Allicdata Part #: | DC2026C-ND |
Manufacturer Part#: |
DC2026C |
Price: | $ 53.55 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | Linear Technology/Analog Devices |
Short Description: | DEMO BOARD LINDUINO ONE ISO |
More Detail: | LT3973, LTM2884, ATmega328 Linduino One - MCU 8-Bi... |
DataSheet: | DC2026C Datasheet/PDF |
Quantity: | 23 |
1 +: | $ 48.19500 |
100 +: | $ 47.48660 |
Series: | -- |
Part Status: | Active |
Board Type: | Evaluation Platform |
Type: | MCU 8-Bit |
Core Processor: | AVR |
Operating System: | -- |
Platform: | Linduino One |
For Use With/Related Products: | LT3973, LTM2884, ATmega328 |
Mounting Type: | Fixed |
Contents: | Board(s) |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
The DC2026C evaluation board provides an easy to use platform for evaluating power electronic drives. This evaluation board enables users to quickly understand and evaluate the features of the Infineon DRV10983 integrated gate driver designed for 3-phase BLDC motor control applications. It provides an easy way to measure motor performance and emulate an entire BLDC motor drive system. The DC2026C is engineered to make it user friendly with the goal of optimizing power conversion efficiency, motor control performance and ease of operation.
The DC2026C evaluation board was designed to provide a convenient platform suitable for developing a wide range of BLDC motor control applications. The flexible design allows users to easily adapt the DC2026C to evaluate a variety of different types of BLDC motors. Through the use of easy to read Potentiometers, the DC2026C can be easily adjusted to fine-tune the desired motor behavior.
The DC2026C comprises two main components, the motor control evaluation board with the DRV10983 integrated, and the DRV10983 development board. The motor control evaluation board contains all of the necessary circuitry to enable users to conveniently measure various motor parameters, such as torque, back EMF and cogging inertia. Additionally, the board contains on board current sensing circuitry to measure current waveforms in the three-phase motor winding. The external power supply enables the user to supply power to the board and to power the DC2026C DRV10983.
The DRV10983 development board, which is used to evaluate the motor control algorithm, is based on the Infineon XMC1300 family of microcontrollers. The XMC1300 is capable of processing almost any algorithm which is necessary for the application. This development board runs flexible open source code where parameters can easily be adjusted, which allows users to quickly optimize the algorithm to fit their application needs. The development board is also equipped with an EasyPower Interface to enable control and monitoring of power conversion devices, such as IGBTs. It also contains communication ports such as CAN, UART, I2C, and SPI.
The working principle of the DC2026C evaluation board is simple. The board runs open source commutation code which processes data from the current sensors and adjusts the duty cycle of the DRV10983 to control the BLDC motor. The DC2026C can be configured to operate open loop, based on a series of current readings, or closed loop based on a current sensing feedback loop.
The DC2026C is ideal for applications including power electronic drive systems, autonomous navigation systems, robotic systems, aerial platforms, robotic lifting, and much more. It is also suitable for research and industrial applications, such as motion control, 3D printing, dosing pumps, and material handling systems. The board is also suitable for motor control applications which require precise control and high efficiency. In addition, it provides an easy to use platform for developers who need to quickly evaluate the performance of various motor control algorithms.
The DC2026C evaluation board provides engineers and developers with an easy to use and flexible platform for evaluating power electronic drive systems. Through the use of Infineon’s XMC1300 microcontroller-based development board, users can quickly evaluate various motor control algorithms and fine-tune parameters. The integrated DRV10983 then processes the data from the current sensors and adjusts the duty cycle to control the BLDC motor. The DC2026C provides an excellent platform to evaluate and optimize power conversion efficiency, motor control performance, and ease of operation for any 3-phase BLDC motor control application.
The specific data is subject to PDF, and the above content is for reference
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