
Allicdata Part #: | VI-BNN-CW-F1-ND |
Manufacturer Part#: |
VI-BNN-CW-F1 |
Price: | $ 0.00 |
Product Category: | Power Supplies - Board Mount |
Manufacturer: | Vicor Corporation |
Short Description: | DC DC CONVERTER 18.5V 100W |
More Detail: | Isolated Module DC DC Converter 1 Output 18.5V ... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Current - Output (Max): | 5.41A |
Size / Dimension: | 4.60" L x 1.86" W x 0.79" H (116.8mm x 47.2mm x 20.1mm) |
Package / Case: | Full Brick |
Mounting Type: | Through Hole |
Efficiency: | 90% |
Operating Temperature: | -25°C ~ 85°C |
Features: | OCP, OTP, OVP, SCP |
Applications: | ITE (Commercial) |
Voltage - Isolation: | 3kV |
Power (Watts): | 100W |
Series: | VI-200™ |
Voltage - Output 3: | -- |
Voltage - Output 2: | -- |
Voltage - Output 1: | 18.5V |
Voltage - Input (Max): | 76V |
Voltage - Input (Min): | 36V |
Number of Outputs: | 1 |
Type: | Isolated Module |
Part Status: | Active |
Packaging: | Bulk |
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DC-DC converters are electronic devices that transform dc power from one supply to another, allowing equipment to rely on safe and reliable power from a variety of sources. The most widely used DC-DC converter technologies are VI-BNN-CW-F1 (Bipolar Nextersynchronous Control-Waveform Improved) applications fields and working principles.
In the power electronics industry, VI-BNN-CW-F1 are widely used for their high reliability, low noise, and high efficiency. These applications are widely used in renewable energy sources, such as wind energy, solar energy, fuel cells, and others. They are also used in automotive, aircraft, and medical applications, providing quieter and more reliable power and allowing for more efficient conversions.
The VI-BNN-CW-F1 converter is a type of DC-DC converter that uses a bipolar nextersynchronous control scheme, as opposed to traditional pulse width modulation (PWM) topologies. This technique uses a pair of two-level modulation patterns for each phase signal, thereby allowing the converter to be operated at its highest efficiency since two pulses may be generated in each cycle.
The working principle of VI-BNN-CW-F1 starts with the input voltage being converted to a high-frequency sinusoidal voltage using an oscillator. This sinewave voltage is then divided and transferred into the converter circuit. The converter circuit includes two bridge legs, each driven by a sinewave with variable phase shifts.
Each bridge leg consists of four power transistors, two being driven by the sinewave and two being driven by the complementary voltage (voltage 180° out of phase). The two legs both are driven in synchronization by the same gating signals to avoid any cross-conduction between them. The synchronizing signals generate a DC output voltage, and a control loop adjusts the total converter gain, allowing it to reduce idle losses and limit the peak currents.
As a result, the VI-BNN-CW-F1 converter offers a wide range of advantages over traditional designs. These include superior output voltage regulation, improved efficiency, lower switching losses, lower EMI emissions, better power factor, higher power density, faster transient response, and better dynamic performance. It is also able to operate at a higher switching frequency, thus reducing EMI levels and increasing the design flexibility.
The VI-BNN-CW-F1 converter also allows for multiple output conversion, meaning that it is possible to achieve multiple outputs from multiple sources. This allows for efficient and reliable power delivery in a wide range of applications from motor controllers to microprocessors.
Overall, the VI-BNN-CW-F1 converter is a highly efficient and reliable DC-DC converter that has wide application fields and working principles. With its superior output voltage regulation, improved efficiency, lower switching losses, lower EMI emissions, better power factor, higher power density, faster transient response, and better dynamic performance, the VI-BNN-CW-F1 converter is an ideal choice for a variety of DC-DC conversion applications.
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