VEC2616-TL-H-Z-W Allicdata Electronics
Allicdata Part #:

VEC2616-TL-H-Z-W-ND

Manufacturer Part#:

VEC2616-TL-H-Z-W

Price: $ 0.26
Product Category:

Discrete Semiconductor Products

Manufacturer: ON Semiconductor
Short Description: PCH+NCH 4V DRIVE SERIES
More Detail: Mosfet Array
DataSheet: VEC2616-TL-H-Z-W datasheetVEC2616-TL-H-Z-W Datasheet/PDF
Quantity: 1000
3000 +: $ 0.23054
Stock 1000Can Ship Immediately
$ 0.26
Specifications
Series: *
Part Status: Active
Description

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The VEC2616-TL-H-Z-W is part of a family of integrated circuits known as field-effect transistor (FET) arrays. FET technology is a form of semiconductor that utilizes voltage to control the current by modulating electron flow between two electrodes; the gate and the source. FET arrays are integrated circuits (ICs) designed to allow multiple FET transistors to be placed on a single chip. This reduces the package size, complexity and cost associated with performing multiple functions. In the case of the VEC2616-TL-H-Z-W, it is composed of 16 digital input FETs, each capable of handling up to 250V. This makes it a versatile component for applications in a variety of industries.

The main application field for the VEC2616-TL-H-Z-W is in automotive electronics. It is commonly used in automobile headlights, airbags, and other safety features to control current flow. For example, the VEC2616-TL-H-Z-W is used in the driver-side airbag system of an automobile. This integrated circuit is responsible for controlling the current that is directed to the propellant that activates the deployment of the airbag. In this application, it is essential that the current is precisely controlled and the VEC2616-TL-H-Z-W is designed to do just that.

The VEC2616-TL-H-Z-W also has multiple applications in the motor industry. It is commonly used in motor control circuits to precisely regulate current flow to the motor. For example, it is used in the speed control of DC electric motors, which is essential for ensuring the safe and efficient operation. This integrated circuit is also used for vibration control in motor applications as it is capable of modulating the current in order to provide the appropriate torque needed for the proper operation.

The VEC2616-TL-H-Z-W also has applications in the healthcare industry. It is commonly used for the control of medical devices such as infusion pumps, syringes and other medical lab equipment. This integrated circuit is responsible for controlling and maintaining the accuracy of the various medical devices. In this application, it is essential that the current flow is precisely regulated in order to ensure the safe and effective operation of the medical device.

In addition to its applications in the automotive, motor, and healthcare industries, the VEC2616-TL-H-Z-W can also be used in a variety of other industries. For example, it is used in the audio-video industry for the control of various video and audio systems. It is also used in the aerospace industry for the control of aircraft and spacecraft systems. Lastly, it has applications in the security industry for the control of surveillance systems, alarm systems, and other security systems.

The working principle of the VEC2616-TL-H-Z-W is quite simple. It is composed of 16 field-effect transistors (FETs) connected in parallel. Each FET is connected to a separate digital input signal coming from a controller (e.g. a microcontroller). When the controller sends a signal to the integrated circuit, the current flows through the particular FET associated with the signal. This allows precise control of current flow to the various components connected to the integrated circuit.

In conclusion, the VEC2616-TL-H-Z-W is a versatile integrated circuit designed for a variety of applications. This integrated circuit is designed with 16 digital FETs that can each handle up to 250V, making it suitable for applications in the automotive, motor, healthcare, audio-video, aerospace, and security industries. The working principle is simple and straightforward, and it utilizes FET technology to modulate current flow depending on the input signal from a controller.

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

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