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GSANEXTMCWPIR Detector

Visonic Inc.
PIR Detector - FCC ID GSANEXTMCW - Visonic Inc.
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Aug 06, 2003
Application Purpose
Original Equipment
Date of Application
Aug 06, 2003
Equipment Note
PIR Detector
Frequency Range
315.00000000 - 315.00000000
Company
Visonic Inc.
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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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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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

DE3591 1 NEXT MCW Wireless PowerCode Digital PIR Detector Installation Instructions 1. INTRODUCTION The NEXT MCW is a microprocessor-controlled wireless digital PIR detector, designed for easy installation, free of vertical adjustment. It features a cylindrical lens with uniform detection sensitivity throughout its operating range, up to 12 meters (40 ft), with wall creep zone protection. The advanced True Motion Recognition™ algorithm (patented) allows the NEXT MCW to distinguish between the true motion of an intruder and any other disturbances which may cause false alarms. An on-board motion event jumper determines whether 1 or 2 consecutive motion events triggers an alarm. The NEXT MCW includes the following features: • Incorporates a fully supervised PowerCode transmitter • Patented sophisticated motion analysis algorithm - True Motion Recognition (TMR™) • Sophisticated frequency domain digital signal processing • No vertical adjustment is needed • Programmable motion event counter • After detection, the detector disarms itself to save battery power. It rearms (reverts to the ready state) if there is no subsequent detection throughout the following 2-minute period • Very low current consumption • Microprocessor-controlled temperature compensation • Sealed chamber protects the optical system • Front cover tamper switch. • Back tamper switch (option) • White light protection • Elegantly styled, sturdy case Figure 1. General View Figure 2. Inside View 2. SPECIFICATIONS OPTICAL Detector Type: Dual element low-noise pyroelectric sensor. Lens Data No. of Curtain Beams: 9 + 5 Max. Coverage: 12 x 12 m (40 x 40 ft) / 90° ELECTRICAL Internal Battery: 3 V Lithium battery, Panasonic CR-123 or equivalent. Nominal Battery Capacity: 1450 mA/h. Standby Current Drain: approx. 0.025 mA. Transmit Current Drain: 20 mA (including LED). Battery Life (with LED on): Typically over 3 years. Figure 3. Maximum Coverage Pattern Battery Power Test: Performed immediately upon battery insertion and periodically after every several hours. FUNCTIONAL True Motion Event Verification: 2 position selector - 1 (OFF) or 2 (ON) motion events. Alarm Period: 3 seconds. Visual Indications: LED Lights for about 3 seconds upon transmission of alarm & tamper messages and upon motion detection in the walk test mode. LED Flashes during the power-up stabilization period, or after restoring (pressing) the tamper switch. LED Does not light upon transmission of supervision messages. Rearm Timer: Rearms the detector 2 minutes after the last alarm. Timer disabled in the walk test mode. WIRELESS Frequency (MHz): 315, 433.92, 868.95, 869.2625 or other frequencies according to local requirements. Transmission Sequence: 3 data bursts at variable intervals within 3 seconds. Encoding: 24-bit ID, over 16 million possible combinations. Total Message Length: 36 bits. Tamper Alert: Reported when a tamper event occurs and in any subsequent message, until the tamper switch is restored. Supervision Message: Signaling at 60-minute intervals (U.S. version) or 15 minute interval (UK version), or according to the local standards. MOUNTING Height: 1.8 - 2.4 m (6 - 8 ft). Installation Options: Surface or corner. ACCESSORIES: BR-1: Surface mounted swivel bracket, adjustable 30° down and 45° left/45° right. BR-2: BR-1 with a corner adapter BR-3: BR-1 with a ceiling adapter ENVIRONMENTAL RFI Protection: >20 V/m up to 1000 MHz. Operating Temperatures: -10°C to 50°C (14°F to 122°F). Storage Temperatures: -20°C to 60°C (-4°F to 140°F). Compliance with Standards: Designed to meet FCC Part 15 and Directive 1999/5/EC of the European Parliament. PHYSICAL Size (H x W x D): 94.5 x 63.5 x 53.0 mm (3-11/16 x 2-1/2 x 2- 1/16”). Weight (with battery): 70 g (2.5 oz). Color: White. PATENTS: U.S. Patents 5,693,943 l 6,211,522 l D445,709 (another patent pending). 2 DE3591 3. INSTALLATION 3.1 General Guidelines 3.2 Illustrated Installation Procedure RESET: With the battery in place, press both tamper switches simultaneously and release them. The LED at the front will flash for about 2 minutes until the detector stabilizes. Note: The de]tector transmits a low battery signal upon detection of low battery. Note: It is recommended to wait about 1 minute before inserting the new battery. A B BACK TAMPER SWITCH (OPTION) FRONT TAMPER SWITCH OBSERVE POLARITY ! ENROLL: Approach the control panel and enroll the detector’s ID into the control panel’s memory as shown in the panel’s installation manual. When required to transmit, press both tamper switches again and release them. You may enroll the detector’s ID while the detector’s LED flashes. USE A SCREWDRIVER TO PIERCE SURFACE OR CORNER KNOCK- OUTS, AS REQUIRED. A USE A LARGE DIAMETER DRILL BIT TO DE-BURR THE OTHER SIDE B SUPPORTS FOR BOTTOM EDGE OF PCB CORNER (2 OF 4) SURFACE (1 OF 2) BREAK-AWAY SEGMENT (BACK TAMPER SWITCH ACTUATOR - OPTION) TOP CATCH FOR PCB Attention! Lean the rear part of the break-away segment against a piece of wood while piercing its knockouts. B INSERT TWO DOWELS AND C INSERT THE BOTTOM EDGE D MARK TWO DRILLING A SINGLE- SIDE, 45° ANGLED MOUNT SURFACE MOUNT (1 OF 2) ATTACH THE BASE TO THE WALL WITH TWO SCREWS. OF THE LARGE P.C. BOARD UNDER THE TABS & PRESS THE TOP EDGE IN. POINTS AND DRILL HOLES IN WALL. SINGLE- SIDE, 45° ANGLED MOUNT BREAK-AWAY SEGMENT FOR TAMPER PROTECTION, THE BREAK-AWAY SEGMENT MUST BE ATTACHED TO WALL. 1.8 - 2.4 m (6 - 8 ft) above ground Attention! The unit has a back tamper switch (option) under the PCB. As long as the PCB is seated firmly within the base, the switch will be pressed against a metal spring piece attached to the base. Be sure to fasten the break-away segment to the wall with the screws going through the metal spring and the break-away base segment. If the detector is forcibly removed from the wall, this segment will break away from the base, causing the tamper switch to open and send a tamper alarm. 1 2 3 4 Open holes in the Disassemble the unit Install the battery Mount t…

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Block Diagram

1 2 3 4 5 0 CONFIDENTIAL This document contains information which is proprietary to Visonic Ltd., Israel. The use, copy or dissemination of this material for any purpose other than that for which it is intended is prohibited with out the prior written consent of Visonic Ltd. Date Released: To Whom: Apx 2-1-3 Designed: Drew: Updated: Approved: Nam e Date Product Name: Drawing Name: Signature Sheet No./of: Scale: Catalog No.: Drawing No.: File Name: Doc. Rev.: UpdECOsNEXT MCW Block Diagram BAABI P. 15.01.03 1/1 E-3591-X 0F-3591-A10 0F3591A10.VSD 0 MICROCONTROLLER PIC16C621A PIR SENSOR CIRCUIT FRONT TAMPER EVENT COUNTER TRANSMITTER RFT - 3A BATTERY LITHIUM 3v VOLTAGE REGULATOR LED INDICATOR LED OFF/ON TIME NEXT MCW BLOCK DIAGRAM REFFERENCES TEMPERATUE 4 MHZ

Cover Letter(s)

July 29, 2003 American TCB 6731 Whittier Ave Suite C110 McLean, VA 22101 USA Subject: Request for confidentiality for wireless PIR detector, model: NEXT MCW, FCC ID:GSANEXTMCW Dear Gentlemen, We apply to you with request to withhold Visonic Ltd. trade secrets in Application for Certification for wireless PIR detector, FCC ID: GSANEXTMCW. These trade secrets can be found in the RFT-3A module schematic diagrams (3 pages of this Application). Many thanks in advance. Yaacov Kotlicki Directing Manager Head Office 30 Habarzel Street Tel Aviv 69710 Israel Postal Address P.O.B. 22020 Tel Aviv 61220 Israel Tel 972 3 6456789 Fax 972 3 6456788

Cover Letter(s)

American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 July 24, 2003 RE: Visonic Ltd. FCC ID: GSANEXTMCW After a review of the submitted information, I have a few comments on the above referenced Application. 1) Confidentiality does not appear to have been requested with this application. Please confirm that this application does not require confidentiality or alternatively provide a letter requesting confidentiality on the appropriate items. 2) Clear top and photographs of the TX board removed from the main board should be provided. It would also be recommended to provide a rear photograph of the main board with the TX removed. 3) It is not clear if the TX board is manufactured by Visonic Ltd. or if this is an OEM part. If it is an OEM part, please provide a parts list that shows this. If not, please provide the block diagram and schematic for the TX board. 4) Please provide a plot that shows that the device stops transmitting within 3 seconds per event as specified in the users manual and is in compliance with 15.231(a). Timothy R. Johnson Examining Engineer mailto: [email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.

Cover Letter(s)

FCC ID: GSANEXTMCW In reply to e-mail dated July 24, 2003 Dear Mr. Johnson, Below are the answers to your questions. 1. Please find a letter requesting confidentiality for RF module schematics, submitted via " Upload for application GSANEXTMCW ATCB000615", Additional information folder on July 31, 2003. Confidentiality for schematics submitted on July 21, 2003 is not required. 2. Please find an updated "Internal photographs" file, submitted via "Upload for application GSANEXTMCW ATCB000615", Internal photos folder on July 31, 2003. 3. Please find RFT-3A module schematics, submitted via "Upload for application GSANEXTMCW ATCB000615", Schematics folder on July 31, 2003. 4. Please find an updated Operational description with Appendix "The Visonic Ltd. PowerCode system", where the compliance with 15.231(a) is shown explicitly. It was submitted via "Upload for application GSANEXTMCW ATCB000615", Operational description folder on July 31, 2003. With great respect, Valeria To: "'[email protected]'" <[email protected]> Subject: Application FCC ID: GSANEXTMCW Page 1 of 1In 7/31/2003Printed for "Timothy R. Johnson" <[email protected]>

Cover Letter(s)

American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 July 31, 2003 RE: Visonic Ltd. FCC ID: GSANEXTMCW After a review of the submitted information, I have a few comments on the above referenced Application. 1) Although the theory of operation may explain how the device is compliant with the 5 second rule to 15.231(a), the FCC requires that a measurement plot be provided to show compliance with this. Please provide a plot that shows that the device stops transmitting within 3 seconds per event as specified in the users manual/operational description. Timothy R. Johnson Examining Engineer mailto: [email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.

External Photos

Page 1 of 3 NEXT MCW EXTERNAL PHOTOGRAPHS This document contains 2 photographs Page 2 of 3 Photograph No.1 NEXT MCW front view Page 3 of 3 Photograph No.2 NEXT MCW bottom view

ID Label/Location Info

The identification label (material –polyester) is affixed on the device rear side. The label will be hear

Internal Photos

Page 1 of 5 NEXT MCW INTERNAL PHOTOGRAPHS This document contains 4 photographs Page 2 of 5 Photograph No.1 PCB first side Page 3 of 5 Photograph No.2 RF module view Page 4 of 5 Photograph No.3 PCB second side Page 5 of 5 Photograph No.3 PCB second side without RF module

Operational Description

DE3591 1 NEXT MCW NEXT MCWNEXT MCW NEXT MCW Wireless PowerCode Digital PIR Detector Operational description 1. INTRODUCTION 1. INTRODUCTION1. INTRODUCTION 1. INTRODUCTION The NEXT MCW is a microprocessor-controlled wireless digital PIR detector, designed for easy installation, free of vertical adjustment. It features a cylindrical lens with uniform detection sensitivity throughout its operating range, up to 12 meters (40 ft), with wall creep zone protection. The advanced True Motion Recognition™ algorithm (patented) allows the NEXT MCW to distinguish between the true motion of an intruder and any other disturbances which may cause false alarms. An on-board motion event jumper determines whether 1 or 2 consecutive motion events triggers an alarm. The NEXT MCW includes the following features: • Incorporates a fully supervised PowerCode transmitter • Patented sophisticated motion analysis algorithm - True Motion Recognition (TMR™) • Sophisticated frequency domain digital signal processing • No vertical adjustment is needed • Programmable motion event counter • After detection, the detector disarms itself to save battery power. It rearms (reverts to the ready state) if there is no subsequent detection throughout the following 2-minute period • Very low current consumption • Microprocessor-controlled temperature compensation • Sealed chamber protects the optical system • Front cover tamper switch. • Back tamper switch (option) • White light protection • Elegantly styled, sturdy case Figure 1. General View Figure 2. Inside View 2. SPECIFICATIONS 2. SPECIFICATIONS2. SPECIFICATIONS 2. SPECIFICATIONS OPTICAL Detector Type: Dual element low- noise pyroelectric sensor. Lens Data No. of Curtain Beams: 9 + 5 Max. Coverage: 12 x 12 m (40 x 40 ft) / 90° ELECTRICAL Internal Battery: 3 V Lithium battery, Panasonic CR-123 or equivalent. Nominal Battery Capacity: 1450 mA/h. Standby Current Drain: approx. 0.025 mA. Transmit Current Drain: 20 mA (including LED). Battery Life (with LED on): Typically over 3 years. Figure 3. Maximum Coverage Pattern Battery Power Test: Performed immediately upon battery insertion and periodically after every several hours. FUNCTIONAL True Motion Event Verification: 2 position selector - 1 (OFF) or 2 (ON) motion events. Alarm Period: 3 seconds. Visual Indications: LED Lights for about 3 seconds upon transmission of alarm & tamper messages and upon motion detection in the walk test mode. LED Flashes during the power-up stabilization period, or after restoring (pressing) the tamper switch. LED Does not light upon transmission of supervision messages. Rearm Timer: Rearms the detector 2 minutes after the last alarm. Timer disabled in the walk test mode. WIRELESS Frequency (MHz): 315, 433.92, 868.95, 869.2625 or other frequencies according to local requirements. Transmission Sequence: 3 data bursts at variable intervals within 3 seconds. Encoding: 24-bit ID, over 16 million possible combinations. Total Message Length: 36 bits. Tamper Alert: Reported when a tamper event occurs and in any subsequent message, until the tamper switch is restored. Supervision Message: Signaling at 60-minute intervals (U.S. version) or 15 minute interval (UK version), or according to the local standards. MOUNTING Height: 1.8 - 2.4 m (6 - 8 ft). Installation Options: Surface or corner. ACCESSORIES: BR-1: Surface mounted swivel bracket, adjustable 30° down and 45° left/45° right. BR-2: BR-1 with a corner adapter BR-3: BR-1 with a ceiling adapter ENVIRONMENTAL RFI Protection: >20 V/m up to 1000 MHz. Operating Temperatures: -10 ° C to 50 ° C (14 ° F to 122 ° F). Storage Temperatures: -20 °C to 60°C (-4°F to 140°F). Compliance with Standards: Designed to meet FCC Part 15 and Directive 1999/5/EC of the European Parliament. PHYSICAL Size (H x W x D): 94.5 x 63.5 x 53.0 mm (3-11/16 x 2-1/2 x 2-1/16”). Weight (with battery): 70 g (2.5 oz). Color: White. PATENTS: U.S. Patents 5,693,943  6,211,522  D445,709 (another patent pending). INTERNAL ANTENNA A piece of wire AWG 24, 15 cm long inside the casing is used as an antenna. 2 DE3591 APPENDIX A. THE VISONIC LTD. POWERCODE SYSTEM APPENDIX A. THE VISONIC LTD. POWERCODE SYSTEMAPPENDIX A. THE VISONIC LTD. POWERCODE SYSTEM APPENDIX A. THE VISONIC LTD. POWERCODE SYSTEM A-1. The PowerCode Message Format The PowerCode message transmitted by the NEXT MCW includes the 24-bit ID and a status report (see Fig. A1). Figure A1. Transmitted Data A message includes the following data: • Detector's ID: Any message transmitted starts with the 24- bit ID assigned to the particular detector unit. • Tamper / Restore: Upon removal of the unit's front cover, a message will be transmitted with a "tamper marker" ON. If the unit's cover is put back, a message will be transmitted with the tamper marker OFF ("Tamper Restore"). • Alarm: Once the detector is in alarm, a message will be transmitted with an "alarm marker" ON. • Low Battery: A special battery condition marker is used to report the battery status in any message. The battery is tested once an hour and if found low, the "low battery marker" is set to ON in all following messages. • Supervision Message: A special "supervision message marker", when set to ON, identifies the periodic supervision messages transmitted automatically at 1 hour or 15 minute intervals. This marker will be OFF in all other messages. • Transmitter Type: A special marker indicates the type of the transmitter:  Supervised or non-supervised  Reports or does not report restorals after alarm The NEXT MCW does not report restorals after alarms. • Checksum: Checksum bits at the end of the message allow the receiver to determine whether an incoming message is valid (error-free). This feature considerably enhances the reliability of the wireless communication link. A-2. Anti-Collision To overcome message collisions at the receiving end, PowerCode transmitters transmit 3 data bursts at random intervals, with 6 repetitions of the same message in each burst (Fig. A2). T…

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Test Report

Plots showing the compliance with 15.231 (a) – the transmission stops within 3 s

Test Report

This report is in conformity with ISO/IEC 17025. The A2LA logo endorsement applies only to the test methods and the standards that are listed in the scope of Hermon Laboratories accreditation. The test results relate only to the items tested. This test report must not be reproduced in any form except in full with the approval of Hermon Laboratories Ltd. Page 1 of 44 Document ID: visrad_fcc.15595 Date of Issue: July 2003 HERMON LABORATORIES Electrical Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 66288001 Fax.+972 66288277 e-mail: [email protected] RADIO TEST REPORT ACCORDING TO 47 CFR Part 15 SUBPART C §15.231, §15.205, §15.209 and SUBPART B; RSS-210 Issue 5:2001; ICES-003 Issue 3:1997 for VISONIC Ltd. EQUIPMENT UNDER TEST: Wireless Power Code digital PIR detector Model: Next MCW Page 2 of 44 Document ID: visrad_fcc.15595 Date of Issue: July 2003 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 66288001 Fax.+972 66288277 e-mail: [email protected] Contents CONTENTS.............................................................................................................................................................................. 2 1 PROJECT INFORMATION .............................................................................................................................................. 3 2 SUMMARY OF TESTS AND REQUIREMENTS .............................................................................................................. 4 3 EUT DESCRIPTION ......................................................................................................................................................... 5 3.1 GENERAL DESCRIPTION................................................................................................................................................ 5 3.2 TRANSMITTER DESCRIPTION.......................................................................................................................................... 6 4 TEST RESULTS............................................................................................................................................................... 7 4.1 BANDWIDTH OF EMISSION ACCORDING TO § 15.231 (C) AND RSS-210 § 6.1.1(C)............................................................. 7 4.2 FIELD STRENGTH OF FUNDAMENTAL, § 15.231 AND RSS-210 § 6.1.1(B)......................................................................... 8 4.3 FIELD STRENGTH OF SPURIOUS RADIATION, § 15.231 AND RSS-210 § 6.1.1(B) ............................................................... 9 4.4 U NINTENTIONAL RADIATED EMISSIONS TEST ACCORDING TO §15.109 AND ICES-003....................................................... 10 APPENDIX A - PLOTS .......................................................................................................................................................... 11 APPENDIX B – TEST SETUP PHOTOGRAPHS................................................................................................................... 26 APPENDIX C - TEST EQUIPMENT USED FOR TESTS ....................................................................................................... 32 APPENDIX D TEST EQUIPMENT CORRECTION FACTORS ............................................................................................. 33 APPENDIX E - GENERAL INFORMATION ........................................................................................................................... 43 TEST FACILITY DESCRIPTION................................................................................................................................................... 43 A BBREVIATIONS AND ACRONYMS ............................................................................................................................................. 43 SPECIFICATION REFERENCES.................................................................................................................................................. 43 FCC EQUIPMENT CODES AND DESCRIPTIONS........................................................................................................................... 44 Page 3 of 44 Document ID: visrad_fcc.15595 Date of Issue: July 2003 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 66288001 Fax.+972 66288277 e-mail: [email protected] 1 Project information EUT attributes Test item : Wireless Power Code digital PIR detector Type (Model) : Next MCW Equipment FCC code 1 : DSC Applicant information Applicant’s responsible person : Mr. Arick Elshtein, project manager Applicant/Manufacturer : Visonic Ltd. Address : 27, Habarzel Street City : Tel Aviv Postal code : 69710 Country : Israel Telephone number : +972 3 6456714 Telefax number : +972 3 6456891 Test details Project Number: : 15595 Location : Hermon Laboratories Receipt date : July 6, 2003 Test performed : July 7, 2003 Purpose of test : Apparatus compliance verification in accordance with emission requirements Test specification(s) : 47CFR Part 15, subpart C, §15.231, §15.205, §15.209, and subpart B §15.109; RSS-210 Issue 5: 2001 and ICES-003 Issue 3: 1997 1 FCC Equipment codes – see Appendix E Page 4 of 44 Document ID: visrad_fcc.15595 Date of Issue: July 2003 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 66288001 Fax.+972 66288277 e-mail: [email protected] 2 Summary of tests and requirements Parameter Subclause Tested by Date tested Verdict Remarks Transmitter characteristics, §15.231 Bandwidth of emission 15.231(c) Mrs. E. Pitt, test engineer July 6, 2003 Pass Field strength of fundamental 15.231(b)(2) Mrs. E. Pitt, test engineer July 6, 2003 Pass Field strength of spurious radiation 15.231(b)(3) Mrs. E. Pitt, test engineer July 7, 2003 Pass Unintentional radiation, §15.107, §15.109 Radiated emissions 15.109 Mrs. E. Pitt, test engineer July 7, 20…

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Test Setup Photos

Page 1 of 7 NEXT MCW TEST SETUP PHOTOGRAPHS This document contains 6 photographs Page 2 of 7 Photograph 1 Spurious emission measurement setup in 9 kHz – 30 MHz range, Loop antenna in vertical polarization Page 3 of 7 Photograph 2 Spurious emission measurement setup in 30 – 200 MHz range, Biconical antenna in horizontal polarization Page 4 of 7 Photograph 3 Spurious emission measurement setup in 200 – 1000 MHz range, Log periodic antenna in vertical polarization Page 5 of 7 Photograph 4 Spurious emission measurement setup in 1 – 3.2 GHz range, Horn antenna in horizontal polarization Page 6 of 7 Photograph 5 20 dB bandwidth measurement setup, Log periodic antenna in horizontal polarization Page 7 of 7 Photograph 6 Spurious emission test setup, EUT view

Contact Information

Applicant

Scott Jensen(Tec Manager)
860-243-0833

Technical Contact

Hermon LaboratoriesEdward Usoskin
[email protected]972 4 628-8001

Harakevet Industrial zone · Binyamina · Israel

Non-Technical Contact

Visonic Ltd.Arick Elshtein
[email protected]972 3 6456714

Test Firm

Hermon Laboratories Ltd.Alexander Usoskin
[email protected]972-4628-8001Fax: 972-4628-8277

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231315 MHz - 315 MHz-
Confidentiality
Long Term

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