NTC Thermistors: Understanding Resistor and Resistance Temperature Device
Applications of NTC Thermistor:
- Resistance at 25 degrees C: 10K +- 1%
- B-value (material constant) = 3950+- 1%
- Dissipation factor (loss-rate of energy of a mode of oscillation) δ th = (in air) approx.7.5mW/K
- Thermal cooling time constant <= (in air) 20 seconds
- Come with broad resistance range
- Provided with lacquer-coated thermistor disk
- Thermistors
- Resistance Temperature Device (RTD):
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Introduction to NTC Thermistor 10K Ohm :
Introducing the NTC Thermistor 10K Ohm, a crucial component in temperature sensing applications. This thermistor, also known as a Resistance Temperature Device (RTD), plays a vital role in electronic circuits where accurate temperature measurement is essential.
Resistor: – EG0037
Resistors are fundamental electronic components that restrict the flow of electric current. They are crucial in controlling voltage levels, limiting current, and adjusting signal levels within circuits. Resistor values are measured in ohms (Ω), and they come in various types including fixed and variable resistors.
Thermistors:
Thermistors are specialized resistors whose resistance varies significantly with temperature changes. They are used for temperature sensing and compensation in electronic circuits. Thermistors can be categorized into NTC (Negative Temperature Coefficient) and PTC (Positive Temperature Coefficient) types based on how their resistance changes with temperature.
Resistance Temperature Device (RTD):
An RTD, also known as a resistance temperature detector, is a type of temperature sensor that operates on the principle that the resistance of a metal increases with temperature. RTDs provide highly accurate temperature measurements over a wide range and are commonly used in industrial and scientific applications where precision is essential.
NTC (Negative Temperature Coefficient) Thermistor:
An NTC thermistor is a type of thermistor where the resistance decreases as the temperature increases. This characteristic makes it suitable for applications requiring temperature measurement and compensation, such as in automotive, HVAC systems, and consumer electronics.
Thermistor Use:
Thermistors find extensive use in various electronic devices and systems for temperature monitoring, thermal protection, and temperature control. Their sensitivity to temperature changes allows for precise regulation in applications ranging from medical devices to industrial equipment and environmental sensors.
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