XCZU3EG-L2SBVA484E Allicdata Electronics
Allicdata Part #:

XCZU3EG-L2SBVA484E-ND

Manufacturer Part#:

XCZU3EG-L2SBVA484E

Price: $ 447.75
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA 82 I/O 484FCBGA
More Detail: Quad ARM® Cortex®-A53 MPCore™ with CoreSight™, Dua...
DataSheet: XCZU3EG-L2SBVA484E datasheetXCZU3EG-L2SBVA484E Datasheet/PDF
Quantity: 1000
1 +: $ 407.04300
Stock 1000Can Ship Immediately
$ 447.75
Specifications
Series: Zynq® UltraScale+™ MPSoC EG
Packaging: Tray 
Part Status: Active
Architecture: MCU, FPGA
Core Processor: Quad ARM® Cortex®-A53 MPCore™ with CoreSight™, Dual ARM®Cortex™-R5 with CoreSight™, ARM Mali™-400 MP2
Flash Size: --
RAM Size: 256KB
Peripherals: DMA, WDT
Connectivity: CANbus, EBI/EMI, Ethernet, I²C, MMC/SD/SDIO, SPI, UART/USART, USB OTG
Speed: 533MHz, 600MHz, 1.3GHz
Primary Attributes: Zynq®UltraScale+™ FPGA, 154K+ Logic Cells
Operating Temperature: 0°C ~ 100°C (TJ)
Package / Case: 484-BBGA, FCBGA
Supplier Device Package: 484-FCBGA (19x19)
Number of I/O: 82
Description

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The XCZU3EG-L2SBVA484E is an example of an Embedded - System On Chip (SoC). SoCs are integrated circuits combining one or multiple processing elements, together with software and other peripherals. The XCZU3EG-L2SBVA484E is a versatile and highly configurable SoC, which combines programmable logic with connective features on an FPGA fabric for easy implementation of a wide range of functions such as Delays, DSP, triggering, and more.

The XCZU3EG-L2SBVA484E is mainly used in the development and function of technology-intensive devices and equipment such as HD cameras, 5G base stations, and many others. It integrates the essential processing elements, software and other peripheral components onto a single integrated electronic chip and is specifically designed for system-on-chip (SoC) applications by helping with low power consumption, low cost, and ease of use.

The XCZU3EG-L2SBVA484E has a number of advantages over other SoCs, such as the ability to combine different components into a single chip and its flexibility in programmability, being able to configure and customize the chip according to user demands. Additionally, its FPGA fabric reduces development time further as it is able to be reprogrammed as needed, making it ideal for rapid prototyping.

The XCZU3EG-L2SBVA484E has a number of applications, working best when used in conjunction with the integral FPGA fabric layer. In particular, it is mainly used in high-speed products development, to build and test prototypes, as well as embedded device testing. Its versatile peripherals include Ethernet ports, high-speed USB 2.0, dual CAN ports, audio multi I/O ports and many others, making it an ideal solution for system-on-chip applications.

The XCZU3EG-L2SBVA484E is designed for high-speed and low-power applications, so it needs to have good working principles in order to properly function. It is able to accurately synchronize internal signals and also provides a very high data rate. It contains a FIFO (First-In-First-Out) memory architecture, which allows for easy integration of external components. Its main components work together with RTL and SystemVerilog logic to perform their specific tasks. The FPGA fabric layer allows significant levels of flexibility, allowing users to modify the FPGA fabric and customize it according to their needs.

In conclusion, the XCZU3EG-L2SBVA484E is a highly configurable and versatile system-on-chip (SoC) specifically designed for embedded systems. It integrates the essential processing elements, software, and other peripheral components onto a single integrated electronic chip. It is also highly suitable for reconfigurability by providing the flexibility of programmability and the capability to integrate different components on a single chip. It provides features such as low power consumption, low cost, and ease of use for a wide range of applications and device testing. It also has the advantage of being able to be used for rapid prototyping and has an FIFO memory architecture as well as RTL and SystemVerilog logic for efficient synchronization of internal signals.

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

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