overviewfor Customers Looking For Ethernet Connections Over 15 Meters, Intel® Ethernet Sfp+ Optics Can Extend The Reach To 300 Meters Or Longer. These Optical Modules Support Both Short Range And Long Range Distances With 10 Gigabit Intel® Ethernet Network Adapters.the Flexibility Provided Through Reach And Range Enables Customers To Create Networking Configurations That Best Meet The Needs Of Their Data Center Environment. Other Installation Benefits Include: Smaller Physical Dimensions, Use Less Power, Tighter Bend Radius, Lighter Weight, And Have A Longer Reach Compared To Copper Media Options.fiber Optics Are Also More Immune To Harsh Environmental Factors. The Light Used For Data Transmission Does Not Carry An Electrical Current So It Cannot Be Impacted By Electrical Transmissions Or Radio Frequency Interference. And, Light Has A Superior Signal Strength That Is Near Impervious To Unwanted Network Taps.10 Gigabit Intel® Ethernet Network Adapters With Sfp+ Connectivity Are Also The Most Scalable - Providing More Secure Connections For Virtualization, Flexibility For Lan And San Networking, And Proven Reliable Performance. Other Use Cases Include Connecting Servers To End Of Row (eor) And Top Of Rack (tor) Switches.
integrated Ultra Wi-fi. Ultra Features. Optimized Solution For System Design. The Intel® Wireless-ac 9560 Adapter Is A Crf (companion Rf Module) Supporting The First Generation Integrated Intel Wireless 802.11ac Solution, Comprised Of Cnvi And A Crf. The Solution Provides Bluetooth® 5.1 And 2x2 802.11ac Wi-fi, Including Wave 2 Features Such As 160mhz Channels, Delivering Up To 1.73gbps And Downlink Mu-mimo. These New Features Deliver A Significant Increase In User Speeds In Dense Deployments, Supporting Fast Downloads And Long Battery Life Compared To Legacy 802.11ac Devices. Combined With Intel® Coretm Processors And Exceptional Intel Wireless Innovations, The Intel® Wireless-ac 9560 Can Provide Gigabit Wireless Speed And Dramatically Improve Your Connected Experience At Home, Work, Or On The Go.
overviewintel® Ethernet Sfp28 Optics Are An Excellent Choice For High-speed Communications Equipment Where Extraordinary Performance And Reliability Are Essential. These Hot-pluggable Optical Modules Consume Low-power And Are Offered In The Extended Temperature Range.when Used With Intel® Ethernet Network Adapters With Sfp28 Connectivity, These Optics Provide More Secure Connections For Virtualization, Flexibility For Lan And San Networking, And Consistently Reliable Performance.fiber Optics Are More Immune To Harsh Environmental Factors. The Light Used For Data Transmission Does Not Carry An Electrical Current So It Cannot Be Impacted By Electrical Transmissions Or Radio Frequency Interference. Also, Light Has A Superior Signal Strength That Is Near Impervious To Unwanted Network Taps.
by Adding Photonics Capability To World-leading Silicon Manufacturing, Intel® Is Developing A New Class Of High-speed Optical Connectivity Products. Intel® Silicon Photonics Combines The Manufacturing Scale And Capability Of Silicon With The Power Of Light Onto A Single Chip. We Build Silicon-based Components That Transmit And Receive Optical Signals, Moving Vast Amounts Of Information At 100 To 1600 Gigabits Per Second Over Long Distances Of Up To Several Kilometers Of Fiber Optic Cables. Today, Our Pluggable Modules Connect Ethernet Switches In Large Data Centers. As Demand For Bandwidth Increases, Silicon Photonics Co-packaged With Switch Asics Will Provide The Band-width Density Necessary To Scale Future Data Center Networks. New High-speed I/o Connectivity Based On Photonics Intel® Wafer-scale Manufacturing With Hybrid Laser Platform For Future High-density Switch Integration What Is Silicon Photonics? Silicon Photonics Is A Combination Of Two Of The Most Important Inventions Of The 20th Century The Silicon-integrated Circuit And The Semiconductor Laser. With This Combination, Light Has Been Integrated Onto Intel''s Silicon Platform, Taking Advantage Of The Bandwidth And Reach Of Optical Connectivity, Using The Scale And Technology Capability Of Silicon. This New Technology Can Reduce Cost Of Ownership And Improve The Performance Of Future Data Center Architectures By: Enabling High-bandwidth, Software-configurable Access To Compute And Storage Permitting Software Defined Infrastructure (sdi) Deployments To Decouple Hardware And Software Resources For Disaggregated Data Centers Allowing Optical Connectivity That Interoperates With Other Technologies, Such As Ethernet Switches,smart-nics, And Fpgas
MFR: Netgear, Inc
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