The PTCTT95R100GTE is a specialized electronic component designed for use in various applications. This entry provides an in-depth overview of the product, including its category, use, characteristics, package, essence, packaging/quantity, specifications, detailed pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models.
The PTCTT95R100GTE has a standard SMD pin configuration with two terminals for surface mounting onto PCBs.
The PTCTT95R100GTE operates based on the positive temperature coefficient (PTC) effect of certain materials. When subjected to overcurrent conditions, the thermistor's resistance increases, limiting the current flow and protecting the circuit. Once the fault is removed, the thermistor returns to its low-resistance state, allowing normal operation to resume.
The PTCTT95R100GTE is suitable for a wide range of applications, including: - Battery Protection Circuits - Power Supply Units - Motor Control Systems - Automotive Electronics - Industrial Equipment
For applications requiring different specifications or form factors, alternative models to consider include: - PTCTT120R200GTE: Higher trip current rating for heavy-duty applications. - PTCTT60R50GTE: Lower resistance and hold current for more sensitive circuits. - PTCTT95R100GTB: Through-hole mount version for compatibility with traditional PCB designs.
In conclusion, the PTCTT95R100GTE offers reliable overcurrent protection with self-resetting capabilities, making it a versatile choice for various electronic systems.
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What is PTCTT95R100GTE?
How is PTCTT95R100GTE used in technical solutions?
What is the operating temperature range of PTCTT95R100GTE?
What are the typical applications of PTCTT95R100GTE?
How does PTCTT95R100GTE function as an overcurrent protection device?
Can PTCTT95R100GTE be used for temperature compensation?
What are the advantages of using PTCTT95R100GTE over other types of thermistors?
Are there any limitations to consider when using PTCTT95R100GTE?
How can PTCTT95R100GTE be integrated into a circuit?
Where can PTCTT95R100GTE be sourced from?