ZVN0540A Allicdata Electronics
Allicdata Part #:

ZVN0540A-ND

Manufacturer Part#:

ZVN0540A

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Diodes Incorporated
Short Description: MOSFET N-CH 400V 0.09A TO92-3
More Detail: N-Channel 400V 90mA (Ta) 700mW (Ta) Through Hole T...
DataSheet: ZVN0540A datasheetZVN0540A Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: --
Packaging: Bulk 
Part Status: Obsolete
FET Type: N-Channel
Technology: MOSFET (Metal Oxide)
Drain to Source Voltage (Vdss): 400V
Current - Continuous Drain (Id) @ 25°C: 90mA (Ta)
Drive Voltage (Max Rds On, Min Rds On): 10V
Rds On (Max) @ Id, Vgs: 50 Ohm @ 100mA, 10V
Vgs(th) (Max) @ Id: 3V @ 1mA
Vgs (Max): ±20V
Input Capacitance (Ciss) (Max) @ Vds: 70pF @ 25V
FET Feature: --
Power Dissipation (Max): 700mW (Ta)
Operating Temperature: -55°C ~ 150°C (TJ)
Mounting Type: Through Hole
Supplier Device Package: TO-92-3
Package / Case: TO-226-3, TO-92-3 (TO-226AA)
Description

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The ZVN0540A is a single N- channel MOSFET, designed to provide high performance and low on-state resistance. It is especially suitable for high-current and low-voltage power conversion circuit applications. MOSFETs are very versatile components, often used as a switch in a variety of applications such as computer power supply, DC motor control, LED drivers, and linear regulators. The ZVN0540A is a versatile MOSFET, which is capable of operating in a wide range of applications.

Characteristics

The ZVN0540A has an N-channel MOS configuration and is a logical N-channel enhancement-type MOSFET, with an enhancement-mode logic level gate. The drain current is a function of the voltage on the gate and the drain-to-source voltage, ID = f (VGS, VDS). This means that the device can be opened and closed electronically by controlling the gate voltage, allowing for very high-speed switching. The maximum drain current is 8.0A, maximum drain-source voltage is 20V, and the maximum power dissipation is 55W. The junction-to-case thermal resistance is 2.0°C/W.

Working Principle

The ZVN0540A operates on the principle of the depletion layer under the influence of gate voltage. When there is no voltage applied to the gate, the depletion layer is strong and the current is blocked. When the gate voltage is increased, the depletion layer becomes weaker and the current passes through. The current then decreases with the decrease in the gate voltage, until the depletion layer is fully formed again, and the current is blocked.

The ZVN0540A has an independent system for controlling the voltage on the gate. This leaves the device on full current when the gate voltage is at zero, allowing for fast turn-on times and low operating power. This is unlike gate-drive powered MOSFETs, which need more power and time to operate.

Applications

The ZVN0540A is designed to handle high current and low voltage applications, making it ideal for motor control, LED drivers, computer power supplies and linear regulators. It is also used for high frequency switching applications such as DC-to-DC converters, high-speed data converters, and power amplifiers. Additionally, it can be used in computer systems and other applications as a switching element to control current or voltage flow.

MOSFETs are widely used in power electronics. They are found in a variety of applications, from low-power digital logic circuitry to high-power motor control and battery charging. The main advantages of MOSFETs are their high switching speeds, low power requirements, low on-state resistance, and low thermal resistance.

Conclusion

The ZVN0540A is a single N-channel MOSFET designed to deliver high performance and low on-state resistance. It is suitable for high-current and low voltage power conversion applications. The device is ideal for motor control, LED drivers, computer power supplies, linear regulators, and high-frequency switching applications. With its independent gate-drive system, the ZVN0540A excels in speed, efficiency, and power requirements.

The specific data is subject to PDF, and the above content is for reference

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