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Showing posts with label Optane. Show all posts
Showing posts with label Optane. Show all posts

Friday, April 6, 2018

3 Things You Need to Know About Intel Corp.'s Cascade Lake

Last summer, chip giant @Intel (NASDAQ:INTC) released a new family of processors for the #datacenter, called Xeon Scalable. At the time, Intel touted the Xeon Scalable chips as "the industry's biggest platform advancement in a decade." The Xeon Scalable products offered significantly better performance than their predecessors as well as a more robust feature set, to boot.

Of course, Intel has made it clear that it aims to refresh its key processor products at a roughly annual cadence. To that end, Intel is expected to launch its next-generation of Xeon Scalable processors, code-named Cascade Lake, sometime in the second half of 2018.
Here are three things you need to know about the Cascade Lake chips
1. Manufacturing technology improvements
Intel's current Xeon Scalable chips, which are based on the company's Skylake-SP architecture, are manufactured using the company's second-generation 14-nanometer technology, known as 14+. The Cascade Lake chips are expected to be manufactured in Intel's third-generation 14-nanometer technology, unsurprisingly called 14++.
According to Intel, 14++ offers a roughly 10% speed boost over 14+ at the same power consumption, so Intel is likely to parlay those manufacturing improvements to deliver performance enhancements (likely through increases in the operating frequency of the chips compared to their Skylake-SP predecessors).
2. Optane memory module support
The upcoming Cascade Lake chips are expected to support memory modules based on Intel's 3D XPoint memory technology, a type of memory that's supposed to be more cost-effective than traditional DRAM and can retain its data even when power to the system is removed (such memory is referred to as "persistent memory"). Intel markets 3D XPoint-based products under its Optane brand.
According to a leaked Intel slide deck, the company intends to support Optane memory modules on "select SKUs" of Cascade Lake.
What this likely means, then, is that Intel will try to charge a premium for Cascade Lake-based chips that support 3D XPoint-based memory modules in a bid to further increase its data center processor average selling prices and ultimately accelerate revenue growth in the company's data center group (DCG). 

Tuesday, April 3, 2018

New Intel High-Performance CPU Brand Expected To Push PC Channel Sales

@Intel is launching a new brand for its eighth-generation Core processors to promote high-performance computers that one distributor says could help push PC channel sales. The Santa Clara, Calif.-based company is calling the new brand an Intel Core platform extension that will promote the bundling of the i5, i7 and i9 processors with the performance-boosting #Optane memory module that Intel announced a little over a year ago. These processors that come with Optane memory bundled are receiving a modified naming convention: i5+, i7+ and i9+. Optane memory was previously only compatible with seventh-generation Kaby Lake CPUs. Intel's brand update was among a handful of eighth-generation Core CPU announcements the company made on Tuesday. Beyond announcing that Optane memory now works with Coffee Lake processors, the company also revealed the first eighth-generation Core i5, i7 and i9 processors for laptops and a new set of 300-series motherboards. In addition, the company announced Coffee Lake processors for Intel's vPro platform that provides PC remote management and other features for enterprises.

Tuesday, November 28, 2017

How Memory Partners Intel and Micron Became Competitors

#Intel - #Micron joint venture @Intel ( #INTC ) has started cashing out on complimentary products such as non-volatile memory and #FPGA (field-programmable gate arrays)—segments that are more or less stable because the majority of the output is consumed by Intel itself. This also enables Intel to design custom memory and FPGAs that suit its requirements.

Intel operates in the non-volatile memory space through a JV (joint venture) with Micron Technology (MU). The JV developed a new 3D XPoint memory technology in 2015. The technology is faster than NAND (negative AND) and less volatile than DRAM (dynamic random-access memory).

The two companies started developing memory products on 3D XPoint technology separately. Intel launched its first 3D XPoint-based product under the Optane brand in early 2017, whereas Micron is still developing 3D XPoint-based products and plans to launch them in 2018 under the QuantX brand.

The JV completed the expansion of its fabrication facility in Utah, where the 3D XPoint products of both companies will be produced.

Intel’s 3D XPoint memory products 

In 2017, Intel launched its 3D XPoint-based Optane DC P4800X SSD (solid state drive) for data center, its Optane 3.2 Memory sticks for HDD (hard-disk drive) caching, and its Optane SSD 900P for desktops. The Optane DC P4800X SSD is priced at $1,520, whereas the new Optane SSD 900P is priced between $350 and $600, depending on the memory capacity.

After storage SSD products, Intel plans to launch NVDIMMs (nonvolatile dual in-line memory module) based on its 3D XPoint technology.

Intel’s new 3D XPoint DIMMs 

Intel gave the first glimpse of the 3D XPoint NVDIMM prototype at the Storage Visions Conference in January 2016. The next update came in its fiscal 3Q16 earnings call, when CEO (chief executive officer) Brian Krzanich stated that 3D XPoint would feature in Intel’s second-generation Purley platform.

The latest update came at the UBS Global Technology Conference in November 2017, where Intel Data Center Group manager Navin Shenoy stated that 3D XPoint DIMMs are on track to launch in 2H18. Analysts expect more updates on the 3D XPoint DIMMs at the CES (Consumer Electronics Show) in January 2018.

The 3D XPoint DIMMs would have a much higher density than the DDR4 (double-data rate) and perform the function of a memory-mapped device. As the 3D XPoint DIMMs are unlikely to operate as standard DDR4 DIMMs, they would require an updated CPU (central processing unit) and motherboard.

Intel’s Xeon Scalable platform supports DRAM+flash NVDIMM-N modules. Intel might launch a refresh of the Xeon Scalable platform in 2018, when it launches 3D XPoint DIMMs, and Intel expects the 3D XPoint DIMMs to be an $8-billion opportunity by 2021.

http://marketrealist.com/2017/11/memory-partners-intel-micron-become-competitors/

Tuesday, August 29, 2017

Supermicro Accelerates Software-Defined Storage with VMware vSAN Hyper-Converged Solution

LAS VEGAS, Aug. 28, 2017 /PRNewswire/ -- #SuperMicro Computer, Inc. (NASDAQ: SMCI), a global leader in computing, storage, and networking technology and green computing, today introduced its latest fully configured, ready to deploy #softwaredefinedstorage ( #SDS ) solution at #VMworld 2017 in Las Vegas, booth 1113, Mandalay Bay Hotel & Convention Center. "Our new All-Flash #NVMe X11 #BigTwin™ solution is fully ready to deploy, and has undergone stringent validation testing and certification by Intel, VMware and Supermicro," said Charles Liang, President and CEO of Supermicro. "This Intel Select All-Flash vSAN hyper-converged solution accelerates software-defined storage, optimizes data center infrastructure, and ultimately fast-tracks the process of selecting and deploying hardware and software." This Supermicro hyper-converged solution is the result of collaborative efforts with Intel to optimize the performance for workload specific use cases. As part of the Intel Select Solutions program, which is a conglomerate of workload-optimized data center solutions designed to simplify and accelerate the process of selecting and deploying hardware and software, these Supermicro X11 solutions run on Intel® Xeon® Scalable processors. By leveraging Intel Xeon Scalable processors, this BigTwin SDS solution has higher core counts designed to support more virtual machines (VM) per node and system. With up to 3TB memory per node, All-Flash NVMe X11 BigTwin technology is ideal for in-memory database applications. Each node supports six hot-swap NVMe drives to fully maximize performance. Featuring Supermicro's flexible, cost-optimized SIOM networking module, the All-Flash NVMe X11 BigTwin supports a variety of 10G, 25G, 50G and 100G network interface options. The solution's multi-node architecture maximizes power efficiency through resource sharing for greener computing and saves customers on both CAPEX and OPEX to deliver the best TCO. Using #IntelOptane™ #NVMe #SSD s for caching helps this high-performance #SDS solution accelerate storage performance up to 3X with endurance up to 30 drive writes per day (DWPD). These #Supermicro #VMWare solutions based on the #BigTwin offer #vSAN #dataprotection for mission-critical applications.
http://www.prnewswire.com/news-releases/supermicro-accelerates-software-defined-storage-with-vmware-vsan-hyper-converged-solution-300509913.html

Friday, August 11, 2017

News Bits: Excelero, Broadcom, E8, Intel, Microsemi, Attala, Mellanox, NodeSource, AppDynamics, & More

This week’s News Bits we look at a number of small announcements, small in terms of the content not the impact they have. #Excelero ’s #NVMesh is validated on #Broadcom #NetXtreme #BCM57414 NIC. E8’s X24 leverages #Intel #Optane SSDs. #Attala and #Microsemi partner on industry’s first #NVMeF compliant with #DMTF #Redfish and #SNIA #Swordfish. #NodeSource integrates with #AppDynamics. #WekaIO and Intel demo native scale-out NVMe-oF at FMS. Longsys launches world’s smallest SSD at FMS. Cloudistics releases version 3.2. Marvell ships over 50 million 88SS1074 SATA SSD controllers in 18 months. Cavium supports FC-NVMe standard. Excelero’s NVMesh Is Validated On Broadcom NetXtreme BCM57414 NIC

http://www.storagereview.com/news_bits_excelero_broadcom_e8_intel_microsemi_attala_mellanox_nodesource_appdynamics_more

Monday, May 29, 2017

Ingram Micro provides huge opportunity for resellers to upgrade clients

There could not be a better time to upgrade your clients' technology. Ingram Micro has revealed a golden opportunity for New Zealand resellers, centred around Intel’s new 7th Generation Kaby Lake processors, Windows 10 Pro and some amazing PCs. The remarkable new Intel processors from i3 to i7 offer multiple levels of performance for all applications and budgets, while Windows 10 Pro promises to ‘handle everything you throw at it’ with improved security, productivity and intelligent computing to provide the best computing experience on the planet. The evidence is clear — the new and enhanced features from Intel and Windows deliver incredible experiences that a five year old PC simply cannot handle. There are a host of stunning new attributes like #VirtualReality (VR) that are now possible in conjunction with premium graphics and I/O connectivity, and #IngramMicro affirm the highly anticipated #3DXpoint and #Optane Technology will further boost performance gains, not marginally but in leaps and bounds. With the recent spate of recent cyber attacks around the world like #WannaCry ransomware (among others), security is certainly a hot topic at the moment. #Windows10 Pro boasts a security package that is quite simply unmatched. The team at #Microsoft made innovative investments in security to protect businesses from modern security threats. According to The Total Economic Impact Of Microsoft Windows 10 Pro Study by Forrester Research, June 2016, “By implementing Windows 10 Pro, customers are 58% less likely to encounter ransomware than when running Windows 7. Enhanced cloud infrastructure allows our antimalware researchers to utilise machine learning models to identify and block malware more quickly, improving response time from hours to just minutes.” “15% less IT management in resource time” is also noted in the same Forrester study, while The Ageing PC Effect – Exposing Financial Impact For Small Businesses, published by Techaisle LLC notes the decreased security issue of Windows 10 Pro by 33%. So what does this mean for resellers? Ingram Micro says it is an exceptional opportunity to upgrade clients from yesterday’s technology into the future.

https://channellife.co.nz/story/ingram-micro-provides-huge-opportunity-resellers-upgrade-clients/

Wednesday, May 24, 2017

Pushing Intel Optane Potential: RAID Performance Explored

#Intel 's #Optane Memory is finally shipping, but many can't get past the idea of cache in a high-performance computer, or the steep system requirements. Optane Memory delivers SSD-like performance when you pair it with a hard disk drive, and for some tasks, it offers better performance than a low-cost SSD. Still, some users just want the fastest possible storage system, and caching isn't the best option. Today we examine one option that combines three Optane Memory SSDs together in a RAID 0 array to create a large volume for installing an operating system and a few programs. After our initial article, I've read many reader comments about Optane Memory. It's obvious the name alone causes confusion. Optane "Memory" is actually a storage device. It gets confusing when you add in the fact that the Optane product family has two consumer cache devices and an enterprise-focused add-in card SSD, and then the terminology associated with building an Optane Memory (cache) array on your 200-series chipset. I'm confused, and I wrote it. For this article, we're not worried about creating the caching array that preloads the high-speed device with frequently-accessed data. We are simply using three Optane devices together, forgoing the special software, and just muscling through the workloads with brute force. Optane's 3D XPoint (the physical chips) are all muscle. We can summarize the comments in our first Optane article by simply saying the caching product is only slightly faster than a high-performance SSD. That's kind of true, but it's a sandbagged product. The Optane Memory SSD with 32GB and 16GB of capacity uses either one or two channels. I suspect it's a single-channel device, but Intel will neither confirm nor deny the controller specifications. If we go with my theory, this Intel single-channel controller beats your 8-channel NAND-based SSDs easily. Over time, we'll see more of Optane's capabilities, but for now, we should think of it as a whole new class of memory. You may not see it now, but Intel will soon have an advantage in the SSD game. For the last several years, all the SSD companies have played catch up with Samsung. Samsung currently has the most advanced NAND flash, and the advantage is so great that its TLC NAND often outperforms competing MLC NAND. Samsung's 3D NAND is like a college football team playing a high school football team. If that's the analogy, then Intel's Optane Technology is NFL caliber. I think Optane is off to a great start. We should all remember that the early SLC-based prosumer SSDs were slower than a modern SD card when they first came to market. Over time Optane will get faster, larger, and cheaper. What we want is for Intel to mass produce it, make it cheap, and then give us the highest performing devices at an affordable price. If you think that's going to happen soon, then you don't know Intel. Don't look for low-cost consumer Optane-based SSDs anytime soon, but RAID allows you to game the system if you take on a little risk. Modern SSDs use a form of internal RAID to increase performance. A single NAND die is fast, but it takes many working together to reach the high levels of performance we associate with SSDs. Larger capacities increase the likelihood of more parallel transactions (to a limit). This has both positive and negative side effects. Over time, the capacity of the NAND die increased, and the number of physical chips in the SSDs decreased. That's why many modern SSDs are slower than older models with the same capacity. Optane changes the game entirely. Intel hasn't given us an affordable prosumer Optane SSD, yet, so we're going to make one using a combination of hardware and software you may already have.

http://www.tomshardware.com/reviews/intel-optane-raid-report,5060.html

Monday, May 15, 2017

Optane memory: Opening the window on Intel's latest technology

When #Intel originally announced the #3DXPoint architecture based on #Optane memory technology, the vendor talked about "1,000x the performance of flash," an end to write endurance problems with "1,000x flash life," "10x the density of DRAM" and a way to bring a new tier of memory into play that was fast enough to effectively extend DRAM while making it persistent.

http://searchsolidstatestorage.techtarget.com/tip/Optane-memory-Opening-the-window-on-Intels-latest-technology

Sunday, May 14, 2017

HPE is bringing Optane storage to Unix servers

In the next year or two, Hewlett Packard Enterprise ( #HPE ) will add support for #Intel #Optane memory and storage to its latest Unix servers. Optane is a new form of storage and memory that could replace today's SSDs and DRAM. It is significantly faster and denser than both.

One new system that can be configured with Optane is HPE's new Integrity i6 server, which was released this week. Integrity i6 is based on Intel's Itanium 9700 processors, code-named Kittson, and runs the HP-UX OS. The server can also be linked to HP's all-flash 3Par storage arrays, which are due to get Optane support later.

Optane has stringent hardware and OS requirements. The first Optane products were low-capacity storage drives for PC caching and worked only with Intel's Kaby Lake chips and Windows 10.

The first large-capacity Optane drive is the SSD DC P4800X Series, which has a capacity of 375GB and sells for $1,520. Like flash SSDs, it plugs into NVMe slots. Optane drivers for other kinds of configurations should be ready in the coming years, said Jeff Kyle, director of product management for enterprise servers.

Next year, Intel will ship Optane memory DIMMs, which will run on the DRAM bus and be targeted at in-memory applications.

But whether HPE customers adopt Optane immediately is a big question mark, Kyle said.

Customers running mainframe-style mission-critical servers are averse to change and may not immediately adopt Optane, which is still spanking new technology. They may go for conventional NVMe SSDs, which are proven and reliable.

http://www.itworld.com/article/3196591/storage/hpe-is-bringing-optane-storage-to-unix-servers.html

Thursday, May 11, 2017

vSAN Got a 2.5x Performance Increase: Thank You Intel Optane!

March 19th #Intel announced the Intel® #Optane™ SSD DC P4800X—the first flash device built on the much-anticipated #3DXPoint technology. This is exciting news for vSAN customers, since—as a result of Intel and VMware’s active collaboration—we are pleased to offer day 1 support of vSAN 6.5 and ESXi 6.5 with the Intel® Optane™ SSD DC P4800X. This is the first Intel Optane NVMe drive (375GB) to be made available with more coming soon (750GB and 1.5TB). The combination of vSAN and Intel’s Optane technology provides an optimal solution for a digital enterprise looking for the highest performance in all-flash storage and software-defined infrastructure (SDI). Thanks to the agile nature of vSAN and support for the broadest choice of hardware platforms, vSAN customers will be able to immediately take advantage of the performance and reliability benefits of the Optane SSD—no need to wait for the typical hardware refresh cycle of a traditional storage platform. Intel Optane Workshop Last week, Intel and VMware participated in a closed door Intel® Optane™ Technology workshop with leading industry analyst and press experts to share the joint testing we’ve been doing. The response was fantastic and demonstrated the level of excitement around both new flash technologies and software-defined storage, like vSAN.

https://blogs.vmware.com/virtualblocks/2017/03/19/vsan-got-2-5x-performance-increase-thank-intel-optane/

Wednesday, April 19, 2017

Has Intel Invented a Universal Memory Tech?

Today’s computers shuttle data around a byzantine system of several different kinds of short- and long-term memory. No wonder, then, that engineers have long dreamed of one memory technology to rule them all, a universal memory that would simplify computing and streamline the path of data. In March, Intel announced that it will sell to data centers a new kind of solid-state drive, called #Optane, that it says could lead to this kind of simplification. Optane drives are nonvolatile, like #flash memory, which means that they should use relatively little standby power and that they’re fast, like DRAM. “It really starts to marry the worlds of memory and storage together,” company CEO Brian Krzanich says in a promotional video, over the swells of heroic music. The technology “comes close to being the holy grail of memory,” says #Intel executive vice president William Holt in the same video. Whether #3DXPoint, the mystery technology inside #Optane, can live up to this promise is likely to depend on the performance it delivers as well as Intel’s ability to scale up manufacturing using new materials and build out the right market. The 375-gigabyte Optane drive on offer now costs US $1,520, about three times the price of an equivalent solid-state drive. This first product will enable data centers to do more with a smaller number of servers, says James Myers, who works on nonvolatile memory architecture at Intel. Myers gives an example of servers running a MySQL database, which, among other things, apps use to store instant messages. An equivalent flash drive can perform 1,400 such transactions per second; the Optane drive can perform over 16,000. The Optane drive was announced with bombast, but the company is coy about the technology behind it. Myers says “3D” refers to the fact that the memory cells are stacked; “XPoint” alludes to the way the memory elements are arranged. While flash memory elements must be read and written in groups, XPoint elements—situated at the crossing point of interconnects—can be addressed individually. Myers says that this architecture, and something inherent to the storage materials themselves, makes 3D XPoint faster than flash memory. Intel, which initially developed 3D XPoint in conjunction with Micron, won’t say what the technology really is, but this doesn’t seem to bother researchers or analysts. “Everyone seems to think it’s phase-change memory,” says semiconductor analyst Jim Handy. “I don’t care.” What matters to him—and, Intel hopes, its customers—is the performance. The complexity of today’s memory hierarchy—a combination that often includes magnetic disks and flash for storage and DRAM and static RAM for memory—is a necessary evil. Each technology has its own strengths, so they must be combined. Data are shuttled around from speedy but expensive SRAM caches—which are close to the processor and embedded within it—to slower, less expensive (but still pricey) DRAM. Finally, data are stored in slow but reliable flash or hard-disk drives, or both. Even if it’s not possible to do it all in one memory technology, using only one for working memory close to the processor and one for longer-term storage would help simplify things. Intel says that XPoint memory could provide a speedier alternative to flash memory and magnetic hard disks. The company has also suggested it could supplement or supplant DRAM. “DRAM is unique in its ability to waste power, so anything you can do to get rid of it is great,” says Handy. For example, Google is thought to store the index of the entire Internet on several power-hungry, quick-access DRAM servers. If the company could switch this over to 3D XPoint—which Intel claims has 10 times the density of DRAM—Google could use fewer servers and thus save power and money, according to Steven ­Swanson, a computer scientist at the University of California, San Diego. Intel is providing software that will enable computers to operate Optane as memory as opposed to storage, but it will be slow. Optane drive latencies max out at 7 or 8 microseconds—way faster than flash, which takes hundreds of microseconds, but not touching DRAM’s low hundreds of nanoseconds. The Optane drives are fettered by the interface they use: They connect to the storage interface, not the memory interface. In the short term, Intel’s drives are not likely to replace any existing memory technologies but will instead supplement them, says Swanson, who built a research drive based on the company’s 3D XPoint technology in 2011. Swanson expects the path to memory and storage simplification to be complex because computing systems will have to be redesigned to route data in new ways. Swanson and Handy believe Intel started with storage to help smooth out some of the risk in launching a new memory technology. Making Optane a memory requires new circuit board designs and cooperation from programmers. To get those, Intel needs to show that there is a market for 3D XPoint and demonstrate its reliability. Intel says that a product using a memory interface will be out in 2018. Even using the interface, 3DXPoint still won’t be quite as fast as DRAM, but Intel promises that it will be denser and less expensive. The success of this new memory, then, will hinge on data centers taking it up in a less than ideal initial form while the company works on scaling up production. Even though the flaws in today’s memory and storage hierarchy are universally acknowledged, trying to change it is a risky move. “Almost all memory companies have one or two potential competitors to this technology, and they’re all waiting to see what happens before they jump into [a] big investment,” says Swanson. Memory enthusiasts disagree about whether a true universal memory is even physically possible. It is perhaps most useful as a goal to guide the computer industry forward. “The concept of the universal memory is attractive because the idea is to simplify,” says Wei Lu, a computer scientist at the University of Michigan and chief scientist at Crossbar, a resistive RAM startup company. “We have a big-data problem, and today’s computers are fundamentally not good at this.”

http://spectrum.ieee.org/semiconductors/memory/has-intel-invented-a-universal-memory-tech

Sunday, March 19, 2017

Intel’s first Optane SSD: 375GB that you can also use as RAM

#Intel announced today the first #Optane -branded product using its new #3DXPoint memory: the catchily named #IntelOptaneSSD #DCP4800X. It's a 375GB SSD on a PCIe card. Initial limited availability starts today, for $1520, with broad availability in the second half of the year. In the second quarter, a 750GB PCIe model, and a 375GB model in the U.2 form factor will be released, and in the second half of the year, a 1.5TB PCIe card, and 750GB and 1.5TB U.2 stick, are planned. 3D XPoint is a new kind of persistent solid state memory devised by Intel and Micron. Details on how the memory actually works remain scarce—it's generally believed to use some kind of change in resistance to record data—but its performance characteristics and technical capabilities make it appealing for a wide range of applications. When it was first announced in 2015, Intel claimed it would be 1,000 times faster than NAND flash, 10 times denser than DRAM, and 1,000 times better endurance than NAND, though without saying "faster at what" or "what kind of NAND" or anything like that. With the shipping product, these comparisons are now clearer, as one of Intel's slides make clear: 3D XPoint has about one thousandth the latency of NAND flash (or about ten times the latency of DRAM), and tens times the density of DRAM.

https://arstechnica.com/information-technology/2017/03/intels-first-optane-ssd-375gb-that-you-can-also-use-as-ram/

Monday, February 20, 2017

Intel reveals Optane will need a 7th-gen core and a PC-centric launch

The price and precise performance of #Intel 's #Optane storage-class memory still remain officially obscure, but the company has confirmed the PC version of the product will run only on 7th-generation Core i7, i5 and i3 CPUS nestled into certain motherboards. The new details are hiding in plain sight on a new Optane web page that says, among other things, that Optane is not just “a single small factor solid state drive or a memory media.” Which could mean it ships as a DIMM in addition to the M.2 form factor we already know about. We can now also state with some certainty you'll also need a 7th-gen Core CPU nestled within “an Intel 200 series chipset, M.2 type 2280-S1-B-M or 2242-S1-B-M connector on a PCH Remapped PCIe* Controller and Lanes in a x2 or x4 configuration with B-M keys that meet NVMe* Spec 1.1 and System BIOS that supports the Intel Rapid Storage Technology (Intel RST) 15.5 driver.” Another thing we can learn from the new Optane landing page is that Intel is talking about it as a PC accelerator, with nary-a-mention of servers. But the site also omits news of previously-discussed 16GB and 32GB M.2 devices it revealed earlier this year. Here's Intel's list of Optane-capable kit.

https://www.theregister.co.uk/2017/02/20/intel_reveals_optane_will_need_a_7thgen_core_and_a_pccentric_launch/

Saturday, January 28, 2017

Intel shipping Optane memory modules to partners for testing

#Intel announced its first market ready #Optane products at CES 2017, in the form of compact slot-format low capacity ' #cacheSSD s'. These are its first Optane storage solutions. Intel will also be releasing #Optanememory DIMMs to fit DDR4 slots in servers, PCs and so on. In an earnings call a few hours ago, in the wake of its latest financials, Intel's CEO said Optane memory DIMMs had started to ship to partners for testing. While we have seen impressive demonstrations of Optane storage solutions, less is known about the impact that 3D XPoint technology will have when used in place of RAM DIMMs. Intel gave us some insight into its future plans for #3DXPoint memory solutions a couple of years back when we first heard about this new non-volatile memory tech.

http://m.hexus.net/tech/news/ram/101929-intel-shipping-optane-memory-modules-partners-testing/

Wednesday, August 17, 2016

IDF 2016: Intel To Demo Optane XPoint, Announces Optane Testbed for Enterprise Customers

#Optane is #Intel ’s branding of their joint #XPoint venture with #Micron. Intel launched this branding at last year's IDF, and while the base technology is as high as 1000x faster than #NAND flash memory, full solutions wrapped around an NVMe capable controller have shown to sit at roughly a 10x improvement over NAND. That’s still nothing to sneeze at, and XPoint settles nicely into the performance gap seen between NAND and DRAM.
http://www.pcper.com/news/Storage/IDF-2016-Intel-Demo-Optane-XPoint-Announces-Optane-Testbed-Enterprise-Customers