10M50DCF672I7G Allicdata Electronics
Allicdata Part #:

10M50DCF672I7G-ND

Manufacturer Part#:

10M50DCF672I7G

Price: $ 105.83
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intel FPGAs/Altera
Short Description: IC FPGA 500 I/O 672FBGA
More Detail: N/A
DataSheet: 10M50DCF672I7G datasheet10M50DCF672I7G Datasheet/PDF
Quantity: 1000
40 +: $ 96.20730
Stock 1000Can Ship Immediately
$ 105.83
Specifications
Series: MAX® 10
Part Status: Active
Number of LABs/CLBs: 3125
Number of Logic Elements/Cells: 50000
Total RAM Bits: 1677312
Number of I/O: 500
Voltage - Supply: 1.15 V ~ 1.25 V
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 100°C (TJ)
Package / Case: 672-BGA
Supplier Device Package: 672-FBGA (27x27)
Description

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Introduction on 10M50DCF672I7G

10M50DCF672I7G is an embedded Field Programmable Gate Array (FPGA) device manufactured by Altera Corporation. FPGAs are integrated circuits composed of programmable logic blocks and interconnecting paths, in which configuration is achieved by software. As compared to traditional microcontrollers and much other application specific integrated circuits (ASICs), FPGAs offer much greater flexibility in terms of system design as they can be reprogrammed as needed to meet different application requirements. 10M50DCF672I7G is one of the most advanced general purpose FPGA family of all time and it is equipped with enough resources and enhanced connectivity options to suit a large range of application needs.

Application Field of 10M50DCF672I7G

10M50DCF672I7G is one of the most versatile FPGA family of all time and can be used for a variety of application needs, ranging from embedded control to communication, computing, and data acquisition. Some of the common application domains which this device can be utilized in are:
  • Embedded control: 10M50DCF672I7G is highly suitable for embedded control systems as it integrates advanced processor interface and control logic resources. Such devices can enable integration of complex control logic from low-cost components, providing the necessary speed, reliability, and flexibility advantages to these types of systems.
  • Communication: This FPGA device also provides the extra advantage of transceivers. Its several embedded transceivers give the flexibility to implement lighter means of communication links such as CAN, RS-232, Ethernet, and USB.
  • Data Acquisition: 10M50DCF672I7G integrates many signal conditioning features and delivers faster data conversion rate that can significantly reduce signal acquisition and control time compared to traditional analog controllers.
  • Computing: It also offers enhanced floating point computing capabilities with custom hardware accelerators. This provides much better computational performance as well as real time processing that cannot be achieved with traditional microcontrollers and ASICs.

Advantages of 10M50DCF672I7G

10M50DCF672I7G offers many advantages over other traditional microcontrollers and ASICs:
  • Flexibility: 10M50DCF672I7G offers the highest degree of flexibility that cannot be found in traditional microcontrollers or ASICs. As it is programmable, it can be tailored to fit any specific application requirement.
  • Speed: FPGAs are considered to be the fastest control and computing elements as compared to traditional microcontrollers and ASICs. This increased speed also gives it an edge over its competitors when used for applications such as high speed data acquisition and communication.
  • Ease of Use: As compared to traditional microprocessors and other ASICs, 10M50DCF672I7G devices require minimal setup and configuration, and they can be quickly reprogrammed to meet the ever-changing application requirements without extra effort.
  • Low Cost: 10M50DCF672I7G devices are cost-effective solutions as they offer features and performance that are not available on other devices. Furthermore, they provide cost-effective solutions for applications that require very high performance but without the complexity of separate processing elements and intricate control circuitry.

Working Principle of 10M50DCF672I7G

10M50DCF672I7G is a highly versatile FPGA family that is designed to fit in a wide array of applications. Its working principle is based on configurable logic blocks (CLB), which are linked together with connections that are established during the configuration stage. Each CLB consists of a combination of logic cells and routing elements which are used to define the specific logic functions and the interconnection between them. The configuration process of 10M50DCF672I7G is done by downloading a bitstream to the device which is created from the design described by the user. This bitstream consists of the configuration bits that get stored in memory blocks on the device. After this, the configuration bitstream can be uploaded to the device through a dedicated configuration port. The configuration bitstream defines the logic functions and their interconnection between the CLBs and other peripherals on the device.Once the configuration bitstream is uploaded, the device is ready to operate. Each CLB will then execute the logic functions which were programmed into it and communicate with other CLBs as needed. This communication happens over the dedicated connections between the CLBs and other peripherals, which were also established during the configuration process. The device will continue to run until the configuration is changed or reset.

Conclusion

10M50DCF672I7G is an embedded Field Programmable Gate Array (FPGA) device from Altera Corporation that offers the maximum degree of flexibility and real-time processing capabilities. This device can be used for a variety of application needs ranging from embedded control to communication, computing, and data acquisition. It provides many advantages over traditional microcontrollers and ASICs and its working principle is based on configurable logic blocks which are connected via dedicated connections with other peripherals during the configuration process.

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

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