AU621537B2 - Anti-theft vehicle system - Google Patents

Anti-theft vehicle system Download PDF

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AU621537B2
AU621537B2 AU13448/88A AU1344888A AU621537B2 AU 621537 B2 AU621537 B2 AU 621537B2 AU 13448/88 A AU13448/88 A AU 13448/88A AU 1344888 A AU1344888 A AU 1344888A AU 621537 B2 AU621537 B2 AU 621537B2
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AU
Australia
Prior art keywords
ignition
vehicle
processor
power
line
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AU13448/88A
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AU1344888A (en
Inventor
Michael A. Garretto
Warren A.M. Howitt
Edward Vanda
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Fail Proof Anti Theft System Pty Ltd
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Fail Proof Anti Theft System Pty Ltd
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Description

AU-AI-13448/88 PCT WORLD INTELLECTUAL PROPERTY ORGANIZATION P T W International Bureau INTERNATIONAL APPLICATI P ISHD JE E P ENT COOPERATION TREATY (PCT) (51) International Patent Classification 4: (11) International Publication Number: WO 88/ 06110 25/04 A l (43) International Publication Date: 25 August 1988 (25.08.88) (21) International Application Number: PCT/AU8S/00030 (74) Agent: CLEMENT HACK CO.; 601 St. Kilda Road, Melbourne, VIC 3001 (AU).
(22) International Filing Date: 3 February 1988 (03.02.88) (81) Designated States: AT (European patent), AU, BE (Eu- (31) Priority Application Numbers: PI 0467 ropean patent), BR, CH (European patent), DE (Eu- PI 5365 ropean patent), FR (European patent), GB (European patent), IT (European patent), LU (European (32) Priority Dates: 20 February 1987 (20.02.87) patent), NL (European patent), SE (European pal November 1987 (11.11.87) tent), US.
(33) Priority Country: AU Published With international search report.
(71) Applicant (for all designated States except US): FAIL PROOF ANTI THEFT SYSTEM PTY. LTD, [AU/ AU]; 9 Cobden Street, North Melbourne, VIC 3051 A.0. 13 OCT i988
(AU).
(72) Inventors; and (75) Inventors/Applicants (for US only) GARRETTO, Mi- AUSTRALIAN chael, A. [AU/AU]; 9 Cobden Street, North Melbourne, VIC 3051 HOWITT, Warren, M. 14 SEP 1988 [AU/AU]; 9 Lochbar Court, Ivanhoe, VIC 3079 (AU).
VANDA, Edward [AU/AU]; Suite 8, Midway Arcade, PATENT OFFICE 147 Whitehorse Road, Ringwood, VIC 3134 (AU).
(54) Title: ANTI-THEFT VEHICLE SYSTEM AAi IZv (57) Abstract An anti-theft vehicle system which comprises a relay (RI) which shuts off power to an engine coil fuel pump (16) or fuel flow valve (52) to prevent the engine from starting until the reset device in the form of a switch (S or a key- 'rd (150) is activated. The relay (RI) can be controlled by a processor (100) which Is coupled to the keyboard (150) so when a code is keyed into the keyboard (150) the processor outputs a signal to the relay to cause the relay to supply po r to the engine coil fuel pump (16) or flow valve
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WO 88/06110 PCT/AU88/00030 1 ANTI-THEFT VEHICLE SYSTEM This invention relates to an anti-theft vehicle system.
Many methods are used in order to prevent the theft of vehicles. The most common method is to utilize an alarm which sounds when a person attempts to gain unauthorized entry into a vehicle. The major problem with most alarm systems, apart from their complexity and their expense, is that they require actuation when an owner leaves his or her vehicle.
The object of this invention is provide a simple and inexpensive system for preventing the theft of a vehicle and which is automatically actuated when the vehicle is switched off.
2 The invention provides an anti-theft system for a vehicle having an engine and an ignition switch; comprising an actuating means for location in an ignition or coil line in the vehicle, a normally open switch means for location in a power supply line for supplying power to said actuating means, said coil line or ignition line having at least two branches on the side of the actuating means opposite said ignition switch, each branch being for connection to a component of the engine to supply power to the component of the engine, an isolating means for location in each branch for preventing power flow in a direction from the component to said actuating means but allowing power flow from said actuating means to said Si 1 ,ii component, said actuating means being normally i I 15 non-conductiny to disrupt power supply to the said components; whereupon turning on of the ignition switch and actuation of said switch means to close the switch means power is supplied to said actuating means to cause the actuating means to conduct to supply power to said engine components, notwithstanding de-activation of the switch means and opening of, the switch means; wherein upon turning off the ignition switch, ignition power supply on the ignition or coil line is 25 disrupted to cause said actuating means to stop conducting SJ tohereby open said ignition line such that said vehicle can only be restarted when said switch means and said ignition switch are both activated and, wherein said isolating means prevents power from being supplied to one I' 30 of said engine components in the event of hot wiring another of said engine components to prevent said vehicle engine from starting.
Since the invention incorporates a means which disrupts the power supply to the engine the vehicle cannot started until action is taken to cause the means to RA4 S3 restore power to the engine. Since power to the engine can be easily disrupted the system can be built into a vehicle and is not expensive to produce or complicated to manufacture. Further since power supply is disrupted when the vehicle is switched off it is not necessary to remember to switch a device on or off in order for the a ti-theft system to be actuated.
T.hc invention also provides an anti theft a/ ignition system for a vehicle, said system comprising a keyboard for receiving a code, processor means coupl to sai1 keyboard for receiving signals indicative o said code from said keyboard, switching means coupled t said processor means for receiving an output f m said processor means when a predetermined code is inputed in to the 15 keyboard, and for allowing power a or fuel to be supplied to a vehicle engine to enable t, vehicle engine to be started and the vehicle to bdriven, said processor means outputting said output t the switching means when the vehicle ignition is s -tched on for a predetermined period after the vehicle ngine stops, without the need to input said code into said keyboard and wherein said keyboard can receive a rther co'de to cause said processor means to output aid output signal when the vehicle ignition is swi ed on until said further code is cancelled by an i put into said keyboard.
S WO 88/06110 PCT/AU88/00030 -4.
-predtetrmined period after the vehicle engine steps, the need to input said code into said input means, wherein said input means can receive a further c o cause said processor means to output sai -put signal, without the need to input the first ioned code into the input means, when the vehic gnition is switched on until said further code is elcld by an input into said input means.
i A preferred embodiment of the invention will be described with reference to the accompanying drawings in which; Figure 1 shows a first embodiment of the invention; and Figures 2 and 3 show a second embodiment of the invention.
With reference to the accompanying drawing, an anti-theft system 10 is shown which comprises an ignition or coil line 12 which extends from an ignition switch I to an ignition coil 14 and a fuel pump 16 of a vehicle engine. The other sides of the coil 14 and pump 16 are connected to ground. The line 12 is provided with a terminal 20 and a terminal 30 which are bridged by a relay RI. Preferably the relay is a self locking mini signal relay made by Hella Australia Pty. Ltd. (Part No. 3082). The relay R1 is powered by line 32 which is connected to the relay Rl and to the ignition switch I. The line 32 includes a reset switch Sl. A bypass circuit line 34 is provided between the ignition switch I and the ignition coil 14 and fuel pump 16. The line 34 effectively short-circuits the relay Rl and is provided with a toggle switch S2 which is normally open.
f 30 When the car is in normal use the terminal 20 and are bridged by contact element 38 of the relay Rl. Power is therefore supplied on the ignition or coil line 12 to the ignition coil 14 and fuel pump 16 as is usual. When the car is parked and the ignition is turned off the supply of power on line 12 is disrupted and therefore the supply of power to the relay R1 is disrupted. The disruption of power supply to the relay R1 causes the relay Rl to open to remove the contact i~ i. Ir~-- W 0 88/06110 PCT/AU88/00030 element 38 from terminals 20 and 30 to thereby open the ignition line 12. Since the relay R1 is open if someone does gain access to the vehicle and switches the ignition on, power will not be supplied to the ignition coil 14 or fuel pump 16 since the terminals 20 and 30 are not bridged by the contact element 38.
The reset switch S1 is adapted to be hi'den inside the vehicle where it can be readily accessed by the owner of the vehicle and reset to close the switch Sl. In order to start the vehicle the ignition is turned on by an ignition key and the hidden reset switch S1 is depressed. When the switch Sl is depressed power is supplied to the relay R1 or line 32 and therefore the relay R1 is closed to bridge the terminals and 30 to allow power to be supplied to the ignition coil 14 and fuel pump 16 on line 12. Since the relay R1 is self locking the contacts 20 and 30 remain bridged when the reset switch is released and remain bridged until power on line 12 is disrupted by switching off the ignition. The reset switch Sl1 can be hidden under the carpet of the vehicle where it can be actuated by the foot of the owner when he starts the car, or in the dashboard of the car, or in the roof of the vehicle.
Indeed, the reset switch S1 can be hidden anywhere in the vehicle where it is most conveniently situated in a position where it can be readily reached by the driver in his normal seated position. The object of the reset switch Sl is to provide a hidden switch which only the driver knows of and which only the driver knows must be reset before the vehicle can be started.
The by-pass line 34 is provided to enable the car to be left in a car park or in other environments where it must be driven by another person without the need to tell the other person of the reset switch SI. In order to drive the car in such environments, a hidden toggle switch S2 which is normally open is closed to complete the circuit from the ignition switch I to the ignition coil 14 and fuel purnp 16. Thus, when the ignition switch is closed power is supplied from the ignition switch via the by-pass circuit 34 to the ignition
A,
~~111111 WO 88/06110 PCT/AU88/00030 6 coil 14 and fuel pump 16. This will enable car park attendants and other authorized people to drive the vehicle without the need to inform those people of the position or purpose of the reset switch Sl or toggle switch S2.
Preferably a diode 42 s located between the contact and the power side of the relay R1 in order to protect the system in the event that a person attempts to "hot-wire" the motor vehicle. Furthermore a second diode 43 is connected between the ignition switch I and the coil 14 close to the- .eoi~- to prevent power being supplied to the fuel pump 16 if an attempt is made to "hot wire" the engine.
In vehicles in which an electric fuel pump is not used a flow switch 50 may be provided in fuel line 52. The flow switch is actuated by a solenoid 54 coupled to line 56 which in turn is coupled to the ignition or coil line 12.
When the relay Rl1 is open power is disrupted to solenoid 54 and the flow switch 50 closes to shut off flow of fuel through the fuel line. Diodes 43a and 43b are also connected e e the pu mp 16 a-nd -ih- 5 so to prevent hot wiring of those components.
In yet a further embodiment two reset switches could be used with one of the switches providing a delay of, for example 10 to 15 seconds, to depress the second switch and start the car, In another embodiment (not shown) switch Sl1 could be coupled to an infra-red actuator and the owner of the vehicle could have an infra-red emitter, which he or she keeps with his or her keys, to control the actuator to cause the actuator to close switch Sl for a predetermined period of time to enable the engine to be started.
A second and more preferred embodiment of the inventi- is described with reference to Figures 2 and 3. "n this =mbodiment the ignition line 12 is coupled to a single chip processor 100 on line 102 which includes a diode 104 and a transistor 106. The processor 100 is an integrated circuit 80C39. The ignition line 12 is coupled to the relay Rl which is shown schematically in Figure 2 via a transistor 108. The WO 88/06110 PCT/AU88/00030 -7transistor 108 is connected via resistor 110 to a second transistor 112 which in turn is coupled to the processor 100 on line 114. Power is supplied to the processor 100 from a vehicle battery via a diode 126, line 128, voltage regulator 130 which reduces the voltage from the vehicle battery to volts and applies that voltage to the processor on line 132.
A capacitor 205 is coupled to line 128 for momentarily stabilizing the power supply to the processor 100 in the event that the voltage supplied by the vehicle battery is disrupted or reduces below an acceptable level. The diode 126 protects the voltage regulator in the event of reverse connection of the vehicles battery. Power is also supplied to the processor 100 on line 116 via diode 118, resistor 120 and transistors 121 and 122. The transistors 121 and 122 are also coupled to line 132 by line 133 and resistor 135. A capacitor 134 is also coupled to line 132. The transistor 122 is connected to the processor 100 by a power off line 124. The processor 100 is crupled to an IC chip 140 (Figure 3) which is an integrated circ: it No. 4017 primarily adapted to scan a keyboard 150.
The circuit 140 is coupled to the processor 100 via line 142 which comprises a signal line, /a 5 volt supply line and a earthed shield line.
The keyboard 150 is coupled to the circuit 140 by lines 152, 154, 156, 158, 160, 162 and 164. The lines 152 to 158 are provided with resistor 154 and a capacitor 156.
The lines 160 to 164 are connected to an integrated circuit 170 which comprises four gates 172. Only three of the gates 172 are used in this embodiment of the invention and the fourth gate therefore has its input and output connected to ground. The gates 172 are connected to the keyboard 150 by lines 174 and resistors 176. The output from each of the gates 172 is combined into line 180 which is connected to a base of transistor 184 which is also connected to ground via resistor 186. The emitter of the transistor 184 is connected to ground and the collector is connected to line 142 via line 186 and resistor 188 as well as to a five volt supply via resistor 190.
i i~lX WO 88/06110 PCT/AU88/00030 8 Power is supplied to the circuit 140 via a five volt supply as schematically shown at 192. The circuit 140 also has a buzzer 153 and a light emitting diode 155 connected to two of its parts via lines 157 and 159 and gates 161, 165, 167, and 163, 169, 171 respectively. These gates form a double inverter. Line 157 also has a pulse lengthening circuit formed of diode 181, capacitor 183 and resistor 185 for lengthening the pulse outputted from the circuit 140 so that when a line 157 goes high the buzzer sounds continuously.
A clock circuit 175 allows processor 100 to generate a clock for internal operation and capacitors 177 are provided to prevent spurious signals. A reset circuit 179 is provided to start the processor when power is initially supplied.
The reset circuit 179 is also provided with a "watch dog timer" 250 which comprises two retriggerable monostable circuits 252 and 254. The circuit 252 is coupled to circuit 100 and is kept in the triggered state by an output from the circuit 100. If the output from the circuit 100 stops the circuit 252 goes to its quiescent state thereby triggering circuit 254 which resets the circuit 100. Thus the circuit 100 can be reset by the circuit 179 if the 5 volt supply drops or if the output from the circuit 100 which is supplied to circuit 252 goes low indicating a fault in the operation of the circuit 100.
An EPROM 275 is coupled to circuit 100 via a 8 bit latch 280. The latch 280 is time controlled by a signal on the ADDRES' LATCH ENABLE (ALE signal) output of the circuit 100 to cause information on the bus line, 290 to be received by the EPROM 275 and for data to be supplied to the circuit 100 via the bus 290. The EPROM 275 and latch 280 are interconnected by address lines 282 and the EPROM is connected to the circuit 100 by 4 address lines 284. (The circuit 100' in Figure 2 is the circuit 100 which has been drawn adjacent to the EPROM 275 to show the interconnection for the ease of illustration).
WO 88/06110 PCT/AU88/00030 9 A mode memory circuit 220 which is a nonvolatile RAM circuit x2444 made by XlCOR is coupled to circuit 100 to store the information contained in the circuit 100 in the event of power loss. If power is lost line 116 goes low which stops transistor 121 from conducting to enable transistor 122 to conduct so that a low signal appears on line 124. This signal is received by the circuit 100 interrupt port to shut down the circuit 100. In the event of power disruption, capacitor 205 maintains circuit 100 operating for a small amount of time to ensure that the information contained in the circuit 100 i.
transferred to the -irct-it 220.
The embodiment of Figure 2 and 3 operates as follows. The processor 100 is programmed to output a signal on line 142 to cause that line to go low. This turns off transistor 202. Line 142 is maintained low for a sufficient period of time to enable capacitor 204 to charge to thereby reset the circuit 140. The processor 1CO then outputs a signal on line 142 to cause that line to go high turning on transistor 202, taking circuit 140 out of the reset mode so that it can respond to its clock input on line 142. The circuit 140 then causes lines 152, 154a, 156a, 160, 162 and 164 to go low and high in a predeterminze sequence so that the keyboard 150 can be read. The circuit 140 reads the keyboard 150 by causing one of the lines 152 to go high for sufficient amount of time to charge its respective capacitor 156 and then quickly causes the other lines to go high for a short period of time sufficient to prevent charging of the respective other capacitors 156. The lines 160 to 164 are also caused to go high in turn so that if one of the keys in the row coupled to the capacitor which has charged is depressed the capacitor discharges through that key and through the gate 172 in the same column of keys to cause line 180 to go high. Once the circuit 140 has scanned through each of the lines 1.52 to 164 the line 142 is again caused to go low for sufficient time to turn transistor 202 off so that capacitor 204 is charged to reset the circuit 140. The scan is then repeated with another one of the lines 152 to 158 being held high for a sufficient I WO 88/06110 PCT/AU88/00030 10 amount of time to cause its transistor 156 to charge so that another depressed key in another line can be detected. This scanning procedure continues and the output on line 180 switches transistor 184 on so that line 142 goes low so that the processor 100 (Figure 2) can receive signals from the keyboard 150 indicative of a certain number of keys being depressed on the keyboard to determine whether than code corresponds to a preprogrammed code in the processor 100.
Thus, a user of the vehicle turns the ignition key of the vehicle which causes a low signal to be supplied on line 102 to the processor 100. The processor 100 then reads the keyboard 150 in the above described manner to determine if a code inserted into the keyboard 150 by the driver matches a predetermined code in the processor 100. If the code does match a predetermined code in the processor 100 the processor 100 outputs a signal on line 114 which switches on transistor 112 to in turn switch on transistor 108 to cause power to be supplied on the ignition line 12 to relay R1. This causes the relay R1 to close so that power is supplied to the ignition coil 14, fuel pump 16 or fuel shut off valve 50 in the same manner as described with reference to Figure 1.
In the event that a driver inputs a wrong numeral into the keyboard 150 the processor is programmed to take no further action and not to supply an output on line 114. The driver is then required to switch off the ignition key so that the line 102 goes high. This causes the processor 100 to output a signal on line 142 causing the circuit 140 to reset and again restart the scanning process of the keyboard 150.
Once the user correctly inputs the code the processor 100 outputs a signal to cause line 114 to go high to in turn enable power to be supplied to the relay R1 as described above.
This embodiment of the invention is also provided with two other modes to enable the vehicle to be used by o-ner people whilst being serviced or driven in a car park without WO 88/06110 PC/A U88/0003o those people having to know the driver' t s input code or to enable the driver to restart the engine in the eviernt that the vehicle stalls in traffic or the like.
The service mode requires the driver to push the key labelled with reference no. A on keyboard 150. If this key is depressed the processor 100 will recognise that key and when the ignition is turned on and a low signal received on line 102 will cause line 114 to go high to enable power to be supplied to the relay Rl. The process'or 100 will remain in this mode until the key labelled B in keyboard 150 is depressed. When the key labelled B has been depressed tba processor 100 goes bac'k to its normal mode wheri it will read the keyboard 150 for the required code before outputting a high signal on line 114 to enable power to be supplied to the relay Rl. When processor 100 is in this mode it also causes the circuit 140 to provide outputs to lines 157 and 159 to gates 161 and 163 so that power is supplied to buzzer 153 and diode 155 so as to provide an indication that the system is in the service mode.
The other mode enables a driver to immediately restart the car in the event of the car stallIing. ThIs mode includes a timing sequence in the proceosor 100 whereby once the vehicle has been placed in the nol, mal running mode and power is disrupted to the vehicle in the event of the vehicle stalling or the like, the processor will titill cause Uine 114 to go high in the event that the ignition is turned on within a period of, f-or example, 20 seconds after the processor 100 detects the disruption of power stpply. Thus, i~f the vehicle does stall in traffic or any other conditions it can be turned on by simply turning the ignition key as is conventional.
After a period of 20 seconds has elapsed the processor 100e then goes Into the mode whereby a correct i:,put into keyboard J150 is required before a high signal is applied to line 114 to cause power~ to be supplied to the relay RI.. When the driver turns the vehicle off, transistor 106 stops conducting and line 1.02 goes high. This is sensed by the processor which causes line 114 to 9o low to Shut off power to the relay.
WO 88/06110 PCT/AU88/00030 12 As previously described the system is provided with the mode memory circuit 220. This circuit remembers which mode the processor 100 was in the event of power disruption (which is sensed on power off line 124) to the system and to, upon resupply of power to the system, re-enter that mode into thk processor 100 so that the processor 100 continues to operate in the correct mode. Therefore, if power is disrupted to the siystem for any reason, such as by faulty battery terminals or disconnection of those terminals or the like, the circuit 220 remembers the state at which the processor 100 was operating at the time of disruption to power and when power is supplied reprogrammes the processor 100. This enables easy reprogramming of the system in the event that a battery is removed or disconnected from the vehicle for any reason and also prevents theft of a vehicle by a thief tampering with the battery in order to disrupt supply of power to the system and hopefully place the system into a mode which will enable the thief to si.nply start the vehicle in the conventional way.
Since the circuit 220 repro-rammes the processor 100 into the mode it was in when power was iost, if the vehicle is left standing in the normal security mode where a correct key entry is required to be input into keyboard 150 before the vehicle will start and power is disrupted, the processor 100 will, on being repowered, be reprogrammed into that mode to thereby prevent operation of the vehicle until the correct code is inputted into the keyboard 150.
The circuit components shown in Figure 2 are adapted I to be located in a secure location to prevent tampering or access by a would-be thief. It is proposed that circuitry be 30 contained in a secure container which is located beneath a plate in the boo, of a vehicle or otherwise secured in the vehicle in a position where it cannot be tampered with and in further embodiments the jircuitry may be integrated into the "black box" electronic control system of a vehicle.
In a further embodiment the system could comprise an infra-red sending unit located in the vehicle. The unit includes a keyboazd into which a code is keyed by a user to I _L, I i i it.
WO 88/06110 PCT/AU88/00030 13 cause the unit to emit an infra-red signal to a pic:up unit which causes the terminals 20 and 30 to close to enable power to I supplied on coil or ignition line 12 to the coil etc.
The ig unit could also enable the signal to be emitted when a different service code is inputted by the owner so that the terminals 20 and 30 are permanently closed until the owner cancels the service code so that the vehicle can be started by authorfsed people other than the owner without the owner having to disclose his or her code.
The preferred embodiment of the invention thereby provides a simple and economical manner of providing an an'-i-theft device which may be built into a vehicle and which can provide a substantial anti-theft measure in order to prevent the theft or unauthorized operation of the vehicle.
The program for operating the system is set out below (set out in machine language).
WO 88/06 110 PCT/AU88/00030 14 0000) 0010 O0c' 0030 00C4C) 0050 0060) 0090 OO4): 0 11 C) 0 120 0140 C) 140 C) 16SC) 0170 01860 0190 01 BC) 01UCC) 01 FO 0200 0220) C)23C) 0240 0260 0320 0)3z(,) UT),:4
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UK'6) 93-89 0:2-23 25-B I 96-BC) 00C-04 63-76 94-CF 96-4B 07-96 3 4 D 3 60-54 60-14 60-54 C)C)-83 7E-76 00-AF A6-76 80-54 7F-GA 46-9A FC-37 9-A3 70-76 42-94 7F-54 7F-8 4 BC)-24 70)-76 7F-aA FF -FF 60-54 8O)-94 SO-9A 54-3A 94-00 D4-1 I rV-FF 30-54 25-9A 5E-34 74-76 OF-89 FF-Fr 24 507 C)7 76 34 51 Ff- 79 14A F8
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7F 71 C) C 7 F 06 8 0 79 WO 88/06110 PCT/AU88/003o Is 0400-C D4 00 AA D4 3A E9 02 D4-74 99 FD D4 74 D4 74 99 0410 F7 D4 4B 99 FD D4 74 89-02 D4 '74 89 02 D4 74 FA 0420 89 02 12 26 99 FD D4 74-89 02 32 2E 99 FD D4 74 0430 89 02 52 36 99 FD D4 74-89 02 72 3E 99 FD D4 '74 0440 89 02 92 46 99 FD D4 74-89 02 82 4E 99 FD D4 74 Q450 89 02 D2 56 99 FD D 4 74-e9 02 F2 5E 99 FD 04 74 046;,) 89 02 12 66 99 FD) D4 74-89 02 32 6E 99 FD D4 74 0470 89 02 52 76 99 F) D4 74-89 02 72 7E 99 FD D4 74 0480 89 02 92 86 99 ED D4 74-89 02 82 8E 99 FD 04 74 0490 8-9 02 02 96 99 FD D4 74-89 02 F2 9E 99 ED 04 74 04AQ' 99 F7 83 FF FE FE EF FE-FE FE FF FF FF FF FF FF 0480 FF FE FE FE FF PF FE FF-FE= FF FF EF FE FF FF FF 0S0 04 00, D4 48 99 02 D4 74-D4 74 89 01 04 74 B8 Bu 0510 09 Cd ,S 16 13 04 7,4.-0*9 57 01 CS IE I8 04 /4 0520 09 53 01 C6 26 1B D4 74-t9 53 01I C6 2E 1S 04 74 0,40 5 Z, CS :3 18L4 04 74-09 53 01 C6 3E 1 64 '74 10540 09 53 01 CS 46 1B D4 74-",9 53 01 C5 4E 1S D4 74 059o 09 53 01 L6 56 1 Eq 04 74-9 53 C Ii C6 SE 1 04 74 056: 09 5"3 01 o CS 66 1l8 D4 74-(.9 5 01o C6 6E 1 D4 74 0570 09 53 CiI C6 76 18 D4 74-E7 53 02 CS 7E 18 D4 74 0$30 09 5 3 0.1 dS 18o 04 74-D4 74 99 F7 F8 012. F8 FS 0590 94 23 00 83 23 FF 83 FE-FE FE FEFF F FE FE FE FE SA-iO FE FE FE FF FF FE FE FFR-FE FE FE FF F FF F FE 0600( 04 ZA 89 02 04 74 99 FO-l)4 74 89 02 04 74 99 F7 0610 83 D4 A 69 0.)2 04 74 99-FD D4 74 04 74 99 F7 L4 0620, 3i 99 ED 04 '74 04 74 89-02 D4 74 99 F7 80) 64 IBC 0 6.O 10 00 -0 00 EC 31 ED 2-83 83 99 ES 89 08 89 02 0640 04 74 04 74 04 74 04 74-D4 74 83 99 F8 e9 (A 28 0650 89 02 D4 74 12 S8 99 )-04 74 89 02 32 60 99 VL) 0S64) D4 74 89 Q2 52 68 99 ED-D4 74 89 02 72 70 99 FD 0670 04 74 2S 8.3, 00 89 04 99-SFB 0083 B6 E 64 8D 64 OC 180 00 0 J 00 EQ 8 1, ED 7F-EE 70 83 SEF II E DE E'S 0690 64 BC 00 00 00 EC 93:-ED 91 EE 6F EF 80 0 EE 061-( 0 0 /4 7b 6E C 'i 8F 8i-40 EF ;S EE Al 8 OE

Claims (1)

  1. 999. 9 9 9 i 949999 16 THE CLAIMS DEFINING THE INVENTION ARE AS FOLLOWS? 1. An anti-theft system for a vehicle having an engine and an ignition switch; comprising an actuating means for location in an ignition or coil line in the vehicle, a normally open switch means for location in a power supply line for supplying power to said ctuating means, said coil line or ignition line having at least two branches on the side of the actuating means opposite said ignition switch, each branch being for connection to a component of the engine to supply power to the component of the engine, an isolating means for location in each branch for preventing power flow in a direction from the component to said actuating means but allowing power flow from said actuating means to said component, said actuating means being normally non-conducting to disrupt power supply to the said components; whereupon turning on of the ignition switch and actuation of said switch means to close the switch means power is supplied to said actuating means to cause the actuating means to conduct to supply power to said engine components, notwithstanding de-activation of the switch means and opening of'the switch means; wherein upon turning off the ignition switch, ignition power supply on the ignition or coil line is disrupted to cause said actuating means to stop conducting to thereby open said ignition line such that said vehicle can only be restarted when said switch means and said ignition switch are both activated and, wherein said isolating means prevents power from being supplied to one of said engine components in the event of hot wiring another of said engine components to prevent said vehicle engine from starting. 2. The system of claim 1 wherein said actuating means is a self-locking relay. 3. The system of claim 1 or claim 2 wherein the switch means is a manually operated button which closes only when pressure is applied to the button and opens when the pressure is released. 9 a 99 TA0 94 r- 17 4. An anti thoft ignition systei for a vehicle, said system comprising a keyboard for receiving a code, processor means coupled to said keyboard for receiving signals indicative of said code from said keyboard, switching means coupled to said processor means f receiving an output from said processor means en a predetermined code is inputted in to the key oard, and for allowing power and/or fuel to be supplied o a vehicle engine to enable the vehicle engine to e started and the vehicle to be driven, said processor eans outputting said output to the switching means whe the vehicle ignition is switched on for a predetermined period after the vehicle engine stops, without the ne to input said code into said S. keyboard, and wherein sai eyboard can receive a further code to cause said proc ssor means to output said output ,signal when the vehi e ignition is switched on until said jr; further code is ca celled by an input into said keyboard. The s tem according to claim 4, wherein a mode I memory circu* is coupled to said processor so that in the event of p er disruption to said processor, said processor supplie information contained in the processor to said mode emory circuit Yor storage and wherein said mode me ry circuit supplies the processor with said information **tr power is rcuppliodto caid prooosor moans. i DATED THIS 25th DAY OF November 1991 0 S. FAIL PROOF ANTI THEFT SYSTEM PTY. LTD. CI By Its Patent Attorneys GRIFFITH HACK CO. Fellows Institute of Patent Attorneys of Australia 0
AU13448/88A 1987-02-20 1988-02-03 Anti-theft vehicle system Ceased AU621537B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU13448/88A AU621537B2 (en) 1987-02-20 1988-02-03 Anti-theft vehicle system

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
AUPI046787 1987-02-20
AUPI0467 1987-02-20
AUPI5365 1987-11-11
AU13448/88A AU621537B2 (en) 1987-02-20 1988-02-03 Anti-theft vehicle system

Related Child Applications (1)

Application Number Title Priority Date Filing Date
AU10429/92A Division AU644510B2 (en) 1987-02-20 1992-01-23 Anti-theft vehicle system

Publications (2)

Publication Number Publication Date
AU1344888A AU1344888A (en) 1988-09-14
AU621537B2 true AU621537B2 (en) 1992-03-19

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Family Applications (1)

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AU13448/88A Ceased AU621537B2 (en) 1987-02-20 1988-02-03 Anti-theft vehicle system

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Country Link
AU (1) AU621537B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU628605B2 (en) * 1989-07-24 1992-09-17 Istvan Nagy Anti-theft device for vehicles

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3619633A (en) * 1970-01-19 1971-11-09 Delbert L Brandon Theft-deterrent ignition system
US4342024A (en) * 1980-01-29 1982-07-27 R.B.M. S.R.L. Vehicle burglar alarm apparatus with electronic memory and digital disabling combination
US4553511A (en) * 1982-11-02 1985-11-19 Nippondenso Co., Ltd. Starter control apparatus for automotive vehicles

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3619633A (en) * 1970-01-19 1971-11-09 Delbert L Brandon Theft-deterrent ignition system
US4342024A (en) * 1980-01-29 1982-07-27 R.B.M. S.R.L. Vehicle burglar alarm apparatus with electronic memory and digital disabling combination
US4553511A (en) * 1982-11-02 1985-11-19 Nippondenso Co., Ltd. Starter control apparatus for automotive vehicles

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU628605B2 (en) * 1989-07-24 1992-09-17 Istvan Nagy Anti-theft device for vehicles

Also Published As

Publication number Publication date
AU1344888A (en) 1988-09-14

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