
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Page 1 of 3 ETC03N01 ETC Multi-purpose RFID Tag Active RFID Solutions Installation Notes Elpas ETC Tags from Visonic Technologies are miniature, unified active long-range Radio Frequency multi-purpose local positioning (RFID) and infrared devices. ETC tags are designed for asset or people idententification and tracking; or emergency and protection signaling. ETC tags are attached to an asset for tracking and monitoring. The tags will generate an alarm if the asset is moved to a prohibited location (such as an exit) or if an attempt is made to remove the tag sfrom the asset. ETC Tags transmits periodic RF based status messages at 433MHz as well as optional infrared signals. These signals are received by Elpas readers installed throughout the indoor facility. Eiris software is used to continuously monitor the location and status of the tag. Elpas LF Exciters transmit an RF based ID at 125KHz creating a field 3 meters in radius. When an ETC enters the LF field, the tag detects the LF message and transmits a special message indicating its entry into the field. This feature is used to warn when an attempt is made to remove an asset from its designated area. Other special messages are transmitted when the tag's button is pressed or when the tag is tampered with. Technology: IR, RF & LF Power Source: One 3V lithium battery, CR 2430 Battery Life: 1.5 years assuming movement 1 hour per day Transmission Rate: IR (motion / stationary): Every 15 sec/10 min RF (motion / stationary): Every 10 sec/10 min RF Transmission Rate upon entry to LF area: Burst of 4 RF transmissions(each transmission about 2ms in duration), approxamately 0.4 secs apart. Indicators: Green LED indicates tranmission. Red LED indicates button press. Tamper Sensor: Functions on light or dark surfaces Tamper Sensor Transmission Rate: 4 IR/RF transmissions (each transmission about 2ms in duration), 400 ms apart Button Press / Button Release Transmission Rates: On Button Press: 4 IR/RF transmissions (each transmission about 2ms in duration), 400 ms apart. On Button Release: 4 IR/RF transmissions (each transmission about 2ms in duration), 400 ms apart. Badge ID: Unique factory programmed ID Dimensions: 34x40x15 mm (1.3 x 1.6 x 0.6 inches) Weight (assembled): 20 grams (0.75 ounces) Operating Temperature: 10°C to 70°C (14°F to 159°F) Housing: IP64 water rated enclosure Saftey Compliance: EN 300 220-3 FCC Compliance: FCC Part 15.231 Level C FCC ID: GSA ETC00433 (433.92 MHz) Warranty: One year limited warranty (excluding battery) 1. Remove the protective layer from the double-sided adhesive on the back of the mounting bracket (Figure 1). Figure 1: ETC Mounting Bracket (front view) 2. Carefully position the mounting bracket on the asset to be tagged (narrow side on top, wider side at the bottom). Note: It is recommended to place the ETC on light colored surfaces. Dark surfaces may require the addition of a white sticker placed between the surface and the tag. 3. Place the ETC in the mounting bracket and click it into place such that the wide/narrow sides correspond to the shape of mounting bracket (Figures 2, 3 , 4 and 5). 4. To remove the tag from the mounting bracket, use a small flat-head screwdriver to release the clip that holds the tag in place (Figure 5). 5. To reattach the tag, repeat steps 3 and 4. Double-sided adhesive ETC mounting bracket Figure 3: ETC Mounting Bracket (front view) Figure 2: ETC Tag (front view) Figure 5: ETC Tag (in mounting bracket) Red / Green LEDs (button press / transmission) ETC Tag mounting bracket (clip) ETC tag button Figure 4: Attaching Tag to Mounting Bracket ETC Tags on Laptop Computers The ECT tag should be positioned on the top right corner of the latop lid. If the tag is attached towards the center of the lid, the RF performance will be significantly degraded, reducing the detection rangeof the tag.
ETC Multi-purpose Tag - Installation Notes Page 2 of 3 ETC03N01 The ETC tag has Tamper and Button Press inputs; designated B1 and B2: B1 – Monitors press/ release button activity B2 – Monitors tamper functionality The ETC tag reports the state of the tamper sensor on B2. When Tamper is detected (detached), B2=1. When attached, B2=0. An EVENT message is transmitted when there is a change from attached to detached or vice versa. When there is a change from attached to detached (i.e. tampering), then there is a transmission of EVENT of 4 messages, 400 ms apart and B2=1. When attached, there is a transmission of EVENT of 4 messages, 400 ms apart and B2=0. In the steady state, the B2 bit provides the status of the tamper sensor (if the equipment tag stays attached, B2=0, if stays detached, B2=1). !""# $" After button press, 4 messages are transmitted (each message about 2ms in duration), 400 ms apart, with B1=1. When the button is released, B1=0. An additional 4 messages (each message about 2ms in duration) are transmitted 400 ms apart. In the steady state (no button press / button release) B1=0. %! !" &""&!&!'! Tag in Motion : LF Response Time: In this state, the onboard LF receiver activates every 0.6 sec to check if the tag is in a LF zone. Transmission Rate: Burst of 4 RF transmissions(each transmission about 2ms in duration), approxamately 0.4 secs apart. Message Type Transmitted: IR/RF Data Message with Data byte indicating ID# of received Low Frequency LF RDR and motion bit M=1. Tag Motionless : LF Response Time: In this state, LF receiver activates every 15 seconds to check if the tag is in a LF zone. Transmission Rate: Burst of 4 RF transmissions(each transmission about 2ms in duration), approxamately 0.4 secs apart. Transmitted Message Type: IR/RF Data Message with Data byte indicating ID# of received Low Frequency LF RDR and motion bit M=0 ( 1. Suspend usage of the ETC tag using the Eiris software. 2. Remove the tag from the mounting bracket using a small flat-head screwdriver to release the clip that holds the tag in place (Para 3, Figure 5). 3. Unscrew the 4 screws situated at the back of the tag and remove the back cover from the (Figures 1 and 2). 4. Carefully slide the battery out from under the battery holder to reveal the battery isolator (Figure 3). 5. Before inserting a new battery into place, position the battery Isolator such that the holes are aligned with the contact pins (Figure 3). 6. Replace the battery ensuring that the positive (+) side of the battery faces the PCB. 7. Close the back cover such that the screw holes are aligned an tighten the 4 screws into place (Figure 4). ETC tags require activation before use. To activate : Press and hold the button for 5 seconds. Upon activation the LED blinks, indicating transmission. Back cover screw Battery holder Battery Battery isolator Contact pin Back cover Figure 1: ETC Tag (showing screws) Figure 2: ETC Tag (back cover removed) Figure 3: ETC (battery removed) Figure 4. ETC Tag ETC Multi-purpose Tag - Installation Notes Page 3 of 3 ETC03N01 W.E.E.E. Product Recycling Declaration For information regarding the recycling of this product you must contact the company from which you orignially purchased it. If you are discarding this product and not returning it for repair then you must ensure that it is returned as identified by your supplier. This product is not to be thrown away with everyday waste. Directive 2002/96/EC Waste Electrical and Electronic Equipment. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: This device may not cause harmful interference This device must accept any interference received, including interference that may cause undesired operation. For a Class B digital device or peripheral, the instructions furnished the user shall include the following or similar statement, placed in a prominent location in the text of the manual: NOTE: This equipment 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 a residential installation. 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 communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: Reorient or relocate the receiving antenna. Increase the separation between the equipment and receiver. Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. Consult the dealer or an experienced radio/TV technician for help. ) !&!*+ Changes or modifications to this equipment not expressly approved by the party responsible for compliance (Visonic Technologies Ltd.) could void the user’s authority to operate the equipment. ) ( Visonic Technologies Ltd., and its affiliates, (hereinafter collectively referred to as "the Manufacturer") warrants its products (hereinafter referred to as "the Product”) to be free of defects in materials and workmanship under normal operating conditions and use for a period of one year from the date of shipment by the Manufacturer. The Manufacturer's obligations shall be limited within the warranty period, at its option, to repair or to replace the defective Product or any defective component or part thereof. To exercise this warranty, the product must be returned to the manufacturer freight prepaid and insured. This warranty does n…
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55 44 33 22 11 D D C C B B A A Microcontroller IR Transmitter Programing Connector RF Transmitter LF Receiver Motion Sensor Short B2 Loop Antenna IR LEDs Temperature Sensor ETB06001 ETB06001 - Equipment Badge Block Diagram 30 Habarzel St., Tel-Aviv 69710, ISRAEL Tel: +972-3-7681400 Fax: +972-3-7681415 Email: [email protected] A 1 1 Thursday, February 05, 2004 C:\RFGLOBAL\UL DOCS\ISRAEL_UL\ETB_DIAG.DSN Page Name TitleSize Document Number Rev Date: Sheet of Design File Name:Schematic Page Name: . .. . 3Volt GND . . GND X Inductor Tamper ElectroOptical 1 2 3 4 Y1 4.000MHz 12 D 21 Y Inductor Y2455kHz 1 2 Button B1 1 2 D 21 Y3 13.56MHz 1 2 3V CR2430 21 D 21
April 22, 2006 American TCB 6731 Whittier Ave. American TCB 6731 Whittier Ave Suite C110 McLean, VA 22101 USA Subject: Request for confidentiality, FCC ID:GSA-ETC00433 Dear Gentlemen, In regards the exhibits submitted in support of the application for FCC ID: GSA-ETC00433, please classify the following as confidential under the provision of 47 CFR 0.459: 1) Schematic diagram, file “Schematic_diagram_16644” (4 pages). The above material contains trade secrets or technical data which Visonic Ltd. deems to be proprietary. Therefore this information would customarily be guarded from competitors and cannot be accessible to the general public. Zachi Holzman, Hardware Engineer
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 May 4, 2006 RE: Visonic Technologies (1993) Ltd. FCC ID: GSA-ETC00433 After a review of the submitted information for FCC, I have a few comments on the above referenced Application. 1) Recent information from the FCC now requires that the confidentiality letter be signed by either the contact shown on the FCC site for the grantee, or one of the contacts shown as the technical or non-technical contacts given on the 731 form. Please correct. 2) It can not be adequately determined if the labeling information includes an actual sample label or not. Please review. 3) Table 7.1.1 cites “Continuous transmissions are permitted”. Is this meant to say NOT permitted or permitted? Please review. For the following comment, the device appears to be capable of the following transmissions: a) Tamper b) Button Pressed c) Periodic TX d) When Entering Fields 4) The users manual (and test report plot 7.2.18) suggests the device transmits every 5 seconds when in motion. This would violate 15.231(e) and appear not to match the information provided in the test report (plot 7.1.4) which suggests period transmission is every 10.5 sec. Please review. 5) Field entry (i.e. LF mode) appears to suggest continuous transmissions. This does not appear to meet the timing requirements of 15.231(a) or (e). Entering a field would be deemed an external event which would be automatic transmission and limited to 5 seconds. Please review. 6) Please provide test data supporting timing of button pressed (and tamper) as shown in the users manual. Are these considered 15.231(a) or (e) transmissions. It appears that 4 times 400 mec will exceed the 15.231(e) requirements. 7) If emissions fall under 15.231(a) for certain transmission, is the power level TX the same or different? Please explain. 8) Is the TX pulse duration (i.e. 1.89 msec duration) different for the various modes of TX (tamper, button press, periodic TX, and entering fields) or the same regardless of type of transmission? Is the duty factor applied valid for all modes? 9) Test photographs appear to support an anechoic chamber only and not an OAT’s or semi- anechoic chamber. It is uncertain if this was tested in an appropriate facility given under 2.948. Please explain. 10) FYI....Grant may actually list both 15.231 and 15.231(e) depending on the response to items 4 – 8. 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. z Page 2 May 4, 2006 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. Any questions about the content of this correspondence should be directed to the sender.
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 May 24, 2006 RE: Visonic Technologies (1993) Ltd. FCC ID: GSA-ETC00433 After a review of the submitted information for FCC, I have a few comments on the above referenced Application. 1) FYI...RF transmissions upon entering and LF field are stated in the manual to transmit 4 pulses over 1.2 seconds and supported in the test report to be 1.5 seconds. Since this transmission is > 1 second duration, it is not subject to 15.231(e) and must be 15.231(a) transmission. Therefore note that most emissions would fall under 15.231(a), while others are 15.231(e). However, please explain if power level various between various modes are always the same or not. 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. Any questions about the content of this correspondence should be directed to the sender.
HERM O N LA BO RA TO RIES May 23, 2006 American TCB 6731 Whittier Ave Suite C110 McLean, VA 22101 Attn: Mr. T. Johnson, Examining Engineer RE: your e-mail dated May 4, 2006; Visonic Ltd. FCC ID:GSA-ETC00433, ATCB003412 Dear Mr. Johnson, Please find below the answers to your questions. 1) The revised Confidentiality_letter_16644_rev1 was uploaded on May 23, 2006 via Additional Information folder. 2) The Label_location_16644_rev1 with actual label sample in the frame was uploaded on May 23, 2006. 3) The revised test report VISRAD_FCC.16644_rev1 with corrected Table 7.1.1 was uploaded on May 23, 2006 . 4) Plot 7.2.18 was changed for correct one, refer to VISRAD_FCC.16644_rev1. The corrected User_Manual_16644_rev1_page1/page2 was uploaded on May 23, 2006. 5) The User Manual was corrected. 6) Please refer to plot 7.1.5 in the revised test report VISRAD_FCC.16644_rev1. 7) NA 8) The Tx pulse duration is the same for each mode of operation and the duty cycle factor is the same. 9) The file “Setup_photos_16644_rev1” with added photographs at OATS was uploaded on May 23, 2006. 10) We suppose – NA. Thank you. Marina Cherniavsky, certification engineer Hermon Laboratories
HERM O N LA BO RA TO RIES May 24, 2006 American TCB 6731 Whittier Ave Suite C110 McLean, VA 22101 Attn: Mr. T. Johnson, Examining Engineer RE: your e-mail dated May 4, 2006; Visonic Ltd. FCC ID:GSA-ETC00433, ATCB003412 Dear Mr. Johnson, Please find below the answers to your questions. 1) The revised test report VISRAD_FCC.16644_rev2 with reference to FCC part 15 section 15.231(a) - corrected Table 7.1.1, pages 1, 3, 4, 6, 7 was uploaded on May 24, 2006. We confirm that the power level does not vary and is the same for all modes of operation. Thank you for assistance and support. Marina Cherniavsky, certification engineer Hermon Laboratories
Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 1 of 3 EXTERNAL PHOTOGRAPHS This document contains 2 photographs Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 2 of 3 Photograph No.1 ETC tag front view Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 3 of 3 Photograph No.2 ETC tag rear view
Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 1 of 1 Label with FCC ID:GSA-ETC00433 Label location on rear side of ETC tag FCC ID:GSA-ETC00433
Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 1 of 6 INTERNAL PHOTOGRAPHS This document contains 5 photographs Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 2 of 6 Photograph No.1 ETC tag internal view Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 3 of 6 Photograph No.2 ETC tag internal view, second side Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 4 of 6 Photograph No.3 Antenna view Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 5 of 6 Photograph No.4 ETC tag PCB front view Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Page 6 of 6 Photograph No.5 ETC tag PCB side view
1. This drawing is additional to 3D CAD file.2. Unless otherwise specified missing dimensions are as appear in the 3D CAD file. . BRASS,semi hard, 0.3mm tick. .Coating - 1 μm GOLD over 2 μm Ni. 3 4 0 4.96.9 23.625.327.430.731.5 0 1.1 5.9 3.3 5.7 7.4 8.9 18.1 21.1 25.9 23.7 21.3 27 REF 19.6 2 1.2 0.8 1.5 0.3 3.5 X4 X10 R0.5 0 .3 R E F 0 2 8.5 18.5 25 27 0.8 15.8 11.2 0 6.7 14.425.731.3 26.2 TYP HET01007 Yasur S. ±1 08.02.05 - Antenna 3 Penkov T ±0.1 08.02.05 4 Tel: 972 3 7681400 Fax: 972 3 7681415 Number Scale Drawing Title Tolerances, unless otherwise specified Finish Material S. Texture Length Angle Signature Dimitrov L. Approved Checked Designed Name Date ZONE REV DESCRIPTION HET01007 v- Antenna 080205A 4:1 Size A3 FileName Rev. Sheet Of 1 1 Designed DATE
1 Page Visonic Ltd. FCC ID:GSA-ETC00433 Description of the ETC tag The ETC equipment tag is a transceiver which receives a modulated low frequency signal at the frequency of 125 kHz and transmits modulated RF signal at the frequency of 433.92 MHz. In addition it has a motion sensor and a tamper switch. It has low frequency receiver and RF transmitter. The ETC Tag is a miniature, unified infrared and active multi-purpose, local positioning RFID device. The tag is designed for asset or people idententification and tracking; or emergency and protection signaling. It is attached to an asset for tracking and monitoring. The tag will generate an alarm if the asset is moved to a prohibited location (such as an exit) or if an attempt is made to remove the tag from the asset. The ETC Tag transmits periodic RF based status messages at 433 MHz as well as optional infra-red signals. These signals are received by Elpas readers installed throughout the indoor facility. Elpas LF Exciters transmit an RF based ID at 125 kHz creating a 3 meters in radius field. When an ETC enters the LF field, the tag detects the LF message and transmits a special message indicating its entry into the field. This feature is used to warn when an attempt is made to remove an asset from its designated area. Other special messages are transmitted when the tag's button is pressed or when the tag is tampered.
Hermon Laboratories Ltd. P.O.Box 23, Binyamina 30500, Israel Tel. +972 4628 8001 Fax. +972 4628 8277 E-mail: [email protected] Page 1 of 42 Report ID: VISRAD_FCC.16644_rev2.doc Date of Issue: May 2006 Electrical TEST REPORT ACCORDING TO: FCC CFR 47 PART 15 Subpart C, sections 15.231(a), 15.231(e) FOR: Visonic Technologies Ltd. ETC Equipment Tag Model:P/N 5-ETC00433 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 shall not be reproduced in any form except in full with the written approval of Hermon Laboratories Ltd. Report ID: VISRAD_FCC.16644_rev2.doc Date of Issue: May 2006 Page 2 of 42 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 Changes made in the EUT ............................................................................................................................................ 5 6.3 Test configuration.......................................................................................................................................................... 5 7 Transmitter tests according to 47CFR part 15 subpart C requirements ........................................................................ 6 7.1 Periodic operation requirements ................................................................................................................................... 6 7.2 Field strength of emissions.......................................................................................................................................... 11 7.3 Occupied bandwidth test ............................................................................................................................................. 25 7.4 Antenna requirements ................................................................................................................................................. 27 7.5 Radiated emission measurements .............................................................................................................................. 28 8 APPENDIX A Test equipment and ancillaries used for tests....................................................................................... 32 9 APPENDIX B Measurement uncertainties................................................................................................................... 33 10 APPENDIX C Test facility description ......................................................................................................................... 34 11 APPENDIX D Specification references ....................................................................................................................... 34 12 APPENDIX E Abbreviations and acronyms................................................................................................................. 35 13 APPENDIX F Test equipment correction factors ......................................................................................................... 36 Report ID: VISRAD_FCC.16644_rev2.doc Date of Issue: May 2006 Page 3 of 42 1 Applicant information Client name: Visonic Technologies Ltd. Address: Habarzel street 30, Tel Aviv, Israel, 69710 Telephone: +972 3768 1408 Fax: +972 3768 1415 E-mail: [email protected] Contact name: Mr. Arick Elshtein 2 Equipment under test attributes Product name: ETC Equipment Tag Product type: Transmitter Model(s): P/N 5-ETC00433 Serial number: 12432671 Receipt date 8/22/2005 3 Manufacturer information Manufacturer name: Visonic Technologies Ltd. Address: Habarzel street 30, Tel Aviv, Israel, 69710 Telephone: +972 3768 1408 Fax: +972 3768 1415 E-Mail: [email protected] Contact name: Mr. Arick Elshtein 4 Test details Project ID: 16644 Location: Hermon Laboratories Ltd. P.O.Box 23, Binyamina 30500, Israel Test started: 8/22/2005 Test completed: 11/2/2005, 5/16/2006 Test specification(s): FCC Part 15, subpart C, ß15.231(a), 15.231(e); subpart B, ß15.109 Test suite: FCC_15.231(a) (5/9/2004 8:40:20 PM, modified) Report ID: VISRAD_FCC.16644_rev2.doc Date of Issue: May 2006 Page 4 of 42 5 Tests summary Test Status Transmitter characteristics Section 15.231(a), 15.231(e), Periodic operation requirements Pass Section 15.231(e), Field strength of emissions Pass Section 15.231(c), Occupied bandwidth Pass Section 15.207(a), Conducted emission Not required Section 15.203, Antenna requirement Pass Unintentional emissions Section 15.107, Conducted emission at AC power port Not required Section 15.109, Radiated emission Pass Section 15.111, Conducted emission at receiver antenna port Not required Testing was completed against all relevant requirement…
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Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Setup_photos_16644_rev1.doc Page 1 of 7 SETUP PHOTOGRAPHS This document contains 6 photographs Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Setup_photos_16644_rev1.doc Page 2 of 7 Photograph No.1 Setup for spurious emission field strength measurements in anechoic chamber below 30 MHz Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Setup_photos_16644_rev1.doc Page 3 of 7 Photograph No.2 Setup for radiated emission measurements in anechoic chamber in 30 MHz – 1000 MHz range Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Setup_photos_16644_rev1.doc Page 4 of 7 Photograph No.3 Setup for spurious emission field strength measurements in anechoic chamber above 1000 MHz Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Setup_photos_16644_rev1.doc Page 5 of 7 Photograph No.4 Setup for spurious emission field strength measurements at the OATS Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Setup_photos_16644_rev1.doc Page 6 of 7 Photograph No.5 Setup for spurious emission field strength measurements at the OATS, close view Visonic Ltd. FCC ID:GSA-ETC00433 Date: April 2006 Setup_photos_16644_rev1.doc Page 7 of 7 Photograph No.6 Setup for occupied bandwidth test
Harakevet Industrial zone · Binyamina · Israel
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231,15.231(e) | 433.92 MHz - 433.92 MHz | - |

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