• DMN3150LW-7 SOT-323
DMN3150LW-7 SOT-323

DMN3150LW-7

Small Signal Field-Effect Transistor

Quantity Unit Price(USD) Ext. Price
6000 $0.066 $396.00
3000 $0.069 $207.00
500 $0.075 $37.50
150 $0.082 $12.30
50 $0.092 $4.60
5 $0.111 $0.56

Inventory:4,354

*The price is for reference only.
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Overview of DMN3150LW-7

The DMN3150LW-7 is a dual N-channel MOSFET transistor designed for use in power management applications.This MOSFET features a low on-state resistance and high current capability,making it ideal for efficient power switching and regulation.

Pinout

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

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


Circuit Diagram

Include a circuit diagram illustrating the connections and operation of the DMN3150LW-7 MOSFET for a visual representation.

Key Features

  • Dual N-Channel MOSFET: The DMN3150LW-7 incorporates two N-channel MOSFETs in a single package, providing flexibility in circuit design.
  • Low On-State Resistance: This MOSFET offers a low on-state resistance for minimal power loss during operation.
  • High Current Capability: With its high current handling capacity, the DMN3150LW-7 is suitable for power management applications requiring high current handling.
  • Fast Switching Speed: The MOSFET provides fast switching characteristics, enabling rapid switching transitions in power circuits.
  • Low Gate Threshold Voltage: The DMN3150LW-7 features a low gate threshold voltage for easy gate control and efficient operation.

Note: For detailed technical specifications, please refer to the DMN3150LW-7 datasheet.

Application

  • Power Management: Ideal for power switching, voltage regulation, and current control in various power management circuits.
  • Motor Control: Suitable for motor control applications requiring efficient power handling and fast switching.
  • LED Driver: The DMN3150LW-7 can be used in LED driver circuits for controlling and regulating LED illumination.

Functionality

The DMN3150LW-7 dual N-channel MOSFET provides efficient power switching and regulation capabilities, making it a versatile component for power management applications.

Usage Guide

  • Gate Control: Apply the appropriate gate-source voltage to turn the MOSFET on and off effectively.
  • Load Connections: Connect the drain and source pins to the load circuit for power switching and regulation.
  • Heat Dissipation: Ensure proper heat sinking or thermal management to maintain the MOSFET within its operating temperature limits.

Frequently Asked Questions

Q: Is the DMN3150LW-7 suitable for high-frequency switching applications?
A: Yes, the DMN3150LW-7 offers fast switching speeds and is suitable for high-frequency switching in power circuits.

Equivalent

For similar functionalities, consider these alternatives to the DMN3150LW-7:

  • DMN3010LK3: A single N-channel MOSFET with comparable performance characteristics to the DMN3150LW-7.
  • DMN6020SSD: This dual N-channel MOSFET offers enhanced current handling and efficiency for power management applications.

DMN3150LW-7

Specifications

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

Category Discrete Semiconductor ProductsTransistorsFETs, MOSFETsSingle FETs, MOSFETs Mfr Diodes Incorporated
Series - Package Tape & Reel (TR)Cut Tape (CT)Digi-Reel®
Product Status Active FET Type N-Channel
Technology MOSFET (Metal Oxide) Drain to Source Voltage (Vdss) 28 V
Current - Continuous Drain (Id) @ 25°C 1.6A (Ta) Drive Voltage (Max Rds On, Min Rds On) 2.5V, 4.5V
Rds On (Max) @ Id, Vgs 88mOhm @ 1.6A, 4.5V Vgs(th) (Max) @ Id 1.4V @ 250µA
Vgs (Max) ±12V Input Capacitance (Ciss) (Max) @ Vds 305 pF @ 5 V
FET Feature - Power Dissipation (Max) 350mW (Ta)
Operating Temperature -55°C ~ 150°C (TJ) Mounting Type Surface Mount
Supplier Device Package SOT-323 Package / Case SC-70, SOT-323
Base Product Number DMN3150

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DMN3150LW-7

Small Signal Field-Effect Transistor

Inventory:

4,354