe readings with analytical computations in canonical test geometries (waveguides, boxes and spheres) using normalised power inputs. Each step of the calibration procedure and the equipment used is described in the sections below. CALIBRATION PROCEDURE 1. Equipment Used For the first part of the calibration procedure, the probe is placed in a calibration jig as pictured in Figure 1. In this position the probe can be rotated about its axis by a non- metallic belt driven by a stepper motor. The probe is attached via its amplifier and an optical cable to a PC. A schematic representation of the test geometry is illustrated in Figure 2. A balanced dipole (900 or 1800 MHz) is inserted horizontally into the bracket attached to a second belt (Figure 1). The dipole also can be rotated about its axis. A cable connects the dipole to a signal generator, via a directional coupler and power meter. The signal generator feeds an RF amplifier at constant power, the output of which is monitored using the power meter. The probe is positioned so that its sensors line up with the rotation center of the source dipole. By recording output voltage measurements of each channel as both the probe and the dipole are rotated, the spherical isotropy of the probe can be determined. The calibration process requires E-field measurements to be taken in air, in 900 MHz simulated brain liquid and at other frequencies/liquids as appropriate. When it is necessary to place the probe in liquid, a rectangular box made from PMMA (200mm internal width, 200mm internal height and 100mm internal depth; wall thickness 4mm) is filled with the appropriate liquid and positioned on the stand so that the probe tip is positioned within the liquid (Figure 1). The box is positioned so that its outer surface is 2mm from the dipole. The procedure follows that described in Ref [2]. Section A.5.2.1. 2. Linearising probe output SAR Test Report No SAR_379-2002-FCC_850 Date of Report:12/02/2002 Appendix C Page 5 of 19 The probe channel output signals are linearised in the manner set out in Refs [1] and [2]. The following equation is utilized for each channel: U lin = U o/p + U o/p 2 / DCP (1) where U lin is the linearised signal, U o/p is the raw output signal in voltage units and DCP is the diode compression potential in similar voltage units. DCP is determined from fitting equation (1) to measurements of U lin versus source feed power over the full dynamic range of the probe. The DCP is a characteristic of the schottky diodes used as the sensors. For the IXP-050 probes the DCP values are typically 0.10V (or 20 in the voltage units used by Indexsar software, which are V*200). 3. Optimizing channel sensitivity factors in air The first step of the calibration process is to calibrate the Indexsar probe to a W&G EMR300 E-field meter in air. The principal reasons for this are to balance the channels in air and to obtain air factors that are used in subsequent steps of the calibration procedure. It should be noted that the air factors are not separately used for normal SAR testing. The probe and a 900 MHz standard dipole are positioned in the calibration jig as outlined in β¦
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CETECOM Inc. CETECOM Inc. 411 Dixon Landing Road, Milpitas, CA-95035, USA Phone: +1 408 586 6200 Fax: +1 408 586 6299 www.cetecom.com Issued test report consists of 22 Pages Page 1 (22) Test report no.: EMC_379_FCC_22_2002 FCC Part 22, RSS 118 (FCC ID: HHV20021106) FCC LISTED, REG. NO.: 101450 & RECOGNIZED BY INDUSTRY CANADA IC β 3925 CETECOM Inc. Test report no.: EMC_379_FCC22_2002 Issue date: 2002-12-18 Page 2 (22) Table of Contents 1 General information 1.1 Notes 1.2 Testing laboratory 1.3 Details of applicant 1.4 Application details 1.5 Test item 1.6 Test standards 2 Technical test 2.1 Summary of test results 2.2 Test report 1 General information 1.1 Notes The test results of this test report relate exclusively to the test item specified in 1.5. The CETECOM Inc. does not assume responsibility for any conclusions and generalisations drawn from the test results with regard to other specimens or samples of the type of the equipment represented by the test item. The test report may only be reproduced or published in full. Reproduction or publication of extracts from the report requires the prior written approval of the CETECOM Inc. TEST REPORT PREPARED BY: EMC Engineer: Pete Krebill 1.2 Testing laboratory CETECOM Inc. 411 Dixon Landing Road, Milpitas, CA-95035, USA Phone: +1 408 586 6200 Fax: +1 408 586 6299 E-mail: [email protected] Internet: www.cetecom.com CETECOM Inc. Test report no.: EMC_379_FCC22_2002 Issue date: 2002-12-18 Page 3 (22) 1.3 Details of applicant Name : Matsushita Electric Works, Ltd. Street : 1048 Oaza Kadoma, Kadoma-shi City / Zip Code : Osaka-fu 571-8686 Country : Japan Contact : Iwao Oyaizu Telephone : +81-59-228-9312 Tele-fax : +81-59-224-5926 e-mail : [email protected] 1.4 Application details Date of receipt of application : 2002-11-18 Date of receipt test item : 2002-11-18 Date of test : 2002-12-02 1.5 Test item Manufacturer : Matsushita Electric Works, Ltd. and/or Shintom co,Ltd. Country : Japan Model No. : ECG2111 Serial No.(ESN) : 17408810927 Description : Emergency Portable Cellular Telephone FCC-ID : HHV20021106 Additional information Frequency : 824MHz β 849MHz Type of modulation : AMPS Antenna : Integral Power supply : Battery Output power : 600mWatts 1.6 Test standards FCC Part 22 / RSS118 Note: All radiated measurements were made in all three orthogonal planes. The values reported are the maximum values. CETECOM Inc. Test report no.: EMC_379_FCC22_2002 Issue date: 2002-12-18 Page 4 (22) 2 Technical test 2.1 Summary of test results No deviations from the technical specification(s) were ascertained in the course of the tests Performed Final Verdict: (only βpassedβ if all single measurements are βpassedβ) Passed Technical responsibility for area of testing: 2002-12-27 EMC & Radio Lothar Schmidt (Manager) Date Section Name Signature Responsible for test report and project leader: 2002-12-18 EMC & Radio Pete Krebill(EMC Engineer) Date Section Name Signature CETECOM Inc. Test report no.: EMC_379_FCC22_2002 Issue date: 2002-12-18 Page 5 (22) 2.2 Test report TEST REPORT Test report no.: EMC_379_FCC_22_2002 CETECOM Inc. Test report no.: EMC_379_FCC22_2002 Issue date: 2002-12-18 Page 6 (22) TEST REPORT REFERENCE PARAMETER TO BE MEASURED PARβ¦
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411 Dixon Landing Rd. Β· Milpitas, California Β· United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 22H | 824.04 MHz - 848.97 MHz | 328.00 mW | 40K0F1D | 0.353 ppm |

Emergency Communication Device
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Emergency Portable Cellular Telephone
Equipment Class
TNT - Licensed Non-Broadcast Transmitter Worn on BodySmoke Detector
Equipment Class
DSC - Part 15 Security/Remote Control TransmitterSecurity System Transmitter
Equipment Class
DSC - Part 15 Security/Remote Control TransmitterRF Smoke Detector Transmitter
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter