Mathematical model of backplane link enables software-based bit error rate prediction, eliminating dedicated hardware complexity and silicon space requirements.
A dedicated trigger clock generates repeated digital timings to control the acquisition unit in test and measurement devices.
An integrated oscilloscope generates demonstration signals internally using stored waveform digital samples.
A graphical user interface lets operators designate portions of a displayed signal waveform to automatically configure trigger parameters.
A real-time oscilloscope method separates jitter from noise by measuring timing and voltage displacements across unit intervals.
Internal chirp generator transmits frequency-swept signals to mixed-domain oscilloscopes for simultaneous spectrum processing.
A test instrument interface adjusts spectrogram size and resolution based on user window manipulation.
A measurement device scheduler controls signal processing components to manage power states.
Frequency analysis locates ground faults in high resistance grounded motor drive systems without manual shutdown or system downtime.
Lookup tables store pre-calculated binomial coefficients for fractional differentiation, reducing storage resource consumption and computing time.
Comparators detect signal transitions to selectively store data in a buffer, resolving the trade-off between extended storage time and excessive memory usage.
Trigger enable logic circuit arms oscilloscope capture on real-time signal events, resolving slow manual intervention bottlenecks.
A digital voltmeter processes untriggered signal values to determine characteristic voltage levels within a predefined interval.
A measuring device assigns user inputs to shortcut controls for direct function access.
A photometric observer model translates visual pattern identification into absolute luminance data for display calibration.
A diagnostic instrument generates datasets for signal voltages and derived characteristics to display both graphically on a single screen.