FC8V33030L Allicdata Electronics
Allicdata Part #:

FC8V33030L-ND

Manufacturer Part#:

FC8V33030L

Price: $ 0.29
Product Category:

Discrete Semiconductor Products

Manufacturer: Panasonic Electronic Components
Short Description: MOSFET 2N-CH 33V 6.5A WMINI8
More Detail: Mosfet Array 2 N-Channel (Dual) 33V 6.5A 1W Surfac...
DataSheet: FC8V33030L datasheetFC8V33030L Datasheet/PDF
Quantity: 1000
3000 +: $ 0.26829
Stock 1000Can Ship Immediately
$ 0.29
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
FET Type: 2 N-Channel (Dual)
FET Feature: Logic Level Gate
Drain to Source Voltage (Vdss): 33V
Current - Continuous Drain (Id) @ 25°C: 6.5A
Rds On (Max) @ Id, Vgs: 20 mOhm @ 3.3A, 10V
Vgs(th) (Max) @ Id: 2.5V @ 480µA
Gate Charge (Qg) (Max) @ Vgs: 3.8nC @ 4.5V
Input Capacitance (Ciss) (Max) @ Vds: 360pF @ 10V
Power - Max: 1W
Operating Temperature: 150°C (TJ)
Mounting Type: Surface Mount
Package / Case: 8-SMD, Flat Lead
Supplier Device Package: WMini8-F1
Description

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The FC8V33030L is a high-performance, high-performance logic device usually used for analog switches and multiplexers. It is an integrated circuit that is designed for a variety of applications in embedded and communications markets.

The FC8V33030L provides low EMI, high-speed and accuracy, low idle power consumption and low operating temperature. It has a wide supply range, good temperature resistance and a switchable output current (up to 1.5A). It also features a variable input voltage range of 0 to 5V, logic control, linear segregation of channels and integrated switching and protection.

Application Field of FC8V33030L

As an analog switch or multiplexer, the FC8V33030L offers many advantages in various applications. It is primarily used in systems that require high reliability, speed and accuracy, such as security systems, medical diagnostics systems, instrumentation and control systems, telecommunication systems, and automotive systems.

This device can be integrated in high-end communication systems, such as base stations and gateways, automotive systems and high-density network switches. The device has high-speed operation with minimal noise, excellent temperature and voltage margin, and tight channel shutoff. It is also suitable for network processors and clock synchronization circuits. In addition, the device provides very low EMI due to its linear analog switching characteristics.

Working Principle of FC8V33030L

The FC8V33030L has two parallel, pull-up transistors called the source and drain and one switchable transistor (commonly referred to as the gate). Current flow between the source and the drain is controlled through the gate. When the gate is connected to a logic output, the channel drops to low resistance, allowing current to flow.

The FC8V33030L can be operated in either the open drain or open source mode. In the open drain mode, the gate is connected to the source and the drain. This mode allows the channel to be used as an input/output switch. The open source mode is used when the channel is used as an output switch. In this mode, the gate is connected to the source and the channel is biased to a voltage. When the input is high, the gate is turned off, reducing the resistance of the channel.

The FC8V33030L features a current switchable output, allowing for increased accuracy and flexibility of controlling the channels. Moreover, the step-up device also features linear analog switching, allowing for reduced EMI noise. The device is internally protected against any overvoltage conditions that may occur in the input or output channels, or in the power supply line.

The FC8V33030L can also be used with various control logic circuits, such as flip-flops, counters, and state machines. Additionally, in order to ensure the device\'s accuracy and reliability, it is necessary to provide low oscillator noise and current signal conditioning circuitry. This helps to reduce any distortion of the signal.

The device\'s operation and performance depend upon the design of the system, the environmental conditions, and the application for which the device is used. Careful analysis of the operating conditions and the system design should be carried out before designing the device.

The specific data is subject to PDF, and the above content is for reference

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