RFN20NS3SFHTL Discrete Semiconductor Products |
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Allicdata Part #: | RFN20NS3SFHTLTR-ND |
Manufacturer Part#: |
RFN20NS3SFHTL |
Price: | $ 0.42 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | ROHM Semiconductor |
Short Description: | FAST RECOVERY DIODES (CORRESPOND |
More Detail: | Diode Standard 350V 20A Surface Mount LPDS |
DataSheet: | RFN20NS3SFHTL Datasheet/PDF |
Quantity: | 1000 |
1000 +: | $ 0.38046 |
Series: | Automotive, AEC-Q101 |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Diode Type: | Standard |
Voltage - DC Reverse (Vr) (Max): | 350V |
Current - Average Rectified (Io): | 20A |
Voltage - Forward (Vf) (Max) @ If: | 1.35V @ 20A |
Speed: | Fast Recovery = 200mA (Io) |
Reverse Recovery Time (trr): | 35ns |
Current - Reverse Leakage @ Vr: | 10µA @ 350V |
Capacitance @ Vr, F: | 412pF @ 0V, 1MHz |
Mounting Type: | Surface Mount |
Package / Case: | TO-263-3, D²Pak (2 Leads + Tab), TO-263AB |
Supplier Device Package: | LPDS |
Operating Temperature - Junction: | 150°C (Max) |
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Rectifier Filter Network (RFN20NS3SFHTL) is a type of diode that performs rectification, meaning it is capable of converting alternating current (AC) to direct current (DC). This type of diode is also referred to as a single-phase rectifier, as it is only capable of converting a single phase of AC power to DC. The RFN20NS3SFHTL diode is used in a variety of applications, and its working principle is based on the physical properties of diodes.
A basic principle of diodes includes the flow of electron current in one direction and blockage of electricity in the opposite direction. This phenomenon is termed “intrinsic” behavior in diodes, as there is no external controlling element. As such, the behavior of a diode is dependent on the material from which it is constructed. The RFN20NS3SFHTL diode is composed of a silicon, or oxygen-based material, allowing the diode to efficiently convert alternating current voltage to direct current voltage.
The RFN20NS3SFHTL diode is typically used in several applications, such as in television sets and DC motors. In television sets, it is also referred to as a “bridge rectifier”, which helps to control the alternating current into direct current, thus providing the necessary voltage to power the television screen. The same diode is found in DC motors, as it helps to regulate the voltage supply and current needed to maintain the continuous direction of rotation. Additionally, the RFN20NS3SFHTL diode is used to set the parameters for radio wave transmission. In this application, it is used to define the frequencies on which the radio signal is able to travel.
In order to understand the working principle of the RFN20NS3SFHTL diode, it is important to have a basic grasp of the physics of electricity. That is, electricity, in its most basic form, is composed of electrical charges, which are either positive or negative. In AC electricity, these charges alternate directions in cycles every second. In order to convert this alternating current to direct current voltage, it is necessary to have a component that can continuously and efficiently direct the charge in one consistent manner. The RFN20NS3SFHTL diode, with its intrinsic material properties, is ideally suited for this task.
The RFN20NS3SFHTL diode requires AC and DC input for rectification. The AC input provides alternating current and DC input is used to indicate the direct current flow. As such, the DC voltage will always be greater than the AC voltage. The working principle of the RFN20NS3SFHTL diode lies in the junction between its two electrodes, commonly known as the p-n junction. When AC is applied, it creates a potential difference at the p-n junction, allowing the current to flow only in one direction and blocking it in the other direction.
Thus, the concept of rectification is achieved, wherein the diode converts the alternating current into direct current. The DC output is then available to be used in a variety of applications. The RFN20NS3SFHTL diode is an ideal component for applications that need to convert alternating current voltage to direct current voltage. Its working principle is based on the physical properties of diodes, wherein the junction between two electrodes allows the current to flow only in one direction.
The specific data is subject to PDF, and the above content is for reference
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