| Allicdata Part #: | 917-1039-ND |
| Manufacturer Part#: |
EPC9027 |
| Price: | $ 0.00 |
| Product Category: | Development Boards, Kits, Programmers |
| Manufacturer: | EPC |
| Short Description: | BOARD DEV FOR EPC8007 40V EGAN |
| More Detail: | EPC8007 Half H-Bridge Driver (External FET) Power ... |
| DataSheet: | EPC9027 Datasheet/PDF |
| Quantity: | 1000 |
| 1 +: | 0.00000 |
Specifications
| Series: | eGaN® |
| Part Status: | Obsolete |
| Type: | Power Management |
| Function: | Half H-Bridge Driver (External FET) |
| Embedded: | No |
| Utilized IC / Part: | EPC8007 |
| Primary Attributes: | 40V, 4A Max Output GaNFET Capability |
| Supplied Contents: | Board(s) |
| Secondary Attributes: | GaNFET Driver Circuit Uses 7V ~ 12V |
Description
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The EPC9027 is a highly versatile power-conversion evaluation board designed for DC-DC buck, boost, or cuk applications. This board operates from a wide input voltage range of 8 V to 80 V, and is capable of supplying up to 7 A of output current. The EPC9027 allows the user to easily design and optimize power conversion algorithms for a variety of applications. It can also be used for the demonstration and evaluation of various power conversion concepts or algorithms. Below, we will discuss the application areas and working principle of the EPC9027.
Application Areas
The EPC9027 is suitable for applications that require efficient power conversion. Examples include high-end servers, battery-charging systems, data storage systems, and renewable energy systems. It can also be used to develop and demonstrate power conversion algorithms for DC-DC buck, boost, or cuk applications. In addition, the board can be used to evaluate different power-conversion topologies, such as flyback converters and forward converters. The EPC9027 features an integrated serial port for communication with a PC or embedded processor, making it a convenient tool for development, evaluation, and demonstration of power conversion algorithms.
Working Principle
The EPC9027\'s operation is based on the pulse-width modulation (PWM) technique. It uses an oscillator to generate an output waveform with adjustable frequency and duty cycle. This output waveform is then converted into a fixed-frequency pulse-width modulated signal, which is applied to the power switch of the power converter. The result is an adjustable rectangular waveform, which is used for controlling the power delivered to the output load. The output voltage is regulated through a feedback loop, and the output current is regulated by a current-sense amplifier circuit.
The EPC9027 can be used to evaluate various control and compensation techniques. For example, different pulse selection, hysteresis control, and voltage modulation techniques can be used to improve the efficiency and performance of the power converter. In addition, the board can be used to evaluate the performance of other power conversion components, such as power switches, inductors, and capacitors. It can also be used to demonstrate the operation of multiple power-conversion stages in series or parallel.
The EPC9027 can also be used for the development of new power-conversion algorithms and concepts. It can be used to evaluate new topologies, such as a buck–boost converter topology, or to develop custom control algorithms. In addition, the board can be used to evaluate the performance of various components, such as power switches, inductors, capacitors, and diodes.
The EPC9027 is a highly versatile power-conversion evaluation board designed for development, evaluation, and demonstration of power conversion algorithms. It can be used for the development and evaluation of DC-DC buck, boost, or cuk applications. The board’s pulse-width modulation technique allows the user to easily design and optimize power conversion algorithms for a variety of applications. In addition, the board can be used to evaluate different power-conversion topologies, such as flyback converters and forward converters, and to demonstrate multiple power-conversion stages in series or parallel. Overall, the EPC9027 is an invaluable tool for developing and demonstrating efficient power conversion algorithms.
The specific data is subject to PDF, and the above content is for reference
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EPC9027 Datasheet/PDF