MCT2FVM Allicdata Electronics
Allicdata Part #:

MCT2FVM-ND

Manufacturer Part#:

MCT2FVM

Price: $ 0.00
Product Category:

Isolators

Manufacturer: ON Semiconductor
Short Description: OPTOISO 7.5KV TRANS W/BASE 6SMD
More Detail: Optoisolator Transistor with Base Output 7500Vpk 1...
DataSheet: MCT2FVM datasheetMCT2FVM Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Output Type: Transistor with Base
Supplier Device Package: 6-SMD
Package / Case: 6-SMD, Gull Wing
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 100°C
Vce Saturation (Max): 400mV
Current - DC Forward (If) (Max): 60mA
Voltage - Forward (Vf) (Typ): 1.25V
Current - Output / Channel: 50mA
Voltage - Output (Max): 30V
Series: --
Input Type: DC
Rise / Fall Time (Typ): 2µs, 1.5µs
Turn On / Turn Off Time (Typ): 2µs, 2µs
Current Transfer Ratio (Max): --
Current Transfer Ratio (Min): 20% @ 10mA
Voltage - Isolation: 7500Vpk
Number of Channels: 1
Part Status: Obsolete
Packaging: Tube 
Description

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Optoisolators, also commonly referred to as opto-couplers are essential for the proper functioning of many industrial and home appliances. An optoisolator is a special type of electronic component that enables the transfer of signals between two isolated circuits. One of the most popular type of optoisolator is the MCT2FVM, which stands for Monolithic N-Channel Field-Effect Transistor Photovoltaic Output. This particular device can be helpful in providing extremely high insulation; it is also suitable for high-speed data applications.

In terms of physical design, the MCT2FVM utilizes two components housed in a single 8-pin dual inline package, or DIP. The first component is an N-channel field-effect transistor (FET) which is used to control the on/off switching of an electrical load; the second component is a photovoltaic (PV) diode, which is used to sense and transfer a signal from an input circuit to the FET. The internal photovoltaic diode is usually made of gallium-arsenide.

As for the applications of this type of optoisolator, the MCT2FVM is mainly utilized in industrial, sensor, and communications applications. It’s main feature is that it can be used in electrically isolated circuits to provide two-way LED optical path between the individual circuits. In addition, the insulation resistance provided by this device can easily reach values of up to 10^7 ohms.

So how does the MCT2FVM actually work? Well, the internal FET is used to control the amount of current that is allowed to pass through the load. The photovoltaic diode is used to detect the signal from the input circuit and drive the FET accordingly. In other words, the photovoltaic diode acts as a bridge between the two circuits and allows the signal to be passed from one circuit to the other without any electrical contamination.

As previously mentioned, the MCT2FVM is widely used in industrial, communications, and sensor applications. In these applications, the optoisolator is used to protect sensitive equipment from ground-induced disturbances. It can also be used to separate two circuits for noise reduction. Additionally, the MCT2FVM is often seen in the automotive and microcomputer industries.

In addition, the MCT2FVM is growing in popularity with hobbyists as well. Just as with any electrical component, it has its own advantages and limitations. It offers a simple and reliable solution for providing electrical isolation between two isolated circuits, as well as high-speed data transfer capabilities.

The MCT2FVM is an example of an optoisolator that can provide two-way LED optical path between two isolated circuits, while providing insulation and high-speed data transfer. This particular optoisolator is widely used in various industrial, communications, and sensor applications, and is growing in popularity with hobbyists too. It’s cost-effective, simple to use design makes it an ideal choice for those looking for a reliable device for providing electrical insulation between two circuits.

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

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