10AS016E4F27E3SG Allicdata Electronics
Allicdata Part #:

10AS016E4F27E3SG-ND

Manufacturer Part#:

10AS016E4F27E3SG

Price: $ 325.02
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intel FPGAs/Altera
Short Description: IC SOC FPGA 240 I/O 672FBGA
More Detail: Dual ARM® Cortex®-A9 MPCore™ with CoreSight™ Syste...
DataSheet: 10AS016E4F27E3SG datasheet10AS016E4F27E3SG Datasheet/PDF
Quantity: 1000
3 +: $ 295.47000
Stock 1000Can Ship Immediately
$ 325.02
Specifications
Series: Arria 10 SX
Packaging: Tray 
Part Status: Active
Architecture: MCU, FPGA
Core Processor: Dual ARM® Cortex®-A9 MPCore™ with CoreSight™
Flash Size: --
RAM Size: 256KB
Peripherals: DMA, POR, WDT
Connectivity: EBI/EMI, Ethernet, I²C, MMC/SD/SDIO, SPI, UART/USART, USB OTG
Speed: 1.5GHz
Primary Attributes: FPGA - 160K Logic Elements
Operating Temperature: 0°C ~ 100°C (TJ)
Package / Case: 672-BBGA, FCBGA
Supplier Device Package: 672-FBGA (27x27)
Number of I/O: 240
Description

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Embedded - System On Chip (SoC): Application Field and Working Principle

An embedded system on chip, commonly referred to as an SoC, is a computer system where all components are integrated within a single system on chip. A SoC typically contains one or more cores and is designed to reduce the overall cost and power consumption of a product while providing designers with more flexibility and control. Today, SoC technology is being used in a variety of consumer electronics including mobile phones, tablets, digital cameras, HDTVs, and gaming consoles. SoC technology is a key part of the mobile computing revolution, providing devices with the performance, power and portability they need to function at their best.An SoC typically combines a processor core (CPU), memory, peripherals, and external interfaces into a single integrated circuit (IC). This allows multiple components to access each other’s functions and data, reducing power and cost requirements. SoC technology has seen a massive increase in popularity over the past few years and is now used in many consumer electronics, medical, automotive and industrial applications.

Processor

At the heart of any SoC is the processor, commonly referred to as a CPU (central processing unit). The CPU is responsible for controlling and executing the instructions that are part of an application. The processor can be either a single core or multi-core processor, with a multi-core configuration providing more power and performance. A multi-core setup will also allow applications to run in parallel, taking full advantage of the multiple processing cores. The processor typically forms the bulk of any SoC, taking up the majority of the hardware budget. Modern SoCs use a variety of different processor architectures such as ARM and x86. ARM is the most popular processor architecture due to its low power requirements and its ability to run efficiently on a variety of devices.

Memory

Memory is another essential component of any SoC. Memory can take the form of RAM (random access memory) or ROM (read-only memory). RAM is responsible for storing data and program code for use by the processor, while ROM is responsible for storing data that can be accessed at any time, regardless of whether the processor is running or not. Modern SoCs use a variety of different memory technologies, with DDR2 and DDR3 being the most popular in consumer products. DDR2 and DDR3 are both double data rate (DDR) memory technologies, meaning that data can be read and written twice as fast as the processor bus speed. This allows the processor to access data more quickly, reducing power requirements even further.

Peripherals

In addition to the processor and memory, SoCs typically incorporate a variety of peripheral devices such as analog-to-digital converters (ADC), digital-to-analog converters (DAC), and USB controllers. These devices allow the system to interact with the outside world, allowing it to accept inputs and generate outputs. ADCs are used to convert analog signals, such as sound or video, into digital format. This allows the processor to work with the signal, enabling it to display the information on a display device or store it as a digital file. DACs perform the opposite task of converting digital signals back to analog. USB controllers allow the system to interact with USB devices, allowing it to transfer data or connect to external devices.

External Interfaces

SoCs also incorporate external interfaces such as Ethernet, Wi-Fi, and Bluetooth. These interfaces allow the system to connect to a network or interact with other devices wirelessly. Ethernet is the most common type of interface, allowing the system to connect to a wired network. Wi-Fi and Bluetooth are wireless protocols, allowing the system to connect to nearby wireless devices.

Conclusion

System on chip technology has revolutionized the way we use consumer electronics. By combining the processor, memory, peripherals, and external interfaces into a single integrated circuit, SoCs provide more power and flexibility at a fraction of the cost. This technology has enabled a variety of new devices and applications, allowing us to do more with less.

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

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