
Allicdata Part #: | M2S025-FCS325-ND |
Manufacturer Part#: |
M2S025-FCS325 |
Price: | $ 31.06 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microsemi Corporation |
Short Description: | IC FPGA SOC 25K LUTS |
More Detail: | ARM® Cortex®-M3 System On Chip (SOC) IC SmartFusio... |
DataSheet: | ![]() |
Quantity: | 1000 |
176 +: | $ 28.23420 |
Series: | SmartFusion®2 |
Packaging: | Tray |
Part Status: | Active |
Architecture: | MCU, FPGA |
Core Processor: | ARM® Cortex®-M3 |
Flash Size: | 256KB |
RAM Size: | 64KB |
Peripherals: | DDR, PCIe, SERDES |
Connectivity: | CANbus, Ethernet, I²C, SPI, UART/USART, USB |
Speed: | 166MHz |
Primary Attributes: | FPGA - 25K Logic Modules |
Operating Temperature: | 0°C ~ 85°C (TJ) |
Package / Case: | 325-TFBGA |
Supplier Device Package: | 325-BGA (11x11) |
Number of I/O: | 180 |
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System-on-Chip (SOC) is a technology which integrates all essential operational functionality into one integrated circuit or microchip. This specific type of integrated circuit is often used to reduce size and weight in electronic systems and products by eliminating bulky components. One example of System-on-Chip technology is the M2S025-FCS325 application field and working principle. This system-on-chip combines a host processor, multiple communication buses, and a range of peripherals in a single package. It is also designed with flexible implementation options, allowing users to tailor the peripheral set to their own specific application.
The M2S025-FCS325 application field system is ideal for use in industrial, automotive, and medical applications. It offers multiple communication interfaces, including Gigabit Ethernet, USB 3.0, IEEE Standard 802.11 a/b/g/n/ac, and CAN bus. This makes it an ideal choice for applications requiring high data throughput, real-time data streaming, and low power consumption. The M2S025-FCS325 is also well-suited for HVAC, medical imaging, and other process control systems.
The working principle of the M2S025-FCS325 is based on a combination of hardware and firmware. This includes the CPU, memory, system and application logic, peripherals, and communications ports. The hardware components are usually implemented in FPGA technology, while the firmware is stored in NVM (Non-Volatile Memory) and can be reconfigured easily. The firmware can be loaded and stored onto the on-chip memory of the System-on-Chip using various types of communication interfaces, such as USB, Ethernet, or CAN bus.
The M2S025-FCS325 System-on-Chip also includes a Host State Machine (HSM). The HSM enables the peripheral and I/O ports to be managed in real-time and configured automatically according to the application needs. The HSM controls the speed of data flow by adjusting I/O addresses, interrupt priorities, DMA settings, and other settings. The HSM also configures peripheral-to-peripheral communication for efficient communication between CPU components.
The M2S025-FCS325 System-on-Chip also offers the possibility of developing custom applications by providing advanced software development tools and libraries. The development tools include a graphical user interface, programmable logic design, system configuration and debug tools, as well as multiple debugging and simulation tools. The development libraries contain a range of standard components, such as communications stacks, bus interfaces, data storage functions, and control functions.
In conclusion, System-on-Chip technology offers many advantages in terms of size and weight reduction as well as cost savings. The M2S025-FCS325 application field and working principle are ideal for applications in industrial, automotive, and medical environments. The system-on-chip contains a combination of hardware and firmware, along with host state machines for real-time application management and dynamic configuration. In addition, the M2S025-FCS325 provides an array of development tools and libraries for developing custom applications.
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