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An accelerometer, a sensor that represents acceleration as a voltage, comes in two axial types. The most common accelerometer measures acceleration along only a single axis. This type is often used to ...

There are three types of bridge configurations: quarter-bridge, half-bridge, and full-bridge. The number of active element legs in the Wheatstone bridge determines the kind of bridge configuration. Configuration ...

The following table lists common platinum RTD types and standards. All of these RTD types are supported in NI-DAQmx. Notice that there are some shared standards. The TCR and the Callendar-Van Dusen coefficients ...

The resolution and device range of a measurement device determine the smallest detectable change, called the code width, in the input signal. The smaller your code width, the more accurate your measurements ...

The type of input signal source (grounded or floating) and the configuration of the measurement system (differential, single-ended, pseudodifferential) determine how you connect signals to measurement ...

Devices use either multiplexed or simultaneous sampling. Simultaneous sampling devices have an ADC for each analog channel and can sample from all channels at the same time, as shown in the following figure. ...

Use the following guidelines to name your channels, tasks, and scales: Use any alphanumeric characters. Do not use nonalphanumeric characters with the following exceptions: In NI-DAQmx 7.4 or later, dashes ...

Raw data is in the native format and organization of the device, read directly from the device or buffer without scaling or reordering. The native format of a device can be an 8-, 16-, or 32-bit integer, ...

Generating the same data more than once is called regeneration. You can configure NI-DAQmx to allow or disallow regeneration by setting the Regeneration Mode attribute/property. By default, NI-DAQmx allows ...

Requirement I/O needs to be hardware-timed. All output values need to simultaneously update at the arrival of the sample clock edge. The application uses the Timed Loop. Solution Use the DAQmx Create Timing ...

Adjusts the external calibration constants for an NI 9215 device. LabVIEW NXG does not support FPGA devices Not supported in VIs that run in a web application DAQmx Adjust 9215 Calibration.vi :/lvdaqmx.chm::/DAQmx ...

Creates channel(s) that use a Wheatstone bridge to measure pressure. Use this instance with sensors, whose specifications do not provide a polynomial for scaling, or a table of electrical and physical ...

Creates channel(s) to duty cycle of a digital pulse. Connect the input signal to the default input terminal of the counter, unless you select a different input terminal. With the exception of devices that ...

Adjusts the external calibration offset constants for an NI 9209 device. LabVIEW NXG does not support FPGA devices Not supported in VIs that run in a web application DAQmx Adjust 9209 Offset Calibration.vi ...

Adjusts the external calibration constants for an NI 9211 device. LabVIEW NXG does not support FPGA devices Not supported in VIs that run in a web application DAQmx Adjust 9211 Calibration.vi :/lvdaqmx.chm::/DAQmx ...

Performs external calibration adjustment on a DSA device with the specified gain and coupling configuration. LabVIEW NXG does not support FPGA devices Not supported in VIs that run in a web application ...

Adjusts the external calibration constants for the analog output section of a DSA device. You must use the device to generate a high voltage and low voltage at a specified gain, measure the high and low ...

Adjusts the external calibration constants for an M Series device. You must connect a known voltage to the device and specify that voltage with reference voltage. LabVIEW NXG does not support FPGA devices ...

Creates channel(s) that use a Wheatstone bridge to measure force or load. Use this instance with sensors whose specifications provide a table of electrical values and the corresponding physical values. ...

Creates channel(s) that use an IEPE force sensor to measure force or load. LabVIEW NXG does not support FPGA devices Not supported in VIs that run in a web application DAQmx Create Channel (AI-Force-IEPE ...

Creates channels to measure two-dimensional strain using a rosette strain gage. LabVIEW NXG does not support FPGA devices Not supported in VIs that run in a web application DAQmx Create Channel (AI-Strain-Rosette ...

Configures the expiration states for an analog watchdog timer task. The DAQmx Watchdog properties contain additional watchdog timer configuration options. LabVIEW NXG does not support FPGA devices Not ...

Configures the expiration states for a digital watchdog timer task. The DAQmx Watchdog properties contain additional watchdog timer configuration options. LabVIEW NXG does not support FPGA devices Not ...

Creates a channel that uses an angular encoder to measure angular position. With the exception of devices that support multi-counter tasks, you can create only one counter input channel at a time with ...

Creates a channel that uses a linear encoder to measure linear velocity. With the exception of devices that support multi-counter tasks, you can create only one counter input channel at a time with this ...

Computes a set of coefficients for a polynomial that approximates the inverse of the polynomial with the coefficients you specify with the coefficients input. This VI generates a table of x versus y values ...

Associates TEDS information with the physical channel you specify. If you do not specify the filename of a data sheet in the virtual TEDS file input, this node attempts to find a TEDS sensor connected ...

Creates channel(s) that use an IEPE force sensor to measure force or load. You must configure the physical channel(s) with TEDS information to use this VI. LabVIEW NXG does not support FPGA devices Not ...

Creates channel(s) that use an RVDT to measure angular position. You must configure the physical channel(s) with TEDS information to use this VI. LabVIEW NXG does not support FPGA devices Not supported ...

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