A437P Allicdata Electronics
Allicdata Part #:

A437P-ND

Manufacturer Part#:

A437P

Price: $ 83.86
Product Category:

Discrete Semiconductor Products

Manufacturer: Powerex Inc.
Short Description: DIODE GEN PURP 1KV 600A DO200
More Detail: Diode Standard 1000V 600A Stud Mount
DataSheet: A437P datasheetA437P Datasheet/PDF
Quantity: 1000
30 +: $ 75.47260
Stock 1000Can Ship Immediately
$ 83.86
Specifications
Series: --
Packaging: Bulk 
Part Status: Active
Diode Type: Standard
Voltage - DC Reverse (Vr) (Max): 1000V
Current - Average Rectified (Io): 600A
Speed: Standard Recovery >500ns, > 200mA (Io)
Reverse Recovery Time (trr): 3.5µs
Capacitance @ Vr, F: --
Mounting Type: Stud Mount
Package / Case: DO-200AB, B-PUK
Supplier Device Package: --
Operating Temperature - Junction: -40°C ~ 125°C
Description

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A437P application field and working principle

The A437P is a member of the single rectifier diode family, typically used in a range of applications, from electrical surges to overvoltage protection and radio frequency isolation. It stands out from other members of the family thanks to its wide range of features, such as the ultra-low forward voltage drop, the low temperature coefficient and the low reverse leakage current.

The A437P rectifier diode offers a range of features that make it highly suitable for a range of applications. The device features a 600V maximum reverse voltage, meaning it is suitable for protecting sensitive electronic circuits from electrical surges. The device also has a very low forward voltage drop, meaning that it can be used in circuits that require high efficiency. Additionally, the A437P also has a low reverse leakage current, making it suitable for applications that require isolation, such as radio frequency applications.

In addition to its wide range of features, the A437P also has a number of advantages that make it highly suitable for a wide range of applications. Firstly, it is capable of withstanding electrical surges of up to 600V, meaning that it can be used in a range of applications where protection from voltage spikes is required. Secondly, the device has a very low forward voltage drop, meaning that the device is highly efficient, reducing the overall power consumption. Thirdly, the device’s low reverse leakage current makes it suitable for high voltage isolation applications, such as radio frequency isolation.

The device’s working principle is based on the properties of a diode, which is essentially a two-terminal semiconductor that has an asymmetrical structure, with one side being heavily doped and the other being less so. When a voltage is applied to the two terminals, a current flows through the diode, which is known as “forward biasing”. During this process, the electrons move from the heavily doped side to the lightly doped side. As the electrons move, they create a thin barrier between the two sides, preventing any further current from flowing. This ensures that the diode can be used to control the current flow through a circuit by allowing current to pass in only one direction.

In the case of the A437P, the device is capable of blocking electrical surges of up to 600V, meaning it can be used for protection in a wide range of applications. Additionally, the device has a very low forward voltage drop, meaning that it is highly efficient and reduces overall power consumption. Finally, the device’s low reverse leakage current makes it suitable for wide range of applications, such as radio frequency isolation.

In conclusion, the A437P is a member of the single rectifier diode family and has a range of features that make it highly suitable for a range of applications, from electrical surges to overvoltage protection and radio frequency isolation. The device has a maximum reverse voltage of 600V and a low forward voltage drop, enabling the device to work at high efficiency. Additionally, the device has a low reverse leakage current, making it ideal for high voltage isolation applications. The device’s working principle is based on the properties of a diode and its ability to allow current to flow in only one direction, making it useful for controlling current flow.

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

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