data security

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Published By: Oracle CX     Published Date: Oct 19, 2017
In today’s IT infrastructure, data security can no longer be treated as an afterthought, because billions of dollars are lost each year to computer intrusions and data exposures. This issue is compounded by the aggressive build-out for cloud computing. Big data and machine learning applications that perform tasks such as fraud and intrusion detection, trend detection, and click-stream and social media analysis all require forward-thinking solutions and enough compute power to deliver the performance required in a rapidly evolving digital marketplace. Companies increasingly need to drive the speed of business up, and organizations need to support their customers with real-time data. The task of managing sensitive information while capturing, analyzing, and acting upon massive volumes of data every hour of every day has become critical. These challenges have dramatically changed the way that IT systems are architected, provisioned, and run compared to the past few decades. Most companies
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Oracle CX
Published By: Oracle CX     Published Date: Oct 20, 2017
Oracle’s new cloud platform, included a new line of servers for cloud and scale-out applications: Oracle’s SPARC S7-2 and S7-2L servers. These servers are based on the breakthrough SPARC S7 processor and extend the outstanding features and capabilities of the SPARC T7 and M7 systems into scale-out form factors. With the combination of Oracle’s breakthrough Software in Silicon features and the efficiency of the SPARC S7 processor we can offer the most secure and economical enterprise clouds with the fastest infrastructure for data analytics. Here at Oracle we recognize our customers’ needs for increasing the security of their data, therefore we have taken security as one of the core values on the SPARC Servers. The new SPARC S7 processor leverages the revolutionary Security in Silicon features introduced on the SPARC T7 and M7 systems. Silicon Secured Memory is a unique hardware implementation that prevents unauthorized access to application data in memory and can prevent hacking explo
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Oracle CX
Published By: Oracle CX     Published Date: Oct 20, 2017
On Thursday June 30th, we announced Oracle’s new cloud platform, including a new line of servers for cloud and scale-out applications: Oracle’s SPARC S7-2 and S7-2L servers. These servers are based on the breakthrough SPARC S7 processor and extend the outstanding features and capabilities of the SPARC T7 and M7 systems into scale-out form factors. With the combination of Oracle’s breakthrough Software in Silicon features and the efficiency of the SPARC S7 processor we can offer the most secure and economical enterprise clouds with the fastest infrastructure for data analytics. Here at Oracle we recognize our customers’ needs for increasing the security of their data, therefore we have taken security as one of the core values on the SPARC Servers. The new SPARC S7 processor leverages the revolutionary Security in Silicon features introduced on the SPARC T7 and M7 systems. Silicon Secured Memory is a unique hardware implementation that prevents unauthorized access to application data in
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Oracle CX
Published By: Oracle CX     Published Date: Oct 20, 2017
This whitepaper explores the new SPARC S7 server features and then compares this offering to a similar x86 offering. The key characteristics of the SPARC S7 to be highlighted are: ? Designed for scale-out and cloud infrastructures ? SPARC S7 processor with greater core performance than the latest Intel Xeon E5 processor ? Software in Silicon which offers hardware-based features such as data acceleration and security The SPARC S7 is then compared to a similar x86 solution from three different perspectives, namely performance, risk and cost. Performance matters as business markets are driving IT to provide an environment that: ? Continuously provides real-time results. ? Processes more complex workload stacks. ? Optimizes usage of per-core software licenses. Risk matters today and into the foreseeable future, as challenges to secure systems and data are becoming more frequent and invasive from within and from outside. Oracle SPARC systems approach risk management from multiple perspectiv
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Oracle CX
Published By: Oracle CX     Published Date: Oct 20, 2017
Security has become top of mind for CIOs, and CEOs. Encryption at rest is a piece of the solution, but not a big piece. Encryption over the network is another piece, but only a small piece. These and other pieces do not fit together well; they need to unencrypt and reencrypt the data when they move through the layers, leaving clear versions that create complex operational issues to monitor and detect intrusion. Larger-scale high-value applications requiring high security often use Oracle middleware, including Java and Oracle database. Traditional security models give the data to the processors to encrypt and unencrypt, often many times. The overhead is large, and as a result encryption is used sparingly on only a few applications. The risk to enterprises is that they may have created an illusion of security, which in reality is ripe for exploitation. The modern best-practice security model is an end-to-end encryption architecture. The application deploys application-led encryption s
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Oracle CX
Published By: Oracle CX     Published Date: Oct 20, 2017
This document discusses how to secure applications using Oracle Solaris 11 security and the hardware-assisted cryptography capabilities of Oracle’s SPARC servers. This document explores the end-to-end application security scenarios, technical prerequisites, configuration, deployment, and verification guidelines for multitier application deployments running on Oracle Solaris 11–based SPARC servers. In addition, this document covers the Oracle hardware-assisted cryptographic acceleration of the SPARC processor, a key feature when performance and data protection are deemed critical. The derived security benefits can be leveraged into a variety of solutions including application software, middleware, and infrastructure software.
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Oracle CX
Published By: Gigamon     Published Date: Oct 19, 2017
Read the Gigamon white paper, Harnessing the Power of Metadata for Security, to see why metadata is the new security super power for enterprises looking to separate signals from noise, reduce time to threat detection, and improve overall security efficacy to combat ever more advanced and persistent cyber attacks. Download now!
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Gigamon
Published By: Gigamon     Published Date: Oct 19, 2017
Read the Joint Solution Brief Gigamon Improves Security Visibility with Splunk Enterprise to see how to effectively analyze network events for security threats. Benefits include enhanced visibility and deeper, faster security analytics and intelligence based on all machine data (not just security events), among many others. Download now!
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Gigamon
Published By: Gigamon     Published Date: Oct 25, 2017
Read the Joint Solution Brief Accelerate Threat Detection and Response to learn how Gigamon helps Splunk Enterprise users effectively analyze and remediate network security threats. Benefits include enhanced visibility and deeper, faster security analytics from precise, targeted network metadata generated from the traffic flowing in your network. Also learn how automation of common security tasks, across the Gigamon platform and third-party security tools, from within the Splunk platform helps increase analyst efficiency and reduce errors.
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Gigamon
Published By: Dell and Nutanix     Published Date: Jan 16, 2018
Because many SQL Server implementations are running on virtual machines already, the use of a hyperconverged appliance is a logical choice. The Dell EMC XC Series with Nutanix software delivers high performance and low Opex for both OLTP and analytical database applications. For those moving from SQL Server 2005 to SQL Server 2016, this hyperconverged solution provides particularly significant benefits.
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data, security, add capacity, infrastructure, networking, virtualization, dell
    
Dell and Nutanix
Published By: Infosys     Published Date: May 30, 2018
In the wake of data hacks and privacy concerns, enterprises are working extra hard to make sure they secure customer data from external threats. But what about securing data internally? Organizations unknowingly leave a big security hole in their own systems when they fail to have structured internal processes to handle access requests for employees, which could have disastrous implications for data security. A leading US bank sought to move its internal applications to a secure system for a standard and consistent access rights experience. See how Infosys helped and the five key takeaways from the project.
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internal, applications, data, hacks, privacy, enterprises
    
Infosys
Published By: IBM     Published Date: Jun 29, 2018
LinuxONE from IBM is an example of a secure data-serving infrastructure platform that is designed to meet the requirements of current-gen as well as next-gen apps. IBM LinuxONE is ideal for firms that want the following: ? Extreme security: Firms that put data privacy and regulatory concerns at the top of their requirements list will find that LinuxONE comes built in with best-in-class security features such as EAL5+ isolation, crypto key protection, and a Secure Service Container framework. ? Uncompromised data-serving capabilities: LinuxONE is designed for structured and unstructured data consolidation and optimized for running modern relational and nonrelational databases. Firms can gain deep and timely insights from a "single source of truth." ? Unique balanced system architecture: The nondegrading performance and scaling capabilities of LinuxONE — thanks to a unique shared memory and vertical scale architecture — make it suitable for workloads such as databases and systems of reco
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IBM
Published By: IBM     Published Date: Jun 29, 2018
Every day, companies generate mountains of data that are critical to their business. With that data comes a clear challenge: How do you protect exabytes of data that's strewn across global data centers, computer rooms, remote offices, laptops, desktops, and mobile devices, as well as hosted by many different cloud providers, without choking business agility, employee productivity, and customer experience? The solution lies not in throwing more technology at the network, but in taking specific steps to identify malicious actions and respond to them in order to fix the issue, a process known as operationalizing security.
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IBM
Published By: Limelight Networks     Published Date: Mar 02, 2018
Today, digital security is top-of-mind. From the boardroom to the backroom, everyone is asking the same questions, “How do we protect our digital experiences? How do we ensure our website is safe for our visitors? How do we make sure that no one can steal our content?” But safeguarding a digital experience isn’t a one-size-fits-all solution. It often involves multiple techniques and layers of security. From verifying your identity (with HTTPS) to encrypting sensitive data to restricting access and protecting multimedia content, you must approach security in a layered manner, employing multiple means and techniques to protect the digital content through which your audience interacts. This paper explores ten different methods and technologies that an organization can employ to protect its content. This multi-layered approach can effectively protect your digital content, ensure high availability, and maintain superior quality of experience for every digital visitor. You’ll learn: 10 s
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content delivery network, cdn, cybersecurity, ddos, waf, web application firewall, distributed denial of service attacks, cloud security, digital rights management
    
Limelight Networks
Published By: Dell EMC & Intel     Published Date: Sep 06, 2018
For organisations that aim to modernise their IT environments and limit operational risks that can incur costs, IDC recommends making data protection initiatives a top priority. Modernise data protection to cut IT costs and advance IT Transformation. Modern data protection enables organisations to shrink data backup and recovery windows , which means fewer security breaches and faster resolutions when they do happen. To truly transform IT, modernise your data center to increase IT efficiency and shed technical debt while protecting your bottom line. Drive IT Transformation and results with leading enterprise solutions from Dell EMC powered by Intel®.
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Dell EMC & Intel
Published By: Oracle     Published Date: Nov 21, 2018
Database Security Assessment Tool: Finding Your Weaknesses Before the Bad Guys Do
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Oracle
Published By: Dome9     Published Date: Apr 25, 2018
Organizations continue to adopt cloud computing at a rapid pace to benefit from increased efficiency, better scalability, and faster deployments. As more workloads are shifting to the cloud, cybersecurity professionals remain concerned about security of data, systems, and services in the cloud. To cope with new security challenges, security teams are forced to reassess their security posture and strategies as traditional security tools are often not suited for the challenges of dynamic, virtual and distributed cloud environments. This technology challenge is only exacerbated by the dramatic shortage of skilled cybersecurity professionals.
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Dome9
Published By: Dome9     Published Date: Apr 25, 2018
Last year at this time, we forecast a bumpy ride for infosec through 2017, as ransomware continued to wreak havoc and new threats emerged to target a burgeoning Internet of Things (IoT) landscape. ‘New IT’ concepts – from DevOps to various manifestations of the impact of cloud – seemed poised to both revolutionize and disrupt not only the implementation of security technology, but also the expertise required of security professionals as well. Our expectations for the coming year seem comparatively much more harmonious, as disruptive trends of prior years consolidate their gains. At center stage is the visibility wrought by advances in data science, which has given new life to threat detection and prevention – to the extent that we expect analytics to become a pervasive aspect of offerings throughout the security market in 2018. This visibility has unleashed the potential for automation to become more widely adopted, and not a moment too soon, given the scale and complexity of the thre
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Dome9
Published By: Dome9     Published Date: Apr 25, 2018
Cloud investment continues to grow over 20% annually as organizations are looking for faster time to deployment, scalability, reduced maintenance, and lower cost. But there is one aspect of cloud that consistently worries IT and security professionals – how to achieve high levels of security in the cloud. As cloud adoption increases, the fears of unauthorized access, stolen identities, data and privacy loss, and confidentiality and compliance issues are rising right along with it. This report has been produced by the 350,000 member Information Security Community on LinkedIn in partnership with Crowd Research Partners to explore how organizations are responding to the security threats in the cloud and what tools and best practices IT cybersecurity leaders are considering in their move to the cloud. 2
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Dome9
Published By: Dome9     Published Date: Apr 25, 2018
It is no secret; security and compliance are at the top of the list of concerns tied to cloud adoption. According to a recent 2017 Cloud Security survey to over 350,000 members of the LinkedIn Information Security Community, IT pros have general concerns about security in the cloud (33 percent), in addition to data loss and leakage risks (26 percent) and legal and regulatory compliance (24 percent)1. The number of reported breaches in enterprise datacenter environments still far exceeds the reported exposure from cloud platforms, but as businesses start using public clouds to run their mission-critical workloads, the need for enterprise-grade security in the cloud will increase. Public cloud environments require a centralized, consolidated platform for security that is built from the ground up for the cloud, and allows administrators to monitor and actively enforce security policies. The tools and techniques that worked to secure datacenter environments fail miserably in the cloud. Se
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Dome9
Published By: Dome9     Published Date: Apr 25, 2018
AWS provides powerful controls to manage the security of software-defined infrastructure and cloud workloads, including virtual networks for segmentation, DDoS mitigation, data encryption, and identity and access control. Because AWS enables rapid and elastic scalability, the key to securing cloud environments is using security automation and orchestration to effectively implement consistent protection across your AWS environment. The following eBook will discuss Dome9 best practices for using AWS controls to establish a strict security posture that addresses your unique business needs, and maintaining consistency across regions, accounts, and Virtual Private Clouds (VPCs) as your environment grows.
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Dome9
Published By: Dome9     Published Date: Apr 25, 2018
As of May 2017, according to a report from The Depository Trust & Clearing Corporation (DTCC), which provides financial transaction and data processing services for the global financial industry, cloud computing has reached a tipping point1. Today, financial services companies can benefit from the capabilities and cost efficiencies of the cloud. In October of 2016, the Federal Deposit Insurance Corporation (FDIC), the Office of the Comptroller of Currency (OCC) and the Federal Reserve Board (FRB) jointly announced enhanced cyber risk management standards for financial institutions in an Advanced Notice of Proposed Rulemaking (ANPR)2. These proposed standards for enhanced cybersecurity are aimed at protecting the entire financial system, not just the institution. To meet these new standards, financial institutions will require the right cloud-based network security platform for comprehensive security management, verifiable compliance and governance and active protection of customer data
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Dome9
Published By: Oracle     Published Date: Aug 02, 2018
Enterprise data protection has grown unwieldy, with systems from various vendors claiming to protect all of an enterprise’s data—and none of them doing a particularly good job of addressing mission-critical data recoverability requirements. It’s a situation that introduces risk and raises concerns about IT’s ability to recover in a timely manner and without data loss from outages caused by cybercrime, system failures, or human error. An integrated strategy that focuses on the complete data recovery needs of an enterprise can eliminate data loss, cut recovery times, and reduce IT complexity—while ensuring data security and positioning the enterprise to seamlessly take advantage of the cloud.
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Oracle
Published By: Fortinet EMEA     Published Date: Nov 26, 2018
Most organizations are in the midst of some form of digital transformation (DX), transforming how they bring products and services to the market—and ultimately deliver value to their customers. But DX initiatives also bring complexity for the network operations team. With business-critical services distributed across multiple clouds, this leads to potential performance issues, especially at branch locations. Given these realities, it is no wonder that software-defined wide-area network (SD-WAN) technology is rapidly going mainstream. Unfortunately, SD-WAN is an example of the paradox of DX: transformative technology can potentially move the business to the next level, but the expanded attack surface it creates can expose the organization to significant risk. That is why an SD-WAN deployment, like every other DX effort, should be accompanied by a security transformation (SX) that rethinks outdated principles, broadens protection beyond the data center, and integrates the security archit
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Fortinet EMEA
Published By: Fortinet EMEA     Published Date: Nov 26, 2018
Cloud services are a pillar of a digital transformation, but they have also become a thorn in the side of many security architects. As data and applications that were once behind the enterprise firewall began roaming free—on smartphones, between Internet-of-Things (IoT) devices, and in the cloud—the threat landscape expanded rapidly. Security architects scrambled to adjust their technologies, policies, and procedures. But just when they thought they had a handle on securing their cloud-connected enterprises, new business imperatives indicated that one cloud wasn’t enough. Modern enterprises operate in a multi-cloud world, where the threat landscape has reached a new level of complexity. Security teams are juggling a hodgepodge of policies, threat reports, and management tools. When each cloud operates in its own silo, the security architect has even more difficulty supporting the CISO or CIO with a coherent, defensible security posture.
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Fortinet EMEA
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