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OU4XPC280GARAGE DOOR CONTROL

Xanboo, Inc.
GARAGE DOOR CONTROL - FCC ID OU4XPC280 - Xanboo, Inc.
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Mar 21, 2007
Application Purpose
Original Equipment
Date of Application
Mar 21, 2007
Equipment Note
GARAGE DOOR CONTROL
Frequency Range
418.00000000 - 418.00000000
Company
Xanboo, Inc.
Country
United States

Documents & Files

Select a file to view

Users Manual

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Block Diagram

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External Photos

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ID Label/Location Info

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Internal Photos

Operational Description

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Schematics

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

The Garage door module installation notes When used with the Xanboo Gateway and devices, the Garage door module is designed to: Notify the user if the Garage door is in the open or closed position and enable the user to open or close the Garage door remotely. Two switch sensors need to be installed on the Right hand Garage door tracks. One at the bottom of the track to sense the closed position and one on the horizontal portion of the track to sense the open position. The installation of the switches Open your Garage door. Make sure you remove power to your Garage door opener to prevent accidental operation during installation. Carefully unwrap the cable / switch Bundle. Attach the switch marked “Closed” as per the illustration below on the lowest part of the right hand track. When the Garage door is closed the lower guide wheel in the Garage door should press firmly on the actuator. Using the stick-on cable tidy clips supplied route the cable carefully on the back of the track ensuring that the Garage door operation does not interfere with the cable at any time. (Please clean the area that you attaché the cable tidy clips to ensure good adhesion of the clips) Rout the cable to a position close to your Garage door Motor. Next Mount the switch marked “Open” as shown and route the cable carefully to the same position. It is advised that you bundle the excess cable in a neat fashion and ensure that the cables do not interfere or touch the Garage door itself at any time. Position the Garage door module close to you Garage door Motor (a space on the ceiling will be best). (Here insert the mounting as per HA and repeater module except show mounting on a ceiling) Attach the Multi connector tether from the unit to the cable harness plug (as shown) Connect the two wires marked (door switch) to the same terminals that are connected to your door push button. Tidy all cabling and then attach the supplied power adapter to a wall plug (in most cases there is a power outlet provided for the Garage door operator unit). Plug the DC jack in the white adapter socket attached to the main cable harness. You may now reconnect you Garage door operator and proceed as follows to test your installation and discover the device to the Gateway. Close you garage. Ensure the green LED light on the sensor switch is on. If not you need to adjust the switch upwards until you see the green light. Tighten the switch in this position. Now open the Garage door and adjust the switch forward until you see the green light on the open switch. Repeat this a few times and ensure you get the green light every time and adjust and secure the sensor switches one final time. Now press the small switch on the front of the module: Your system should initialize. A second press should close or open your Garage door. Your physical installation is now complete. Ron/Arin/ please help to insert the section with ref to discovery and software set up Specification Use AFM 2 Generic spec here. FCC part 15 FCC Boiler plate here 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. FCC NOTE: The manufacturer is not responsible for any radio or TV interference caused by unauthorized modifications to this equipment. Such modifications could void the user's authority to operate the equipment.

External Photos

EUT - Front View EUT - Back View Adapter - Front View Adapter - Back View

ID Label/Location Info

FCC ID Label Sample for Model: XPC280 FCC ID: OU4XPC280 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.

ID Label/Location Info

FCC ID Label 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 The Label must not be a stick-on paper. The Label on these products must be permanently affixed to the product and readily visible at the time of purchase and must last the expected lifetime of the equipment not be readily detachable. Proposed Label Location on EUT EUT Bottom View/proposed FCC Mark Location FCC ID:OU4XPC280 This device complies with Part 15 of the FCC Rules.Operation is

Operational Description

Garage Door Control Jan 25, 2007 Architecture XPC280 Garage Door Control, a device that will automatically open or close depending upon conditions, with a motion detector responsive to vehicle space for actuating security lighting and warning measures to provide enablement of the door closure activator during respective exiting and non-exiting modes. The hardware architecture is shown in Figure 1. The unit is of closed/opened switches to detect the condition of the door, and send the information to the processor. The processor (PIC16F873) process kinds of operation, including scanning the discovery switch to initialize communication, lighting LED to indicate status, driving motor, and communicating with CC1100 module, CC1000 is a true single chip UHF transceiver designed for very low power and low voltage wireless communications with sensors. It operates at 418MHz or 433MHz frequency by programmed different firmware via an easy-to-interface serial bus with a microcontroller.

Schematics

S H E E T OF DIMENSIONS ARE IN INCHES.TOLERANCES ARE= FRACTIONS=ANGULAR=DECIMALS= xx xxx SCALE: NONE APPROVALS DATE DRAWN:CHECKED:APPRV'D:SIZE FILE B TITLE MODEL NO:PCB NO: U N L E S S O T H E R W I S E S P E C I F I E D 115 West 30th Street 6th FL., New York, NY 10001 (646) 674 - 3000 R E V I S I O N S REV DESCRIPTION DATE APPR DR. BY NOTES: 1. ALL RESISTORS ARE IN OHMS.2. ALL CAPACITANCE IN FARADS. FRM-4, REV B (12/16/95) COMPUTER FILE # 1 2 3 4 ABCD ABCD ECO NO. 1 2 3 4 2 1 DEGREE +-+- 255 +-+- THIS DOCUMENT AND THE DATA DISCLOSED HEREIN OR HEREWITH IS THE PROPERTY OF XANBOO AND IS NOT TO BE REPRODUCED, USED OR DISCLOSED IN WHOLE OR IN PART WITHOUT THE PERMISSION OF XANBOO. ALL PATENT, PROPRIETARY, DESIGN, USE, SALE, MANUFACTURING AND REPRODUCTION RIGHTS THERETO ARE RESERVED BY XANBOO. PRINT DATE 2007-1-24 14:23:50 TIME BOO Inc COMPANY: REV:REV: 2.02.0 GDoor 1 XAN584 Sam RC0 11 RC1 12 RC2 13 RC3 14 RC4 15 RC5 16 RC6 17 RC7 18 RB0 21 RB1 22 RB2 23 RB3 24 RB4 25 RB5 26 RB6 27 RB7 28 RA0 2 RA1 3 RA2 4 RA3 5 RA4 6 RA5 7 VSS 19 VSS 8 MCLR 1 VDD 20 OSC1 9 OSC2 10 U4PIC16LF873A-I/SS Y14MHZ C415pf C515pf R18472 A 1 K 2 D11N5711 R19 472 R20472 R22103 R23103 MCLR RXTXLED REDI2C DATAI2C CLKRC2TPC1TPC0 RA0RA1KF4RA3KF2KF3RB0LED GREENDATABUSYS1S2CTSRTS VCC Y232K C6 33pf C733pf R45151 1 1 3 3 2 2 LED1 R44151 MCLR2 R5104 R6104 R2100K R41472 R4010K R37 470 R38 470 R35 470 TXCTSRTS R34 470 R36 470 R33 470 R3104 R8 103 R4104 D2 IN4148 BUSYDATARX 123456789 1011 CN1 HEADER 11 Pin1 3.3VPin2 MCLR2Pin3 GNDPin4 DIAGPin5 RF-BUSYPin6 RF-RXPin7 RF-TXPin8 RF-DATAPin9 RF-RTSPin10 RF-CTSPin11 RSSI SENSOR-WAITSENSOR_TXSENSOR_RXSENSOR_DATASENSOR_RTSSENSOR_CTS RB3RC6RC7RB2RB6RB7 R3910K R70R 3.3V VCC RADIO INTERFACE FOR 5 VOLT CPUDO NOT FIT R7RADIO INTERFACE FOR 3.3 VOLT CPUDO NOT FIT D2DO NOT FIT R40CHANGE R41 TO 0 ohm DO NOT FIT R39 1 2 3 4 B1BRIDGE1 IN 1 OUT 3 GND 2 U6LM2937ET-3.3 + C17470uF/16V + C8 10uF/16V VCC 3.3V 12V R11470 R16105 R12470 U2 TC54VN2102ECB C2104 VCC R10470 R15105 R9470 U1 TC54VN2102ECB C1104 3.3V R31473 R17105 R13 470 U3 TC54VN4002ECB C3104 12V R32393 Power supply dropout detect circuit 3.3v Control CPU reset circuit 3.3v Radio system reset circuit Low= Reset Low= Reset Low= Power fail 2468 1357 SV1 2468 1357 SV2 23 14 S1 DISCOVER 23 14 S2USER R26103 R47104 R24103 R25103 VCC VCC S1 S2 Q1BC847ALT 1 1 2 2 SP1 SPEAKER VCC VCC CTSBUSY MCLRRTSMCLR2 3.3V R48 104 R49104 R27103 VCC KF4 KF2 KF3 1 10 56 2 9 K1G5V1 D3GS1G G 1 D 2 S 3 Q2 2N7002 R21 472 R1153 R51294R R50104 R14470 R28103 12V RA0 RC2 DSW1DSW2 A 1 K 2 D4GS1G LED2 2 3 1 4 S3 1 2 3 4 B2BRIDGE1 D5GS1G LED3 2 3 1 4 S4 Vin 3 ADJ 1 OUT 2 U5LM317 C10 1uF/25V R43110 R29103 R42110 C14100pf C11103 C13100pf 12V R46294R R30103 C12103 C15100pf RA1 RA3 Switch is polarity sensitive Switch is polarity sensitive Norm. OpenNorm. Open Staru Staru Garage door closed detect switch Garage door opened detect switch B1&D4 Option B2&D5 Option DO NOT FIT R6 XAN584.PCB 2.0V 2.0V 4.0V 1 G:\live\Xanboo\XAN584\xan584.schdoc 12345678 CN2HEADER 8 12V DSW1DSW2ABCD ABCD C9104 + C16 10uF/16V + C18 470uF/16V (C17,C8) and (c16,c18)maybe select one assembled "Adding B1 and D4 removes switchpolarity wiring requirement andprevents failure if LED2 fails open" "Adding B2 and D5 removes switchpolarity wiring requirement andprevents failure if LED3 fails open" RADIO INTERFACE FOR 3.3V CPU brownorangebluegreenyellowwhiteredblack green&whiteblue&white S H E E T OF SIZE FILE B TITLE SUPERSEDESDRAWING NO. 1 2 3 4 ABCD ABCD 1 2 3 4 SEE SHEET 1 FOR NOTES AND APPROVALS PRINT DATE TIME 115 West 30th Street 6th FL., New York, NY 10001 (646) 674 - 3000 BOO THIS DOCUMENT AND THE DATA DISCLOSED HEREIN OR HEREWITH IS THE PROPERTY OF XANBOO AND IS NOT TO BE REPRODUCED, USED OR DISCLOSED IN WHOLE OR IN PART WITHOUT THE PERMISSION OF XANBOO. AL L PATENT, PROPRIETARY, DESIGN, USE, SALE, MANUFACTURING AND REPRODUCTION RIGHTS THERETO ARE RESERVED BY XANBOO. 12 XAN0408 Rev1.4-02 XAN0408_1_4 2004-01-14 10:07:24 CC1000 AGND 2 RF_IN 3 RF_OUT 4 AVDD 5 AGND 6 AGND 7 AVDD 9 L1 10 AVDD 1 DGND 20 DVDD 21 DGND 22 DIO 23 DCLK 24 PCLK 25 PDATA 26 PALE 27 RSSI/IF 28 L2 11 CHP_OUT 12 R_BIAS 13 AGND 14 AVDD 15 AGND 16 XOSC_Q2 17 XOSC_Q1 18 AGND 8 AGND 19 U1 CC1000 XL4 33nH, 5% +3.3V R131 82k +3.3V XX1 11.0592 Mhz C141 16pF C15116pF C15 1nF C2220pF C14 220pF C13 220pF C12 1nF C11 1nF C10 33nF XL268nH XL36.2nH XC5 8.2pF +3.3V XC3 15pF XC4 5.6pF L2BLM11A102S RSSI R1TBA C4TBA XL1 8.2nH XC122pF XC215pF LOW PASS FILTER NOT FITTED C3TBA 433MHz XAN0408_1_4 TKS2351CT-ND PALEPDATAPCLKDCLKDIO C131 4.7pF + C13.3uF C1733nF ANT S H E E T OF SIZE FILE B TITLE SUPERSEDESDRAWING NO. 1 2 3 4 ABCD ABCD 1 2 3 4 SEE SHEET 1 FOR NOTES AND APPROVALS PRINT DATE TIME 115 West 30th Street 6th FL., New York, NY 10001 (646) 674 - 3000 BOO THIS DOCUMENT AND THE DATA DISCLOSED HEREIN OR HEREWITH IS THE PROPERTY OF XANBOO AND IS NOT TO BE REPRODUCED, USED OR DISCLOSED IN WHOLE OR IN PART WITHOUT THE PERMISSION OF XANBOO. AL L PATENT, PROPRIETARY, DESIGN, USE, SALE, MANUFACTURING AND REPRODUCTION RIGHTS THERETO ARE RESERVED BY XANBOO. 22 XAN0408 Rev1.4-02 XAN0408_1_4 2004-01-14 10:06:51 MICROCONTROLLER C5 0.1uF Y1 4Mhz C6 33pF C7 33pF PIC_VCC RF_DATARF_BUSYRF_RXRF_TX R24.7K R4000 R31K LED1GREEN RF_RTSRF_CTS +3.3V MCLR2DIAG PIC_VCC RA2/AN2/Vref 1 RA3/AN3/CMP1 2 RA4/TOCKI/CMP2 3 RA5/MCLR/THV 4 Vss 5 RB0/INT 7 RB1/RX/DT 8 RB2/TX/CK 9 RB3/CCP1 10 RB4/PGM 11 RB5 12 RB6/T1OSO/T1CKI 13 RB7/T1OSI 14 VDD 15 RA6/OSC2/CLKOUT 17 RA7/OSC1/CLKIN 18 RA0/AN0 19 RA1/AN1 20 Vss 6 VDD 16 U2PIC16LF628 XAN0408_1_4 R5100k PIC_VCC D1 DIO5711WS MCLR2 VPP 1234567891011 P1CON11 RSSI DCLKPDATAPCLKPALEDIO RF_RXRF_TXDIAGRF_BUSYRF_DATARF_RTSRF_CTS

Test Report

FCC TEST REPORT Page 1 of 29 FCC ID : OU4XPC280 Applicant : Xanboo Inc 115 West 30 th Street, 6 th Floor New York , NY10001 Equipment Under Test (EUT) : Product description : Garage Door Control Model No. : XPC280 Standards : FCC 15 Subpart C Paragraph 15.231 Date of Test : March 14, 2007 Test Engineer : Tiger Su Reviewed By : PERPARED BY: Waltek Services (Shenzhen) Co., Ltd. 8C,West Tower, Aidi Building, No.5003 Binhe Rd, Futian District, Shenzhen518045, Guangdong, China. Tel: 86-755-83551033 Fax: 86-755-83552400 Xanboo Inc FCC ID:OU4XPC280 Page 2 of 29 2 Contents Page 1 COVER PAGE..........................................................................................................................................................1 2 CONTENTS ..............................................................................................................................................................2 3 TEST SUMMARY....................................................................................................................................................5 4 GENERAL INFORMATION..................................................................................................................................6 4.1 CLIENT INFORMATION............................................................................................................................................6 4.2 GENERAL DESCRIPTION OF E.U.T...........................................................................................................................6 4.3 DETAILS OF E.U.T. .................................................................................................................................................6 4.4 DESCRIPTION OF SUPPORT UNITS...........................................................................................................................6 4.5 STANDARDS APPLICABLE FOR TESTING..................................................................................................................6 4.6 TEST FACILITY........................................................................................................................................................7 4.7 TEST LOCATION......................................................................................................................................................7 5 EQUIPMENT USED DURING TEST ...................................................................................................................8 6 CONDUCTED EMISSION TEST ..........................................................................................................................9 6.1 TEST EQUIPMENT....................................................................................................................................................9 6.2 TEST PROCEDURE...................................................................................................................................................9 6.3 CONDUCTED TEST SETUP.....................................................................................................................................10 6.4 EUT OPERATING CONDITION...............................................................................................................................10 6.5 CONDUCTED EMISSION LIMITS.............................................................................................................................11 6.6 CONDUCTED EMISSION TEST DATA......................................................................................................................12 6.7 CONDUCTIED EMISSIONS TEST DATA...................................................................................................................13 7 RADIATION EMISSION TEST...........................................................................................................................14 7.1 TEST EQUIPMENT..................................................................................................................................................14 7.2 MEASUREMENT UNCERTAINTY.............................................................................................................................14 7.3 TEST PROCEDURE.................................................................................................................................................14 7.4 RADIATED TEST SETUP.........................................................................................................................................15 7.5 SPECTRUM ANALYZER SETUP...............................................................................................................................15 7.6 CORRECTED AMPLITUDE & MARGIN CALCULATION............................................................................................16 7.7 SUMMARY OF TEST RESULTS................................................................................................................................16 7.8 EUT OPERATING CONDITION...............................................................................................................................17 7.9 RADIATED EMISSIONS LIMIT.................................................................................................................................17 7.10 RADIATED EMISSIONS TEST RESULT................................................................................................................18 7.10.1 Radiated Emission Data.............................................................................................................................18 8 PERIODIC OPERATION .....................................................................................................................................20 9 BAND EDGE ..........................................................................................................................................................21 9.1 TEST PRO…

Text truncated - open the document above for the full version.

Test Setup Photos

Conduction Emission Test View Radiation Emission Test View For 30MHz-1000MHz Radiation Emission Test View For 1GHz-5GHz

Contact Information

Applicant

Kent E Britain(Sr. RF Engineer)
[email protected]972-660-2810Fax: 972-606-1909

Test Firm

Shenzhen Academy of Metrology & Quality InspectionPeter Lin
[email protected]8675526941599Fax: 8675526941545

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231418 MHz - 418 MHz-

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