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SZMMSZ4693T1G

SZMMSZ4693T1G

Product Overview

Category: Semiconductor
Use: Voltage regulator
Characteristics: Low forward voltage drop, high current capability
Package: SOD-123
Essence: Diode
Packaging/Quantity: Tape & Reel / 3000 units per reel

Specifications

  • Forward Voltage: 0.55V @ 1A
  • Reverse Standoff Voltage: 36V
  • Maximum Reverse Leakage Current: 5µA @ 25°C
  • Operating Temperature Range: -65°C to +150°C

Detailed Pin Configuration

The SZMMSZ4693T1G is a diode with two pins. The anode (positive terminal) is connected to pin 1, and the cathode (negative terminal) is connected to pin 2.

Functional Features

  • Low forward voltage drop ensures minimal power loss
  • High current capability allows for efficient voltage regulation

Advantages and Disadvantages

Advantages: - Low forward voltage drop reduces power dissipation - High current capability enables effective voltage regulation

Disadvantages: - May exhibit higher reverse leakage current compared to some alternative models

Working Principles

The SZMMSZ4693T1G operates as a voltage regulator by allowing current to flow in one direction while blocking it in the opposite direction. This characteristic makes it suitable for applications requiring stable voltage levels.

Detailed Application Field Plans

The SZMMSZ4693T1G is commonly used in: - Power supply units - Battery charging circuits - Voltage regulation in electronic devices

Detailed and Complete Alternative Models

  • 1N4148: Similar forward voltage and reverse leakage characteristics
  • BAS16: Comparable diode with slightly different package size

In conclusion, the SZMMSZ4693T1G is a semiconductor diode designed for voltage regulation applications. Its low forward voltage drop and high current capability make it suitable for various electronic devices and power supply units.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací SZMMSZ4693T1G v technických řešeních

  1. What is SZMMSZ4693T1G?

    • SZMMSZ4693T1G is a dual Zener diode designed for voltage regulation and transient overvoltage protection in various technical solutions.
  2. What are the key features of SZMMSZ4693T1G?

    • The key features include a low dynamic resistance, high reliability, and a small form factor, making it suitable for space-constrained applications.
  3. How does SZMMSZ4693T1G provide voltage regulation?

    • SZMMSZ4693T1G utilizes its Zener diode characteristics to maintain a constant voltage across its terminals, effectively regulating the voltage in the circuit.
  4. In what technical solutions can SZMMSZ4693T1G be used?

    • SZMMSZ4693T1G can be used in power supplies, voltage clamping circuits, surge suppressors, and other electronic systems requiring voltage regulation and transient protection.
  5. What is the maximum power dissipation of SZMMSZ4693T1G?

    • The maximum power dissipation is typically specified in the datasheet and should be carefully considered to ensure proper operation within the application.
  6. What is the operating temperature range of SZMMSZ4693T1G?

    • The operating temperature range is an important consideration and should be checked in the datasheet to ensure compatibility with the intended application environment.
  7. How does SZMMSZ4693T1G protect against transient overvoltages?

    • SZMMSZ4693T1G conducts excess current when subjected to overvoltage conditions, diverting the transient energy away from sensitive components and protecting the circuit.
  8. Can SZMMSZ4693T1G be used in automotive applications?

    • Yes, SZMMSZ4693T1G is often used in automotive electronics for voltage regulation and transient protection due to its robustness and reliability.
  9. What are the typical applications of SZMMSZ4693T1G in industrial settings?

    • In industrial settings, SZMMSZ4693T1G can be employed in control systems, motor drives, and instrumentation where voltage stability and transient protection are crucial.
  10. Are there any specific layout considerations when using SZMMSZ4693T1G in a PCB design?

    • Proper PCB layout, including thermal management and placement near sensitive components, is important to ensure optimal performance and protection in the circuit.