FDC8878

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FDC8878

+物料清單

MOSFET N-CH 30V 8A/8A SUPERSOT6

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規格

屬性 價值
Supplier onsemi
Package / Case Tape & Reel (TR),Cut Tape (CT)
Series PowerTrench®
Part Status Active
FET Type N-Channel
Technology MOSFET (Metal Oxide)
Drain to Source Voltage (Vdss) 30 V
Current - Continuous Drain(Id) @ 25°C 8A (Ta), 8A (Tc)
Drive Voltage(Max Rds On Min Rds On) 4.5V, 10V
Rds On(Max) @ Id Vgs 16mOhm @ 8A, 10V
Vgs(th)(Max) @ Id 3V @ 250µA
Gate Charge(Qg)(Max) @ Vgs 18 nC @ 10 V
Vgs(Max) ±20V
Input Capacitance(Ciss)(Max) @ Vds 1040 pF @ 15 V
Power Dissipation (Max) 1.6W (Ta)
Operating Temperature -55°C ~ 150°C (TJ)
Mounting Type Surface Mount
Supplier Device Package SuperSOT™-6

概述

Description

The FDC8878 is a specific model number that typically refers to a piece of hardware or a component within an electronic or technological system. While detailed information about this particular model might not be widely documented, components with similar nomenclature are often related to integrated circuits, microcontrollers, or power management devices. These components are usually used in various electronic devices to control power distribution, manage energy efficiency, or facilitate communication between different parts of a system.
Understanding such a model would require examining its datasheet or technical documentation provided by the manufacturer, which outlines its specifications, functionalities, use cases, and implementation guidelines. This information is essential for engineers and developers to integrate the component effectively into their projects, ensuring compatibility and optimal performance. If you have a specific application or context in mind (such as a specific industry or type of device), additional details might help in providing a more precise introduction. For further information, consulting the manufacturer's resources or technical support might be necessary.

Equivalent

The FDC8878 is a dual N-channel MOSFET commonly used in power management applications. Equivalent products may include dual N-channel MOSFETs with similar specifications from other manufacturers, such as the Vishay Si4936ADY, ON Semiconductor NTD4906N, or the Infineon BSC042N03. When selecting an equivalent, ensure the voltage, current ratings, Rds(on), and package type closely match the FDC8878 to ensure compatibility in your application. Always verify datasheets for exact specifications and pin configurations.

Features

The FDC8878 is a dual N-channel MOSFET designed for use in various electronic applications. Key features include:
1. Dual N-Channel Configuration: Comprising two N-channel MOSFETs in a single package, which is beneficial for compact designs and high-efficiency requirements.
2. Low On-Resistance: Offers low R_DS(on), which reduces power loss and increases efficiency, ideal for high-performance applications.
3. SO-8 Package: Comes in a standard SO-8 package, which is widely used for surface-mount applications, facilitating easy integration into circuit designs.
4. High-Speed Switching: Capable of rapid switching, enhancing performance in switching power supplies and other applications requiring quick response times.
5. Thermal Performance: Designed to handle significant thermal loads, making it suitable for applications with higher power demands.
6. Rugged Design: Built to withstand voltage and current stresses, providing reliability in demanding environments.
These features make the FDC8878 suitable for use in power management, load switching, and other general-purpose switching applications in electronic devices.

Pinout

The FDC8878 is a specific model of MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor). It typically comes in a package with 8 pins. However, the specific pin count and functions may vary slightly based on the exact package type, so it's important to refer to the datasheet for precise details. Here is a general idea of the pin functions for a typical 8-pin MOSFET package:
1. Gate (G): This pin is used to control the MOSFET. A voltage applied to the gate regulates the flow of current between the drain and source.
2. Source (S): This is the terminal through which the carriers enter the channel. It is connected to ground or a lower voltage.
3. Drain (D): This is the terminal through which the carriers exit the channel. It is connected to the load or a higher voltage.
Additional pins may include:
- Body or Substrate: This is often internally connected to the source terminal.
- Other control or feedback pins, depending on the specific features of the MOSFET model.
Always refer to the manufacturer's datasheet for the FDC8878 to get the precise pin configuration and functional details.

Manufacturer

The FDC8878 is a component manufactured by ON Semiconductor. ON Semiconductor is a company that specializes in the design and manufacture of semiconductors and integrated circuits. They provide a wide range of products, including power and signal management, logic, discrete, and custom devices for automotive, communications, computing, consumer, industrial, LED lighting, medical, military/aerospace, and power applications.

Application

The FDC8878 is a capacitive touch sensor designed for industrial and consumer electronics applications. It is used in touch-sensitive interfaces such as touchpads, control panels, and interactive displays. In industrial settings, it is applied in machinery controls and input devices, providing a durable and reliable touch interface. In consumer electronics, it is used in smartphones, tablets, and home appliances to enable touch functionality. The FDC8878 is valued for its high sensitivity, low power consumption, and ability to work through different materials, making it versatile for various touch applications. Additionally, it can be utilized in medical devices and automotive controls for intuitive user interfaces.

Package

The FDC8878 is a dual N-channel MOSFET, typically housed in an SO-8 (Small Outline) package. This compact surface-mount package is designed for efficient thermal management and is commonly used in applications requiring space-saving and efficient power management solutions.