The NTCS0402E3683HHT belongs to the category of surface mount NTC thermistors.
It is commonly used for temperature sensing and compensation in various electronic devices and circuits.
The NTCS0402E3683HHT is typically available in a 0402 package, which is a small surface mount package suitable for compact electronic designs.
This thermistor is essential for precise temperature measurement and control in electronic applications.
The NTCS0402E3683HHT is usually supplied in tape and reel packaging with quantities varying based on manufacturer specifications.
The NTCS0402E3683HHT has two terminals for surface mount soldering onto a PCB. The pin configuration is as follows: ```
| | | ● | |_______| ```
The NTCS0402E3683HHT operates based on the principle of the change in resistance with temperature. As the temperature changes, the resistance of the thermistor varies, allowing it to accurately sense and compensate for temperature fluctuations in electronic circuits.
The NTCS0402E3683HHT finds extensive use in various applications, including: - Consumer electronics - Automotive systems - Industrial automation - Medical devices - HVAC systems
Some alternative models to the NTCS0402E3683HHT include: - NTCS0402E3104FXT: Similar characteristics with a different resistance value - NTCS0402E3472GXT: Higher resistance value with comparable features - NTCS0402E3331KXT: Lower resistance value with similar performance
In conclusion, the NTCS0402E3683HHT is a small yet powerful NTC thermistor that offers high accuracy and reliability in temperature sensing and compensation applications across various industries.
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What is the NTCS0402E3683HHT?
What are the typical applications of NTCS0402E3683HHT?
What is the operating temperature range for NTCS0402E3683HHT?
What is the accuracy of NTCS0402E3683HHT?
What is the power rating of NTCS0402E3683HHT?
Can NTCS0402E3683HHT be used in high humidity environments?
Is NTCS0402E3683HHT RoHS compliant?
What is the thermal time constant of NTCS0402E3683HHT?
Can NTCS0402E3683HHT be used for temperature compensation in battery charging circuits?
Are there any application notes or reference designs available for using NTCS0402E3683HHT in technical solutions?