
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1 2 3 FW2-MAG-8F FW2-MAG-9F FW2 MAGNETIC CONTACT ELECTRONIC ENGINEERING LTD. INSTALLATION INSTRUCTIONS P/N 7101590 REV. C INTRODUCTION The FW2-MAG is an advanced magnetic contact sensor with integrated RF transceiver designed to be a fully supervised low-current device The FW2-MAG is a part of the FREEWAVE2 which is a supreme wireless line of devices that uses an advanced 2way RF transceiver combined with an intelligent communication protocol. A built-in reed switch and/or an external wired input may be applied in this device. To maximize security, an 8.2k end-of-line resistor is monitored on the external wired input. FW2-MAG uses smart message control, which verifies that all messages are successfully transmitted, so that no intrusion event will be uninformed to the system. Each FW2-MAG has a unique factory set ID code (24bit) which by registration is set into memory of the paired FREEWAVE2 TRANSCEIVER, enabling more secured communication and devices to be remotely controlled from a specific transceiver. FEATURES State-of-the-art 2 way wireless security system Freewave2 advanced & secured RF protocol Low current Technology Powered by a single 3V Lithium battery Battery life: more than 5 years Frequency: 868.35MHz, 868.85MHz (FW2-MAG-8F) or 916.5MHz (FW2-MAG-9F) Contact Open/Close transmission Tamper Open/Close transmission Supervision transmission Battery status send on every transmission Range up to 500m on open space. Unique ID number Front and back tamper. Alarm trigger either by the internal reed switch and / or by wired terminal Wired terminal with E.O.L 8K2 resistor. 4 5 6 OPERATION The Wireless Magnetic detector transmits the following events data: SUPERVISION - a periodical transmission every 2 min. indicates detector’s presence. ALARM - Alarm transmission triggered by intrusion detection by REED SWITCH and WIRE input. (Selectable, See section 8: SETTING THE OPERATION MODE). LOW BAT – Whenever the battery reaches a pre-set low level (~2.4V) Battery Low signal will be sent with the next scheduled message (Supervisor, Alarm, etc.). TAMPER – Whenever the FW2-MAG cover is removed or tore off wall, a message will be transmitted with “Tamper” signal. FIG. 1 - REMOVAL OF FRONT COVER FIG. 2 - BATTERY PLACEMENT 7 8 9 Fig. 3 - CIRCUIT LAYOUT SETTING THE OPERATION MODE There are 3 operational modes for the FW2-MAG and it should be configured during the power-up (battery placing) 1.Internal Reed Switch only: Jumper is connected and Wired Terminal open. 2. External Reed switch only: Jumper is connected and external reed switch closed with resistor 8K2. Note: to return to internal reed installer should reset device (battery remove and replace) 3. Both internal and external reed switches: Jumper is NOT connected Note: At this mode if one of the reed switches is open an "Open zone" message will be transmitted. ID REGISTRATION Refer to the system transceiver’s installation instructions and follow the procedure given there for “learning” detector IDs. Place battery as instructed & wait until start up LED stops blinking. Make sure that the transceiver is on learning mode according to control panel installation instruction. Generate a transmission by pressing and releasing tamper switch - this will start the "learn" data transmitting by the device to the control panel transceiver. Note the LED indications on the device: Green/Red LED flashes alternately – for 5 sec Magnet was registered successfully cover may be closed only after verification with control panel. Green LED blinks periodically – Device was not sighed into FW2-TRANSCIVER. Repeat registration process Red LED blinks – for over 20sec Battery voltage is critically low. Replace battery 10 11 12 SELECT MOUNTING LOCATION It is recommended to mount FW2-MAG vertically on a flat area to get maximum range. As the detector is a wireless transceiver, and in order to take full advantage of it’s sophisticated operation, do not install the detector in areas where large metal objects could interfere with the transmission of signals. It is recommended to attach transmitter to the fixed frame and the magnet to the moveable part (door or window), as shown on section 14. Installation is not allowed on a ferromagnetic surface. RSSI – RF SIGNAL INDICATION The FREEWAVE2 control panel has “RF Signal Strength Indication” (RSSI) for each transceiver in order to help the installer to define the best location for the detector from RF perspective. The indication value is between 10 and 100, where 100 is the best RF received signal. If the RSSI indication value is less then 30, it is a sign for a weak RF link and it is recommended to find a better installation for the FW2-MAG. NOTE: Supported only on selected Crow CP. CAUTION !!! RISK OF EXPLOSION IF BATTERY IS REPLACED BY DIFFERENT TYPE/MODEL. DISPOSE USED BATTERIES ACCORDING TO ITS INSTRUCTIONS FIG. 4 - KNOCKOUT HOLES Reed Switch Antenna Wire Input up to 15m + EOL Battery Tamper Input select Use for flat wall mounting Place the Magnet unit near this marking Magnet Unit Location (Do not over tighten) For detector installation it is recommended to use SCREW 3x30 PH. FLAT HEAD CAUTION: using a different or a bigger screw can damage the electronic board. The battery must be replaced by 3V Lithium battery Size 2/3A, Models such as: VARTA CR123A or GP CR123A 13 14 15 MOUNTING THE DETECTOR 1. To remove the front cover, unscrew the holding screw, insert a flat screwdriver in the slot between the front and the bottom while pushing and twisting it gently until the front cover is disengaged. (Fig. 1) 2. Mount the detector base: place all 3 screws and make sure you tighten the tamper screw (the middle screw) easily, so the back tamper switch will press the switch successfully when PCB is placed back - over winding may result in false mechanical adaptation and lack of tamper press. 3. Mount the Magnet Unit near the Marking. 4. Place the CR123A BAT according to the right polarity 5. Place th…
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ELECTRONIC ENGINEERING LTD. 12 Kineret St., Airport City, 70100 Israel Tel. +972 3 9726000 Fax. +972 3 9726001 www.thecrowgroup.com February 10, 2014 Telefication B.V. Attn: Dept. FCC TCB Edisonstraat 12A 6902 PK ZEVENAAR The Netherlands Subject: Application for certification of a magnetic contact detector, FCC ID:NFC-FW2MAG9F Dear Gentlemen, Please find attached our application for certification of a magnetic contact detector, FCC ID:NFC-FW2MAG9F, model FW2-MAG-9F, prepared in accordance with FCC Rules part 2 and part 15 subpart C section 15.231(a). The product testing and this application for certification were performed by Hermon Laboratories, which is listed by FCC, Registration Numbers 90623, 90624. The FCC Designation Number is US1003. Hermon Labs responsible person is Mr. Michael Nikishin, tel: +972 4626 8440, fax:+972 4628 8277, e-mail: [email protected]. Please send an invoice to Hermon Labs. We hope this application satisfies your requirements Sincerely yours, Shuki Segal, Vice-President of Operations and Technology
Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 1 of 4 EXTERNAL PHOTOGRAPHS This document contains 3 photographs Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 2 of 4 Photograph No.1 “FW2-MAG-9F” magnetic contact detector front view Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 3 of 4 Photograph No.2 “FW2-MAG-9F” magnetic contact detector rear side view Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 4 of 4 Photograph No.3 “FW2-MAG-9F” magnetic contact detector side view
Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 1 of 1 Label The label is affixed on the rear side of the magnetic contact as shown below. The label material is PVC with a permanent adhesive. Label location Label with FCC ID:NFC-FW2MAG9F will be located at the rear side panel. The statement according to FCC part 15 §15.19(a)(3) is placed in Installation Instructions, page 2 (Application exhibit User_manual_25156).
Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 1 of 5 INTERNAL PHOTOGRAPHS This document contains 4 photographs Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 2 of 5 Photograph No.1 “FW2-MAG-9F” magnetic contact detector internal view Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 3 of 5 Photograph No.2 “FW2-MAG-9F” magnetic contact detector main PCB front view Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 4 of 5 Photograph No.3 “FW2-MAG-9F” main PCB second side view Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 5 of 5 Photograph No.4 Antenna close view
Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 1 of 1 Operational description The FW2-MAG is an advanced magnetic contact sensor with integrated RF transceiver designed to be a fully supervised low-current device The FW2-MAG is a part of the FREEWAVE2 which is a supreme wireless line of devices that uses an advanced 2way RF transceiver combined with an intelligent communication protocol. A built-in reed switch and/or an external wired input may be applied in this device. To maximize security, an 8.2k end-of-line resistor is monitored on the external wired input. FW2-MAG uses smart message control, which verifies that all messages are successfully transmitted, so that no intrusion event will be uninformed to the system. Each FW2-MAG has a unique factory set ID code (24bit) which by registration is set into memory of the paired FREEWAVE2 TRANSCEIVER, enabling more secured communication and devices to be remotely controlled from a specific transceiver. OPERATION The Wireless Magnetic detector transmits the following events data: SUPERVISION - a periodical transmission every 2 min. indicates detector’s presence. ALARM - Alarm transmission triggered by intrusion detection by REED SWITCH and WIRE input. (Selectable, See section 8: SETTING THE OPERATION MODE). LOW BAT – Whenever the battery reaches a pre-set low level (~2.4V) Battery Low signal will be sent with the next scheduled message (Supervisor, Alarm, etc.). TAMPER – Whenever the FW2-MAG cover is removed or tore off wall, a message will be transmitted with “Tamper” signal. FEATURES Frequency: 916.5 MHz Type of modulation: GFSK State-of-the-art 2 way wireless security system Freewave2 advanced & secured RF protocol Low current Technology Powered by a single 3V Lithium battery Battery life: more than 5 years Contact Open/Close transmission Tamper Open/Close transmission Supervision transmission Battery status send on every transmission Range up to 500m on open space. Unique ID number Front and back tamper. Alarm trigger either by the internal reed switch and / or by wired terminal Wired terminal with E.O.L 8K2 resistor.
Hermon Laboratories Ltd. Harakevet Industrial Zone, Binyamina 30500, Israel Tel. +972-4-6288001 Fax. +972-4-6288277 E-mail: [email protected] Page 1 of 57 Report ID: CRORAD_FCC.25156.docx Date of Issue:19-Dec-13 ELECTRICAL TESTING 0839.01 TEST REPORT ACCORDING TO: FCC CFR 47 Part 15 subpart C, section 15.231 (a) and subpart B; RSS-210 issue 8 Annex 1, RSS-Gen issue 3, ICES-003 Issue 5 FOR: Crow Electronic Engineering Ltd. Door&windows contact detector Model:FW2-MAG-9F FCC ID:NFC-FW2MAG9F IC:8164A-FW2MAG9F 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: CRORAD_FCC.25156.docx Date of Issue: 19-Dec-13 Page 2 of 57 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 the EUT ............................................................................................................................................ 5 6.4 EUT test positions ......................................................................................................................................................... 6 6.5 Transmitter characteristics ............................................................................................................................................ 7 7 Transmitter tests according to 47CFR part 15 subpart C and RSS-210 issue 8 Annex 1 requirements ...................... 8 7.1 Periodic operation requirements ................................................................................................................................... 8 7.2 Field strength of emissions .......................................................................................................................................... 12 7.3 Occupied bandwidth test ............................................................................................................................................. 33 7.4 Antenna requirements ................................................................................................................................................. 36 8 Unintentional emissions .............................................................................................................................................. 37 8.1 Radiated emission measurements .............................................................................................................................. 37 9 APPENDIX A Test equipment and ancillaries used for tests ....................................................................................... 43 10 APPENDIX B Measurement uncertainties ................................................................................................................... 44 11 APPENDIX C Test laboratory description ................................................................................................................... 45 12 APPENDIX D Specification references ....................................................................................................................... 45 13 APPENDIX E Test equipment correction factors ......................................................................................................... 46 14 APPENDIX F Abbreviations and acronyms ................................................................................................................. 57 Report ID: CRORAD_FCC.25156.docx Date of Issue: 19-Dec-13 Page 3 of 57 1 Applicant information Client name: Crow Electronic Engineering Ltd. Address: 12 Kineret street, P.O.Box 293, Ben Gurion Airport, Airport City, 70100, Israel Telephone: +972 3972 6093 Fax: +972 3972 6001 E-mail: [email protected] Contact name: Mr. Eugene Plotnichenko 2 Equipment under test attributes Product name: Door&windows contact detector Product type: Transceiver Model(s): FW2-MAG-9F Serial number: NA Hardware version: 5 Software release: V2.20 Receipt date 13-Nov-13 3 Manufacturer information Manufacturer name: Crow Electronic Engineering Ltd. Address: 12 Kineret street, P.O.Box 293, Ben Gurion Airport, Airport City, 70100, Israel Telephone: +972 3972 6093 Fax: +972 3972 6001 E-Mail: [email protected] Contact name: Mr. Eugene Plotnichenko 4 Test details Project ID: 25156 Location: Hermon Laboratories Ltd. Harakevet Industrial Zone, Binyamina 30500, Israel Test started: 13-Nov-13 Test completed: 1…
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Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 1 of 8 SETUP PHOTOGRAPHS This document contains 7 photographs Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 2 of 8 Photograph No.1 Setup for spurious emission field strength measurements in the anechoic chamber below 30 MHz Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 3 of 8 Photograph No.2 Setup for carrier and spurious emission field strength measurements in the anechoic chamber in 30 – 1000 MHz range Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 4 of 8 Photograph No.3 Setup for spurious emission field strength measurements in the anechoic chamber above 1000 MHz Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 5 of 8 Photograph No.4 Setup for spurious emission field strength measurements in the anechoic chamber, EUT close view Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 6 of 8 Photograph No.5 Setup for carrier field strength measurements at the OATS Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 7 of 8 Photograph No.6 Setup for occupied bandwidth measurements Crow Electronic Engineering Ltd. FCC ID:NFC-FW2MAG9F Page 8 of 8 Photograph No.7 Setup for occupied bandwidth measurements
Harakevet Industrial zone, P.O.Box 23 · Israel
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 916.5 MHz - 916.5 MHz | - |

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