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DMP2035UFDF-7

DMP2035UFDF-7

Product Overview

Category

The DMP2035UFDF-7 belongs to the category of power MOSFETs.

Use

It is used for power management and switching applications in various electronic devices and systems.

Characteristics

  • High efficiency
  • Low on-resistance
  • Fast switching speed
  • Low gate charge

Package

The DMP2035UFDF-7 is available in a compact and efficient package suitable for surface mount applications.

Essence

The essence of the DMP2035UFDF-7 lies in its ability to provide efficient power management and switching capabilities in a small form factor.

Packaging/Quantity

The product is typically packaged in reels and is available in varying quantities based on customer requirements.

Specifications

  • Drain-Source Voltage (Vdss): 30V
  • Continuous Drain Current (Id): 12A
  • RDS(ON) (Max) @ VGS = 10V: 8.5mΩ
  • Gate-Source Voltage (Vgs): ±20V
  • Total Gate Charge (Qg): 13nC
  • Operating Temperature Range: -55°C to 150°C

Detailed Pin Configuration

The DMP2035UFDF-7 features a standard pin configuration with clearly defined connections for the drain, source, and gate terminals.

Functional Features

  • High efficiency power management
  • Fast and reliable switching
  • Low power dissipation
  • Enhanced thermal performance

Advantages

  • Compact size
  • High efficiency
  • Low on-resistance
  • Suitable for high-frequency applications

Disadvantages

  • Sensitive to static discharge
  • Limited voltage handling capability

Working Principles

The DMP2035UFDF-7 operates based on the principles of field-effect transistors, utilizing its low on-resistance and fast switching speed to efficiently manage power flow within electronic circuits.

Detailed Application Field Plans

The DMP2035UFDF-7 is ideally suited for use in: - DC-DC converters - Power supplies - Motor control systems - LED lighting applications - Battery management systems

Detailed and Complete Alternative Models

  • DMP2035U
  • DMP2035S
  • DMP2046UFDF-7
  • DMP2050UFDF-7

In conclusion, the DMP2035UFDF-7 is a versatile power MOSFET that offers high efficiency and fast switching capabilities, making it an ideal choice for various power management and switching applications in modern electronic devices and systems.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací DMP2035UFDF-7 v technických řešeních

  1. What is the DMP2035UFDF-7?

    • The DMP2035UFDF-7 is a 20V P-channel enhancement mode MOSFET designed for use in power management applications.
  2. What is the maximum drain-source voltage of the DMP2035UFDF-7?

    • The maximum drain-source voltage of the DMP2035UFDF-7 is 20V.
  3. What is the maximum continuous drain current of the DMP2035UFDF-7?

    • The maximum continuous drain current of the DMP2035UFDF-7 is 6.5A.
  4. What is the typical on-resistance of the DMP2035UFDF-7?

    • The typical on-resistance of the DMP2035UFDF-7 is 25mΩ at VGS = -4.5V.
  5. What are the typical applications for the DMP2035UFDF-7?

    • The DMP2035UFDF-7 is commonly used in battery protection, load switching, and power management solutions.
  6. What is the gate-source voltage range for proper operation of the DMP2035UFDF-7?

    • The gate-source voltage range for proper operation of the DMP2035UFDF-7 is typically between -8V and 8V.
  7. Is the DMP2035UFDF-7 suitable for automotive applications?

    • Yes, the DMP2035UFDF-7 is suitable for automotive applications due to its robust design and performance characteristics.
  8. Does the DMP2035UFDF-7 require a heatsink for high-power applications?

    • Depending on the specific application and power dissipation, a heatsink may be required for high-power applications to ensure optimal thermal performance.
  9. What are the recommended operating temperature ranges for the DMP2035UFDF-7?

    • The recommended operating temperature range for the DMP2035UFDF-7 is typically between -55°C and 150°C.
  10. Can the DMP2035UFDF-7 be used in conjunction with other MOSFETs for parallel operation?

    • Yes, the DMP2035UFDF-7 can be used in parallel with other MOSFETs to increase current-handling capability in certain applications, with proper attention to balancing and driving considerations.