XCKU035-2FFVA1156I Allicdata Electronics
Allicdata Part #:

XCKU035-2FFVA1156I-ND

Manufacturer Part#:

XCKU035-2FFVA1156I

Price: $ 0.63
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA 520 I/O 1156FCBGA
More Detail: N/A
DataSheet: XCKU035-2FFVA1156I datasheetXCKU035-2FFVA1156I Datasheet/PDF
Quantity: 1000
1 +: $ 0.63000
10 +: $ 0.60000
100 +: $ 0.55000
1000 +: $ 0.47000
10000 +: $ 0.32000
Stock 1000Can Ship Immediately
$ 0.63
Specifications
Series: Kintex® UltraScale™
Part Status: Active
Number of LABs/CLBs: 25391
Number of Logic Elements/Cells: 444343
Total RAM Bits: 19456000
Number of I/O: 520
Voltage - Supply: 0.922 V ~ 0.979 V
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 100°C (TJ)
Package / Case: 1156-BBGA, FCBGA
Supplier Device Package: 1156-FCBGA (35x35)
Description

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Embedded Field Programmable Gate Array (FPGAs) have turned out to be one of the most capable solutions for managing complex data and controlling mission-critical solutions. Amongst the range of FPGAs, XCKU035-2FFVA1156I is highly efficient and feature-rich. This article explains the application field and working principle of XCKU035-2FFVA1156I.

Applications and Capabilities of XCKU035-2FFVA1156I

XCKU035-2FFVA1156I offers a wide range of applications. It is ideal for a wide range of applications such as developing embedded systems, designing high-speed computing systems, controlling complex intelligence systems, designing multi-node wireless networks, and other similar ones. Since XCKU035-2FFVA1156I is capable of performing the same functions as other FPGAs, it is being increasingly deployed in applications like edge computing, smart home systems, and industrial automation. Due to its ability to handle high-speed operations, large volume data, and complex algorithms, it is being increasingly deployed in industries such as aerospace and defense, automotive, and robotics.

XCKU035-2FFVA1156I contains two FPGA devices, each of which is capable of executing high-level operations like Look-up Table (LUT) execution, Protocol Decoders, and Hardened IPs, with a single instruction cycle. It also has the ability to store and execute large amounts of data with multiple instruction cycles. It is also capable of redirecting data within its own clock cycle, allowing for more efficient data transfer and processing. This makes it an ideal choice for developing sophisticated applications.

Working Principle of XCKU035-2FFVA1156I

The most important aspect of an FPGA is its working principle. The XCKU035-2FFVA1156I follows the basic working principle of an FPGA, which is based on the integration of programmable logic devices (PLDs) and interconnections. It is also based on the concept of configuring the programmable logic devices in order to store data and program instructions. This way, the XCKU035-2FFVA1156I achieves a configurable environment, which enables it to be used for designing various digital systems.

To understand the working principle of the XCKU035-2FFVA1156I, we need to understand the three key components that make up the FPGA: the programmable logic devices, the interconnects, and the routing. The programmable logic devices have a predefined set of logic gates, which can be modified or changed by the user. The interconnects are the resources that provide the control for connecting the logic devices. Finally, the routing is the resources that provide the control for linking the logic devices.

The XCKU035-2FFVA1156I follows the basic logical principles in that it is composed of the three elements mentioned earlier. Through the use of programming tools, the programmable logic devices can be configured into a desired state. It is also capable of routing signals from one logical device to another, or even to external components. This allows the user to design complex digital systems with fewer components, while maintaining higher levels of performance.

Conclusion

XCKU035-2FFVA1156I is an advanced Field Programmable Gate Array that offers a wide range of applications, such as developing embedded systems, designing high-speed computing systems, controlling complex intelligence systems, and designing multi-node wireless networks. Its working principle is based on the integration of programmable logic devices, interconnects, and routing. Through this combination, it is able to achieve a configurable environment, allowing for the design of complex digital systems with fewer components and higher performance levels.

The specific data is subject to PDF, and the above content is for reference

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