Allicdata Part #: | CC-9P-T237-Z1-B-ND |
Manufacturer Part#: |
CC-9P-T237-Z1-B |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Digi International |
Short Description: | MODULE 9P 64MB SDRAM 128MB FLASH |
More Detail: | ConnectCore® Embedded Module |
DataSheet: | CC-9P-T237-Z1-B Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | ConnectCore® |
Part Status: | Obsolete |
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Embedded - Microcontroller, Microprocessor, FPGA Modules
Chipsets and microcontrollers are an integral part of the modern all-in-one embedded system and, traditionally, the cost of these components have been the greatest cost associated with any embedded system design. For many embedded applications, the general purpose microcontroller is occasionally the wrong choice. Looking for a better solution, engineers have paid attention to perforated field programmable gadgets (FPGAs). According to industry standards, FPGAs are programmable devices that offer a broad range of flexibility for embedded devices. The control system product line of embedded processors and FPGAs, CC-9P-T237-Z1-B, is growing and gaining popularity in many industries. It excels in using the latest innovation in embedded processors and FPGAs, incorporating intelligent technology and advanced engineering to provide more power, smaller board footprints and lower system costs.
Application Field
The CC-9P-T237-Z1-B consists of a powerful embedded processor and FPGA device. It provides a broad range of embedded processor and FPGA solutions tailored to meet various application fields. The application fields that the CC-9P-T237-Z1-B excels in are:
- Industrial control: The CC-9P-T237-Z1-B can be used for automation, motion control and factory automation. It can also provide effective monitoring and control for industrial processes.
- Network innovation: The CC-9P-T237-Z1-B is an ideal solution for advanced network innovation in telecom, medical electronics, and consumer products.
- Wireless systems: The CC-9P-T237-Z1-B is perfect for wireless infrastructure, digital radio and other wireless communication applications.
- Multimedia: The CC-9P-T237-Z1-B can be used in gaming and portable multimedia devices, allowing users to easily create visually appealing applications.
Working Principle
The working principle of the CC-9P-T237-Z1-B is based on a combination of embedded processors and FPGA technology. FPGA technology adjusts the circuit configuration on-the-fly when desired instructions are executed. The processor consists of on-chip memory, instruction set, buses, and interfaces, which enable it to perform a variety of intended functions. Its operation is based on the instruction set architectures, which are combined with a scalable bus for operation and direct or asynchronous bus for control. The FPGA is based on a different architecture, where the electronic circuitry that forms the circuits is specified by the logic user. This makes it much easier to customize and create functions within the integrated processor platform. The combination of embedded processor and FPGA provides a complete platform to support any embedded system. The system can be easily implemented by simply downloading the source code to the CC-9P-T237-Z1-B. Applications range from controlling accelerometers, motor inverters, engine sensors, and other embedded industrial controls, to providing system control and monitoring, IP networks, diagnostics, testing and verification of telecommunications systems, radio and TV broadcast, and so forth.
Conclusion
The CC-9P-T237-Z1-B offers high performance in embedded processor and FPGA operations, while providing a very easy to use interface. It is a perfect choice for developers and engineers looking to replace aging general-purpose microcontrollers, provide more flexibility, and create innovate solutions for various industries.It offers numerous advantages and features that regular microcontrollers and FPGA cannot, such as system cost reduction and small board footprints. Thanks to the fact that CC-9P-T237-Z1-B offers flexibility, customizations, and scalability, it can prove to be a cost-effective solution for a wide range of applications, from small motor control and image processing applications, to large system-level solutions.
The specific data is subject to PDF, and the above content is for reference
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