
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
AMS-1080 DETECTION SYSTEM 8200-0418-01, REV. A INSTALLATION AND SERVICE GUIDE 1 of 18 AMS-1080 Detection System Installation and Service Guide Contents To the Installer....................................................... 1 About the Product.................................................. 2 Device Connections .............................................. 4 Installation Features .............................................. 6 Service Features ................................................... 7 Installation Requirements...................................... 8 AMS-1080 Antenna Installation............................. 9 Against a Wall or Counter .................................. 9 To a Railing Post.............................................. 10 Controller Installation........................................... 12 AC Hookup .......................................................... 12 System Setup ...................................................... 13 Antenna Connections....................................... 13 Software Selections ......................................... 14 Verifying Operation.............................................. 14 Troubleshooting................................................... 15 Fuse Replacement .............................................. 17 Specifications ...................................................... 17 Declarations ........................................................ 18 © 2004 Sensormatic To the Installer This installation and service guide explains how to install, setup, and service the AMS-1080 detection system. Parts required to install this system are: - AMS-1080 Controller - AMS-1080 Controller Mounting Kit 0352-0203-01 (optional) - AMS-1080 Antenna(s) - AMS-1080 Antenna Counter Mounting Kit(s) 0352-0199-01 or Pole Mounting Kit(s) 0352-0198-01 - ZKRANGER-DG Ranger antenna kits, as required (purchase separately). Other documents that may be required for installation are: - AMS-1080 Planning Guide, 8200-0418-02 - ZKRANGER-DG Ranger Installation Guide, 8200-0452-01 - AMS-1080 Theory or Operation, 8200-0418-03. Note: - Because customer requirements dictate the placement of system components, your Sensormatic representative will supply this information separately. - If this product was installed in a European Union or European Free Trade Association member state, please give the Declaration of Conformity included with this product to the manager or user. By law, this information must be provided to the user. - The controller is cooled by a fan that is factory set to 240Vac. If using 120Vac, remove the cover from the controller and change fan jumpers to 120Vac. See label inside the controller for jumper locations. - Install the AMS-1080 antenna at least 5cm (2in) from metal surfaces. AMS-1080 DETECTION SYSTEM 8200-0418-01, REV. A INSTALLATION AND SERVICE GUIDE 2 of 18 About the Product The AMS-1080 detection system detects EAS tags/labels in food store checkout aisles, with each aisle independently supported. The detector consists of a controller and one of the following antenna combinations: - Up to two individual aisles supported with transceivers. For this setup, an AMS-1080 antenna is set up as a transceiver in each aisle. The antenna furthest from the controller requires a trench to route its cables to the controller. The AMS-1080 antennas in each aisle can be set to alarm independently. - Up to two individual aisles (A and B) supported with improved detection or with backfield reduction. For improved detection, an AMS-1080 antenna is set up as a transceiver in each aisle and a pair of Ranger receive antennas (purchased separately) are set up opposite the antenna. For backfield reduction, the AMS-1080 antenna is set up as a transmitter instead. The AMS-1080 antennas in each aisle can be set to alarm independently. Antennas furthest from the controller require a trench to route their cables to the controller. - Up to two individual pairs of adjacent aisles (A1/A2 and B1/B2) supported. For each adjacent aisle, an AMS-1080 antenna is set up as a transmitter on a railing post between the two aisles and a pair of Ranger receive antennas (purchased separately) are setup opposite the each side of the antenna. The alarm lamp in the AMS-1080 antenna automatically signals which aisle a security tag/label was detected. Antennas furthest from the controller require a trench to route their cables to the controller. - Two AMS-1080 antennas set up at a doorway either in alternating transmit-receive or dual transceiver configurations. Alarms in both antennas activate simultaneously. A B A B A1 A2 B1 B2 AMS-1080 DETECTION SYSTEM 8200-0418-01, REV. A INSTALLATION AND SERVICE GUIDE 3 of 18 Basic Operation The AMS-1080 detector deters theft by activating an alarm when it detects the unique response of an active Ultra•Max hard plastic tag or disposable label. To detect a tag/label, AMS-1080 antenna(s) connected to the controller emit a magnetic field close to the tag/label’s natural frequency causing it to vibrate or “ring” at the frequency of the field. When the field is removed, energy in the tag/label dissipates causing an exponential ring down. The AMS-1080 antenna(s)—and ferrite (Ranger) antennas, if used—pick up incoming signals and send them to the controller which processes them to determine if they are indicative of ring down. If they are, then the controller activates an audio/visual alarm indicator at the top of the AMS- 1080 antenna that detected the tag/label. When the AMS-1080 antenna is positioned between two adjacent checkout lanes, the visual alarm indicator can be set to indicate the aisle where the active tag was detected. AMS-1080 Controller Features The AMS-1080 controller features the following: - Independent Tx and Rx connections that support two transmitters and four receivers - Supports up to two noise canceling coils - Controls pedestal alarms - Has “ac line synchronization” and “tag too close” functions. - Supports w…
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August 27, 2004 Timco Engineering, Inc. 849 N.W. State Road 45 P.O. Box 370 Newberry, Florida 32669 USA Re: Request for withholding from public disclosure proprietary information submitted pursuant to an application for certification for a low power transmitter. FCC ID: BVCAMS1080 Dear Sir or Madam: Sensormatic Electronics Corporation requests certain materials submitted with this application for certification be withheld from public disclosure. This request is made under the provision of 47 CFR 0.457 (d) and 5 USC 552(b)(4) Freedom of Information Act, Trade Secrets. The items for which confidentiality is requested include the Operational Description, Block Diagram and Schematic Diagrams. This information contains proprietary information (trade secrets) regarding the circuit operation and capabilities (specific values of components, circuit design details and system architecture) that are the result of our extensive investment in research and development. Without the disclosed information, competitive organizations would take considerable more time to assess and develop a workable competitive product. As a result, we believe that disclosure of these company-guarded materials would compromise our leading position in this market. We therefore formally request that the materials identified “Confidential” be kept strictly confidential and not made available for inspections by any other party, except on a need to know basis for the sole purpose of the certification process. Sincerely, William M. Elliott Sr. EMC Engineer, Compliance Engineering Sensormatic Electronics Corporation 6600 Congress Avenue, Boca Raton, FL 33487 Telephone (561) 912-6000 FAX (561) 912-6787
Exhibit 6 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 AMS-1080 External Photos External Photo 1 – AMS-1080 Exhibit 6 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 External Photo 2 – AMS-1080
Exhibit 3 FCC ID: BVCAMS1080 IC: 3506A – AMS1080 Exhibit 3 AMS 1080 Label Location The label is a metalized polyester that is UL recognized and is permanently affixed using an L-23 adhesive. Label Position
Exhibit 2 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 AMS1080 Label Sample NRTL ® BARCODE MADE IN PUERTO RICO FCC ID: BVCAMS1080 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. This Class A digital apparatus complies with Canadian ICES-003. Cet appareil numérique de la classe A est confrome á la norme NMB-003 du Canada. IC: 3506A-AMS1080 MODEL: AMS-1080 MFD:07-04 P/N: 0319-0009-01 REV : Z SERIAL NO: SECA0117012345 RATING: 100-120/200-240V 50-60Hz 2A N205
Exhibit 7 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 AMS-1080 Internal Photos Internal Photo 1 – AMS-1080 Exhibit 7 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 Internal Photo 2 – Board Top View Exhibit 7 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 Internal Photo 3 – Board Bottom View
Exhibit 9 FCC ID: BVCAMS1080 IC: 3506A – AMS1080 Report AMS-1080 1 Issue Date: August 25, 2004 COMPANY Sensormatic Electronics Corp. 6600 Congress Ave Boca Raton, Florida 33487 PRODUCT TESTED AMS-1080 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 FCC RULES 15.207, 15.209 IC SPECIFICATIONS RSS 210 TEST DATE[s] June 30 th - August 19, 2004 SUBMITTED BY William M. Elliott Exhibit 9 FCC ID: BVCAMS1080 IC: 3506A – AMS1080 Report AMS-1080 2 Issue Date: August 25, 2004 CONTENTS I. SUMMARY OF RESULTS 3 II. GENERAL INFORMATION 3 Test Methodology 3 Test Facility 3 System Description 4 15.203 Compliance 4 III. CONDUCTED EMISSIONS TESTING, 47 CFR 15.207 4 IV. RADIATED EMISSIONS TESTING, 47 CFR 15.209 4 V. OCCUPIED BANDWIDTH, RSS 210, Clause 5.9.1 5 VI. LIST OF MEASUREMENT EQUIPMENT 6 VII. DATA Part A – Conducted Emissions 7 Part B – Radiated Emissions 8 Part C – 20 dB Bandwidth 9 Exhibit 9 FCC ID: BVCAMS1080 IC: 3506A – AMS1080 Report AMS-1080 3 Issue Date: August 25, 2004 I. Summary of Results 47 CFR 15.203 ANTENNA REQUIREMENTS COMPLIES 47 CFR 15.207 CONDUCTED EMISSIONS COMPLIES 47 CFR 15.209 RADIATED EMISSIONS COMPLIES RSS 210: 5.9.1 OCCUPIED BANDWIDTH PROVIDED II. General Information 1.1. Test Methodology Both conducted and radiated emissions testing were performed according to the procedures in ANSI C63.4-1992, and the requirements of 15.31, 15.33, 15.35, 15.207, and 15.209. Radiated emissions measurements below 30MHz were performed at a distance 15 meters and the results were extrapolated to the distance specified per 15.31 and 15.209 invoking the 2-point extrapolation method. 1.2. Test Facility Measurements per 15.207 and 15.209 were performed at Sensormatic Electronics Corporation. The shielded room conducted emissions measurement facility and the radiated emissions Open Area Test Site are located at Sensormatic Electronics Corporation Headquarters at 6600 Congress Avenue, Boca Raton, Florida 33487. These sites have been found acceptable by and are on file with the FCC per FCC Registration Number 90925, and Industry Canada per file number IC 3506. Exhibit 9 FCC ID: BVCAMS1080 IC: 3506A – AMS1080 Report AMS-1080 4 Issue Date: August 25, 2004 1.3. Test System Description. The AMS-1080 is a controller capable of driving a pair of antennas, one at a time, to generate a magnetic field to excite tags, receive the signal and alarm when an acceptable tag signal is detected and verified. A single main PCB accommodates the Receiver, the Switching Amplifier Transmitter and the Power Supply. The AMS-1080 currently operates solely with the AMS-1080 antenna pedestal. The product tested was a pre-production unit built to production drawings. 15.203. The antenna is a professionally installed external antenna employing a terminal style connector; therefore the antenna is compliant with the requirements of this clause. III. Conducted Emissions 15.207. Conducted emissions data are presented in Section VIII “Data”, Part A, “Conducted Emissions”. The product demonstrated compliance with the requirements of 15.207. The product was tested with the device transmitting in normal operation mode at maximum current. Exhibit 9 FCC ID: BVCAMS1080 IC: 3506A – AMS1080 Report AMS-1080 5 Issue Date: August 25, 2004 IV. Radiated Emissions 15.209. Radiated emissions data for this product are presented in Section VIII “Data”, Part B, Radiated Emissions. The product demonstrated compliance with the requirements. Radiated emissions measurements were performed at 15 meters. Propagation loss was determined to be 3 rd order roll off by measuring emissions at 10 and 20 m. The results were compared to the limits by extrapolating the results to 300 meters as per 15.31(f)(2), using the 2-point extrapolation method. Maximum radiation was determined by first assessing symmetry. The product exhibited semi-circular symmetry. Measurements were taken at radials of 22.5° throughout two quadrants; the measurement antenna was rotated for maximum pickup about the vertical axis of the measurement antenna at each radial. The maximum emission was determined to be with the measurement loop antenna in the vertical polarization, parallel to the radiating loop of the antenna structure. The product was tested at input voltages to the power supply ranging from 102 – 138V, 60Hz. See Section VIII, Part B for results. V. Occupied Bandwidth RSS 210:5.9.1. The 20 dB bandwidth measurements for this product are presented in Section VII “Data”, Part C, Occupied Bandwidth. A bandwidth requirement was not specified for 58kHz products, so the default 20dB bandwidth was measured. The HP 8591EM spectrum analyzer cannot measure a bandwidth over 1.8kHz in quasi- peak detection mode, so the bandwidth was measured in peak detection mode, providing a worst-case occupied bandwidth. Exhibit 9 FCC ID: BVCAMS1080 IC: 3506A – AMS1080 Report AMS-1080 6 Issue Date: August 25, 2004 VI. LIST OF MEASURING EQUIPMENT The equipment used for determining compliance of the AMS-9040 system with the requirements of 15.207 and 15.209 is marked with an “X” in the first column of the table below. ModelDescriptionVendorSerial # X ALP -70 Loop Antenna Electro Metrics 163 X 3110B Biconical Antenna Electro Metrics 1017 3146 Log Periodic Antenna EMCO 3909 3825/2 Line Imp Stable Network EMCO 1562 X 3816/2NM Line Imp Stable Network EMCO 9703 1018 6060B Frequency Generator Giga-tronics 5850202 FM2000 Isotropic Field Monitor Amplifier Research 15171 FP2000 Isotropic Field Probe Amplifier Research 15214 888 Leveler Amplifier Research 14998 75A220 Low Band Amplifier Amplifier Research 15208 10W1000A High Band Amplifier Amplifier Research 15138 PEFT Junior EFT Generator Haefely Trench 083 180-16 PEFT Junior Capacitive Cable Clamp Haefely Trench 083-078-31 NSG435 ESD Simulator Schaffner 1197 NSG431 ESD Simulator Schaffner 1267 X HP8591EM EMC Analyzer Hewlett - Packard 3520A00190 Power Source Pacific Instruments F-2031 EM Injection Clamp Fischer Cust. Comm. 30 FCC-801-M3-16 Coupling Decoupling Nwk Fischer Cust. Comm.…
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Exhibit 10 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 AMS-1080 Test Setup Photos Conducted Emissions Exhibit 10 FCC ID: BVCAMS1080 IC: 3506A-AMS1080 H-Field Emissions
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 0.058 MHz - 0.058 MHz | - |

UHF RFID Reader
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterAnti Theft System - Electronic Asset Security
Equipment Class
FAP - Part 15 Anti-Pilferage DeviceLabel Deactivator Controller
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz
RM2L-4000-P126, RM2-4000-P126
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Anti-pilferage Device
Equipment Class
FAP - Part 15 Anti-Pilferage Device