
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
D-305291 MCT-340 SMA Installation Instructions 1 MCT-340 SMA Wireless Contact Sensor Installation Instructions 1. INTRODUCTION The MCT-340 is a fully supervised, wireless magnetic contact sensor, for use with iControl H.A. 1.2 control panels. The sensor includes a built-in reed switch (that opens upon removal of a magnet placed near it). The MCT-340 tamper switch is activated when the cover is removed. A periodic supervision message is transmitted automatically. The target receiver is thus informed, at regular intervals, of the unit’s active participation in the system. Operating power is obtained from an on-board 3 V Lithium battery. When the battery voltage is low, a “low battery” message will be sent to the receiver 30 days before expiration of battery life. Pairing LED Magnet Fig. 1 – External View 2. SPECIFICATIONS WIRELESS Frequency: 2.4 GHz as per IEEE 802.15.4 Tamper Alert: Reported when a tamper event occurs and in any subsequent message, until the tamper switch is restored. Supervision Message: Signaling at 27-minute intervals. Transmission Range in Open Area: Up to 280 meters (iControl panel) ELECTRICAL Internal Battery: 3V Lithium battery, type CR2032. Use Varta only. Nominal Battery Capacity: 230 mAh Battery Life Expectancy: 3 years (for typical use). Note: Inability to connect with wireless network, or wireless link quality no higher than 20% may significantly reduce the expected battery life. Battery Power Test: Performed immediately upon battery insertion and periodically every several hours. Battery Supervision: Automatic transmission of battery condition data as part of any status report. ENVIRONMENTAL Operating Temperature: 0°C to 55°C (32°F to 131°F). Dimensions: 66 x 25 x 10 mm (2-9/16 x 1 x 6/16 in.) Weight (including battery): 15g (0.5 oz) 3. ACTIVATING THE SENSOR To activate, pull the strip (from either side) that protrudes from the back of the sensor. Activation strip Fig. 2 – Activation Strip 4. PAIRING/DEFAULTING THE SENSOR To pair the sensor to the control panel, you must set it to pairing mode. First set the panel to pairing mode and then the sensor. 1. Press and hold down the sensor’s tamper switch (see Figure 4-4). 2. Insert the battery into the sensor (see Figure 4-4). 3. Release the tamper switch within 4 seconds (the LED blinks 3 times every 5 seconds). 4. Complete the pairing procedure on the control panel (see the pairing instructions in the control panel’s installation guide). 5. INSTALLATION CAUTION: This equipment shall be installed by Service Personnel in non-hazardous indoor locations only. 5.1 Mounting NOTE: It is highly recommended to attach the transmitter to the top of the door/window on the fixed frame and the magnet to the movable part (door or window). Make sure that the magnet is located not more than 6 mm (0.25 in.) from the transmitter’s marked side. The transmitter should be mounted on the fixed surface and the magnet on the moving surface (see Figure 3). A 1 1. Peel away the release liners from the two strips of double- sided adhesive tape and attach to the device and magnet. A. Double-sided adhesive tape 2 2. Align the device with the magnet according to the location marks and fasten the device and magnet to the mounting surface. The transmitter should be mounted on the fixed surface and magnet on the moving surface. Fig. 3 – Mounting 5.2 Battery Replacement 1 2 2 D-305291 MCT-340 SMA Installation Instructions 3 4 Tamper switch Fig. 4 – Battery Replacement 1. Insert a “quarter” coin in the slot as shown in the drawing and push downward firmly into the slot. 2. Twist to remove the cover. 3. Remove the old battery using a 3 mm flat-edged screwdriver. 4. Insert the battery at an angle, as shown in the drawing, while observing battery polarity. Note: The required battery is CR2032 Lithium 3V, manufactured by VARTA or another UL recognized manufacturer, purchased from a Visonic-approved supplier. 6. TESTING THE SENSOR Close the door or window, thus restoring it to the undisturbed state. 7. TROUBLESHOOTING If you encounter one of the following problems with the MCT-340 SMA, perform the suggested remedy: Problem Remedy Attempt to pair the sensor is unsuccessful. Make sure that the sensor has been defaulted and is set to pairing mode (see section 4). Make sure that the iControl panel supports the H.A 1.2. The sensor and the panel do not communicate. Perform the signal strength testing procedure described in the control panel installation manual. Make sure that the signal is sufficient. If necessary, replace the sensor’s battery. Problem Remedy The sensor sends a Low Battery indication. To ensure continuous proper operation, replace the battery within two weeks of the first Low Battery indication. Panel does not arm because of an unrecognized sensor malfunction Consult with your installer or system provider before you disable a zone. Disable the detector zone (see the control panel user manual). Note that disabling a sensor zone lowers the overall security level of your system. 8. COMPLIANCE WITH STANDARDS FCC This device complies with Part 15 of the FCC Rules and RSS-210 of Industry and Science Canada. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. This device complies with Industry Canada license-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorisée aux deux conditions suivantes : (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est …
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Visonic Ltd. 24 Habarzel Street P.O.Box 22020 Tel-Aviv 69710, Israel Tele: +972 3 645 6789 Fax: +972 3 645 6788 www.visonic.com Date: 06 June 2014 Federal Communications Commission Authorization and Evaluation Division Subject: Confidentiality Request regarding application for certification of FCC ID: WP3MCT340SMA Dear Sirs Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: CONF APPENDIX MCT-340 SMA Schem.pdf CONF APPENDIX MCT-340 SMA PartsLst.pdf CONF APPENDIX MCT-340 SMA BlkDia.pdf The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, Arick Elshtein Certification Engineer
Visonic Ltd. 24 Habarzel Street P.O.Box 22020 Tel-Aviv 69710, Israel Tele: +972 3 645 6789 Fax: +972 3 645 6788 www.visonic.com 05 June 2014 To: Timco Engineering Inc. To Whom It May Concern We hereby authorize Shaike Raz of ITL to act on the behalf of Visonic Ltd, regarding the FCC ID Certification process for the following application: FCC ID: WP3MCT340SMA Thank you, Arick Elshtein Certification Engineer
Visonic Ltd. 24 Habarzel Street P.O.Box 22020 Tel-Aviv 69710, Israel Tele: +972 3 645 6789 Fax: +972 3 645 6788 www.visonic.com 05 June 2014 Form 731 Signature Authorization Letter To: Timco Engineering Inc. To Whom It May Concern We hereby authorize Shaike Raz of ITL as an authorized individual to sign for Form 731 on behalf of Visonic Ltd for the FCC ID: WP3MCT340SMA application. Thank you, Arick Elshtein Certification Engineer
Visonic Ltd. 24 Habarzel Street P.O.Box 22020 Tel-Aviv 69710, Israel Tele: +972 3 645 6789 Fax: +972 3 645 6788 www.visonic.com Date: June 5, 2014 Declaration To whom it may concern, This is to confirm that the MCT-340 SMA, which contains a Zigbee type RF transceiver, does not use Blue Tooth communication protocol. It uses Zigbee communication protocol. Thank you, Arick Elshtein Certification Engineer
Visonic Ltd. 24 Habarzel Street P.O.Box 22020 Tel-Aviv 69710, Israel Tele: +972 3 645 6789 Fax: +972 3 645 6788 www.visonic.com 05 June 2014 attn: Reviewing Engineer Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: The Visonic Wireless Magnetic Contact Sensor FCC ID: WP3MCT340SMA and label are so small that it cannot include the statement specified in FCC Part 15 Sub-part A, Section 15.19 (a) (3) “This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference and (2) This device must accept any interference received, including interference that may cause undesired operation." Due to this reason, we are using the provisions of Part 15 Sub-part A, Section 15.19 (a) (5) and this statement appears in a prominent location in the user manual. Please contact me if there is any information you may need. Thank you, Arick Elshtein Certification Engineer
Label Location Label Location
Operational description of the Zigbee transceiver Visonic's Zigbee transceiver consist of two chips: EM-357- high performance Integrated Zigbee /802.15.4 system-on-chip and 2.4GHz Transmit / Receive Front-End chip SKY-65336. In transmit mode RF signal from EM-357 come to input of Front-End SKY-65336 Power amplifier. From output of the SKY-65336 signal pass over harmonic filter and come to integrated antenna. In receive mode RF signal from antenna come to LNA input of Front-End and after to Receiver of EM-357. Transceiver work from Lithium batteries 3V and have a reverse voltage protection (back battery).
Test Report E140040.00 Visonic Ltd. Page 1 of 53 FCC ACC M Ver 1.1 05Mayl 2000 DATE: 17 June 2014 I.T.L. (PRODUCT TESTING) LTD. FCC Radio Test Report for Visonic Ltd. Equipment under test: Wireless Contact Sensor MCT-340 SMA Written by: _____________________________ R. Pinchuck, Documentation Approved by: _____________________________ A. Sharabi, Test Engineer Approved by: _____________________________ I. Raz, EMC Laboratory Manager This report must not be reproduced, except in full, without the written permission of I.T.L. (Product Testing) Ltd. This report relates only to items tested. Test Report E140040.00 Visonic Ltd. Page 2 of 53 FCC ACC M Ver 1.1 05Mayl 2000 Measurement/Technical Report for Visonic Ltd. Wireless Contact Sensor MCT-340 SMA FCC ID: WP3MCT340SMA IC: 1467C-MCT340SMA This report concerns: Original Grant: X Class I Change: Class II Change: Equipment type: Digital Transmission System Limits used: 47CFR15 Section 15.247 Measurement procedure used is KDB 558074 D01 9, April 2013 and ANSI C63.4- 2003. Application for Certification Applicant for this device: prepared by: (different from "prepared by") R. Pinchuck Arick Elshtein ITL (Product Testing) Ltd. Visonic Ltd. 1 Bat Sheva Street 24 Habarzel St. Lod 7116002 Tel-Aviv 69710, Israel Israel Tel: +972-3 -645-6789 e-mail [email protected] Fax: +972-3-645-6788 e-mail: [email protected] Test Report E140040.00 Visonic Ltd. Page 3 of 53 FCC ACC M Ver 1.1 05Mayl 2000 TABLE OF CONTENTS 1. GENERAL INFORMATION ------------------------------------------------------------------------------- 5 1.1 Administrative Information ................................................................................. 5 List of Accreditations .................................................................................................... 6 1.2 Product Description ........................................................................................... 7 1.3 Test Methodology .............................................................................................. 7 1.4 Test Facility ....................................................................................................... 7 1.5 Measurement Uncertainty ................................................................................. 7 2. SYSTEM TEST CONFIGURATION --------------------------------------------------------------------- 8 2.1 Justification ........................................................................................................ 8 2.2 EUT Exercise Software ..................................................................................... 8 2.3 Special Accessories .......................................................................................... 8 2.4 Equipment Modifications ................................................................................... 8 2.5 Configuration of Tested System ........................................................................ 8 3. RADIATED MEASUREMENT TEST SET-UP PHOTO -------------------------------------------- 9 4. 6DB MINIMUM BANDWIDTH --------------------------------------------------------------------------- 11 4.1 Test Specification ............................................................................................ 11 4.2 Test procedure ................................................................................................ 11 4.3 Test Results..................................................................................................... 13 4.4 Test Equipment Used; 6 dB Bandwidth ........................................................... 14 5. 26DB BANDWIDTH ---------------------------------------------------------------------------------------- 15 5.1 Test Specification ............................................................................................ 15 5.2 Test procedure ................................................................................................ 15 5.3 Test Results..................................................................................................... 17 5.4 Test Equipment Used; 26 dB Bandwidth ......................................................... 18 6. RADIATED POWER OUTPUT -------------------------------------------------------------------------- 19 6.1 Test Specification ............................................................................................ 19 6.2 Test procedure ................................................................................................ 19 6.3 Results Calculation .......................................................................................... 22 6.4 Test Equipment Used; Radiated Maximum Power Output .............................. 23 7. BAND EDGE ------------------------------------------------------------------------------------------------- 24 7.1 Test procedure ................................................................................................ 24 7.2 Results table .................................................................................................... 26 7.3 Test Equipment Used; Band Edge Spectrum .................................................. 27 8. RADIATED EMISSION, 9 KHZ – 30 MHZ ------------------------------------------------------------ 28 8.1 Test Specification ............................................................................................ 28 8.2 Test Procedure ................................................................................................ 28 8.3 Measured Data ................................................................................................ 28 8.4 Test Instrumentation Used, Radiated Measurements ..................................... 29 8.5 Field Strength Calculation ............................................................................... 29 9. SPURIOUS RADIATED EMISSION 30 – 25000 MHZ --------------------------------------------- 30 9.1 Test Specification ...................…
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Test Set-up Photos
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 4.57 mW |

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