VE-2ND-CV-S Allicdata Electronics
Allicdata Part #:

VE-2ND-CV-S-ND

Manufacturer Part#:

VE-2ND-CV-S

Price: $ 0.00
Product Category:

Power Supplies - Board Mount

Manufacturer: Vicor Corporation
Short Description: DC DC CONVERTER 85V 150W
More Detail: Isolated Module DC DC Converter 1 Output 85V 1....
DataSheet: VE-2ND-CV-S datasheetVE-2ND-CV-S Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: VE-200™
Packaging: Bulk 
Part Status: Active
Description

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DC-DC converters are electrical devices used to convert electric power from one form to another, typically from DC (direct current) to another type of DC or AC (alternating current). DC-DC converters are widely used in a variety of industries, from automotive, aerospace, and defense, to industrial, medical, and communications. DC-DC converters have been utilized in a variety of applications, ranging from low-voltage to high-voltage DC applications, and at frequencies ranging from low (50 Hz) to high (over 1 MHz).The ve-2nd-cv-s application field and working principle is a popular type of DC-DC converter used in applications such as automotive, energy harvesting, and solar energy conversion. The ve-2nd-cv-s application field and working principle utilizes a single-ended architecture, which consists of a primary inductor, a secondary inductor, and a bridge-rectifier structure, to convert a given DC input voltage into an output voltage.The ve-2nd-cv-s application field and working principle uses a PWM chopper as its primary stage to provide a variable switching frequency. The switching frequency is adjusted to adjust the duty cycle accordingly. At the secondary stage, the output voltage is regulated by controlling the on-off time of the secondary inductor. This control produces the necessary output voltage as per the desired input voltage. The output voltage is then smoothed and stabilized through a bridge rectifier.The ve-2nd-cv-s application field and working principle provides both continuous-mode operation and discontinuous-mode operation. In continuous-mode operation, the primary inductor is kept in an excited mode as it switches, or pulses, between the two opposite voltage levels. In discontinuous-mode operation, the primary inductor is partially discharged before switching from one voltage level to the other. Both modes allow for a wide range of input voltages, which make the ve-2nd-cv-s application field and working principle an attractive choice for many applications.The ve-2nd-cv-s application field and working principle has several important advantages that make it a preferred choice for multiple applications. First, it allows for a high efficiency due to its low losses. Second, it is very flexible - as its input voltage can be varied significantly - allowing it to be adapted to different applications. Third, it requires very little external circuitry, allowing for smaller overall system size. Finally, the ve-2nd-cv-s application field and working principle allows for high power density due to its relatively high power capacity.The ve-2nd-cv-s application field and working principle has some drawbacks as well. It has limited overload capability, making it unsuitable for applications where large overloads are expected. Additionally, the switching frequency of the device can cause interference in the output of the system, which may need to be monitored closely. It also has relatively limited power handling capabilities.Overall, the ve-2nd-cv-s application field and working principle is a common type of DC-DC converter that has many advantages and suitable applications. It is a reliable, efficient, and relatively small converter that can provide a wide range of conversions suitable for a variety of applications. Its most important components are its primary and secondary inductors, its PWM chopper, and its bridge rectifier, which together work to provide a cost-effective, reliable, and efficient conversion.

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