
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
DE1834 1 NEXT DUO Dual-Technology, Digital MW/PIR Intrusion Detector Installation Instructions 1. INTRODUCTION The NEXT DUO is a digital, microprocessor-controlled MW / PIR detector that can be adapted to the size of the protected area by use of a model selector. A different digital signal processing (DSP) is used upon selection of each model, thus optimizing both PIR and MW performance within the protected area. The PIR section of the NEXT DUO employs a cylindrical lens with uniform detection sensitivity beginning at 0.5 m (1.8 ft) away from the detector up to a distance of 12 meters (40 ft). Advanced True Motion Recognition™ algorithm (patented) allows the NEXT DUO to distinguish between the true motion of an intruder and any other disturbances which cause false alarms. A Test input permits switching the detector to the walk test mode remotely without removing the front cover. An on-board motion event jumper determines whether 1 or 2 consecutive motion events would trigger an alarm. Figure 1. General View Figure 2. Inside View 2. SPECIFICATIONS Selectable Models: Models covering 6, 9 and 12 meters (20, 30 and 40 ft), selected upon installation Input Voltage: 9 to 16 VDC Current Drain: About 20 mA @ 12 VDC PIR SECTION (see Figure 3) Lens Data No. of Curtain Beams: 9 + 5 Max. Coverage: 12 x 12 m (40 x 40 ft) / 90° Tripping Indication: Indicator lights ORANGE for about 3 sec. MW SECTION Oscillator Type: Microstrip, DRO-stabilized Frequency: 2.45 GHz Detection Range: Up to 12 m Tripping Indication: Indicator lights GREEN for about 3 sec. Figure 3. Maximum Coverage Pattern ALARM and TAMPER Alarm Output: Solid-state relay, N.C., up to 100 mA / 30 V, ~30 Ω internal resistance. Circuit opens for 2-3 seconds upon alarm. Alarm Indication: Indicator lights RED for about 3 seconds. Event Counter: Selectable, 1 or 2 motion events Tamper Contacts: Normally closed, 50 mA resistive / 30 VDC MOUNTING Surface or corner, at the height of 1.8 to 2.4 m (6 to 8 ft) Note: Base allows single-sided corner mount at 45° to wall. 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 Operating Temperature: –10°C to 50°C (14°F to 122°F) Storage Temperature: –20°C to 60°C (–4°F to 140°F) RFI Protection: Greater than 20 V/m (20 MHz to 1000 MHz) PHYSICAL Size (H x W x D): 94.5 x 63.5 x 49.0 mm (3-11/16 x 2-1/2 x 1-15/16”) Weight: Approximately 50 g (1-3/4 oz) PATENTS U.S. Patents 5,693,943 and 6,211,522 (another patent pending) This device complies with the essential requirements and provisions of Directive 1999/5/EC of the European Parliament and of the Council of 9 March 1999 on radio and telecommunications terminal equipment. 2.45 GHz has no restriction in any EU member state. 3. INSTALLATION 3.1 General Guidelines A. Microwave radiation passes through glass and non-metallic walls. Be sure, therefore, to select the correct model in accordance with the room size. This is important to minimize the effect of movements occurring beyond room limits which might cause the MW section to trip. B. Large reflecting objects (especially metals) in the coverage area can distort the microwave detector's coverage pattern. C. If two NEXT-DUO 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 20 cm (0.6 ft) apart. Attention! At power up, the detector undergoes a 60-second stabilization period, indicated by alternate flashing of the red and green LEDs. 2 DE1834 3.2 Illustrated Installation Procedure 4. SPECIAL COMMENTS Even the most sophisticated detectors can sometimes be defeated or may fail to warn due to: DC power failure / improper connection, malicious masking of the lens, tampering with the optical system, decreased sensitivity in ambient tempera- tures near that of the human body and unexpected failure of a component part. The above list includes the most common reasons for failure to detect intrusion, but is by no means comprehensive. It is therefore recommended that the detector and the entire alarm system be checked weekly, to ensure proper performance. An alarm system should not be regarded as a substitute for insurance. Home and property owners or renters should be prudent enough to continue insuring their lives and property, even though they are protected by an alarm system. This device has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in residential installations. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio and television reception. However, there is no guarantee that interference will not occur in a particular installation. If this device does cause such interference, which can be verified by turning the device off and on, the user is encouraged to eliminate the interference by one or more of the following measures: – Re-orient or re-locate the receiving antenna. – Increase the distance between the device and the receiver. – Connect the device to an outlet on a circuit different from the one that supplies power to the receiver. – Consult the dealer or an experienced radio/TV technician. WARNING! Changes or modifications to this unit not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. VISONIC LTD. (ISRAEL): P.O.B 22020 TEL-AVIV 61220 ISRAEL. PHONE: (972-3) 645-6789, FAX: (972-3) 645-6788 VISONIC INC. (U.S.A.): 10 NORTHWOOD DRIVE, BLOOMFIELD CT. 06002-1911. PHONE: (860) 243-0833, (800) 223-0020 FAX: (860) 242-8094 VISONIC LTD. (UK): UNIT 1, STRATTON PARK, DUNTON LANE BIGGLESWADE, BEDS. SG18 8QS. PHONE: (01767) 600857 FAX: (01767) 601098 INTERNET: www.visonic.com…
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American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 December 12, 2002 RE: Visonic Ltd. FCC ID: GSANEXTDUO After a review of the submitted information, I have a few comments on the above referenced Application. 1) This application did not include a request for confidentiality. Please confirm that confidentiality is not requested on this application. 2) Please provide a photograph or drawing showing the placement of the label on the device. 3) The test photographs appear to show that the EUT was positioned on its back for all tests. However, this device will typically be mounted on the wall to generate a field forward. Please confirm if the device has been checked in the upright position as the note on the bottom of page 9/10 of 51 states. If not, please test in an upright position and check data against the data already supplied. 4) This device was tested up to 25 GHz, yet the equipment list does not contain any antennas for above 18 GHz. Please explain. 5) It is assumed that the EUT obtains its power from host equipment. Therefore compliance with conducted emissions (15.107 & 15.207) needs to be shown. See 15.107 (f) & 15.207 (d) for details. It is also recommended that the conducted emissions meet the future limits (CISPR) that will be required in the next few years. This is because the grant will be issued with one of the following grant notes depending on which set of limits it is shown to have met: Current Limits NOTE: The manufacture and importation of this device must cease on July 10, 2005 pursuant to 15.37(j) or 18.123 transition provisions adopted under FCC 02-157 (ET Docket 98-80). Future Limits (CISPR) NOTE: This device has shown compliance with the conducted emissions limits in 15.107, 15.207, or 18.307 adopted under FCC 02-157 (ET Docket 98-80) and may be marketed after July 11, 2005 and is not affected by the 15.37(j) or 18.123 transition provisions. 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. z Page 2December 12, 2002 Any questions about the content of this correspondence should be directed to the sender.
FCC ID: GSANEXTDUO In reply to e-mail dated December 12, 2002 Dear Mr. Johnson, Below are the answers to your questions. 1. Visonic confirms that the confidentiality is not required. 2. The label is placed on the bottom of the EUT. Please find an updated Label location description (NextDUO label location.doc), submitted via "Upload for application GSANEXTDUO ATCB000051", Label location folder on December 31, 2002. 3.We confirm that the device was tested in three orthogonal positions (including the upright position), as required by the standard and described in the test procedure. 4. I am very sorry, I did not included the standard gain horn antenna into the Equipment list. Please find the updated test report, submitted via "Upload for application GSANEXTDUO ATCB000051", Test report folder on December 31, 2002. 5. Please find an attachment to the test report, showing compliance with conducted emission requirements. This attachment was submitted via "Upload for application GSANEXTDUO ATCB000051", Test report folder on December 31, 2002. With great respect, Valeria To: "'[email protected]'" <[email protected]> Subject: FCC ID: GSANEXTDUO Page 1 of 1In 12/31/2002Printed for "Timothy R. Johnson" <[email protected]>
Photograph 1 General view Photograph 2 Bottom view
This label will be affixed as shown in Photo below:
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Photograph 1 Internal view Photograph 2 Big PCB component side Photograph 3 Big PCB print side Photograph 4 RF module, top side Photograph 5 RF module bottom side
DE1029 1 1. INTRODUCTION The NEXT DUO is a digital, microprocessor-controlled MW / PIR detector that can be adapted to the size of the protected area by use of a model selector. A different digital signal processing (DSP) is used upon selection of each model, thus optimizing both PIR and MW performance within the protected area. The PIR section of the NEXT DUO employs a cylindrical lens with uniform detection sensitivity beginning at 0.5 m (1.8 ft) away from the detector up to a distance of 12 meters (40 ft). Advanced True Motion Recognition™ algorithm (patented) allows the NEXT DUO to distinguish between the true motion of an intruder and any other disturbances which cause false alarms. A Test input permits switching the detector to the walk test mode remotely without removing the front cover. An on-board motion event jumper determines whether 1 or 2 consecutive motion events would trigger an alarm. Figure 1. General View Figure 2. Inside View 2. SPECIFIATIONS Selectable Models: Models covering 6, 9 and 12 meters (20, 30 and 40 ft), selected upon installation Input Voltage: 9 to 16 VDC Current Drain: About 20 mA @ 12 VDC PIR SECTION (see Figure 3) Lens Data No. of Curtain Beams: 9 + 5 Max. Coverage: 12 x 12 m (40 x 40 ft) / 90° Tripping Indication: Indicator lights ORANGE for about 3 sec. MW SECTION Oscillator Type: Microstrip, DRO-stabilized Frequency: 2.45 GHz Detection Range: Up to 12 m Tripping Indication: Indicator lights GREEN for about 3 sec. Figure 3. Maximum Coverage Pattern ALARM and TAMPER Alarm Output: Solid-state relay, N.C., up to 100 mA / 30 V, ~30 Ω internal resistance. Circuit opens for 2-3 seconds upon alarm. Alarm Indication: Indicator lights RED for about 3 seconds. Event Counter: Selectable, 1 or 2 motion events Tamper Contacts: Normally closed, 50 mA resistive / 30 VDC MOUNTING Surface or corner, at the height of 1.8 to 2.4 m (6 to 8 ft) Note: Base allows single-sided corner mount at 45° to wall. 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 Operating Temperature: –10°C to 50°C (14°F to 122°F) Storage Temperature: –20°C to 60°C (–4°F to 140°F) RFI Protection: Greater than 20 V/m (20 MHz to 1000 MHz) PHYSICAL Size (H x W x D): 94.5 x 63.5 x 49.0 mm (3-11/16 x 2-1/2 x 1-15/16”) Weight: Approximately 50 g (1-3/4 oz)
ee183120_614892.sch-1 - Thu Nov 14 14:34:06 2002
This report is in conformity with EN 45001 and 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 51 Document ID: VISRAD_FCC.15006 Date of Issue: November 02 HERMON LABORATORIES Electrical Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] RADIO TEST REPORT ACCORDING TO 47CFR PART 15, SUBPART C § 15.245 and SUBPART B for Visonic Ltd. EQUIPMENT UNDER TEST: Dual Technology, Digital MW/PIR Intrusion Detector Model: Next DUO Page 2 of 51 Document ID: VISRAD_FCC.15006 Date of Issue: November 02 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Contents 1 Project information......................................................................................................................................................... 3 2 Summary of tests ........................................................................................................................................................... 4 3 EUT description .............................................................................................................................................................. 6 3.1 G ENERAL DESCRIPTION ................................................................................................................................................ 6 3.2 EUT TEST CONFIGURATION.......................................................................................................................................... 6 3.3 TRANSMITTER DESCRIPTION.......................................................................................................................................... 8 4 Tests results ................................................................................................................................................................... 9 4.1 FIELD STRENGTH OF FUNDAMENTAL ACCORDING TO ß 15.245 (A)..................................................................................... 9 4.2 FIELD STRENGTH OF HARMONICS ACCORDING TO ß 15.245 (B)(1) .................................................................................. 10 4.3 OUT OF BAND SPURIOUS EMISSIONS ACCORDING TO ß 15.245 (B)(3).............................................................................. 11 4.4 U NINTENTIONAL RADIATED EMISSIONS TEST ACCORDING TO ß15.109.............................................................................. 12 Appendix A Plots................................................................................................................................................................. 13 Appendix B Test setup photographs ................................................................................................................................. 36 Appendix C Test equipment used for tests and correction factors ................................................................................ 41 Appendix D General information........................................................................................................................................ 50 TEST FACILITY DESCRIPTION................................................................................................................................................... 50 ABBREVIATIONS AND ACRONYMS............................................................................................................................................. 50 S PECIFICATION REFERENCES .................................................................................................................................................. 50 FCC E QUIPMENT CODES AND DESCRIPTIONS ........................................................................................................................... 51 Page 3 of 51 Document ID: VISRAD_FCC.15006 Date of Issue: November 02 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] 1 Project information Description of equipment under test Test items : Dual technology, digital MW/PIR intrusion detector Manufacturer : Visonic Ltd. Equipment serial number : Cat 0-1832-1 Types (Models) : Next DUO Equipment FCC code 1 : DSC Applicant information Applicantís responsible person : Arick Elshtein Company : Visonic Address : 27 Habarzel street Postal code : 69710 City : Tel Aviv Country : Israel Telephone number : +972 3 6456714 Telefax number : +972 3 6456891 Test performance Project Number: : 15006 Location : Hermon Laboratories Receipt date : September 18, 2002 Test started : September 18, 2002 Test completed : September 23, 2002 Purpose of test Apparatus compliance verification in accordance with emission requirements Test specification(s) 47CFR Part 15, ß15.249 and subpart B 1 FCC Equipment codes ñ see Appendix D Page 4 of 51 Document ID: VISRAD_FCC.15006 Date of Issue: November 02 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] 2 Summary of tests The tests listed in the table below were performed. The EUT was found complying with the limits of 47CFR Part 15, ß15.245 and s ubpart B. Parameter Subclause C NC NT NA Tested by Date tested Remarks Transmitter characteristics Field strength of fundamental (a) C Mrs. E. Pitt, test engineer September 18, 23, 2002 Field strength of harmonics (a) C Mrs. E. Pitt, test engineer Mr. Y. Neuman, test engineer September 18, 22, 2002 Out of band spurious emissions (radiated) (c) C Mrs. E. Pitt, test engineer Mr. Y. Neuman, test engineer February 27, Se…
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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 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Electrical Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Attachment to VISRAD_FCC.15006 EQUIPMENT UNDER TEST: Dual Technology, Digital MW/PIR Intrusion Detector Model: Next DUO Page 2 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] 1 Emissions test 1.1 Radio frequency interference voltage measurements according to paragraphs 15.107, 15.207 1.1.1 General This test was performed to measure common mode conducted emissions at the power port. Specification test limits are given in Table 1.1.1. The worst test results (the lowest margins) were recorded in Table 1.1.2 and shown in the associated plots. TEST SPECIFICATION: 47CFR part 15, subpart B, Class B Table 1.1.1 Mains terminal radio interference voltage specification test limits Class B equipment, dB(μV) Frequency, MHz QP AVRG 0.15 - 0.5 66-56* 56-46* 0.5 – 5.0 56 46 5.0 – 30 60 50 *The limit decreases linearly with the logarithm of frequency. 1.1.2 Test procedure 1.1.2.1 The EUT was configured as shown in Figure 1.1.1, set up as shown in Figure 1.1.2 and the associated photograph, energized and the performance check was conducted. 1.1.2.2 The measurements were performed at mains terminals by means of the LISN, connected to a spectrum analyzer in the frequency range referred to in Table 1.1.1. Unused coaxial connector of the LISN was terminated with 50 Ω. Quasi-peak detector was used during the testing as referred to in Table 1.1.2. 1.1.2.3 The EUT was found to be in compliance with the standard requirements and passed the test. Page 3 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Table 1.1.2 Radio frequency interference voltage test results TEST SPECIFICATION: 47CFR part 15, subpart B, Class B DATE: December 23, 2002 RELATIVE HUMIDITY: 42% AMBIENT TEMPERATURE: 23°C AIR PRESSURE: 1017 hPa THE EUT WAS TESTED AS: TABLE-TOP DETECTORS USED: QUASI-PEAK FREQUENCY RANGE: 150 kHz – 30 MHz RESOLUTION BANDWIDTH: 9 kHz MODE OF OPERATION TRANSMITTING Frequency, MHz Line ID Measured emissions, dB (μV) Specification AVRG limit, dB (μV) Margin, dB Pass/ Fail 0.162430 N 29.39 55.39 26.00 Pass 0.162645 Ph 28.80 55.38 26.58 Pass 0.171190 Ph 29.03 54.97 25.94 Pass 0.175535 N 28.59 54.75 26.16 Pass 0.182425 Ph 26.19 54.42 28.23 Pass All emissions measured with quasi-peak detector were found more than 25 dB below the average limit, therefore further measurements with average detector were considered unnecessary. Table calculations and abbreviations: ß Line ID = line identification (Ph - phase, N - neutral). ß Margin = dB below (negative if above) specification limit. ß AVRG = average Reference numbers of test equipment used HL 0163 HL 0580 HL 0590 HL 1430 Full description is given in Appendix A. Page 4 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Plot 1.1.1 Mains terminal radio frequency interference voltage test results LINE: PHASE LIMIT: QUASI-PEAK, AVERAGE DETECTOR: PEAK Page 5 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Plot 1.1.2 Mains terminal radio frequency interference voltage test results LINE: NEUTRAL LIMIT: QUASI-PEAK, AVERAGE DETECTOR: PEAK Page 6 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Figure 1.1.1 EUT test configuration EUTControl panelAC/DC adapter AC mains Page 7 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Figure 1.1.2 Setup for radio frequency interference voltage test, table-top equipment Shielded room EUT 80 cm LISN Power supply EMI receiver 80 cm Power cord EUT was placed 40 cm from the nearest conductive reference plane (wall) Wooden table Page 8 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] Photograph 1.1.1 Setup view for radio frequency interference voltage test Page 9 of 10 Document ID: Att to VISRAD_FCC.15006 Date of Issue: December 2002 HERMON LABORATORIES Hermon Laboratories Ltd. P.O.Box 23 Binyamina 30550, Israel Tel.+972 46288001 Fax.+972 46288277 e-mail: [email protected] APPENDIX A Measurement uncertainty, test equipment and ancillaries used for tests The test equipment has been calibrated according to its recommended procedures and is within the manufacturer's published limit of error. The standards and instruments used in the calibration system conform to the present requirements of ISO/IEC 17025 (or alternately ANSI/NCSL Z540-1). The laboratory calibrates its standards by a third party (traceable to NIST, USA) on a regular bas…
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Harakevet Industrial zone · Binyamina · Israel
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.245 | 2.45 GHz - 2.45 GHz | - |

Infant Protection Bracelet
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
PANIC WATCH
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
LF Exciter
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz
Dual-Technology Microwave/PIR Intrusion Detector
Equipment Class
FDS - Part 15 Field Disturbance Sensor
Supervised Indoor Wireless CO Gas Detector
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter