Device and method for safety switch off of an electrical consumer in a vehicle
In a safety switch off of an electric consumer in a vehicle, the current consumption of the consumer is monitored in its active state by a main monitoring unit with respect to a safety switch off threshold which, when reached or exceeded, results in switching off the electronic switch. In a further operating state, in which the current consumption of the line leading to the consumer is lower than in its active state, the current consumption is monitored by an auxiliary monitoring unit with respect to the rate of changes. When the consumer is in the further operating state, the main monitoring unit is deactivated or operated in standby mode. When the consumer is in the further operating state, the main monitoring unit is activated, when the rate of changes in the current consumption reaches a threshold value and/or falls short of or exceeds a voltage range.
1 . A safety switch-off device for an electrical consumer in a vehicle, the electrical consumer being adapted to be operated in an active state and in at least one further operating state with reduced current consumption compared to the active state, the at least one further operating state being an idle or standby state, the device comprising:
an electronic switch with a current path, arranged in a supply line leading directly or indirectly to the at least one electrical consumer of the vehicle, via which supply line the electrical consumer can be supplied with currents respectively necessary for operation in its active state and for operation in its at least one further operating state or in one of its further operating states,
a driver circuit for controlling the electronic switch, wherein either a switch on signal for switching the electronic switch on and thus for switching its current path to a conducting state or a switch-off signal for switching the electronic switch off and thus for switching its current path to a blocking state can be applied to the driver circuit,
a voltage detection element provided for arrangement in the supply line and generating a voltage drop when a current flows through the supply line,
at least one voltage amplifier with two inputs connected on either side of the voltage detection element, and with an output supplying an amplified signal,
a high-pass or a band-pass filter for filtering the amplified signal at the output of the voltage amplifier, comprising an input connected to the output of the voltage amplifier and comprising an output supplying the filtered signal,
a first comparator connected to the output of the high-pass or band-pass filter and comprising two inputs and one output, for comparing a magnitude of the filtered signal of the high-pass or band-pass filter to a first threshold value or to a first voltage range,
wherein the first comparator outputs a first activation signal at its output when the output of the high-pass or band-pass filter is greater than the first threshold value or equal to the first threshold value and exceeds or falls below the first voltage range,
a monitoring unit connected to the output of the first comparator, which, whenever the at least one electrical consumer is in its active state or in its at least one further operating state or in one of its further operating states, generates, for the driver circuit, the switch on signal for the electronic switch to supply the at least one electrical consumer with current and outputs to the driver circuit the switch-off signal for the electronic switch for purpose of a potential safety switch off of the at least one electrical consumer,
wherein the monitoring unit comprises switchable circuit components which can selectively be activated or deactivated, i.e. can be transferred into a switch-off or a standby mode, based on a determination of a thermal load of the supply line and/or the at least one electrical consumer due to an increased current consumption, or a temperature compensation circuit, or a voltage supply circuit, or a voltage regulation circuit, or comparators with reference voltage generation circuits,
wherein the monitoring unit requires less electric energy when its switchable circuit components are deactivated than in a case where its switchable circuit components are activated,
wherein the switchable circuit components of the monitoring unit, when deactivated, are activatable upon receipt of the first activation signal present at the output of the first comparator, and,
wherein the output of the high-pass filter or band-pass filter is connected to a second comparator for comparing the magnitude of the output signal of the high-pass or band-pass filter to a second threshold value higher than the first threshold value, the second comparator outputting a second activation signal, if the signal at the output of the high-pass or band-pass filter is larger than the second threshold value or equal to the second threshold value, the second activation signal being adapted to be supplied to the monitoring unit for the activation of its switchable circuit components for the purpose of further treatment and processing for a possible conversion into a switch-off signal for the electronic switch and/or being designed as a switch-off signal for the electronic switch.
2 . The safety switch-off device according to claim 1 , further comprising an emergency switch-off comparator connected to the output of the at least one voltage amplifier and comprising two inputs and one output, for comparing the magnitude of the signal at the output of the at least one voltage amplifier to an emergency switch-off threshold value, the emergency switch-off comparator outputting a switch off signal for the electronic switch at its output for the driver circuit, if the magnitude of the signal at the output of the at least one voltage amplifier reaches or exceeds the emergency switch-off threshold value.
3 . The safety switch-off device according to claim 1 , wherein the monitoring unit is connected to the output of the at least one voltage amplifier and, when its switchable circuit components are activated, evaluates the signal at the output of the at least one voltage amplifier with respect to the selective generation of a switch-on signal and the switch-off signal for the electronic switch.
4 . The safety switch-off device according to claim 1 , wherein the voltage detection element is a shunt resistor or that the current path of the electronic switch serves as the voltage detection element.
5 . The safety switch-off device according to claim 1 , wherein the switchable components include one or more of a logic circuit and an ADC.
6 . A safety switch-off device for an electrical consumer in a vehicle, the electrical consumer being adapted to be operated in an active state and in at least one further operating state with reduced current consumption compared to the active state, the at least one further operating state being an idle or standby state, the device comprising:
an electronic switch with a current path, arranged in a supply line leading directly or indirectly to the at least one electrical consumer of the vehicle, via which supply line the electrical consumer can be supplied with currents respectively necessary for operation in its active state and for operation in its at least one further operating state or in one of its further operating states,
a driver circuit for controlling the electronic switch, wherein either a switch on signal for switching the electronic switch on and thus for switching its current path to a conducting state or a switch-off signal for switching the electronic switch off and thus for switching its current path to a blocking state can be applied to the driver circuit,
a voltage detection element provided for arrangement in the supply line and generating a voltage drop when a current flows through the supply line,
at least one voltage amplifier with two inputs connected on either side of the voltage detection element, and with an output supplying an amplified signal,
a high-pass or a band-pass filter for filtering the amplified signal at the output of the voltage amplifier, comprising an input connected to the output of the voltage amplifier and comprising an output supplying the filtered signal,
a first comparator connected to the output of the high-pass or band-pass filter and comprising two inputs and one output, for comparing a magnitude of the filtered signal of the high-pass or band-pass filter to a first threshold value or to a first voltage range,
wherein the first comparator outputs a first activation signal at its output when the output of the high-pass or band-pass filter is greater than the first threshold value or equal to the first threshold value and exceeds or falls below the first voltage range,
a monitoring unit connected to the output of the first comparator, which, whenever the at least one electrical consumer is in its active state or in its at least one further operating state or in one of its further operating states, generates, for the driver circuit, the switch on signal for the electronic switch to supply the at least one electrical consumer with current and outputs to the driver circuit the switch-off signal for the electronic switch for purpose of a potential safety switch off of the at least one electrical consumer,
wherein the monitoring unit comprises switchable circuit components which can selectively be activated or deactivated, i.e. can be transferred into a switch-off or a standby mode, based on a determination of a thermal load of the supply line or the at least one electrical consumer due to an increased current consumption, or a temperature compensation circuit, or a voltage supply circuit, or a voltage regulation circuit, or comparators with reference voltage generation circuits,
wherein the monitoring unit requires less electric energy when its switchable circuit components are deactivated than in a case where its switchable circuit components are activated,
wherein the switchable circuit components of the monitoring unit, when deactivated, are activatable upon receipt of the first activation signal present at the output of the first comparator, and
wherein a single voltage amplifier is provided, which can be switched between an operation with a higher energy demand and an operation with a lower energy demand, and that the voltage amplifier needs less energy when the circuit components of the monitoring unit are deactivated than when the circuit components of the monitoring unit are activated, and that the voltage amplifier is switchable under control by the monitoring unit.
7 . A safety switch-off device for an electrical consumer in a vehicle, the electrical consumer being adapted to be operated in an active state and in at least one further operating state with reduced current consumption compared to the active state, the at least one further operating state being an idle or standby state, the device comprising:
an electronic switch with a current path, arranged in a supply line leading directly or indirectly to the at least one electrical consumer of the vehicle, via which supply line the electrical consumer can be supplied with currents respectively necessary for operation in its active state and for operation in its at least one further operating state or in one of its further operating states,
a driver circuit for controlling the electronic switch, wherein either a switch on signal for-switching the electronic switch on and thus for switching its current path to a conducting state or a switch-off signal for switching the electronic switch off and thus for switching its current path to a blocking state can be applied to the driver circuit,
a voltage detection element provided for arrangement in the supply line and generating a voltage drop when a current flows through the supply line,
at least one voltage amplifier with two inputs connected on either side of the voltage detection element, and with an output supplying an amplified signal,
a high-pass or a band-pass filter for filtering the amplified signal at the output of the voltage amplifier, comprising an input connected to the output of the voltage amplifier and comprising an output supplying the filtered signal,
a first comparator connected to the output of the high-pass or band-pass filter and comprising two inputs and one output, for comparing a magnitude of the filtered signal of the high-pass or band-pass filter to a first threshold value or to a first voltage range,
wherein the first comparator outputs a first activation signal at its output when the output of the high-pass or band-pass filter is greater than the first threshold value or equal to the first threshold value and exceeds or falls below the first voltage range,
a monitoring unit connected to the output of the first comparator, which, whenever the at least one electrical consumer is in its active state or in its at least one further operating state or in one of its further operating states, generates, for the driver circuit, the switch on signal for the electronic switch to supply the at least one electrical consumer with current and outputs to the driver circuit the switch-off signal for the electronic switch for purpose of a potential safety switch off of the at least one electrical consumer,
wherein the monitoring unit comprises switchable circuit components which can selectively be activated or deactivated, i.e. can be transferred into a switch-off or a standby mode, based on a determination of a thermal load of the supply line or the at least one electrical consumer due to an increased current consumption, or a temperature compensation circuit, or a voltage supply circuit, or a voltage regulation circuit, or comparators with reference voltage generation circuits,
wherein the monitoring unit requires less electric energy when its switchable circuit components are deactivated than in a case where its switchable circuit components are activated,
wherein the switchable circuit components of the monitoring unit, when deactivated, are activatable upon receipt of the first activation signal present at the output of the first comparator, and
the safety switch-off device further comprising a single voltage amplifier, wherein either the voltage amplifier has a variable amplification factor, which is higher when circuit components of the monitoring unit are deactivated than when circuit components of the monitoring unit are activated, or the high-pass or band-pass filter comprises a voltage amplifier connectable when circuit components of the monitoring unit are deactivated, for outputting an output signal amplified even further and thus higher as compared to the amplification by the voltage amplifier.
8 . A safety switch-off device for an electrical consumer in a vehicle, the electrical consumer being adapted to be operated in an active state and in at least one further operating state with reduced current consumption compared to the active state, the at least one further operating state being an idle or standby state, the device comprising:
an electronic switch with a current path, arranged in a supply line leading directly or indirectly to the at least one electrical consumer of the vehicle, via which supply line the electrical consumer can be supplied with currents respectively necessary for operation in its active state and for operation in its at least one further operating state or in one of its further operating states,
a driver circuit for controlling the electronic switch, wherein either a switch on signal for switching the electronic switch on and thus for switching its current path to a conducting state or a switch-off signal for switching the electronic switch off and thus for switching its current path to a blocking state can be applied to the driver circuit,
a voltage detection element provided for arrangement in the supply line and generating a voltage drop when a current flows through the supply line,
at least one voltage amplifier with two inputs connected on either side of the voltage detection element, and with an output supplying an amplified signal,
a high-pass or a band-pass filter for filtering the amplified signal at the output of the voltage amplifier, comprising an input connected to the output of the voltage amplifier and comprising an output supplying the filtered signal,
a first comparator connected to the output of the high-pass or band-pass filter and comprising two inputs and one output, for comparing a magnitude of the filtered signal of the high-pass or band-pass filter to a first threshold value or to a first voltage range,
wherein the first comparator outputs a first activation signal at its output when the output of the high-pass or band-pass filter is greater than the first threshold value or equal to the first threshold value and exceeds or falls below the first voltage range,
a monitoring unit connected to the output of the first comparator, which, whenever the at least one electrical consumer is in its active state or in its at least one further operating state or in one of its further operating states, generates, for the driver circuit, the switch on signal for the electronic switch to supply the at least one electrical consumer with current and outputs to the driver circuit the switch-off signal for the electronic switch for purpose of a potential safety switch off of the at least one electrical consumer,
wherein the monitoring unit comprises switchable circuit components which can selectively be activated or deactivated, i.e. can be transferred into a switch-off or a standby mode, based on a determination of a thermal load of the supply line or the at least one electrical consumer due to an increased current consumption, or a temperature compensation circuit, or a voltage supply circuit, or a voltage regulation circuit, or comparators with reference voltage generation circuits,
wherein the monitoring unit requires less electric energy when its switchable circuit components are deactivated than in a case where its switchable circuit components are activated,
wherein the switchable circuit components of the monitoring unit, when deactivated, are activatable upon receipt of the first activation signal present at the output of the first comparator and wherein a first voltage amplifier and a second voltage amplifier are provided, the first voltage amplifier being adapted to be operated when the circuit components of the monitoring unit are deactivated, and the second voltage amplifier being operable when the circuit components of the monitoring unit are activated and that the high-pass or band-pass filter is connected to the output of the first voltage amplifier.
9 . The safety switch-off device according to claim 8 , further comprising an emergency switch-off comparator connected to the output of the at least one voltage amplifier and comprising two inputs and one output, for comparing a magnitude of the signal at the output of the at least one voltage amplifier to an emergency switch-off threshold value, the emergency switch-off comparator outputting a switch-off signal for the electronic switch at its output for the driver circuit, when the magnitude of the signal at the output of the at least one voltage amplifier reaches or exceeds the emergency switch-off threshold value, wherein the outputs of both the first and second amplifiers are connected respectively to one of the inputs of the emergency switch off comparator or that a respective one of the outputs of the first and second voltage amplifiers can be selectively connected to one of the inputs of the emergency switch-off comparator.
10 . The safety switch-off device according to claim 8 , further comprising an emergency switch-off comparator connected to the output of the at least one voltage amplifier and comprising two inputs and one output, for comparing a magnitude of the signal at the output of the at least one voltage amplifier to an emergency switch-off threshold value, the emergency switch-off comparator outputting a switch-off signal for the electronic switch at its output for the driver circuit, when the magnitude of the signal at the output of the at least one voltage amplifier reaches or exceeds the emergency switch-off threshold value, wherein the output of the high-pass or band-pass filter is connected to a second comparator for comparing a magnitude of the output signal of the high-pass or band-pass filter to a second threshold value higher than the first threshold value, the second comparator outputting a second activation signal, when the signal at the output of the high-pass or band-pass filter is larger than the second threshold value or equal to the second threshold value, the second activation signal being adapted to be supplied to the monitoring unit for the activation of its switchable circuit components for the purpose of further treatment and processing for a possible conversion into a switch-off signal for the electronic switch and/or being designed as a switch-off signal for the electronic switch, wherein the outputs of both the first and second amplifiers are connected respectively to one of the inputs of an emergency switch-off comparator or that a respective one of the outputs of the first and second voltage amplifiers can be selectively connected to one of the inputs of the emergency switch-off comparator.
11 . The safety switch-off device according to claim 8 , wherein the monitoring unit is connected to the output of the at least one voltage amplifier and, when its switchable circuit components are activated, evaluates the signal at the output of the at least one voltage amplifier with respect to the selective generation of a switch-on signal and the switch-off signal for the electronic switch, and further wherein the monitoring unit is connected to the output of the second voltage amplifier.
12 . A safety switch-off device for an electrical consumer in a vehicle, the electrical consumer being adapted to be operated in an active state and in at least one further operating state with reduced current consumption compared to the active state, the at least one further operating state being an idle or standby state, the device comprising:
an electronic switch with a current path, arranged in a supply line leading directly or indirectly to the at least one electrical consumer of the vehicle, via which supply line the electrical consumer can be supplied with currents respectively necessary for operation in its active state and for operation in its at least one further operating state or in one of its further operating states,
a driver circuit for controlling the electronic switch, wherein either a switch on signal for switching the electronic switch on and thus for switching its current path to a conducting state or a switch-off signal for switching the electronic switch off and thus for switching its current path to a blocking state can be applied to the driver circuit,
a voltage detection element provided for arrangement in the supply line and generating a voltage drop when a current flows through the supply line,
at least one voltage amplifier with two inputs connected on either side of the voltage detection element, and with an output supplying an amplified signal,
a high-pass or a band-pass filter for filtering the amplified signal at the output of the voltage amplifier, comprising an input connected to the output of the voltage amplifier and comprising an output supplying the filtered signal,
a first comparator connected to the output of the high-pass or band-pass filter and comprising two inputs and one output, for comparing a magnitude of the filtered signal of the high-pass or band-pass filter to a first threshold value or to a first voltage range,
wherein the first comparator outputs a first activation signal at its output when the output of the high-pass or band-pass filter is greater than the first threshold value or equal to the first threshold value and exceeds or falls below the first voltage range,
a monitoring unit connected to the output of the first comparator, which, whenever the at least one electrical consumer is in its active state or in its at least one further operating state or in one of its further operating states, generates, for the driver circuit, the switch on signal for the electronic switch to supply the at least one electrical consumer with current and outputs to the driver circuit the switch-off signal for the electronic switch for purpose of a potential safety switch off of the at least one electrical consumer,
wherein the monitoring unit comprises switchable circuit components which can selectively be activated or deactivated, i.e. can be transferred into a switch-off or a standby mode, based on a determination of a thermal load of the supply line or the at least one electrical consumer due to an increased current consumption, or a temperature compensation circuit, or a voltage supply circuit, or a voltage regulation circuit, or comparators with reference voltage generation circuits,
wherein the monitoring unit requires less electric energy when its switchable circuit components are deactivated than in a case where its switchable circuit components are activated,
wherein the switchable circuit components of the monitoring unit, when deactivated, are activatable upon receipt of the first activation signal present at the output of the first comparator, and wherein a first voltage amplifier with a first amplification factor and a second voltage amplifier with a second amplification factor smaller than the first amplification factor are provided, of which the first voltage amplifier is operable with the circuit components of the monitoring unit deactivated, and the second voltage amplifier is operable with the circuit components of the monitoring unit activated, and that the high-pass or band-pass filter is connected to the output of the first voltage amplifier.
13 . The safety switch-off device according to claim 12 , further comprising an emergency switch-off comparator connected to the output of the at least one voltage amplifier and comprising two inputs and one output, for comparing a magnitude of the signal at the output of the at least one voltage amplifier to an emergency switch-off threshold value, the emergency switch-off comparator outputting a switch-off signal for the electronic switch at its output for the driver circuit, when the magnitude of the signal at the output of the at least one voltage amplifier reaches or exceeds the emergency switch-off threshold value, wherein the outputs of both the first and second amplifiers are connected respectively to one of the inputs of the emergency switch off comparator or that a respective one of the outputs of the first and second voltage amplifiers can be selectively connected to one of the inputs of the emergency switch-off comparator.
14 . The safety switch-off device according to claim 12 , further comprising an emergency switch-off comparator connected to the output of the at least one voltage amplifier and comprising two inputs and one output, for comparing a magnitude of the signal at the output of the at least one voltage amplifier to an emergency switch-off threshold value, the emergency switch-off comparator outputting a switch-off signal for the electronic switch at its output for the driver circuit, when the magnitude of the signal at the output of the at least one voltage amplifier reaches or exceeds the emergency switch-off threshold value, wherein the output of the high-pass or band-pass filter is connected to a second comparator for comparing a magnitude of the output signal of the high-pass or band-pass filter to a second threshold value higher than the first threshold value, the second comparator outputting a second activation signal, when the signal at the output of the high-pass or band-pass filter is larger than the second threshold value or equal to the second threshold value, the second activation signal being adapted to be supplied to the monitoring unit for the activation of its switchable circuit components for the purpose of further treatment and processing for a possible conversion into a switch-off signal for the electronic switch and/or being designed as a switch-off signal for the electronic switch, and further wherein the outputs of both the first and second amplifiers are connected respectively to one of the inputs of an emergency switch off comparator or that a respective one of the outputs of the first and second voltage amplifiers can be selectively connected to one of the inputs of the emergency switch-off comparator.
15 . The safety switch-off device according to claim 12 , wherein the monitoring unit is connected to the output of the at least one voltage amplifier and, when its switchable circuit components are activated, evaluates the signal at the output of the at least one voltage amplifier with respect to the selective generation of a switch-on signal and the switch-off signal for the electronic switch, further wherein the monitoring unit is connected to the output of the at least one voltage amplifier and, when its switchable circuit components are activated, evaluates the signal at the output of the at least one voltage amplifier with respect to the selective generation of a switch-on signal and the switch-off signal for the electronic switch, and further wherein the monitoring unit is connected to the output of the second voltage amplifier.
16 . The safety switch-off device according to claim 12 , wherein the output of the high-pass or band-pass filter is connected to a second comparator for comparing a magnitude of the output signal of the high-pass or band-pass filter to a second threshold value higher than the first threshold value, the second comparator outputting a second activation signal, when the signal at the output of the high-pass or band-pass filter is larger than the second threshold value or equal to the second threshold value, the second activation signal being adapted to be supplied to the monitoring unit for the activation of its switchable circuit components for the purpose of further treatment and processing for a possible conversion into a switch-off signal for the electronic switch and/or being designed as a switch-off signal for the electronic switch, and further wherein the monitoring unit is connected to the output of the second voltage amplifier.