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DMP3017SFG-7

P-Channel 30V 11.5A Power Transistor

Quantity Unit Price(USD) Ext. Price
1 $0.378 $0.38
10 $0.302 $3.02
30 $0.264 $7.92
100 $0.236 $23.60
500 $0.213 $106.50
1000 $0.201 $201.00

Inventory:7,736

*The price is for reference only.
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Submit your quote request for DMP3017SFG-7 using this form.You can also reach us via email at Email: [email protected], and we will respond within 12 hours.

Overview of DMP3017SFG-7

The DMP3017SFG-7 is a P-channel enhancement mode MOSFET designed for use in power management applications. This MOSFET features a low on-resistance and high load capacity, making it suitable for switching and amplification tasks in various electronic systems.

Pinout

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

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

Circuit Diagram

Include a circuit diagram illustrating the connections and operation of the DMP3017SFG-7 MOSFET for a visual representation.

Key Features

  • P-Channel MOSFET: The DMP3017SFG-7 is a P-channel MOSFET suitable for power management applications.
  • Low On-Resistance: This MOSFET offers low on-resistance to minimize power losses and improve efficiency.
  • High Load Capacity: With its high load capacity, the DMP3017SFG-7 can handle significant current levels in circuit designs.
  • Fast Switching Speed: The MOSFET has a fast switching speed, allowing for quick response times in switching applications.
  • Enhancement Mode: Operating in enhancement mode, the MOSFET provides easy control over switching operations.

Note: For detailed technical specifications, please refer to the DMP3017SFG-7 datasheet.

Application

  • Power Management Systems: Ideal for use in power management systems for switching and amplification purposes.
  • Voltage Regulation: Suitable for voltage regulation tasks in electronic circuits requiring efficient power handling.
  • Motor Control: Can be used in motor control applications for controlling the flow of current to motors.

Functionality

The DMP3017SFG-7 is a P-channel MOSFET that provides efficient power management capabilities, allowing for effective control over current flow in electronic systems.

Usage Guide

  • Gate Connection: Connect the gate (G) pin of the MOSFET to the controlling signal for switching operations.
  • Drain Connection: Connect the drain (D) pin to the load to control the current flow.
  • Source Connection: Connect the source (S) pin to the ground or common reference point in the circuit.

Frequently Asked Questions

Q: Is the DMP3017SFG-7 suitable for high-frequency applications?
A: Yes, the DMP3017SFG-7 offers fast switching speeds and can be used in high-frequency switching applications.

Equivalent

For similar functionalities, consider these alternatives to the DMP3017SFG-7:

  • IRF4905: A P-channel MOSFET with comparable specifications and performance characteristics.
  • FQP27P06: This MOSFET offers similar features and can be used as an alternative to the DMP3017SFG-7.

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 SMD/SMT
Package / Case PowerDI3333-8 Transistor Polarity P-Channel
Number of Channels 1 Channel Vds - Drain-Source Breakdown Voltage 30 V
Id - Continuous Drain Current 11.5 A Rds On - Drain-Source Resistance 10 mOhms
Vgs - Gate-Source Voltage - 25 V, + 25 V Vgs th - Gate-Source Threshold Voltage 1 V
Qg - Gate Charge 41 nC Minimum Operating Temperature - 55 C
Maximum Operating Temperature + 150 C Pd - Power Dissipation 2.2 W
Channel Mode Enhancement Series DMP3017
Brand Diodes Incorporated Configuration Single
Fall Time 36.8 ns Forward Transconductance - Min 24 S
Product Type MOSFET Rise Time 15.4 ns
Factory Pack Quantity 2000 Subcategory MOSFETs
Transistor Type 1 P-Channel Typical Turn-Off Delay Time 45.6 ns
Typical Turn-On Delay Time 7.5 ns Unit Weight 0.001058 oz

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DMP3017SFG-7

P-Channel 30V 11.5A Power Transistor

Inventory:

7,736