XC3S400 (31)
XC3S400 is available from AMD at Xecor. Designed for high-performance programmable logic applications, the XC3S400 offers 8064 logic elements, 294912 total RAM bits, and 264 I/O pins, making it a versatile solution for complex designs. Available in 456-BBGA (FBGA-456) packages, it is ideal for telecommunications, industrial automation, and embedded systems. Whether used in signal processing, data acquisition, or control systems, this series ensures reliable performance, low power consumption, and scalability for demanding applications. Xecor is an authorized distributor for AMD. Please view our extensive selection of the XC3S400 series below.
Part Number | Description | Package | Inventory | Add To Bom |
---|---|---|---|---|
XC3S400-4FT256C | Programmable Gate Array, 896 Cell, 256 Pin, Plastic, BGA | LBGA-256 | 9,400 | |
XC3S400A-4FTG256C | XC3S400A-4FTG256C features 770MHz operation | FBGA-256 | 7,317 | |
XC3S400AN-4FGG400C | The FPGA operates at a clock speed of up to 667MHz and is fabricated using 90nm technology | FBGA-400 | 5,779 | |
XC3S400-4TQ144I | XC3S400-4TQ144I is a Field Programmable Gate Array with 400,000 system gates | TQFP-144 | 6,161 | |
XC3S400-4FG456C | A high-performance FPGA that is ideal for a wide range of applications | BBGA-456 | 6,549 | |
XC3S400-4FGG456C | Field Programmable Gate Array with 896 CLBs and 400,000 Gates | FBGA-456 | 5,103 | |
XC3S400-4FTG256C | FTBGA-256 ROHS Programmable Logic Device XC3S400-4FTG256C | FBGA-256 | 8,999 | |
XC3S400-4FTG256I | Field Programmable Gate Array, 896 CLBs, 400000 Gates, 630MHz, 8064-Cell, CMOS, PBGA256 | FBGA-256 | 9,862 | |
XC3S400-4PQ208I | High-performance FPGA for complex digital designs and prototypin | BFQFP-208 | 7,618 | |
XC3S400-4PQG208C | S400-4PQG208C Quad Flat Package (QFP) 208-pin | BFQFP-208 | 5,825 | |
XC3S400-4PQG208I | Product XC3S400-4PQG208I is a PQFP-208 programmable logic device that is ROHS compliant | 208-BFQFP | 8,905 | |
XC3S400-4TQG144I | Product XC3S400-4TQG144I Description Preview | TQFP-144 | 7,142 | |
XC3S400-5TQG144C | Spartan FPGA with 8064 cells | TQFP-144 | 5,810 | |
XC3S400A-4FGG320I | FBGA-320(19x19) CPLDs/FPGAs | FBGA-320 | 7,831 | |
XC3S400-4FGG320C | High-density FPGA with 1.2 volts | FBGA-320 | 7,094 | |
XC3S400A-4FT256I | Operating at a frequency of up to 250MHz | FBGA-256 | 9,915 | |
XC3S400-4FT256I | XC3S400-4FT256I is a Field-Programmable Gate Array (FPGA) presented in a Fine-Pitch Thin Ball Grid Array (FTBGA) package with 256 pins | FBGA-256 | 7,952 | |
XC3S400-4PQ208C | 8064 Cells and 630MHz processing speed | BFQFP-208 | 9,156 | |
XC3S400-4TQ144C | XC3S400-4TQ144C is a 1.2 volt FPGA with 400000 system gates, making it highly versatile and customizable | TQFP-144 | 6,055 | |
XC3S400-4TQG144C | Spartan®-3 Family FPGA with 400K Gates and 8064 Cells | TQFP-144 | 9,059 | |
XC3S400-5PQG208C | Spartan-3 Family FPGA with 400K Gates and 8064 Cells | BFQFP-208 | 8,771 | |
XC3S400A-4FGG320C | FPGA Spartan-3A Family 400K Gates 8064 Cells 667MHz 90nm Technology 1.2V 320-Pin F-BGA | FBGA-320 | 6,804 | |
XC3S400A-4FGG400I | FPGA Spartan-3A Family 400K Gates 8064 Cells 667MHz 90nm Technology 1.2V 400-Pin F-BGA | FBGA-400 | 8,614 | |
XC3S400AN-4FGG400I | Field Programmable Gate Array with 896 CLBs and 400000 Gates | FBGA-400 | 7,028 | |
XC3S400AN-4FTG256C | Field Programmable Gate Array with 896 CLBs and 400000 Gates | FBGA-256 | 5,068 | |
XC3S400A-4FTG256I | FPGA with 400,000 gates, 8,064 cells, and 667MHz operating frequency | FBGA-256 | 6,880 | |
XC3S400-5PQ208C | This product is a Programmable Logic Device (CPLDs/FPGAs) in PQFP-208(28x28) packaging | BFQFP-208 | 5,750 | |
XC3S400-4FGG456I | XC3S400-4FGG456I FBGA-456 CPLD/FPGA with ROHS | FBGA-456 | 5,630 | |
XC3S400AN-5FGG400C | ROHS-compliant FBGA-400 Programmable Logic Device (CPLD/FPGA) for advanced electronics | 400-BGA | 5,429 | |
XC3S400A-5FTG256C | 770MHz Operating Frequency | FBGA-256 | 6,867 | |
XC3S400-4FGG320I | CMOS technology with 8064-Cell architecture | 320-BGA | 7,519 |
Key Featrues
Extensive Embedded Memory (288 kbit Block RAM + 56 kbit Distributed RAM): With 288 kbit of block RAM and 56 kbit of distributed RAM, the FPGA offers ample on-chip memory for data storage and buffering. This reduces the need for external memory components, enhancing system efficiency and reducing overall design complexity.
Wide Operating Temperature Range (-40°C to +100°C): The FPGA operates reliably in extreme temperatures, making it suitable for industrial, automotive, and aerospace applications. This robustness ensures consistent performance in harsh environments, expanding its use cases.
High I/O Count (264 I/O Pins): With 264 I/O pins, the FPGA supports extensive connectivity for interfacing with external devices and peripherals. This high I/O count is ideal for applications requiring multiple data streams, such as communication systems and multi-sensor environments.
Low Power Consumption (1.14V to 1.26V Supply Voltage): Operating at a low supply voltage range of 1.14V to 1.26V, the FPGA is energy-efficient, making it suitable for portable and battery-powered devices. This feature also helps reduce thermal management requirements, improving system reliability and longevity.
Applications
Embedded Vision Processing: The FPGA's 288 kbit of embedded block RAM and 56 kbit of distributed RAM make it well-suited for embedded vision applications. It can be used to implement image processing algorithms, such as edge detection, object recognition, and motion tracking, in real-time. This makes it ideal for applications in autonomous vehicles, surveillance systems, and robotics.
Industrial Control Systems: With its 400,000 system gates and 1.2V operating voltage, the Spartan®-3 FPGA is perfect for industrial control systems that require high reliability and low power consumption. It can be used to implement complex control algorithms, manage multiple I/O interfaces, and ensure precise timing control in applications like motor control, PLCs, and factory automation.
Wireless Communication Baseband Processing: The FPGA's 280 MHz maximum operating frequency and 264 I/O pins make it suitable for baseband processing in wireless communication systems. It can be used to implement modulation/demodulation, error correction, and signal processing algorithms in real-time, making it ideal for applications in 5G base stations, IoT gateways, and software-defined radios.
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