Patent classifications
B60R2021/01129
EMERGENCY NOTIFICATION SYSTEM
An emergency notification system comprises an emergency notification unit 10, an audio control unit 30, and a speaker drive unit 40 for driving a vehicle-mounted speaker 42 based on control by the audio control unit 30, wherein the emergency notification unit 10 comprises: a muting control section 21 operable, upon receiving a vehicle emergency signal, to transmit, to the audio control unit 30, a muting request signal B for muting the vehicle-mounted speaker 42, and to receive, from the audio control unit 30, a muting confirmation signal E indicating that the vehicle-mounted speaker 42 has been muted based on the muting request signal B; and a power supply control section 23 operable, when the muting control section 21 fails to receive the muting confirmation signal E in response to the transmission of the muting request signal B, to shut off supply of electric power to the speaker drive unit 40.
Inflator
An inflator includes an inflator body that produces an inflation gas by burning a gas generating agent and a sensor that is mounted on the inflator body and is capable of detecting a degradation of the gas generating agent. The sensor is preferably composed of at least either one of a gas sensor, a pressure sensor, or a temperature sensor.
Input signal mismatch detection circuit
A system for detecting a mismatch between first and second input signals includes first and second analog-to-digital converters, a time-division multiplexing circuit, first and second processors, a time-division de-multiplexing circuit, and a gating circuit. The first processor includes a first sinc filter, a first trimmer, a first infinite impulse response (IIR) filter, and a first high pass filter (HPF). The second processor includes a second sinc filter, a second IIR filter, and a second HPF. A bandwidth of the second IIR filter and the second HPF is greater than a bandwidth of the first IIR filter and the first HPF. A transfer function of the first IIR filter and the first HPF uses floating-point coefficients and a transfer function of the second IIR filter and the second HPF uses coefficients that are an integral power of two.
CONTROL UNIT FOR A RESTRAINT SYSTEM IN A VEHICLE
A control unit for a restraint system in a vehicle, including an evaluation and control unit and at least one external ignition circuit interface to which a squib for activating the restraint system is connected via a go-line and a return line, the evaluation and control unit cyclically ascertaining, by measuring, an instantaneous ohmic loop resistance of the corresponding ignition circuit and comparing this with at least one stored threshold value. The evaluation and control unit determines an instantaneous temperature in the vehicle interior, close to the time for the measured value detection for ascertaining the ignition circuit loop resistance, the evaluation and control unit carrying out a temperature compensation of the ascertained ignition circuit loop resistance for the go-line and return line of the connected ignition circuit based on the instantaneous temperature in the vehicle interior, the go-line and return line being situated outside the control unit.
INFLATOR
An inflator includes an inflator body that produces an inflation gas by burning a gas generating agent and a sensor that is mounted on the inflator body and is capable of detecting a degradation of the gas generating agent. The sensor is preferably composed of at least either one of a gas sensor, a pressure sensor, or a temperature sensor.
Power supply output apparatus, fault diagnosis method, airbag controller and airbag system
A control circuit includes (i) at least one voltage output end, each said voltage output end being connected to a filter capacitor, (ii) at least one detection circuit disposed in the control circuit, each said detection circuit being connected to one said voltage output end, and (iii) a fault output apparatus which is configured to, when the detection circuit detects that a fault has occurred in the filter capacitor connected to the voltage output end, output corresponding filter capacitor fault indication information. The power supply output apparatus has no need for a redundant capacitor design, and can determine whether a fault has occurred in the filter capacitor on the basis of the duration of charging of the filter capacitor thus ensuring the reliability and stability of the power supply output apparatus.