VE-JTP-CY Allicdata Electronics
Allicdata Part #:

VE-JTP-CY-ND

Manufacturer Part#:

VE-JTP-CY

Price: $ 109.42
Product Category:

Power Supplies - Board Mount

Manufacturer: Vicor Corporation
Short Description: DC DC CONVERTER 13.8V 50W
More Detail: Isolated Module DC DC Converter 1 Output 13.8V ...
DataSheet: VE-JTP-CY datasheetVE-JTP-CY Datasheet/PDF
Quantity: 1000
1 +: $ 99.47700
Stock 1000Can Ship Immediately
$ 109.42
Specifications
Current - Output (Max): 3.62A
Base Part Number: VE-JTP
Size / Dimension: 2.28" L x 2.40" W x 0.50" H (57.9mm x 70.0mm x 12.7mm)
Package / Case: Half Brick
Mounting Type: Through Hole
Efficiency: 90%
Operating Temperature: -25°C ~ 100°C
Features: OCP, SCP
Applications: ITE (Commercial)
Voltage - Isolation: 3kV
Power (Watts): 50W
Series: VE-J00™
Voltage - Output 3: --
Voltage - Output 2: --
Voltage - Output 1: 13.8V
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 an important element of electronics systems, to provide a secure and reliable power source. As a result, there is an increasing demand for the development of innovative products that offer improved reliability, and high-efficiency operation. This paper reviews some of the most popular converter architectures and technologies, with a focus on applications and principle of three popular converter architectures: Voltage-dependent Step-down converter (VE-JTP), Chopper-type, and Cyclic-type (CY).

VE-JTP architecture is a voltage-regulated technology, based on a voltage converter-oriented switching structure. This architecture includes a primary-side control unit and a secondary-side control unit, which are connected via a power transformer. The primary-side control unit provides the primary voltage in response to changes in the input voltage. The secondary-side control unit measures the secondary voltage and adjusts the output voltage in response to changes in the output current. This architecture offers improved output voltage regulation, reduced output drop over a large load range, and dynamic control of the output voltage.

Chopper-type converters work on the principle of speed control. This means that the output voltage and current can be controlled by changing the frequency and duty cycle of the pulse width modulated (PWM) signal. This technique is suitable for applications with high variability in the output voltage, such as in motor drives, battery charging, etc. The switching frequency and duty cycle of the PWM signal determines the output voltage and current. The performance of the converter can be further improved by designing an appropriate feedback system.

The Cyclic-type converter works on the principle of power conversion. This architecture involves a power switching circuit, which can convert the energy from one form to another. The most common example of this architecture is the buck and boost converter, which can be used to convert between a dc source and an AC signal. The control circuit in the converter regulates the output current and voltage in response to changes in the input voltage. The main advantage of this architecture is that it can provide high conversion efficiency and improved accuracy of output voltage regulation compared to the other types of converters.

In summary, these three architectures – VE-JTP, Chopper-Type, and Cyclic-type – are among the most popular DC DC Converters used in a variety of applications. Each architecture provides different advantages and features, and can be used to achieve different objectives in power conversion. The main advantage of these architectures is their higher degree of accuracy and improved efficiency compared to other converter architectures.

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

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