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XC7A15T-2CSG324C
+BOMIC FPGA 210 I/O 324CSBGA
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ManufacturerAMD
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Mfr. Part #XC7A15T-2CSG324C
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In Stock6864
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Specifications
| Attribute | Value |
| Series | Artix-7 |
| PartStatus | Active |
| DigiKeyProgrammable | Not Verified |
| TotalRAMBits | 921600 |
| NumberofI/O | 210 |
| Voltage-Supply | 0.95V ~ 1.05V |
| MountingType | Surface Mount |
| OperatingTemperature | 0°C ~ 85°C (TJ) |
| Package/Case | 324-LFBGA, CSPBGA |
| SupplierDevicePackage | 324-CSPBGA (15x15) |
| BaseProductNumber | XC7A15 |
| NumberofLogicElements/Cells | 16640 |
| NumberofLABs/CLBs | 1300 |
Overview
Description
This FPGA operates at a maximum clock frequency of up to 450 MHz and supports advanced features like DSP (Digital Signal Processing) slices and high-speed I/O interfaces, enabling efficient data processing and transmission. The device is packaged in a compact 324-pin CSG (Chip Scale Grid) form factor, facilitating integration into space-constrained environments.
The XC7A15T is known for its energy efficiency, making it ideal for battery-operated devices. It is programmable via the Xilinx Vivado Design Suite, allowing designers to implement custom logic or accelerate specific tasks easily. Overall, the XC7A15T-2CSG324C provides a balance of performance, power efficiency, and versatility, catering to a wide range of digital design applications.
Equivalent
Features
- Logic Cells: 15,850, providing a balance of performance and resource efficiency.
- DSP Slices: 30, enabling efficient digital signal processing capabilities.
- Block RAM: 480 Kbits, facilitating on-chip memory storage for data handling.
- I/O Pins: Up to 54 configurable pins, allowing flexible interfacing options.
- Transceivers: Supports high-speed serial connectivity (up to 6.6 Gbps).
- Power Efficiency: Optimized for low static and dynamic power consumption.
- Configuration Options: Supports various programming methods including JTAG and SPI.
- Temperature Range: Available in commercial and industrial temperature grades.
- Package Type: 324-ball FBGAs with a compact footprint.
The XC7A15T is suitable for diverse applications such as communications, automotive, and industrial automation due to its versatility and efficiency.
Pinout
Pin Count and Functions:
- Total Pins: 324
- I/O Pins: Up to 210, depending on the specific configuration.
- Power Pins: Includes dedicated VCC and GND pins for power supply.
- Configuration Pins: Supports JTAG and other programming interfaces.
- Clock Pins: Provides differential and single-ended clock inputs for timing.
- Dedicated Signal Pins: Includes pins for user-defined functions, such as serial interfaces, high-speed transceivers, and other programmable logic connections.
The XC7A15T-2CSG324C is designed for various applications, including communication, industrial, and automotive, offering a balance of performance and power efficiency.
Manufacturer
Founded in 1984, Xilinx is known for pioneering FPGA technology, enabling designers to create customizable hardware solutions. The company's products offer flexibility and reconfigurability, allowing developers to optimize performance and power consumption for specific applications.
In 2020, Xilinx was acquired by Advanced Micro Devices (AMD), further expanding its capabilities and product offerings in the semiconductor industry. Xilinx continues to focus on driving advancements in adaptive computing technologies and its devices, including the 7-Series FPGAs like the XC7A15T, are widely used in various sectors due to their versatility and performance.
Application
1. Digital Signal Processing: Used in audio, video, and communications systems.
2. Embedded Systems: Ideal for control systems and embedded processing tasks.
3. Consumer Electronics: Employed in imaging, video processing, and gaming devices.
4. Automotive: Utilized for advanced driver-assistance systems (ADAS).
5. Industrial Automation: Applied in robotics and factory automation.
6. Networking: Used in routers, switches, and data centers for packet processing.
These applications benefit from its low power consumption, high performance, and flexibility.