NTCG104LH473HT1 belongs to the category of thermistors and is commonly used for temperature sensing and compensation in various electronic devices. This thermistor exhibits high accuracy, stability, and reliability, making it suitable for a wide range of applications. The package includes a small, compact component that can be easily integrated into electronic circuits. It is available in various packaging options and quantities to suit different manufacturing requirements.
The NTCG104LH473HT1 features a standard SMD pin configuration with two terminals for easy integration into circuit boards. The datasheet provides detailed information on the pinout and recommended PCB layout for optimal performance.
Advantages: - High accuracy and stability - Wide operating temperature range - Compact and versatile packaging options
Disadvantages: - Limited precision in extreme temperature conditions - Sensitivity to external thermal influences
The NTCG104LH473HT1 operates based on the negative temperature coefficient (NTC) principle, where its resistance decreases as the temperature increases. This characteristic allows it to accurately sense and compensate for temperature changes in electronic circuits.
The NTCG104LH473HT1 is widely used in various applications, including: - Consumer Electronics: Temperature monitoring in smartphones, laptops, and home appliances. - Automotive: Thermal management systems, battery temperature monitoring. - Industrial Control: HVAC systems, power supplies, and motor control.
In conclusion, the NTCG104LH473HT1 thermistor offers high-performance temperature sensing and compensation capabilities, making it an ideal choice for a wide range of electronic applications.
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What is NTCG104LH473HT1?
What are the typical applications of NTCG104LH473HT1?
What is the resistance-temperature characteristic of NTCG104LH473HT1?
What is the operating temperature range of NTCG104LH473HT1?
How does NTCG104LH473HT1 compare to other NTC thermistors?
Can NTCG104LH473HT1 be used for temperature compensation in electronic circuits?
What are the key considerations when designing with NTCG104LH473HT1?
Is NTCG104LH473HT1 suitable for automotive applications?
Are there any specific soldering or handling precautions for NTCG104LH473HT1?
Where can I find detailed technical specifications and application notes for NTCG104LH473HT1?