XCZU49DR-L1FFVF1760I
XCZU49DR-L1FFVF1760I
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rohs

AMD Xilinx

XCZU49DR-L1FFVF1760I


XCZU49DR-L1FFVF1760I
F20-XCZU49DR-L1FFVF1760I
Active
CMOS, FLIPCHIP-1760
FLIPCHIP-1760

XCZU49DR-L1FFVF1760I ECAD Model


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XCZU49DR-L1FFVF1760I Attributes


Type Description Select
Rohs Code Yes
Part Life Cycle Code Active
Surface Mount YES
Supply Voltage-Nom 720 mV
uPs/uCs/Peripheral ICs Type PROGRAMMABLE SoC
Technology CMOS
Supply Voltage-Max 742 mV
Supply Voltage-Min 698 mV
Temperature Grade INDUSTRIAL
JESD-30 Code R-PBGA-B1760
JESD-609 Code e1
Moisture Sensitivity Level 4
Operating Temperature-Max 100 °C
Operating Temperature-Min -40 °C
Peak Reflow Temperature (Cel) 245
Time@Peak Reflow Temperature-Max (s) 30
Number of Terminals 1760
Package Body Material PLASTIC/EPOXY
Package Code BGA
Package Shape RECTANGULAR
Package Style GRID ARRAY
Terminal Finish TIN SILVER COPPER
Terminal Form BALL
Terminal Position BOTTOM
Ihs Manufacturer XILINX INC
Package Description FLIPCHIP-1760
Reach Compliance Code compliant
ECCN Code 5A002.A.4
HTS Code 8542.39.00.01
Date Of Intro 2019-02-20

XCZU49DR-L1FFVF1760I Datasheet Download


XCZU49DR-L1FFVF1760I Overview



The XCZU49DR-L1FFVF1760I chip model is an advanced microprocessor that is designed for high-performance computing and data processing. It is a powerful, high-speed, low-power, and low-cost solution for a wide range of applications. It is the latest in a line of Xilinx products that offer superior performance, scalability, and reliability.


The XCZU49DR-L1FFVF1760I chip model offers a variety of advantages that make it a popular choice for many industries. It is designed with a high-speed, low-power, low-cost architecture that is ideal for applications that require high performance, scalability, and reliability. The chip model also features an advanced on-chip memory controller for improved memory access and data throughput. Furthermore, the chip model is designed with a wide range of peripherals to enable a variety of applications.


The demand for the XCZU49DR-L1FFVF1760I chip model is expected to grow in the future as the need for high-performance computing and data processing increases. Its advanced features and low cost make it a desirable choice for a variety of applications. It is expected to be used in a variety of industries, such as artificial intelligence, robotics, automotive, industrial automation, and medical devices.


The XCZU49DR-L1FFVF1760I chip model is designed to be used in networks and intelligent scenarios. It is capable of handling a variety of tasks such as image recognition, voice recognition, natural language processing, and machine learning. It can also be used in the era of fully intelligent systems, where it is capable of performing complex tasks such as autonomous driving, facial recognition, and adaptive learning.


The product description of the XCZU49DR-L1FFVF1760I chip model includes a variety of features, such as a high-speed, low-power, low-cost architecture, advanced on-chip memory controller, and a wide range of peripherals. The design requirements for the chip model include a high-speed, low-power, low-cost architecture, advanced on-chip memory controller, and a variety of peripherals.


Case studies and examples of the XCZU49DR-L1FFVF1760I chip model in action include applications such as autonomous driving, facial recognition, and adaptive learning. These examples illustrate the power and capabilities of the chip model. Additionally, precautions should be taken when designing and using the chip model. For example, it is important to ensure that the design meets the requirements of the application and that the chip model is properly installed and maintained.


In conclusion, the XCZU49DR-L1FFVF1760I chip model is a powerful and reliable solution for a variety of applications. It offers a variety of advantages, such as a high-speed, low-power, low-cost architecture, advanced on-chip memory controller, and a wide range of peripherals. It is expected to be used in a variety of industries in the future, and it can be used in networks and intelligent scenarios. Furthermore, it can be used in the era of fully intelligent systems. In order to ensure the proper use of the chip model, it is important to design it according to the requirements of the application and to take proper precautions when installing and maintaining it.



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