NTCLG100XX203JB belongs to the category of NTC thermistors and is commonly used for temperature sensing and compensation. These thermistors are characterized by their small size, high sensitivity, and reliability. They are typically packaged in a ceramic casing and are available in various quantities per package.
The NTCLG100XX203JB has a resistance value of 20kΩ at 25°C with a tolerance of ±5%. It operates within a temperature range of -40°C to 125°C.
The detailed pin configuration of NTCLG100XX203JB includes two leads for connection, typically labeled as "A" and "B".
NTCLG100XX203JB operates based on the principle of negative temperature coefficient (NTC), where its resistance decreases as the temperature increases. This characteristic makes it suitable for temperature sensing and compensation applications.
NTCLG100XX203JB finds extensive use in various industries such as automotive, consumer electronics, HVAC systems, and industrial automation. In automotive applications, it is utilized for temperature monitoring in engine management systems. In consumer electronics, it is employed for temperature compensation in battery charging circuits. HVAC systems utilize it for temperature control, while industrial automation relies on it for process temperature monitoring.
Some alternative models to NTCLG100XX203JB include NTC thermistors from manufacturers such as Murata, Vishay, and EPCOS. These alternatives offer similar temperature sensing and compensation capabilities with variations in size, resistance values, and tolerances to suit different application requirements.
In conclusion, NTCLG100XX203JB is a reliable and sensitive NTC thermistor suitable for temperature sensing and compensation in various industries. Its small size, high sensitivity, and wide operating temperature range make it a versatile choice for temperature monitoring and control applications.
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What is the NTCLG100XX203JB used for in technical solutions?
What is the temperature range of the NTCLG100XX203JB?
What is the resistance value of the NTCLG100XX203JB at room temperature?
How does the NTCLG100XX203JB behave with changes in temperature?
Can the NTCLG100XX203JB be used for over-temperature protection?
What are some common applications of the NTCLG100XX203JB in technical solutions?
Is the NTCLG100XX203JB suitable for high-precision temperature measurements?
Does the NTCLG100XX203JB require any special handling or mounting considerations?
Can the NTCLG100XX203JB be used in harsh environmental conditions?
Are there any alternative thermistors that can be considered alongside the NTCLG100XX203JB for similar applications?