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HP0-M101 - HP Application Lifecycle Management 12.x Software - Dump Information

Vendor : HP
Exam Code : HP0-M101
Exam Name : HP Application Lifecycle Management 12.x Software
Questions and Answers : 75 Q & A
Updated On : April 23, 2019
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HP0-M101 Questions and Answers

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HP0-M101 HP Application Lifecycle Management 12.x Software

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HP0-M101 exam Dumps Source : HP Application Lifecycle Management 12.x Software

Test Code : HP0-M101
Test Name : HP Application Lifecycle Management 12.x Software
Vendor Name : HP
Q&A : 75 Real Questions

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HP HP Application Lifecycle Management

AccuRev releases AccuSync for HP utility Lifecycle administration | Real Questions and Pass4sure dumps

AccuRev, a leading company of software lifecycle administration application options, today introduced AccuSync for HP utility Lifecycle manager (ALM) to empower application builders and engineers to unexpectedly leverage AccuRev’s utility construction architecture, together with continuous integration and start capabilities, within existing HP ALM workflows. AccuSync for HP ALM will help agencies increase agility, reliability and exceptional of their distributed and parallel utility development environments. With better collaboration capabilities, AccuSync for HP ALM provides agencies with a superior and functional answer, notably for huge, geographically dispensed groups. developers, liberate engineers and engineering managers will increase productiveness with a robust workflow for managing source code adjustments from the combination capabilities in AccuSync for HP ALM as well as AccuRev Streams and change packages. AccuSync for HP ALM offers a bi-directional integration which allows transparency between necessities, stories, and concerns originating in HP ALM or AccuRev, providing full traceability right through the coding, testing, liberate, and start approaches. With AccuSync for HP ALM, organizations will:• benefit finished requirement, consumer story, and subject traceability• be aware of the instant repute and development of each and every person story, generation, and sprint• View all building code changes effecting liberate and birth of latest considerations• tune the historical past of alterations impacting development, build, integration, and release “AccuSync for HP ALM helps power construction companies’ continual integration and birth approach with a completely built-in situation tracking solution,” pointed out Peter Shields, president and CEO of AccuRev.  “AccuSync for HP ALM information, tracks, and displays AccuRev change package activity from inside HP first-class core, providing a totally auditable historical past of considerations inside HP great core and AccuRev – enabling full transactional traceability.” AccuSync supports HP ALM eleven and HP first-rate center 9.x and 10.x.

world software Lifecycle administration application Market to deliver popular increase and spectacular alternatives all through 2019-2028 | Real Questions and Pass4sure dumps

Apr 12, 2019 (WiredRelease by the use of COMTEX) -- unlock a brand new market analysis record on “global application Lifecycle administration Market via category (On premise, and Hosted), via software (Aerospace and defense, customer items and Retail, and Others), by using area and Key corporations – business phase Outlook, Market assessment, competition scenario, developments and Forecast 2019-2028” to its considerable document on-line store. The document highlights widely wide-spread performers from the finished and income-making utility lifecycle administration utility market together with their contribution to the market to peer their evolution at intervals the liable time.

international software Lifecycle administration software Market 2019 file has been replete with analysis from the research on questions which boundary on pathways, atmosphere improvements, efficiency status, international market dimension, and tendency. These are all of the figuring out that the situation is at present 2019 offshoots. It also helps with the path for a utility lifecycle administration software corporation and discernment of this contest situation from the market. To have a better comprehension of the way in due to the fact this may aid application lifecycle management utility buyers and manufacturers equally.

through category, the market is segmented into Single feature, distinct services. by means of software, the market is divided into IT and Telecom, Aerospace and defense, energy and Utilities. according to geography, a market is analyzed across North the usa, Europe, Asia-Pacific, Latin the usa and the core East and Africa. predominant avid gamers profiled within the document include HP, Atlassian, Techexcel, IBM, Microsoft, Rocket application, Enalean.

Request For The sample document right here (Use corporate e-mail address simplest) before procuring file:

This record covers the finished analysis of inclinations involving key global software lifecycle administration software market drivers and restraints affecting. The overview additionally includes one more section highlighting the application lifecycle administration utility developments. The examine maps and profiles main gamers from the global application lifecycle administration utility market along with their trade plans and improvements within the enterprise. additionally, the reporting panorama of those application lifecycle administration utility agencies highlighting their demand.

the key look of this analysis contain:

1. utility Lifecycle administration software Market Snap Shot.

2. styles of utility Lifecycle administration software financial system.

three. Market Overview: Market drivers, restraints and utility lifecycle management application trends evaluation.

four. analysis of the key players working.

5. Market dimensions divide into each sub-geographies and geographies.

6. move-sectional international application lifecycle management software market measurement for a lot of sections each sub-geography.

7. international utility lifecycle management application market share annually 2019 the use of 2018 as the foundation yr.

8. Forecast Interval: 2019 into 2028.

After taking a good looking study this certain software lifecycle management software report, dependent on the varieties, it is clear that the document suggests the pace of production charge, cost, salary, and software lifecycle administration utility market share apart from their development and accent is put by the utility of the items, apart from on the shoppers. software Lifecycle management application file which has no longer shied away from accepting a greater appear at present reputation and application lifecycle administration software future prognosis for those consumption/income of the objects, via purposes and the conclusion users. possibly not denying that the application lifecycle administration software trade share enhance and growth cost of distinctive forms.

by way of Product forms:

Single functionMultiple functions

via purposes/end buyers:

IT and TelecomAerospace and DefenseEnergy and Utilities

gamers blanketed:

HPAtlassianTechexcelIBMMicrosoftRocket SoftwareEnalean

Regional prognosis:

the most gigantic areas coated from the money owed of global utility lifecycle management utility market are Europe, Asia-Pacific, North america, Latin the us and the center East and Africa. united states software lifecycle management application file forecast to control the global financial system through the estimates (2019-2028). Even the Asia-Pacific regions like India and China are set to bring in regards to the raise of the international software lifecycle management application market in future.

essential factors Strung in global software Lifecycle management application Market file

* riding and retentive facets of software lifecycle administration utility company.

* consciousness of rising software lifecycle management software market avid gamers using sturdy product particulars.

* obvious comprehension of this application lifecycle management software market inspired boom, limitations, alternatives, usefulness analysis.

* Identification of becoming application lifecycle management application market segments moreover an entire analysis of latest market sections.

* past, current and estimated software lifecycle administration software market dimension and velocity in forecast years.

* good value counter application lifecycle management application options and options to respect the aggressive benefits.

* Technological software lifecycle administration application innovations and investigation for ever-altering aggressive dynamics.

some of the most important Highlights of TOC Covers:

1. software Lifecycle administration utility Market Introduction

1.1. Definition

1.2. Taxonomy

1.3. analysis Scope

2. govt abstract

2.1. Key Findings by way of predominant Segments

2.2. suitable thoughts through primary gamers

3. international application Lifecycle administration utility Market Overview

three.1. software Lifecycle administration application Market Dynamics

three.1.1. Drivers

three.1.2. opportunities

three.1.3. Restraints

three.1.4. Challenges

three.2. PESTLE analysis

three.3. probability Map evaluation

3.4. PORTER’S five Forces evaluation

three.5. Market competitors situation analysis

three.6. Product life Cycle analysis

three.7. opportunity Orbits

3.eight. brand intensity Map

4. world application Lifecycle management application Market value (US$ Mn), Share (%), and boom price (%) evaluation by Product type, 2012-2028

4.1. world software Lifecycle administration software Market analysis by Product class: Introduction

four.2. Market size and Forecast by using area

5. world software Lifecycle management software Market value (US$ Mn), Share (%), and growth price (%) evaluation by means of application , 2012-2028

5.1. world application Lifecycle management utility Market evaluation via software : Introduction

5.2. Market measurement and Forecast by using region

6. world software Lifecycle administration utility Market cost (US$ Mn), Share (%), and boom price (%) assessment through place, 2012-2028

6.1. North the usa

6.1.1. North the united states application Lifecycle administration software Market: Regional vogue evaluation US Canada

6.1.1.three. Mexico

6.2. Europe

6.2.1. Europe application Lifecycle management software Market: Regional style analysis Germany France UK Russia Italy rest of Europe

6.three. Asia-Pacific

6.3.1. Asia-Pacific application Lifecycle administration utility Market: Regional fashion evaluation

6.three.1.1. China Japan Korea

6.3.1.four. India

6.three.1.5. leisure of Asia

6.4. Latin the us

6.four.1. Latin america application Lifecycle administration utility Market: Regional style analysis Brazil

6.four.1.2. Argentina leisure of Latin america

6.5. core East and Africa

6.5.1. center East and Africa software Lifecycle administration software Market: Regional style analysis GCC South Africa

6.5.1.three. Israel rest of MEA

7. global utility Lifecycle administration utility Market aggressive panorama, Market Share evaluation, and business Profiles

7.1. Market Share evaluation

7.2. business Profiles (HP, Atlassian, Techexcel, IBM, Microsoft, Rocket utility, Enalean)

7.2.1. company Overview

7.2.2. financial Highlights

7.2.3. Product Portfolio

7.2.4. SWOT evaluation

7.2.5. Key ideas and traits

eight. Assumptions and Acronyms

9. research Methodology

10. Contact

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HP Lifts application Lifecycle administration into the Cloud | Real Questions and Pass4sure dumps

There’s little question that due to agile building methodologies IT agencies are churning out greater code than ever. The issue they now face is figuring out the way to sustain with all that code from a administration viewpoint.

most of the present application lifecycle management (ALM) frameworks that IT businesses have in vicinity were designed to aid extra traditional Waterfall techniques to utility construction, during which utility code is released on ordinary a couple of times a yr. Agile construction commonly results in new code being shipped every month, and in some circumstances multiple times a week.

To aid IT corporations make that transition, Hewlett-Packard today released software-as-a-service (SaaS) implementations of a new ALM platform alongside a set of equipment for analyzing utility efficiency.


HP is not the primary supplier to make these types of tools purchasable as a provider. however as a massive participant within the ALM area, the liberate of these HP tools represents a major shift in terms of how ALM is being delivered across the enterprise.

in line with Subbu Iyer, vice president of items and method for purposes automation and management in HP software, HP Agile manager offers end-to-conclusion visibility throughout the ALM manner for as little as $39 per consumer monthly. Iyer says HP developed this offering with the particular goal of making it so purchasable that no practising is required to make use of it. HP Agile supervisor helps assorted built-in building environments whereas also presenting a collection of analytics, planning and skill administration equipment to help determine bottleneck concerns throughout the construction procedure.

HP performance anyplace, in the meantime, not only identifies the source of efficiency issues, nevertheless it includes collaboration equipment that make it easier for IT operations group of workers to share guidance about those concerns.

As adoption of agile building methodologies continues to grow, IT businesses are clearly being challenged to locate new methods of managing application development. For the most part, trying to undertake latest Waterfall-primarily based tactics comfortably received’t work. What’s in fact required is a brand new approach of brooding about managing utility building projects it truly is as agile as the procedure itself.

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IBM Introduces X6 Architecture, Optimizes x86-Based Servers for Cloud, Analytics | real questions and Pass4sure dumps

ARMONK, N.Y., Jan. 16, 2014 /PRNewswire/ -- IBM (NYSE: IBM) today announced the sixth generation of its enterprise X-Architecture for System x and PureSystems servers, providing industry-leading improvements in the performance and economics of x86-based systems for analytics and cloud.

"Our enterprise X-Architecture for x86-based servers and solutions delivers high performance and the highest customer satisfaction in the industry, making us number one in high-end x86 systems," said Adalio Sanchez, general manager for IBM x-86 and PureSystems Solutions. "We continue to innovate and deliver leadership performance, reliability and investment protection for mission-critical workloads with X6."

Clients are rapidly adopting analytics for greater business insight and moving critical workloads like ERP, analytics and database to the cloud for increased efficiency and lower costs, and x86-based systems are the first choice for many. The X6 architecture represents IBM's continuing R&D investment and industry leadership in x86-based systems, and is specifically designed to provide new levels of performance and resiliency for enterprise applications. For memory-hungry applications, X6 delivers three times the scalable memory of current competitors' and IBM x86-based systems to support cloud and analytics. [1]

The X6 architecture is:

  • Fast, with integrated eXFlash memory-channel storage -- an industry first, this DIMM-based storage provides up to 12.8 terabytes of ultrafast flash storage close to the processor, increasing application performance by providing the lowest system write latency available, essential for analytics applications. X6 can provide significantly lower latency for database operations, which can lower licensing costs and reduce storage costs by reducing or eliminating the need for external SAN/NAS storage units; [2]
  • Agile, with a modular, scalable design that supports multiple generations of CPUs -- another industry first -- and can reduce acquisition costs, up to 28 percent in comparison to one competitive offering. [3] X6 provides stability and flexibility through forthcoming technology developments, allowing users to scale up now and upgrade efficiently in the future. Fast set-up and configuration patterns simplify deployment and life-cycle management;
  • Resilient, with features that can help extend cloud delivery models to mission-critical applications. Memory and storage increase virtual machine capacity to allow SaaS delivery of applications. Autonomous self-healing CPU and memory systems maximize application uptime by proactively identifying potential failures and taking action to correct them. In addition, Upward Integration Modules can help reduce the cost and complexity of system administration by allowing operators to perform management tasks through virtualization tools.
  • Server models supported by this new architecture currently include the System x3850 X6 four-socket system, System x3950 X6 eight-socket system, and the IBM Flex System x880 scalable compute nodes. IBM also is introducing the System x3650 M4 BD storage server, a two-socket rack server supporting up to 14 drives delivering up to 56 terabytes of high-density storage -- the largest available in the industry. It provides 46 percent greater performance than previous comparable IBM System x servers and is ideally suited for distributed scale-out of big data workloads. [4]

    New Solutions for X6 Clients moving enterprise applications to cloud models and adopting analytics for quick business insights require integrated solutions for fast deployment, efficiency and performance. To help clients achieve these results, IBM is announcing new solutions for its X6 architecture for analytics, database and cloud deployment, including IBM System x Solution for DB2 with BLU Acceleration on X6 for accelerating analytics, IBM System x Solution for SAP HANA on X6 for analytics, and System x Solution for VMware vCloud Suite on X6 for infrastructure-as-a-service capabilities.

    New Storage for cloud, analytics IBM has announced the general availability of the new IBM FlashSystem 840. The new system provides nearly double the bandwidth and double the performance -- 1.1M IOPS -- of its predecessor, the FlashSystem 820 -- making it ideally suited for analytical databases, virtualization infrastructures, and public and private clouds. [5] Supporting up to 48 terabytes of usable capacity in a 2U unit, the all-Flash array also features IBM MicroLatency technology that significantly speeds data access times from milliseconds to microseconds (less than 135 microseconds) giving organizations faster actionable insights from real-time data analytics. In addition, a new management GUI - as well as datacenter-optimized features such as hot-swap components and concurrent code load - enable fast installation and easy management.

    IBM also is introducing the FlashSystem Enterprise Performance Solution, which bundles the FlashSystem 840 and IBM System Storage SAN Volume Controller (SVC) technology. The solution includes a suite of advanced data management features ranging from Real-time Compression, snapshots, thin provisioning, VAAI, and application aware copies, to FlashCopy, and storage virtualization with IBM Easy Tier.

    New SDE capabilities for cloud IBM is strengthening its software defined environment (SDE) portfolio with the introduction of IBM Platform Resource Scheduler for private and hybrid IBM SmartCloud clients who want to accelerate time-to-results, improve infrastructure flexibility and reduce operating costs. IBM Platform Resource Scheduler provides a fully virtualized, open and programmable architecture that ensures enterprises are taking advantage of all available IT resources -- from application software licenses to available network bandwidth.

    Integrated with OpenStack, this dynamic resource management tool provides a comprehensive set of intelligent, policy-driven scheduling features that automatically allocate the right resources to the right job, balances workload demand with infrastructure supply and ensures adherence to service level agreements, improving overall application performance and efficiency. The open and extensible architecture also allows enterprises to easily reconfigure and add customized policies to meet their specific sharing and scheduling needs.

    Financing for cloud and analytics IBM Global Financing has announced new financing offerings today to help clients quickly adopt new cloud and analytics solutions by helping reduce upfront costs and speed return on investment. Credit-qualified clients can obtain Fair Market Value leasing when acquiring X6 architecture solutions. Other offerings announced include 0-percent financing and deferred payments for 90 days when they acquire IBM PureSystems, SDE and Storage technology.

    Also, IBM's new mobile financing application can help IBM Business Partners close more business with their clients, allowing credit-qualified clients to acquire financing to deploy solutions for analytics, mobile computing, social business and Smarter Planet technologies quickly.

    IBM Systems and Technology Group offers a full range of offerings supporting public, private and hybrid cloud implementations that integrate with IBM's cloud software and services. This Systems portfolio includes IBM System x racks and BladeCenter, NeXtScale, PureFlex, Power Systems and System z servers, and IBM Storage solutions. For more information on IBM Global Financing, please go here.

    Images supporting today's announcements can be found at this link.

    IBM, the IBM logo,, PureSystems, PureFlex, Power Systems, System x, PureApplication, PureData, Storwize, Smarter Planet and the planet icon are trademarks of International Business Machines Corporation, registered in many jurisdictions worldwide. Other product and service names might be trademarks of IBM or other companies. For a current list of IBM trademarks, please see

    All other company, product or service names may be trademarks or registered trademarks of others. Statements concerning IBM's future development plans and schedules are made for planning purposes only, and are subject to change or withdrawal without notice. Reseller prices may vary.

    [1] Triple the memory capacity (Up to 6TB in 4S system; up to 12TB in 8S system) and support up to 24 DDR3 DIMMs per socket and up to 64GB LRDIMM density, based on published Intel specifications, compared with x86 competitors with offerings based on Intel's current processors.

    [2] 5-10 microseconds write latency for eXFlash DIMMs in preliminary testing vs. 15-19 microseconds latency for PCIe-based flash storage from Fusion IO, Micron, and Virident, and 65 microseconds latency for Intel S3500 and S3700 SSDs. (Pending final IBM performance testing.)

    Using internal eXFlash storage reduces or eliminates the need for external SAN/NAS storage. Less SAN hardware means fewer software licenses.

    [3] 28 percent acquisition cost savings based on pricing of x3850 X6 at announcement on 2/18 vs. current pricing of a comparable x86 based system that includes 2 x Intel Xeon E7-4820 (v1) processors, 1TB of memory (16GB RDIMMs) 3.6TB of HDD storage, and Dual Port 10GBe SFP+ controller. x3850 X6 includes 2 Compute Books, 2 x Intel Xeon E7 processors, 1TB of memory (16GB RDIMMs), 3.6TB of HDD storage, and Dual Port 10GBe SFP+ controller.

    [4] Compared to HP two-socket servers supporting a maximum of 48 TB storage with 12 x 3.5" drives, and Dell two-socket servers supporting a maximum of 51.2 TB storage with 12 x 3.5" and 2 x 2.5" drives.

    46-percent figure based on Intel Internal Test Report #1310, using SPECjbb*2013 benchmark, July 2013.

    [5] The performance data discussed herein is presented as derived under specific operating conditions by IBM. Actual results may vary.


    Copyright (C) 2014 PR Newswire. All rights reserved

    Canon U.S.A. introduces new imageRUNNER ADVANCE Series | real questions and Pass4sure dumps

    Wednesday, September 23, 2009

    Press release from the issuing company

    LAS VEGAS--Opening the door to a new era of advanced image quality, workflow simplicity and efficiency in the workplace, Canon U.S.A., Inc., a leader in digital document imaging, today launched the imageRUNNER ADVANCE Series, a new document service platform that blends hardware, software and services to help advance modern business environments.

    Building upon the Company’s long heritage of its award-winning imageRUNNER product line, the new imageRUNNER ADVANCE Series will help seamlessly bridge the distance between user and multifunction printer (MFP) to transform and advance one’s business and digital communications. Incorporating sophisticated workflows and innovative technologies, the Canon imageRUNNER ADVANCE Series is designed to address the ever-growing needs of users, administrators and business decision makers to better manage and customize workflows, while accomplishing more tasks in less time and achieving higher levels of quality.

    The new Canon imageRUNNER ADVANCE Series will include:    * imageRUNNER ADVANCE C9075 PRO/C9065 PRO1 – Rounding out Canon’s digital color solutions portfolio, the imageRUNNER ADVANCE C9075 PRO will produce letter-sized output at up to 75 pages-per-minute (ppm) in black-and-white and 70 ppm in color, while the imageRUNNER ADVANCE C9065 PRO will operate at up to 65 ppm in both black-and-white and color. These models help address the growing digital document imaging needs of a vast array of light production users, including Central Reprographics Departments (CRDs), small copy centers and quick print shops.    * imageRUNNER ADVANCE C7065/C7055 – Producing letter-sized output at 65 ppm for black-and-white and 60 ppm for color on the imageRUNNER ADVANCE C7065, and 55 ppm for both color and black-and-white on the imageRUNNER ADVANCE C7055, these models provide a fast and reliable solution for high-volume office and busy enterprise environments.    * imageRUNNER ADVANCE C5051/C5045/C5035/C5030 – These new models, running color and black-and-white, letter-sized output at 51 ppm, 45 ppm, 35 ppm and 30 ppm, respectively, offer innovative new features and functionality to help maximize productivity and efficiency for general office users, all within a compact footprint.

    “Over the years, Canon has developed and delivered several monumental technology innovations and solutions to respond to customers’ needs and change the marketplace, including the transition to digital with its GP product line in the early 1990s and the introduction of the current imageRUNNER product line in 1999,” said Sam Yoshida, vice president and general manager, Imaging Systems Group, Canon U.S.A.

    “The new imageRUNNER ADVANCE Series is a game-changer that will exceed customers’ expectations. These new solutions will help increase the productivity of ‘knowledge workers’ through greater efficiency and simplified workflow, while producing consistent high-quality color and black-and-white output in office and light production environments,” adds Yoshida.

    Advanced DesignIts new sleek, compact and natural color design, combined with its advanced innovations, allows the imageRUNNER ADVANCE Series to fit harmoniously into nearly any work environment. These models have been redesigned from the inside out with the user in mind, starting with its brand new system architecture. Built upon a new Advanced imageCHIP system architecture, these models leverage two central processing units separating image processing and information processing functions. These CPUs work together to accomplish multiple tasks simultaneously, and achieve exceptional performance, faster processing speeds, as well as deliver new features and functionality.

    The new Canon imageRUNNER ADVANCE series will also incorporate a Full Color SVGA TFT Control Panel (8.4-inch screen on the imageRUNNER ADVANCE C5000 Series models and up to 10.4-inch screen on the imageRUNNER ADVANCE C7000 and C9000 PRO Series models), with a customizable user interface to help define and simplify specific user workflows. The new large control panel also features a Main Menu key to easily access main functions and a Quick Menu key to help improve and simplify workflow, as well as share frequently used jobs or functions within a workgroup using one-touch buttons.

    The new models are designed with robust and flexible paper handling capacities and finishing options, including staple and booklet finishing, and a wide range of media support through a variety of optional hardware accessories. The new imageRUNNER ADVANCE C9075 PRO and C9065 PRO, which have a paper capacity up to 9,300 sheets, and the imageRUNNER ADVANCE C7065 and C7055, with a paper capacity up to 6,900 sheets, will support a variety of media, including coated and tab paper, in sizes up to 13 x 19 1/4 inches and with a weight up to 300 gsm (110 lb. Cover), while the imageRUNNER ADVANCE C5051/C5045/C5035/C5030 will have a capacity up to 5,000 sheets, and support paper ranging from 14 lb. bond to 140 lb. index (52 to 256 gsm) and up to 12 x 18 inches.

    Advanced WorkflowThe Canon imageRUNNER ADVANCE Series delivers superior and seamless workflow productivity and efficiency, thanks to a number of new functional capabilities including its innovative Advanced Box functionality and imageWARE ADVANCE Essentials Solutions Package.

    The Advanced Box is a document sharing space built into the new models, providing enhanced document storage and advanced collaboration. With the ability to store documents in their native file formats and share Advanced Box documents across network connected models and personal computers, the Advanced Box delivers a new level of capability in document storage and collaboration.

    imageRUNNER ADVANCE Essentials is an integrated software suite designed to enhance the end-user experience and interaction with imageRUNNER ADVANCE models. imageRUNNER ADVANCE Essentials, which includes imageRUNNER ADVANCE Desktop, imageRUNNER ADVANCE Tracker and Workflow Composer with connectors, will allow users to easily access the functions that simplify their work. Users can bring imageRUNNER ADVANCE functionality directly to their desktops for one-touch workflow key creation, document publishing and management, and basic document tracking and accounting.

    The imageRUNNER ADVANCE Essentials Package allows any size work environment to optimize the core functionality of the new Series and includes:    * imageRUNNER ADVANCE Desktop – A client-based device dashboard application to operate the document publishing, management, and printing operation from the user’s personal computer. In addition, this desktop application can be used in conjunction with Canon’s new imageWARE Document Server application in cases where customers want to share documents being managed across workgroups or departments.    * imageRUNNER ADVANCE Tracker – A cost recovery and usage management solution designed specifically for the imageRUNNER ADVANCE Series and based on Canon’s proprietary MEAP (Multifunction Embedded Application Platform) technology.    * Workflow Composer and Connectors – Simplifies imageRUNNER ADVANCE workflow processes by customizing multi-step workflow functions into single-button operations. A number of MEAP connectors for SMB and FTP file delivery inclusive of document indexing come standard on the new models, while connectors for imageWARE Document Server and SharePoint Server 2007 are available as options.

    Advanced ControlFrom easy set-up to centralized administration and security, the new imageRUNNER ADVANCE models deliver a combination of integrated hardware and software for scaling and managing document workflow. For example, administrators can use the improved Remote User Interface (RUI) on the imageRUNNER ADVANCE to monitor a single device on the network or imageWARE Enterprise Management Console to check the activity of an entire fleet. Enhanced security solutions, including Authentication, Data, Network and Document Security, are incorporated into the new models to protect sensitive and confidential documents, as well as the device’s integrity.

    Advanced PerformanceWith the imageRUNNER ADVANCE Series, Canon delivers a consistent and reliable platform that easily integrates into any environment to increase uptime and encourage seamless communication and collaboration. The new models, which will provide true 1,200 x 1,200 dots-per-inch (dpi) print resolution, will deliver exceptional image output quality, yielding smooth, vivid and well-defined images by virtue of the new system architecture and technologies. Also, the imageRUNNER ADVANCE Series will use a new oil-free “pQ” toner to produce sharp, vivid and dense images with a smooth finish, combined with new fusing technologies to improve color consistency and gloss optimization.

    The new models will come standard with Ultra Fast Rendering II (UFRII) printing technology, as well as optional Adobe PostScript 3 and PCL 5c/6 capabilities. For color intensive users, there will be imagePASS and ColorPASS* print controller options available. In addition, these models will have a tighter collaboration with Adobe technologies, by offering the ability to print and scan into a variety of Adobe PDF formats, support for a wider variety of Adobe PDF formats, and integration with Adobe LiveCycle Rights Management Server ES to bring secure collaboration to PDF documents.

    The imageRUNNER ADVANCE models all support Canon’s MEAP technology, allowing for greater integration with customized business processes and with leading third-party software applications. eCopy, the leading document imaging software provider, is announcing the availability of its ShareScan document imaging application with the imageRUNNER ADVANCE Series, giving customers instant connectivity to more than 100 of the most commonly used business applications. In addition, NT-Ware is announcing that uniFLOW Output Manager, an intelligent output management application, will run on the new imageRUNNER ADVANCE platform. Other third-party developers are expected to announce that their MEAP applications will support imageRUNNER ADVANCE models at the time of shipping or shortly thereafter.

    Advanced ResponsibilityCanon is committed to the environment and green technologies through every phase of the product lifecycle. With these new imageRUNNER ADVANCE models, Canon will have an even stronger environmental focus than in past products, including:    * Reducing Carbon Emissions – Through Canon’s Life Cycle Assessment system, the new series is expected to reduce CO2 emissions by more than 30 percent over previous models by focusing on each stage of manufacturing, energy use and logistics. These models, which are designed to be the smallest and lightest in their class, with less packaging to make transportation more efficient, are the first Canon offerings to make use of 100 percent recycled plastics and bio-plastic materials in certain parts within the new devices.    * Maximizing Energy Efficiency – The series, which meets and exceeds ENERGY STAR standards, realizes an up to 75 percent reduction2 in overall power consumption thanks to a number of advanced technologies including the use of White LED Array technology in the devices’ image reader, and the use of Canon’s Proprietary Image Sensor technology versus traditional CCD sensors. Also, new fusing technologies reduce overall power consumption in the new models to 1W or less in Sleep Mode**.    * Reducing Pollution – These devices exceed the toughest global regulations set by the European Union’s RoHS Directive in restricting hazardous substances and minimize the use of lead in steel, copper and aluminum materials. The RoHS Directive requires the restriction of six specified hazardous substances, while Canon currently restricts the use of 24 such substances.    * Conserving Resources – Each new imageRUNNER ADVANCE model comes equipped with a number of paper-, toner- and energy-saving features, aiding in cutting costs and conserving resources. Also, with long-life parts and high-yielding supplies, customers can maximize uptime and reduce the amount of materials consumed during the product life cycle.

    The imageRUNNER ADVANCE models are expected to be available for customer delivery in the fourth quarter of 2009 through Canon Authorized Dealers and Canon Business Solutions. The manufacturer’s suggested retail prices will be:    * imageRUNNER ADVANCE C9075 PRO - $50,000    * imageRUNNER ADVANCE C9065 PRO - $40,000    * imageRUNNER ADVANCE C7065 - $35,000    * imageRUNNER ADVANCE C7055 - $28,000    * imageRUNNER ADVANCE C5051 - $18,500    * imageRUNNER ADVANCE C5045 - $17,000    * imageRUNNER ADVANCE C5035 - $12,400    * imageRUNNER ADVANCE C5030 - $11,400


    Tegile HA2300 Hybrid Array Review | real questions and Pass4sure dumps

    June 17th, 2015 by StorageReview Enterprise Lab

    Tegile’s IntelliFlash arrays are built on a hybrid architecture that offers customers the flexibility to configure their array with a mix of HDD and SSD storage with latencies and storage density that is appropriate for individual use cases. A key item that Tegile leverages in the crowded storage market, that many of their competitors don't offer, is their inline deduplication and compression technology, which can greatly extend the available capacity to users. By extending their data reduction to disk, where most in the market cannot, Tegile gets the benefit of touting very impressive cost/TB metrics while also retaining the benefits of flash for hot data. Our review of the Tegile HA2300 array deploys IntelliFlash in conjunction with one expansion shelf (scale-up), putting both controllers to work through a wide range of workloads.

    Like other members of Tegile’s Intelligent Flash Array portfolio, the HA2300 features redundant active/active controllers and can be deployed with the amount of eMLC SSD storage chosen by the customer. That flash storage and the array’s DRAM, along with any HDD storage that has been incorporated, are leveraged by Tegile’s adaptive Caching and Scaling Engine, which caches frequently-accessed data to DRAM and high-performance flash storage while less frequently-accessed data remains on high-density flash or hard drive tiers.

    The headlining features that make Tegile’s arrays distinctive in the marketplace are the company’s deduplication and compression engines. Deduplicating and compressing all data inherently has some overhead impact on performance, but IntelliFlash makes use of a proprietary approach to metadata management that is designed in part to mitigate this performance overhead. Rather than interleaving data and metadata, Tegile arrays avoid metadata fragmentation by storing metadata in dedicated DRAM and flash media that also allows the array to access metadata using dedicated high-speed retrieval paths.

    Tegile’s Caching and Scaling engine is the means by which hybrid configurations can incorporate media with differing latencies. This caching solution uses mirrored DRAM and SSDs to establish two "read cache" tiers for frequently-accessed data and also tracks the wear level of flash storage media in order to make eMLC wear more uniform throughout the array.

    The Intelligent Flash Array family supports access via the FC, iSCSI, NFS, and CIFS protocols, with SMB 3.0 functionality expected via a future software update. All protocols can be used simultaneously across all compatible ports due to IntelliFlash’s redundant media fabric design, which consolidates connectivity across both controllers. All writes are synchronous, with new data beginning its lifecycle in a persistent flash write cache. 

    While much of Tegile's benefit messaging is around their caching technologies and data reduction, the units also benefit from a strong ease of use argument. Their administration GUI is clean and easy to use, with most tasks like LUN provisioning taking just a few clicks. The Tegile administrator is also greeted with high-level metrics and Tegile's iconic "doughnuts" image on the dashboard to illustrate the space savings the array offers. 

    While our review is on the HA2300 with shelf, Tegile offers a wide variety of configurations based on customer need. Their latest family of T3000 hybrid arrays for instance come in a number of pre-configured suggestions based on use case including capacity optimized, performance optimized, business-critical workloads, and so on. Tegile also offers several all-flash models that take advantage of their core technologies to deliver configurations ranging from the ESH-20 at 18TB raw to the ESF-145 at 144TB raw. Tegile expects customers to see additional capacity benefits of 3-5x in those models depending on workload with data reduction. 

    Tegile HA2300 Specifications

  • Platform Configuration:
  • Processor: 4x Xeon E5620
  • DRAM Memory: 192GB
  • Flash Memory: 1200GB
  • Storage Capacity:
  • Min: Raw Capacity: 16TB
  • Max: Raw Capacity: 144TB
  • Physical:
  • Form Factor (Rack Units): 2U
  • Weight (Lbs): 80
  • Power (W): 500
  • Expansion Shelves: Up to 3
  • Network Connections:
  • 1 Gbps Ethernet Ports: 12
  • 1 Gbps IP-KVM Lights-out Management Port: 2
  • Optional Connectivity: Dual-port 4/8 Fibre Channel, Dual-port 10GbE Copper/Fiber, Quad-port 1 Gbps Ethernet
  • Software Services Included:
  • Protocols: SAN Protocol Support (iSCSI, Fibre Channel), NAS Protocol Support (NFS, CIFS, SMB 3.0)
  • Data Services: De-duplication, Compression, Thin Provisioning, Snapshots, Remote Replication, Application Profiles
  • Management: Web browser, SSH, IP-KVM
  • Redundancy: No single point of failure, Active-Active High Availability Architecture
  • Standard Warranty: 90 Days: 24x7 support via phone and email. Next business day hardware replacement parts. Free software updates.
  • Optional Warranty:
  • 1, 3 or 5 years: 24x7 support via phone and email. Next business day hardware replacement parts. Free software updates.
  • Onsite Gold Level Support: 4 hour onsite support with optional onsite hardware kit
  • Onsite Silver Level Support: Next business day onsite technical support
  • Build and Design

    IntelliFlash arrays use a pair of redundant active/active controllers inside a chassis supporting up to 24 2.5" HDDs and SSDs. Each controller offers two PCIe slots for connectivity expansion, as well as supporting multiple interconnect types such as Ethernet and FC. All IntelliFlash storage media options incorporate dual ports for connectivity to both controllers, offering redundant links in the event one single connection goes down.

    Our review configuration of the Tegile HA2300 includes the primary system with two controllers and 24 disks, as well as one ES2400 expansion shelf adding an additional 24 disks. Our storage configuration consisted of each controller handling its own 24-disk storage pool, made up of (6) 200GB eMLC SAS2 SSDs as well as (18) 1TB 7200RPM SAS2 HDDs.

    Each controller is powered via two 2.4GHz Intel E5620 processors with 96GB of DRAM. This gives the HA2300 a combined 4 processors and 192GB across both active/active controllers. The additional ES2400 shelf included in our configuration is a JBOD unit only, adding only storage capacity. With the hardware supplied our platform offered 6.2TB raw usable through one controller and 7.14TB raw usable on the second controller.


    The Tegile IntelliFlash architecture virtualizes the underlying storage media and creates a pool of capacity that can be allocated as LUNs or file shares. This pool capacity can be expanded online. The Tegile architecture uses dynamic stripe widths in order to avoid performance overhead from read-modify-write operations and in order to decrease the time required to reconstruct failed drives. IntelliFlash arrays support dual parity, two-way mirroring, and three-way mirroring RAID levels. Data security is available in the form of 256-bit AES encryption of data at rest with native key management.

    Individual volumes can be tuned based on use cases including database, server virtualization, and virtual desktop. This tuning process affects settings such as block size, compression, and deduplication. The management interface is designed to support virtualized environments and provides management tools that can be configured with virtual machine granularity rather than LUNs, file systems, and RAID groups for virtualized situations.

    IntelliFlash data reduction services include inline deduplication, inline compression, and thin provisioning. Deduplication and compression can be enabled for the entire storage pool or for individual LUNs and file shares. Each LUN can be configured with block sizes from 4KB to 128KB and a choice of compression algorithms based on workloads. We dive further into the data reduction benefits in the next section.

    Tegile IntelliFlash arrays can take point-in-time snapshots that are VM-aware and application-consistent. Snapshots can be replicated off-site, with only incremental changes since the prior snapshot transmitted via WAN.  Writeable point-in-time images are created using the cloning feature and are also VM-aware and application-consistent. As with snapshots, clones are “thin” and only allocate capacity as needed for new data.

    A vCenter web client and desktop client plugin allows VMware data stores to be managed through vCenter. Tegile also offers VAAI support to reduce I/O overhead in VMware environments. IntelliFlash arrays are also tested and verified as part of the Citrix Ready VDI Capacity Program Verified for Citrix XenDesktop.

    In Microsoft environments, Tegile arrays integrate with CSV for failover clustering for Hyper-V; VSS for application-consistent snapshots and clones; and will have SMB 3.0 support in the future. Microsoft Hyper-V virtual machines can be managed through Microsoft Systems Center Virtual Machine Manager (SCVMM). Tegile offers pre-tested and validated Oracle architectures in addition to testing and certifying its arrays with Oracle VM and validated with Oracle Linux with UEK in single instance and Oracle RAC deployments.

    The IntelliCare portal presents an access point for system information, configuration details, historical data and trending analyses, and data reduction rates as well as serving as the interface for managing support cases. IntelliCare can be configured to send capacity alerts to customers and to Tegile support based on linear progression analysis of space usage, threshold alerts for disks, and high availability errors.  When an alert is triggered, IntelliCare can be configured so that a Tegile account manager who has access to array status and configuration data is automatically assigned to the case.

    Data Reduction

    In the high-end hybrid storage array space, Tegile is a front-runner when it comes to integrating the benefits of data reduction in a primary storage array. One of the most recognizable screencaps from users are those posting "doughnut" shots showing the amount of data stored, how much space is consumed after compression and finally how much space is consumed after deduplication. With many production environments running virtualized servers and increased desire for Test/Dev work to not be siloed, repetitive data is an industry-wide problem that has different ways of being addressed. You can either size an array with no data-reduction benefits to fit the current or estimate future demands, or leverage data reduction to minimize that footprint by removing duplicate or easily compressible data. Out of all of traditional hybrid storage platforms we've tested, the Tegile HA2300 has been the only one to offer this level of data reduction features.

    To test out the data-reduction capabilities of the Tegile HA2300, we used the stock virtual machine LUN profile, with compression and deduplication enabled, and presented it to one of our ESXi hosts. This test simply looked at the footprint of that single VM after it had been migrated onto the array. The first one we tried was our CentOS 6.3 VM used for testing MySQL performance on shared storage. This VM has a pre-built database on one of its vDisks that is then copied onto a blank vDisk that is then put under load. In this particular scenario we saw roughly a 12% savings, coming mostly from compression.

    Our next test looked at a CentOS 7 VM that we use for our upcoming OpenLDAP benchmarks. We saw a much better increase in data savings, measuring over 55%, coming mostly from compression. In an environment with many similar VMs (multiple Linux or Windows distributions), you'd see the benefits of both compression and deduplication. The same holds true for scenarios like VDI or Test/Dev on primary storage, where the deduplication benefits escalate largely linearly with every new VM created. 

    With all data reduction services, there is a performance tradeoff due to the system overhead required for the related tasks and metadata management. We saw slow single-threaded transfer speeds (copy/paste actions inside VMs, or SvMotion activities between datastores), topping out at roughly 100MB/s. This included both read and write operations, with near 100% cache hits. Interestingly, we saw very little difference in performance across all of our workloads with data reduction services enabled or completely disabled. By comparison, many arrays in this segment without data reduction services can come close to saturating a single 10Gb Ethernet or 16Gb FC interface through similar data movement activities.

    Testing Background and Comparables

    We publish an inventory of our lab environment, an overview of the lab's networking capabilities, and other details about our testing protocols so that administrators and those responsible for equipment acquisition can fairly gauge the conditions under which we have achieved the published results. To maintain our independence, none of our reviews are paid for or managed by the manufacturer of equipment we are testing.

    We will be comparing the Tegile HA2300 to the Dot Hill AssuredSAN Ultra48, AMI StorTrends 3500i, X-IO ISE 710, HP StoreVirtual 4335, and the Dell EqualLogic PS6210XS. For all synthetic and application tests, compression and deduplication were disabled during performance runs. The array was deployed by a Tegile field rep in our lab, while the LUNs for synthetic benchmarks and our SQL Server test were configured remotely by a Tegile technical marketing representative. LUNs for VMmark were configured using the "virtual server" profile with snapshots disabled and attached through each ESXi host using the VMware iSCSI software adapter.

    With each platform tested, it is very important to understand how each vendor configures the unit for different workloads as well as the networking interface used for testing. The amount of flash used is just as important as the underlying caching or tiering process when it comes to how well it will perform in a given workload. The following list shows the amount of flash and HDD, how much is usable in our specific configuration and what networking interconnects were leveraged:

  • Tegile HA2300 w/ Expansion Shelf
  • List price: $100,443 base configuration, $185,000 as tested with additional storage shelf
  • Raw Usable Capacity before data reduction: 13.4TB (6.2TB first shelf + 7.14TB second shelf)
  • Flash: 12 x 200GB HGST eMLC SAS2 SSDs
  • HDD: 36 x 1TB Seagate SAS2 7200RPM HDDs
  • Network Interconnect: 10Gb, 2 x 10Gb per controller
  • Dot Hill AssuredSAN Ultra48 (Hybrid)
  • List price: $113,158
  • Flash: 800GB (4 x 400GB HGST SAS3 SSDs, 2 RAID1 pools)
  • HDD: 9.6TB (32 x 600GB 10K 6G SAS HDDs, 2 RAID10 pools)
  • Network Interconnect: 16Gb FC, 4 x 16Gb FC per controller
  • AMI StorTrends 3500i
  • List price: $87,999
  • Flash Cache: 200GB (200GB SSDs x 2 RAID1)
  • Flash Tier: 1.6TB usable (800GB SSDs x 4 RAID10)
  • HDD: 10TB usable (2TB HDDs x 10 RAID10)
  • Network Interconnect: 10GbE iSCSI, 2 x 10GbE Twinax per controller
  • HP StoreVirtual 4335 - 3 Nodes
  • List price: $41,000 per node, $123,000
  • Flash: 1.2TB usable (400GB SSDs x 3 RAID5 per node, network RAID10 across cluster)
  • HDD: 10.8TB usable (900GB 10K HDDs x 7 RAID5 per node, network RAID10 across cluster)
  • Network Interconnect: 10GbE iSCSI, 1 x 10GbE Twinax per controller
  • Dell EqualLogic PS6210XS
  • List price: $134,000
  • Flash: 4TB usable (800GB SSDs x 7 RAID6)
  • HDD: 18TB usable (1.2TB 10K HDDs x 17 RAID6)
  • Network Interconnect: 10GbE iSCSI, 2 x 10GbE Twinax per controller
  • X-IO ISE 710
  • List price: $115,000
  • 800GB Flash (200GB SSDs x 10 RAID10)
  • 3.6TB HDD (300GB 10K HDD x 30 RAID10)
  • Network Interconnect: 8Gb FC, 2 x 8Gb FC per controller
  • This benchmark makes use of our ThinkServer RD630 benchmark environment:

  • Lenovo ThinkServer RD630 Testbed
  • 2 x Intel Xeon E5-2690 (2.9GHz, 20MB Cache, 8-cores)
  • Intel C602 Chipset
  • Memory - 16GB (2 x 8GB) 1333MHz DDR3 Registered RDIMMs
  • Windows Server 2008 R2 SP1 64-bit, Windows Server 2012 Standard, CentOS 6.3 64-Bit
  • Boot SSD: 100GB Micron RealSSD P400e
  • LSI 9211-4i SAS/SATA 6.0Gb/s HBA (For boot SSDs)
  • LSI 9207-8i SAS/SATA 6.0Gb/s HBA (For benchmarking SSDs or HDDs)
  • Emulex LightPulse LPe16202 Gen 5 Fibre Channel (8GFC, 16GFC or 10GbE FCoE) PCIe 3.0 Dual-Port CFA
  • Mellanox SX1036 10/40Gb Ethernet Switch and Hardware
  • 36 40GbE Ports (Up to 64 10GbE Ports)
  • QSFP splitter cables 40GbE to 4x10GbE
  • Application Performance Analysis

    Our first two benchmarks of the Tegile IntelliFlash HA2300 are the VMware VMmark Virtualization Benchmark and the Microsoft SQL Server OLTP Benchmark, which both simulate application workloads similar to those that the HA2300 and its comparables are designed to serve.

    The StorageReview VMmark protocol utilizes an array of sub-tests based on common virtualization workloads and administrative tasks with results measured using a tile-based unit. As an industry-recognized and established benchmark, VMmark puts compute and storage into a level playing field with little or no benchmark modification allowed. Tiles measure the ability of the system to perform a variety of virtual workloads such as cloning and deploying of VMs, automatic VM load balancing across a datacenter, VM live migration (vMotion) and dynamic datastore relocation (storage vMotion).

    The normalized VMmark application scores and overall scores demonstrate the Tegile HA2300's performance against the comparable arrays at lower numbers of tiles. The HA2300 does begin to fall behind at 6 tiles with an overall score of 6.6, compared to the next-lowest overall score of 7.6 from the HP StoreVirtual 4335. The dual storage pools of our HA2300 were not powerful enough to go beyond 6 tiles, with an equal number of tiles assigned to each controller. In this test the HP StoreVirtual 4335 topped out at 8 tiles, while the Dell EqualLogic PS6210XS and AMI StorTrends 3500i reached 10 tiles.

    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. Our SQL Server protocol for this review uses a 685GB (3,000 scale) SQL Server database and measures the transactional performance and latency under a load of 30,000 virtual users.

    Our SQL Server benchmark leverages a large single database and log file that we present one single 1TB LUN to our Windows Server 2012 host with MPIO enabled. When configuring the Tegile HA2300 for our SQL Server benchmark, we leveraged a single 1TB LUN. This puts the load onto one controller, backed by one disk pool, leaving one controller and disk pool idle in its active/active configuration. All devices in this category are put in the same position, with one LUN and controller driving the activity behind this benchmark.

    The Tegile HA2300 measured 3,058.5 transactions per second in this benchmark, placing it ahead of the all-HDD RAID50 DotHill Ultra48 configuration. This performance falls at about half the level of the highest performing hybrid arrays tested with this protocol.

    The HA2300 maintained an average latency of 5,068ms during the SQL Server benchmark, the second-lowest performance among the comparables.

    It should be noted that Microsoft SQL Server during the TPC-C workload is very write intensive, committing its log buffer to disk on regular intervals. As write performance slows and a storage array can no longer keep up, outstanding queues pile up and substantially increase latency. This can be seen with the Tegile HA2300, as well as the DotHill Ultra48 in a RAID50 configuration. During the initial setup of our SQL Server test with our Windows Server 2012 platform, we noted single-threaded write speeds topping 100MB/s through basic copy/paste actions moving our pre-built database onto the LUN presented from the HA2300. This slow write speed was also visible in our VMware environment during storage vMotion activities before and during our tests. Multi-threaded synthetic workloads where we were able to drive up the outstanding queue depths were able to see upwards of 1.1GB/s read and 755MB/s write, but these weren't visible in any of our application use cases.

    Enterprise Synthetic Workload Analysis

    Prior to initiating each of the fio synthetic benchmarks, our lab preconditions the device into steady-state under a heavy load of 16 threads with an outstanding queue of 16 per thread. Then the storage is tested in set intervals with multiple thread/queue depth profiles to show performance under light and heavy usage.

  • Preconditioning and Primary Steady-State Tests:
  • Throughput (Read+Write IOPS Aggregated)
  • Average Latency (Read+Write Latency Averaged Together)
  • Max Latency (Peak Read or Write Latency)
  • Latency Standard Deviation (Read+Write Standard Deviation Averaged Together)
  • This synthetic analysis incorporates two profiles which are widely used in manufacturer specifications and benchmarks:

  • 4k - 100% Read and 100% Write
  • 8k - 70% Read/30% Write
  • While synthetic workloads can be helpful to drive a strong and repeatable load against storage devices, they offer diminishing value for customers trying to correlate IOPS and latency with database, virtualization or other application performance. Unlike application workloads, synthetic workload generators can also be massaged significantly, including the type of data being applied, the size of the workload, how many threads, the number of outstanding I/Os, how random the random workload is, or even how the load is applied to the underlying storage. That doesn't even come close to describing the scope and capabilities of FIO, IOMeter, or vdBench, instead just scratches the surface. To keep our benchmarks relevant as we compare different storage arrays, we apply the identical scripts and configuration to all platforms that come into our lab. While that might mean some platforms can most likely see different or higher numbers with different configurations, showing like to like results puts all platforms onto a level playing field. Currently we test in a Windows Server 2012 environment, using 8 25GB LUNs assigned to the server, evenly distributed across the array. This confines the workload into the storage or DRAM tier, while a long preconditioning period forces it to migrate up into the highest performance tier or cache. 

    At the time this review was started, as well as for the reviews of other same-generation hybrid storage platforms, we used the following FIO script to address our 8 defined LUNs as part of the same FIO thread. 

    fio.exe --filename=\\.\PhysicalDrive1:\\.\PhysicalDrive2:\\.\PhysicalDrive3:\\.\PhysicalDrive4:\\.\PhysicalDrive5:\\.\PhysicalDrive6:\\.\PhysicalDrive7:\\.\PhysicalDrive8 --thread --direct=1 --rw=randrw --refill_buffers --norandommap --randrepeat=0  --ioengine=windowsaio --bs=4k --rwmixread=100  --iodepth=16 --numjobs=16 --time_based --runtime=60 --group_reporting --name=FIO_group_test --output=FIO_group_test.out

    This workload can also be applied where each LUN gets its own dedicated FIO thread. Using a modified script the FIO measured performance of the Tegile HA2300 can increase upwards of 50%, although those results are no longer like for like comparable to other arrays we've tested. It goes without saying that other arrays would see improvements or changes as well. An example of this change would be similar to the one below:

    fio.exe --thread --direct=1 --rw=randrw --refill_buffers --norandommap --randrepeat=0  --ioengine=windowsaio --bs=4k --rwmixread=100  --iodepth=16 --numjobs=16 --time_based --runtime=60 --group_reporting --name=thread1 filename=\\.\PhysicalDrive1  --name=thread2 filename=\\.\PhysicalDrive2  --name=thread3 filename=\\.\PhysicalDrive3  --name=thread4 filename=\\.\PhysicalDrive4  --name=thread5 filename=\\.\PhysicalDrive5  --name=thread6 filename=\\.\PhysicalDrive6  --name=thread7 filename=\\.\PhysicalDrive7  --name=thread8 filename=\\.\PhysicalDrive8  --output=FIO_test.out

    It's important to note that both benchmarks reach the same conclusion. They show a repeatable result that within the confines of those parameters offer a certain number of IOPS, latency and bandwidth. Neither number can be compared against one another. Both tests also won't show how a platform will perform in a real-world production environment either, and it can't since it doesn't introduce application demands.

    Our first benchmark measures the performance of random 4k transfers comprised of 100% write and 100% read activity. The Tegile HA2300 measured 120,072 IOPS, the third-highest read performance among the comparables in this benchmark, and 38,311 IOPS, the 4k category's second-highest write performance.

    The Tegile HA2300 experienced an average read latency of 2.13ms and a write latency of 6.68ms, also third-best and second-best, respectively, among the comparable arrays.

    We measured maximum latencies for the Tegile HA2300 that were much greater than those of its comparables. The maximum read latency was measured at approximately 7,188ms and the maximum write latency reached 6,885ms.

    Standard deviation calculations show the Tegile HA2300 as much less consistent than its hybrid peers in terms of latency, at 11.10ms for read operations and 31.29ms for write operations. By comparison the DotHill Ultra48 configured with all HDDs ranked towards the bottom of this category, although once SSDs were introduced it came in second in read consistency and first in write consistency.

    Moving to the 8k 70% read 30% write random workload, the Tegile HA2300 scaled in performance from 2,405 IOPS at 2T/2Q up to 42,957 IOPS at 16T/16Q. At lower thread and queue levels this measured roughly middle of the pack, while under full load it came in 3rd place behind the HP StoreVirtual 4335 cluster and AMI StorTrends 3500i.

    Average latency results for the 8k 70/30 benchmark measured 1.65ms at a load of 2T/2Q and increased to 5.95ms under the peak load of 16T/16Q.

    With a few exceptions, the Tegile HA2300 experienced the highest latencies among the arrays, which are compared in the 8k 70/30 benchmark. The highest latency we measured for the TA3200 was 4,674.84ms, which occurred with 4T/16Q.

    The Tegile HA2300's standard deviation calculations for the 8k 70/30 benchmark are not unlike its standard deviation results for the 4k benchmark: they put the HA2300 in a more positive light than the maximum latency chart, but still portray the HA2300 as less consistent with latency than its comparables.


    The HA2300 combined with its ES2400 expansion shelf is highly flexible allowing customers to use all HDD, flash, or a combination of the two, all of which can be replaced (along with other hardware) with zero downtime. An Intelligent caching algorithm moves hot data to the faster flash tier, along with that feature there is application-aware provisioning to set volumes for specific applications. Inline compression and deduplication capabilities minimize data footprint, which is a growing problem for all data centers. The HA2300 supports multiple host platforms being Citrix ready and can integrate with VMware and Microsoft virtualization software. Tegile’s HA2300 is also backed by its IntelliCare customer care program. 

    As far as performance goes, the results were somewhat mixed. In our application performance analysis the HA2300 came in behind other competing solutions in the VMmark benchmark, topping out at 6 tiles where others reached 8 or 10 tiles, or much higher in the case of the DotHill Ultra48 Hybrid array. In the SQL Server TPC-C benchmark it came in near the bottom with lower TPS and higher latency than other hybrid systems. The array faired quite a bit better in synthetic tests coming in third in both 4K throughput and 4K average latency. In max latency and standard deviation tests though, the HA2300 had the highest latencies of the hybrid arrays tested. 

    The Tegile array is a bit of an enigma as a result. On one hand it's easy to deploy and manage, has a deep set of data services and features and is one of the few in primary storage with hard drives that allows for compression and deduplication. The resulting smaller data footprint on disk gives Tegile a huge competitive advantage when it comes to discussing cost per TB both in this array and in their all-flash hybrids as well. Data reduction services come though with a hit in performance as we saw more or less.  There's an overhead to contend with whether data reduction is enabled or not. Therein lies the rub with Tegile.

    For many organizations, array performance may not be the primary decision criteria though. In a lot of ROBO and midmarket/SMB use cases, all HDD arrays are just fine for the needs of the applications. The truth is not every organization needs flash, at least from a performance perspective (save the TCO argument for another time). The HA2300 for its part addresses these needs just fine, where cost per TB, ease of management and data services outweigh performance demands. Overall though, it's just not a high-performance player in the hybrid space, which at this point in time appears to be the domain of traditional storage arrays that are not leveraging data reduction services or perhaps one of Tegile's all-flash hybrid offerings. 


  • Offers data reduction services
  • Strong 4K throughput and average latency
  • Feature rich WebGUI
  • Cons

  • Relatively weak performance SQL Server and VMmark
  • Inconsistent latency and high peak response times
  • The Bottom Line

    The Tegile HA2300 is a hybrid array platform with a versatile feature set crowned by inline compression and deduplication engines. Its strengths lie in configuration flexibility, data services, protocol support and compelling overall cost profile per TB, although it doesn't necessarily meet performance parity with many of its peers.

    Tegile Hybrid Storage Arrays

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    HP HP0-M101 Exam (HP Application Lifecycle Management 12.x Software) Detailed Information


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