Abstract:
An apparatus for synchronizing a data handover between a first clock domain and a second clock domain includes a calculator, a first-in-first-out storage, a synchronization pulse generator, a fill level information provider and a feedback path. The calculator is configured to provide a synchronization pulse cycle duration information describing a temporal position of synchronization pulses at a clock of the second clock domain. The first-in-first-out storage receives an input data value in synchronization with the first clock domain and provides an output data value in synchronization with the second clock domain in response to a current synchronization pulse. The fill level information provider provides fill level information describing a fill level of the FIFO. The feedback path feeds back the fill level information to the calculator to adjust the synchronization pulse cycle duration information.
Abstract:
An adjustable delayer for adjustably delaying an input signal based on a delay adjustment input information describing a desired delay includes a plurality of series-connected tunable delay circuits, wherein a first of the tunable delay circuits is configured to receive the input signal. The adjustable delayer also includes a closed-loop control circuit configured to provide a first delay tuning information to tune a combined delay of the plurality of tunable delay circuits to fulfill a predetermined condition. The adjustable delayer also includes a combiner to combine the first delay tuning information with a second delay tuning information, that is based on the delay adjustment input information, to obtain a combined delay tuning information. The adjustable delayer is configured to tune a delay of one or more of the tunable delay circuits based on the combined delay tuning information. The adjustable delayer is configured to provide the output signal based on one or more signals present at outputs of one or more of the adjustable delay circuits.
Abstract:
The switched-mode power supply includes a power stage, and a control unit to control the operation of the power stage based on a critical parameter of the power stage, wherein the control unit is configured to control the operation of the power stage to change from a first operational mode to a second operation mode if the critical parameter leaves a pre-defined range, and to change from the second operational mode to the first operational mode based on a measurement of a first time interval.
Abstract:
The switched-mode power supply includes a power stage, and a control unit to control the operation of the power stage based on a critical parameter of the power stage, wherein the control unit is configured to control the operation of the power stage to change from a first operational mode to a second operation mode if the critical parameter leaves a pre-defined range, and to change from the second operational mode to the first operational mode based on a measurement of a first time interval.
Abstract:
An adjustable delayer for adjustably delaying an input signal based on a delay adjustment input information describing a desired delay includes a plurality of series-connected tunable delay circuits, wherein a first of the tunable delay circuits is configured to receive the input signal. The adjustable delayer also includes a closed-loop control circuit configured to provide a first delay tuning information to tune a combined delay of the plurality of tunable delay circuits to fulfill a predetermined condition. The adjustable delayer also includes a combiner to combine the first delay tuning information with a second delay tuning information, that is based on the delay adjustment input information, to obtain a combined delay tuning information. The adjustable delayer is configured to tune a delay of one or more of the tunable delay circuits based on the combined delay tuning information. The adjustable delayer is configured to provide the output signal based on one or more signals present at outputs of one or more of the adjustable delay circuits.
Abstract:
An air pressure sensor for sensing a side impact includes fastening means for fastening the air pressure sensor on a vehicle wall, the fastening means having a single aperture for accommodating a single fastening element, the fastening element being used for fastening the air pressure sensor on the vehicle wall. Furthermore, the fastening means have a structure on the pressure inlet channel which passes through an aperture in the vehicle door. The at least one structure is shaped in such a way that the at least one structure makes it possible for the air pressure sensor to be hooked on the vehicle wall.
Abstract:
An electronic device includes an integrated circuit operating on the basis of an operating clock signal, an error detection circuit and a control circuit coupled to the error detection circuit. The control circuit is configured to increase the frequency of the operating clock signal starting from a nominal operating frequency of the integrated circuit, to evaluate a frequency increment at which an error is detected by the error detection circuit, and to reset the frequency of the operating clock signal to said nominal frequency.
Abstract:
A pressure connection concept for pressure sensor modules is provided, using which the influence of assembly-related stresses in the sensor system on the sensor diaphragm and accordingly on the measuring signal detection is kept very low. The sensor system includes a sensor module for pressure detection and a connecting piece and at least one seal for coupling the sensor module to a measuring system. The sensor module includes at least one sensor element having a diaphragm and means for signal detection. Together with the means for signal detection, the sensor element is provided with packaging having a pressure connection opening and electrical contacts. A pressure channel is provided in the connecting piece, the pressure channel being coupled to the pressure connection opening of the sensor module using the seal. The packaging of the sensor module includes a tube-shaped projection which forms the pressure connection opening, and the pressure channel of the connecting piece terminates in a connecting tube. The tube-shaped projection of the sensor module and the connecting tube of the connecting piece fit into each other, and the seal designed as a radial seal is situated between the walls of the tube-shaped projection and the connecting tube.