Allicdata Part #: | XCV50-4TQ144C-ND |
Manufacturer Part#: |
XCV50-4TQ144C |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Xilinx Inc. |
Short Description: | IC FPGA 98 I/O 144TQFP |
More Detail: | N/A |
DataSheet: | XCV50-4TQ144C Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | Virtex® |
Part Status: | Obsolete |
Number of LABs/CLBs: | 384 |
Number of Logic Elements/Cells: | 1728 |
Total RAM Bits: | 32768 |
Number of I/O: | 98 |
Number of Gates: | 57906 |
Voltage - Supply: | 2.375 V ~ 2.625 V |
Mounting Type: | Surface Mount |
Operating Temperature: | 0°C ~ 85°C (TJ) |
Package / Case: | 144-LQFP |
Supplier Device Package: | 144-TQFP (20x20) |
Base Part Number: | XCV50 |
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Embedded - FPGAs (Field Programmable Gate Array)
The XCV50-4TQ144C field programmable gate array (FPGA) is an integrated circuit that can be programmed after manufacture to perform a variety of tasks. It is often used in embedded systems due to its flexibility and re-programmability, allowing it to be tailored to function as the logic in an embedded device environment.
FPGAs provide a vast array of features and benefits. Foremost among these are their compact size and low power consumption. As compared to larger and more complex integrated circuits, FPGAs offer a much smaller footprint and much lower power requirements. This makes them particularly attractive for use in portable and embedded devices.
FPGAs are also extremely versatile and offer the potential to be re-programmed over time to suit a variety of tasks. These tasks can range from high performance data processing and computing applications, to low-level digital signal processing. This flexibility allows the designer of the embedded device to quickly and easily customize the behavior of the FPGA as the device\'s demands change, or if new applications need to be implemented.
At the most basic level, an FPGA consists of an array of logic blocks, connected by an interconnect of programmable switches. These switches allow the user to define arbitrary data flow paths and functions between the devices in the FPGA. The logic blocks themselves are generally composed of various types of building blocks, such as memories, multipliers, adders, comparators, and other standard and customizable logic gates.
The XCV50-4TQ144C is a versatile, integrated device offering high-speed performance and sophisticated functional capabilities, as well as a wide range of I/O options. It integrates the powerful MachXO3L FPGA IP core, which has been designed for low-power, cost-sensitive applications. It is ideal for applications where size and low power consumption are of the utmost importance, such as medical and automotive products.
The FPGA contains predefined functions, such as flip-flops, RAM/ROM memories, multipliers, and arithmetic logic units. These functions can be used in various combinations to create application-specific logic structures. For example, the FPGA can be used to interface with peripherals, as well as implement signal processing, communication, and control systems.
An FPGA can also be used to develop highly-customizable embedded systems, with peripherals and functions tailored to fit the specific needs of the application. It is also very useful in digital signal processing and communication applications, where complex algorithms and signal processing need to be implemented in a single chip.
Furthermore, the FPGA can be used as an ASIC replacement, allowing designers to quickly create a physical version of an ASIC without having to go through the long process of fabricating a custom chip. This allows for a much more rapid development process, as well as a much lower unit cost.
Lastly, another advantage of the XCV50-4TQ144C is that it is highly configurable, meaning that it can be used for a wide variety of applications. Its configurable settings make it suitable for use in any system design, regardless of the number of devices or the logic blocks required.
The XCV50-4TQ144C FPGA is a powerful and versatile integrated device, offering sophisticated features and an extremely high level of configurability. It is well-suited to applications requiring small size, low power, and high-speed performance, as well as general embedded applications. It is also capable of developing complex digital signal processing, communication and control systems, as well as being used as an ASIC replacement.
The specific data is subject to PDF, and the above content is for reference
Part Number | Manufacturer | Price | Quantity | Description |
---|
XCV50-4BG256C | Xilinx Inc. | -- | 1000 | IC FPGA 180 I/O 256BGA |
XCV50-4BG256I | Xilinx Inc. | -- | 1000 | IC FPGA 180 I/O 256BGA |
XCV50-4CS144C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50-4CS144I | Xilinx Inc. | -- | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50-4FG256C | Xilinx Inc. | -- | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50-4FG256I | Xilinx Inc. | -- | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50-4PQ240C | Xilinx Inc. | -- | 1000 | IC FPGA 166 I/O 240QFP |
XCV50-4PQ240I | Xilinx Inc. | -- | 1000 | IC FPGA 166 I/O 240QFP |
XCV50-4TQ144C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 98 I/O 144TQFP |
XCV50-4TQ144I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 98 I/O 144TQFP |
XCV50-5BG256C | Xilinx Inc. | -- | 1000 | IC FPGA 180 I/O 256BGA |
XCV50-5BG256I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 180 I/O 256BGA |
XCV50-5CS144C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50-5CS144I | Xilinx Inc. | -- | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50-5FG256C | Xilinx Inc. | -- | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50-5FG256I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50-5PQ240C | Xilinx Inc. | -- | 1000 | IC FPGA 166 I/O 240QFP |
XCV50-5PQ240I | Xilinx Inc. | -- | 1000 | IC FPGA 166 I/O 240QFP |
XCV50-5TQ144C | Xilinx Inc. | -- | 1000 | IC FPGA 98 I/O 144TQFP |
XCV50-5TQ144I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 98 I/O 144TQFP |
XCV50-6BG256C | Xilinx Inc. | -- | 1000 | IC FPGA 180 I/O 256BGA |
XCV50-6CS144C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50-6FG256C | Xilinx Inc. | -- | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50-6PQ240C | Xilinx Inc. | -- | 1000 | IC FPGA 166 I/O 240QFP |
XCV50-6TQ144C | Xilinx Inc. | -- | 1000 | IC FPGA 98 I/O 144TQFP |
XCV50E-6CS144C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50E-6CS144I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50E-6FG256C | Xilinx Inc. | -- | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50E-6FG256I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50E-6PQ240C | Xilinx Inc. | -- | 1000 | IC FPGA 158 I/O 240QFP |
XCV50E-6PQ240I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 158 I/O 240QFP |
XCV50E-7CS144C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50E-7CS144I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50E-7FG256C | Xilinx Inc. | -- | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50E-7FG256I | Xilinx Inc. | -- | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50E-7PQ240C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 158 I/O 240QFP |
XCV50E-7PQ240I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 158 I/O 240QFP |
XCV50E-8CS144C | Xilinx Inc. | -- | 1000 | IC FPGA 94 I/O 144CSBGA |
XCV50E-8FG256C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 176 I/O 256FBGA |
XCV50E-8PQ240C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 158 I/O 240QFP |
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