XCZU9CG-2FFVB1156I Allicdata Electronics
Allicdata Part #:

122-2031-ND

Manufacturer Part#:

XCZU9CG-2FFVB1156I

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA 328 I/O 1156FCBGA
More Detail: Dual ARM® Cortex®-A53 MPCore™ with CoreSight™, Dua...
DataSheet: XCZU9CG-2FFVB1156I datasheetXCZU9CG-2FFVB1156I Datasheet/PDF
Quantity: 1
Stock 1Can Ship Immediately
Specifications
Series: Zynq® UltraScale+™ MPSoC CG
Packaging: Tray 
Part Status: Active
Architecture: MCU, FPGA
Core Processor: Dual ARM® Cortex®-A53 MPCore™ with CoreSight™, Dual ARM®Cortex™-R5 with CoreSight™
Flash Size: --
RAM Size: 256KB
Peripherals: DMA, WDT
Connectivity: CANbus, EBI/EMI, Ethernet, I²C, MMC/SD/SDIO, SPI, UART/USART, USB OTG
Speed: 533MHz, 1.3GHz
Primary Attributes: Zynq®UltraScale+™ FPGA, 599K+ Logic Cells
Operating Temperature: -40°C ~ 100°C (TJ)
Package / Case: 1156-BBGA, FCBGA
Supplier Device Package: 1156-FCBGA (35x35)
Number of I/O: 328
Description

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System On Chip (SoC) is a silicon integrated circuit that combines both software and hardware components on a single die and is used in embedded systems. XCZU9CG-2FFVB1156I is a programmable System On Chip (SoC) with a powerful dual core ARM Cortex-A53 processor manufactured by Xilinx. This SoC has a wide range of applications areas, such as embedded and Industrial 4.0 applications.

The XCZU9CG-2FFVB1156I SoC provides a complete FPGA solution that enables system-level integration of devices, hardware and software. It has a dual-core ARM Cortex-A53 processor and a comprehensive FPGA fabric for customization and flexibility. It has been designed for mission-oriented applications, such as embedded systems, automotive applications and industrial controllers. With the dual core ARM Cortex-A53 processor, XCZU9CG-2FFVB1156I is one of the powerful SoCs in the market.

The XCZU9CG-2FFVB1156I offers advanced features including a DDR4 SDRAM interface, a high-speed transceiver, programmable logic, and a variety of I/O signal processing. With the IP blocks that it provides, it is also well suited for design and implementation of communication protocols, wired and wireless communication and networking, and system debug and trace functionality. It also has an external memory controller, data and security co-processor, and advanced analog capabilities.

XCZU9CG-2FFVB1156I SoC provides a host of features and benefits, making it highly suitable for embedded systems. It has excellent scalability, enabling product flexibility and cost reduction. It supports a wide range of peripheral devices, including sensors, display controllers without the need for costly external logic components. It also has integrated peripherals that enable faster development cycles. Furthermore, it has low power consumption and is capable of running at higher frequency than previous generations.

XCZU9CG-2FFVB1156I SoC\'s working principle is based on its programmable FPGA architecture, which enables hierarchical design and various optimization techniques. It uses different types of logic blocks such as Flip-Flops, look-up tables and logic multiplexers, which are interconnected and configured according to the design needs. It also has blocks for controlling, processing and routing of data signals. With this FPGA programmable architecture, XCZU9CG-2FFVB1156I SoC can support variety of protocols such as TCP/IP, Ethernet, Ethernet-AVB, CAN, CAN-FD as well as supporting peripheral and hardware acceleration. Furthermore, it has advanced debug features such as breakpoints, watchpoints, trace analysis, and on-chip memory compaction.

In conclusion, XCZU9CG-2FFVB1156I SoC is a powerful embedded system on chip with a wide range of applications and a programmable FPGA architecture. It is suitable for a wide range of applications like embedded systems, Industrial 4.0, automotive applications and industrial controllers. With the scalability, peripheral support, low power consumption and optimization techniques, it offers an ideal solution for various embedded applications.

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

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