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Features and Values of Xilinx SoC

The portfolio of the Xilinx SoC helps in integrating a processor’s software programmability with an FPGA’s hardware programmability. This offers users with great levels of scalability, flexibility, and system performance. Also, the portfolio offers some benefits to the overall system of your design, which includes lower cost, power reduction, and quick time to the market.

In contrast to the traditional Xilinx SoC processing solutions, what you’ll get from flexible programmable logic is differentiation and optimization. This permits the addition of accelerators and peripherals required to adapt to this broad base of different applications.

In our article, we will be discussing what Xilinx SoC is, its features, values, benefits and cons. Please stay on this page because we have so much in stock for you to learn.

What is Xilinx SoC?

Xilinx SoC

Xilinx SoC can come in different definitions. This is as a result of its wide range of applications and rich connotation. Therefore, giving it an exact and accurate definition is difficult. Speaking in general terms, Xilinx SoC is referred to as Xilinx system level chip of system on chip. This means it can be called a product as well as an integrated circuit featuring a dedicated target and containing a full system that includes the embedded software’s content.

Similarly, the technology is one that helps in realizing the entire process from determining the function of the system to the division of the hardware and software, as well as finishing the design.

What are the Features of the Xilinx SoC?

Xilinx SoC has two important features. One has to do with the large scale hardware. The basis of this is usually on the design model of the IP. The second one is, the software features a huge proportion and need the hardware and software co-design.

In contrast to the rural areas, the cities have clear benefits. These include high efficiency, convenient transportation, and complete facilities. The Xilinx SoC features similar characteristics. These include the integration of more supporting circuits on one chip. This saves the integrated circuits area, as well as saves costs.

This is equal to the improved efficiency of energy in cities. In addition, the on-chip interconnection is equal to the urban expressways, as well as consumption of low power, high speed, The transmission of the information between the different devices initially placed on the board is now concentrated on this same chip. This is equivalent or similar a place which you can get to using a far-distance bus.

The hardware is not just good, it also has a good software. This same hardware set is useful in doing something today. Tomorrow, it can be used for something else. This is just like the resource allocation’s improvement, utilization and scheduling of the whole society in that city.

It is clear that the Xilinx SoC possesses clear benefits, as regards power consumption, cost, performance, life cycle, reliability, and application scope. This is why this trend in inevitable, when developing integrated circuit designs.

Presently, Xilinx SoC has taken a dominant position when it comes to the terminal chops fields which are sensitive to power consumption and performance. Also, its application extends onto a much wider area.

What are the Product Advantages of the Defense-grade Xilinx SoC?

The development teams of the Defense and Aerospace usually face the challenge of delivering high functionality, while offering progressively portable hand-held devices and smaller systems. The Xilinx SoC devices are great for applications that require control of the advanced system coupled tightly with complex digital signal processing.

In addition, whether you wish to maximize the batter life or expand the functionality, the consolidation of designs on lesser or fewer chips could lead to breakthroughs. With respect to the first Xilinx SoC of the industry, the defense-grade ruggedized Zynq family helps in the redefining of possibility with unparalleled programmable integration levels.

This programmable logic’s flexibility offers a kind of cost-effective solution to meet the present security mandates. It also offers other requirements that are integration sensitive, which presents different moving targets for the system designers.

What are the Cons of the Xilinx SoC?

The CPU of the Xilinx SoC is built making use of the FPGA’s logic resources, in contrast to making use of the hard-core processor that is optimized for routing and placement the highest clock frequency, which the soft-core processor will be able to run, is much lower, and it responds accordingly.

It also consumes additional resources of the FPGA logic, as well as on-chip memory resources, so that the solution only works with applications which doesn’t require the digital processor’s overall performance, like the entire system’s initial configuration, coordinated control formed between the functional modules, human-computer interaction, etc.

What are the Values of the Xilinx SoC?

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Below are some of the desirable values of the Xilinx SoC.

Programmable systems integration

  • This is the industry standard dual-core ARM Cortex-A9 MPCore
  • Replace the ASIC/ASSP processors already present in the systems

Increase in system performance

  • Gets rid of ASSP-FPGA bottleneck
  • 28nm state of the art size/process performance

Reduction in bill of material (BOM) cost

  • Many processing solutions all in a device
  • Reduction of power supplies, components, and helps in simplifying the PCB design

Reduction in Total Power

  • Advanced 28nm low power logic
  • Lowest power for the overall system for the SDR integrated platforms

Quick Design Productivity

  • Scalable and flexible platform, comprehensive tools, IP and OS

Processing System of the Xilinx SoC

The following are the features and the devices that work with them.

  • For the processor core, the devices that it works with include Dual ARM, CoreSight, and Cortex A9 MPCore
  • The maximum frequency of the xilinx soc is 733 MHz
  • The external memory support is LPDDR2, DDR2, DDR3L, and DDR3
  • The key peripherals include 2x SPI, 2x 12C, 2x CAN 2.0B, 2x UART, 4x 32b GPIO

Conclusion

By now, you should understand the xilinx soc clearly. The Xilinx SoC portfolio offers some benefits to the overall system of your design, which includes lower cost, power reduction, and quick time to the market.

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