VI-B6Y-IX Allicdata Electronics
Allicdata Part #:

VI-B6Y-IX-ND

Manufacturer Part#:

VI-B6Y-IX

Price: $ 0.00
Product Category:

Power Supplies - Board Mount

Manufacturer: Vicor Corporation
Short Description: DC DC CONVERTER 3.3V 50W
More Detail: Isolated Module DC DC Converter 1 Output 3.3V 1...
DataSheet: VI-B6Y-IX datasheetVI-B6Y-IX Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Output (Max): 15A
Size / Dimension: 4.60" L x 2.40" W x 0.50" H (116.8mm x 61.0mm x 12.7mm)
Package / Case: Full Brick
Mounting Type: Through Hole
Efficiency: 90%
Operating Temperature: -40°C ~ 85°C
Features: OCP, OTP, OVP, SCP
Applications: ITE (Commercial)
Voltage - Isolation: 3kV
Power (Watts): 50W
Series: VI-200™
Voltage - Output 3: --
Voltage - Output 2: --
Voltage - Output 1: 3.3V
Voltage - Input (Max): 400V
Voltage - Input (Min): 200V
Number of Outputs: 1
Type: Isolated Module
Part Status: Active
Packaging: Bulk 
Description

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DC DC Converters

The ability to convert direct current (DC) from one voltage level to another voltage level is an important feature of many modern electrical systems. The need for DC to DC conversions arises from variations in the required energy levels in different applications and from the fact that many electrical components and circuits are either designed to function only at certain voltages or are more efficient when operating on specific voltages. DC to DC converters, also known as DC-DC converters, are commonly used to accomplish this type of voltage conversion.

One of the most commonly used converters is the VI-B6Y-IX, which is a two-stage isolated DC-DC converter with a maximum input voltage of 6V. It features an adjustable output, as well as short-circuit protection, overcurrent protection, and high-voltage transient protection. The VI-B6Y-IX is designed to convert direct current from one voltage level to another voltage level, with a maximum input voltage of 6V and a maximum output of 16V. It is widely used in applications such as power supplies, motor control systems, solar energy systems, LED lighting systems, and medical equipment.

The basic working principle of the VI-B6Y-IX can be explained by examining the two-stage conversion process. In the first stage, the dc input voltage is converted to an alternating voltage using a dc-ac converter circuit. The alternating voltage is then fed to a full-bridge inverter, which is connected to a transformer. The transformer boosts the voltage as it passes through to the second stage of the conversion process. In the second stage, the alternating voltage is changed back to direct current using a diode bridge rectifier.

In addition to its isolation capabilities, the VI-B6Y-IX also has a wide input voltage range. The input voltage range is 2.5 to 6.0 volts dc for inputs under 3 volts, and from 4.8 to 6 volts dc for inputs over 3 volts. The minimum input current is 0.15A, and the maximum input current is 3A. The maximum output voltage of the converter is 16V. The impedance of the input source and the output load should be adequately matched for the best performance. The efficiency can be as high as 95% for certain applications.

The VI-B6Y-IX is a highly efficient device that is suitable for a range of different applications requiring high power and high frequency conversion from one voltage level to another. It has proven to be reliable and highly robust in operation, and is preferred for its high efficiency and low switching losses. The primary application areas for this type of converter include automotive, industrial, telecommunication, LED lighting, and medical equipment.

In conclusion, the VI-B6Y-IX is a versatile two-stage isolated DC-DC converter with a wide input voltage range and adjustable output voltage. It is typically used in applications such as power supplies, motor control systems, solar energy systems, LED lighting systems, and medical equipment. Its high efficiency and low switching losses make it an ideal choice for these types of applications, and its two-stage conversion process ensures accurate voltage control and enhanced protection from voltage transients.

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

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