EP2AGX45DF29C6G
Manufacturer | Altera |
Description | IC FPGA 364 I/O 780FBGA |
Category | Integrated Circuit |
Package | BGA-780 |
Status | New & original |
Ship From | HK/SHENZHEN |
Stocks | 10,000 |
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Description
The component “EP2AGX45DF29C6G” appears to be an FPGA (Field-Programmable Gate Array) from Intel’s Arria II GX series. FPGAs in the Arria II GX family offer high-performance capabilities and are designed for various applications that require advanced processing and connectivity features.
FPGAs are programmable integrated circuits that allow users to configure digital logic circuits and create custom digital designs. They consist of an array of configurable logic blocks, interconnects, and I/O (input/output) resources. The configuration of an FPGA can be modified or reprogrammed to implement different logic functions or complex digital systems.
Based on the naming convention used by Intel for their FPGA products, “EP2AGX45DF29C6G” likely represents a specific variant, speed grade, or package type details of the FPGA.
The application of the “EP2AGX45DF29C6G” FPGA would depend on its characteristics, features, and the requirements of the project or system it is being used in. Generally, FPGAs like the Arria II GX series find applications in various fields, including:
1. High-speed communication systems: FPGAs with high-performance features are often used in communication systems that require advanced connectivity and data processing capabilities. They can be employed in applications such as network switches, routers, and high-speed data transmission equipment.
2. Digital signal processing: FPGAs are well-suited for digital signal processing tasks, including audio and video processing, real-time data analysis, and high-bandwidth signal processing. They can provide the necessary computational power and flexibility for these applications.
3. High-performance computing: FPGAs can be utilized as co-processors alongside traditional CPUs or GPUs to accelerate specific computations in areas such as data centers, scientific computing, and financial analysis. They can offer parallel processing capabilities and accelerate algorithms through hardware acceleration.
4. Test and measurement equipment: FPGAs are commonly used in test and measurement systems due to their ability to provide customizable and reconfigurable hardware interfaces. They can be employed in applications such as oscilloscopes, spectrum analyzers, and data acquisition systems.