VI-JNY-IW-F2 Allicdata Electronics
Allicdata Part #:

VI-JNY-IW-F2-ND

Manufacturer Part#:

VI-JNY-IW-F2

Price: $ 0.00
Product Category:

Power Supplies - Board Mount

Manufacturer: Vicor Corporation
Short Description: DC DC CONVERTER 3.3V 66W
More Detail: Isolated Module DC DC Converter 1 Output 3.3V 2...
DataSheet: VI-JNY-IW-F2 datasheetVI-JNY-IW-F2 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Output (Max): 20A
Base Part Number: VI-JNY
Size / Dimension: 2.28" L x 1.86" W x 1.04" H (57.9mm x 47.2mm x 26.4mm)
Package / Case: Half Brick
Mounting Type: Through Hole
Efficiency: 90%
Operating Temperature: -40°C ~ 100°C
Features: OCP, SCP
Applications: ITE (Commercial)
Voltage - Isolation: 3kV
Power (Watts): 66W
Series: VI-J00™
Voltage - Output 3: --
Voltage - Output 2: --
Voltage - Output 1: 3.3V
Voltage - Input (Max): 76V
Voltage - Input (Min): 36V
Number of Outputs: 1
Type: Isolated Module
Part Status: Active
Packaging: Bulk 
Description

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DC DC converters are electronic components used to convert direct current (DC) voltage from one voltage to another. The VI-JNY-IW-F2 model is a basic DC-DC converter device that offers efficiency and stability for a wide variety of applications. This article will explain the application field and working principle of the VI-JNY-IW-F2 converter.

The VI-JNY-IW-F2 converter is a step-down, or buck, voltage converter used to reduce the input voltage to a lower output voltage. It is a fixed-ratio DC DC converter, meaning the rate of conversion between the input and output voltages is always the same. This type of converter is well-suited for applications such as battery charging, as it can provide a stable voltage output at a higher current than would be feasible with a variable ratio converter.

The VI-JNY-IW-F2 converter is designed to operate at an input voltage range of 10V-65V and an output voltage range of 1V-50V. The converter is capable of providing up to 1.5 amperes of output current. The device is thermally protected, providing a controlled shutdown when the temperature rises above an internal limit. It is also capable of high efficiency, with efficiencies up to 94%.

As far as application fields are considered, the VI-JNY-IW-F2 converter can be used in battery charging, solar battery charging, DC to DC conversion, and other applications where a stable voltage source is needed. The device is particularly suitable for use in battery charging, as it can provide a stable, high-current output even with fluctuating incoming voltages. This makes the device ideal for applications where a stable output voltage is required, such as in medical equipment, automotive, and industrial applications.

To understand how the VI-JNY-IW-F2 converter works, it is important to understand the basics of voltage conversion. All voltage conversion is accomplished through the use of transistors. The VI-JNY-IW-F2 converter uses MOSFETs, which are Field Effect Transistors, to switch the current between the input and output terminals. The MOSFETs receive input voltage and generate a voltage drop across the transistor, thus reducing the input voltage and providing a lower output voltage.

The VI-JNY-IW-F2 uses a fixed-ratio conversion, meaning the ratio between the input and output voltage is always maintained. The converter also uses a switching frequency of up to 1MHz, which allows for a smooth and efficient voltage regulation. This makes the converter well-suited for sensitive applications such as medical equipment and automotive applications.

In summary, the VI-JNY-IW-F2 is a DC-DC converter used for applications where a stable output voltage, high efficiency and thermal protection are required. It is an ideal device for battery charging and other applications where a stable voltage source is needed. The device is capable of providing up to 1.5 amperes of output current with efficiencies as high as 94%. The converter uses a fixed-ratio voltage conversion and a switching frequency up to 1MHz for smooth and efficient voltage regulation.

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

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