Showing posts with label data center colocation services. Show all posts
Showing posts with label data center colocation services. Show all posts

Monday, December 30, 2019

Why Put Colocation Providers at the Center of Your Cloud Strategy

colocation service providers

As your business’ cloud strategy evolves to meet changing needs in the digital age, leading colocation providers have also evolved to respond to meet those needs. Colocation use continues to grow because leading providers are increasing their integrated solution offerings in ways that change the use dynamic from “cloud or colocation” to “cloud and colocation.”

We can trace this change to the continued growth of hybrid and multicloud strategies making up a crucial part of the framework of digital business needs evolution. The growth is most apparent in Gartner’s prediction that over 75 percent of midsize and large organizations will have adopted either a multi-cloud or hybrid-cloud strategy by 2021.

Some things remain constant in a business’s evolving cloud strategy. An example is the highly predictable workloads with consistent utilization benefiting from lower operating costs in a colocation data center.

On the other end of the spectrum are workloads and applications that are constantly evolving in terms of access, storage, compute, and security needs where a private cloud may be more helpful. Even public cloud workloads can evolve to where it cost more to use public cloud storage than to house them in private cloud storage.

Since most businesses are looking for ways to get out of the data center ownership business, colocation provides the flexibility of need with these evolving workload cost, security, and access structures. Colocation providers have evolved to deliver cost-effective private cloud options and management services to take the Capex and operational burden off IT and the organization.

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Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Friday, September 1, 2017

ALGORITHMS: SCARY SMART AND SOMETIMES JUST PLAIN SCARY

Algorithms, complex mathematical equations designed to solve problems or perform a task, automate much of the technology that makes smart cities smart, from intelligent public transportation and traffic management to smart electrical grids and water usage. Algorithms are also a fundamental tool in transforming Big Data, first into useful analytics, and eventually into action. More on that later.


Data centers and colocation facilities, the pillars of smart cities, are replete with examples of the use of algorithms. Data Center Infrastructure Management (DCIM) tools predict cooling issues based on algorithms built from temperature pattern models. There are load balancing algorithms, which play an important role in distributing network or application traffic across servers, thereby dynamically improving the efficiency of computing resources. And there are smart storage algorithms, which process requests for video and other rich media, and hold the promise of reducing energy use for enterprise-level storage area networks by 20 to 50 percent.

The world’s first and eponymously-titled Euclidean algorithm came to us in 300 B.C. and is still used by computers today. In fact, without algorithms, there would be no computer operating systems, no World Wide Web, and no Google with which to Google “algorithms,” much less the name of that actress who starred in that movie with that guy.

Okay, so now we have your attention.

Getting Too Personal

Today, algorithms are increasingly affecting our personal and professional lives in ways that we can’t imagine or might even find unsettling. Consider the algorithm created by the analytics team at the U.S. retailer Target, which could calculate whether a woman is pregnant and even when she is due to give birth.

In a nutshell, Target, like every retailer, stores a history of every item their customers have bought and any demographic information the company has collected from them. Target analyzed this information against historical buying data for all the women who had ever signed up for its baby registries. The analytics team then created an algorithm that identified 25 products — from unscented lotion to supplements such as calcium and zinc to oversized purses large enough to double as a diaper bag — which, when collectively analyzed, assigned each shopper a “pregnancy prediction” score. More importantly, for direct marketing purposes, its algorithm also estimated a woman’s due date, so that Target could send coupons to customers’ homes timed to specific stages of pregnancy.

And what could be the harm in that? Pregnancy, birth, an impending bundle of joy? Well, some women, families, and especially, teenagers, preferred that their pregnancies remained private. But Target’s predictive algorithm-based marketing hadn’t factored that very human element into their campaign, and trouble ensued.

Every Digital Breath You Take

And then of course there is the U.S. National Security Agency’s XKeyscore program, which was one of the covert projects revealed by Edward Snowden. You may never have heard of XKeyscore, but it definitely has heard of you.

XKeyscore collects every digital breath you’ve ever taken on the Internet, including browsing history, Google searches, the content of your emails and online chats, and at the tap of the keyboard, can process that data through an algorithm to identify potentially subversive activity. The NSA’s own training materials identified XKeyscore as its “widest reaching” system for developing intelligence from the Internet.  Click here to visit original source....

Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Friday, June 30, 2017

Telehouse Green: How Green Is My Cloud?

Telehouse-Green-Cloud

UNDERSTANDING THE ENERGY EFFICIENCY OF CLOUD-BASED COMPUTING
Forrester estimates that worldwide spending on Public Cloud computing services will grow to $160 billion in 2020, a 22 percent annual growth rate from just five years ago. And it’s not just Public Cloud that is experiencing a spike, but Private and Hybrid Cloud usage too.
Among enterprises with 1000 or more employees, Private Cloud adoption increased from 63 percent to 77 percent, and Hybrid Cloud rose from 58 percent to 71 percent from 2015 to 2016, according to RightScale’s 2016 State of the Cloud survey. Enterprises that use the Cloud are, on average, leveraging three Public Clouds and three Private Clouds, each.
Businesses are increasingly opting to switch from internal resources to cloud-based computing to enjoy benefits such as faster scalability of capacity, pay-as-you-go pricing, and access to cloud-based applications and services without the need to purchase and manage expensive on-premises infrastructure.
But whether you’re considering a Public, Private or Hybrid Cloud configuration, as-a-service computing offers another distinct advantage over on-premise alternatives: It’s comparatively greener. A study by Accenture found that for large enterprise firms, Cloud adoption can cut energy use and carbon emissions by 30 to 60 percent in comparison to on-premise IT infrastructures. And for mid-sized firms using the Cloud, carbon emissions and energy consumption can be reduced by as much as 60 to 90 percent.
Let’s examine why.
Green That Is Virtually Self-Evident
Some of the reasons why cloud-based infrastructure is greener than on-premises equipment are…well…virtually self-evident.
Virtualization, the definitive technology at play, enables a single physical server to run multiple operating system images simultaneously. Through consolidation, server virtualization reduces the total physical server footprint. Less servers mean less power consumed and a reduced carbon footprint. Also, when less equipment is required to run workloads, this reduces data center space, and with less physical equipment plugged-in, a facility will consume less electricity.
It’s interesting to note that virtualization is nothing new. In fact, IBM pioneered the concept in the 1960s, but its potential has only been fully realized with the advent of modern data center and server technologies. Visit here for original source….
Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Telehouse for Technophiles: Can Your Data Center Survive the Next Big Earthquake?

A Look at Disaster Preparedness in Los Angeles-Based Data Centers
The ground shook violently, car alarms shrieked and retail boutique windows shattered across the busy sidewalks of Hollywood Boulevard. On January 17, 1994, a 6.7-magnitude earthquake struck just 20 miles west of Los Angeles, producing the strongest seismic disturbance ever recorded in a North American city. This was the costliest natural disaster to strike the United States at the time, causing billions of dollars of structural damage and economic loss, and severely damaging hundreds of buildings throughout the Los Angeles metro area, including skyscrapers, hospitals, stadiums and apartment complexes.
Data-Center-Disaster-Preparedness.jpg
Positioned along the San Andreas Fault, California experiences 10,000 earthquakes on average every year, according to the United States Geological Survey. While most are mild enough to go undetected by the general public, roughly 15 to 20 of these earthquakes reach a magnitude greater than 4.0, thereby exposing vulnerable structures to significant damage.
In California, earthquakes aren’t a seasonal threat like hurricanes, but can strike at any time without warning. Experts predict there is a 67 percent chance of an earthquake with a magnitude of 6.7 or greater striking Los Angeles within the next 30 years.
Disaster Recovery Planning is the Key to Business Continuity
Faced with an earthquake, a company’s information may not be irretrievably lost, but without access to critical data like customer and financial records, its business operations likely won’t be able to withstand the event. An earthquake of high magnitude can easily disable an enterprise data center or colocation site through damage to the structure of the building, equipment, its ability to access power, or the many connections established within the facility.
Data center operators, particularly those in California, must have an adequate disaster recovery plan to mitigate the threat of downtime during an earthquake. Disaster preparedness in seismic-sensitive regions requires a combination of virtual and physical safeguards to ensure the facility’s continued operations. Secondary, offsite backups are a common way for data centers to prepare for disaster. By replicating data in the cloud, data center operators eliminate a single point of failure, ensuring that mission-critical information remains fully accessible. Continue reading from original source….
Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Tuesday, June 20, 2017

Disaster Recovery Solutions and Colocation Facilities Are Critical to Protecting the Data of Smart Cities


According to Gartner, the technology research and advisory firm, this year, an estimated 2.3 billion connected things will be used in smart cities, which includes major metro areas such as New York, London and Tokyo. That projection represents a 42 percent increase in the number of connected devices since 2016.
Rapid urbanization has mandated the need for smart city solutions. Experts worldwide point out that smart cities will be the future enablers in accelerating economic growth and improving the quality of life of metropolitan citizens. As we will learn later in this blog, because colocation facilities and data centers provide the backbone of smart city infrastructure, having viable disaster recovery solutions in place will become essential not only to smart, public services but for maintaining public health and safety.
Smart cities rely on interconnected devices to streamline and improve city services based on rich, real-time data. These systems combine hardware, software and geospatial analytics to enhance municipal services and improve an area’s livability. IoT-enabled sensors, for example, can reduce the energy expended in street lights or regulate the flow of water to better preserve resources.
But with the global IoT footprint expected to surpass 50 billion connected devices by 2020, smart cities will need to strengthen disaster recovery methods for both unexpected natural and man-made incidents that would adversely impact their ability to rely on accurate data to properly function. While we don’t like to think about it, some of the world’s smart cities are in low-lying coastal areas that are prone weather-related emergencies, such as flooding, or are situated on grids whose history suggests the possibility of future outages. Also, unfortunately, there is the ever-present threat of cyberattack and the destruction or sabotage of physical infrastructure.
To look at but one real world scenario, if hackers targeted a smart city’s Supervisory Control and Data Acquisition (SCADA) system, which some cyber defense experts claim are susceptible to intrusions due to poor security protocols, they could potentially shut down multiple city services from a single entry point and threaten public health and safety.
For this reason, and as more and more cities around the world adopt smart initiatives, it becomes mission-critical to make data security a priority. Just as public utilities such as power, gas and water are physically protected and secure, smart city planners need to secure data by implementing failover and backup in all systems and networks extending to the data centers that form the key infrastructure for providing IoT-enabled services. Disaster Recovery preparedness, which starts with accessible data backup, is the foundation of business and smart city continuity. Continue reading from original source….
Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Monday, May 22, 2017

TELEHOUSE TUTELAGE: EDGE COMPUTING IN THE ERA OF IOE

Micro Data Centers and Colocation Providers Will Enable a Future of Ubiquitous Connectivity

Driverless cars, drone-powered product delivery, and remotely monitored, environmentally controlled doghouses are but a few examples of the wondrous Internet of Everything. For the uninitiated, the Internet of Everything, or IoE, builds on the foundation of the Internet of Things (IoT) by adding network intelligence that allows convergence, orchestration and visibility across previously disparate systems. As we will learn further on, both micro data centers and colocation providers will play an integral role in enabling a future of ubiquitous connectivity.

One can envision the IoT as the equivalent of a railroad, including the tracks and connections, whereas the IoE is the railway line, as well as the connected trains, rail weather monitoring systems and sensors, departures and arrivals board, and even staff and customers. The Internet of Everything connects all these separate “things” into one cohesive whole, enabling these IoT-enabled devices and connected humans to communicate and share data with each other in real time.
Metaphors aside, the enormity of on-demand connectivity, compute, networking and storage necessary to enable the IoE will be challenging. Research firm Gartner forecasts that 8.4 billion connected things will be in use worldwide by the end of the year, up 31 percent from 2016, and reach 20.4 billion by 2020.
Considered a direct outcome of the growing interest in IoT and IoE, edge computing brings bandwidth-intensive content and latency-sensitive applications closer to the user or data source. With edge computing, IT professionals can provide data processing power at the edge of a network instead of maintaining it in a Cloud. Because of the need for high-speed computing — which, for example, would be critical for a driverless car to be able to stop for traffic signs and avoid fender benders — edge computing is considered more reliable than Cloud computing.
While much information will still be uploaded and processed through the Cloud, some applications will demand ultra-fast access to data, requiring the use of physical infrastructure that is closer to the edge versus where the data is centrally stored. However, as information is exchanged between more local and centralized data center facilities, one must consider the challenges that will emerge as a consequence. These include possible service disruption as well as latency and network reliability issues.
The reality is that to enable the IoE many organizations will deliver specific IoT applications and services from a variety of data centers ranging from smaller in-house networking facilities to large colocation data centers. And this will have implications for the overall levels of resilience and security that will be expected.
Large data centers and colocation facilities have the highest standards for such functions as data backup, failover systems and physical security. Backups are performed regularly and there is ample storage and server redundancy, enhanced by virtualization, in the event of equipment failure. Highly redundant power and cooling systems are de rigueur, and physical security is strictly enforced to ensure no unauthorized access. Click here to visit original source...
Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Tuesday, May 16, 2017

TELEHOUSE GLOBAL SPOTLIGHT: OTT VIEWERSHIP IS FAST BECOMING OVER THE TOP

Colocation Provides a Solution to OTT Performance


Over-the-Top (OTT), in telecom parlance, refers to an app or service that delivers content such as streaming video and audio over the internet rather than traditional cable or satellite distribution. According to the 2017 OTT Video Services Study conducted by Level 3 Communications, viewership of OTT video services, including Netflix, Hulu and Amazon Prime, will overtake traditional broadcast TV within the next five years. Meanwhile, Juniper Research predicts that the global OTT market will increase to $18 billion in 2019, up from $8.5 billion just three years ago.

Additionally, it’s worthy of note that the audience for OTT content is growing not only in total viewership and revenue, but geographically. Last year, Netflix tripled its global reach by expanding into an additional 130 countries as the video streaming service took its most aggressive step yet in its plans for international growth.

The reason for the surge in OTT viewership lies in immediate gratification: People want what they want when they want it. OTT allows viewers to consume content whenever and wherever they desire on their preferred device. Particularly for millennials, appointment TV is now widely considered a legacy entertainment model.

Supporting the increasing volume of streaming video requires solutions to the hosting, delivery, bandwidth and performance challenges that all too frequently frustrate the Quality-of-Service and experience of online video viewers. Whether at the source or along the last mile, insufficient bandwidth creates interruptions that result in dreaded buffering pauses. Content providers address bandwidth challenges by compressing data and bringing content closer to users by placing the data on edge servers in strategically located data centers and colocation facilities around the world. However, in order for OTT players to successfully reach their audience, it’s critical to collocate within data centers capable of providing low-latency connectivity to end users throughout their target geographic regions. Click here to visit original source...


Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Thursday, April 13, 2017

TELEHOUSE GLOBAL SPOTLIGHT: SOFTWARE-DEFINED NETWORKING AND THE DATA CENTER

Enhancing Connectivity for the Globalized Economy

Global Data Centers

As enterprises both large and small become increasingly globalized, expanding their businesses across cities, countries and even continents, their networks must grow with them. Software-Defined Networking addresses the fact that the static architecture of conventional networks has become ill-suited to the computing and storage needs of today’s global data center environments and the organizations they serve.

Software-Defined Networking (SDN) is an emerging architecture that is adaptable, manageable and cost-effective, making it ideal for the dynamic, high-bandwidth nature of today’s applications. This architecture decouples the network control and forwarding functions, enabling the network control to become directly programmable, and the underlying infrastructure to be abstracted for applications and network services. SDN facilitates the deployment of applications that make it easier for a widely-dispersed, global workforce to communicate and collaborate with each other.

Some of the key computing trends driving the need for SDN include the rise of cloud services, Big Data, and the Bring Your Own Device (BYOD) trend. Moreover, applications that commonly access geographically distributed databases and servers through public and private clouds require extremely flexible traffic management and access to bandwidth on demand – something that SDN delivers. SDN restores control of the network to the network administrator, enabling a company to scale its network based on its own considerations, rather than based on existing vendor solutions. It provides more flexibility in configuring network traffic flow, better monitoring and smoother removal of inefficiencies and bottlenecks that would affect performance. Visit Original Source...


Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Wednesday, April 12, 2017

TELEHOUSE FOR TECHNOPHILES: THE LINK BETWEEN CLOUD ADOPTION AND CONNECTIVITY

How Surging Cloud Use is Making Connectivity a Differentiator for Data Centers

Telehouse Cloud Adoption

It’s safe to say that the global tech forecast is cloudy, and getting cloudier.

Consider this: According to the Cisco Global Cloud Index, global IP traffic will account for more than 92 percent of total global data center traffic by 2020.  In addition, cloud data center traffic for consumer and business applications will grow at a Compound Annual Growth Rate (CAGR) of 30 percent over the next three years, and 68 percent of cloud workloads will be processed by public cloud data centers – a 49 percent increase from 2015.

This migration to cloud computing can largely be attributed to performance-driven enterprises’ growing use of cloud-based applications. In one recent study conducted by Skyhigh Networks that surveyed various IT decision-makers, 79 percent of respondents claimed that they receive regular requests from end-users each month to buy more cloud applications. Among these applications, communication and collaboration via video, file and content sharing, and social media topped the list of the most frequently requested capabilities. Original source...


Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA
Zip Code: 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Wednesday, February 22, 2017

TELEHOUSE FOR TECHNOPHILES: THE BRAIN IN THE MACHINE

How Data Centers Are Using Deep Learning

Machine and deep learning, which emerged from Artificial Intelligence (AI), the theory and development of computer systems that can perform tasks normally requiring human intelligence, mimics activities in layers of neurons in the neocortex, the area of the brain where thinking occurs. Deep learning software can be programmed to recognize patterns in digital representations of sounds, images and other data. In fact, machine intelligence is transforming the future of everything from communications to healthcare, and from manufacturing and transportation to advanced robotics. Writers and filmmakers such as Arthur C. Clarke and Stephen Spielberg have foretold of a brave new world where AI will take one day influence every waking aspect of our personal and professional lives.

Science-fiction aside, machine learning is already well-established in our everyday world, from your faithful companion Siri to facial recognition programs to language translation. But it can also help to tackle some of the world’s most challenging industrial problems, such as rampant energy consumption that adversely impacts the environment. Large-scale commercial systems, including high performance data centers, consume a lot of energy, and while much has been done to mitigate energy usage in enterprise and colocation facilities, deep learning can do much more to manage the world’s increasing need for high performance computing power. Curious to know more view original source...


Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Wednesday, February 8, 2017

TELEHOUSE FOR TECHNOPHILES: TOURING THE DATA CENTER OF THE FUTURE

What Will Data Centers Look Like in 2017 and Beyond?

In previous Telehouse for Technophiles blogs, we’ve looked at present-day, advanced technologies affecting the data center, such as adiabatic cooling, the increased usage of Deep Machine Learning and the proliferation of Big Data analytics. But what changes can we anticipate in 2017 and beyond?

Let’s explore various predictions concerning design, operational and technological advances in the data center, as well as some of the market drivers that we can expect will influence the industry in the coming year and into the future.
TELEHOUSE FOR TECHNOPHILES: TOURING THE DATA CENTER OF THE FUTURE


Introducing the Skyscraper Data Center

Eschewing current designs in which data centers are low and sprawling, two European architects, Marco Merletti and Valeria Mercuri, have proposed a data center rising 65-stories tall. While only in the blueprint phase, the futuristic, tower-like structure would feature sustainable technology to cool hundreds of thousands of servers and be powered by geothermal energy and hydropower. The data center’s cylindrical design would create a chimney effect whereby the hot air inside the tower goes up and sucks the cold air from the outside, and the outside cold air would reenter through servers arranged in pod units that would cool naturally. Curious to know more view original source...


Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Monday, January 16, 2017

Telehouse for Technophiles: Robots Enter the Data Center


Robots Promise Energy and Operational Cost Reduction

The word ‘robot’ was first heard in a 1920 Czechoslovakian theater production to describe human-like machines that were created to work in a factory. Thereafter, including Fritz Lang’s 1927 sci-fi masterpiece, “Metropolis,” with its female robot ‘Hel,’ to Steven Spielberg’s 2001 movie, “A.I.,” and its Mecha, advanced androids capable of emulating human thoughts and emotions, to Arnold Schwarzenegger’s “Terminator” franchise, robots have appeared in films, on television and in literature as agents of good and evil.

While the definition of the word robot means “drudgery” or “hard work” in Czech, organizations today are applying robotics to specialized data center applications in an effort to eliminate the sweat, cost and toil associated with day-to-day facility administration.

The biggest business driver to deploying robotics in the data center is the need for greater levels of efficiency. Companies are always looking for ways to make their IT infrastructures more agile and less costly, and robotics has been identified as a means to add more automation to achieve these goals. Additional potential benefits include IT staff head-count reduction, improved security and the increased accuracy of monitoring that automation brings. Click here for more details.


Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Web: http://www.telehouse.com/
Email: gregory.grant@telehouse.com

Tuesday, January 10, 2017

Telehouse Green: Any Way the Wind Blows

Data Centers are Harnessing the Power of Wind Energy


More than eight million data centers exist around the world, using upwards of 30GW of energy each year, an amount that is steadily increasing. A study by the National Resource Defense Council (NRDC) revealed that if planet’s data centers were a country, they would represent the world’s 12th-largest consumer of electricity, ranking somewhere between Spain and Italy.
The carbon footprint of a mid-sized, 10 MW data center can range from three million to over 130 million kilograms of CO2, according to Green House Data. However, the good news is that this environmental impact can be significantly reduced through the adoption of renewable and sustainable energy resources, such as wind energy.
According to Data Center Knowledge, the generation of power through on-site wind turbines has gained traction across the data center community over the past few years. The latest AFCOM State of the Data Center survey showed that 34 percent of respondents have either deployed or are planning to deploy a renewable energy source for their data center, of which half are or will be using wind energy. As a testament to its effectiveness, various hyper-scale organizations including Microsoft, Google and Apple are now relying upon wind energy as a source of power at some of their facilities.
View Original Sourcehttp://www.telehouse.com/2017/01/any-way-the-wind-blows/
Contact Details:
Telehouse America7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Web: www.telehouse.com
Email: gregory.grant@telehouse.com

Friday, January 6, 2017

Telehouse, The Human Element: Speaking Truth to Power

Dave Kinney, Director of Facility Planning and Operations at Telehouse, on PUE

According to the Natural Resources Defense Council, data centers throughout the U.S. are projected to consume 139 billion kilowatt-hours by 2020, placing a major strain on natural resources as well as facilities’ bottom line. To avoid excessive consumption of energy, data center owners and operators utilize Power Usage Effectiveness (PUE) as a key metric for the design and construction of an efficient facility. PUE gauges the ratio of energy entering the facility compared to how much power is actually consumed by IT equipment. This equation provides a window into the building’s overall efficiency and highlights areas for potential improvement.
Insider Perspective
We recently had the opportunity to sit down with Dave Kinney, Telehouse America’s Director of Facility Planning and Operations, to discuss the importance of PUE as a tool for implementation of energy-efficient best practices throughout the data center. During this interview, Mr. Kinney shared his experience using innovative design and advanced technologies that can increase a facility’s PUE, and how the pursuit of an ideal rating can generate significant reduction in energy expenses.
“Measuring PUE allows you to gain a more in-depth perspective of a building’s performance and opens the door for cost-savings opportunities,” explained Mr. Kinney. “It’s a simple concept: the better your PUE, the more you save on your monthly energy bill by minimizing wasted power resources.”
While owners and operators can certainly benefit from a lower PUE score, this metric is also a key consideration for colocation tenants leasing server space within a facility.
Contact Details:
Telehouse America
7 Teleport Drive, Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com