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10CL120YF780I7G Altera | FPGAs

Creation date: Jul 29, 2024 1:06am     Last modified date: Jul 29, 2024 1:06am   Last visit date: Oct 26, 2024 4:31pm
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Jul 29, 2024  ( 1 post )  
7/29/2024
1:06am
Xecor Semi (7736629)

The 10CL120YF780I7G is a high-performance Cyclone 10 LP FPGA optimized for low power consumption and efficient logic implementation. It provides excellent performance for a variety of applications, including industrial automation, automotive, and communication systems.

Pinout

The 10CL120YF780I7G pinout refers to the configuration and function of each pin in its 780-FBGA package. This package typically includes a diagram showing the layout of the pins when viewed from the top down with pins named sequentially. Each pin on the 10CL120YF780I7G has a specific role such as power supply input, ground connection, or signal interface. The pinout details are crucial for integrating this component into a circuit as they ensure correct connections for optimal device performance. Designers and engineers must refer to the datasheet provided by the manufacturer to get accurate information regarding each pin's function and electrical characteristics.

Features

  • Low Power Consumption: Optimized for energy-efficient operation, suitable for power-sensitive applications.
  • High Logic Density: Supports a significant number of logic elements for complex designs.
  • Embedded Memory: Includes embedded memory blocks for efficient data storage and processing.
  • Flexible I/O Options: Provides a wide range of I/O options for versatile connectivity.
  • High Reliability: Designed for high reliability in industrial and automotive applications.

Applications

  • Industrial Automation: Ideal for use in control systems, robotics, and factory automation.
  • Automotive: Used in automotive applications for advanced driver assistance systems (ADAS) and in-vehicle networking.
  • Communications: Suitable for communication equipment requiring efficient data processing.
  • Consumer Electronics: Utilized in consumer electronic devices for enhanced performance and functionality.

Advantages and Disadvantages

Advantages

  • Energy Efficient: Designed for low power consumption, extending battery life in portable devices.
  • High Logic Density: Enables complex designs with a large number of logic elements.
  • Flexible Connectivity: Offers a variety of I/O options for diverse application needs.
  • Reliable Performance: Ensures high reliability in demanding environments.

Disadvantages

  • Complex Design: Integration of multiple features may increase design complexity.
  • Cost: Higher cost compared to simpler ICs due to advanced capabilities.