
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
D-303371 GB-501 PG2 Installation Instructions 1 GB-501 PG2 Wireless PowerG Two‐way Glass‐break Detector Installation Instructions 1. INTRODUCTION The GB-501 PG2 is a wireless PowerG Two-way Glass-break detector designed to detect the breaking of framed glass mounted in an outside wall. The GB-501 PG2 combines two modules: The Sentrol Inc. ShatterPro™ acoustic sensor with Pattern Recognition Technology™ (Protected under U.S. Patent 5,192,931) The Visonic Ltd. MC-302 PG2 transmitter A B A. Microphone B. Detection indicator Figure 1. General View B A A. PowerG transmitter module B. Acoustic sensor module Figure 2. Module Identification 1.1 Acoustic Sensor The acoustic sensor module of the GB-501 PG2 is omni-directional, providing 360° coverage. Coverage is measured from the sensor to the point on the glass farthest from the sensor (see Fig. 3). The sensor can be mounted as close as 1 m (3.3 ft) from the glass. Figure 3. Typical Range Measurement When mounted on opposite wall or adjoining walls, the range is 6 m (20 ft) for plate, tempered, laminated and wired glass. When mounted on the ceiling, the maximum range is 6 m (20 ft) for plate, tempered, laminated and wired glass For armor-coated glass, mount the sensor no more than 3.65 m (12 ft) from the glass. 1.2 PowerG Transmitter The acoustic sensor shares its housing with a miniature transmitter using PowerG 2-way communications protocol. Upon alarm (glass break detection), a digital message is transmitted, composed of the PowerG ID followed by various status and message-type markers. Alarm and other data are thus forwarded to the wireless alarm control panel. The GB-501 PG2 is protected by a front tamper switch and back tamper switch that is activated when the cover is removed or when the base is forcibly detached from the wall. In a tamper situation, a message is transmitted with the “tamper alert” marker ON. A periodic supervision message, distinguished by a specific marker, is transmitted automatically. The wireless control panel is thus informed, at regular intervals, of the sensor’s active participation in the system. A red LED mounted on the transmitter PCB (visible only when the cover is off) lights whenever alarm or tamper events are reported. The LED does not light while a supervision message is being transmitted. 2. INSTALLATION 2.1 Optimizing Detection and Avoiding False Alarms For best detection, avoid installing in: Rooms with lined, insulating, or sound deadening drapes. Rooms with closed wooden window shutters inside. For best false alarm immunity: Avoid 24-hour loop applications (perimeter loop OK). Don't use where white noise, such as air compressor noise, is present (a blast of compressed air may cause a false alarm). Avoid rooms smaller than 3 x 3 m (10 x 10 ft) and rooms with multiple noise sources such as small kitchens, glass booths noisy areas, garages, small bathrooms, etc. 2 D-303371 GB-501 PG2 Installation Instructions Areas to avoid: Glass airlocks and glass vestibule areas Noisy kitchens Residential car garages Small utility rooms Stairwells Small bathrooms Other small acoustically live rooms. For glass break protection in such applications, use shock sensors on the windows or window frames. Do Not Install In Humid Rooms The Wireless GB-501 PG2 is not hermetically sealed. Excess moisture on the circuit board can eventually cause a short and a false alarm. Avoid 24-Hour Loop Applications The GB-501 PG2 is recommended for perimeter loops and is designed to function in occupied area. In 24- hour loop applications, where the sensor is armed all day and all night, the false alarm prevention technology will be pushed to its limit. Some sounds can duplicate the glass break pattern the acoustic sensor detects. Install the GB-501 PG2 on a perimeter loop which is armed whenever the door and window contacts are armed. Protecting Occupied Areas The false alarm immunity is best in rooms with only moderate noise. For 24-hour occupied area protection, use shock sensors. Proper Testing The GB-501 PG2 is designed to detect the breaking of framed glass mounted in an outside wall. Testing the sensor with unframed glass, broken bottles, etc., may not trip the sensor. The sensor typically does not trip to glass breaking in the middle of the room. No burglar breaks glass in the middle of a room, so such “breaks” are false alarms. NOTE: GB-501 PG2 may not consistently detect cracks in glass, or bullets which break through the glass. Glass-break sensors should always be backed up by interior protection. For best false alarm immunity the sensor should be located at least 1.2 m (4 ft) away from noise sources (televisions, speakers, sinks, doors, etc.). The sensor must always be in direct line of sight of all protected windows. It cannot consistently detect glass breaking around corners, in other rooms, etc. Front or back, up or down orientation is not necessary. 2.2 Sound Travel Considerations Since the sound of breaking glass travels directionally out from the broken window, the best location for mounting the sensor is on the opposite wall - assuming the glass to be protected is within the sensor's range and line of sight. The ceiling and adjoining (side) walls are also good sensor locations. A ceiling mounted sensor will have better detection if positioned 2 - 3 m (6 - 10 ft) away from the protected glass into the room. As with all glass-break sensors, detection is reduced with same-wall mounting, since such detection is partially dependent on glass break sound reflecting off the opposite wall. Test the range with a Sentrol 5709C unit held flat against the glass. There may be a reduction in range, depending on room acoustics. 2.3 Preparing the Unit 1. Use a screwdriver to separate the cover from the base, as shown in Figure 4. You will find inside a nylon bag with the battery, two masonry anchors (wall plugs) and two mounting screws. Figure 4. Opening the Unit 2. Get to know the items indicated in Fig. 5 - t…
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Declaration of Authorization We Name: Visonic Ltd. Address: Habarzel street 24, City: Tel Aviv 69710, Country: Israel . Declare that: Agent Company name: Hermon Laboratories Ltd. Address: Harakevet Industrial Zone City: Binyamina 30500 Country Israel is authorized to apply for Certification of the following product(s): Product description: Wireless glassbreak detector Type designation: GB-501 PG2. Trademark: Visonic . on our behalf. Date: 12/5/2011 Name: Arik Elshtein .. (2) Function: International Standards Department Manager Signature:
FCC, Request for non-disclosure Date: 16-Jul-10 RF_501, Issue 6 Page 1 of 1 Company Name: Visonic Ltd. Address : Habarzel street 24 City: Tel Aviv 69710 Country: Israel To: Telefication B.V ., Dept. FCC TCB Edisonstraat 12A 6902 PK ZEVENAAR The Netherlands Subject: Request for confidentiality FCC ID: WP3GB501PG2 Reference number: ###### Dear FCC TCB, 1. Long-Term Confidentiality Pursuant to 47 CFR Section 0.459(a) & (b), we hereby requests non-disclosure and confidential treatment of the following materials submitted in support of FCC certification application: Bill(s) of Material Block Diagrams Operational Description Schematic Diagrams Tune-up Procedure Above materials contain secrets, proprietary and technical information, which would customarily be guarded from competitors under 47 CFR, section 0.457(d)(2). Disclosure or publication or any portion of this company confidential material to other parties could cause substantial competitive harm and provide unjustified benefits for competitors. 2. Short-Term Confidentiality (STC) Pursuant to Public Notice DA 04-1705 of the Commission’s policy, in order to comply with the marketing regulations in 47 CFR §2.803 and the importation rules in 47 CFR §2.1204, a pplicant hereby requests Short-Term Confidential treatment of the following materials (note 1): Internal Photos User’s Manual Test Set-up Photos External Photos Justification: Planned Release Date STC: (notes 2, 3, 4, 5) Date: December 5, 2011 Name and signature of applicant: Mr. Arik Elshtein Notes: 1) A document or type of document can only have ONE type of confidentiality! 2) Short-Term confidentiality is in principle for 45 days from date of grant; it can be extended max 3 times (total time 180 days max.)! 3) FCC must be informed when marketing begins earlier. 4) Release takes place automatically thus extension must be requested in time. Telefication does not remind you of this! 5) Request for extension or for release must be received by Telefication at least 7 days before date of actual marketing or before expiration of the STC period
Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 1 of 3 EXTERNAL PHOTOGRAPHS This document contains 2 photographs Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 2 of 3 Photograph No.1 Wireless glass-break detector GB-501 PG2 front view Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 3 of 3 Photograph No.2 Wireless glass-break detector GB-501 PG2 rear side view
Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 1 of 1 Label Label location Label with FCC ID:WP3GB501PG2 and IC:1467C-GB501PG2 is located at the rear side panel. The statement according to FCC part 15 §15.19(a)(3) is placed in User’s Guide, page 5 (Application exhibit User_manual_22178). FCC ID:WP3GB501PG2 IC:1467C-GB501PG2
Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 1 of 5 INTERNAL PHOTOGRAPHS This document contains 4 photographs Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 2 of 5 Photograph No.1 Wireless glass-break detector GB-501 PG2 internal view Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 3 of 5 Photograph No.2 Glass-break detector PCB front view Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 4 of 5 Photograph No.3 Glass-break detector PCB rear side view Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 5 of 5 Photograph No.4 Glass-break detector antenna
Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Exposure limit according to §15.247(i) and RSS-102 The device is classified as mobile. Limit for power density for general population/uncontrolled exposure is f/1500 mW/cm 2 for 300 – 1500 MHz frequency range: P = 912.75/1500 = 0.61 mW/cm 2 The power density P (mW/cm 2 ) = P T / 4 r 2 P T is the transmitted power, which is equal to the peak transmitter output power 25.63 dBm plus maximum antenna gain -7 dBi, the maximum equivalent isotropically radiated power EIRP is P T = 25.63 dBm -7 dBi = 18.63 dBm = 73 mW. The power density at 20 cm (minimum safe distance, required for mobile devices), calculated as follows: 73 mW / 4 (20 cm) 2 = 0.015 mW/cm 2 << 0.61 mW/cm 2 General public cannot be exposed to dangerous RF level.
Hermon Laboratories Ltd. Harakevet Industrial Zone, Binyamina 30500, Israel Tel. +972-4-6288001 Fax. +972-4-6288277 E-mail: [email protected] Page 1 of 87 Report ID: VISRAD_FCC.22178.doc Date of Issue: 18-Oct-11 ELECTRICAL TESTING 0839.01 TEST REPORT ACCORDING TO: FCC 47CFR part 15 subpart C § 15.247 (FHSS) and subpart B, RSS-210 issue 8 Annex 8, ICES-003 Issue 4:2004 FOR: Visonic Ltd. Wireless PowerG Two-way Glassbreak Detector (915) Model: GB 501 PG2 This report is in conformity with ISO/ IEC 17025. The "A2LA Accredited" symbol endorsement applies only to the tests and calibrations that are listed in the scope of Hermon Laboratories accreditation. The test results relate only to the items tested. This test report shall not be reproduced in any form except in full with the written approval of Hermon Laboratories Ltd. Report ID: VISRAD_FCC.22178.doc Date of Issue: 18-Oct-11 Page 2 of 87 Table of contents 1 Applicant information .........................................................................................................................................................3 2 Equipment under test attributes ........................................................................................................................................3 3 Manufacturer information ..................................................................................................................................................3 4 Test details ........................................................................................................................................................................3 5 Tests summary ..................................................................................................................................................................4 6 EUT description .................................................................................................................................................................5 6.1 General information ...........................................................................................................................................................5 6.2 Test configuration ..............................................................................................................................................................5 6.3 Changes made in EUT ......................................................................................................................................................5 6.4 Transmitter characteristics ................................................................................................................................................6 7 Transmitter tests according to 47CFR part 15 subpart C and RSS-210 Annex 8 requirements .....................................7 7.1 20 dB bandwidth ................................................................................................................................................................7 7.2 Carrier frequency separation...........................................................................................................................................11 7.3 Number of hopping frequencies ......................................................................................................................................13 7.4 Average time of occupancy .............................................................................................................................................16 7.5 Peak output power...........................................................................................................................................................19 7.6 Band edge radiated emissions ........................................................................................................................................24 7.7 Field strength of spurious emissions...............................................................................................................................28 7.8 Antenna requirements .....................................................................................................................................................68 8 Unintentional emissions ..................................................................................................................................................69 8.1 Radiated emission measurements ..................................................................................................................................69 9 APPENDIX A Test equipment and ancillaries used for tests..........................................................................................76 10 APPENDIX B Measurement uncertainties ......................................................................................................................77 11 APPENDIX C Test laboratory description .......................................................................................................................78 12 APPENDIX D Specification references ...........................................................................................................................78 13 APPENDIX E Test equipment correction factors ............................................................................................................79 14 APPENDIX F Abbreviations and acronyms ....................................................................................................................87 Report ID: VISRAD_FCC.22178.doc Date of Issue: 18-Oct-11 Page 3 of 87 1 Applicant information Client name: Visonic Ltd. Address: Habarzel street 24, Tel Aviv 69710, Israel Telephone: +972 3645 6714 Fax: +972 3645 6788 E-mail: [email protected] Contact name: Mr. Arick Elshtein 2 Equipment under test attributes Product name: Wireless PowerG Two-way Glassbreak Detector (915) Product type: Transceiver Model(s): GB 501 PG2 Hardware version: 8-303102 Softwa…
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Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 1 of 6 SETUP PHOTOGRAPHS This document contains 5 photographs Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 2 of 6 Photograph No.1 Setup for spurious emission field strength measurements in the anechoic chamber below 30 MHz Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 3 of 6 Photograph No.2 Setup for carrier field strength, OBW, spurious emission field strength measurements in the anechoic chamber in 30 – 1000 MHz range Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 4 of 6 Photograph No.3 Setup for spurious emission field strength measurements in the anechoic chamber above 1000 MHz range Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 5 of 6 Photograph No.4 Setup for spurious emission field strength measurements at the OATS above 1000 MHz range Visonic Ltd. FCC ID:WP3GB501PG2 IC:1467C-GB501PG2 Page 6 of 6 Photograph No.5 Setup for band edge emissions and hopping parameters measurements
Harakevet Industrial zone · Binyamina · Israel
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 912.75 MHz - 919.106 MHz | 366.00 mW |

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