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#Voltage to temperature conversion manual#
NTC 10K Thermistor: -40-+150℃, NTC 100K Thermistor: -20-+150℃Ġ-10VDC If 0-10V output is required, please short-circuit S2 wielding pad.ġ Unit x Original NTC Thermistor to Voltage 10k NTC to 0-10V 0-5V Linearity Converterġ Set x Professional user manual (English version)Ĭonfirm your quantity->Click Button" Add to cart" -> then Button "View cart"->go next step accordingly NTC Thermistor to 0-10V 0-5V Signal Converter Module Temperature Measured Calculation Formulaġ0K NTC input: (Output voltage V/Accuracy) -40℃ = Temperature measured value (℃)ġ00K NTC input: (Output voltage V/Accuracy) -20℃ = Temperature measured value (℃).NTC 10K (B value: 3435K), 100K (B value: 3950) ThermistorĠ-5VDC (default output) wielding pad S2 is in open-circuitĠ-10VDC If 0-10V output is required, please short-circuit S2 soldering pad.

NTC Thermistor to Voltage Converter Parameters Terms Temperature sensor or meters signal output monitoring.Industrial meters and instruments integration.Temperature monitoring and controlling in industrial site.10K or 100K NTC Thermistor to voltage signal conversion and transmission.Industrial operating temperature range: -20-+65℃.High accuracy, high efficiency, linearity conversion.The designer may choose a high-performance reference with an initial accuracy of ☐.05 and a very low temperature coefficient of ±5 ppm/☌. Small size, low cost, integrated circuit. Consider an application that requires a voltage reference to have a total accuracy over temperature range of ☐.1.6 pins PCB-mount module, 9-24V wide range power supply, easy to do further integration. It converts NTC temperature signal input in proportional to voltage signal output. The Thermistor is rated at 100kΩ at +25☌, ☐.2☌ from 0☌ to +70☌.BRT NTC-V NTC Thermistor to voltage signal converter is a low cost high linear 100K NTC or 10K NTC to 0-10V or 0-5V signal conversion module. There are temperature sensors around with a digital interface, so you might have to do no conversion at all or have to calculate a strange polynomial function to get to the. Every sensor will be different and every will come with its own specification. This Thermistor is manufactured by BetaTHERM, P/N 100K6A1 (other manufacturers of acceptable replacements are listed in the Other Part Numbers of Interest Offset voltage: 0.5V and Output scaling: 10mV/☌. Thus, the module high-level output potential is the field Thermocouple temperature and NOT the difference between the field temperature and Inside the module, this slope is modified to match the thermocouple type's Seebeck Coefficient (at+25☌) which offsets the effect of the thermocouple to backplane In absence of details I assume that you are trying to convert voltage readings from a temperature sensor to temperature in Celsius. A nonlinear current is used to develop a linear voltage potential which is input to the modules X+ SCM7B47 Module values used in Equation 2 are shown in the following table:Ī negative temperature coefficient Thermistor is used as the SCM7B CJC sense element in a voltage divider configuration. M = (Module Output Volt Span) / (Input Temp Span)

Temperature = (V OUT Pedestal) / M + T LOW The conversion method is illustrated with an example. However, unlike the SCM7B37 Modules, the module output voltage is a linear representation (Y = M X + B) of the input temperature.
#Voltage to temperature conversion series#
This is readily done with the SCM7B47 series because, like the SCM7B37 Modules, Cold Junction Compensation (CJC) is incorporated into the module and When the SCM7B47 thermocouple modules are used to measure temperature, the measured output voltage is also often converted back to temperature. ITS-90 characteristics were used to calculate. SCM7B37 Module values used in Equation 1 are shown in the following table. (referenced to a 0☌ CJC temperature, which is the case as long as the thermocouple-backpanel junction is within the specified CJC ambient range). To thermocouple temperature in your application programs thermocouple looktable
