
Allicdata Part #: | APT8M80K-ND |
Manufacturer Part#: |
APT8M80K |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Microsemi Corporation |
Short Description: | MOSFET N-CH 800V 8A TO-220 |
More Detail: | N-Channel 800V 8A (Tc) 225W (Tc) Through Hole TO-2... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Vgs(th) (Max) @ Id: | 5V @ 500µA |
Package / Case: | TO-220-3 |
Supplier Device Package: | TO-220 [K] |
Mounting Type: | Through Hole |
Operating Temperature: | -55°C ~ 150°C (TJ) |
Power Dissipation (Max): | 225W (Tc) |
FET Feature: | -- |
Input Capacitance (Ciss) (Max) @ Vds: | 1335pF @ 25V |
Vgs (Max): | ±30V |
Gate Charge (Qg) (Max) @ Vgs: | 43nC @ 10V |
Series: | POWER MOS 8™ |
Rds On (Max) @ Id, Vgs: | 1.35 Ohm @ 4A, 10V |
Drive Voltage (Max Rds On, Min Rds On): | 10V |
Current - Continuous Drain (Id) @ 25°C: | 8A (Tc) |
Drain to Source Voltage (Vdss): | 800V |
Technology: | MOSFET (Metal Oxide) |
FET Type: | N-Channel |
Part Status: | Obsolete |
Packaging: | Tube |
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The APT8M80K is a single-channel enhancement MOSFET, manufactured by Advanced Power Electronics Corporation, in different packages including TO-220F-3L, TO-252-3L, SOT-223, SOP-8, and SOP-8N. It has a guaranteed breakdown voltage of 800V, maximum channel temperature of 150°C, and power dissipation of 2W at 25°C.
The APT8M80K is an ideal device for high-frequency switching and power management applications. Its single-channel design enables it to be used in applications such as switching power supplies, relay alternators, torque converters, and other power conversion systems. Its high speed switching capability makes it suitable for automotive, industrial, and telecommunications applications. Due to its low on-resistance, the device can deliver more power and higher efficiency.
The APT8M80K was designed to operate in a saturation mode, wherein the current is limited by the gate voltage and not by the drain voltage. This mode of operation ensures that the device can deliver higher efficiency at higher currents. In addition, the device features a very low capacitance which allows it to operate at higher frequencies without losses or distortion. Furthermore, the MOSFET is immune to voltage spikes, making it suitable for applications where high-voltage transient loads are encountered.
The working principle of an MOSFET is based on the same physics concept of transistors. The MOSFET’s gate terminal is used to control the current flow between the drain and the source by allowing or disallowing the conduction. The drain and source are connected to the power source and the load respectively, and the voltage across the terminals has to be greater than the threshold voltage, in order for the transistor to switch on and off. In order for the APT8M80K to operate properly, the gate voltage should be greater than the threshold voltage.
The APT8M80K is also known for its low leakage current and low switching times, which make it ideal for sensors, drivers, and other electronic control circuits. The device has an ESD (electrostatic discharge) tolerance of 2000V, making it suitable for use in applications that require high levels of protection against electrostatic discharges and other electrical noise.
The use of APT8M80K in power conversion applications has increased significantly in recent years. It is used in switching power supplies to regulate the flow of electric current and increase the efficiency of the system. It is also commonly used in automotive applications such as engine control and electric power steering systems. Furthermore, it is often seen in home appliances, such as washing machines and microwave ovens.
In conclusion, APT8M80K is a single-channel enhancement MOSFET designed for high-speed switching and power management applications. Its low capacitance and ESD tolerance make it ideal for high-voltage transient loads. Its high-frequency switching capability and low leakage current make it suitable for use in automotive, industrial, and telecommunications applications. Finally, the device is often used in power conversion systems to regulate the flow of electric current and increase its efficiency.
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