The NTCLE100E3474JT1 belongs to the category of thermistors.
It is commonly used for temperature sensing and compensation in various electronic devices and systems.
The NTCLE100E3474JT1 is typically available in a small, surface-mount package.
This thermistor is essential for maintaining accurate temperature measurements in electronic circuits and systems.
It is commonly supplied in reels containing a specific quantity, typically 1000 units per reel.
The NTCLE100E3474JT1 features two terminals for connection, with the resistance value varying between these terminals based on the temperature.
The NTCLE100E3474JT1 operates based on the principle of negative temperature coefficient, where its resistance decreases as the temperature increases. This property enables it to accurately sense and measure temperature changes within electronic systems.
The NTCLE100E3474JT1 finds extensive use in various applications, including: - Temperature Monitoring: Used in electronic devices to monitor and regulate temperature. - Thermal Management Systems: Integrated into thermal management systems for efficient heat dissipation. - Automotive Electronics: Utilized in automotive electronics for temperature compensation and control.
Some alternative models to the NTCLE100E3474JT1 include: - NTCLE100E3103JB0: Similar thermistor with a different resistance value - NTCLE100E3222JB0: Alternative model with a slightly lower resistance at 25°C - NTCLE100E3102JB0: Another option with a different resistance value for varied applications
In conclusion, the NTCLE100E3474JT1 thermistor offers high accuracy and stability in temperature sensing, making it a valuable component in various electronic systems and devices.
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Sure, here are 10 common questions and answers related to the application of NTCLE100E3474JT1 in technical solutions:
What is the NTCLE100E3474JT1?
What is the typical application of NTCLE100E3474JT1?
What is the resistance value of NTCLE100E3474JT1 at room temperature?
How does NTCLE100E3474JT1 behave with changes in temperature?
What is the operating temperature range of NTCLE100E3474JT1?
Can NTCLE100E3474JT1 be used for temperature compensation in power supplies?
Is NTCLE100E3474JT1 suitable for battery pack temperature monitoring?
What are the key considerations when designing a circuit with NTCLE100E3474JT1?
Can NTCLE100E3474JT1 be used in automotive applications?
Are there any specific soldering or handling precautions for NTCLE100E3474JT1?
I hope these questions and answers provide a good overview of the application of NTCLE100E3474JT1 in technical solutions. Let me know if you need further information on any specific aspect!