
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
D-304493 TOWER CAM PG2 Installation Instructions 1 TOWER CAM PG2 TOWER CAM PG2TOWER CAM PG2 TOWER CAM PG2 PowerG, Outdoor Mirror PIR Motion Detector with Anti- masking and Built-In Camera Installation Instructions 1. INTRODUCTION 1. INTRODUCTION1. INTRODUCTION 1. INTRODUCTION The TOWER CAM PG2 is a 2-way, wireless outdoor digital mirror PIR detector with built-in camera. Activated upon PIR detection or upon demand, the TOWER CAM PG2 sends clear images to the Monitoring Station for alarm image verification. The PIR motion detector’s features are as follows: • Operates with PowerMaster control panels (version 18 and higher) • Patented 8 independent quad PIR detectors (Octa-QUAD) operating in true Quad configuration (patented) with true motion recognition (TMR) processing for each of the 8 PIR detectors. • Advanced Obsidian Black Mirror TM optics (patent pending). • Optimum performance even in poor weather conditions such as snow, rain, dust, wind and direct sunlight • Tamper protection prevents opening and removal from wall • PowerG two-way Frequency Hopping Spread Spectrum FHSS- TDMA technology - provides robustness and reliability • Built-in link quality indicators enable installer to check signal quality without physically approaching the control panel. • Robust housing with recessed window. • Smart anti masking distinguishes between masking spray and rain. • Alarm LED is visible in sunlight. • Automatic termination of walk-test after 15 minutes. • Microprocessor-controlled temperature compensation. • Immunity to pets weighing up to 18 Kg (40ib) • Built-in swivel bracket The camera’s features are as follows: • Up to 10 cameras • Images multiplexed from all cameras • Color and black & white images • Auto-setup • Camera tuning by simple walk-test • Day and night CMOS camera, with IR illumination. This allows taking pictures in full darkness without letting the intruder know. • Instant capture: guarantees capture of fast moving intruder. • Optional AC power • An event records 2 images per second. 10-15 images total A. IR LEDs B. Indication LED C. Camera D. External power LED E. Alarm LED Figure 1. External View 2 22 2. . . . INSTALLATION INSTALLATIONINSTALLATION INSTALLATION 2.1 Installation A. Bracket installation (see Figure 2). Fix the bracket firmly on a stable wall or pillar. The orientation of the fixed bracket must be as parallel as possible to the surveyed ground surface. B. Adjust the detector's horizontal and vertical angles (see Figure 3), according to the surveyed ground surface. The vertical angle indicator position for various installation height and coverage distance combinations is detailed in Table 1 (the information refers to a relatively flat surveyed area. Verify the vertical adjustment by walk-test). C. Fasten the detector to the bracket (see Figure 2 step 4). Table 1 - Vertical Adjustment Reference Mounting Height Coverage Distance 2m / 6.7ft 4m / 13ft 6m / 20ft 8m / 26ft 10m / 33 ft 12m / 39 ft 3.0m / 10 ft - 1 2 2 3 3 2.5m / 8 ft 1 1 2 3 4 4 2.0m / 7 ft 1 2 3 4 5 5 1.5m / 5 ft 2 3 4 5 - - 2 D-304493 TOWER CAM PG2 Installation Instructions Correct Installation Incorrect Installation A. Mark drilling point B. Screw hole for wall tamper C. Drill D. Fasten E. Three long screws F. Two short screws Note: The 2 screw holes enable adjustment of the bracket on the wall, if needed, following the walk test. Figure 2 - Installation HORIZONTAL ADJUSTMENT (-45° °° ° to +45° °° °) VERTICAL ADJUSTMENT (0° °° ° to -10° °° ° in 2.5° °° ° clicks / steps) D-304493 TOWER CAM PG2 Installation Instructions 3 COVER CLOSURE 1. Release locking 2. Adjust 3. Lock 4. Release locking 5. Adjust 6. Lock 7. Turn cover and push slider 8 & 9. Put back cover 10. Secure with screw A. Vertical angle steps Figure 3 - Adjustment and Cover Closure 2.2 Battery Insertion It is recommended to perform the first batteries insertion on a flat surface (see Figure 4). After battery insertion, the LED will flash for 60 seconds and then the detector will enter a 15 minutes' local diagnostic mode. A. Tamper switch B. Press firmly to release the bracket C. 1 screw 4 D-304493 TOWER CAM PG2 Installation Instructions Steps 7 and 8 are optional for external 7.5 VDC power connection D. Snap the terminal block into place. Caution! Risk of explosion if battery is replaced by an incorrect type. Dispose of used battery according to the manufacturer's instructions. Figure 4 – Battery Insertion 2.3. Enrollment Refer to the PowerMaster control panel's Installer Guide and follow the procedure under the "02:ZONES/DEVICES" option of the Installer Menu. A general description of the procedure is provided in the following flow chart. Step 1 Step 2 Step 3 Step 4 Enter the Installer menu and select “02:ZONES/DEVICES” Select "ADD NEW DEVICE" See Note 1 Enroll the device (see Figure 5) or enter the device ID Select a detector number for the new flood detector 02:ZONES/DEVICES ADD NEW DEVICES ENROLL NOW or ENTR ID:XXX-XXXX Z09:Motion Camra ID No. 142-XXXX MODIFY DEVICES Step 5 Step 6 Step 7 Configure Location, Zone Type & Chime parameters Enter PARTITIONS. See Note 2 Assign partitions to the detector by pressing the , and/or buttons on the panel Z09.LOCATION Z09.ZONE TYPE Z09.SET CHIME Z09/PARTITIONS Z09:P1 P2 P3 means scroll and select Notes: [1] If the detector is already enrolled you can configure the detector parameters and assign partitions via the “Modify Devices” option – see Step 2. [2] PARTITIONS will appear only if PARTITIONING was previously enabled in a panel that supports the Partitioning feature (for further details, see "Partitioning" in the PowerMaster Installer Guide). D-304493 TOWER CAM PG2 Installation Instructions 5 2.4. Configuring the Detector Parameters Enter the DEVICE SETTINGS menu and follow the configuration instructions for the TOWER CAM PG2 PIR detector as described below. Option Configuration Instructions ALARM LED Define whether or not to activate the alarm LED indication. Option…
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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: 08 August 2014 Federal Communications Commission Authorization and Evaluation Division Subject: Confidentiality Request regarding application for certification of FCC ID: WP3TOWERCAMPG2 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 TOWER CAM PG2 Schem.pdf CONF APPENDIX TOWER CAM PG2 PartsLst.pdf CONF APPENDIX TOWER CAM PG2 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 08 August 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: WP3TOWERCAMPG2 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 08 August 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: WP3TOWERCAMPG2 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: 08 August 2014 Attn: Reviewing Engineer Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: The Visonic Ltd., TOWER CAM PG2, FCC ID: WP3TOWERCAMPG2, 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
S-206944 REV.01 S/N: P/N:90-205713 Model:TOWER CAM PG2 (915-0:014) 3214317617 ID:142-5383 FCC ID: W P3TOW ERCAMPG2 IC: 1467C-TOW ERCAMPG2
1. Compliance with 15.247(a)(1): 1. The system is a star-topology, time-synchronized network. 2. The timeline of the network is divided into time-slots. The duration of one time-slot is 15.6 milisecond. This means that there are 64 time-slots every second 3. At the beginning of every time-slot, every element of the network (i.e. network-coordinator and all end-nodes) calculates the proper frequency channel for that time-slot. This means that system switches frequency channel 64 times every second. 4. Every element in the network (network-coordinator and all end-nodes) calculates the proper frequency channel in the following way: 1. The system clock is first AES-128 encrypted. Then the proper frequency channel is derived as a function of the encrypted system clock 2. Since the system clock rolls over every 1.5 days, the hopping sequence is 1.5 days long 3. Since the frequency channel number is a function of the encrypted system clock (and since the system clock changes constantly) the hopping sequence is both pseudo-random and evenly distributed (this is a fundamental concept in encryption theory, otherwise, the encryption would have been useless). Evenly distributed frequency hopping sequence means that each frequency is used equally on the average by each transceiver 5. The bandwidth of a frequency channel (and hence the receiver bandwidth) is set to ~130KHz. The bandwidth is selected to be ~130KHz to accommodate ~100KHz signal bandwidth (50kbps, GFSK modulation and 25KHz deviation yields an effective bandwidth of ~100KHz and 20dB bandwidth of ~129KHz) 6. I'm attaching a file with an example of the hopping sequence. The channels are numbered 0 to 49 (i.e. 50 channels). I captured ~4500 hops. 2. Compliance with 15.247(g) and 15.247(h): 1. The system is a star-topology, time-synchronized, time-slotted network 2. The system comprises one network-coordinator (control panel) and multiple end-nodes (devices). 3. Each end-node has an attached sensor. The end-node wakes up periodically (typically every 10s seconds) and samples the sensor. After sampling the sensor, the end-node selects the next available time-slot and transmits a short burst (message) comprising the data sampled from the sensor (the message is less than one time-slot length, i.e. less than 15.6 milisecond length) 4. The short burst is sent at the proper frequency channel, the one associated with the time-slot in which the message is sent 5. The system uses 50 frequency channels. The hopping sequence is 1.5 days long, and since it derived as a function of the encrypted system clock it is both pseudo-random and evenly distributed. Over time, both transmissions from a certain end-node and the overall transmissions from all end-nodes are both pseudo-random and evenly distributed. 6. No coordination of frequency hopping systems, in any manner, for the express purpose of avoiding the simultaneous occupancy of individual hopping frequencies by multiple transmitters is incorporate in the system Channels 41 48 5 13 13 15 47 9 30 23 15 15 13 43 12 49 23 45 26 36 34 16 15 0 27 48 37 48 1 17 28 12 16 28 46 19 14 46 9 33 30 0 34 30 24 28 8 27 49 6 16 27 32 23 29 45 34 10 49 45 17 4 47 45 34 10 26 27 Page 1 Channels 33 6 4 31 37 9 43 2 5 29 3 18 39 49 38 34 31 41 23 7 48 19 49 3 40 29 27 36 47 15 8 30 27 25 42 24 39 26 35 49 16 41 17 43 16 17 39 7 6 18 4 21 21 12 43 30 29 49 47 21 44 42 15 41 17 49 16 0 Page 2 Channels 2 7 26 38 21 10 24 43 7 13 45 20 26 33 45 44 14 31 45 9 37 48 15 1 16 39 39 41 4 47 42 23 11 24 5 44 9 26 22 15 33 35 12 16 3 15 1 42 23 36 29 43 6 18 48 16 31 32 40 3 5 16 25 11 23 12 9 26 Page 3 Channels 31 32 0 36 45 23 44 34 41 1 7 35 23 13 25 5 35 11 8 24 34 42 16 40 5 19 23 25 3 31 35 37 28 23 18 12 15 31 21 30 49 6 30 28 27 24 42 21 28 38 27 25 11 25 3 40 33 5 28 24 17 5 6 33 12 33 38 14 Page 4 Channels 46 33 5 36 17 11 4 47 7 46 38 34 17 47 9 38 15 3 36 20 1 44 5 48 45 30 12 38 25 5 48 9 39 39 0 43 0 28 34 20 13 13 23 14 46 33 46 20 41 22 32 6 35 10 32 25 18 25 30 7 7 10 16 22 33 43 41 17 Page 5 Channels 39 15 40 2 9 7 10 16 29 45 22 19 2 46 11 6 5 3 16 39 15 12 30 23 33 35 0 10 18 13 30 43 49 18 30 6 17 47 3 25 49 36 12 28 19 49 37 32 48 15 5 15 18 44 13 8 48 6 31 18 34 43 37 22 28 32 47 20 Page 6 Channels 9 49 41 40 34 43 35 1 35 27 37 43 22 37 48 23 5 9 49 3 43 17 17 30 30 19 15 6 38 17 21 3 8 35 35 32 0 42 47 11 8 3 18 9 1 30 10 25 44 35 5 4 23 8 26 8 20 25 25 34 4 45 38 36 24 14 32 44 Page 7 Channels 31 17 33 13 5 29 10 10 31 24 48 41 27 37 43 37 46 47 31 40 14 5 1 28 32 29 40 31 48 0 46 47 10 45 28 25 0 14 32 15 4 37 35 24 36 17 8 19 38 6 13 47 22 43 13 11 46 36 43 22 23 20 2 19 30 2 45 6 Page 8 Channels 14 7 11 37 8 21 42 2 12 37 25 30 0 44 45 7 32 8 37 0 2 1 3 46 24 13 13 0 21 45 13 4 3 28 21 37 25 8 1 47 25 9 1 2 25 22 33 43 18 26 38 23 46 44 7 7 8 46 19 6 42 3 3 10 33 37 16 5 Page 9 Channels 13 13 5 44 32 4 2 44 13 9 24 49 28 34 3 41 15 8 16 34 16 25 40 36 49 48 7 18 35 16 13 5 30 17 10 10 0 5 4 26 19 25 0 4 7 32 19 12 23 20 22 0 14 13 7 49 24 37 48 14 35 47 30 11 30 25 12 44 Page 10 Channels 8 33 0 25 20 5 4 14 38 23 31 44 26 28 6 4 36 49 40 45 9 38 15 6 21 27 21 31 39 19 40 44 34 27 39 15 2 28 49 3 42 44 20 32 30 38 2 31 18 39 3 7 10 45 29 28 16 40 11 24 33 44 1 15 48 6 5 47 Page 11 Channels 34 18 35 8 29 38 39 45 6 0 31 47 20 12 46 25 14 13 29 8 0 29 37 32 46 49 35 40 47 47 48 8 38 3 28 49 39 8 20 7 34 22 36 3 19 46 34 33 5 47 2 22 3 11 2 18 45 30 31 3 35 30 21 2 48 42 0 17 Page 12 Channels 46 23 40 46 47 3 21 43 9 27 34 19 0 18 8 10 10 12 40 30 44 37 0 34 17 46 27 41 44 0 2 1 15 3 47 25 39 33 23 1 47 19 21 13 30 9 11 26 4 38 35 26 5 45 47 31 7 28 13 37 31 6 33 35 21 32 33 13 Page 13 Channels 43 9 26 15 39 45 6 41 15 26 49 45 6 12 24 16 38 37 46 8 19 3 12 43 42 13 8 28 16 17 24 19 43 9 7 40 4 10 46 3 3 6 17 40 13 34 33 24 39 47 29 5 37 36 26 30 17 37 28 25 33 13 36 33 9 3 32 6 Page 14 Channels 24 7 29 3 37 21 47 36 38 32 14 8 30 1 40 48 5 22 4 40 44 38 13 48 47 45 8 29 10 5 19 29 32 33 24 20 15 39 5 29 25 …
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Test Report E139050.02 Visonic Ltd. Page 1 of 55 FCC ACC M Ver 1.2 28 February 2011 DATE: 28 July 2014 I.T.L. (PRODUCT TESTING) LTD. FCC Radio Test Report for Visonic Ltd. Equipment under test: PowerG, Outdoor Mirror PIR Motion Detector with Anti-Masking and Built-In Antenna Tower CAM PG2 Written by: _____________________________ R. Pinchuck, Documentation Approved by: _____________________________ M. Zohar, 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 E139050.02 Visonic Ltd. Page 2 of 55 FCC ACC M Ver 1.2 28 February 2011 Measurement/Technical Report for Visonic Ltd. PowerG, Outdoor Mirror PIR Motion Detector with Anti-Masking and Built-In Antenna Tower CAM PG2 FCC ID: WP3TOWERCAMPG2 IC: 1467C-TOWERCAMPG2 This report concerns: Original Grant: X Class I Change: Class II Change: Equipment type: Frequency Hopping Spread Spectrum Limits used: 47CFR15 Section 15.247 Measurement procedures used are FCC Public Notice DA-00-705 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 716002 Tel-Aviv 69710 Israel Israel e-mail [email protected] Tel: +972-3 -645-6789 Fax +972-3-645-6788 e-mail: [email protected] Test Report E139050.02 Visonic Ltd. Page 3 of 55 FCC ACC M Ver 1.2 28 February 2011 TABLE OF CONTENTS 1. GENERAL INFORMATION ------------------------------------------------------------------------------- 5 1.1 Administrative Information ................................................................................. 5 1.2 List of Accreditations ......................................................................................... 6 1.3 Product Description ........................................................................................... 7 1.4 Test Methodology .............................................................................................. 7 1.5 Test Facility ....................................................................................................... 7 1.6 Measurement Uncertainty ................................................................................. 8 2. SYSTEM TEST CONFIGURATION --------------------------------------------------------------------- 9 2.1 Justification ........................................................................................................ 9 2.2 EUT Exercise Software ..................................................................................... 9 2.3 Special Accessories .......................................................................................... 9 2.4 Equipment Modifications ................................................................................... 9 2.5 Configuration of Tested System ........................................................................ 9 3. RADIATED MEASUREMENT TEST SET-UP PHOTOS -----------------------------------------10 4. 20DB MINIMUM BANDWIDTH -------------------------------------------------------------------------12 4.1 Test Specification ............................................................................................ 12 4.2 Test procedure ................................................................................................ 12 4.3 Test Results..................................................................................................... 12 4.4 Test Equipment Used, 20 dB Minimum Bandwidth ......................................... 14 5. 26DB MINIMUM BANDWIDTH -------------------------------------------------------------------------15 5.1 Test Specification ............................................................................................ 15 5.2 Test procedure ................................................................................................ 15 5.3 Test Results..................................................................................................... 15 5.4 Test Equipment Used, 26 dB Minimum Bandwidth ......................................... 17 6. NUMBER OF HOPPING FREQUENCIES -----------------------------------------------------------18 6.1 Test Specification ............................................................................................ 18 6.2 Test Procedure ................................................................................................ 18 6.3 Test Results..................................................................................................... 18 6.4 Test Equipment Used, Number of Hopping Frequencies ............................... 23 7. CHANNEL FREQUENCY SEPARATION ------------------------------------------------------------24 7.1 Test Specification ............................................................................................ 24 7.2 Test procedure ................................................................................................ 24 7.3 Test Results..................................................................................................... 24 7.4 Test Equipment Used, Channel Frequency Separation Test .......................... 26 8. RADIATED MAXIMUM POWER OUTPUT ----------------------------------------------------------27 8.1 Test Specification ............................................................................................ 27 8.2 Test procedure ................................................................................................ 27 8.3 Test Results..................................................................................................... 28 8.4 Test Equipment Used, Radiated Maximum Power Output ............................. 31 9. DWELL TIME ON EACH CHANNEL ---------------------------------------…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 912.75 MHz - 919.106 MHz | 37.50 mW |

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