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TISP4300M3BJR-S

TISP4300M3BJR-S

Product Overview

The TISP4300M3BJR-S belongs to the category of overvoltage protection devices and is commonly used in electronic circuits to safeguard against transient voltage spikes. This device exhibits characteristics such as high surge current capability, low capacitance, and fast response time. It is typically packaged in a small form factor and is available in various packaging options, with different quantities per package.

Specifications

  • Surge Current Capability: [Insert value]
  • Capacitance: [Insert value]
  • Response Time: [Insert value]

Detailed Pin Configuration

The TISP4300M3BJR-S features a [number of pins] pin configuration, with each pin serving a specific function in the device's operation. A detailed pinout diagram is provided in the datasheet for reference.

Functional Features

This overvoltage protection device offers robust protection against transient voltage events by diverting excessive energy away from sensitive components. It is designed to quickly respond to voltage surges and limit the impact of transient events on the circuitry.

Advantages and Disadvantages

Advantages

  • High surge current capability
  • Low capacitance for minimal impact on signal integrity
  • Fast response time for rapid protection

Disadvantages

  • [Insert any identified disadvantages]

Working Principles

The TISP4300M3BJR-S operates based on the principles of avalanche breakdown and crowbar protection. When a transient voltage spike occurs, the device conducts excess current to ground, preventing it from reaching the protected circuitry.

Detailed Application Field Plans

This overvoltage protection device finds extensive application in various fields, including telecommunications, industrial equipment, consumer electronics, and automotive systems. It is commonly employed in interface protection circuits, power supply units, and communication lines to ensure reliable operation in the presence of voltage transients.

Detailed and Complete Alternative Models

  • TISP4180M3BJR-S
  • TISP4240M3BJR-S
  • [Insert additional alternative models]

In conclusion, the TISP4300M3BJR-S serves as a crucial component in safeguarding electronic circuits against transient voltage events, offering high surge current capability, low capacitance, and fast response time. Its versatile application and availability of alternative models make it a preferred choice for overvoltage protection in diverse electronic systems.

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רשום 10 שאלות ותשובות נפוצות הקשורות ליישום של TISP4300M3BJR-S בפתרונות טכניים

  1. What is the TISP4300M3BJR-S?

    • The TISP4300M3BJR-S is a silicon voltage suppressor designed to protect sensitive electronics from voltage transients induced by lightning, inductive load switching, and electrostatic discharge.
  2. What is the maximum working voltage of the TISP4300M3BJR-S?

    • The maximum working voltage of the TISP4300M3BJR-S is 300V.
  3. What is the typical clamping voltage of the TISP4300M3BJR-S?

    • The typical clamping voltage of the TISP4300M3BJR-S is 470V at 1A.
  4. What are some common applications for the TISP4300M3BJR-S?

    • Common applications for the TISP4300M3BJR-S include telecommunications equipment, industrial control systems, and power supplies.
  5. What is the maximum surge current capability of the TISP4300M3BJR-S?

    • The TISP4300M3BJR-S has a maximum surge current capability of 100A (8/20 µs).
  6. What is the operating temperature range of the TISP4300M3BJR-S?

    • The operating temperature range of the TISP4300M3BJR-S is -40°C to 125°C.
  7. Is the TISP4300M3BJR-S RoHS compliant?

    • Yes, the TISP4300M3BJR-S is RoHS compliant.
  8. What is the package type of the TISP4300M3BJR-S?

    • The TISP4300M3BJR-S comes in a SMB (DO-214AA) package.
  9. Does the TISP4300M3BJR-S require external components for operation?

    • No, the TISP4300M3BJR-S does not require external components for operation.
  10. What are the key benefits of using the TISP4300M3BJR-S in technical solutions?

    • The TISP4300M3BJR-S offers robust overvoltage protection, low capacitance, and fast response time, making it ideal for safeguarding sensitive electronics in various technical solutions.