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Showing Results For: Transistors - FETs, MOSFETs - Single

Transistors - FETs, MOSFETs - Single

Transistors - FET (Field Effect Transistor) are three-terminal semiconductor devices designed to control the current flow in a semiconductor using an electric field. They are also referred to as unipolar transistors due to the presence of either electrons or holes that operate as charge carriers. These semiconductors feature three terminals, namely gate, source, and drain. FETs utilize the voltage applied to their input terminal (Gate) for controlling the current from source to drain. Furthermore, FETs display a very high input impedance at low frequencies, and the most commonly used field-effect transistor is the MOSFET.

Transistors - MOSFETs - Single:

The MOSFET (Metal Oxide Semiconductor Field Effect Transistor) is a useful power device and the most commonly used semiconductor in digital and analogue circuits. Due to their compact size, MOSFETs are fabricated and designed on a single chip. As the original transistor, they are ideal for various electrical applications and are key components of integrated circuits. These semiconductors have four terminals, source, gate, drain, and body. Generally, the body is linked to the source triggering MOSFETs to function as a field effect transistor. 

What are the advantages of using MOSFETs?

MOSFETs offer additional advantages, including minimal power consumption, rapid switching, and high-density capacity, making them perfect for large-scale integration. 

Available MOSFETs by Mount Type:

Enrgtech carries various MOSFETs by mount type. Explore them by visiting our website. They include:

  • Panel-mount
  • Chassis Mount
  • Surface Mount
  • Through Hole
  • Surface Mount, Wettable Flank 

Applications of Transistors - FETs, MOSFETs - Single:

FETs are extensively used in:

  • Integrated Circuits (ICs)  
  • High power switching applications (as voltage-variable resistors) 
  • Amplifiers 
  • Tone controls 
  • FM and TV receivers 
  • Logic circuits.

The MOSFET is the most common transistor in:

  • Digital circuits
  • Power converters
  • Automotives 
  • Industrial and communications systems
  • Memory chips or microprocessor MOSFET transistors 
  • The development of technologies (such as the pocket calculator and digital wristwatch).

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FQP3N80C, onsemi
392 In Stock
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Fairchild Semiconductor
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FQI4N80TU, Fairchild Semiconductor
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FCP150N65F, onsemi
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Fairchild Semiconductor
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FDS6690AS, Fairchild Semiconductor
43 In Stock
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Fairchild Semiconductor
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FQPF20N06, Fairchild Semiconductor
408 In Stock
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Fairchild Semiconductor
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FDMC8878, Fairchild Semiconductor
2223 In Stock
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Fairchild Semiconductor
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FDS6630A, Fairchild Semiconductor
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Fairchild Semiconductor
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FDPF680N10T, Fairchild Semiconductor
55735 In Stock
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£ 0.74
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Fairchild Semiconductor
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IRF530A, Fairchild Semiconductor
2014 In Stock
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FDPF20N50T, onsemi
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Fairchild Semiconductor
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FDPF17N60NT, Fairchild Semiconductor
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Fairchild Semiconductor
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FDD850N10L, Fairchild Semiconductor
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Fairchild Semiconductor
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FQP4N80, Fairchild Semiconductor
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FQP44N10, Fairchild Semiconductor
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Fairchild Semiconductor
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FDP6030BL, Fairchild Semiconductor
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FDPF16N50UT, Fairchild Semiconductor
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£ 1.32
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£ 1.51
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FDS6690AS, onsemi
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Fairchild Semiconductor
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FDD6N50TM, Fairchild Semiconductor
2068 In Stock
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Fairchild Semiconductor
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FDP12N50NZ, Fairchild Semiconductor
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FDP3652, Fairchild Semiconductor
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FDMS4435BZ, onsemi
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NTB25P06T4G, onsemi
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FDS9400A, Fairchild Semiconductor
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Fairchild Semiconductor
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FDU7N60NZTU, Fairchild Semiconductor
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FQPF3N80C, ON Semiconductor

FQPF3N80C, ON Semiconductor

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RFD14N05L, ON Semiconductor
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FQP3N80C, onsemi

FQP3N80C, onsemi

QFET® N-Channel MOSFET, up to 5.9A, Fairchild Semiconductor Fairchild Semiconductor’s new QFET® planar MOSFETs use advanced, proprietary technology to offer best-in-class operating performance for a wide range of applications, including power supplies, PFC (Power Factor Correction), DC-DC Converters, Plasma Display Panels (PDP), lighting ballasts, and motion control. They offer reduced on-state loss by lowering on-resistance (RDS(on)), and reduced switching loss by lowering gate charge (Qg) and output capacitance (Coss). By using advanced QFET® process technology, Fairchild can offer an improved figure of merit (FOM) over competing planar MOSFET devices.
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FQI4N80TU, Fairchild Semiconductor

FQI4N80TU, Fairchild Semiconductor

QFET® N-Channel MOSFET, up to 5.9A, Fairchild Semiconductor Fairchild Semiconductor’s new QFET® planar MOSFETs use advanced, proprietary technology to offer best-in-class operating performance for a wide range of applications, including power supplies, PFC (Power Factor Correction), DC-DC Converters, Plasma Display Panels (PDP), lighting ballasts, and motion control. They offer reduced on-state loss by lowering on-resistance (RDS(on)), and reduced switching loss by lowering gate charge (Qg) and output capacitance (Coss). By using advanced QFET® process technology, Fairchild can offer an improved figure of merit (FOM) over competing planar MOSFET devices. MOSFET Transistors, Fairchild Semiconductor Fairchild offers a substantial portfolio of MOSFET devices that includes high-voltage (>250V) and low-voltage (Fairchild MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.
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FQPF9N25C, Fairchild Semiconductor

FQPF9N25C, Fairchild Semiconductor

QFET® N-Channel MOSFET, 6A to 10.9A, Fairchild Semiconductor Fairchild Semiconductor’s new QFET® planar MOSFETs use advanced, proprietary technology to offer best-in-class operating performance for a wide range of applications, including power supplies, PFC (Power Factor Correction), DC-DC Converters, Plasma Display Panels (PDP), lighting ballasts, and motion control. They offer reduced on-state loss by lowering on-resistance (RDS(on)), and reduced switching loss by lowering gate charge (Qg) and output capacitance (Coss). By using advanced QFET® process technology, Fairchild can offer an improved figure of merit (FOM) over competing planar MOSFET devices. MOSFET Transistors, Fairchild Semiconductor Fairchild offers a substantial portfolio of MOSFET devices that includes high-voltage (>250V) and low-voltage (Fairchild MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.
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FCP150N65F, onsemi

FCP150N65F, onsemi

SuperFET® and SuperFET® II N-Channel MOSFET, Fairchild Semiconductor Fairchild added the SuperFET® II high-voltage power MOSFET family using the Super Junction Technology. It provides best-in-class robust body diode performance in AC-DC Switch Mode Power Supplies (SMPS) applications such as servers, telecom, computing, industrial power supply, UPS/ESS, solar inverter, lighting applications, which require high power density, system efficiency and reliability. Utilizing an advanced charge balance technology, designers achieve more efficient, cost-effective and high performance solutions that take up less board space and improve reliability.
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FDS6690AS, Fairchild Semiconductor

FDS6690AS, Fairchild Semiconductor

PowerTrench® SyncFET™ MOSFET, Fairchild Semiconductor Designed to minimise losses in power conversion, while maintaining excellent switching performance High Performance Trench Technology for extremely low RDS(on) SyncFET™ benefits from an efficient Schottky body diode Applications in Synchronous Rectification DC-DC Converter, Motor Drives, networking point of load Low Side Switch MOSFET Transistors, Fairchild Semiconductor Fairchild offers a substantial portfolio of MOSFET devices that includes high-voltage (>250V) and low-voltage (Fairchild MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.
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FQPF20N06, Fairchild Semiconductor

FQPF20N06, Fairchild Semiconductor

QFET® N-Channel MOSFET, 11A to 30A, Fairchild Semiconductor Fairchild Semiconductor’s new QFET® planar MOSFETs use advanced, proprietary technology to offer best-in-class operating performance for a wide range of applications, including power supplies, PFC (Power Factor Correction), DC-DC Converters, Plasma Display Panels (PDP), lighting ballasts, and motion control. They offer reduced on-state loss by lowering on-resistance (RDS(on)), and reduced switching loss by lowering gate charge (Qg) and output capacitance (Coss). By using advanced QFET® process technology, Fairchild can offer an improved figure of merit (FOM) over competing planar MOSFET devices. MOSFET Transistors, Fairchild Semiconductor Fairchild offers a substantial portfolio of MOSFET devices that includes high-voltage (>250V) and low-voltage (Fairchild MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.
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NTF3055-100T1G, ON Semiconductor
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FDA38N30, ON Semiconductor
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FDMS8020, Fairchild Semiconductor

FDMS8020, Fairchild Semiconductor

PowerTrench® N-Channel MOSFET, over 60A, Fairchild Semiconductor MOSFET Transistors, Fairchild Semiconductor Fairchild offers a substantial portfolio of MOSFET devices that includes high-voltage (>250V) and low-voltage (Fairchild MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.
New items
FDB024N06, Fairchild Semiconductor

FDB024N06, Fairchild Semiconductor

PowerTrench® N-Channel MOSFET, over 60A, Fairchild Semiconductor MOSFET Transistors, Fairchild Semiconductor Fairchild offers a substantial portfolio of MOSFET devices that includes high-voltage (>250V) and low-voltage (Fairchild MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.
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