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P6KA30AHE3/54

P6KA30AHE3/54

Product Overview

Category

The P6KA30AHE3/54 belongs to the category of TVS (Transient Voltage Suppressor) diodes.

Use

It is used for surge protection in various electronic circuits and systems to safeguard against voltage transients and spikes.

Characteristics

  • Low clamping voltage
  • Fast response time
  • High surge current capability

Package

The P6KA30AHE3/54 is available in a DO-15 package.

Essence

This TVS diode provides robust protection against transient overvoltage conditions, ensuring the safety and reliability of electronic devices.

Packaging/Quantity

The P6KA30AHE3/54 is typically packaged in reels or tubes and is available in quantities suitable for production and assembly needs.

Specifications

  • Peak Power Dissipation: 600W
  • Breakdown Voltage: 26.7V to 29.5V
  • Maximum Reverse Standoff Voltage: 24V
  • Operating Temperature Range: -55°C to 175°C
  • RoHS Compliant: Yes

Detailed Pin Configuration

The P6KA30AHE3/54 TVS diode has a standard DO-15 package with two leads. The pin configuration is as follows: - Pin 1: Anode - Pin 2: Cathode

Functional Features

  • Fast response to transient overvoltage events
  • Low clamping voltage to protect downstream components
  • High surge current handling capability

Advantages

  • Robust surge protection for sensitive electronic components
  • Fast reaction time to transient voltage spikes
  • Wide operating temperature range for versatile applications

Disadvantages

  • May require additional circuitry for comprehensive surge protection in complex systems
  • Sensitive to reverse polarity connection

Working Principles

The P6KA30AHE3/54 operates by diverting excessive voltage transients away from sensitive electronic components, thereby limiting the voltage across the protected circuit.

Detailed Application Field Plans

The P6KA30AHE3/54 is commonly used in the following applications: - Power supplies - Communication equipment - Automotive electronics - Industrial control systems - Consumer electronics

Detailed and Complete Alternative Models

  • P6KE30A
  • 1.5KE30A
  • SA30A

In conclusion, the P6KA30AHE3/54 TVS diode offers reliable surge protection for a wide range of electronic applications, with its fast response time and high surge current capability making it an ideal choice for safeguarding sensitive components from transient voltage events.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací P6KA30AHE3/54 v technických řešeních

  1. What is the P6KA30AHE3/54?

    • The P6KA30AHE3/54 is a 600W TVS (transient voltage suppressor) diode designed to protect sensitive electronics from voltage spikes and transients.
  2. What are the typical applications of P6KA30AHE3/54?

    • The P6KA30AHE3/54 is commonly used in surge protection for power supplies, industrial equipment, automotive electronics, and telecommunications systems.
  3. What is the maximum clamping voltage of P6KA30AHE3/54?

    • The maximum clamping voltage of P6KA30AHE3/54 is 48.4V at 10A.
  4. What is the breakdown voltage of P6KA30AHE3/54?

    • The breakdown voltage of P6KA30AHE3/54 is 33.3V.
  5. What is the peak pulse current handling capability of P6KA30AHE3/54?

    • P6KA30AHE3/54 can handle peak pulse currents up to 16.7A.
  6. What is the operating temperature range of P6KA30AHE3/54?

    • The operating temperature range of P6KA30AHE3/54 is -55°C to 175°C.
  7. Is P6KA30AHE3/54 RoHS compliant?

    • Yes, P6KA30AHE3/54 is RoHS compliant, making it suitable for use in environmentally sensitive applications.
  8. Can P6KA30AHE3/54 be used for ESD protection?

    • Yes, P6KA30AHE3/54 can be used for ESD (electrostatic discharge) protection in electronic circuits.
  9. What package type does P6KA30AHE3/54 come in?

    • P6KA30AHE3/54 is available in a DO-15 package, which is a popular axial leaded package for through-hole mounting.
  10. Are there any recommended layout or mounting considerations for P6KA30AHE3/54?

    • It is recommended to minimize the length of the leads and traces connecting P6KA30AHE3/54 to the circuit to reduce parasitic inductance and ensure optimal performance. Additionally, proper heat sinking may be required for high-power applications.