Allicdata Part #: | DC95F232WN-ND |
Manufacturer Part#: |
DC95F232WN |
Price: | $ 2.28 |
Product Category: | Sensors, Transducers |
Manufacturer: | Amphenol Advanced Sensors |
Short Description: | THERM NTC 2.252KOHM 3969K BEAD |
More Detail: | NTC Thermistor 2.252k Bead |
DataSheet: | DC95F232WN Datasheet/PDF |
Quantity: | 1000 |
1000 +: | $ 2.06451 |
Specifications
Series: | DC95 |
Packaging: | Bulk |
Part Status: | Active |
Resistance in Ohms @ 25°C: | 2.252k |
Resistance Tolerance: | ±0.2°C |
B Value Tolerance: | -- |
B0/50: | -- |
B25/50: | -- |
B25/75: | -- |
B25/85: | 3969K |
B25/100: | -- |
Operating Temperature: | -80°C ~ 150°C |
Power - Max: | 75mW |
Length - Lead Wire: | 1.50" (38.00mm) |
Mounting Type: | Free Hanging |
Package / Case: | Bead |
Description
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Temperature Sensors - NTC Thermistors NTC thermistors are thermally sensitive resistors whose resistance decreases as temperature increases. They are widely used in applications that require temperature measurements and temperature control. The DC95F232WN is a type of NTC thermistor used in a variety of applications. It is integrated with a low-temperature coefficient of resistance (TCR) to enable accurate temperature measurement and control in various environmental conditions. DefinitionThe DC95F232WN is a TCR of 0.8% NTC thermistor. It is a high-precision, low-temperature coefficient of resistance (TCR) thermistor designed to measure temperatures over a range of -25 to 85 °C. It is particularly well-suited for applications such as temperature control, temperature compensation, and current-sensing. It is also suitable for measuring cold temperatures in refrigeration applications. The DC95F232WN is also an unencapsulated NTC thermistor, making it mechanically robust and resistant to temperature and humidity-related degradation.Physical CharacteristicsThe DC95F232WN is a cylindrical, unencapsulated thermistor with a 5 mm diameter body. The body is insulated with a polyimide layer. It is composed of a negative temperature coefficient (NTC) material with a resistance that decreases as temperature increases. The resistance of the DC95F232WN varies significantly over its operating temperature range, and the overall resistance of the thermistor decreases linearly with increasing temperature. It has an average power rating of 0.12 W. Applications and UsesThe DC95F232WN is a suitable thermistor for general-purpose temperature measurement and temperature control applications. It is designed for use in high-accuracy temperature measurement, temperature compensation, current sensing, and temperature control applications. The DC95F232WN thermistor is suitable for use in automatic air conditioning systems, industrial-grade process controllers, thermal printing systems, refrigeration systems, medical systems. It can also be used for medical equipment, automotive applications, food safety control systems, and custom designs.Working PrincipleThe DC95F232WN thermistor works on the principle of NTC (negative temperature coefficient) technology. It has a low temperature coefficient of resistance (TCR) and its resistance decreases as the temperature increases. This makes it an ideal choice for accurate temperature measurement and control. When the DC95F232WN is subjected to a change in temperature, the resistance of the thermistor changes accordingly. This resistance change can be used to measure the temperature of the environment with the help of a Wheatstone bridge circuit. The resistance of the DC95F232WN is determined by the thermal expansion of the semiconductor material in the thermistor. ConclusionThe DC95F232WN is a type of NTC thermistor designed for use in applications that require accurate temperature measurement and control. It is designed with a low temperature coefficient of resistance (TCR), making it suitable for a variety of applications, from air conditioning systems to refrigeration systems. The DC95F232WN thermistor works on the principle of NTC technology, where its resistance decreases as the temperature increases. This makes it ideal for temperature-sensitive applications that require accurate temperature measurements and precise temperature control.The specific data is subject to PDF, and the above content is for reference
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