The NTCLE300E3302SB 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, compact packaging, and a wide operating temperature range. It is typically available in small packages and can be used in various electronic devices and systems.
The NTCLE300E3302SB thermistor has the following specifications: - Resistance at 25°C: 33 kΩ - Tolerance: ±1% - Operating Temperature Range: -40°C to 125°C - Maximum Power Rating: 50 mW - Thermal Time Constant: 10 seconds (maximum)
The NTCLE300E3302SB thermistor features a standard two-pin configuration, with one pin connected to each end of the thermistor element. The pinout 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 NTCLE300E3302SB operates based on the principle of negative temperature coefficient (NTC) thermistors. As the temperature changes, the resistance of the thermistor varies inversely, allowing for accurate temperature measurement and control in electronic circuits.
The NTCLE300E3302SB thermistor finds application in various fields, including but not limited to: - Temperature monitoring and control in consumer electronics - Thermal management in automotive systems - Industrial process control and monitoring - Medical equipment for temperature sensing
Some alternative models to the NTCLE300E3302SB thermistor include: - NTCLE100E3103JB0: Similar characteristics with a different resistance value - NTCLE203E3103SB0: Higher power rating and tighter tolerance - NTCLE400E3103SB0: Lower thermal time constant and wider operating temperature range
In conclusion, the NTCLE300E3302SB thermistor offers high sensitivity and a wide operating temperature range, making it suitable for various temperature sensing applications across different industries.
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What is the NTCLE300E3302SB?
What is the operating temperature range of NTCLE300E3302SB?
What are the typical applications of NTCLE300E3302SB?
What is the resistance at 25°C for NTCLE300E3302SB?
How does NTCLE300E3302SB behave with changes in temperature?
Can NTCLE300E3302SB be used for over-temperature protection?
What are the key advantages of using NTCLE300E3302SB in technical solutions?
Is NTCLE300E3302SB suitable for automotive applications?
What are the recommended soldering and handling precautions for NTCLE300E3302SB?
Where can I find detailed technical specifications for NTCLE300E3302SB?