|Part Life Cycle Code||Active|
|Supply Voltage-Nom||720 mV|
|uPs/uCs/Peripheral ICs Type||MICROPROCESSOR CIRCUIT|
|Additional Feature||ALSO AVAILABLE WITH 0.85V NOMINAL SUPPLY|
|Supply Voltage-Max||742 mV|
|Supply Voltage-Min||698 mV|
|Moisture Sensitivity Level||4|
|Operating Temperature-Max||110 °C|
|Peak Reflow Temperature (Cel)||245|
|Time@Peak Reflow Temperature-Max (s)||30|
|Number of Terminals||900|
|Package Body Material||PLASTIC/EPOXY|
|Package Style||GRID ARRAY|
|Terminal Finish||Tin/Silver/Copper (Sn96.5Ag3.0Cu0.5)|
|Ihs Manufacturer||XILINX INC|
|Package Description||BGA, BGA900,30X30,40|
|Reach Compliance Code||compliant|
XCZU7EV-L2FBVB900E Datasheet Download
The chip model XCZU7EV-L2FBVB900E is a revolutionary development in the chip industry, offering a wide range of features and capabilities. It is a flexible, high-performance system-on-chip (SoC) designed for embedded computing applications. It is an ideal solution for applications such as industrial automation, robotics, and intelligent systems.
The XCZU7EV-L2FBVB900E is a powerful, low-power SoC with a dual-core ARM Cortex-A53 processor and a Mali-400 MP2 GPU. It also features a range of peripherals, including USB, HDMI, Ethernet, and more. This makes it ideal for applications that require high-performance processing, low-power consumption, and a wide range of peripherals.
The XCZU7EV-L2FBVB900E is a perfect choice for developing and popularizing future intelligent robots. It is capable of running advanced algorithms and AI models, and can be used to create autonomous robots that can interact with their environment. It also supports a wide range of sensors and actuators, enabling robots to accurately perceive their surroundings and to make decisions based on the data they collect.
In order to use the XCZU7EV-L2FBVB900E effectively, it is important to understand the product description and design requirements. It is also important to familiarize oneself with the actual case studies and precautions associated with the chip model. Additionally, technical talents such as software engineers and hardware engineers are needed to develop and deploy applications on the XCZU7EV-L2FBVB900E.
In terms of industry trends and future development, the XCZU7EV-L2FBVB900E is a powerful and versatile chip model that is well-suited for a variety of applications. It is capable of running advanced algorithms and AI models, and supports a wide range of peripherals. As a result, it is likely to be an important component in the development and popularization of future intelligent robots. Additionally, the chip model may require the support of new technologies in order to meet the demands of the application environment.
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