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1N5363E3/TR12

1N5363E3/TR12

Product Overview

Category

The 1N5363E3/TR12 belongs to the category of semiconductor diodes.

Use

It is commonly used in electronic circuits for voltage regulation and rectification.

Characteristics

  • Forward Voltage: 1.5V
  • Reverse Voltage: 30V
  • Current Rating: 5A
  • Package Type: DO-201AD
  • Operating Temperature: -65°C to +175°C

Package

The 1N5363E3/TR12 is typically available in a DO-201AD package.

Essence

This diode serves as a crucial component in regulating and rectifying electrical currents within electronic devices.

Packaging/Quantity

It is usually packaged in reels or tubes, with quantities varying based on manufacturer specifications.

Specifications

  • Part Number: 1N5363E3/TR12
  • Type: Zener Diode
  • Voltage - Zener (Nom) (Vz): 30V
  • Power - Max: 5W
  • Impedance (Max) (Zzt): 10 Ohm
  • Current - Reverse Leakage @ Vr: 5µA @ 21V
  • Operating Temperature: -65°C ~ 175°C

Detailed Pin Configuration

The 1N5363E3/TR12 has a standard DO-201AD package with two leads. The anode is connected to the positive terminal, while the cathode is connected to the negative terminal.

Functional Features

  • Voltage Regulation: The diode maintains a constant voltage across its terminals, ensuring stable operation of electronic circuits.
  • Rectification: It allows current to flow in only one direction, converting alternating current (AC) to direct current (DC).

Advantages and Disadvantages

Advantages

  • High current-carrying capability
  • Wide operating temperature range
  • Reliable voltage regulation

Disadvantages

  • Higher power dissipation compared to smaller diodes
  • Larger physical size

Working Principles

The 1N5363E3/TR12 operates based on the principle of the Zener effect, where it maintains a nearly constant voltage across its terminals when reverse-biased.

Detailed Application Field Plans

Voltage Regulation

The diode is widely used in power supplies and voltage regulators to maintain a stable output voltage.

Rectification

It is employed in AC to DC converters and inverters to ensure unidirectional current flow.

Overvoltage Protection

In electronic circuits, the diode safeguards sensitive components from overvoltage conditions.

Detailed and Complete Alternative Models

  • 1N5363B/TR12
  • 1N5363D/TR12
  • 1N5363G/TR12

These alternative models offer similar voltage regulation and rectification capabilities, providing flexibility in component selection.

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Lista 10 Vanliga frågor och svar relaterade till tillämpningen av 1N5363E3/TR12 i tekniska lösningar

  1. What is the maximum voltage rating of 1N5363E3/TR12?

    • The maximum voltage rating of 1N5363E3/TR12 is 30V.
  2. What is the maximum current rating of 1N5363E3/TR12?

    • The maximum current rating of 1N5363E3/TR12 is 5A.
  3. What is the typical application of 1N5363E3/TR12?

    • 1N5363E3/TR12 is commonly used in voltage regulation and transient suppression in various technical solutions.
  4. What is the operating temperature range for 1N5363E3/TR12?

    • The operating temperature range for 1N5363E3/TR12 is -65°C to +175°C.
  5. Is 1N5363E3/TR12 suitable for automotive applications?

    • Yes, 1N5363E3/TR12 is suitable for automotive applications due to its rugged construction and high reliability.
  6. Can 1N5363E3/TR12 be used in power supply designs?

    • Yes, 1N5363E3/TR12 can be used in power supply designs for voltage regulation and transient protection.
  7. What is the package type of 1N5363E3/TR12?

    • 1N5363E3/TR12 is available in a DO-201AD (DO-27) package.
  8. Does 1N5363E3/TR12 require a heat sink for certain applications?

    • Yes, for high-power applications, it is recommended to use a heat sink with 1N5363E3/TR12 to dissipate heat effectively.
  9. What are the key features of 1N5363E3/TR12?

    • Some key features of 1N5363E3/TR12 include low forward voltage drop, high surge capability, and excellent clamping capability.
  10. Are there any specific layout considerations when using 1N5363E3/TR12 in a circuit?

    • It is important to minimize lead lengths and keep the device close to the point of load to reduce parasitic inductance and ensure optimal performance.