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P6SMB39C

P6SMB39C

Product Overview

Category

The P6SMB39C belongs to the category of transient voltage suppressor (TVS) diodes.

Use

It is used to protect sensitive electronic devices from voltage transients induced by lightning, electrostatic discharge (ESD), and other transient voltage events.

Characteristics

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

Package

The P6SMB39C is available in a DO-214AA (SMB) package.

Essence

The essence of the P6SMB39C lies in its ability to provide reliable overvoltage protection for electronic circuits.

Packaging/Quantity

The P6SMB39C is typically packaged in reels or tubes and is available in quantities suitable for both prototyping and production.

Specifications

  • Standoff Voltage: 33.3V
  • Breakdown Voltage: 36.7V
  • Maximum Clamping Voltage: 60.1V
  • Peak Pulse Current: 67.4A
  • Operating Temperature Range: -55°C to 150°C

Detailed Pin Configuration

The P6SMB39C has two pins, with the anode connected to pin 1 and the cathode connected to pin 2.

Functional Features

  • Bi-directional TVS diode
  • Low incremental surge resistance
  • High temperature stability

Advantages and Disadvantages

Advantages

  • Provides effective protection against transient voltage events
  • Fast response time helps in minimizing damage to sensitive components
  • RoHS compliant, making it environmentally friendly

Disadvantages

  • May require additional circuitry for comprehensive overvoltage protection in some applications
  • Limited to specific voltage ranges

Working Principles

When a transient voltage event occurs, the P6SMB39C conducts the excess current away from the protected circuit, thereby limiting the voltage across the circuit to a safe level.

Detailed Application Field Plans

The P6SMB39C is commonly used in various electronic systems, including: - Power supplies - Communication equipment - Automotive electronics - Industrial control systems

Detailed and Complete Alternative Models

Some alternative models to the P6SMB39C include: - P6SMB10C - P6SMB15C - P6SMB20C - P6SMB30C

In conclusion, the P6SMB39C is a vital component in safeguarding electronic devices from transient voltage events, offering fast response times and high surge current capabilities. Its application spans across diverse industries, providing essential overvoltage protection for sensitive electronic circuits.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací P6SMB39C v technických řešeních

  1. What is the maximum peak pulse power of P6SMB39C?

    • The maximum peak pulse power of P6SMB39C is 600 watts.
  2. What is the breakdown voltage of P6SMB39C?

    • The breakdown voltage of P6SMB39C is typically 43.6 volts.
  3. What is the operating temperature range for P6SMB39C?

    • P6SMB39C has an operating temperature range of -55°C to +150°C.
  4. What is the typical clamping voltage of P6SMB39C?

    • The typical clamping voltage of P6SMB39C is 64.1 volts at 1mA.
  5. What are the applications of P6SMB39C in technical solutions?

    • P6SMB39C is commonly used in surge protection for sensitive electronics, such as in telecommunications equipment, industrial control systems, and automotive electronics.
  6. What is the response time of P6SMB39C?

    • The response time of P6SMB39C is very fast, typically responding within nanoseconds to clamp transient voltage spikes.
  7. Does P6SMB39C require any external components for operation?

    • P6SMB39C does not require any external components for basic operation, but it may be used in conjunction with other circuitry for specific applications.
  8. Is P6SMB39C RoHS compliant?

    • Yes, P6SMB39C is RoHS compliant, meaning it meets the Restriction of Hazardous Substances directive.
  9. What is the package type of P6SMB39C?

    • P6SMB39C is available in a DO-214AA (SMB) package.
  10. Can P6SMB39C be used for overvoltage protection in power supply circuits?

    • Yes, P6SMB39C can be effectively used for overvoltage protection in power supply circuits to safeguard against voltage transients.