
Allicdata Part #: | IRFC4368D-ND |
Manufacturer Part#: |
IRFC4368D |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Infineon Technologies |
Short Description: | MOSFET N-CH WAFER |
More Detail: | |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | * |
Part Status: | Obsolete |
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IRFC4368D is a MOSFET transistor device that is used mainly in Power Conversion and Switching applications. It is a single device which can be used to drive heavy loads from low to moderate voltages. It has a wide range of features including low Rds on(resistance when off), low gate charge, fast switching speeds, and built-in protection against short circuit and over temperature.
The IRFC4368D is an N-channel, depletion-mode device. It has three main terminals, gate, drain and source. When operating, the device can be either in the cutoff or saturation region. In the cutoff region, there is no current flow between the source and drain. In the saturation region, the source and output are connected and current can flow. A significant feature of the IRFC4368D is it\'s low Rds on resistance.
When using the IRFC4368D, the Gate-to-Source Voltage (Vgs) must be set to a value suitable for the application. This voltage is the voltage applied from the gate terminal to the source terminal. It will determine the device\'s operating mode (cutoff or saturation), and will affect the current level that can be driven through the device. Generally, a higher Vgs will result in a higher drain current. The device can handle up to a maximum voltage of 30V.
To change the operating mode of the device, the Gate-to-Source Voltage (Vgs) must be changed. This can be done by applying a DC voltage to the gate terminal. As the voltage is increased, the device will move from the cutoff region to the saturation region. To turn the device off, the Gate-to-Source Voltage (Vgs) must be reduced to a low value, usually 0V. This will place the device in the cutoff region, and no current will flow.
The IRFC4368D is mainly used in power conversion and switching applications. It can be used as a switch to control the flow of current through a load. It can also be used to control the speed at which a motor is driven. It can be used in high-power switching applications, where high-currents are driven and where fast response times are required. It also has built-in protection against short circuit, over-temperature and gate charge.
The device has many advantages over other switching devices, such as BJTs and IGBTs. It can operate at much lower power levels, which makes it more efficient. It also has much faster switching speeds. But the main advantage is its low Rds on resistance, which can reduce losses in power conversion and switching applications.
In summary, the IRFC4368D is a MOSFET transistor device that is mainly used in power conversion and switching applications. It has a large range of features, including low Rds on(resistance when off), low gate charge, fast switching speeds, and built-in protection against short circuit and over temperature. It can operate at much lower power levels and has much faster switching speeds than other types of transistors. It is an ideal device for changing the operating mode of a motor, and for controlling the flow of current through a load.
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