
Allicdata Part #: | XC3S400A-5FG320C-ND |
Manufacturer Part#: |
XC3S400A-5FG320C |
Price: | $ 28.19 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Xilinx Inc. |
Short Description: | IC FPGA 251 I/O 320FBGA |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | |
Moisture Sensitivity Level (MSL): |
84 +: | $ 25.62210 |
Series: | Spartan®-3A |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Number of LABs/CLBs: | 896 |
Moisture Sensitivity Level (MSL): | -- |
Number of Logic Elements/Cells: | 8064 |
Total RAM Bits: | 368640 |
Number of I/O: | 251 |
Voltage - Supply: | 1.14 V ~ 1.26 V |
Mounting Type: | Surface Mount |
Number of Gates: | 400000 |
Operating Temperature: | 0°C ~ 85°C (TJ) |
Package / Case: | 320-BGA |
Supplier Device Package: | 320-FBGA (19x19) |
Base Part Number: | XC3S400A |
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Embedded FPGAs (Field Programmable Gate Array) are one of the most versatile and cost-effective circuit solutions available today. The XC3S400A-5FG320C FPGA is an excellent example of a powerful, yet energy-efficient circuit solution. It has a wide range of applications and can be used in various industries, from medical device development to aerospace engineering.
The XC3S400A-5FG320C contains approximately 2 million logic gates in an embedded FPGA system and requires around 5W power. It also contains 480KBit SRAM, multiple high-speed standard SERDES transceivers, as well as 320 user logic cells. These cells can be configured to perform a variety of functions, including advanced arithmetic, pipelining, and communication protocols. This makes the XC3S400A-5FG320C a great solution for embedded system designs.
The XC3S400A-5FG320C is designed to be a reliable and low-cost solution for a variety of applications. It provides a low-power solution for a wide range of tasks, including data acquisition, CPU-level decision making, data processing, and communication protocols. Additionally, it can be used to create complex logic circuits in a small package. This is ideal for systems with a limited space requirement.
In order to use an FPGA system, it must be programmed. Typically, this is done by writing a logic program onto the FPGA using an HDL (Hardware Description Language) compiler. Once the logic program is written, it is converted into a bitstream, which is then downloaded onto the FPGA. The bitstream defines the logic structure of the chip, including the functional blocks, input and output specifications, and the data architecture. By programming the FPGA, it can be tailored to meet specific hardware requirements, making it an extremely powerful and flexible solution.
One of the most common applications of the XC3S400A-5FG320C is in the area of digital signal processing (DSP). It can be used to process complex data streams quickly and accurately. Additionally, it can be used to create complex logic operations in an energy-efficient and cost-effective manner. Its low power consumption and flexibility make it an ideal solution for applications such as audio processing, image processing, medical imaging, and automotive applications.
Another common application of the XC3S400A-5FG320C is in the area of communications. Its flexible architecture and high-speed SERDES transceivers can be used for a wide range of communication protocols such as Ethernet, USB, and Wi-Fi. Additionally, it can be used to build software-defined radios that can be programmed to transmit various wireless protocols.
The XC3S400A-5FG320C can also be used in the automotive industry. Its powerful architecture can be used for numerous applications, such as electric power steering, engine control, and powertrain management. Additionally, it can be used to create advanced driver assistance systems such as lane detection, pedestrian detection, and adaptive cruise control.
Overall, the XC3S400A-5FG320C FPGA is an extremely versatile and powerful circuit solution. It is capable of performing a wide range of functions, making it a great choice for many types of applications. Its low power consumption, high performance, and cost-effectiveness make it an ideal choice for embedded system designs.
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