Dell, EMC, Dell Technologies, Cisco,

Showing posts with label 14G. Show all posts
Showing posts with label 14G. Show all posts

Thursday, December 21, 2017

Dell EMC PowerEdge R740xd Server Review

In the spring of 2017, @DellEMC launched the much-anticipated refresh of the #PowerEdge lineup, refreshing the PowerEdge line up to Xeon SP from #Broadwell. The refresh included the new R740 server family, which encompasses the mainstream R740 as well as the "extreme disk" version dubbed the R740xd, which we will be looking at in this review. This powerhouse server supports a wide range of storage options, stretching up to eighteen 3.5" or thirty-two 2.5" disks for incredible capacity, or up to twenty-four 2.5" NVMe SSDs if breakneck storage I/O is more of your forte. Compute and DRAM aren't left in the backseat either, with the R740xd supporting up to dual Intel Xeon Scalable processors with 28 cores each and a peak memory footprint of 3TB max. There are few applications this new server wouldn't excel in, which is exactly the direction Dell EMC took when designing this ever-modular platform.  The PowerEdge R740 servers represent a great middle ground of performance and storage in a 2U box. The server can be configured with up to two Intel Scalable CPUs and 24 DDR4 DIMMs (or 12 NVDIMMs), but where they really shine is in the way they approach storage. While the R740 offers up to 16 storage bays, the xd offers up to 32 2.5” bays, 24 of which can be NVMe. The R740xd also offers some unique storage layouts versus the typical front-loading bays, including mid- and rear-loading bays to fit all the extra storage in the same 2U footprint. The layout also enables users to tailor their storage needs to their application by being able to mix NVMe, SSD and HDD in the same chassis creating storage tiering within the chassis. The R740xd also supports up to 192GB of NVDIMM. The R740xd also has the ability to boot from RAIDed internal M.2 SSDs through an add-on card, freeing up the more front-accessible space for workload storage. Both versions are good for SDS, service providers, and VDI, with total storage and NVMe being the key difference. Also new to the R740/R740xd is the increased support for GPU’s or FPGA’s. Both are capable of support up to 3 300W or 6 150W cards. In this generation Dell EMC engineered the BIOS to automatically register the airflow required by each card and provide individually tailored air flow through a feature called multi-vector cooling. With every refresh of any server line, there are new CPUs, more RAM, and better storage and networking options. What sets many companies apart, though, is the full lifecycle management of the product. Within reason, any server with the same hardware specs will score roughly the same. The difference, though, quickly becomes apparent with the quality of the hardware, the breadth of support software, and how easy the system is to rapidly deploy in a given environment. This is a key area in which Dell EMC sets itself apart from others in the marketplace. Dell EMC gives users key tools such as LifeCycle Controller, iDRAC, OpenManage Mobile and others. We've leveraged many of these tools in our own environment, and time and time again, have walked away impressed with how simple and mature the platform has become over time. The new PowerEdge servers have support for software-defined storage (SDS) built in from the start, lending them to use cases such as hyperconverged infrastructure. In their own enterprise product lineup, Dell EMC leverages the R740 with pre-built and validated solutions such as Ready Nodes for ScaleIO or VSAN, as well as the PowerEdge XC line. The R740xd enables configurations leveraging all external drive bays for the SDS product itself, keeping the boot segment on an internal m.2 SSD. The new Dell EMC PowerEdge R740xd is available now and is highly customizable. For this review we leveraged an individual R740xd with a near top-end configuration, as well as a cluster of 12 R740xds with a more modest configuration. The single R740xd we are using is built with the following: Dual Intel Xeon Platinum 8180 CPUs 384GB of DDR4 2667MHz RAM (32GB x 12) 4 x 400GB SAS SSDs 2 x 1.6TB NVMe SSDs Mellanox ConnectX-4 Lx Dual Port 25GbE DA/SFP rNDC LCD bezel with Quick Sync 2 and OpenManage capabilities iDRAC 9 Enterprise Dell EMC PowerEdge R740xd Server specifications: Form factor: 2U Rackmount Processors: up to 2 Intel Scalable CPUs or up to 28 cores Memory: 24x DDR4 RDIMM, LR-DIMM (3TB max) NVDIMM support: up to 12 or 192GB Drive Bays Front bays: Up to 24 x 2.5” SAS/SSD/NVMe, max 153TB Up to 12 x 3.5” SAS, max 120TB Mid bay: Up to 4 x 3.5” drives, max 40TB Up to 4 x 2.5” SAS/SSD/NVMe, max 25TB Rear bays: Up to 4 x 2.5” max 25TB Up to 2 x 3.5” max 20TB Storage Controllers Internal controllers: PERC H730p, H740p, HBA330, Software RAID (SWRAID) S140 Boot Optimized Storage Subsystem: HWRAID 2 x M.2 SSDs 120GB, 240 GB External PERC (RAID): H840 External HBAs (non-RAID): 12 Gbps SAS HBA Ports Network daughter card options: 4 x 1GE or 2 x 10GE + 2 x 1GE or 4 x 10GE or 2 x 25GE Front ports: VGA, 2 x USB 2.0, dedicated IDRAC Direct Micro-USB Rear ports: VGA, Serial, 2 x USB 3.0, dedicated iDRAC network port Video card: VGA Up to 8 x Gen3 slots, Up to 4 x16 GPU Options: Nvidia Tesla P100, K80, K40, Grid M60, M10, P4, Quadro P4000. AMD S7150, S7150X2 Supported OS Canonical Ubuntu LTS Citrix XenServer Microsoft Windows Server with Hyper-V Red Hat Enterprise Linux SUSE Linux Enterprise Server VMware ESXi Power Titanium 750W, Platinum 495W, 750W, 1100W, 1600W, and 2000W 48VDC 1100W, 380HVDC 1100W, 240HVDC 750W Hot plug power supplies with full redundancy Up to 6 hot plug fans with full-redundancy, high-performance fans available Design and Build The new PowerEdge Servers have been redesigned not only to look slick (which they really do), but to reflect how users and applications interact with them. Across the front is the new bezel that has the Quick Sync support with its wireless OpenManage capabilities. The same design on the new servers is also matched across new Dell EMC storage offerings, including systems such as the Unity 450F all-flash array. Beneath the bezel, there are 24 2.5” bays that support SATA, SAS, Nearline SAS, and NVMe (if configured to do so).  The front can be configured to support 12 3.5” drives as well, if maximum capacity is of higher concern than performance. On the left-hand side are indicator lights for health and ID and the iDRAC Quick Sync 2 wireless activation button. On the right-hand side are the power button, VGA port, iDRAC Direct micro USB port and two USB 2.0 ports. Where others in the market are finding ways to cut costs and remove components in favor of reducing costs, one item Dell EMC has kept as an option for the R740xd and R740 is its front bezel. Some might be saying "Who cares?!" But the little LCD and its three buttons are incredibly useful in a datacenter environment. For instance, in a scenario where you can't access iDRAC remotely, management network settings have changed and you don't want to power cycle the server to go in manually with a crash cart and keyboard, the front bezel comes in very handy. On a Dell EMC server, you can go through the little interface for iDRAC settings, and you are able to switch the management IP back to DHCP from static all through the front panel. Without that functionality still in place, on many systems you'd need to reboot it to change it manually. On the R740xd, this is completely out of band through different controls.  Taking the top cover off shows the inner workings and the massive attention to detail that Dell EMC has put into the new PowerEdge servers. Many of the server components can be swapped out easily if the need arises, and clutter is kept to a minimum to improve airflow. In the system we reviewed, you are able to see the dual-slot m.2 boot SSD card, two RAID cards, as well as two PCIe pass-through adapters for the NVMe slots in front.  Our build also includes the internal dual-slot microSD boot device for hypervisor storage. Not as apparent (but very important) is all of the cooling fan duct work that keeps airflow moving through the system across all hardware, keeping hotspots down to a minimum and allowing the server to minimize excess fan noise. Throughout the course of our testing, we noted (or didn't note) any excess fan noise. Under extreme load with CPUs saturated, fan noise stayed far below other whitebox systems in our lab. Another interesting item we found was how the systems handled airflow at higher ambient air temperatures. In our lab we enjoy using fresh air for cooling servers, so systems in our lab can see a huge range of air temperatures. In situations where the R740xd performed in an environment with high ambient air temperatures, it gracefully increased fan speeds, but still kept noise to a minimum. This is in stark contrast to other servers and hardware in our lab that can be heard through closed doors or which drown out conversations held around them.  In both of our configurations, mid-bay storage options were not configured into the build. We pulled out an example shot from the PowerEdge R740xd technical manual which shows the internal 3.5" bays, as well as the 2.5" drive mounts. Few, if any, other mainstream servers offer this high level of density in a system configuration. While there are unique server builds floating on the market, many are custom built for the application. This makes a world of difference in terms of how unique systems are managed and deployed, as well as who is administering them in the datacenter.  Flipping around to the rear of the R740xd, customers looking for maximum expansion potential should take note. Starting in the upper left-hand corner, there are 3 full-height PCIe expansion slots, and beneath them are a system identification button, an iDRAC dedicated networking port, a serial port, VGA port, and 2 USB 3.0 ports. In the middle are two more full-height PCIe slots, in addition to a half-height slot used for the RAID card on this build. Below those is an rNDC slot which is populated with a dual-port 25Gb Mellanox NIC. On the upper right-hand side are two more full-height PCIe slots above the dual-power supplies. With two full-height PCIe slots to spare, Dell EMC loaded in support for 4 2.5" NVMe SSDs, dual-RAID cards, dual m2. boot SSDs, as well as a dual-port 25Gb Ethernet NIC. The rNDC slot is leveraged for the onboard primary network interface. This can be pre-populated with a number of offerings, ranging from a quad-port 1GbE NIC up to dual-port 25Gb offerings from both Mellanox and Broadcom. None of the options take away from one of the server's available PCIe slots, keeping them completely open for other uses. As we've shown in our rNDC upgrade guide, this bay is easy to upgrade and quite helpful at keeping networking devices out of the main PCIe slots. Management The PowerEdge R740xd offers a wide range of management options, including some traditional, as well as others that fit in the palm of your hand. The R740xd can be deployed by leveraging Dell EMC’s OpenManage Mobile app or locally like previous generation servers. The abilities of OpenManage Mobile can really make a difference, especially when you are setting up several servers in one data center, or you just want to get it finished on the floor without going back and forth to our desk or bringing a crash cart. Leveraging pre-built profiles to rapidly deploy a server with nothing more than a cell phone dramatically speeds up a process that frequently requires a crash cart in a datacenter.  An onboard WiFi radio connects users to the R740xd server, which is clamped down and very secure. You need local and physical access to the server, first to switch on the wireless radio from the front panel of the server, as well as to be able to scan the information tag on the front of the server. Once the network is turned on, you are given access to a private LAN, accessible from your phone or mobile workstation to interface with iDRAC over a mobile app or through a web browser.  This blends in a mix of handheld access for quick status checks or system polling, or more advanced functionality and iKVM work without worrying about connecting any wires or crash carts. The very short range (5 to 10 feet from the server in a datacenter environment) also helps to minimize the chance of anyone hopping onto the system without noticing. When your work is completed, turning off the wireless radio disables any further access.  A welcome addition also built into iDRAC is Group Manager, which allows IT admins to manage a group of R740 servers from within iDRAC itself. In our environment, we have the first R740xd acting as the group leader, requiring just one login to remotely manage multiple servers. From a central point you can get server status, as well as power toggle each server and quickly jump into its local iDRAC interface without having to type in additional login information.  iDRAC has been the heart of Dell management for some time now. Just recently the company announced a slew of enhancements to further improve user experience, as well as the overall functionality of iDRAC. iDRAC9 has added a more powerful processer to quadruple its performance. It now comes with more automation, saving time for IT admins while reducing errors. All BIOS settings can now be adjusted through iDRAC instead of booting to BIOS. The new iDRAC has enhanced storage configurations such as online capacity expansion, RAID level migration, cryptographic physical drive erase, rebuild/cancel rebuild of physical drives, enable revertible hot-spare, and virtual disk renaming.  When we mention that performance within iDRAC has dramatically improved, it's not overstated in the slightest. The new HTML5 interface is much faster in all areas, including initial login and full interaction through the iDRAC WebGUI. Compared to the R730 (which wasn't a slouch when it came out), it's night and day. As far as some of the new features used directly when logging into iDRAC, the management now has a remote view called Connection View. This can give IT admins a look at various aspects of the server right away. Along with this is a new dashboard for remote managing with iDRAC Group manager. For further direct-connected accessibility, there is now a port for iDRAC direct on the front of the server.  Additional features have been brought into iDRAC that allow users to better customize each server for its given application. BIOS level customizations can now be set through iDRAC itself, without requiring a console login. This makes it easier to change a few key settings before the initial deployment, all through a simple web browser or an app on your mobile phone. For deploying a number of servers at a time, users can also build up a server profile file to quickly deploy across multiple servers.  Management of installed hardware also took an interesting path with this latest generation server. Dell made it easier for users to manage PCIe add-on cards, where the server detects the type of card and will automatically adjust the fan speed for proper cooling. Airflow can be further tweaked with a custom LFM fan speed setting per installed device, as well as a master offset adjustment at the server level. Many of the cooling tweaks aren't done to cool installed hardware better than previous generation servers; instead, this is more about *perfectly* cooling hardware with the least amount of airflow required. In many servers, you can set the fans to full speed and not worry about over-heating equipment, but this is at the cost of excess power and noise.  Minimized airflow goes a long way towards reducing power consumption through wasted energy spinning fans needlessly high. At the end of the day, this makes the datacenter more enjoyable without fans buzzing at deafening levels. Performance When comparing the R740xd to the prior generation systems, compute and storage potential have skyrocketed. With Intel Broadwell updates, the top-spec CPU offered in the R730 series (E5-2699v4) offers 96.8GHz in a dual processor configuration. With the Intel Scalable line inside the PowerEdge R740xd, though, the top-end CPU (Platinum 8180) pushes that number to 139.66GHz. At face value, that's a 44% jump, but it doesn't even start to look at improvements in clockspeed at those higher core-counts or DRAM clockspeed improvements. On the storage side, NVMe SSDs have also taken on a bigger role inside the R740xd configurations, with offerings now topping out at 24 NVMe SSDs, where four used to be the peak on the R730xd. As we look at the improvements made on the latest generation Dell EMC PowerEdge server, we will touch on both local performance as well as clustered performance across a group of eight servers leveraging storage from a Dell EMC Unity 450F All-Flash array in a later review. This review layout is geared to help interested buyers see how these servers perform well equipped in single instances, as well as how they interact in a highly virtualized environment within a Dell EMC ecosystem. Bringing together all these systems are Mellanox ConnectX-4 25Gb rNDC NICs as well as Dell EMC Networking Z9100 100G switches. In our section looking at local system performance, we have a well-equipped R740xd which we are testing with two different NVMe combos. One is with two Samsung 1.6TB PM1725a NVMe SSDs, while the second is using four Toshiba 1.6TB PX04P NVMe SSDs. With the Intel Platinum 8180 CPUs inside, we had plenty of CPU cycles to throw at our storage workloads, giving us a chance to show the difference moving from 2 to 4 NVMe SSDs within the same application workload. Additionally, we also push storage to the brink inside an ESXi 6.5 environment with a multiple-worker vdbench test, with multiple workloads geared at simulating basic four corners testing up to VDI traces. Sysbench MySQL Performance Our first local-storage application benchmark consists of a Percona MySQL OLTP database measured via SysBench. This test measures average TPS (Transactions Per Second), average latency, and average 99th percentile latency as well. Each Sysbench VM is configured with three vDisks: one for boot (~92GB), one with the pre-built database (~447GB), and the third for the database under test (270GB). From a system resource perspective, we configured each VM with 16 vCPUs, 60GB of DRAM and leveraged the LSI Logic SAS SCSI controller. Sysbench Testing Configuration (per VM) CentOS 6.3 64-bit Percona XtraDB 5.5.30-rel30.1 Database Tables: 100 Database Size: 10,000,000 Database Threads: 32 RAM Buffer: 24GB Test Length: 3 hours 2 hours preconditioning 32 threads 1 hour 32 threads We compared the performance of two Sysbench runs on the PowerEdge R740xd, one with 4VMs hosted on two NVMe SSDs and another with 4VMs with a dedicated NVMe SSD for each VM. In both of these tests the CPU load wasn't brought to the breaking point of 100%. We saw a split of about 60% and 80% CPU utilization for the two benchmarks, meaning there was still room to grow with additional VMs and more DRAM. The first with 2 NVMe SSDs hosting the Sysbench VMs, aggregate TPS came to 11,027, and the second test with 4 NVMe SSDs the aggregate TPS increased to 13,224. This contrasts to a measurement of 10,683TPS from the PowerEdge R630 we benchmarked about a year ago with E5-2699v4 CPUs and 4 NVMe SSDs as well.  Looking at average latency in our Sysbench workload, the 2 NVMe SSD result came in at 11.61ms, whereas the 4 NVMe SSD result came in at 9.69ms.  In our worst-case 99th percentile latency measurement, 2 NVMe SSDs measured 24.5ms, while 4 NVMe SSDs came in at a very stable 20.7ms.  SQL Server Performance StorageReview’s Microsoft SQL Server OLTP testing protocol employs the current draft of the Transaction Processing Performance Council’s Benchmark C (TPC-C), an online transaction processing benchmark that simulates the activities found in complex application environments. The TPC-C benchmark comes closer than synthetic performance benchmarks to gauging the performance strengths and bottlenecks of storage infrastructure in database environments. Each SQL Server VM is configured with two vDisks: 100GB volume for boot and a 500GB volume for the database and log files. From a system resource perspective, we configured each VM with 16 vCPUs, 64GB of DRAM and leveraged the LSI Logic SAS SCSI controller. While our Sysbench workloads tested previously saturated the platform in both storage I/O and capacity, the SQL test is looking for latency performance. This test uses SQL Server 2014 running on Windows Server 2012 R2 guest VMs, being stressed by Dell's Benchmark Factory for Databases. While our traditional usage of this benchmark has been to test large 3,000-scale databases on local or shared storage, in this iteration we focus on spreading out four 1,500-scale databases evenly across our servers. SQL Server Testing Configuration (per VM) Windows Server 2012 R2 Storage Footprint: 600GB allocated, 500GB used SQL Server 2014 Database Size: 1,500 scale Virtual Client Load: 15,000 RAM Buffer: 48GB Test Length: 3 hours 2.5 hours preconditioning 30 minutes sample period Similar to how we ran our Sysbench benchmark, we tested configurations with 2 NVMe SSDs as well as 4 NVMe SSDs. With 4VMs spread out over 2 drives, we saw aggregate TPS in Benchmark Factory measure 12,631, whereas with 4 NVMe SSDs this measured 12,625. While this is a bit counter intuitive, with our particular configuration of the benchmark, latency measured below shows the real story.  With 2 NVMe SSDs, we saw average latency measure 6.5ms across our four SQL Server workloads, while with 4 NVMe SSDs that number dropped to just 4ms. In both tests performance, using just 20 and 22% of the CPU in the process. The PowerEdge R740xd with dual Intel 8180 CPUs has an immense amount of compute and storage potential to through at these types of database workloads without breaking a sweat.  VDBench Workload Analysis Our last section of local performance testing focuses in on synthetic workload performance. In this area we leveraged four NVMe SSDs in VMware ESXi 6.5, and evenly spread out 16 worker VMs, each with two 125GB vmdks mounted to measure a storage footprint of 4TB. This type of test is useful to show what real-world storage metrics look like with the overhead associated with a virtualized environment. When it comes to benchmarking storage arrays, application testing is best, and synthetic testing comes in second place. While not a perfect representation of actual workloads, synthetic tests do help to baseline storage devices with a repeatability factor that makes it easy to do apples-to-apples comparison between competing solutions. These workloads offer a range of different testing profiles ranging from "four corners" tests, common database transfer size tests, as well as trace captures from different VDI environments. All of these tests leverage the common vdBench workload generator, with a scripting engine to automate and capture results over a large compute testing cluster. This allows us to repeat the same workloads across a wide range of storage devices, including flash arrays and individual storage devices. On the array side, we use our cluster of Dell PowerEdge R730 servers: Profiles: 4K Random Read: 100% Read, 128 threads, 0-120% iorate 4K Random Write: 100% Write, 64 threads, 0-120% iorate 64K Sequential Read: 100% Read, 16 threads, 0-120% iorate 64K Sequential Write: 100% Write, 8 threads, 0-120% iorate Synthetic Database: SQL and Oracle VDI Full Clone and Linked Clone Traces Looking at peak read performance, the Dell EMC PowerEdge R740xd offered sub-millisecond latency 4k read performance up to just over of 800K IOPS, starting at 0.21ms. At its peak, the R740xd measured 978k IOPS at a latency of 3.8ms.  Looking at 4k peak write performance, the R740xd started off with a latency of 0.12ms and stayed below 1ms until it hit around 730K IOPS. At its peak, the R740xd hit over 834K IOPS at 2.4ms  Switching to 64k peak read, the R740xd started off at 0.27ms latency and stayed below 1ms until it hit around 150K IOPS. It peaked just over 170K IOPS with 3ms of latency. The R740xd finished with a bandwidth of 10.644GB/s.  For 64k sequential peak write, the R740xd started off at 0.14ms and stayed under 1ms until it hit just over 65K IOPS. The R740xd hit its peak at 93K IOPS with a latency of 2.7ms. The R740xd also had a bandwidth of 5.83GB/s at its peak.  In our SQL workload, the R740xd started its latency at 0.21ms and stayed under 1ms until it hit between 700K and 750K IOPS. It peaked at 760K IOPS and only 1.29ms.  In the SQL 90-10 benchmark, the R740xd started with a latency of 0.2ms and stayed under 1ms until just under 600K IOPS. The R740xd peaked over 634K IOPS with 1.57ms latency.  The SQL 80-20 saw the R740xd start with a latency of 0.2ms and stay under 1ms until it moved over 481K IOPS. The R740xd peaked nearly at 538K IOPS with 1.7ms latency.  With the Oracle Workload, the R740xd started with a latency of 0.2ms and stayed under 1ms until just over 400K IOPS. The R740xd peaked at 470K IOPS with a latency of 2.5ms.  With the Oracle 90-10, the R740xd started off at a latency of 0.2ms and stayed under 1ms the entire benchmark. It peaked at 636K IOPS with a latency of 0.98ms.  With the Oracle 80-20, the R740xd started off at a latency of 0.2ms and stayed under 1ms until it was just under 529K IOPS. It peaked at 533K IOPS with a latency of 1.14ms.  Switching over to VDI Full Clone, the boot test showed the R740xd starting with a latency of 0.21ms and staying under 1ms until around 490K IOPS. The R740xd peaked at 539K IOPS with a latency of 1.9ms.  The VDI Full Clone initial login started off at 0.17ms latency and stayed under 1ms until around 175K IOPS. The R740xd peaked at 218K IOPS with a latency of 4.1ms.  The VDI Full Clone Monday login started off at 0.2ms latency, staying under 1ms until over 180K IOPS. It peaked at 215K IOPS with 2.36ms.  Moving over to VDI Linked Clone, the boot test showed performance staying under 1ms up to roughly 350k IOPS, and later topping out at a peak of 376k IOPS with an average latency of 1.36ms.  In the Linked Clone VDI profile measuring Initial Login performance, we saw sub-ms latency up till around 130k IOPS, where it further increased to 154k IOPS at 1.64ms at its peak.  In our last profile looking at VDI Linked Clone Monday Login performance, we see the 1ms barrier transition happening at around 109k IOPS, where the workload continued to increase to its peak at 151k IOPS and 3.36ms average latency.  Conclusion The new Dell EMC PowerEdge R740xd is the “extreme disk” version of the R740. Within its 2U footprint it can house up to 32 2.5” drives including up to 24 NVMe drives. This server can help bring out the potential of all that high performance storage by leveraging up to two Intel Scalable processors and up to 3TB of memory. Dell EMC didn’t just stop with hardware improvements. The new server comes with support for SDS built in, making it ideal for use cases that need to leverage HCI. The server is modular and highly configurable to meet nearly all customers’ needs. In our application performance benchmarks, the Dell EMC PowerEdge R740xd was tested with one with 4VMs hosted on two NVMe SSDs and another with 4VMs with a dedicated NVMe SSD for each VM. For Sysbench the 4 NVMe test had a score of 13,224 TPS, 10ms average latency, and 21ms of worst-case scenario latency while the 2 NVMe benchmark had 11,028 TPS, 12ms average latency, and 24ms worst-case scenario latency. For our SQL Server test the 4 NVMe test hit an aggregate TPS score of 12,625 and an aggregate latency of 4ms. The 2 NVMe test produced an aggregate TPS score of 12,631.8 and an aggregate latency of 6.5ms. In our VDBench workload analysis, the R740xd really shined in a virtualized ESXi 6.5 environment. In our 4k random we saw sub millisecond performance in read up to 800,000 IOPS and in write up to 730,000 IOPS. In 64k sequential read the R740xd had sub millisecond latency up to 150,000 IOPS and finished with a bandwidth of 10.644GB/s. For 64k write, the server had sub millisecond performance up to 65,000 IOPS and a bandwidth of 5.83GB/s. In our SQL workload we again saw strong sub millisecond performance (until 700,000 IOPS, 600,000 IOPS, and 481,000 IOPS for workload, 90-10, 80-20 respectively) but what was most impressive was that performance topped out with latency between 1.29ms and 1.7ms with performance well over 500,000 IOPS in each. The Oracle workload also showed strong sub millisecond performance with the 90-10 running the entire benchmark in under 1ms, peaking at 636,000 IOPS. The R740xd peaked at 539,000 IOPS, 218,000 IOPS, and 215,000 IOPS in full clone (with peak latency of 1.9ms, 4.1ms, and 2.36ms). And in our linked clone benchmarks, the server peaked at 376,000 IOPS, 154,000 IOPS, and 151,000 IOPS (with peak latency of 1.36ms, 1.64ms, and 3.36ms). Dell EMC is clearly excited about the launch of the new server line and specifically the R740xd, the centerpiece of the PowerEdge line. We've logged many weeks with the new systems, thirteen of the R740xd's make up the core backbone of our test lab. From the work we've done, the servers have impressed everywhere, from manageability via iDrac and OpenManaage Mobile to performance with the NVMe bays. With all of the additional flexibility the xd flavor of the #R740 offers, it's no surprise that @DellEMC is using is as the lynchpin in several of their SDS offerings including #vSAN #ReadyNodes, #ScaleIO Ready Nodes, #StorageSpacesDirect Ready Nodes, #VxRail and the #XC740xd ( @Nutanix ) for instance. In total, the #PowerEdge R740xd is the most complete server offering we've seen to date in terms of build quality, system design, storage flexibility, performance and ease of management making it a clear leader in the space and our first ever Editor's Choice in the server category.

http://www.storagereview.com/dell_emc_poweredge_r740xd_server_review

Tuesday, September 19, 2017

Dell EMC PowerEdge T640 Tower Server Released

Announced in May and then launched in July, the fourteenth generation ( #14G ) of #DellEMC 's #PowerEdge servers were completely redesigned with a focus on scalability, automation, and integrated security while providing the agility, flexibility, and efficiency companies need through their digital transformations. All of the servers announced were rackmount models aimed at the midrange and up. Recently the company announced yet another 14G PowerEdge server, this time in a tower form factor, the 14G PowerEdge T640.  While a tower form factor makes one think of a PC, the T640 packs the same performance punch one would expect out of any of the PowerEdge line. Its form factor makes it ideal for SMBs and remote offices that are looking for PowerEdge performance but either don’t have or see no need for rack infrastructure. This dual socket server is ideal for virtualization, consolidation, database/business analytics and intelligence, applications and imaging for medical, financing, education, and science, ERP, CRM, HPC, and software-defined technologies. The T640 can bring the performance with up to two Intel Xeon Scalable processors (bring up to 56 cores) up to 3TB of 2666MT/s DDR4 memory, and up to 12 NVDIMMs or 192GB. The T640 also can house up to 180TB of storage or users can configure it with higher performing storage (including up to 8 NVMe SSDs) while still packing in around 112TB. All in all, the T640 can do everything one would expect from the PowerEdge Line in a small tower form factor while still providing plenty of onboard storage. T640 key specifications: CPU: Up to 2 Intel Xeon Scalable (up to 28 cores/CPU) Memory: 24 DDR4 DIMM slots (supporting RDIMMS/LRDIMMS, speeds up to 2666MT/) for a max of 3TB Form Factor: Tower (5U rackmount) Drive bays: Up to 8 or 18 x 3.5” SAS/SATA (HDD/SSD) max 180TB Up to 16 x 2.5” SAS/SATA (HDD/SSD) 61TB max Up to 32 x 2.5” SAS/SATA (HDD/SSD) 122TB max Up to 16 x 2.5 SAS/SATA (HDD/SSD) + 8x NVMe SSD max 112TB Storage Controllers Internal controllers: PERC H730p, H740p, HBA330, H330, Software RAID (SWRAID) S140 External PERC (RAID): H840 External HBAs (non-RAID): 12 Gbps SAS HBA Boot Optimized Storage Subsystem: HWRAID 2 x M.2 SSDs 120GB or 240GB GPU Options 4 x DW or 8 x SW NVIDIA Tesla P100, P40, K80M, M60, M10 AMD S7150, S7150X2 Supported OS Canonical Ubuntu LTS Citrix XenServer Microsoft Windows Server with Hyper-V Red Hat Enterprise Linux SUSE Linux Enterprise Server VMware ESXi Management iDRAC9 with Lifecycle Controller (Express, Enterprise) iDRAC Direct iDRAC REST API with Redfish Quick Sync 2 BLE/wireless module I/O and Ports 2 x 10Gbe LOM 8 x USB (1 x USB 2.0. 1 x USB 3.0, 6 x USB 2.0/3.0), dedicated IDRAC Direct Micro-USB Video card: VGA Up to 8 PCIe Gen 3 slots Power Titanium 750W, Platinum 495W, 750W, 1100W, 1600W, 2000W and 2400W; 48VDC 1100W, 240HVDC 750W Hot plug power supplies with full redundancy Up to 6 hot plugs fans with full redundancy Availability The T640 is expected to be shipping by the end of this month

http://www.storagereview.com/dell_emc_poweredge_t640_tower_server_released

Wednesday, July 26, 2017

Dell EMC PowerEdge R740xd review

#Intel 's Purley platform promises the biggest shakeup in the server world since the ' #Nehalem ' launch over eight years ago and in this exclusive review, we look at the first production server to show off Intel's new Skylake-SP Xeon Processor Scalable family. On review we have #DellEMC 's #PowerEdge #R740xd, which heralds in its #14th Generation PowerEdge series. It showcases a completely new architecture with even more storage options, enhanced system security and a radical revamp in the server management department.

http://www.itpro.co.uk/server/29110/dell-emc-poweredge-r740xd-review

Sunday, July 23, 2017

Redfish server management gets vendors' nod in new server hardware

Customers trying to unite their hybrid IT infrastructures with server management tools get mixed messages from the big server vendors. All major server vendors have touted compatibility with the Redfish server management open standard specification in recent weeks, in the newest versions of their servers -- Hewlett Packard Enterprise ( #HPE ) Gen10, #DellEMC 's #14G and #Cisco Unified Computing System ( #UCS ) M5. But this goodness comes undone as each vendor, unwilling to relinquish management of their systems, continues to favor its own proprietary systems management tools.
http://searchdatacenter.techtarget.com/news/450423155/Redfish-server-management-gets-vendors-nod-in-new-server-hardware

Wednesday, July 19, 2017

CSIRO powers bionic vision research with new Dell EMC PowerEdge Server-based artificial intelligence capability

#DellEMC is announcing it will work with the Commonwealth Scientific and Industrial Research Organization ( #CSIRO ) to build a new large-scale scientific computing system to expand CSIRO's capability in deep learning, a key approach to furthering progress towards artificial intelligence. The new system is named 'Bracewell' after Ronald N. Bracewell, an Australian astronomer and engineer who worked in the CSIRO Radiophysics Laboratory during World War II, and whose work led to fundamental advances in medical imaging. In addition to artificial intelligence, the system provides capability for research in areas as diverse as virtual screening for therapeutic treatments, traffic and logistics optimization, modelling of new material structures and compositions, machine learning for image recognition and pattern analysis. CSIRO requested tenders in November 2016 to build the new system with a $4 million budget, and following Dell EMC's successful proposal, the new system was installed in just five days across May and June 2017. The system is now live and began production in early July 2017. Greater scale and processing power enables richer, more realistic vision solution One of the first research teams to benefit from the new processing power will be Data61's Computer Vision group, led by Associate Professor Nick Barnes. His team develops the software for a bionic vision solution that aims to restore sight for those with profound vision loss, through new computer vision processing that uses large scale image datasets to optimize and learn more effective processing. Bracewell will help the research team scale their software to tackle new and more advanced challenges, and deliver a richer and more robust visual experience for the profoundly vision impaired. "When we conducted our first human trial, participants had to be fully supervised and were mostly limited to the laboratory, but for our next trial we're aiming to get participants out of the lab and into the real world, controlling the whole system themselves," Assoc. Professor Barnes said. With access to this new computing capability, Assoc. Professor Barnes and his team will be able to use much larger data sets to help train the software to recognize and process more images, helping deliver a greater contextual meaning to the recipient. "To make this a reality, we need to build vision processing systems that show accurate visualizations of the world in a broad variety of scenarios. These will enable people to the world through their bionic vision in a way that enables them to safely and effectively interact in challenging visual environments." Assoc. Professor Barnes said. "This new system will provide greater scale and processing power we need to build our computer vision systems by optimization of processing over broader scenarios, represented by much larger sets of images, to help train the software to understand and represent the world. We'll be able to take our computer vision research to the next level, solving problems through leveraging large scale image data that most labs around the world aren't able to." Assoc. Professor Barnes said. Efficient installation speeds time to results The Bracewell system is built on Dell EMC's PowerEdge platform, with partner technology including GPUs for computation and InfiniBand networking, which pieces all the compute nodes together in a low latency and high bandwidth solution faster than traditional networking. Dell EMC ANZ High Performance Computing Lead, Andrew Underwood, said the installation process was streamlined and optimized for deep learning applications, with Bright Cluster Manager technology helping put these frameworks in place faster than ever before. "Our system removes the complexity from the installation, management and use of artificial intelligence frameworks, and has enabled CSIRO to speed up its time to results for scientific outcomes, which will in turn boost Australia's competitiveness in the global economy." Mr. Underwood said. The system includes: 114 x PowerEdge C4130 with NVIDIA® Tesla P100 GPUs, NVLINK™, dual Intel® Xeon® processors and 100Gbps Mellanox® EDR InfiniBand Totaling; 1,634,304 CUDA Compute Cores 3,192 Xeon Compute Cores 29TB RAM 13 x 100Gbps 36p EDR InfiniBand switch fabric Bright Cluster Manager Software 8.0 Doubling the aggregate computational power available to researchers CSIRO Deputy Chief Information Officer, and Head of Scientific Computing, Angus Macoustra, said the system is crucial to the organization's work in identifying and solving emerging science problems. "This is a critical enabler for CSIRO science, engineering and innovation. As a leading global research organization, it's important to sustain our global competitiveness by maintaining the currency and performance of our computing and data infrastructures," Mr. Macoustra said. "The power of this new system is that it allows our researchers to tackle challenging workloads and ultimately enable CSIRO research to solve real-world issues. The system will nearly double the aggregate computational power available to CSIRO researchers, and will help transform the way we do scientific research and development," Mr. Macoustra said. Armughan Ahmad, senior vice president and general manager for Dell EMC Ready Solutions and Alliances said, "Dell EMC continues to be committed to creating technologies that drive human progress. This is particularly true of our high performance computing (HPC) Ready Solutions offerings, which are leveraged by leading research institutions like CSIRO The research performed at CSIRO will change the way we live and work in the future for the better. We're proud to play a part in evolving the work happening at CSIRO and look forward to enabling scientific progress for years to come." The system builds on Dell EMC's varied work in the high-performance computing space, with the Pearcey system installed in 2016 and numerous other systems for Australian universities such as the University of Melbourne 'Spartan', Monash University 'MASSIVE3' and the University of Sydney 'Artemis'.

http://www.prnewswire.com/news-releases/csiro-powers-bionic-vision-research-with-new-dell-emc-poweredge-server-based-artificial-intelligence-capability-300489295.html

Sunday, July 16, 2017

The 7 Most Important Things To Know About Dell EMC's New 14G PowerEdge Servers

Down To The Bedrock The latest generation of the PowerEdge server portfolio that Dell EMC unveiled at the Dell EMC World conference in May has finally hit the market. Most of it, at least. Five of the seven models in the new line become available this week while customers will have to wait until later in the year for two. Dubbed 14G, the fourteenth generation of the venerable PowerEdge line launches in lockstep with the release of Intel's new Xeon Scalable processors. Of course, that means PowerEdge 14G has plenty of competition, including Lenovo's rebranded ThinkSystem server line, which was introduced last month and also relies on Intel's latest processors Dell EMC intends 14G to be "the bedrock of the modern data center," and the portfolio will underpin a wide variety of Dell EMC systems, including the popular VxRail hyper-converged infrastructure offering, which hits the market with a starting price of about $25,000. Clearly, Dell EMC is intent on pushing growth in the server market as it consolidates. Dell EMC was the only major server vendor to show server revenue growth in the first quarter as the worldwide market declined nearly 5 percent, according to research firm IDC. Click through to see the most important aspects of the new PowerEdge 14G line.

The Foundation

#DellEMC shipped more than 465,000 servers in the first quarter, and part of its strategy for growing that number is making PowerEdge the basis for a broad selection of Dell EMC solutions. The new #14G servers will be the foundation of offerings that used the previous generation of #PowerEdge servers, including #VxRail appliances, #VxRack systems, the #Nutanix-based XC hyper-convergence offering, #vSAN ReadyNodes, #ScaleIO ReadyNodes, #IsilionSD Edge and #ElasticCloudStorage. PowerEdge servers will also be available in several new #DellEMC offerings, including the #DataDomain Appliance, #CloudArray, Ready Bundles, Ready Systems Dell EMC Enterprise Hybrid Cloud, Dell EMC Native Hybrid Cloud and Dell EMC Cloud For #MicrosoftAzure Stack.

Traditional To Software-Defined

The new PowerEdge is part of what Dell EMC calls scalable business architecture, a system that allows customers to move from traditional to virtualized to cloud-native workloads in software-defined data centers more easily. The 14G portfolio is optimized for NVMe to help speed the deployment of software-defined data center and hyper-converged infrastructure with faster database and storage performance and faster migration of VMs. The company also says life-cycle management is easier and problems will be resolved nearly twice as fast as in the past through Dell EMC's ProSupport and Support Assist programs.

On Lockdown

Dell EMC counts security as one of the major selling points of its servers, and 14G continues that with cryptographically trusted booting, which includes Intel Boot Guard protection, signed firmware and automatic BIOS recovery, among other features. The PowerEdge portfolio also includes System Lockdown, which helps secure any system configuration from malicious or unintended changes and alerts users to any attempt to make system changes. The new servers also come with System Erase, which allows users to retire or repurpose 14G servers by quickly wiping data from storage devices and embedded memory.

http://m.crn.com/slide-shows/data-center/300088771/the-7-most-important-things-to-know-about-dell-emcs-new-14g-poweredge-servers.htm

Tuesday, July 11, 2017

Dell EMC Sees Intel Scalable Processors Advancing Software-Defined Infrastructure

#DellEMC fulfilled a promise made earlier this year by announcing today it is making available #14G Dell EMC #PowerEdge servers based on the #Intel Xeon Scalable processor series. Brian Payne, senior product planning manager for the Dell PowerEdge Server Portfolio, says the availability of Intel Xeon Scalable processors should significantly accelerate the transition to software-defined infrastructure because of the increased system bandwidth afforded by the NVMe backplane technology Intel developed. While NVMe has been available for some time, the Intel Xeon Scalable Series are the first processors optimized to handle the levels of throughput enabled by NVMe. Specifically, Payne says he expects to see more adoption of both hyperconverged infrastructure ( #HCI ) and #softwaredefinedstorage systems. “HCI and software-defined storage are killer apps for NVMe,” says Payne. Earlier this year, #DellEMC announced that PowerEdge servers would be the foundational component of its #HCI platform based on appliances from #Nutanix, while the company continues to rely on #UCS servers from #Cisco for its #VxRail converged infrastructure platform. Last month, Dell EMC let it be known it is retiring the original #Vblock systems developed by EMC prior to its merger with Dell in favor of a #VxRail series that supports multiple types of network virtualization options on a Cisco UCS platform. Payne says the most significant thing customers need to remember in this brave new world of software-defined infrastructure is that not all applications are created equal. Because of that, IT organizations often need to be able to dynamically make available different classes of resources to different types of applications on the same server. Many IT organizations may simply be getting used to running more applications than ever on fewer physical boxes as the overall density of servers continues to increase. A few short years ago, IT managers were complaining that they were running out of physical space in the data center. Thanks to consolidation a few years later, it’s not uncommon to find plenty of room to spare in a modern enterprise data center environment.

http://mobile.itbusinessedge.com/blogs/it-unmasked/dell-emc-sees-intel-scalable-processors-advancing-software-defined-infrastructure.html

Dell EMC Launches Next Generation of the World's Best-Selling Server Portfolio

Dell EMC is announcing worldwide availability for its next generation of the world's bestselling server3 to help customers of all sizes fuel their IT transformation initiatives. Recently previewed at Dell EMC World 2017, the award-winning design of the new 14th generation Dell EMC PowerEdge server portfolio forms a scalable, automated and secure compute platform for traditional and cloud-native applications, designed for new Intel® Xeon® Scalable processors. "The Dell EMC PowerEdge 14th generation servers improve upon the world's best-selling server portfolio, designed to drive our customers' IT transformations," said Ashley Gorakhpurwalla, president, Server Solutions Division at Dell EMC. "Our modern infrastructure solutions are a game changer in today's digital economy. With our cyber-resilient architecture and performance innovations, we will enable our customers to unleash their business potential." In a recent ESG 2017 IT Transformation Maturity Curve study commissioned by Dell EMC, organizations furthest along in their IT transformation initiatives are seven times more likely to view IT as a competitive differentiator. To achieve this, the priority for many IT transformation initiatives is a modern infrastructure that can securely deliver improved efficiencies while driving innovation that enables new business models. With its scalable business architecture, intelligent automation and integrated security, the new Dell EMC PowerEdge 14th generation server portfolio delivers on these desired benefits. PowerEdge servers, the bedrock of the modern data center, enable customers to push innovation further and faster to achieve their IT transformation goals. The scalable business architecture of Dell EMC PowerEdge servers helps customers efficiently meet their changing business needs with enhanced performance capabilities for traditional, virtualized and cloud-native workloads in a software-defined data center. The new Dell EMC PowerEdge server portfolio, highly optimized for non-volatile memory express (NVMe), helps customers accelerate deployment of software-defined data storage and hyper-converged infrastructure stacks with: Accelerated database performance and lower latency with up to 12 times more database IOPS1 and up to 98 percent less database latency in a VMware vSAN cluster4 Faster and seamless live migration of virtual machines now up to 58 percent faster with up to 75 percent less CPU usage when using 25GbE with Remote Direct Memory Access (RDMA)5 Faster storage performance in compute to maximize application performance with up to six times more NVMe drives, up to five times total flash storage, 30 percent more input/output slots and 25 percent density improvement6 Intelligent automation in Dell EMC PowerEdge servers enable IT professionals to focus on mission-critical tasks that drive greater customer and business value. Specifically, OpenManage Enterprise with a powerful RESTful API offers tools for automating deployment, updates, monitoring and maintenance. The new, more powerful OpenManage Enterprise management console offers users: Easy server lifecycle management from deployment to retirement and repurposing with enhanced Integrated Dell Remote Access Controller (iDRAC9). It gives up to four times more improved performance in user interface and experience and a 30% time reduction to set up iDRAC with QuickSync 22 mobile-based management Up to 90 percent faster PowerEdge server issue resolution using ProSupport Plus and SupportAssist proactive and predictive technology7 Dell EMC believes that integrated security is integral to compute and should not require extra licensing fees. Dell EMC pioneered root of trust within its PowerEdge servers for the past two generations. A robust cyber-resilient architecture enables customers to protect, detect, recover and retire PowerEdge servers via: Cryptographically trusted booting that anchors end-to-end server safety and overall data center security. It includes features like silicon-based root of trust, Intel Boot Guard protection, signed firmware and automatic BIOS recovery and the new OpenManage Enterprise as a virtual console delivers enhanced server safety while offering customers operational flexibility System Lockdown, a capability unique to PowerEdge, helps secure any system configuration from malicious or unintended changes while alerting users to any attempted system changes System Erase, which allows users to easily retire or repurpose their 14th generation PowerEdge servers by securely and quickly wiping data from storage drives and other embedded non-volatile memory In collaboration with Intel, Dell EMC is bringing Intel® Xeon® Scalable processors to Dell EMC PowerEdge14th generation servers. With 27 percent more CPU cores and 50 percent more memory bandwidth6, Dell EMC PowerEdge 14th generation server customers can accelerate performance of business critical applications and workloads. Dell EMC's most advanced line-up of PowerEdge servers includes rack and blade form factors. Dell EMC PowerEdge R640 – Ideal combination for dense scale-out data center computing and storage in a 1U/2-socket platform Dell EMC PowerEdge R740 – Workhorse for demanding environments providing the ideal balance between storage, I/O and application acceleration and with superior configuration flexibility in a 2U/2S platform. R740 enables up to 50 percent more VDI users per server8 and up to 50 percent more GPU accelerator support for Hadoop analytics9 Dell EMC PowerEdge R740XD – This 2U/2S platform is best-in-class storage performance and density for applications like software-defined storage and with the versatility demanded by cloud service providers, Hadoop/Big Data users and co-location hosting Dell EMC PowerEdge R940 – This 3U/ 4S platform handles extremely demanding, mission critical workloads like enterprise resource planning (ERP), e-commerce and very large databases. The PowerEdge R940 can save up to US $600,000 in Oracle Licensing costs10 and performs up to 44% faster in a SAP SD Sybase Environment11 Dell EMC PowerEdge M640 and FC640 – Unparalleled modular serves designed for high performance with best-in-class density for exceptional scalability in a Blade and Modular platform Dell EMC PowerEdge C6420 – Ideal for high performance computing. Maximizes density, scalability and energy efficiency per unit in a 2U/8S Modular platform PowerEdge servers are also the bedrock of Dell EMC solutions. Dell EMC's industry-leading solutions and platforms also will benefit from the power and security of this new generation of PowerEdge servers. The servers will be embedded in storage and data center appliances, hyper-converged appliances and racks, hybrid cloud platforms, ready nodes, bundles and other Dell EMC solutions. These integrations go deeper than simply running software on hardware. With industry-leading hardware and software in its broader enterprise portfolio, Dell EMC is able to allow the software management stack insight into the hardware to optimize performance, as well as deeply test and validate them together. The new servers will be the foundation of #DellEMC solutions that used the previous generation of #PowerEdge such as #VxRail Appliances, #VxRack Systems, #NutanixXC Series, #vSAN ReadyNodes, #ScaleIO Ready Nodes, #IsilonSD Edge and #ECS (Elastic Cloud Storage). Additionally, it will be available in many new Dell EMC solutions and platforms, including #DataDomain Appliance, #CloudArray, #ReadyBundles, Ready Systems, Dell EMC Enterprise Hybrid Cloud, Dell EMC Native Hybrid Cloud and Dell EMC Cloud for #Microsoft #AzureStack. Availability Dell EMC PowerEdge R940, R740, R740xd, R640, and C6420 are now available worldwide. Dell EMC PowerEdge FC640 and M640 will be available later in 2017. Dell EMC solutions based on new PowerEdge servers will become available worldwide throughout the second half of 2017.

http://www.prnewswire.com/news-releases/dell-emc-launches-next-generation-of-the-worlds-best-selling-server-portfolio-300486257.html

Cavium FastLinQ® Ethernet Enables Universal RDMA for Dell EMC 14th Generation PowerEdge Servers

SAN JOSE, Calif., July 11, 2017 /PRNewswire/ -- Today, #Cavium, Inc. (NASDAQ: CAVM), a leading provider of semiconductor products that enable secure and intelligent processing for enterprise and cloud data centers, announced the new #FastLinQ® #QL41000 Series of 10/25GbE Ethernet NICs, which are supported on #DellEMC #14G #PowerEdge servers. The FastLinQ QL41000 Series are the industry's only NIC solution that gives customers the technology choice and investment protection with support for concurrent RoCE, RoCEv2 and iWARP. The FastLinQ adapters coupled with new generation PowerEdge servers enable administrators to optimize their infrastructure costs and increase virtual machine density by leveraging built-in technologies like SR-IOV and Network Partitioning (NPAR) that deliver acceleration and quality of service (QoS) for workloads and infrastructure traffic. Additionally, the FastLinQ adapters provide full network function virtualization (NFV) with excellent small packet performance and integration with DPDK and OpenStack, enabling telcos and NFV application customers to seamlessly deploy, manage and accelerate the most demanding NFV workloads. "Enterprise and cloud data centers have differing requirements driven by infrastructure and applications for latency and congestion management, so flexibility of the networking solution is key, said Bob Wheeler, principal analyst at The Linley Group. Cavium FastLinQ 41000 Series family with Universal RDMA effectively addresses these challenges while delivering a flexible and future proof networking solution. "Cavium FastLinQ 10GbE/25GbE Ethernet NICs, with Universal RDMA are designed to accelerate access to networking and storage while offloading server CPU," said Rajneesh Gaur, vice president and general manager, Ethernet Adapter Group, at Cavium. "The introduction of Universal RDMA in Dell's flagship 14G server is a major milestone and provides customers with an innovative solution delivering flexibility in choice of RDMA and cost savings for next generation private, hybrid and telco cloud data centers." "Dell EMC 14th generation PowerEdge Servers are delivering a scalable, automated and secure architecture for any workload, from traditional to cloud-native applications and converged platforms," said Brian Payne, vice president product management and marketing, server solutions division, Dell EMC. "With the unique Universal RDMA capabilities in the FastLinQ QL41000 Series Ethernet NICs in the new PowerEdge servers, customers can transform their infrastructure for modern workloads and cloud initiatives by increasing performance while optimizing infrastructure costs." Purpose built to accelerate and simplify data center networking, Cavium FastLinQ Ethernet technology in Dell PowerEdge servers delivers: Universal RDMA – Industry's only network adapter that offers customers a choice of RDMA technology and investment protection with concurrent support for RoCE, RoCEv2 and iWARP. Network Virtualization Offloads – Acceleration for network virtualization by offloading protocol processing for VxLAN, NVGRE, GRE and GENEVE, enabling customers to build and scale virtualized networks without impacting network performance. Server Virtualization – Optimizes infrastructure costs and increase virtual machine density by leveraging built-in technologies like SR-IOV and NIC Partitioning (NPAR) that deliver acceleration and QoS for workloads and infrastructure traffic. Network Function Virtualization (NFV) – Enables telco and NFV application vendors to seamlessly deploy, manage and accelerate the most demanding NFV workloads by delivering leading small packet performance and integration with DPDK and OpenStack. Storage Acceleration: Full protocol offload for iSCSI and FCoE delivers up to 3M IOPS while consuming the fewest server CPU cycles, leaving headroom for virtual applications and enabling higher ROI on server investments. Availability The new FastLinQ 41000 Series 10/25Gbps Ethernet adapters are now available from Dell EMC.

http://www.prnewswire.com/news-releases/cavium-fastlinq-ethernet-enables-universal-rdma-for-dell-emc-14th-generation-poweredge-servers-300485708.html

Sunday, June 4, 2017

The hyper-converged tech behind Dell EMC’s new 14G PowerEdge

#DellEMC launched the latest generation of its #PowerEdge server portfolio at Dell EMC World in Las Vegas, Nevada. The 14th-generation server brings together better compute, scalability and security, answering enterprise client requests for better automation and productivity with simplified lifecycle management, according to Yanbing Li (pictured), senior vice president and general manager of storage and availability at #VMware Inc. “We are very excited to work with Dell very closely on the #14G development and launch it. We are really looking for ‘better together’ opportunities,” Li said. “Coming from my business unit, storage and availability, we are [using] hyper-converged infrastructure solutions on top of the 14G server.” Li spoke with Rebecca Knight (@knightrm) and Paul Gillin (@pgillin), co-hosts of theCUBE, SiliconANGLE Media’s mobile live streaming studio, during Dell EMC World about the technology capabilities that VMware is developing in conjunction with Dell Technologies Inc. She shared information about how the company’s focus is on customer requirements. (*Disclosure below.) Customers are influencing technology Leading the storage and availability business unit at VMware, Li is excited about the 14G technology and how it will enhance her work with Hosted Desktop Infrastructure. She believes that this translates to better storage performance and capacity for vSAN, VMware’s software-defined data center product offering. “We [the engineering teams] have been working very closely behind the scenes … aiming to make our solutions available, vSAN software ready for 14G on day zero. We’re really taking advantage of the hardware innovation from the very beginning [until] they are available to our customers,” Li said. VMware recently launched the 6th generation of its flagship product in the storage and availability line, vSAN. The company is on the 6th generation within three years because it is continually improving capabilities and is driven by customers’ demands, Li noted. “[They] have asked us for better performance, better TCO, better security, better operation simplicity. In all these things we’re responding … all our customers are asking us to better improve their experience,” she said. vSAN software powers VMware’s hyper-converged infrastructure solution, and according to Li, VMware’s chief executive officer Pat Gelsinger predicts that most companies will be moving to a hyper-converged infrastructure. Hyper-converged is not just compute and storage; it is also layered on a software-defined network, Li explained. Part of Gelsinger’s prediction also included a fully automated management suite to run an end-to-end software-defined data center solution that continuously extends across VMware’s cross-cloud architecture. Going back to the customer, Li spoke about the market demand for a fully-integrated set of services, highlighting that it is too difficult for the average enterprise to adopt services at a point product level. “Our new products suite called VMware Cloud Foundation is an integrated software stack, a turnkey stack, with full lifecycle management work for an on-premise environment, as well as extending into the cloud,” Li stated. In other efforts at the company, Li discussed the mission to create a more inclusive environment. She is part of VMinclusion, which is what she refers to as a business service approach to creating a more inclusive workplace environment. “I’m just dying to see a more diverse crowd at events like this. Clearly, we still have a lot of work to do, but I’m excited to see quite a few of female speakers on the main stage,” she said.

https://siliconangle.com/blog/2017/06/01/the-hyper-converged-tech-behind-dell-emcs-new-14g-poweredge-dellemcworld/