The NTCLE100E3202HB0 is a thermistor belonging to the category of temperature sensors. It is commonly used for temperature measurement and control in various electronic devices and systems. This entry provides an overview of the product, including its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The NTCLE100E3202HB0 has a radial leaded package with two leads. The pin configuration is as follows: - Pin 1: Connected to one end of the thermistor element - Pin 2: Connected to the other end of the thermistor element
The NTCLE100E3202HB0 operates based on the principle of negative temperature coefficient (NTC) thermistors. As the temperature changes, the resistance of the thermistor varies inversely. This change in resistance is used to measure the temperature in the surrounding environment.
The NTCLE100E3202HB0 finds applications in various fields, including: - Home appliances: Used in refrigerators, air conditioners, and water heaters for temperature control - Automotive: Employed in engine temperature monitoring and climate control systems - Industrial equipment: Integrated into temperature monitoring and regulation systems for machinery and processes - Consumer electronics: Utilized in smart devices for temperature sensing and control
Some alternative models to the NTCLE100E3202HB0 include: - NTCLE100E3103JB0: Similar characteristics with different resistance values - NTCLE100E3472JB0: Higher resistance and tighter tolerance for more precise applications - NTCLE100E3222JB0: Lower resistance and wider operating temperature range
In conclusion, the NTCLE100E3202HB0 is a versatile thermistor with wide-ranging applications due to its high sensitivity, compact size, and cost-effectiveness. While it may have limitations in precision, its reliability and performance make it a popular choice for temperature sensing and control in diverse electronic systems.
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What is the NTCLE100E3202HB0 used for?
What is the operating temperature range of NTCLE100E3202HB0?
How does NTCLE100E3202HB0 work as a temperature sensor?
What are the typical applications of NTCLE100E3202HB0 in technical solutions?
What is the resistance value at 25°C for NTCLE100E3202HB0?
Can NTCLE100E3202HB0 be used for temperature compensation in electronic circuits?
Is NTCLE100E3202HB0 suitable for surface mount applications?
What are the key advantages of using NTCLE100E3202HB0 in technical solutions?
Does NTCLE100E3202HB0 require calibration for accurate temperature measurement?
Are there any specific precautions to consider when integrating NTCLE100E3202HB0 into a technical solution?