PMEG3020CPASX Allicdata Electronics

PMEG3020CPASX Discrete Semiconductor Products

Allicdata Part #:

1727-2402-2-ND

Manufacturer Part#:

PMEG3020CPASX

Price: $ 0.11
Product Category:

Discrete Semiconductor Products

Manufacturer: Nexperia USA Inc.
Short Description: DIODE SCHOTTKY 30V 2A SOT1061
More Detail: Diode Array 1 Pair Common Cathode Schottky 30V 2A ...
DataSheet: PMEG3020CPASX datasheetPMEG3020CPASX Datasheet/PDF
Quantity: 1000
3000 +: $ 0.09764
Stock 1000Can Ship Immediately
$ 0.11
Specifications
Series: Automotive, AEC-Q101
Packaging: Tape & Reel (TR) 
Part Status: Active
Diode Configuration: 1 Pair Common Cathode
Diode Type: Schottky
Voltage - DC Reverse (Vr) (Max): 30V
Current - Average Rectified (Io) (per Diode): 2A
Voltage - Forward (Vf) (Max) @ If: 440mV @ 2A
Speed: Fast Recovery = 200mA (Io)
Reverse Recovery Time (trr): 4ns
Current - Reverse Leakage @ Vr: 2mA @ 30V
Operating Temperature - Junction: 150°C (Max)
Mounting Type: Surface Mount
Package / Case: 3-SMD, No Lead
Supplier Device Package: DFN2020D-3
Description

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The PMEG3020CPASX is a type of diode array which has the ability to conduct current in one direction while blocking the flow of current in the opposite direction. This type of diode array particularly stands out because of its ability to withstand an estimated maximum reverse leakage current of 4 uA at a reverse voltage of 30V in the off state. This particular array of rectifiers is able to also boast a maximum forward bias current rating of 30 amps (A) and a power dissipation (per diode) of approximately 1.3 watts. As a result, the PMEG3020CPASX is ideal for a variety of applications ranging from motor vehicle circuitry to more complex industrial apparatus.The working principle of the PMEG3020CPASX is basically a combination of two technologies, namely the Schottky Technology and the Transistor-Transistor Logic (TTL). Together, these two technologies are able to create an efficient and powerful system that is capable of supporting higher current and power requirements as well as providing greater thermal resistance and operation life.The Schottky technology is based on the principle that an applied electrical voltage is able to cause a flow of electrons across a barrier (or diode). In the case of the PMEG3020CPASX, there are two internal components, the anode and the cathode. The anode has a negative potential, while the cathode has a positive potential. A small amount of current will flow between the two components when the diode is placed in a circuit. This current is known as the forward bias current.When the forward bias current becomes large enough to overcome the Schottky barrier (or diode), a voltage will be created between the anode and cathode, producing an increased current flow. As the current passes from the anode to the cathode, it will also pass through the Transistor-Transistor Logic (TTL) components.The TTL component is what is responsible for creating a voltage high enough to make the diode switch off and block current in the opposite direction. This voltage is referred to as the reverse bias. As this voltage increases, the current will decrease until it is finally blocked.This type of diode array is able to distinctively operate under harsh conditions due to its relatively low forward bias voltages and currents, while possessing high reverse bias voltages and AC leakage currents. This makes it ideal for use in applications such as lighting control, motor control, switching power supplies, and power converters. It is also able to perform well in temperature sensitive circuits and user systems with low noise immunity.Overall, the PMEG3020CPASX is a powerful diode array that is capable of supporting high currents and power requirements, is efficient and reliable for a variety of applications, and is resistant to harsh conditions. Its main features include its low forward voltage and current, high reverse voltage and AC leakage current, low noise immunity, and high reliability and durability. As a result, this type of diode array can be used in numerous applications ranging from motor vehicle circuitry to the more complex industrial apparatus.

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

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