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PAL16R4-5JC Specifications
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TypeParameter
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Supplier Device Package20-CDIP
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Package / Case20-CDIP (0.300", 7.62mm)
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Mounting TypeThrough Hole
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Speed-
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Voltage - Input4.75V ~ 5.25V
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Number of Macrocells4
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Programmable TypePAL
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DigiKey ProgrammableNot Verified
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PackagingBulk
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Product StatusActive
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Series-
The XCZU7CG-1FBVB900I is a specific model of integrated circuit (IC) chip from Xilinx. It belongs to the Xilinx Zynq UltraScale+ family and offers several advantages and application scenarios. Here are some key points:Advantages: 1. High-performance processing: The XCZU7CG-1FBVB900I chip combines a processing system (ARM Cortex-A53) with programmable logic (FPGA) to provide high-performance computing capabilities. 2. Versatility: The chip's programmable logic allows for customization and flexibility, making it suitable for a wide range of applications. 3. Power efficiency: The XCZU7CG-1FBVB900I chip is designed to be power-efficient, enabling longer battery life and reduced energy consumption. 4. Integration: It integrates multiple components, including processing cores, memory, and I/O interfaces, into a single chip, reducing the need for external components and simplifying system design.Application Scenarios: 1. Embedded Systems: The XCZU7CG-1FBVB900I chip is commonly used in embedded systems where high-performance processing and flexibility are required. It can be used in applications such as industrial automation, robotics, and automotive systems. 2. Edge Computing: With its processing power and programmable logic, the chip is suitable for edge computing applications. It can perform real-time data processing and analysis at the edge of a network, reducing latency and improving overall system performance. 3. High-speed Data Processing: The XCZU7CG-1FBVB900I chip's FPGA fabric enables high-speed data processing, making it suitable for applications like high-frequency trading, signal processing, and data center acceleration. 4. Wireless Communication: The chip's integrated processing system and programmable logic can be utilized in wireless communication systems, including base stations, small cells, and wireless infrastructure, to handle complex signal processing tasks efficiently.It's important to note that the specific advantages and application scenarios may vary depending on the requirements and use cases of the system being designed.
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