G01R13/32

Enabling a trigger in a test and measurement instrument

A test and measurement instrument, such as an oscilloscope, including one or more ports to receive one or more signals from a device under test, a trigger enable logic circuit configured to output a trigger enabled signal when a trigger enable event occurs within the one or more signals, the trigger enable event being a real-time event of the one or more signals, one or more trigger logic circuits configured to generate a plurality of trigger signals when the trigger enable signal is received, each trigger signal being generated when a trigger event occurs within one of the one or more signals, and an acquisition circuit configured to acquire and store data in a memory in response to each of the trigger signals.

Enabling a trigger in a test and measurement instrument

A test and measurement instrument, such as an oscilloscope, including one or more ports to receive one or more signals from a device under test, a trigger enable logic circuit configured to output a trigger enabled signal when a trigger enable event occurs within the one or more signals, the trigger enable event being a real-time event of the one or more signals, one or more trigger logic circuits configured to generate a plurality of trigger signals when the trigger enable signal is received, each trigger signal being generated when a trigger event occurs within one of the one or more signals, and an acquisition circuit configured to acquire and store data in a memory in response to each of the trigger signals.

Multi-Channel Triggering Apparatus and Method

An apparatus and a method for using a signal analyzer are disclosed. The apparatus includes an input port having a first plurality of input channels. The input port generates a digital data stream from each of the first plurality of input channels. The apparatus also includes a trigger bank having a second plurality of trigger processors, each trigger processor receiving a digital data stream chosen from the digital data streams and generating a trigger output having one of a plurality of possible values from the digital data stream. A trigger combiner that receives each of the trigger outputs and generates a trigger signal if the combined trigger outputs satisfy a predetermined criterion. A controller copies the digital data streams to a memory and copies the trigger processor outputs to the memory in response to the trigger combiner generating the trigger signal.

Multi-Channel Triggering Apparatus and Method

An apparatus and a method for using a signal analyzer are disclosed. The apparatus includes an input port having a first plurality of input channels. The input port generates a digital data stream from each of the first plurality of input channels. The apparatus also includes a trigger bank having a second plurality of trigger processors, each trigger processor receiving a digital data stream chosen from the digital data streams and generating a trigger output having one of a plurality of possible values from the digital data stream. A trigger combiner that receives each of the trigger outputs and generates a trigger signal if the combined trigger outputs satisfy a predetermined criterion. A controller copies the digital data streams to a memory and copies the trigger processor outputs to the memory in response to the trigger combiner generating the trigger signal.

Measuring device and method with automated trigger function

A measuring device comprises an interface, adapted to acquire a measuring signal, a triggering unit, adapted to determine at least one condition of the measuring signal based on an initial triggering condition, and a storage unit adapted to store data words, comprising changes of the at least one condition of the measuring signal and instances in time at which the changes of the at least one condition occur. Moreover, the measuring device comprises a parameter determination unit, adapted to determine at least one parameter from the data words and a parameter histogram unit, adapted to determine a parameter histogram of the at least one parameter.

Measuring device and method with automated trigger function

A measuring device comprises an interface, adapted to acquire a measuring signal, a triggering unit, adapted to determine at least one condition of the measuring signal based on an initial triggering condition, and a storage unit adapted to store data words, comprising changes of the at least one condition of the measuring signal and instances in time at which the changes of the at least one condition occur. Moreover, the measuring device comprises a parameter determination unit, adapted to determine at least one parameter from the data words and a parameter histogram unit, adapted to determine a parameter histogram of the at least one parameter.

Automatic frequency prescaler
10481179 · 2019-11-19 · ·

A test and measurement instrument including an input port configured to receive an input signal. One or more divider circuits, coupled to the input port, employ a plurality of divide ratios such that each divide ratio scales an event signal indicating events in the input signal by a predetermined integer value. A control system is also included. The control system is configured to iteratively determine an estimated signal frequency of the event signal, and automatically select a divide ratio for the event signal based on the estimated signal frequency. The instrument may also include one or more counters to count triggers in the event signal subsequent to application of the divide ratio. The instrument may also employ frequency hysteresis to prevent chatter in divide ratio selection.

Automatic frequency prescaler
10481179 · 2019-11-19 · ·

A test and measurement instrument including an input port configured to receive an input signal. One or more divider circuits, coupled to the input port, employ a plurality of divide ratios such that each divide ratio scales an event signal indicating events in the input signal by a predetermined integer value. A control system is also included. The control system is configured to iteratively determine an estimated signal frequency of the event signal, and automatically select a divide ratio for the event signal based on the estimated signal frequency. The instrument may also include one or more counters to count triggers in the event signal subsequent to application of the divide ratio. The instrument may also employ frequency hysteresis to prevent chatter in divide ratio selection.

Method, system, and non-transitory computer readable medium for detecting time difference

A method, a system, and a non-transitory computer readable medium for detecting time difference include a transmitting device and a receiving device being in time synchronization; an oscilloscope detecting a time difference generated thereof to obtain a first time difference; the transmitting device generating a first system time, based on the first system time, generating a first image, and transmitting the first image to a display to generate a second time difference; an image capturing device obtaining the first image from the display and generating a first signal, to generate a third time difference; the receiving device receiving the first signal to generate a fourth time difference, and obtaining the first system time according to the first signal and generating a second system time when obtaining the first system time, and to generate a fifth time difference.

Method, system, and non-transitory computer readable medium for detecting time difference

A method, a system, and a non-transitory computer readable medium for detecting time difference include a transmitting device and a receiving device being in time synchronization; an oscilloscope detecting a time difference generated thereof to obtain a first time difference; the transmitting device generating a first system time, based on the first system time, generating a first image, and transmitting the first image to a display to generate a second time difference; an image capturing device obtaining the first image from the display and generating a first signal, to generate a third time difference; the receiving device receiving the first signal to generate a fourth time difference, and obtaining the first system time according to the first signal and generating a second system time when obtaining the first system time, and to generate a fifth time difference.