
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
6 For Technical Support Please Call: 1-888-528-7826 www.chamberlainaccess.com © Chamberlain Access Solutions All Rights Reserved Troubleshooting Repeater service alerts are managed in the overlock management software. In the software, go to T ools\Manage Repeaters to view and clear alerts. Low Battery Indication The battery power on the R1000 repeater is supervised by the Overlock Management Software. A low battery indication will generate an alert in the software, notifying the administrator . 1 14A3884 ACCESSMASTER T1000 TRANSCEIVER AND ACCESSMASTER R1000 REPEATER INSTALLATION MANUAL T1000 Overview The T1000 transceiver is designed to allow communication between the AccessMaster Overlock and the Falcon XT access control system. The T1000 transceiver provides a secure, reliable wireless mode of communication without the need to run excess wiring throughout the site. The T1000 is designed to work only with the R1000 repeater and/or the OL1000 overlock device. Wiring the Transceiver Remove the bottom panel of the T1000 transceiver to view the power and communication pins. Power and Communication from the XT to the Transceiver Power from the XT to the transceiver is provided via RS422 (18 AWG, single-pair, stranded, tinned copper) using 12 VDC. The power wire is connected to pins 5 and 6 on the transceiver port. Connect the positive 12 VDC to pin 5 and ground to pin 6. Wire for communications must be 24 AWG, 2-pair, stranded, tinned copper, individual shield, drain wire, low capacitance wire. Communication connections on the transceiver are made on pins 1, 2, 3, and 4. Communication to the XT occurs on pin 1 (TX+) and pin 2 (TX-). Communication from the XT occurs on pin 3 (RX-) and pin 4 (RX+). Wiring connections are shown on page 2. ACCESSMASTER T1000 Transceiver (T1000) or Antenna Screws Repeater (R1000) AC/DC Power Supply Screws Carton Inventory 5 Mounting the R1000 Prior to mounting the repeater, write down the serial number of the device. This number will be needed during programming. Use the following guidelines when mounting the repeater. Mount the unit within 50 ft of a power source • Mount the unit in an area protected from the • weather Mount the unit as high as possible on the site • (such as near the roof ine) using the provided mounting screws Mount the unit to a solid, nonmetal surface • The unit should be halfway between the • devices that need to communicate. The unit is weather-resistant • Warning: Do not try to add length to the antenna to extend the repeater’s range as this will cause the system to become inoperational and/or will exceed FCC requirements. Installing Multiple Repeaters On large sites, multiple repeaters may be required to provide adequate communication coverage. Up to 8 repeaters can be learned to one transceiver, with up to 64 repeaters to one site. R1000 Operation The R1000 repeater extends the range of the T1000 transceiver to cover larger areas. Repeaters should be located throughout the site in such a way that coverage overlaps slightly to provide the most complete coverage. Up to 8 repeaters can be programmed to communicate with one transceiver . NOTICE: To comply with FCC and or Industry Canada rules (IC), adjustment or modifications of this receiver and/or transmitter are prohibited, except for changing the code setting or replacing the battery. THERE ARE NO OTHER USER SERVICEABLE PARTS. 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 operations. FCC ID: HBWGCU2 IC:2666A-GCU2 4 R1000 Overview The R1000 repeater can be added to the T1000 system to extend the range of the T1000 transceiver up to 500 ft, depending on the conditions of the site. The R1000 repeater provides a secure, reliable wireless mode of communication without the need to run excess wiring throughout the site. The R1000 is designed to work only with the T1000 transceiver and the OL1000 overlock device.R1000 Assembly Remove cover. 1. Insert 4 lithium batteries 2. Replace the cover 3. Wiring the RepeaterThe repeater must be connected to an AC/DC power supply. Remove the bottom panel of the repeater to view the power pins. For AC power: Connect the red and black wires to terminals 1 and 2. (With AC power, it doesn’t matter whether the red or black is connected to the + terminal, however, wire color use should be consistent throughout the site) For DC power:Connect the red wire to terminal 1 (DC+) Connect the black wire to terminal 3 (DC-)Set Up the R1000 To program the repeater, the device must ‘learn’ the devices to communicate with. Devices must be manually learned before installation. To manually learn repeaters to the transceiver: After the transceiver is connected to the Falcon XT, press the 1. function button on the transceiver (SW1) to put it in learn mode. When the red LED is lit (not blinking) the transceiver is in learn mode.Press the Learn button on the repeater to be learned. The LED on 2. both the repeter and the transceiver will pulse while the device is being learned. When the LED on the repeater goes out, the device is learned. Learn all repeaters in this manner.After all repeaters have been learned to the transceiver, press 3. the function button on the tranceiver and the LED will go off. The transceiver is no longer in learn mode. ACCESSMASTER R1000 1 Communication Connections Pin Comm 1 TX + 2 TX - 3 RX - 4 RX + 12 VDC 100 mA Pin Power 5 12 VDC 6 Ground NOTE: Auxiliary power for peripheral devices is NOT provided on the transceiver . These devices must be powered separately. 13 2456 RX- RX+ TX- TX+ Ground + - 13 2456 12 VDC 2 Power and Communication from the Transceiver to the XTPower from the controller to the transceiver is provided via RS422 (18 AWG, single-pair, stranded, tinned copper) using 12 VDC. The power wire is connected to pins 5 and 6 on the…
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845 Larch Ave. Elmhurst, IL 60126 Phone 630.993.6306 Fax 630.516.6863 Email: [email protected] January 15, 2010 Federal Communication Commission Equipment Authorization Division Application Processing Branch 7435 Oakland Mills Road Columbia, Maryland 21046 FCC ID:HBWXCVR1 Request for Confidentiality In accordance with 47 C.F.R. Section 0.457 and 0.459, we, Chamberlain Group, Inc., hereby request confidentiality for the block diagram, schematic and product description presented for certification. In support of the Request for Confidentiality, the following is stated: Enclosed within this application is technical information which we deem to be trade secrets and proprietary. If made public, the information might be used to our disadvantage. To assist in assuring that we receive the full value of our product and protect its competitive posture, we respectfully request this grant of confidentiality. I would appreciate your prompt attention to the submittal. If there are any questions, please call me at 630-993-6306 or send a fax to 630-516- 6863. Sincerely, Barbara Kelkhoff Regulatory Project Manager II Chamberlain Group, Inc. 845 Larch Ave. Elmhurst, IL. 60126
T1000 +12VDC GND TX+TX-RX-RX+ Transceiver This product is covered by one or more of the following patents 7,071,850, 7,561,075. Other patents pending. 132B2684C The Chamberlain Group, Inc. USA FCC ID: HBWXCVR1 IC: 2666A-XCVR1 Assembled in Mexico Artwork: 132LA2684-00-C 3" x 1.375" x .13" (W x H x R) Shown at 100% ECN: 01913 Dec.-8-2009
Elite Electronic Engineering Inc. 1516 Centre Circle Downers Grove, IL 60515 Tel : (630) 495-9770 Fax: (630) 495-9785 www.elitetest.com For : The Chamberlain Group, Inc. : 845 Larch Ave : Elmhurst, IL P.O. No. : 864220 Date Tested : December 11, 2009 through January 5, 2010 Test Personnel : Richard E. King Specification : FCC "Code of Federal Regulations" Title 47, Part 15, Subpart C, Section 15.247 for Frequency Hopping Spread Spectrum Intentional Radiators within the 902-928MHz band. : Industry Canada RSS-210 and RSS-GEN Test Report By : Richard E. King Approved By : Raymond J. Klouda Registered Professional Engineer of Illinois - 44894 Engineering Test Report No. 0903576-01 Measurement of RF Interference from an T1000 Transceiver Engineering Test Report No. 0903576-01 THIS REPORT SHALL NOT BE REPRODUCED, EXCEPT IN FULL, WITHOUT THE WRITTEN APPROVAL OF ELITE ELECTRONIC ENGINEERING INCORPORATED. Page 2 of 83 TABLE OF CONTENTS PARAGRAPH DESCRIPTION OF CONTENTS PAGE NO. 1 ............................................................................................................................................... 5 INTRODUCTION 1.1 .......................................................................................................................................... 5 Scope of Tests 1.2 .................................................................................................................................................... 5 Purpose 1.3 ....................................................................................................... 5 Deviations, Additions and Exclusions 1.4 .................................................................................................................. 5 EMC Laboratory Identification 1.5 .............................................................................................................................. 5 Laboratory Conditions 2 ............................................................................................................................ 5 APPLICABLE DOCUMENTS 3 .......................................................................................................... 6 TEST ITEM SET-UP AND OPERATION 3.1 .................................................................................................................................. 6 General Description 3.1.1 .......................................................................................................................................... 6 Power Input 3.1.2 ........................................................................................................................... 6 Peripheral Equipment 3.1.3 ............................................................................................................................. 6 Interconnect Cables 3.1.4 ............................................................................................................................................. 6 Grounding 3.2 ..................................................................................................................................... 6 Operational Mode 3.3 ............................................................................................................................. 6 Test Item Modifications 4 .......................................................................................... 7 TEST FACILITY AND TEST INSTRUMENTATION 4.1 ................................................................................................................................... 7 Shielded Enclosure 4.2 ................................................................................................................................. 7 Test Instrumentation 4.3 ............................................................................................................................. 7 Calibration Traceability 4.4 ........................................................................................................................ 7 Measurement Uncertainty 5 ....................................................................................................................................... 7 TEST PROCEDURES 5.1 .............................................................................................................. 7 Powerline Conducted Emissions 5.1.1 ....................................................................................................................................... 7 Requirements 5.1.2 ........................................................................................................................................... 8 Procedures 5.1.3 .................................................................................................................................................. 8 Results 5.2 ........................................................................................................................................ 8 20dB Bandwidth 5.2.1 ....................................................................................................................................... 8 Requirements 5.2.2 ........................................................................................................................................... 8 Procedures 5.2.3 .................................................................................................................................................. 8 Results 5.3 .................................................................................................................. 8 Carrier Frequency Separation 5.3.1 ....................................................................................................................................... 8 Requirements 5.3.2 ........................................................................................................................................... 9 Procedures 5.3.3 ............................................…
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Engineering Test Report No. 0903576-01 Page 55 of 83 Engineering Test Report No. 0903576-01 Page 56 of 83 Engineering Test Report No. 0903576-01 Page 57 of 83 Engineering Test Report No. 0903576-01 Page 58 of 83 Engineering Test Report No. 0903576-01 DATA PAGE Manufacturer : The Chamberlain Group, Inc. Test Item : Transceiver Model No. : T1000 Serial No. : none Test Specification : FCC Part 15, Subpart B, Section 15.209, Radiated Emissions Date : December 18, 2009 Mode : Receive @ 902.24MHz Test Distance : 3 meters Notes : Peak Detector : Total = Meter Reading + Cable Loss + Antenna Factor + Preamp Gain Freq (MHz) Ant Pol Meter Reading (dBuV) Ambient CBL Fac (dB) Ant Fac (dB) Pre Amp (dB) Total dBuV/m at 3 M Total uV/m at 3M Limit uV/m at 30M Margin (dB) 902.24 H 15.4 * 2.4 22.8 0.0 40.6 107.4 500 -13.4 902.24 V 15.5 * 2.4 22.8 0.0 40.7 108.6 500 -13.3 1804.48 H 46.3 * 3.4 28.9 -40.6 38.0 79.2 500 -16.0 1804.48 V 46.4 * 3.4 28.9 -40.6 38.1 80.3 500 -15.9 2706.72 H 44.2 * 3.9 29.6 -40.3 37.4 74.1 500 -16.6 2706.72 V 43.6 * 3.9 29.6 -40.3 36.7 68.6 500 -17.2 3608.96 H 43.2 * 4.7 32.0 -40.1 39.7 97.1 500 -14.2 3608.96 V 42.2 * 4.7 32.0 -40.1 38.8 86.6 500 -15.2 4511.20 H 42.7 * 5.5 32.9 -40.0 41.2 114.4 500 -12.8 4511.20 V 42.8 * 5.5 32.9 -40.0 41.2 115.1 500 -12.8 Checked BY : ________________________________ Richard E. King Page 59 of 83 Engineering Test Report No. 0903576-01 DATA PAGE Manufacturer : The Chamberlain Group, Inc. Test Item : Transceiver Model No. : T1000 Serial No. : none Test Specification : FCC Part 15, Subpart B, Section 15.209, Radiated Emissions Date : December 18, 2009 Mode : Receive @ 914.74MHz Test Distance : 3 meters Notes : Peak Detector : Total = Meter Reading + Cable Loss + Antenna Factor + Preamp Gain Freq (MHz) Ant Pol Meter Reading (dBuV) Ambient CBL Fac (dB) Ant Fac (dB) Pre Amp (dB) Total dBuV/m at 3 M Total uV/m at 3M Limit uV/m at 30M Margin (dB) 914.74 H 15.6 * 2.4 23.1 0.0 41.1 113.2 500 -12.9 914.74 V 15.5 * 2.4 23.1 0.0 41.0 111.9 500 -13.0 1829.48 H 46.3 * 3.5 28.9 -40.6 38.0 79.7 500 -16.0 1829.48 V 46.4 * 3.5 28.9 -40.6 38.1 80.8 500 -15.8 2744.22 H 44.2 * 3.9 29.6 -40.6 37.2 72.2 500 -16.8 2744.22 V 43.6 * 3.9 29.6 -40.6 36.5 66.8 500 -17.5 3658.96 H 43.2 * 4.7 32.2 -40.6 39.6 95.0 500 -14.4 3658.96 V 42.2 * 4.7 32.2 -40.6 38.6 84.8 500 -15.4 4573.70 H 42.7 * 5.5 33.1 -40.6 40.8 109.5 500 -13.2 4573.70 V 42.8 * 5.5 33.1 -40.6 40.9 110.3 500 -13.1 Checked BY : ________________________________ Richard E. King Page 60 of 83 Engineering Test Report No. 0903576-01 DATA PAGE Manufacturer : The Chamberlain Group, Inc. Test Item : Transceiver Model No. : T1000 Serial No. : none Test Specification : FCC Part 15, Subpart B, Section 15.209, Radiated Emissions Date : December 18, 2009 Mode : Receive @ 926.74MHz Test Distance : 3 meters Notes : Peak Detector : Total = Meter Reading + Cable Loss + Antenna Factor + Preamp Gain Freq (MHz) Ant Pol Meter Reading (dBuV) Ambient CBL Fac (dB) Ant Fac (dB) Pre Amp (dB) Total dBuV/m at 3 M Total uV/m at 3M Limit uV/m at 30M Margin (dB) 926.74 H 15.6 * 2.4 23.5 0.0 41.5 118.4 500 -12.5 926.74 V 15.5 * 2.4 23.5 0.0 41.4 117.0 500 -12.6 1853.48 H 46.3 * 3.5 29.5 -40.5 38.8 86.7 500 -15.2 1853.48 V 46.4 * 3.5 29.5 -40.5 38.9 87.9 500 -15.1 2780.22 H 44.2 * 4.0 29.6 -40.4 37.4 74.2 500 -16.6 2780.22 V 43.6 * 4.0 29.6 -40.4 36.7 68.7 500 -17.2 3706.96 H 43.2 * 4.8 32.4 -40.1 40.3 103.6 500 -13.7 3706.96 V 42.2 * 4.8 32.4 -40.1 39.3 92.5 500 -14.7 4633.70 H 42.7 * 5.6 33.3 -40.0 41.6 120.2 500 -12.4 4633.70 V 42.8 * 5.6 33.3 -40.0 41.7 121.0 500 -12.3 Checked BY : ________________________________ Richard E. King Page 61 of 83 Engineering Test Report No. 0903576-01 Page 62 of 83 Engineering Test Report No. 0903576-01 Page 63 of 83 Engineering Test Report No. 0903576-01 Page 64 of 83 Engineering Test Report No. 0903576-01 Page 65 of 83 Engineering Test Report No. 0903576-01 Page 66 of 83 Engineering Test Report No. 0903576-01 Page 67 of 83 Engineering Test Report No. 0903576-01 Page 68 of 83 Engineering Test Report No. 0903576-01 Page 69 of 83 Engineering Test Report No. 0903576-01 Page 70 of 83 Engineering Test Report No. 0903576-01 Page 71 of 83 Engineering Test Report No. 0903576-01 Page 72 of 83 Engineering Test Report No. 0903576-01 Page 73 of 83 Engineering Test Report No. 0903576-01 DATA PAGE Manufacturer : The Chamberlain Group, Inc. Test Item : Transceiver Model No. : T1000 Serial No. : none Test Specification : FCC Part 15, Subpart C, Section 15.247, Radiated Emissions Date : December 18, 2009 Mode : Transmit @ 902.25MHz Test Distance : 3 meters Notes : Peak Detector : Total = Meter Reading + Cable Loss + Antenna Factor + Preamp Gain Freq (MHz) Ant Pol Meter Reading (dBuV) Ambient CBL Fac (dB) Ant Fac (dB) Pre Amp (dB) Total dBuV/m at 3 M Total uV/m at 3M Limit uV/m at 30M Margin (dB) 2706.75 H 34.3 3.9 29.6 0.0 67.8 2457.8 5000 -6.2 2706.75 V 37.3 3.9 29.6 0.0 70.8 3471.7 5000 -3.2 3609.00 H 29.5 4.7 32.0 0.0 66.3 2055.2 5000 -7.7 3609.00 V 28.1 4.7 32.0 0.0 64.8 1743.3 5000 -9.2 4511.25 H 23.9 5.5 32.9 0.0 62.3 1298.8 5000 -11.7 4511.25 V 23.6 5.5 32.9 0.0 61.9 1248.9 5000 -12.0 7218.00 H 42.0 * 7.6 37.4 -39.8 47.2 230.1 5000 -26.7 7218.00 V 42.0 * 7.6 37.4 -39.8 47.2 230.1 5000 -26.7 8120.25 H 41.7 * 8.0 37.8 -39.6 47.9 248.6 5000 -26.1 8120.25 V 41.7 * 8.0 37.8 -39.6 47.9 248.6 5000 -26.1 Checked BY : ________________________________ Richard E. King Page 74 of 83 Engineering Test Report No. 0903576-01 DATA PAGE Manufacturer : The Chamberlain Group, Inc. Test Item : Transceiver Model No. : T1000 Serial No. : none Test Specification : FCC Part 15, Subpart C, Section 15.247, Radiated Emissions Date : December 18, 2009 Mode : Transmit @ 902.25MHz Test Distance : 3 meters Notes : Average Detector : Total = Meter Reading + Cable Loss + Antenna Factor + Preamp Gain + Duty Cycle Factor Freq (MHz) An t Pol Meter Reading (dBuV) Ambient CBL Fac (dB) Ant Fac (dB) Pre Amp (dB) Duty Cycle (dB) Total dBuV/m at 3 M Total uV/m at 3…
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Engineering Test Report No. 0903576-01 Figure 2 Test Set-up for Conducted Emissions Page 18 of 83 Engineering Test Report No. 0903576-01 Figure 3 Test Set-up for Radiated Emissions – 30MHz to 1GHz, Horizontal Polarization Test Set-up for Radiated Emissions – 30MHz to 1GHz, Vertical Polarization Page 19 of 83 Engineering Test Report No. 0903576-01 Figure 4 Test Set-up for Radiated Emissions – 1GHz to 10GHz, Horizontal Polarization Test Set-up for Radiated Emissions – 1GHz to 10GHz, Vertical Polarization Page 20 of 83
845 Larch Avenue · Elmhurst, Illinois · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.25 MHz - 926.75 MHz | 40.00 mW |

iDock Link 2
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterSMART GARAGE VIDEO KEYPAD
Equipment Class
DTS - Digital Transmission System
Wireless Chime
Equipment Class
DTS - Digital Transmission SystemVEHICULAR GATE OPENER
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterHandheld Remote
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter