Home > Catalogue > Resistors > NTC Thermistors> OMRON

NTC Thermistors

Results:
NTC Thermistors Results:
Filter Results: -1/4
Comprehensive
Price Priority
Stock Priority
Image
Part Number
Manufacturer
Description
Availability
Unit Price
Quantity
Operation
E5L-A 0-100
OMRON
Omron , SPDT, +100°C
Quantity: 1
Ship Date: 7-13 working days
1+ $166.2895
- +
x $166.2895
Ext. Price: $166.28
MOQ: 1
Mult: 1
E5L-C 0-100
OMRON
45 X 35 Mm Size, Digital Setting Electronic Thermostat
Quantity: 0
Ship Date: 7-12 working days
1+ $392.7248
- +
x $392.7248
Ext. Price: $392.72
MOQ: 1
Mult: 1
SPQ: 1
E5L-C 100-200
OMRON
45 X 35 Mm Size, Digital Setting Electronic Thermostat
Quantity: 0
Ship Date: 7-12 working days
1+ $392.7248
- +
x $392.7248
Ext. Price: $392.72
MOQ: 1
Mult: 1
SPQ: 1
E5L-A 100-200
OMRON
45 X 35 Mm Size, Analog Setting Electronic Thermostat
Quantity: 0
Ship Date: 7-12 working days
1+ $267.2072
- +
x $267.2072
Ext. Price: $267.20
MOQ: 1
Mult: 1
SPQ: 1

NTC Thermistors

NTC Thermistors Definition:
NTC stands for "Negative Temperature Coefficient," and an NTC thermistor is a type of resistor whose resistance decreases with an increase in temperature. This property is due to the semiconductor material used in their construction, which exhibits a negative temperature coefficient.

Function:
The primary function of an NTC thermistor is to sense and measure temperature changes. It operates by allowing a current to flow through it and measuring the voltage drop across it. As the temperature increases, the resistance decreases, leading to a change in the voltage drop. This change can be calibrated to provide a temperature reading.

Applications:
1. Temperature : Used in various applications to monitor and control temperature, such as in HVAC systems, industrial processes, and automotive engines.
2. Overheat Protection: In devices like batteries and power supplies to prevent damage from excessive heat.
3. Compensation in Sensors: To correct for temperature-induced errors in sensors like pressure and humidity sensors.
4. Inrush Current Limiting: In power circuits to limit the initial surge of current when a device is powered on.
5. Temperature Compensation in Electronic Circuits: To maintain stability and accuracy in electronic devices over a range of temperatures.

Selection Criteria:
1. Temperature Range: Choose a thermistor that can operate within the temperature range of the application.
2. Accuracy: Consider the required accuracy of the temperature measurement.
3. Sensitivity: The rate at which the resistance changes with temperature should be suitable for the application's sensitivity needs.
4. Stability: Look for thermistors with long-term stability to ensure consistent performance over time.
5. Response Time: Depending on the application, a faster or slower response time may be necessary.
6. Size and Shape: The physical dimensions should fit within the design constraints of the device.
7. Cost: Consider the budget and the cost-effectiveness of the thermistor for the intended application.
8. Reliability: Ensure the thermistor is from a reputable manufacturer and has a proven track record of reliability.

NTC thermistors are a versatile and cost-effective solution for temperature sensing and control in a wide range of applications, making them an essential component in many modern devices and systems.
Please refer to the product rule book for details.