
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
AUTOMATIC TRANSMISSION MULTI-CHANNEL TWO-WAY LCD REMOTE STARTER SYSTEM AS-2510 TW User Guide Transmitter Part Number and Module Serial Number.......................................................2 Introduction.................................................2 What is βeSHβ Technology?........................2 Basic Remote Operation............................2 LCD Remote Functions..............................3 Basic Vehicle Operation.............................3 Alarm Clock................................................4 Time Adjust Mode.......................................4 Countdown Timer.......................................4 Parking Countdown....................................4 Melody Selection........................................4 Vibration Mode............................................4 Power Saving Mode...................................4 Remote Control Finder...............................4 LCD Remote Operation..............................4 Basic Vehicle Operations.......................5 Transmitter Mode Selection...................5 Alarm and Countdown Adjustments......5 Cold Weather Mode...............................5 Home Valet TM .........................................6 LCD Transmitter Operation and Confirmations..............................................7 Timing and Alarm Adjustment................8 Transmitter Finder.................................8 Remote-starting Your Vehicle.....................8 Vehicle Presets......................................8 Driving Off..............................................8 Using the AS-2510 TW: Advanced Features9 Idle Mode...............................................9 Turbo Mode...........................................9 βHome Valetβ β’ Mode...........................9 Remote Valet Mode...............................9 Valet Mode..........................................10 Panic Mode (this option must be programmed).......................................10 Quick Lockout TM ..................................10 Remote Door Locks Option.................10 Cold Weather Mode.............................11 Priority Door Access............................11 The user-selectable options are as follows:.................................................11 Remote Door Locks Option.................11 Safe Start.............................................11 Starter Kill Option................................11 Passive or Active Arming....................11 Ignition-controlled Door Locks Option.12 Ignition Relock.....................................12 Secure Lock Option.............................12 Remote Trunk Release Option............12 Engine Run Time.................................12 Multi-car Operation..............................12 Diagnostics β Parking Lights Flash Rate (Normal Operation)...................................12 H.1.50.S.2.00 Rev: 1.05 October 16, 2003 β Fb CA Manufactured in Canada by Autostart P.2 User Guide AS-2510 TW FCC USER NOTICE (U.S.A.): 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. 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. Transmitter Part Number and Module Serial Number The box below contains important information concerning your Transmitter and your Module. We have entered your Transmitter Part Number. Should you need to order a new Transmitter, you will need to provide Autostart with the Part Number written below. Transmitter Part Number: CAR : AS5000TW-FM IVU REMOTE : AS5000TW-FM HHU Transmitter (companion) Part Number: ASTR-2144 The installer is to write in the following box the Moduleβs serial number. Module Serial Number: Introduction The AS-2510 TW is a state-of-the-art remote car starter system with command confirmation. It re- presents a major breakthrough in vehicle convenience technology and remote starter systems. What is βeSHβ Technology? "eSH" technology uses Manchester decoding along with advanced custom data filters to help reduce data-bit transfer errors. This filtering mechanism minimizes dropped commands by the transceiver and develops more reliable range. By using narrow band filtering and unique software driven noise filters, the radio set is able to achieve much better input sensitivity resulting in up to 2000 feet of operating range. Basic Remote Operation Your AS-2510 TW is equipped with a multi-channel 5-button LCD remote transmitter. It can operate two independent Autostart-equipped vehicles (see Multi-car Operation for 2 nd car functions). The functions of the transmitter are as follows: Note: Pressing the LOCK and UNLOCK buttons simultaneously will activate the AUX 2 output. LCD Remote Functions The Transmitter offers several command-confirmation and timer features. This section explains some of the key functions available on the Remote Control. Next section gives a summary of the button combinations used to access the functions (see LCD Remote Operation Tables). Note: If you wish to exit a function while still in the process of accessing it, simply stop and wait for at least 10 seconds: the Remote Control will return to its normal state. Basic Vehicle Operation The vehicle can be remote-started and stopped using the START/STOP () button. The TRUNK () button will open the Trunk (if this feature is installed on the vehicle). The LOCK () and UNLOCK () buttons will lock and unlock the Doors of the vehicle (if the Remote Door Lock feature is installed on the vehicle) and arm or disarm the Starter Kill (if installed). The FUNCTION AS-2510 TW User Guide P.3 () button is used to access all advanced functions of the Remote Control. (Refer to the LCD Operation and Confirmations tables.β¦
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47.02444MHz Signal In Details of UAA3220 Receiver NAHCLCD4 UAA3220 Receiver 47.02444MHz Osc. Antenna RF Switch LNA Receive Date Control Circuit In the Car TDK5110 Transmitter 13.560MHz*32 Osc. Amplifier &Maching circuit Transmit Data OSC. X 3 X 3 X AMP Data Slicer Demodulator Data Out Crystal
Autostart 5764 Pare Montreal, Quebec H4P 2M2 Tel: (514)738-9750 Fax: (514)738-4365 September 25, 2003 Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID:NAHCLCD4 Pursuant to sections 0.457 and 0.459 of the Commission's Rules, we herby request confidential treatment accompanying this application as outlined below: - AS5000TW_FM_IVU_1.pdf (Schematic) 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,
AS5000TW-FM-HHU-1 07/29/03 ISSUE 1.00 TECHNICAL DESCRIPTION, AS5000TW-FM-HHU-1 SYSTEM DESCRIPTION, AS5000TW-FM-HHU-1 The RFM_1 board is used in the Remote end of a half duplex car starter/alarm system and operates at 433.920MHz. The receiver is activated by the Microprocessor after transmission or can be used in a polling mode to monitor alarms sent by the Car module. The AS5000TW-FM-IVU-1 board is inter-connected to the Microprocessor board by 2 Male/Female board-to-board connectors. The receiver is directly powered by a 1.5 Volt AAA battery as well as the 3.0 Volt output from the step-up Switching Converter. The transmitter is powered by the 3.0 Volt step-up Switching Converter from the SB02 micro board. System timing and control is done by 2 microprocessors, 1 in the Car, and 1 in the Remote. CIRCUIT DESCRIPTION Receiver Section The design uses a Wide-Band FM single conversion super-het receiver with an Image filter and LNA The signal enters via J1 and LPF L3, C10 to a SPDT MMIC RF switch (S1) and is forwarded to Q2 and Q3, a matched cascade transistor amplifier.(1.5V supply) signal is then fowarded to FLT1, a SAW Band Pass Filter. The output from the filter is matched to U2, a complete MMIC Receiver.(3.0V supply) This IC contains a Colpitts 3 rd overtone oscillator, a balanced multiplier tripler, IF amplifier and demodulator. The 433.920MHz signal is down converted to a 10.7MHz IF. The 10.7MHz IF signal is filtered by a ceramic filter (FLT1, 180KHz BW) and then amplified and demodulated by an FM discriminator L9, C26, C28. Baseband filtering and slicing time constants are provided by C16, 17, and C21. The Baseband signal is then fowarded to J3 pin 3. The receiver is activated by a logic LOW on J3 pin1, which turns on Q4, (to LNA)and U2. Q1 provides inverted logic for S1. Transmitter Section The transmitter IC, U1 is a complete synthesized transmitter. The 13.560MHz oscillator is WBFM modulated via U1 pin10. (PIN diode switch) RX, CY provise a 2 millisec. Delay to provide time for the synthesizer to lock befor transmission. The output of U1 is matched to 50 ohms by C6, C7,C8, and L2. L1 provides 3.0 V to U1 output circuitry. J2 pin 4 is high when in transmit. AS5000TW-FM-HHU-1 07/29/03 ISSUE 1.00 Low Voltage Alarm The alarm circuit uses Q5, a 1.0 volt detector. The output is open drain and is HIGH when the input voltage is above 1.0 volt.(Micro is programmed with an acitve high input) The logic output is on J3 pin 2. Vibrator The vibrator is powered by 1.5 volts through PNP switch, Q6. A LOW on J3 pin 4 will activate the vibrator. INTERNAL CIRCUIT VOLTAGES A reference schematic is provided for in circuit voltages. These voltages are provided to help trouble-shoot defective circuit boards. The values may vary Β±10%. AS5000TW-FM-HHU-1 TRANSCEIVER SPECIFICATION TRANSCEIVER BOARD RECEIVE SECTION Design Requirement Actual Receiver Frequency 433.920 MHz β Receiver Sensitivity -106 dBm minTyp. β107 dBm 6dB IF Bandwidth 180 KHz min Image Rejection -40dBc-45dBc LO feedthrough at Antenna Input -60 dBm maxTyp. -70 dBm Receive Data Rate 1.56Kbit/sec max β Data Format (Rx) Manchester β Pulse Distortion <5%<5% Frequency Deviation Acceptance Β± 25KHz Nom. β Rx Data Out (3.0V to Micro) 0 to 2.95 V min. β AS5000TW-FM-HHU-1 07/29/03 ISSUE 1.00 Rec. Offset Frequency Acceptance for 3 dB degrad. of Sensitivity Β± 32KHz β Rx. Input Voltage #1 (neg. Gnd.) +1.5V Nom., +1.0V Min. β LNA Current @ 1.5 V 2.2mA β Rx. Input Voltage #2 (neg. Gnd.) +3.0V Nom β Current Consumption (Rx @ 3.0V) 5.8 mA max. β P1dB(ref.to input and measured @10.7MHz IF filter output) -25 dBm β Temperature range -20Β°C to +60Β°C β Humidity 100% conden. @ 0Β°C β TRANSMIT SECTION Transmitter Frequency 433.920 MHz β Fre Tol. @ 25C +/- 25KHz Radiated Output Power 12,000uV/Meter max. β Transmitter Har. Spurious Output 1200uV/Meter max. β Data Rate Transmit66/33% D. Cycle 1Kbit/sec max β Tx Modulator Input 0 to +3.0 volts Square Wave β Frequency Deviation Β±25 KHz Typ. 20Min., 35 Max. Tx. Input Voltage +3.0V Β±0.1V β Current Consumption (Tx) 15.5 mA max @ 3.0V β Frequency tolerance Β±32KHz Max Over Temp. β Temperature range -20Β°C to +60Β°C β Humidity 100% conden. @ 0Β°C β CONNECTIONS to MICRO BOARD (0.050 Pin Spacing) J1 ANT 1 ANT, Solder Connection to Helical Spring J2 TX (Female) 1 3.0 Volts 2 Tx Data 3 Ground AS5000TW-FM-HHU-1 07/29/03 ISSUE 1.00 4 Tx ON (High) J3 RX (Female) 1 Rx Enable (LOW is ON) 2 Low voltage alarm (HI = No Alm) 3 Rx Data 4 Vibrator Enable ((LOW is ON) 5 +1.5 Volt Battery
APPLICANT: AUTOSTART FCC ID: NAHCLCD4 REPORT #: A\AUTONAH\1384AUT3\1384AUT3TestReport.doc TABLE OF CONTENTS LIST TABLE OF CONTENTS APPLICANT: AUTOSTART FCC ID: NAHCLCD4 TEST REPORT CONTAINING: PAGE 1.............TEST EQUIPMENT LIST PAGE 2.............TEST PROCEDURE PAGE 3-5...........RADIATION INTERFERENCE TEST DATA PAGE 6.............CALCULATION OF DUTY CYCLE PAGE 7.............DUTY CYCLE PLOT - LONG PULSES PAGE 8.............DUTY CYCLE PLOT - MEDIUM PULSES PAGE 9.............DUTY CYCLE PLOT β SHORT PULSES PAGE 10............DUTY CYCLE PLOT β COMPLETE PULSE TRAIN PAGE 11............DUTY CYCLE PLOT β 100 msec SAMPLE PAGE 12............OCCUPIED BANDWIDTH PAGE 13............OCCUPIED BANDWIDTH PLOT EXHIBIT ATTACHMENTS: EXHIBIT 1...........CONFIDENTIALITY LETTER EXHIBIT 2...........BLOCK DIAGRAM EXHIBIT 3...........SCHEMATIC EXHIBIT 4...........INSTRUCTION MANUAL EXHIBIT 5...........LABEL SAMPLE AND LOCATION EXHIBIT 6...........EXTERNAL PHOTOGRAPHS EXHIBIT 7...........INTERNAL PHOTOGRAPHS EXHIBIT 8...........CIRCUIT DESCRIPTION EXHIBIT 9...........TEST SET UP PHOTOGRAPH APPLICANT: AUTOSTART FCC ID: NAHCLCD4 REPORT #: A\AUTONAH\1384AUT3\1384AUT3TestReport.doc Page 1 of 13 EMC Equipment List Device Manufacturer Model Serial Number Cal/Char Date Due Date 3/10-Meter OATS TEI N/A N/A Listed 3/26/01 3/26/04 3-Meter OATS TEI N/A N/A Listed 1/13/03 1/13/06 Biconnical Antenna Eaton 94455-1 1057 CAL 3/18/03 3/18/05 Biconnical Antenna Eaton 94455-1 1096 CAL 10/1/01 10/1/03 Biconnical Antenna Electro- Metrics BIA-25 1171 CAL 4/26/01 4/26/03 Blue Tower Quasi-Peak Adapter HP 85650A 2811A01279 CAL 4/15/03 4/15/05 Blue Tower RF Preselector HP 85685A 2926A00983 CAL 4/15/03 4/15/05 Blue Tower Spectrum Analyzer HP 8568B 2928A04729 2848A18049 CAL 4/15/03 4/15/05 Double-Ridged Horn Antenna Electro- Metrics RGA-180 2319 CAL 2/17/03 2/17/05 LISN Electro- Metrics ANS-25/2 2604 CAL 10/9/01 10/9/03 LISN Electro- Metrics EM-7820 2682 CAL 3/12/03 3/12/05 Log-Periodic Antenna Eaton 96005 1243 CAL 5/8/03 5/8/05 APPLICANT: AUTOSTART FCC ID: NAHCLCD4 REPORT #: A\AUTONAH\1384AUT3\1384AUT3TestReport.doc Page 2 of 13 TEST PROCEDURE GENERAL: This report shall NOT be reproduced except in full without the written approval of TIMCO ENGINEERING, INC. RADIATION INTERFERENCE: The test procedure used was ANSI STANDARD C63.4-1992 using a HEWLETT PACKARD spectrum analyzer with a pre-selector. The bandwidth of the spectrum analyzer was 100 kHz with an appropriate sweep speed. The analyzer was calibrated in dB above a microvolt at the output of the antenna. The resolution bandwidth was 100kHz and the video bandwidth was 300kHz. The ambient temperature of the UUT was 98.3ΒΊF with a humidity of 40%. FORMULA OF CONVERSION FACTORS: The Field Strength at 3m was established by adding the meter reading of the spectrum analyzer (which is set to read in units of dBuV) to the antenna correction factor supplied by the antenna manufacturer. The antenna correction factors are stated in terms of dB. The gain of the Pre-selector was accounted for in the Spectrum Analyzer Meter Reading. Example: Freq (MHz) METER READING + ACF = FS 33 20 dBuV + 10.36 dB = 30.36 dBuV/m @ 3m ANSI STANDARD C63.4-1992 10.1.7 MEASUREMENT PROCEDURES: The UUT was placed on a table 80 cm high and with dimensions of 1m by 1.5m. The UUT was placed in the center of the table. The table used for radiated measurements is capable of continuous rotation. The spectrum was scanned from 30 MHz to 10th harmonic of the fundamental. Peak readings were taken in three (3) orthogonal planes and the highest readings were converted to average readings based on the duration of "ON" time. When an emission was found, the table was rotated to produce the maximum signal strength. At this point, the antenna was raised and lowered from 1m to 4m. The antenna was placed in both the horizontal and vertical planes. Measurements were made by TIMCO ENGINEERING INC. at the registered open field test site located at 849 N.W. State Road 45, Newberry, Fl 32669. APPLICANT: AUTOSTART FCC ID: NAHCLCD4 REPORT #: A\AUTONAH\1384AUT3\1384AUT3TestReport.doc Page 3 of 13 APPLICANT: AUTOSTART FCC ID: NAHCLCD4 NAME OF TEST: RADIATION INTERFERENCE RULES PART NO.: 15.231 REQUIREMENTS: Fundamental Field Strength Field Strength of Frequency of Fundamental Harmonics and Spurious MHz dBuV Emissions (dBuV/m @ 3m) 40.66 to 40.70 67.04 47.04 70 to 130 61.94 41.94 130 to 174 61.94 to 71.48 41.94 to 51.48 174 to 260 71.48 51.48 260 to 470 71.48 to 81.94 51.48 to 61.94 470 and above 81.94 61.94 THE LIMIT FOR AVERAGE FIELD STRENGTH dBuV/m FOR THE FUNDAMENTAL FREQUENCY = 80.82 dBuV/m. NO FUNDAMENTAL IS ALLOWED IN THE RESTRICTED BANDS. THE LIMIT FOR AVERAGE FIELD STRENGTH dBuV/m FOR THE HARMONICS AND SPURIOUS FREQUENCIES = 60.82 dBuV/m. SPURIOUS IN THE RESTRICTED BANDS MUST BE LESS THAN 54dBuV/m OR 15.209. TEST DATA (PHASE 1): Emission Frequency MHz Meter Reading dBuV Ant. Polarity Coax Loss dB Correction Factor dB Duty Cycle Factor dB Field Strength dBuV/m Margin dB 433.94 70.4 H 2.90 17.00 12.29 78.01 2.81 433.94 72.7 V 2.90 16.42 12.29 79.73 1.09 867.88 29.3 H 4.14 22.86 12.29 44.01 16.82 867.88 30.1 V 4.14 22.14 12.29 44.09 16.74 1,301.85 ** 24.2 H 1.35 26.23 12.29 39.49 14.51 1,301.85 ** 28.5 V 1.35 26.23 12.29 43.79 10.21 1,735.78 25.8 H 1.57 27.70 12.29 42.78 18.05 1,735.78 28.8 V 1.57 27.75 12.29 45.83 15.00 2,169.70 30.3 H 1.77 28.87 12.29 48.65 12.18 2,169.70 32.2 V 1.77 28.94 12.29 50.62 10.21 2,603.61 33.5 H 1.94 29.63 12.29 52.78 8.04 2,603.61 37.8 V 1.94 29.63 12.29 57.08 3.74 3,037.62 24.7 H 2.11 30.58 12.29 45.10 15.72 3,037.62 28.4 V 2.11 30.58 12.29 48.80 12.02 3,471.58 24.8 V 2.24 31.44 12.29 46.19 14.63 3,471.58 24.8 H 2.24 31.54 12.29 46.29 14.53 3,905.52 ** 9.8 H 2.37 32.82 12.29 32.70 21.30 3,905.52 ** 10.7 V 2.37 32.64 12.29 33.42 20.58 4,339.40 ** 14.7 H 2.50 33.10 12.29 38.01 15.99 4,339.40 ** 17.0 V 2.50 32.97 12.29 40.18 13.82 APPLICANT: AUTOSTART FCC ID: NAHCLCD4 REPORT #: A\AUTONAH\1384AUT3\1384AUT3TestReport.β¦
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 433 MHz - 434 MHz | - |

4 BUTTON OOK REMOTE
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
DECURITY TRANSMITTER
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
SECURITY RECEIVER
Equipment Class
CYY - Communications Receiver used w/Pt 15 Transmitter
SECURITY TRANSMITTER
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
REMOTE CONTROL TRANSMITTER
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter