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FQA34N20

QFET N-Channel MOSFET 200V

Inventory:7,520

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Overview of FQA34N20

The FQA34N20 is a N-Channel MOSFET transistor designed for use in power supply and high current applications. This transistor is capable of handling high power levels and is suitable for switching and amplification tasks in various electronic circuits.

Pinout

(Note: The pin configuration below is a general representation. Refer to the specific datasheet for precise details.)

  • G: Gate
  • D: Drain
  • S: Source
  • B: Body

Circuit Diagram

Incorporate a circuit diagram that illustrates the connections and operation of the FQA34N20 MOSFET for a more visual representation.

Key Features

  • High Power Handling Capacity: The FQA34N20 is designed to handle high power levels, making it suitable for power supply and high current applications.
  • Low On-Resistance: This MOSFET transistor offers low on-resistance for efficient power handling and minimal heat dissipation.
  • Fast Switching Speed: The FQA34N20 provides fast switching speeds, allowing for rapid operation in electronic circuits.
  • Low Gate Threshold Voltage: With a low gate threshold voltage, this transistor can be easily activated by standard logic level signals.
  • High Frequency Operation: The FQA34N20 is capable of operating at high frequencies, making it suitable for switching applications in various electronic designs.

Note: For detailed technical specifications, please refer to the FQA34N20 datasheet.

Applications

  • Power Supply Systems: The FQA34N20 is commonly used in power supply systems to regulate and control power distribution.
  • Motor Control: This MOSFET transistor can be utilized in motor control circuits for efficient switching and speed regulation.
  • Audio Amplification: The FQA34N20 is suitable for audio amplification applications where high power handling is required.

Functionality

The FQA34N20 N-Channel MOSFET transistor is designed to efficiently handle high power levels and provide fast switching speeds for various electronic applications.

Usage Guide

  • Power Supply: Connect the Drain (D) pin to the load or power supply output, the Source (S) pin to the ground, and the Gate (G) pin to the control signal or driver circuit.
  • Gate Control: Apply a suitable gate voltage to the Gate (G) pin to control the conductivity of the transistor and switch it on or off.
  • Heat Dissipation: Ensure proper heat sinking or cooling mechanisms are in place to dissipate any heat generated during high power operation.

Frequently Asked Questions

Q: Can the FQA34N20 be used for high frequency applications?
A: Yes, the FQA34N20 is suitable for high frequency operation in electronic circuits.

Equivalent

For similar functionalities, consider these alternatives to the FQA34N20:

  • IRFZ44N: Another N-Channel MOSFET transistor with similar power handling capabilities and characteristics.
  • IRFP260N: A high power N-Channel MOSFET transistor designed for demanding power applications.
  • STP16NF06: An N-Channel MOSFET transistor with low on-resistance and fast switching speeds.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Product Category MOSFET RoHS Details
Technology Si Mounting Style Through Hole
Package / Case TO-3PN-3 Transistor Polarity N-Channel
Number of Channels 1 Channel Vds - Drain-Source Breakdown Voltage 200 V
Id - Continuous Drain Current 34 A Rds On - Drain-Source Resistance 75 mOhms
Vgs - Gate-Source Voltage - 30 V, + 30 V Minimum Operating Temperature - 55 C
Maximum Operating Temperature + 150 C Pd - Power Dissipation 210 W
Channel Mode Enhancement Brand onsemi / Fairchild
Configuration Single Fall Time 115 ns
Forward Transconductance - Min 26 S Height 20.1 mm
Length 16.2 mm Product Type MOSFET
Rise Time 280 ns Factory Pack Quantity 450
Subcategory MOSFETs Transistor Type 1 N-Channel
Type MOSFET Typical Turn-Off Delay Time 125 ns
Typical Turn-On Delay Time 40 ns Width 5 mm
Unit Weight 0.162260 oz

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FQA34N20

QFET N-Channel MOSFET 200V

Inventory:

7,520