
Allicdata Part #: | 40000-ND |
Manufacturer Part#: |
40000 |
Price: | $ 30.62 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | Parallax Inc. |
Short Description: | BOARD EVAL P8X32A QUICKSTART |
More Detail: | P8X32A Propeller™ MCU 32-Bit Embedded Evaluation... |
DataSheet: | ![]() |
Quantity: | 15 |
1 +: | $ 27.55620 |
Series: | Propeller™ |
Part Status: | Active |
Board Type: | Evaluation Platform |
Type: | MCU 32-Bit |
Core Processor: | -- |
Operating System: | -- |
Platform: | -- |
For Use With/Related Products: | P8X32A |
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 40000 series of applications are a versatile series of embedded hardware systems designed specifically for use in commercial and industrial applications. They provide a wide range of features and functions to facilitate the development of innovative, customized solutions.
The 40000 series consists of microcontrollers (MCU), digital signal processors (DSP) and mixed-signal devices to meet the needs of many types of embedded systems. Each device in the series is designed for ease of use, while providing powerful features for integration and control. These systems are often used in automation, medical, and industrial applications.
The 40000 series of devices use a range of communication protocols to support communications between different systems. This enables the system to connect to an external controller, computer, or other devices. This makes it possible to manage and control various devices within the embedded system.
The 40000 series of devices offer a variety of applications, including real-time control, sensing, communication, and data management. Many of these applications require the use of multiple components, including microcontrollers, digital signal processors, and mixed-signal devices. Each device has its own unique function, but most of the components share some basic properties, such as memory, clock speed, and periphery. In this way, the 40000 series provides a wide range of functions and benefits.
The 40000 series of devices use multiple programming languages to communicate with other systems. These programming languages include C/C++, Python, Java, and Assembly. The use of multiple programming languages enables developers to quickly create applications, test the system, and debug any problems.
The 40000 series of devices also support special features such as real-time deterministic operation, cyclic redundancy checks (CRCs), a variety of clock speeds, and support for multiple protocol stacks. This makes it possible to develop and deploy various applications across different networks.
The 40000 series of devices use a combination of hard-wired and embedded FPGAs (Field Programmable Gate Array) to provide a variety of functions. FPGAs are integrated circuits that allow designers to customize the hardware and software functions of a system. This provides a great degree of flexibility for developers to customize the application to their specific needs.
The 40000 series of applications also offer the ability to manage the memory and the processor clock speed. The memory and the processor clock speed are essential pieces of hardware that enable the device to carry out tasks and interact with other devices. This makes it possible to develop complex applications and to take advantage of the latest technologies without having to rewrite the code for each platform.
The 40000 series of applications also offer a range of dynamic performance capabilities. This enables the users to be able to adjust the performance of the device in order to optimize the system’s performance. This is especially useful in embedded systems where the users cannot always predict the performance requirements of a specific application.
Overall, the 40000 series of applications offer a wide range of capabilities and features for embedded system design. The numerous communication protocols, programming languages, and support for multiple network protocols make it possible to develop and deploy high-performance systems. The ability to manage the memory and processor clock speeds, as well as the use of FPGAs make it possible to develop complex applications without sacrificing performance.
The specific data is subject to PDF, and the above content is for reference
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