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GSAK980D

Visonic Inc.
FDS - Part 15 Field Disturbance Sensor - FCC ID GSAK980D - Visonic Inc.
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Application Details

Equipment Class
FDS - Part 15 Field Disturbance Sensor
Date of Grant
Sep 23, 1999
Application Purpose
Original Equipment
Date of Application
Aug 09, 1999
Frequency Range
10525.00000000 - 10525.00000000
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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Schematics

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Test Report

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

DE18351 /2*,&$/2*,&$$0 Dual-Technology Microwave/PIR Intrusion Detectors Installation Instructions )($785(6 • Cylindrical optics improves detection and false alarm immunity. • True Motion Recognition™ (TMR) algorithm (patented) distin- guishes between the true motion of a human body and other disturbances which invariably cause false alarms • DRO-stabilized MW microstrip technology (patented) • MW Motion Simulator simulates the effect of a human body moving in the MW field (for MW self-test - patent pending) • Range control for adjusting the MW coverage • Integral swivel bracket for wall or ceiling installation • Sealed chamber protects the pyroelectric element from insects. • PIR self-test by applying a short heat pulse (LOGICA-AM only) • Programmable motion event counter (1 or 2 events) • Simple-to-use, two-position vertical adjustment • TEST input to enable/disable the walk test LED remotely (per new European standard) • Open collector trouble output • Anti-masking protection (LOGICA-AM only) • White light protection. Figure 1. General View 63(&,),&$7,216 Input Voltage: 9 to 16 VDC Current Drain: About 28 mA @ 12 VDC PIR SECTION Detector: Low noise dual-element pyroelectric sensor Tripping Indication: LED flashes green for up to 5 seconds Motion Event Verification Counter: Selectable, 1 or 2 events Lens Data (No. 105DH - see Figure 2) No. of Beams: 36 in two layers (curtain beams in bottom layer) Max. Coverage: 12 x 12 m (40 x 40 ft) / 90ƒ field of view Vertical Adjustment: FAR and NEAR, by sliding the circuit board along a two-position scale. MW SECTION Oscillator: Microstrip DRO-stabilized Doppler module Frequency: 10.525 or 2.45 GHz Detection Range: Adjustable from 25% to 100% (3 m to 12 m) Tripping Indication: LED glows green for up to 5 seconds ALARM, TAMPER & TROUBLE DATA Alarm Indication: LED glows red for 1.3 to 5 seconds if both detectors trip Relay Contacts: N.C., rated at 0.1 A resistive / 30 VDC; 18 Ω resistor in series with contacts Alarm Duration: 1.3 to 5 seconds Tamper Switch: N.C., rated at 50 mA resistive / 30 VDC Trouble Output: Open collector, 100 mA max., with 18 Ω resistor in series and 47 k Ω pull-up (see Figure 11) Masking Detection Delay (LOGICA-AM only): About 60 seconds Trouble/ Masking Indication: LED alternately flashes green and red and TRB output pulls LOW until the detector is reset. MOUNTING Height: Up to 3.6 m (12 ft) Room Size: 8 - 12 m (24 - 40 ft) in the “FAR” position; 2 - 8 m (6 - 24 ft) in the NEAR position. Bracket Adjustment: 20ƒ downward, 20ƒ left and right. Installation Options: Surface or corner (without bracket); surface or ceiling (with bracket) ENVIRONMENTAL RFI Protection: >30 V/m up to 1000 MHz. Operating Temperatures: -10ƒC to 50ƒC (14ƒF to 122ƒF). Storage Temperatures: -20ƒC to 60ƒC (-4ƒF to 140ƒF). Figure 2. Coverage Pattern Compliance with Standards: Complies with Part 15 of the FCC Rules. Meets the European Council Directive EMC 89/336/EEC & 92/31/EEC, and bears the CE mark and certification. PHYSICAL Size (H x W x D): 117 x 65 x 47 mm (4-5/8 x 2-9/16 x 1-7/8 in.). Weight: 109 g (3.85 oz) without bracket, 124 g (4.4 oz) with bracket. PATENTS U.S. Patents 5,237,330 and 5,693,943 (other patents pending) ,167$//$7,21 ,QVWDOODWLRQ+LQWV To minimize false alarms: Do not aim at heat sources Mount on solid, stable surfaces Do not expose to air draftsDo not install outdoors 2DE1835 Prevent direct sunlight from reaching the detector Keep wiring away from electrical power cables Do not install behind partitions In addition, a few important rules must be observed while selecting a mounting location: A. Microwave radiation passes through glass and non-metallic walls. Be sure to adjust the MW range so that it does not exceed the room limits, or else motion in the next room or moving traffic along the outer side of the wall will cause the MW detector to trip. B. Large reflecting objects (especially metals) in the coverage area can distort the microwave detector's coverage pattern. C. If two LOGICA units are installed in the same room or on opposite sides of a shared wall, they should not face each other and must be mounted at least 2 meters apart. D . Do not install the LOGICA in places where one of the two detector circuits alarms constantly or intermittently, due to environmental interference. E . LOGICA-AM users are advised to mount the unit in locations where inadvertent approach to less than 1 m (3 ft) from the detector is unlikely to occur. 0RXQWLQJZLWKRXW6ZLYHO%UDFNHW A . Remove the front cover as shown in Figure 3. Figure 3. Cover Removal B . Loosen the vertical adjustment screw, slide the PCB down and remove it via the “keyhole” (see Figure 4). C . Pull the PCB straight out and put it aside until required again. D . Refer to Figure 5 and punch out the mounting knockouts at the rear wall of the base (for surface mounting) or at the angled sides (for corner mounting). Figure 4. PCB Removal E. Punch out any one of the wiring knockouts shown in Figure 5. F. Hold the base against the wall at the selected installation location, mark the points for drilling and drill the holes (insert the plastic dowels supplied if necessary). G. Pass the wires through the wiring inlets into the base and attach the base to the wall using the screws supplied. H. Return the PCB to its place within the base. I. Proceed to wire the terminal block as instructed in Para. 3.5. Figure 5. Inside View 0RXQWLQJZLWK6ZLYHO%UDFNHW A . Remove the front cover as shown in Figure 3. B . Remove the PCB (see Figure 4) and put it temporarily aside. C. Punch out the large knockout in the round bulge at the top part of the base (see Figure 6) Figure 6. Attaching the Bracket D . Assemble the bracket as shown in Figure 6. E . Rotate the bracket to the desired position (refer to Figure 7) but do not yet tighten the screw fully. Figure 7. Wall and Ceiling Positions F . Punch out the selected wiring knockouts in the bracket base (see Fig. 8). G . Press the…

Text truncated - open the document above for the full version.

Users Manual

DE18421 .' Dual-Technology Pet-Immune Intrusion Detector Installation Instructions )($785(6 • Uses TSI™ - Target Specific Imaging technology for distinction between humans and pets (patent pending) • Immune to pets weighing up to 36 kg (80 lb) • True Motion Recognition™ (TMR) algorithm distinguishes between the true motion of a human body and other disturban- ces which invariably cause false alarms (patented) • DRO-stabilized MW microstrip technology (patented) • MW Motion Simulator simulates the effect created by a human body moving in the MW field (patent pending) • Range control for adjusting the MW coverage • Integral swivel bracket for wall or ceiling installation • Sealed chamber protects the pyroelectric element from insects. • Programmable motion event counter (1 or 2 events) • Simple-to-use three position vertical adjustment • TEST input to remotely enable/disable the walk test LED (per new European standards) • Open collector TROUBLE output • White light protection Figure 1. The K-980D Detector 63(&,),&$7,216 Input Voltage: 9 to 16 VDC Current Drain: About 28 mA @ 12 VDC OPTICAL Max. Coverage Range: 12 x 12 m (40 x 40 ft) / 90ƒ Pet Immunity: Immune to pets weighing up to 36 kg (80 lb) Vertical Adjustment: 3-position adjustment scale: 1.8 m (6 ft), 2.1 m (7 ft) and 2.4 m (8 ft). PIR SECTION Detector: Low noise dual-element pyroelectric sensor Tripping Indication: LED flashes green for up to 5 seconds True Motion Event Verification Counter: Selectable, 1 or 2 motion events MW SECTION Oscillator: Microstrip DRO-stabilized Doppler module Frequency: 10.525 or 2.45 GHz Detection Range: Adjustable from 25% to 100% (3 m to 12 m) Trip Indication: LED glows green for up to 5 seconds ALARM, TAMPER & TROUBLE DATA Alarm Indication: LED glows red for 1.3 to 5 seconds if both detectors trip Relay Contacts: N.C., rated at 0.1 A resistive / 30 VDC; 18 Ω resistor in series with contacts Alarm Duration: 1.3 to 5 seconds (LED glows red and output relay contacts open) Tamper Switch: N.C., rated at 50 mA resistive / 30 VDC Trouble Output: Open collector, 100 mA max., with 18 Ω resistor in series and 47 k Ω pull-up (see Figure 11) MOUNTING Height: Up to 2.4 m (8 ft) Installation Options: Surface or corner (without bracket); surface or ceiling (with bracket). Bracket Adjustment: 20ƒ downward (only in non-pet immune applications), 20ƒ left and right. ENVIRONMENTAL RFI Protection: >30 V/m up to 1000 MHz. Operating Temperatures: -10ƒC to 50ƒC (14ƒF to 122ƒF). Storage Temperatures: -20ƒC to 60ƒC (-4ƒF to 140ƒF). Compliance with Standards: Designed to meet FCC part 15; complies with the European Council Directive EMC 89/336/EEC & 92/31/EEC, and bears the CE mark and certification. PHYSICAL Dimensions (H x W x D): 117 x 65 x 47 mm (4-5/8 x 2-9/16 x 1-7/8 in.). Weight: 109 g (3.85 oz) without bracket, 124 g (4.4 oz) with bracket. PATENTS U.S. Patents 5,237,330 and 5,693,943 (other patents pending) ,167$//$7,21 ,QVWDOODWLRQ+LQWV Important! The detector is immune to 36 kg (80 lb) animals moving on the floor or climbing on furniture as long as the activity takes place below 1 m (3 ft). Above the 1 m (3 ft) height limit, the detector is immune to 18 kg (40 lb) pets, but the pet immunity will decrease as the pet gets closer to the detector. It is therefore recommended to select a mounting location that minimizes potential close proximity of animals. To minimize false alarms: Do not aim at heat sources Mount on solid, stable surfaces 2DE1842 Do not expose to air draughtsDo not install outdoors Prevent direct sunlight from reaching the detector Keep wiring away from electrical power cables Do not install behind partitions In addition, a few important rules must be observed while selecting a mounting location: A. Microwave radiation passes through glass and non-metallic walls. Be sure to adjust the MW range so that it does not exceed the room limits, or else motion in the next room or moving traffic along the outer side of the wall will cause the MW detector to trip. B. Large reflecting objects (especially metals) within the coverage area can distort the microwave detector's coverage pattern. C. If two K-980D units are installed in the same room or on opposite sides of a shared wall, they should not face each other and must be mounted at least 2 meters apart. D. Do not install the K-980D in places where one of the two detector circuits alarms constantly or intermittently, due to environmental interference. 0RXQWLQJZLWKRXW6ZLYHO%UDFNHW A . Remove the front cover as shown in Figure 3. Figure 3. Cover Removal B . Loosen the vertical adjustment screw, slide the PCB down and remove it via the “keyhole” (see Figure 4). C . Pull the PCB straight out and put it aside until required again. Figure 4. PCB Removal D.Refer to Figure 5 and punch out the mounting knockouts at the rear wall of the base (for surface mounting) or at the angled sides of the base (for corner mounting). Figure 5. Inside View E . Punch out any one of the wiring knockouts shown in Figure 5. F . Hold the base against the wall at the selected installation location, mark the points for drilling and drill the holes (insert the plastic dowels supplied if necessary). G . Pass the wires through the wiring inlets into the base and attach the base to the wall using the screws supplied. H . Return the PCB to its place within the base. I . Proceed to wire the terminal block as instructed in Para. 3.5. 0RXQWLQJZLWK6ZLYHO%UDFNHW A . Remove the front cover as shown in Figure 3. B . Remove the PCB (see Figure 4) and put it temporarily aside. C . Punch out the large knockout in the round bulge at the top part of the base (see Figure 6) Figure 6. Attaching the Bracket D . Assemble the bracket as shown in Figure 6. E . Rotate the bracket to the desired position (see Figure 7) but do not yet tighten the screw fully. Figure 7. Wall and Ceiling Positions of Bracket F . Punch out the selected wiring knockouts in the bracket (see Figure 8). G . P…

Text truncated - open the document above for the full version.

Block Diagram

FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 1 of 2 BLOCK DIAGRAM FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 2 of 2

Cover Letter(s)

Visonic Ltd August 8, 1999 FEDERAL COMMUNICATIONS COMMISSION EQUIPMENT APPROVAL SERVICES P.O.B. 358315 Pittsburgh, PA 15251-5315 USA Subject: Application for certification of microwave/PIR (passive infrared) intrusion detector transmitter, FCC ID:GSAK980D, operating at 10.525 GHz Dear Gentlemen, Please find attached our application for certification of microwave/PIR (passive infrared) intrusion detector transmitter, FCC ID:GSAK980D, prepared in accordance with FCC Rules, parts 2 and 15. There are 4 types of detectors in the family, all of which are dual technology, i.e. passive infrared and microwave: 1) Logica 2) Logica OEM 3) Logica AM 4) K 980 D The original product is Logica. Logica OEM has exactly the same electronics. The only difference is in the casing plastic front. Logica AM differs from the Logica in the passive infrared section: there is an additional resistor across the PIR element, additional transistor, 2 resistors and a diode. K 980 D differs from the Logica in the passive infrared section: the lens is different and so are some resistors affecting the PIR amplification, also the adjustment scale on the PCB and some marking (name of product) are different. None of the above differences affect the microwave section which is the same in all four units. The product testing and this application for certification were performed by Hermon Laboratories, which is listed by FCC. Hermon Labs responsible person is Dr. Edward Usoskin, tel: 01197266288001, fax:01197266288277, e-mail: [email protected]. We hope this application satisfies your requirements. Sincerely yours, Arick Elshtein, technical support manager Visonic Ltd. 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

External Photos

FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 1 of 3 EXTERNAL PHOTOGRAPHS This document contains 2 photographs FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 2 of 3 Photograph No.1 LOGICA and K980D detectors general view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 3 of 3 Photograph No.2 LOGICA detector casing internal view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 4 of 3 Photograph No.3 K980D detector casing internal view

ID Label/Location Info

FCC ID:GSAK980D Date: August, 1999 Project number:13407 Page 1 of 1 LABEL The label shown below is affixed on the bottom of the intrusion detector Label placement on the EUT bottom Label

Internal Photos

FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 1 of 8 INTERNAL PHOTOGRAPHS This document contains 4 photographs and 3 PCB drawings FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 2 of 8 Photograph No.1 LOGICA detector internal view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 3 of 8 Photograph No.2 K980D detector internal view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 4 of 8 Photograph No.3 K980D detector PCB rear view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 5 of 8 Photograph No.4 LOGICA detector PCB rear view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 6 of 8 Drawing No.1 LOGICA detector PCB view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 7 of 8 Drawing No.2 LOGICA-AM detector PCB view FCC ID:GSAK980D Date: August, 1999 Project number:13407Page 8 of 8 Drawing No.3 K980D detector PCB view

Operational Description

FCC ID:GSAK980D Date: August, 1999 Project number:13407 Page 1 of 1 OPERATIONAL DESCRIPTION The LOGICA / K980 D is a dual technology intruder detector / motion sensor. The detector includes a PIR (Passive infrared) detector, working in combination with a 10.525 GHz Doppler effect motion detector. Antenna The microwave antenna is an integral patch of/on the pcb of the microwave module type MM1.

Contact Information

Applicant

Scott Jensen(Tec Manager)
860-243-0833

Technical Contact

Hermon LaboratoriesEdward Usoskin
[email protected]011 972 6628 8001

HaRakevet Industrial Zone · Binyamina · Israel

Non-Technical Contact

Visonic Ltd.Arick Elshtein
[email protected]011 972 3645 6714

Test Firm

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

Technical Specifications

#Rule PartsFrequency RangePower Output
115C10.53 GHz - 10.53 GHz-

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