The NTCLE100E3104HB0 belongs to the category of thermistors and is commonly used for temperature sensing applications. This thermistor exhibits characteristics such as high sensitivity to temperature changes, a small package size, and a wide operating temperature range. It is typically available in a standard package and is sold in quantities suitable for various industrial and consumer applications.
The NTCLE100E3104HB0 features a radial leaded package with two leads. The pin configuration is as follows: 1. Lead 1: Connected to one end of the thermistor element 2. Lead 2: Connected to the other end of the thermistor element
Advantages: - High sensitivity enables precise temperature measurements - Small package size facilitates space-constrained designs - Wide operating temperature range enhances versatility
Disadvantages: - Limited tolerance may require additional calibration in some applications - Non-linear response characteristic may necessitate compensation in certain systems
The NTCLE100E3104HB0 operates based on the principle of negative temperature coefficient (NTC) thermistors. As the temperature changes, the resistance of the thermistor varies inversely. This property allows it to be utilized for accurate temperature measurement and control in electronic circuits and systems.
The NTCLE100E3104HB0 finds extensive application in various fields, including: - Temperature monitoring and control in industrial equipment - Thermal management in consumer electronics - HVAC systems for climate control - Automotive temperature sensing and regulation
This comprehensive range of alternative models provides flexibility in selecting the most suitable thermistor for specific application needs.
In conclusion, the NTCLE100E3104HB0 thermistor offers high sensitivity, compact design, and wide temperature range, making it an ideal choice for diverse temperature sensing applications across various industries.
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What is the NTCLE100E3104HB0 used for?
What is the temperature range of the NTCLE100E3104HB0?
How does the NTCLE100E3104HB0 work?
What are the typical applications of the NTCLE100E3104HB0?
What is the accuracy of the NTCLE100E3104HB0?
How should the NTCLE100E3104HB0 be connected in a circuit?
Can the NTCLE100E3104HB0 be used in harsh environments?
What are the key considerations when designing with the NTCLE100E3104HB0?
Does the NTCLE100E3104HB0 require calibration?
Where can I find detailed specifications and application notes for the NTCLE100E3104HB0?