The TBU-KE040-200-WH is a versatile electronic component designed for use in various applications. This entry provides an in-depth overview of the product, including its category, basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
Category: Electronic Component
Use: Overvoltage Protection
Characteristics: Fast response time, high surge current capability
Package: Surface Mount Device (SMD)
Essence: Protects sensitive electronic circuits from overvoltage events
Packaging/Quantity: Tape and Reel, 3000 units per reel
The TBU-KE040-200-WH features a compact SMD package with a specific pin configuration: - Pin 1: Input/Anode - Pin 2: Output/Cathode
Advantages: - Effective protection against overvoltage events - Fast response time - RoHS compliant
Disadvantages: - Limited to specific voltage and current ratings - Requires careful consideration of placement in circuit design
The TBU-KE040-200-WH utilizes a solid-state technology known as a Thyristor-Based Surge Protection Device (TBU). When an overvoltage event occurs, the TBU triggers and provides a low-impedance path to divert excess energy away from sensitive components, thereby protecting them from damage.
The TBU-KE040-200-WH is suitable for a wide range of applications, including: - Industrial control systems - Telecommunications equipment - Power supplies - Automotive electronics - Consumer electronics
For applications requiring different voltage or current ratings, alternative models include: - TBU-KE060-300-WH (60V, 300A) - TBU-KE080-400-WH (80V, 400A) - TBU-KE100-500-WH (100V, 500A)
In summary, the TBU-KE040-200-WH offers reliable overvoltage protection with fast response times and high surge current capability. Its compact SMD package makes it suitable for various electronic applications, and alternative models provide flexibility for different requirements.
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What is TBU-KE040-200-WH?
What are the typical applications of TBU-KE040-200-WH?
How does TBU-KE040-200-WH protect against voltage transients?
What is the maximum voltage and current rating of TBU-KE040-200-WH?
Can TBU-KE040-200-WH be used in automotive applications?
Is TBU-KE040-200-WH compatible with PoE (Power over Ethernet) applications?
Does TBU-KE040-200-WH require external power for operation?
What is the response time of TBU-KE040-200-WH to transient events?
Can TBU-KE040-200-WH be used in industrial control systems?
Are there any specific layout or installation considerations for TBU-KE040-200-WH?