VI-BTL-IY Allicdata Electronics
Allicdata Part #:

VI-BTL-IY-ND

Manufacturer Part#:

VI-BTL-IY

Price: $ 0.00
Product Category:

Power Supplies - Board Mount

Manufacturer: Vicor Corporation
Short Description: DC DC CONVERTER 28V 50W
More Detail: Isolated Module DC DC Converter 1 Output 28V 1....
DataSheet: VI-BTL-IY datasheetVI-BTL-IY Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Output (Max): 1.79A
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: 28V
Voltage - Input (Max): 160V
Voltage - Input (Min): 66V
Number of Outputs: 1
Type: Isolated Module
Part Status: Active
Packaging: Bulk 
Description

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DC-DC converters are a widely used type of power converter, primarily in the form of switching power supplies. They are used to change the voltage of a DC source to provide the desired level of power to various power signals in a variety of applications. This article focuses on the VI-BTL-IY converter, its application field and working principle, as well as related topics.VI-BTL-IY, also known as the Bidirectional Tri-Level Converter, is a highly efficient, reliable, and compact DC-DC converter used mainly in telecommunications and industrial applications. It is capable of converting up to two kilowatts of electricity between DC voltages relative to ground, or between two AC sources. The VI-BTL-IY converter is especially useful in applications where high levels of efficiency and power density are required, such as in telecommunications networks, mobile phone base stations, lighting systems, and electric vehicles.The working principle of the VI-BTL-IY converter is based on the utilization of three switching phases. It uses one phase as the power element and two phases for providing isolation. The power phase is connected to one of the two AC sources and the other two phases are connected to the DC and ground sources respectively. This configuration ensures that the power is transferred between the AC and DC sources while maintaining high efficiency. The main components of the VI-BTL-IY converter include a power semiconductor devices such as IGBTs, MOSFETs, or thyristors, a controller, and appropriate inductors. The power semiconductor devices are used to switch the currents between the input and output terminals. The controller essentially functions as the brain of the converter, and is responsible for controlling the switching of the power semiconductor devices and the timing and duration of the switching process. Lastly, the inductors are essential for storing energy and preventing the power semiconductor devices from operating in a saturated state, as well as for helping to generate the desired output voltage. The VI-BTL-IY converter is known for being highly reliable in applications requiring high levels of efficiency. Its capabilities far exceed those of other DC-DC converters, such as the conventional buck, boost, and flyback converters. Additionally, its power density is much higher than that of other converters, allowing it to be used in applications where space constraints are an issue. Furthermore, the VI-BTL-IY converter has a low input voltage ripple, making it better suited for applications where low input voltage ripple is a requirement.In summary, the VI-BTL-IY converter is a highly efficient, reliable, and compact DC-DC converter used mainly in telecommunications and industrial applications. It is particularly useful for applications requiring high levels of efficiency and power density, as well as low input voltage ripple. The main components of the VI-BTL-IY converter include power semiconductor devices, a controller, and inductors. By utilizing these components, the VI-BTL-IY converter is able to transfer power between AC and DC sources while maintaining high efficiency.

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