Altera Announces Quad-Core 64-bit ARM Cortex-A53 for
Stratix 10 SoCs
發(fā)布時間:2013-10-30 來源:Altera 責(zé)任編輯:xueqi
[Introduction]Altera Announces Quad-Core 64-bit ARM Cortex-A53 for Stratix 10 SoCs,Manufactured on Intel’s 14 nm Tri-Gate Process, it will offer exceptional adaptability, performance, power efficiency and design productivity for a broad range of applications, Altera Stratix® 10 SoCs Will Deliver Industry’s Most Versatile Heterogeneous Computing Platform.
Altera Corporation (NASDAQ: ALTR) today announced that its Stratix 10 SoC devices, manufactured on Intel’s 14 nm Tri-Gate process, will incorporate a high-performance, quad-core 64-bit ARM Cortex™-A53 processor system, complementing the device’s floating-point digital signal processing (DSP) blocks and high-performance FPGA fabric. Coupled with Altera’s advanced system-level design tools, including OpenCL, this versatile heterogeneous computing platform will offer exceptional adaptability, performance, power efficiency and design productivity for a broad range of applications, including data center computing acceleration, radar systems and communications infrastructure.
The ARM Cortex-A53 processor, the first 64-bit processor used on a SoC FPGA, is an ideal fit for use in Stratix 10 SoCs due to its performance, power efficiency, data throughput and advanced features. The Cortex-A53 is among the most power efficient of ARM’s application-class processors, and when delivered on the 14 nm Tri-Gate process will achieve more than six times more data throughput compared to today’s highest performing SoC FPGAs. The Cortex-A53 also delivers important features, such as virtualization support, 256TB memory reach and error correction code (ECC) on L1 and L2 caches. Furthermore, the Cortex-A53 core can run in 32-bit mode, which will run Cortex-A9 operating systems and code unmodified, allowing a smooth upgrade path from Altera’s 28 nm and 20 nm SoC FPGAs.
“ARM is pleased to see Altera adopting the lowest power 64-bit architecture as an ideal complement to DSP and FPGA processing elements to create a cutting-edge heterogeneous computing platform,” said Tom Cronk, executive vice president and general manager, Processor Division, ARM. “The Cortex-A53 processor delivers industry-leading power efficiency and outstanding performance levels, and it is supported by the ARM ecosystem and its innovative software community.”
Leveraging Intel’s 14 nm Tri-Gate process and an enhanced high-performance architecture, Altera Stratix 10 SoCs will have a programmable-logic performance level of more than 1GHz; two times the core performance of current high-end 28 nm FPGAs.
“High-end networking and communications infrastructure are rapidly migrating toward heterogeneous computing architectures to achieve maximum system performance and power efficiency,” said Linley Gwennap, principal analyst at The Linley Group, a leading embedded research firm. “What Altera is doing with its Stratix 10 SoC, both in terms of silicon convergence and high-level design tool support, puts the company at the forefront of delivering heterogeneous computing platforms and positions them well to capitalize on myriad opportunities.”
By standardizing on ARM processors across its three-generation SoC portfolio, Altera will offer software compatibility and a common ARM ecosystem of tools and operating system support. Embedded developers will be able to accelerate debug cycles with Altera’s SoC Embedded Design Suite (EDS) featuring the ARM Development Studio 5 (DS-5™) Altera® Edition toolkit, the industry’s only FPGA-adaptive debug tool, as well as use Altera’s software development kit (SDK) for OpenCL to create heterogeneous implementations using the OpenCL high-level design language .
“With Stratix 10 SoCs, designers will have a versatile and powerful heterogeneous compute platform enabling them to innovate and get to market faster,” said Danny Biran, senior vice president, corporate strategy and marketing at Altera. “This will be very exciting for customers as converged silicon continues to be the best solution for complex, high-performance applications.”
特別推薦
- 成本與性能的平衡:振蕩線圈技術(shù)深度解析與選型建議
- 十一月上海見!106屆中國電子展預(yù)登記開啟,共探產(chǎn)業(yè)新機遇
- 清潔電器智能化升級:MCU芯片性能成差異化競爭核心
- Cadence與NVIDIA強強聯(lián)合,數(shù)字孿生平臺新模型助推AI數(shù)據(jù)中心高效部署
- 偏轉(zhuǎn)線圈技術(shù)解析:從基礎(chǔ)原理到選型要則的全景指南
技術(shù)文章更多>>
- Spectrum推出多通道GHz數(shù)字化儀,最高支持12通道
- 安森美破解具身智能落地難題,全鏈路方案助推機器人產(chǎn)業(yè)化
- AMD 推出 EPYC? 嵌入式 4005 處理器,助力低時延邊緣應(yīng)用
- 機電執(zhí)行器需要智能集成驅(qū)動器解決方案以增強邊緣智能
- 廣東國際水處理技術(shù)與設(shè)備展覽會邀請函
技術(shù)白皮書下載更多>>
- 車規(guī)與基于V2X的車輛協(xié)同主動避撞技術(shù)展望
- 數(shù)字隔離助力新能源汽車安全隔離的新挑戰(zhàn)
- 汽車模塊拋負載的解決方案
- 車用連接器的安全創(chuàng)新應(yīng)用
- Melexis Actuators Business Unit
- Position / Current Sensors - Triaxis Hall
熱門搜索
LTC
LTE
LTE功放
LTE基帶
Marvell
Maxim
MCU
MediaTek
MEMS
MEMS傳感器
MEMS麥克風(fēng)
MEMS振蕩器
MHL
Micrel
Microchip
Micron
Mic連接器
Mi-Fi
MIPS
MLCC
MMC連接器
MOSFET
Mouser
Murata
NAND
NFC
NFC芯片
NOR
ntc熱敏電阻
OGS