Transistors - FETs, MOSFETs - Single

Image Part Number Description / PDF Quantity Rfq
RJK0346DPA-01#J0B

RJK0346DPA-01#J0B

Renesas Electronics America

MOSFET N-CH 30V 65A 8WPAK

0

RJK2006DPE-00#J3

RJK2006DPE-00#J3

Renesas Electronics America

MOSFET N-CH 200V 40A 4LDPAK

0

NP22N055SLE-E1-AY

NP22N055SLE-E1-AY

Renesas Electronics America

MOSFET N-CH 55V 22A TO252

0

NP80N06MLG-S18-AY

NP80N06MLG-S18-AY

Renesas Electronics America

MOSFET N-CH 60V 80A TO220-3

0

NP80N055MHE-S18-AY

NP80N055MHE-S18-AY

Renesas Electronics America

MOSFET N-CH 55V 80A TO220-3

0

UPA2737GR-E1-AX

UPA2737GR-E1-AX

Renesas Electronics America

MOSFET P-CH 30V 11A 8SOP

0

H7N1002LS-E

H7N1002LS-E

Renesas Electronics America

MOSFET N-CH 100V 75A 4LDPAK

0

2SK1518-E

2SK1518-E

Renesas Electronics America

MOSFET N-CH 500V 20A TO3P

0

UPA2735GR-E1-AX

UPA2735GR-E1-AX

Renesas Electronics America

MOSFET P-CH 30V 16A 8SOP

0

2SK3430-AZ

2SK3430-AZ

Renesas Electronics America

MOSFET N-CH 40V 80A TO220AB

0

HAT2279H-EL-E

HAT2279H-EL-E

Renesas Electronics America

MOSFET N-CH 80V 30A LFPAK

0

HAT2287WP-EL-E

HAT2287WP-EL-E

Renesas Electronics America

MOSFET N-CH 200V 17A 8WPAK

0

NP109N04PUG-E1-AY

NP109N04PUG-E1-AY

Renesas Electronics America

MOSFET N-CH 40V 110A TO263-3

0

RJK5012DPP-E0#T2

RJK5012DPP-E0#T2

Renesas Electronics America

MOSFET N-CH 500V 12A TO220FP

0

NP88N075MUE-S18-AY

NP88N075MUE-S18-AY

Renesas Electronics America

MOSFET N-CH 75V 88A TO220-3

0

HAT2033RWS-E

HAT2033RWS-E

Renesas Electronics America

MOSFET N-CH 60V 7A 8SOP

0

HAT2168HWS-E

HAT2168HWS-E

Renesas Electronics America

MOSFET N-CH 30V 30A 5LFPAK

0

2SK1342-E

2SK1342-E

Renesas Electronics America

MOSFET N-CH 900V 8A TO3P

0

RJK0452DPB-00#J5

RJK0452DPB-00#J5

Renesas Electronics America

MOSFET N-CH 40V 45A LFPAK

0

RJK5013DPP-E0#T2

RJK5013DPP-E0#T2

Renesas Electronics America

MOSFET N-CH 500V 14A TO220FP

0

Transistors - FETs, MOSFETs - Single

1. Overview

Field-Effect Transistors (FETs) and Metal-Oxide-Semiconductor FETs (MOSFETs) are voltage-controlled semiconductor devices that regulate current flow through an electric field. As fundamental components in modern electronics, they offer advantages such as high input impedance, low power consumption, and fast switching capabilities. Single discrete FETs/MOSFETs are widely used in power management, signal amplification, and switching applications across industries.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Junction FET (JFET)Voltage-controlled depletion mode operation, low noiseLow-noise amplifiers, analog switches
Enhancement Mode MOSFETNormally-off device, requires positive VGS to conductPower supplies, motor drives
Depletion Mode MOSFETNormally-on device, requires negative VGS to blockRadio frequency amplifiers, load switches
Insulated Gate Bipolar Transistor (IGBT)Combines MOSFET input with bipolar output, high current capacityHigh-power industrial equipment, electric vehicles

3. Structure and Composition

A typical MOSFET structure includes three terminals: Source, Gate, and Drain. The gate is insulated by a thin layer of silicon dioxide (SiO2), forming a capacitive control interface. The channel between source and drain is formed in a silicon substrate. Advanced devices use materials like silicon carbide (SiC) or gallium nitride (GaN) for higher performance. Packaging options include TO-220, DPAK, and SOT-23 for different thermal and space requirements.

4. Key Technical Specifications

ParameterDescription and Importance
VDS (Drain-Source Voltage)Maximum voltage rating between drain and source; determines breakdown tolerance
ID (Drain Current)Maximum continuous current capacity; critical for power handling
RDS(on)On-state resistance; impacts conduction losses and efficiency
VGS(th) (Threshold Voltage)Voltage required to form channel; determines control signal compatibility
QG (Gate Charge)Charge required for switching; affects switching speed and driver requirements
PD (Power Dissipation)Maximum power handling capability; dictates thermal management needs

5. Application Fields

  • Consumer Electronics: Mobile phone chargers, notebook power adapters
  • Industrial: Motor drives, uninterruptible power supplies (UPS)
  • Automotive: Electric vehicle (EV) battery management systems, HEV inverters
  • Telecommunications: Base station power amplifiers, optical network transceivers
  • Renewable Energy: Solar micro-inverters, wind turbine converters

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsCSD18534Q5A60V, 4.2m RDS(on), automotive-grade
STMicroelectronicsSTP55NF0655A, 60V, high-speed switching
Infineon TechnologiesIPB041N06N30.41 , 600V, TO-220 package
ON SemiconductorNDS355ANDepletion mode, 300mA, RF applications

7. Selection Guidelines

Key considerations include:

  • Voltage and current requirements under operating conditions
  • Thermal performance (RDS(on), package thermal resistance)
  • Switching speed vs. conduction loss trade-off
  • Gate drive compatibility with control circuitry
  • Environmental factors (temperature, vibration, humidity)
  • Cost-performance balance for volume production

8. Industry Trends

Current trends include:

  • Adoption of wide bandgap materials (SiC, GaN) for higher efficiency
  • Advanced packaging technologies (double-sided cooling, copper clip)
  • Integration with gate drivers and protection circuits
  • Miniaturization through trench and shielded gate structures
  • Development of automotive-qualified devices for EVs and ADAS

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