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JANTX1N4471US

JANTX1N4471US

Product Overview

Category

The JANTX1N4471US belongs to the category of semiconductor devices, specifically a Zener diode.

Use

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

Characteristics

  • Voltage regulation capability
  • High reliability
  • Low reverse leakage current
  • Fast response time

Package

The JANTX1N4471US is typically available in a hermetically sealed glass package.

Essence

The essence of this product lies in its ability to maintain a constant voltage across its terminals, even when subjected to varying currents.

Packaging/Quantity

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

Specifications

  • Zener Voltage: [Insert value]
  • Power Dissipation: [Insert value]
  • Maximum Forward Voltage: [Insert value]
  • Operating Temperature Range: [Insert range]

Detailed Pin Configuration

The JANTX1N4471US typically has two pins, with one serving as the anode and the other as the cathode.

Functional Features

  • Precise voltage regulation
  • Protection against voltage spikes
  • Stable operation over a wide temperature range

Advantages

  • High reliability
  • Consistent voltage regulation
  • Suitable for rugged environments

Disadvantages

  • Limited power dissipation capability
  • Sensitive to excessive current and voltage fluctuations

Working Principles

The JANTX1N4471US operates based on the principle of the Zener effect, where it maintains a nearly constant voltage drop across its terminals when reverse-biased.

Detailed Application Field Plans

This Zener diode is widely used in: - Voltage regulators - Surge suppressors - Overvoltage protection circuits - Precision voltage references

Detailed and Complete Alternative Models

  • JANTX1N7461US
  • JANTX1N4371US
  • JANTX1N5371US

Note: The alternative models listed above are similar Zener diodes that can be used as substitutes for the JANTX1N4471US.

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  1. What is the JANTX1N4471US diode used for?

    • The JANTX1N4471US diode is commonly used for voltage regulation, surge suppression, and reverse polarity protection in various technical solutions.
  2. What are the key specifications of the JANTX1N4471US diode?

    • The JANTX1N4471US diode typically has a maximum repetitive peak reverse voltage of 200V, a forward current of 3A, and a low forward voltage drop.
  3. How does the JANTX1N4471US diode provide surge suppression?

    • The JANTX1N4471US diode can handle transient overvoltage conditions by quickly conducting excess current away from sensitive components, protecting them from damage.
  4. Can the JANTX1N4471US diode be used for reverse polarity protection?

    • Yes, the JANTX1N4471US diode can be connected in series with a circuit to prevent damage from reverse polarity connections.
  5. What are some typical applications of the JANTX1N4471US diode?

    • Common applications include power supplies, motor drives, automotive electronics, and industrial control systems.
  6. Does the JANTX1N4471US diode have temperature limitations?

    • Yes, it is important to consider the operating temperature range of the JANTX1N4471US diode, which is typically between -65°C to +175°C.
  7. Is the JANTX1N4471US diode suitable for high-frequency applications?

    • While it can function at moderate frequencies, it may not be ideal for very high-frequency applications due to its inherent capacitance and switching characteristics.
  8. What are the packaging options available for the JANTX1N4471US diode?

    • The JANTX1N4471US diode is commonly available in axial-lead and surface-mount packages for ease of integration into different circuits.
  9. Are there any reliability certifications associated with the JANTX1N4471US diode?

    • Yes, the JANTX1N4471US diode is often MIL-PRF-19500/477 qualified, ensuring its reliability in harsh environments.
  10. Can the JANTX1N4471US diode be used in parallel for higher current applications?

    • Yes, multiple JANTX1N4471US diodes can be connected in parallel to increase the overall current-handling capability within a circuit.