5CGXBC9E7F31C8N Allicdata Electronics
Allicdata Part #:

5CGXBC9E7F31C8N-ND

Manufacturer Part#:

5CGXBC9E7F31C8N

Price: $ 272.83
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intel FPGAs/Altera
Short Description: IC FPGA 480 I/O 896FBGA
More Detail: N/A
DataSheet: 5CGXBC9E7F31C8N datasheet5CGXBC9E7F31C8N Datasheet/PDF
Quantity: 1000
27 +: $ 248.03100
Stock 1000Can Ship Immediately
$ 272.83
Specifications
Series: Cyclone® V GX
Part Status: Active
Number of LABs/CLBs: 113560
Number of Logic Elements/Cells: 301000
Total RAM Bits: 14251008
Number of I/O: 480
Voltage - Supply: 1.07 V ~ 1.13 V
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 85°C (TJ)
Package / Case: 896-BGA
Supplier Device Package: 896-FBGA (31x31)
Base Part Number: 5CGXBC9
Description

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Embedded - FPGAs (Field Programmable Gate Array)

A Field Programmable Gate Array or FPGA is a type of integrated circuit that can be programmed on the board, allowing users to implement a wide variety of logic functions. The 5CGXBC9E7F31C8N is an example of an FPGA device. It is an advanced device with a wide application field and working principle allowing designers to quickly create and customize designs as well as reprogram a single chip if required.

Application Field

The 5CGXBC9E7F31C8N FPGA provides a range of applications making it suitable for many industries, including:
  • Industrial Automation. This device can be used to create control circuits for industrial machines, providing an effective and low cost alternative to custom designed integrated circuits.
  • Communications. It can be used to create communications systems with its ability to process a variety of digital signaling formats.
  • Consumer Electronics. The device can be used to design high-performance video processing systems, providing better video quality than other digital solutions.
  • Military Electronics. It can also be used to create systems for military and aerospace applications as it provides a high level of fault tolerance and is capable of operating in extreme conditions.

Working Principle

The 5CGXBC9E7F31C8N FPGA works in a similar way to other FPGA devices. An FPGA is made up of a number of configurable logic blocks (CLBs) which are connected together by an internal routing network. Each CLB is made up of a configurable array of digital logic gates, multiplexers and flip-flops. Each block can be programmed to perform different digital functions, allowing the FPGA to perform a wide range of logic functions without having to use a custom integrated circuit. The FPGA is programmed using a means of digital description language such as Verilog or VHDL. These languages provide a way of describing the desired functionality of the device. The description is then translated into a binary value (configuration bitstream) which is used to program the logic blocks within the FPGA.

Advantages of Using FPGAs

FPGAs offer a number of advantages over more traditional integrated circuit solutions.
  • Faster Development Time. By using an FPGA, designers can quickly develop complex and custom solutions as the design can be modified and tested quickly.
  • Lower Manufacturing Cost. FPGAs are cost-effective solutions as the same chip can be used for multiple applications.
  • Reduced Design Risk. Developing with an FPGA reduces the risk of errors during design as they can be tested and modified without requiring a new chip.
  • Greater Design Flexibility. As FPGAs are programmable, they can be adapted to perform different functions as required.

Disadvantages of FPGAs

Although FPGAs offer a number of advantages, they are not without their disadvantages.
  • Higher Power Consumption. FPGAs typically consume more power than traditional integrated circuits.
  • High Cost for Complex Designs. While FPGAs can be cost effective for simpler designs, more complex FPGAs may require expensive specialized chips.
  • Limited Number of I/O. The number of I/O pins in many FPGAs is limited and more expensive devices may have more I/O pins.
  • Frequent Programming. FPGAs require frequent programming as any changes to the design require the chip to be reprogrammed.

Conclusion

The 5CGXBC9E7F31C8N FPGA is an advanced device with a wide application field and working principle. Its advantages include faster development time, lower manufacturing cost, and greater design flexibility. However, it also has drawbacks such as higher power consumption, limited number of I/O, and frequent programming. By using an FPGA, designers can quickly develop complex and custom solutions. This makes FPGAs popular in many industries, including industrial automation, communications, consumer electronics, and military applications.

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

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