A probe cleaning plate uses an air seal gasket to direct compressed air through a substrate for efficient probe head maintenance.
Dynamic sequence control switches between stored test values to resolve the contradiction between testing speed and circuit complexity.
A synchronous power gauge samples current drawn from a battery only during active operating modes to determine total charge consumed.
Partitioned clock networks stagger flip-flop activation, reducing power consumption and voltage droop caused by excessive switching.
A charge/discharge control circuit uses a dedicated overcurrent cancel terminal to resume discharging.
A battery state of charge estimation method fuses multiple algorithms with dynamic weights based on real-time operational conditions.
An address filter isolates preset service MPI information for sequential storage in memory.
Microprocessor-based intelligent electronic devices use redundant electrical measurements to verify disturbance detection.
A UPS controller manages battery power through multiple operational modes to maximize asset usage.
A charging control device detects maximum current and disconnects power when the battery reaches full capacity.
Algorithm enumerates alpha-quasi-nonblocking network configurations to minimize mechanical patch panel counts.
A power monitoring system detects electrical failures by comparing supply and consumption levels to identify malfunctions.
A three-dimensional first principle degradation model estimates battery state using terminal voltage and current data.
A software method estimates battery wear by averaging actual capacity values derived from historical status data stored in mobile device memory.
A computer communication port generates a square wave voltage to charge capacitors in a capacitive sensor for fault detection.
A diagnostic system measures voltage, current, and temperature during vehicle start-up to determine state of charge and health without external stress.
A machine learning model selects a subset of integrated circuit test cases based on coverage matrix weights to ensure comprehensive verification.
A charge/discharge control device predicts input/output-allowed time using a dynamic battery model to manage power limits.
A charging apparatus measures battery electrochemical impedance spectrum using built-in excitation signals and voltage current sequences.
Drive circuit stores abnormality occurrence and state distinction information to enable accurate diagnosis of indeterminate states in electronic control units.
A multi-strobe generating section creates strobes with different phases to acquire reception signals and detect change positions.
A vehicle battery monitoring system adjusts voltage thresholds using idle state measurements to determine current and forecast status.
A digital pulse circuit transforms signal edges into binary values for on-chip slew rate measurement.
Merging independent test subpatterns across multiple IP block instances reduces redundant testing cycles while maintaining comprehensive verification coverage.
A test section unit integrates sockets directly onto a performance board to eliminate intermediate socket boards.
A battery monitoring method applies defined load peaks to detect voltage dips for accurate end-of-life prediction.