R3620 Allicdata Electronics
Allicdata Part #:

R3620-ND

Manufacturer Part#:

R3620

Price: $ 20.67
Product Category:

Discrete Semiconductor Products

Manufacturer: Microsemi Corporation
Short Description: RECTIFIER
More Detail: Diode
DataSheet: R3620 datasheetR3620 Datasheet/PDF
Quantity: 1000
100 +: $ 18.60400
Stock 1000Can Ship Immediately
$ 20.67
Specifications
Series: *
Part Status: Active
Description

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Rectifier diodes have a long history stretching back over a century, from their first use in telegraph systems to modern day uses in automobile and aircraft industries. R3620 is a type of single rectifier diode, commonly used for AC to DC power conversion. It features a low forward voltage drop and high reverse surge current capability. Here we will discuss the application field and working principle of R3620 rectifier diodes.

R3620 rectifier diodes are used in a wide array of situations, as they offer a low forward voltage drop and high reverse surge current capability. The diodes are used in AC power supplies, motor controls, and UPS systems, as well as in automotive, telecommunications, and many other application fields.

The working principle of rectifier diodes is based on their physical structure. The R3620 has a low voltage drop, due to the construction with two rectifier regions - both an anode and a cathode. Light passing through the anode region excites the charges and causes a current to flow. This current is then passed on to the cathode region, which is opposite to the anode region in terms of polarity. Because the cathode is easier to pass through than the anode, it is the one which will cause the current to be passed through the device.

In order to understand this process in detail, it is important to understand the two main regions - anode and cathode - of the diode itself. An anode is the positive electrode of a diode, and a cathode is the negative one. When a voltage is applied to the diode, the electric field created between the electrodes will cause charges to move from the anode to the cathode. This movement of charges creates a current, which is the basis of rectification.

When voltage is applied to a rectifier diode, the anode is always positively charged, and the cathode will become negatively charged. This polarization creates a barrier between the two regions, known as the P-N junction. The voltage applied to the diode will force the current to flow in one direction only - from the anode to the cathode. This current flow is known as rectification, and is the basis of AC to DC power conversion.

The P-N junction of a rectifier diode is also the basis of its reverse surge protection capability. Surge protection is necessary to protect electronics from punctual power overvoltages. When such a power overvoltage is present, the P-N junction of the diode speed up the current switching process, allowing the surge current to pass through the diode. This peak current is then dissipated, thus protecting the equipment from the power overvoltage.

The low forward voltage drop of the R3620 rectifier diode is due to the high forward current handling capability. The diode is able to handle very large currents without having to dissipate large amounts of heat, resulting in a low voltage drop. This makes the diode ideal for applications where low power dissipation is required.

Finally, the high reverse surge current capability of the R3620 rectifier diode is due to its P-N junction being able to switch quickly. This allows the diode to handle large reverse surge currents, ensuring the safety of any equipment that might be connected to it.

In conclusion, the R3620 rectifier diode is a single rectifier diode that can be used in a variety of application fields. Its low forward voltage drop and high reverse surge current capability make it an ideal choice for AC to DC power conversion. Its P-N junction is also responsible for the diode\'s surge protection, making it a safe choice for use in any application where power protection is necessary.

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

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