AGILEX "SOC FPGA FPGA
The Agilex "SoC FPGA family is manufactured using Intel 10 nanotechnology and integrates a four-core Arm* Cortex*-A53 processor with a hardened and variable precision DSP that significantly optimizes the power consumption and performance of various applications that require high system integration.
STRATIX 10 SOC FPGA
Stratix 10 SoC FPGAs ofter signiticant advantages in bandwidth and system integration Breakthroughs have been achieved. includingnext-generation hard processor systems (HPS).
ARRIA "10 SOC FPGA
Even ARM's 20nm IntelAria 10 SoC FPGA offers the best performance, energy efficiency, small form factor and low cost for mid-range applications. Builton TSMC'S 20nm process technology. Intel's "Arrla 10 SoC FPGAcombines a dual-coreARM*Cortex"-A9 MPCore" hard processor system (HPS) with industry-leading.
ARRIA "V SOC FPGA
For remote radio frequency units,10G/40G line card medical imaping and broadcast devices and other mid-end applications, Aria °v Soc FPGA provides the maximum bandwidth, while the total power consumption is the lowest.
CYCLONE °V SOC FPGA
CycloneV SoC FPGAs offer the lowest system cost and lowest power consumption in the industry. The high-performance features of SoC FPGAs are ideal for different high-volume applications such as industrial motor control drivers, protocol bridges, video converters and capture cards, and handheld devices.
ADVANTAGES OF SOC FPGA
The SoC FPGA uses the FPGA fabric to integrate an ARM-based hard processor system (HPS), which includes the processor, peripherals, and memory interfaces,through a high-bandwidth
interconnect backbone. It combines the performance and low- power features of hard intellectual property (IP) with programmableThe flexibility of program logic.
FL EXIBILITY
Hardware differentiation. System
startup and configuration selection,
as wefl as multiple hardened memory
controllers, provide greater flexibility.
ACCEL ERATE
Brighter hard core processor system
(HPS to FPGA bandwidth Wanlian,
hardware plus and higher memory
performance can improve system
performance
INTEGRATION .
Generating discrete processor and
digital signal processing, (DSP) words
in a FPGA_ to reduce system power
consumption and cost, and reduce
pedal area
TOTAL COST OF OWNERSHIP (TCO)
Reduced system cost through monolithic
generation, integrated PCle controller,
and no-power-down sequencing
ARCHITECTURE IS CRITICAL
The key to ensuring that your system design meets current and future performance requirements,
is developing well-architected products. With SoC embedded systems, you start with a solid foundation that enables your designs to:
●Improve system ,performance. Achieved. through, hard core processor system (HPS) to FPGA broadband
interconnect, hardware acceleration and high-performance memory
●Enhanced relability- achieved through ECC and memory protection functions to protect the system from
hardware or software errors, CPU warm boot or cold reset will not affect the system, and there' is no need to reprogram the FPGA.
●More flexibility - enabled by hardware and software differentiation, system boot and configuration choices, and multiple hardened memory controllers
●Reduced system cost - achieved through monolithic integration, integrated PCle controller, and no power-down sequencing
●Increased performance - achieved through our excellent target visualization, control capabilities, and high-performance FPGA adaptive debugging tools
●Future path,Achieved through our high-end,min-end and low-end application planning,
as well as software porting and products with an average production cycle of more than 15 years
Not all SoC FPGAs are the same. Architecture matters
Learn how to choose the right SoC FPGA for your application with extensive resources, including a series of short videos from processor expert Jim Turley .
ARCHITECTURE MATTERS
Choose the right SoC FPGA for your application.
ENPIRION "POWER SUPPLY SOLUTION
Enpirion "power. solutions are high-frequency DC-DC step-down power converters designed and
validated. for FPGA, CPLD, and. SoC. These powerful and easy-to-use power modules
integrate almost all the components needed to build power, saving circuit board space
and simplifying the design process.
GETTING STARTED
ARM* CORTEX*-A53 MPCORE* PROCESSOR
Stratx 10SoC is manufactured by 14 nm FInFET process .technology, adopts the third generation hard processor
system (HPS) based on the four emotion ARM+ Cortex "-. A53 MPCore processor cluster, the, hard core processor
system (HPS) also includes a large number of peripheral functions, combined with the breakthrough Hyerflex FPGA
structure, this is the highest performance Soc FPGA product family in the industry.
DEVELOPMENT KITS AND CIRCUIT BOARDS
The SoC FPGA development package is pre-configured with Linux and a reference design example called. Golden system
reference Design. Because of this, it is, easy to use, just take. out the circuit board and content, connect the power supply
and the necessary. communication cable ( such as Ethernet,, UART, or USB). As, soon as the circuit board is powered on,
a useful instance is started and run. The circuit board can be initially powered on without downloading any other tools or software.
After the. initial power is turned on, multiple. steps need to be performed. You can download software, tools, and
other instances, and make and run applications on circuit boards. These options are covered in the circuit board-specific Quick start Guide.
Select a specific development kit to see the detailed circuit board quick start guide.
STRATIX 10 SOC FPGA
DEVELOPMENT KIT
The Stratixe 10 SoC FPGA development suite
allows you to quickly and easily launch SoC FPGA designs based on custom ARM' processors.
ARRIA "10 SD$ FPGA
DEVELOPMENT KIT
The Quick Start Guide provides step-by-step
instructions on how to remove, configure, power
up, and interact with the Arrias 10 SoC FPGA
Development Kit board.
ARRIA V SOC FPGA
DEVELOPM ENT KIT
This quick start guide provides step-by-step
instructions on how to remove, configure, and
power up and interact with the ArriaV SoCFPGA Development Kit Power Board.
CYCLONE V SOC FPGA
DEVEL .OPMENT KIT
This Quick Start Guide provides step-by-step instructions
on how to take out, configure, and power up and
interact with cyclone's VSoC FPGA development.
FREQUENTLY ASKED QUESTIONS
FREQUENTLY ASKED QUESTIONS
What types of processors does FPGA provide?
How do | use FPGA in my embedded design?
How can the risk of embedded design be reduced by using FPGA to design?
AS sonas it shows more
DEVELOPMENT TOOL
View and learn about development tools to build software for SoC FPGA and create FPGA designs.
ECOSYSTEM
Our ecosystem partners and the SoC FPGA user community offer a variety of options to meet your SoC FPGA development needs.
RESOURCE CENTER
The SoC FPGA Resource Center provides all the information you need to start using SoC FPGA