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Invert the low & high range limits for the measurement input settings
Flip tool with current settings to swap measurement input (I) with 0-10V output parameters
Featured 0 to 10 volts dc signal products
DMP331P Hygienic Flush Pressure Transmitter - Sanitary pressure sensor wth exposed diaphragm with no crevices for high temperatures up to 300 Degrees Celsius in ranges from 100mb up to 40 bar gauge or absolute
DMP343 Low Range Pneumatic Pressure Sensor - DMP343 pneumatic pressure sensor for measuring very low range pressures on pneumatic control systems, heating, ventilation and air conditioning systems (HVAC) .
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User Guide
This measurement to voltage converter tool will convert any linear input measurement reading into the ideal voltage output signal over a linear range of 0 to 10 volts, and display a 0-10V conversion scale for the chosen measurement range.
Formula
This tool uses the following formula to calculate the output over a 0-10V scale from a specified measurement input reading and range:
Linear V out = 10 x ((Rdg – Low Limit) / (High Limit – Low Limit))
Parameters
Measurement Unit
Enter the measurement unit symbol or description for the input value and range specified.
Measurement Reading
Add the measurement parameter value in the specified measurement unit you wish to convert.
Lowest Measurement
Enter the lower limit for the measurement range to be converted. For example zero would be a typical value for most instrumentation but you can also add negative (-) or positive (+) values as well. Please enter the value in the same units as specified for all other input values.
Highest Measurement
Enter the upper limit for the measurement range to be converted, e.g. full scale or full range. This value can be negative (-) or positive (+). Please enter the value in the same units as specified for all other input values.
Voltage Output Signal (0-10V) – Answer
This is the ideal converted signal for the input measurement range specified, and represents the ideal output reading excluding all measurement and instrumentation errors. The calculated result is displayed in volts (V) based on a linear 0 to 10 V scaling.
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