3.14-1 Allicdata Electronics
Allicdata Part #:

438-1147-ND

Manufacturer Part#:

3.14-1

Price: $ 4.54
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Twin Industries
Short Description: PROTOBOARD RASPBERRYPI 65X56.5MM
More Detail: Plated Through Hole Protoboard Raspberry Pi Platfo...
DataSheet: 3.14-1 datasheet3.14-1 Datasheet/PDF
Quantity: 45
1 +: $ 4.08870
5 +: $ 4.00680
10 +: $ 3.92490
25 +: $ 3.84350
50 +: $ 3.76160
Stock 45Can Ship Immediately
$ 4.54
Specifications
Series: --
Part Status: Active
Platform: Raspberry Pi
Type: Protoboard
Function: Plated Through Hole
Utilized IC / Part: --
Contents: Board(s)
Description

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

Evaluation Boards - Expansion Boards, Daughter Cards encompass a wide range of products that can be used for a variety of applications. One such application is the 3.14-1 evaluation board. This evaluation board is used primarily for the testing and development of motor control systems. It is an 8-channel motor control board with two powerful FPGAs, two ARM Cortex-M4 processor cores, a 6-axis digital MEMS accelerometer, and a high-speed digital signal processor.

The 3.14-1 evaluation board is capable of driving four brushed DC motors and four brushless DC motors. The FPGAs can be used to program up to eight motor control profiles and a variety of frequency filters for motor control applications. The 2 integrated ARM Cortex-M4 processor cores can be used for motor control software development, debugging, and testing. The integrated MEMS accelerometer can be used to measure acceleration and angular rate over a range of up to 16g and 2.4K rad/s.

The 3.14-1 evaluation board is designed to interface with a variety of external components, such as sensors, switches, and drivers. It supports a wide range of hardware peripherals, such as pulse width modulation (PWM) controllers, quadrature encoders, and Hall-effect sensors. The board also includes an onboard USB port for programming and debugging, as well as a mini-USB port for data logging and communication with other external components.

The motor control algorithms of the 3.14-1 evaluation board are based on a PID (proportional-integral-derivative) architecture, which is commonly used in industrial motor control applications. This architecture allows for precise control of motor speed, torque, and position. The board also features a range of tools and libraries to support rapid development and testing of motor control applications. The board is compatible with a range of popular development tools, such as C/C++, MATLAB/Simulink, and LabVIEW.

In addition, the 3.14-1 evaluation board is capable of self-testing its components before launching the application. This allows for troubleshooting of any potential issues before the application is started. The 3.14-1 evaluation board is also designed to be compatible with a range of hardware and software platforms, from embedded systems to cloud architectures. This makes it a versatile platform that can be used for a wide range of motor control applications.

Overall, the 3.14-1 evaluation board is an ideal platform for testing and development of motor control systems. Its powerful FPGAs, ARM Cortex-M4 processor cores, digital MEMS accelerometer, and high-speed digital signal processor give it the capability to handle a wide range of motor control applications. Its range of integrated peripherals and debugging tools make it an ideal platform for rapid development and testing of motor control systems. Its ability to self-test components and compatibility with a range of hardware and software platforms further enhance its appeal as a comprehensive motor control system development platform.

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

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