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Ethernet Switch Chips Market to Witness Growth Acceleration During 2021-2033
Market Definition
Ethernet switch chips are used to create Ethernet switches, which are devices that connect together multiple Ethernet-enabled devices and allow them to communicate with each other. Ethernet switches use a variety of different technologies to manage the flow of traffic between devices, and switch chips are a key component of this technology. There are a variety of different Ethernet switch chips on the market, each with its own unique features and benefits.
Market Outlook
Some of the key trends in this rapidly evolving market:
Increased integration: Ethernet switch chips are becoming increasingly integrated, with more on-chip features and functionality. This trend is being driven by the need for smaller, more power-efficient devices.
More powerful processors: Ethernet switch chips are incorporating more powerful processors to handle the increasing traffic loads and demands placed on them.
Increased port density: Ethernet switch chips are offering more ports in a smaller form factor, thanks to advances in silicon manufacturing technology.
Key Drivers
The Ethernet switch chip market is primarily driven by the increasing demand for high-speed networking and the need for low-power consumption. The ever-growing demand for bandwidth-intensive applications such as video streaming and online gaming is also driving the market for Ethernet switch chips. The need for energy-efficient networking solutions is another key driver of the market. The Ethernet switch chip market is also driven by the increasing adoption of cloud computing and virtualization technologies.
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Research Objectives
Estimates and forecast the overall market size for the total market, across product, service type, type, end-user, and region
Detailed information and key takeaways on qualitative and quantitative trends, dynamics, business framework, competitive landscape, and company profiling
Identify factors influencing market growth and challenges, opportunities, drivers and restraints
Identify factors that could limit company participation in identified international markets to help properly calibrate market share expectations and growth rates
Trace and evaluate key development strategies like acquisitions, product launches, mergers, collaborations, business expansions, agreements, partnerships, and R&D activities
Thoroughly analyze smaller market segments strategically, focusing on their potential, individual patterns of growth, and impact on the overall market
To thoroughly outline the competitive landscape within the market, including an assessment of business and corporate strategies, aimed at monitoring and dissecting competitive advancements.
Identify the primary market participants, based on their business objectives, regional footprint, product offerings, and strategic initiatives
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Market Segments
The ethernet switch chips market can be segmented into product type, data rate, application, and region. By product type, the market can be divided into modular ethernet switches, and fixed configuration ethernet switches, By data rate, the market can be segmented into <10G ethernet switch chips, 10G ethernet switch chips, 25G -40G ethernet switch chips, and 100G Ethernet switch chips. By applications, the market can be segmented into networking, broadcast, storage, and others. By region, the market is divided into North America, Europe, Asia Pacific, and the Rest of the World.
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Key Players
The ethernet switch chips market includes players such as Broadcom(US), Marvell Technology Group(US), Intel(US), Arista Networks(US), Cisco Systems(US), D-Link(CN), TP-Link(CN), NETGEAR(US), Huawei(CN), NVIDIA Corporation(US).
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Research Scope
Scope – Highlights, Trends, Insights. Attractiveness, Forecast
Market Sizing – Product Type, End User, Offering Type, Technology, Region, Country, Others
Market Dynamics – Market Segmentation, Demand and Supply, Bargaining Power of Buyers and Sellers, Drivers, Restraints, Opportunities, Threat Analysis, Impact Analysis, Porters 5 Forces, Ansoff Analysis, Supply Chain
Business Framework – Case Studies, Regulatory Landscape, Pricing, Policies and Regulations, New Product Launches. M&As, Recent Developments
Competitive Landscape – Market Share Analysis, Market Leaders, Emerging Players, Vendor Benchmarking, Developmental Strategy Benchmarking, PESTLE Analysis, Value Chain Analysis
Company Profiles – Overview, Business Segments, Business Performance, Product Offering, Key Developmental Strategies, SWOT Analysis.
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25G Switch Comparison: How to Choose the Suitable One?
Driven by the undeniable growth in demand for bandwidth of private and public cloud data centers, 25G Ethernet over a single lane has become the new trend for sever-to-switch interconnections. And the increasing requirements of higher speeds in data centers have enhanced the adoption of 25G switch, which is the new buzz in recent years. In this post, a simple analysis of 25G switch market and comparison of commonly used 25G switches will be explored.
25G Switch Market Analysis
As we know, before 25G technology advent, the existing options are one lane for 10G, four lanes for 40G, or four lanes at 25Gbps for 100G. The 25G technology meets the specification for existing module form factors like SFP28 and QSFP28, and allows for a breakout connection between 25G and 100G without changing the port on the front of many 100G switches. Besides, driven by the high speed and bandwidth, various switch manufacturers have announced their new 25G switches in recent three years, just to occupy more market shares.
Cisco delivered their Nexus 9300-FX platform switches for 10G/25G/100G switching;
Mellanox launched 25G Ethernet switch SN2410 series for 25G/50G/100G Ethernet networks;
Dell put forward EMC networking S-series 25/40/50/100GbE to help data centers migration;
Broadcom announced its BCM56960 Series 25G switch for cloud-scale networking;
FS.COM introduced N-Series spine/leaf 25G/100G switch for cost-effective data center solutions.
At the same time, 25G optical transceivers, DACs, and AOCs also spring up like mushrooms. According to a study by Dell’oro, Ethernet switch revenue will continue to grow through the end of the decade, with the biggest sales forecast for 25G and 100G ports.
Notes: the source of the research: Crehan research.Inc
From the research we can see, at least in the next three years, 25G/50G/100G bandwidth will continue to grow and occupy half of the total network bandwidth, which in turn enhances the development of 25G switch market. Though challenges still exist for 25G Ethernet, it’s not denied that the trend for ToR 25G switches cannot be blocked.
Comparison Between Commonly Used 25G Switches in the Market
As have mentioned above, 25G switch market is booming due to the growing speed and bandwidth as well as switch vendors promotion. Then how to achieve the optimized network performance with existing 25G Ethernet switches, and control the total investment at the same time? Firstly, let’s have a look at the 25G switches in the market.
All the 25G SFP28 switches listed in the table have the same port configuration: 48 SFP28 ports and 6 QSFP28 uplink ports. And there are ToR/Leaf switches. Usually 25G switch is often used for switch-to-server applications, as for how to realize this, please read the article: How to Use 25G Switch for Switch-to-Server Connection.
For choosing ToR 25G switch, if you have no limited cost budget, Cisco 25G switch maybe a not bad choice, because except for the expensive price, it has high-level performance and configuration as well as its good reputation. All these make Cisco switches are perfect for data centers. Of course, other 25G switch vendors like Dell, Brocade and Mellanox also provide good options for migration from 10G, 25G to 50G and 100G networks.
However, for those who have a tight budget or do not pursue brand, a more wise choices is to select 25G switch like FS.COM N8500-48B6C. This switch supports ONIE installer for 3rd party network operating systems and compatibility with SDN (Software Defined Networks) via OpenFlow 1.3.11. And it also supports the advanced hardware based VXLAN feature to support over 16M virtual networks, making it a suitable option for cost-effective data center solutions.

Summary
25G switch offers a more convenient way to migrate to 100G network. Because it reduces the numbers of cables and switches needed in network designs, which in turn decrease the CAPEX and OPEX. Facing with the fast evolving 25G switch market, are you ready for it?
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Ethernet Switch Chips Market Demand, Technology Advancement and Future Scope Till 2025
The Global Ethernet Switch Chips Market Research Report 2020-2025 is a valuable source of insightful data for business strategists. It provides the industry overview with growth analysis and historical & futuristic cost, revenue, demand, and supply data (as applicable). The research analysts provide an elaborate description of the value chain and its distributor analysis. This Market study provides comprehensive data that enhances the understanding, scope, and application of this report.
Top Companies in the Global Ethernet Switch Chips Market: Cisco, Broadcom, Intel (Fulcrum), Marvell, Fujitsu, Microsemi, Infineon Technologies, Cavium, VIA, IC Plus Corp, Centec, Ethernity And Other
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This report segments the Ethernet Switch Chips Market on the basis of by Type are:
10G Ethernet Switch Chips 25G -40G Ethernet Switch Chips Others
On the basis of By Application, the Ethernet Switch Chips Market is segmented into:
Networking Database Others
Regional Analysis for Ethernet Switch Chips Market:
For a comprehensive understanding of market dynamics, the Ethernet Switch Chips Market is analyzed across key geographies namely: United States, China, Europe, Japan, South-east Asia, India, and others. Each of these regions is analyzed on basis of market findings across major countries in these regions for a macro-level understanding of the market.
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Points Covered in The Report: The points that are talked over within the report are the major Ethernet Switch Chips Market players that influence the market such as raw material suppliers, manufacturers, equipment suppliers, end users, traders, distributors etc. The all-inclusive profile of the companies is specified. The production, price, capacity, revenue, cost, gross, gross margin, sales volume, sales revenue, consumption, growth rate, import, export, future strategies, supply, and the technological developments that they are creating are also incorporated within the report. Besides the historical data from 2014 to 2019 and forecast data from 2019 to 2025. The growth factors of the Ethernet Switch Chips Market are deeply discussed while the different end users of the market are underlined. Data and information by manufacturer, by region, by type, by application and etc., and custom research can be added in line with the specific requirements. TheEthernet Switch Chips Market report also considers the SWOT analysis of the market. Finally, the report concludes with the opinions of the industry experts.
What are the market factors that are explained in the report
Further in the Ethernet Switch Chips Market research reports, following points are included along with in-depth study of each point:-
Production Analysis – Production of the Ethernet Switch Chips Market is analyzed with respect to different regions, types and applications. Here, price analysis of various Ethernet Switch Chips Market key players are also covered.
Sales and Revenue Analysis – Both, sales and revenue are studied for the different regions of the Ethernet Switch Chips Market. Another major aspect, price, which plays important part in the revenue generation, is also assessed in this section for the various regions.
Supply and Consumption – In continuation with sales, this section studies supply and consumption for the Ethernet Switch Chips Market. This part also sheds light on the gap between supple and consumption. Import and export figures are also given in this part.
Competitors – In this section, various Ethernet Switch Chips Market leading players are studied with respect to their company profile, product portfolio, capacity, price, cost and revenue.
Other analyses – Apart from the aforementioned information, trade and distribution analysis for the Ethernet Switch Chips Market, contact information of major manufacturers, suppliers and key consumers is also given. Also, SWOT analysis for new projects and feasibility analysis for new investment are included.
Customization of the Report: This report can be customized as per your needs for additional data up to 3 companies or countries or 40 analyst hours.
Note: All the reports that we list have been tracking the impact of COVID-19 on the market. Both upstream and downstream of the entire supply chain has been accounted for while doing this. Also, where possible, we will provide an additional COVID-19 update supplement/report to the report in Q3, please check for with the sales team.
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Ethernet Switch Chips Market Forecast and Growth 2027
The Global Ethernet Switch Chips Market has enlisted a noteworthy CAGR during the most recent decade. It is relied upon to arrive at higher yearly development in the imminent years. Strength, hearty monetary framework, crude material opulence, taking off worldwide Ethernet Switch Chips request are boosting market advancement. So also, mechanical headways, advancements, expanding industrialization, and urbanization in the creating and created areas are probably going to maintain the Ethernet Switch Chips market income during forecast 2020-2027
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Market Research Explore distributed a broad investigation of the worldwide Ethernet Switch Chips market thinking about different significant components of the market. The exploration study includes precise and credible evaluations of the past just as the future pace of the market. The report contains indispensable assessments dependent on creation, deals volume, income, and yearly development rates. The report likewise expounds on current market contention, industry condition, fragments, and driving rivals in the worldwide Ethernet Switch Chips market. It helps key players, partners, industry specialists, analysts, and friends authorities in increasing profound understanding of the market.
The worldwide Ethernet Switch Chips advertise has been separated into a few essential sections, for example, item types, applications, areas, and end-clients. Moreover, it investigates locales including North America, Europe, South America, the Middle East, Asia, and the remainder of the world while performing provincial examination. The division investigation helps key players correctly focusing on the real market size and choosing suitable sections for their Ethernet Switch Chips organizations.
The most significant players coated in global Ethernet Switch Chips market report:
Cisco, Broadcom, Intel (Fulcrum), Marvell, Fujitsu, Microsemi, Infineon Technologies, Cavium, VIA, IC Plus Corp, Centec, Ethernity
Types is divided into:
10G Ethernet Switch Chips
25G -40G Ethernet Switch Chips
100G Ethernet Switch Chips
Above 100G Ethernet Switch Chips
Applications is divided into:
Networking
Database
Others
Global Ethernet Switch Chips Market Regional Segmentation:
North America (U.S., Canada, Mexico) Europe (Germany, U.K., France, Italy, Russia, Spain, etc.) Asia-Pacific (China, India, Japan, Southeast Asia, etc.) South America (Brazil, Argentina, etc.) Middle East & Africa (South Africa, Saudi Arabia, etc.)
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Additionally, the report reveals insight into the market competition circumstance and execution of driving Ethernet Switch Chips makers. The report has contemplated ongoing advancements performed by driving makers in the worldwide Ethernet Switch Chips indusrty which incorporates item exploration, developments, and improvement. Their vital moves were likewise inspected in the report, including mergers, adventures, associations, item dispatches, and brand advancements that helped organizations extend their administration zones.
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Ethernet Switch Chips Market to Witness Steady Expansion During 2013 to 2025 | Cisco, Broadcom, etc.

The Global Ethernet Switch Chips Market Report 2013 aims to deliver an explicit evaluation of the market. The report offers sweeping insights extracted by thoroughly analyzing historical and current developments in the market. It also provides par excellence futuristic estimations for various vital factors including Ethernet Switch Chips market size, share, net profit, sales, revenue, and growth rate. The market competition by top manufacturers/players, with sales volume, price (USD/Unit), revenue (Million USD) and market share for each manufacturer/player Get more information, Ask for Free Sample Copy of this Report@ https://www.acquiremarketresearch.com/sample-request/9671/ Some of the most prominent Key Vendors: Cisco, Broadcom, Intel (Fulcrum), Marvell, Fujitsu, Microsemi, Infineon Technologies, Cavium, VIA, IC Plus Corp, Centec, Ethernity The report has divided the global Ethernet Switch Chips market on the basis of types, applications, technologies, regions, and key contenders. Proposed market segmentation analysis is intended to focus on segments and sub-segments with enough energy and force to obtain a competitive advantage. It also enables market contenders to form effective strategies for dedicated segments. Regions covered in the market report: North America (United States, Canada and Mexico), Europe (Germany, France, UK, Russia and Italy), Asia-Pacific (China, Japan, Korea, India and Southeast Asia), South America (Brazil, Argentina, Colombia etc.), Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa) Key questions answered in this report • What will the market size be in 2025 and what will the growth rate be? • What are the key market trends? • What is driving this market? • What are the challenges to Ethernet Switch Chips market growth? • Who are the key vendors in this market space? • What are the Ethernet Switch Chips market opportunities and threats faced by the key vendors? • What are the strengths and weaknesses of the key vendors? For detailed information regarding Ethernet Switch Chips market, Contact Us: https://www.acquiremarketresearch.com/industry-reports/ethernet-switch-chips-market/9671/ Applications Segment Analysis: Networking, Database, Others Product Segment Analysis: 10G Ethernet Switch Chips, 25G -40G Ethernet Switch Chips, 100G Ethernet Switch Chips, Above 100G Ethernet Switch Chips Reasons to Purchase this Report • Analyzing the outlook of the Ethernet Switch Chips market with the recent trends and Porter’s five forces analysis • Market dynamics which essentially consider the factors, which are impelling the present market scenario, along with growth opportunities of the market in the years to come • Market segmentation analysis, including qualitative and quantitative research incorporating the impact of economic and non-economic aspects • Regional and country level analysis integrating the demand and supply forces that are influencing the growth of the Ethernet Switch Chips market • Competitive landscape involving the market share of major players, along with the key strategies adopted for development in the past five years • Comprehensive company profiles covering the product offerings, key financial information, Our experts and analysts evaluate the vendors in the Ethernet Switch Chips market and provide understandings to articulate current and future market trends, innovation, customer expectations and competitive forces. The overviews, SWOT analysis and strategies of each vendor in the market provide understanding about the Ethernet Switch Chips market forces and how those can be oppressed to create future opportunities.
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Ethernet Switch Chips Market By Services, Assets Type, Solutions, End-Users, Applications, Regions Forecasts to 2025
“The Ethernet Switch Chips market report is a complete research on the current state of the Ethernet Switch Chips market with a focus on the regional market. This report presents the global Ethernet Switch Chips market size (value, production, and consumption), splits the breakdown (data status 2013-2018 and forecast to ‘2025’), by manufacturers, region, type, and application. This study also analyzes the market status, market share, growth rate, future trends, market drivers, opportunities and challenges, risks and entry barriers, sales channels, distributors and Porter’s Five Forces Analysis.
This research is helpful for all the players operating in the market, including the well-established players and the new entrants. This intelligent study provides the definition, description, and the overall forecasts of the global market, considering the market segments and sub-segments, which includes the product types, technologies, end-users, industry verticals, and the key geographies. Moreover, the report also provides an in-depth analysis of some of the significant factors such as driving forces, challenges, and threats that will shape the future of the market. In addition, the report also includes the lucrative opportunities in the micro markets for all the participants to invest in the global Ethernet Switch Chips market. Besides, the report describes the product offerings and the competitive analysis of the major players operating in the market.
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The report also presents the market competitive landscape and a corresponding detailed analysis of the major vendor/key players in the market.
The key players covered in this report:
The major manufacturers covered in this report Cisco Broadcom Intel (Fulcrum) Marvell Fujitsu Microsemi Infineon Technologies Cavium VIA IC Plus Corp Centec Ethernity
Geographically, this report studies the top producers and consumers, focuses on product capacity, production, value, consumption, market share and growth opportunity in these key regions, covering North America Europe China Japan Southeast Asia India
On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into 10G Ethernet Switch Chips 25G -40G Ethernet Switch Chips 100G Ethernet Switch Chips
On the basis of the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate for each application, including Networking Database Others
This report studies the global Ethernet Switch Chips market status and forecast, categorizes the global Ethernet Switch Chips market size (value & volume) by manufacturers, type, application, and region. This report focuses on the top manufacturers in United States, Europe, China, Japan, South Korea and Taiwan and other regions.
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The prime objective of this Ethernet Switch Chips research report is to define the size of the different segments and the geographies as well as to forecast the trends that are likely to gain traction in the following couple of years. This market research report has been designed to incorporate both the qualitative and quantitative aspects of the industry within each of the regions.
The scope of this report centers on key market analyses, market drivers & challenges, and competitive analysis & trends. Research report examines each market and its applications, regulatory scenario, technological innovations, Ethernet Switch Chips market projections, market sizes, and shares. Moreover, the Ethernet Switch Chips market report examines the most recent trends, pipeline products and developments in the Ethernet Switch Chips market. Complete profiles of leading organizations in the market are also mentioned in this report.
Ethernet Switch Chips market report highlights: 1. The Ethernet Switch Chips research report provides a detailed survey of the current and future industry trends so as to identify the investment analysis. 2. The industry forecasts, using estimated market values have been mentioned, till ‘2025’. 3. The Ethernet Switch Chips Market dynamics such as the drivers, restraints, threats, opportunities, and industry-specific challenges 4. Key industry trends across all the market segments and sub-segments, geographies, and nations. 5. Key developments and strategies determined in the market. 6. Detailed profiling of the leading competitors and the entrant market players. 7. Growth prospects among the emerging nations throughout the forecast period. 8. The Ethernet Switch Chips Market opportunities and recommendations for new investments.
In the end, It includes the methodical description of the various factors such as the market growth and a detailed information about the different company’s revenue, growth, technological developments, production, and the various other strategic developments.
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Thus, the Ethernet Switch Chips Market Report serves as a valuable material for all industry competitors and individuals having a keen interest in Ethernet Switch Chips Market study.
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Edgecore Networks發布400G開放式網路
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聖荷西–(BUSINESS WIRE)–(美國商業資訊)–OCP高峰會 – 開放式網路領導者Edgecore Networks今日宣布向開放運算計畫(OCP)提供400 Gigabit乙太網(400G)資料中心交換器設計,這是業界首創的400G開放式設計,支援公用和私人網路營運商大幅提升基礎架構容量。
Edgecore Networks執行長George Tchaparian表示:「四年前,Edgecore成功開發了業界首款OCP-ACCEPTED���網路產品10G機櫃頂端(top-of-rack)交換器。自此以來,隨著開放式網路技術和部署的發展,我們已成功設計出15款網路產品,包括25G/100G資料中心架構、深度緩衝資料中心互連交換器、服務提供者存取基礎架構、開放式模組化機架以及校園/分支/無線網路等。如今,Edgecore推出業界首款400G開放式網路交換器,幫助網路營運商滿足日益成長的網路容量需求以及不斷增加的網路交換器頻寬,因為開放網路交換器頻寬在過去四年中增加了40倍。」
Edgecore將為OCP貢獻AS9716-32X開放式網路交換器規範和設計套件,這一1U型交換器提供32個QSFP-DD埠,每個埠可支援400G操作。該AS9716-32X交換器採用博通(Broadcom) StrataXGS® Tomahawk™ III交換器系列,同時還整合了Intel® Xeon® Processor D控制層處理器。
全球商業資訊供應商IHS Markit雲端和資料中心研究實務資深研究總監兼顧問Cliff Grossner博士說道:「在客製化、功率效率及降低成本等首要因素的推動下,電信和二級CSP目前正轉向大規模部署,在此背景下,超大規模雲端服務提供者率先採用了經OCP認證的設備。400GE DC乙太網路交換器埠的量產出貨將於2019年啟動。鑒於市場對400GE乙太網路交換器的強勁需求,我們預計到2022年營收將達到約16億美元。Edgecore向OCP貢獻的400G交換器設計充分表明OCP社群正努力滿足這項需要。」
如所有Edgecore開放式網路交換器一樣,400G交換器支援ONIE、Open Network Linux、開放式光電監測(OOM) API和Redfish硬體管理API等OCP軟體標準。Edgecore將與商務軟體合作夥伴以及開放式軟體社群攜手為400G交換器的商業和開放原始碼網路作業系統(NOS)選項提供支援。
Edgecore在開放式網路中保持領先地位
在3月20-21日於聖荷西舉行的OCP美國高峰會(OCP U.S. Summit)上,Edgecore將展出AS9716-32X開放式網路400G交換器。此外,Edgecore還將在OCP高峰會以及3月21-22日於倫敦舉行的Cloud Expo Europe上與合作夥伴聯合展出以下領先的開放式網路解決方案:
業界首創的開放式網路產品——行動基地台路由器,該產品符合行動回程傳輸網路的NEBS標準和戶外裝置標準;
100G高密度深度緩衝交換器,該產品能夠為服務提供者聚合網路帶來開放式網路的優點;
Cassini AS7716-24SC開放式資料封包轉發器,該轉發器整合了100G封包交換和同調光纖埠。我們將在Edgecore攤位展出該產品,IP Infusion將利用其OcNOS™網路作業系統展示這款產品;
ASXvOLT16虛擬10G PON OLT,該產品根據提交給OCP電信工作小組的AT&T Open XGS-PON 1RU OLT規範設計;
OCP-ACCEPTED™ AS7816-64X 100G開放式網路交換器具備64個100G埠,採用博通(Broadcom) StrataXGS Tomahawk II交換器系列,支援SONiC和商務軟體選項;以及
開放式WiFi存取點(Open WiFi Access Points),Edgecore已將其設計貢獻給OCP,開放式WiFi存取點將與Mojo Networks NOS軟體一起為OCP高峰會提供網路支援,後者屆時將展示大規模開放式WiFi網路。
支持性引言
「Edgecore已為OCP網路專案(OCP Networking Project)做出諸多重要貢獻,最初於四年前推出了首款10G交換器通過了專案驗收,隨後憑藉40G和100G交換器設計、支援高達512 x 100G埠和開放式WiFi存取點的模組化平臺取得了進一步進展。我們非常歡迎Edgecore全新的400G設計貢獻,400G設計將為業界提供新一代開放網路效能。」
Omar Baldonado和Scott Emery,聯席負責人,OCP Networking Project
「我們非常高興見證Edgecore發布400G開放式網路交換器並與開放運算計畫社群分享其設計,推動大眾市場廣泛採用。由此可見白箱交換器硬體的創新速度之快,它們能夠以極具競爭力的價格提供業界一流的效能。我們期待驗證這款適用於開放式網路Linux的交換器並在我們的SDN架構產品中搭載這款交換器,為雲端/SAAS網路、深度學習和高效能計算等應用中的新興100G/400G案例提供支援。 」
Prashant Gandhi,產品長,Big Switch Networks
「隨著網路需求的不斷增加,擁有諸如Edgecore等公司為開放運算計畫貢獻力量以確保網路創新和擴展顯得十分重要。我們非常榮幸看到他們在400G開放式網路交換器方面所作的貢獻,期望他們繼續推動開放式架構在網路中的普及。」
Josh Leslie,執行長,Cumulus Networks
「數年以來,Finisar一直致力於為網路營運商提供光電技術,為其高效能開放式網路部署提供支援。我們一直與OCP社群密切合作,努力透過開發開放式光電監測(Open Optical Monitoring) API提高開放式網路可管理性。此外,我們非常高興與Edgecore合作幫助網路營運商使用Finisar光學元件部署400G交換器,實現更高容量的網路。」
Vipul Bhatt,資深行銷總監,Finisar Corporation
「在網路容量需求日益成長的大背景下,IP Infusion非常高興在新型400G開放式網路交換器中與Edgecore展開合作。我們一直與Edgecore合作為非聚合網路提供支援,我們的合作領域不僅包括資料中心和DCI領域,還包括存取和聚合等其他領域。新推出的400G交換器將幫助網路營運商在利用IP Infusion OcNOS的同一開放式網路OS功能的同時輕鬆擴展其網路容量。」
Atsushi Ogata,總裁兼執行長,IP Infusion
「自OCP成立以來,Edgecore一直是開放式網路領域公認的領導者,隨著這一市場領先的400G設計的推出,Edgecore仍將是開放式硬體領域的關鍵推動力和第一品牌。SnapRoute與Edgecore的合作關係以及我們獨一無二、業界首創的網路微服務平臺使營運商們能夠充分發掘非聚合的潛力並推動他們利用產業標準的開發維運(DevOps)工具實現自我創新。」
Dom Wilde,執行長,SnapRoute
關於Edgecore Networks
Edgecore Networks Corporation是領先的網路原始設計製造商(ODM)智邦科技股份有限公司(Accton Technology Corporation)旗下的獨資子公司。Edgecore Networks憑藉全球通路合作夥伴和系統整合商向資料中心、服務提供者、企業和中小企業(SMB)客戶提供有線和無線網路產品和解決方案。Edgecore Networks是開放式網路領域的領導者,致力於提供全方位的開放式WiFi存取點、資料封包轉發器、虛擬PON OLT以及提供首選商業和開放原始碼NOS與 SDN軟體的1G、10G、25G、40G和100G OCP-ACCEPTED™交換器。更多資訊,請造訪www.edge-core.com。
所有商標、服務商標、註冊商標或註冊服務商標均為其各自所有者的財產。
© 2018 Edgecore Networks。本新聞稿中的資訊如有變更,恕不另行通知。對於本文中所包含的任何技術性或編輯錯誤或遺漏,Edgecore Networks概不負責。
免責聲明:本公告之原文版本乃官方授權版本。譯文僅供方便瞭解之用,煩請參照原文,原文版本乃唯一��法律效力之版本。
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Global Ethernet Switch Chips Market 2017- Cavium, Centec, Intel (Fulcrum), Cisco, Microsemi, Broadcom
Global Ethernet Switch Chips Market Research gives the exhaustive affiliation between past and current market trends to predict future market values and tendencies of the Ethernet Switch Chips market. Ethernet Switch Chips Market by Type (10G Ethernet Switch Chips, 25G -40G Ethernet Switch Chips, 100G Ethernet Switch Chips ), Applications (Networking, Database ), and Region (North America, China,…
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Ready to Watch the Benefits of 25G
Today, with the requirements of the bandwidth, many data centers use 40G Ethernet for connectivity from their servers to their top-of-rack switches. Most Hyperscale public cloud providers and social media giants are even migrating to 100G Ethernet for their servers in the near future. However, for some proactive enterprises, they are finding a cost effective and power efficient solution - 25G is the answer to this challenge. Indeed, a handful of powerful data center and cloud vendors and suppliers, such as Google, Microsoft, Broadcom, Arista and Mellanox, formed a consortium to promote and catalyze development of 25G in 2014. You may have heard plenty of buzz regarding 25G Ethernet. What is 25G? Why 25G? Let’s take a closer look.
What Is 25G?
25G is a proposed standard for Ethernet connectivity that could benefit cloud and enterprise data center environments. In June 2014, the IEEE explored the standardization of 25G Ethernet. Subsequently, the standards organization has formed an 802.3by 25G Ethernet study group. They focus on market opportunities and requirements for a single-lane 25G Ethernet speed for server interconnects. 25G Ethernet is an emerging network technology, which is mainly used for the next generation of data center server. 25G Ethernet can provide a 25G media access control (MAC) that matches the single-lane 25G physical layer (PHY) technology. In web-scale data centers, 25G Ethernet could provide an efficient server to increase top-of-rack (TOR) speed. That 25G technology can save cloud providers and enterprise data centers capital and operating expense.
We Are Ready for 25G
Before 25G Ethernet exists, the only available option for higher speed server connectivity is 40G Ethernet. When top-of-rack switches move to high-density 40G Ethernet, the switches could still be connected to 10G servers, because 40G Ethernet consists of four lanes of 10G. And now, there are not only 40G standard under the way, but also the 25G Ethernet standards can be used to build a single-lane 25G Ethernet connection, a 2 x 25G configuration for 50G Ethernet or a 4 x 25G configuration for 100G Ethernet. With the availability of 4 x 25G per lane technology for 100G, a single 25G lane can reduce cost in comparison to 40G based on four 10G lanes. So 25G Ethernet technology is ready now.
Ready to Watch the Benefits of 25G
Ideal for the Cloud
Cloud computing is the most biggest attractions for 25G. Cloud providers are looking forward to reducing cost and improving density, but 10G is no longer the need of server speeds. Under this condition, 10G requires more switches in the rack, so it needs higher cost. With the emergence of 25G technology, the IEEE has defined 100G Ethernet based on four lanes each at 25G. With the success of 100G Ethernet in data center networks for inter-switch links, 25G has proven to be a reliable and cost effective technology. And Dell’Oro Group predicts that 25G will take over Ethernet server port sales by 2018.
Availability to the Server, Switch and Storage Infrastructure
Since the 25G Ethernet Consortium was formed in 2014, multiple suppliers have released silicon and system products that support the standard. Major server vendors offer 25G, 50G and 100G Ethernet adapters, while a broad range of switch vendors support 25G, 50G and 100G Ethernet speeds. In addition, the latest merchant silicon switches deliver up to 32 ports of 100G with single lane SerDes architectures with 128 lanes of 25G, making 25G a logical speed choice for migration of next generation server and storage. Therefore, there are 25G Ethernet solutions from all of the major switch and server vendors. As more and more of the server, switch and storage infrastructure converts to 25G, you will be able to recognize the performance and efficiency of the faster network speeds.
More Performance Improvement of 25G
25G solutions provide 2.5x more bandwidth, but they are not significantly more expensive than 10G Ethernet solutions. Furthermore, they are fully backwards compatible when connected to 10G equipment. When you upgrade data center network to 25G, you can refresh your network with 25G capabilities instead of upgrading the whole system. Compared with 40G solutions, the underlying technology for 40G Ethernet is simply four lanes at 10G speed. It does not offer the advantages of cost, power consumption and server rack density, which enable widespread speed transition. All in all, 25G technology provides lower costs and power requirements, which can enable network bandwidth to be cost-effectively and support the next-generation server and storage solutions in cloud and web-scale data center environments.
Conclusion
25G Ethernet leverages the single-lane 25G physical layer technology to support 100G Ethernet, which offers higher speed, lower power consumption and lower cost. In the near future, 25G Ethernet deployments will become the highest server port deployment. You can be ready for 25G and begin seeing the benefits of better compute and storage efficiency in your data center today.
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Supermicro Drives Converged Data Center Connectivity with Portfolio of 25/100Gbps Server Networking Solutions
Delivers Quad/Dual/Single (Q)SFP28 Modules in Onboard, Standard, and MicroLP Form Factors to Optimize Networking Performance, Scalability, Cost, and Upgradability in Broad Product Base
SAN JOSE, California, April 26, 2017 /PRNewswire/ -- Super Micro Computer, Inc. (NASDAQ: SMCI), a global leader in compute, storage, and networking technologies and green computing has announced general availability of Mellanox, Broadcom and Intel-based 100Gbps and 25Gbps standard networking cards and onboard SIOM solutions, 25Gbps MicroLP networking cards, and onboard riser cards optimized for the Ultra SuperServer®.
Supermicro offers a wide range of 25GbE and 100GbE interface cards
Supermicro networking modules deliver high bandwidth and industry-leading connectivity for performance-driven server and storage applications in the most demanding Data Center, HPC, Cloud, Web2.0, Machine Learning and Big Data environments. Clustered databases, web infrastructure, and high frequency trading are just a few applications that will achieve significant throughput and latency improvements resulting in faster access, real-time response and virtualization enhancements with this generation of industry leading Supermicro solutions.
Supermicro's range of 25Gbps and 100Gbs interface solutions: http://ift.tt/2otsOpB
Supermicro's 25/100Gbps networking solutions offer high performance and efficient network fabrics, covering a range of application optimized products. These interfaces provide customers with networking alternatives optimized for their applications and data center environments. The AOC-S Standard LP series cards are designed for any Supermicro server with a PCI-E x8 (for 25G) or PCI-E x16 (for 100G) expansion slot. The AOC-C MicroLP add-on card is optimized for Supermicro high-density FatTwin™ and MicroCloud SuperServers. The Supermicro AOC-M flexible, cost-optimized 25/100Gbps onboard SIOM series cards support the Supermicro TwinPro™, BigTwin™, Simply Double and 45/60/90-Bay Top-Load SuperStorage, plus 7U 8-Way SuperServer. The Supermicro Ultra series utilizes the AOC-U series onboard riser cards. These 25G and 100G modules are fully compatible with Supermicro and other comparable industry switch products.
25/100G MODULE
TYPE
DESCRIPTION
INTERFACE
PORTS
CONTROLLER
SUPPORTED SUPERMICRO SERVERS
AOC-SHFI-i1C
STANDARD LP
OMNI-PATH 100GBPS
PCI-E 3.0 X16
1 QSFP28
INTEL
ALL W/ PCI-E 3.0 X16
AOC-MHFI-i1C/M
ONBOARD
OMNI-PATH 100GBPS
PCI-E 3.0 X16
1 QSFP28
INTEL
BIGTWIN, TWINPRO, SUPERSTORAGE, 8-WAY
AOC-S100G-m2C
STANDARD LP
DUAL-PORT 100GBE
PCI-E 3.0 X16
2 QSFP28
MELLANOX
ALL W/ PCI-E 3.0 X8
AOC-S25G-b2S
STANDARD LP
DUAL-PORT 25GBE
PCI-E 3.0 X8
2 SFP28
BROADCOM
ALL W/ PCI-E X8
AOC-S25G-m2S
STANDARD LP
DUAL-PORT 25GBE
PCI-E 3.0 X8
2 SFP28
MELLANOX
ALL W/ PCI-E 3.0 X8
AOC-S25G-i2S
STANDARD LP
DUAL-PORT 25GBE
PCI-E 3.0 X8
2 SFP28
INTEL
ALL W/ PCI-E 3.0 X8
AOC-C25G-m1S
MICROLP
SINGLE-PORT 25GBE
PCI-E 3.0 X8
1 SFP28
MELLANOX
FATTWIN, MICROCLOUD
AOC-MH25G-m2S2T/M
ONBOARD
DUAL-PORT 25GBE
PCI-E 3.0 X16
2 SFP28
MELLANOX
BIGTWIN, TWINPRO, SUPERSTORAGE, 8-WAY
AOC-M25G-m4S/M
ONBOARD
QUAD-PORT 25GBE
PCI-E 3.0 X16
4 SFP28
MELLANOX
BIGTWIN, TWINPRO, SUPERSTORAGE, 8-WAY
AOC-URN4-m2TS
ONBOARD
DUAL-PORT 25GBBE
PCI-E 3.0 X16
2 SFP28
MELLANOX
1U ULTRA
AOC-URN4-i2TS
ONBOARD
DUAL-PORT 25GBE
PCI-E 3.0 X8
2 SFP28
INTEL
1U ULTRA
AOC-2UR68-m2TS
ONBOARD
DUAL-PORT 25GBBE
PCI-E 3.0 X8
2 SFP28
MELLANOX
2U ULTRA
Supermicro 25/100G Ethernet Modules
"With 2.5 times the bandwidth of 10G, less than half the cost of 40G, and incorporating Remote Direct Memory Access for low latency with backward compatibility with 10G switches, the industry leading 25GbE capability that Supermicro offers our customers provides the highest scalability and potential for future growth," said Charles Liang, President and CEO of Supermicro. "We believe that 100G, having a clear upgrade path from 25G, is the natural next step in the evolution of modern high-performance converged data center server/storage deployments for our customers as they experience ever higher demands on their data center I/O infrastructures."
Dual- and Single-port Modules supporting 100Gbps AOC-SHFI-i1C Omni-Path Standard Card Designed for HPC, this card uses an advanced "on-load" design that automatically scales fabric performance with rising server core counts, making these adapters ideal for today's increasingly demanding workloads with 100Gbps link speed, single QSFP28 connector, PCI-E 3.0 x16 slot and standard low-profile form factor.
AOC-MHFI-i1C/M Onboard Omni-Path SIOM Card Designed specifically for HPC utilizing the Intel® OP HFI ASIC, this card offers 100Gbps link speeds for Supermicro servers that support the SIOM interface.
AOC-S100G-m2C Standard Card This card offers dual-port QSFP+ connectivity in a low-profile, short length standard form factor with PCI-E 3.0 x16 slot. Utilizing the Mellanox ConnectX®-4 EN chipset with features such as VXLAN and NVGRE, this card offers network flexibility, high bandwidth with specific hardware offload for I/O virtualization, and efficiently optimizes bandwidth demand from virtualized infrastructure in the data center or cloud deployments.
Quad-, Dual- and Single-port Modules supporting 25Gbps AOC-S25G-b2S Standard Card Based on the Broadcom® BCM57414 chipset with features such as RDMA, NPAR, VXLAN and NVGRE, it is backward compatible with 10GbE network and the most cost effective upgrade from 10GbE to 25GbE in data center or cloud deployments.
AOC-S25G-m2S Standard Card This is a dual-port 25GbE controller that can be used in any Supermicro server with a PCI-E 3.0 x8 expansion slot. Based on the Mellanox ConnectX®-4 Lx EN chipset with features such as RDMA and RoCE, it is backward compatible with 10GbE networks and addresses bandwidth demand from virtualized infrastructure.
AOC-S25G-i2S Standard Card This card is implemented with the Intel® XXV710. It is fully compatible with existing 10GbE networking infrastructures but doubles the available bandwidth. The 25GbE bandwidth enables rapid networking deployment in an agile data center environment.
AOC-C25G-m1S MicroLP Card This card is based on the Mellanox® ConnectX-4 Lx EN controller. It is the solution for Supermicro high density MicroCloud and Twin series servers.
AOC-MH25G-m2S2T/M Onboard SIOM Card This is a proprietary SIOM (Supermicro I/O module) card based on Mellanox ConnectX®-4 Lx EN and optimized for SuperServers with SIOM support. Optimized for Supermicro BigTwin, TwinPro, and SuperStorage products.
AOC-M25G-m4S/M Onboard SIOM Card This is one of the most feature rich 25GbE controllers in the market. Based on the Mellanox ConnectX®-4 Lx EN, with 4-ports of 25GbE SFP28 connectivity in small form factor SIOM, it provides density, performance, and functionality. Optimized for Supermicro BigTwin, TwinPro, and SuperStorage products.
AOC-URN4-m2TS Onboard 1U Ultra Riser Card Mellanox ConnectX-4 Lx EN, 2 ports, 2 SFP28, onboard 1U Ultra Riser
AOC-URN4-i2TS Onboard 1U Ultra Riser Card Intel XXV710, 2 ports, 2 SFP28, onboard 1U Ultra Riser
AOC-2UR68-m2TS Onboard 2U Ultra Riser Card Mellanox ConnectX-4 Lx EN, 2 ports, 2 SFP28, onboard 2U Ultra Riser
About Super Micro Computer, Inc. (NASDAQ: SMCI) Supermicro® (NASDAQ: SMCI), the leading innovator in high-performance, high-efficiency server technology is a premier provider of advanced server Building Block Solutions® for Data Center, Cloud Computing, Enterprise IT, Hadoop/Big Data, HPC and Embedded Systems worldwide. Supermicro is committed to protecting the environment through its "We Keep IT Green®" initiative and provides customers with the most energy-efficient, environmentally-friendly solutions available on the market.
For more information on Supermicro's complete range of high performance, high-efficiency Server, Storage and Networking solutions, please visit www.supermicro.com.
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Supermicro, Building Block Solutions and We Keep IT Green are trademarks and/or registered trademarks of Super Micro Computer, Inc.
Intel is a registered trademark of Intel Corporation in the United States and other countries.
All other brands, names and trademarks are the property of their respective owners.
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Read this news on PR Newswire Asia website: Supermicro Drives Converged Data Center Connectivity with Portfolio of 25/100Gbps Server Networking Solutions
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