Panel Builder System Integrator

September 20, 2019

By Owen Hurst

As the Vice President and General Manager of Schneider Electric’s Secure Power division David O’Reilly draws on his many years of executive experience to lead a national team with the goal of delivering unique energy management solutions.

David is uniquely placed as a result of his many years of executive experience with a variety of Fortune 100 to Fortune 1000 companies to work closely with clients in a variety of fields to ensure they achieve their desired outcome. Panel Builder & Systems Integrator had the opportunity to ask David a few questions about the potential of liquid cooling in data centres, which are rapidly increasing in size and number.

What advantages do liquid cooling options offer, particularly for the largescale data centres that are becoming the norm?

Computing is rapidly becoming more complex, and following suit, chip power densities are increasing in both GPUs and CPUs. Increased power densities translates to more power use and heat production, which demands a larger volume of space for air-cooled heatsinks – an inefficient use of already limited space in a data centre.

Liquid cooling solutions offer a more compact way to manage increased heat in advancing data centres. This allows users to simplify their physical infrastructure, moving away from complex, large air-cooling layouts to simple case-based liquid coolers and radiators. Further, basic liquid cooling solutions rival and outperform even the best air-cooling technology in effectiveness and efficiency, offering long term savings for operators of both large and small facilities.

Are liquid cooling options available to largescale centres as well as smaller data centre operations?

There are several liquid cooling options available today that address both ends of the IT spectrum – from Hyperscale to Edge. These range across several technologies, from immersion cooling to direct-to-chip systems.

Standard liquid cooling systems fit within two fundamental classifications: single-phase, which uses fluid that remains in a liquid state, and two-phase, which uses partial or complete boiling liquid on the hot side and condensed water on the cool side. Adding further flexibility, several types of fluids are available including water, oils, and engineered dielectric fluids.

This white paper, Liquid Cooling Technologies for Data Centres and Edge Application, offers a more in-depth look at the main technologies available today.   

What level of maintenance do liquid cooling options require?

The level of maintenance required for liquid cooling systems will vary depending on how the system is set up. But differentiating it from an air-cooling system requires several tasks, some more complex than others. Periodically, it's important to check fluid chemistry if using water, and other maintenance activities typical to water loop maintenance, such as checking strainers, verifying correct fluid levels, etc.

If a solution uses dielectrics, where the IT equipment is fully submerged, this will require its own maintenance tasks, such as checking the submerged equipment to ensure a proper seal to keep out the liquid.

Are Schneider’s liquid cooling options available for data centres that use enclosures by different manufacturers? How compatible or flexible are the liquid cooling options?

Schneider Electric is working to provide solutions that enable all types of liquid cooling at the edge and in large data centres, both retrofitted and new. For example, one Schneider Electric partner, called Iceotope, is a start-up out of the United Kingdom that provides a chassis-based immersion solution for IT to be integrated in any compatible rack. 

Are there any particular industry segments (healthcare, institutional, manufacturing, etc.) that utilize data centres that have embraced the technology more than others? Are there any segments that are lagging behind?

High performance computing has been using different forms of liquid cooling for many years. For example, block-chain mining has recently deployed liquid cooling to improve efficiency, while hyperscale operators are deploying liquid cooling in small scales for GPU accelerated applications and are now investigating deployment at a larger scale.

Unique applications such as harsh environment and light industrial are expected to leverage liquid cooling as immersion technology removes the delicate fans of an air-cooled system and seals the rack completely.

Finally, any segment that will use AI or GPU intensive applications like machine learning will likely look to adopt liquid cooling due to GPU’s higher power densities. Meanwhile, we expect to see enterprise data centres lag in adoption as generally, enterprise data centre operators are slower to adopt new technologies until its success has been proven over time.

What type of physical space requirements are necessary for liquid cooling options?

With liquid cooling, users can recognize compaction within the white space, where the equipment is installed, through modest reduction in the gray space, or back end. Compact liquid cooling systems allow for a reduction of space taken up both by the visible racks, the supporting infrastructure, and the outdoor heat rejection space, reducing the necessary footprint of the entire facility and allowing for a more efficient use of space.

What type of liquid is primarily utilized for liquid cooling and is this an environmentally friendly option?

At a high level, for immersed technology, there are two main categories of fluids: Hydrocarbon based (oil based), and engineered fluids that are PFC based, both coming in many variations depending on manufacturer. All are typically non-toxic, but some oil-based fluids can have flash point & flammability issues. Meanwhile, some engineered fluids can have high Global Warming Potential (GWP), but this is typically mitigated by minimizing release to the atmosphere during operation and maintenance.

In both cases, the cooling may be broken down into two segments: smaller volumes of engineered fluids or oils used in proximity to the IT, and larger volumes of water used to transport thermal energy outdoors.

For direct to chip technology, many systems deliver water directly to a cold plate on the chip. This process involves running water contacting the plate, drawing the heat away from the chip as it circulates. Water is the best option for costs and environmental purposes, however cold plate applications suffer a slow adoption rate due to fear of system leaks, and often only remove 50 – 80% of the IT heat, compared to nearly 100% with a submerged system.

How have liquid cooling options for data centres progressed since they were first introduced? As technology in general becomes smaller in size, including data storage technology, are liquid cooling options following a similar trend?

Liquid cooling has been around for decades. IBM mainframes in the late 1970s through early 1990s used dedicated precision chillers to support cooling during compute loads. Looking at current generations, we’ve become much more efficient, using warmer water that is cooled by simply using water-to-air radiators ejecting heat directly to ambient air, eliminating the cost-intensive cooling equipment of the past.

The concept has evolved over time as well, introducing immersion cooling. This practice submerges the entire server, capturing almost all heat released by the electronics in the water circuit, keeping the facility overall much cooler and more efficient.

Overall, liquid cooling systems have followed the technology they are applied to. We expect this trend to continue as IT technology continues to shrink, as liquid cooling systems have proven more than capable of handling the compaction happening with IT equipment and storage.

Changing Scene

  • Prev
Hammond Power Solutions (HPS) is proud to announce the release of their newly redesigned website. ...
The Canadian Apprenticeship Forum-Forum Canadien sur l’Apprentissage (CAF-FCA) has announced ...
Intertec Instrumentation is launching a range of tough field enclosures for housing remote I/O and ...
nVent Electric plc recently announced it has signed an agreement to acquire Eldon, a privately held ...
Canada continues to be an excellent performer for HARTING, recording double digit revenue growth on ...
  For the past number of months Proax Technologies Ltd. has been in discussions with ...
  Phoenix Contact Canada is pleased to announce that Roger Hallett has accepted the ...
  Machine designers are required to design safety into more industrial systems than ever. ...
Pilz Canada officially opened their Canadian Facility surrounded by Industry Partners, colleagues ...
Allied Electronics & Automation has announced the addition of the new TM Series of ...

One of Canada’s largest wastewater treatment plants at Annacis Island provides secondary treatment to approximately 175 billion litres of wastewater every year for over 1 million residents in 14 municipalities. After almost 20 years in operation, the variable frequency drives supporting the critical pumping systems for the primary treatment and secondary treatment facilities had to be replaced to ensure that the plant’s high operational availability and reliability will not be compromised in serving the plant, the surrounding municipalities and the environment. Metro Vancouver Regional District chose to deploy Rittal’s enclosure and power distribution solutions with E-plan software to efficiently support vital infrastructure improvements by reducing equipment replacement times and thereby minimizing risk to plant operations.

PB 25 Phoenix ControlCabinet 400

Phoenix Contact will provide you with support as your reliable partner in the optimization of your processes in control cabinet manufacturing.

Phoenix Contact provides you with holistic solutions in a cooperative partnership, based on their products, services, and experience. Digital data is used consistently, processes optimized, and time saved. The PROJECT complete planning and marking software supports your entire control cabinet manufacturing process. The program provides you with an intuitive user interface that enables you to individually plan, automatically check, and order terminal strips.

Thanks to optimized interfaces, you can easily integrate data from common CAE systems. This enables you to save significant amounts of time in the overall engineering process. Read More


 Like many cyclical industries, mining is reviving, driven by steady global economic growth and an increasing demand for materials to support new technologies like electric vehicles, renewable energy and mobile devices. Despite the optimism, the industry still faces major operational challenges including process efficiencies, cost control, worker health and safety, and skills gaps. To address these challenges, Rockwell Automation introduced The Connected Mine, leveraging the latest enabling and digital technologies.

Utilizing advanced analytics, The Connected Mine helps mining companies collect and aggregate data to gain end-to-end visibility into their operations and make informed business decisions to improve mining operations.

Read More

PB 25 Rittal MarineWaves 400For almost a half a century Canal Marine & Industrial of St Catharines, Ontario has provided electrical design, engineering and services around the clock to the merchant marine, naval and coastguard fleets in Canada and the rest of the World. In recent years, Canal has become a leader in the design and supply of marine hybrid power and propulsion systems. These systems utilize alternative methods for supporting propulsion and the vessel’s electrical power plant, so that fuel consumption and emissions are reduced.

Great Lakes Towing of Cleveland, Ohio (popularly called “The Towing Company”) operates the largest and most experienced U.S.-flag tugboat fleet. The Towing Company is a significant marine operations link in North America’s U.S. Great Lakes-Saint Lawrence Seaway marine transportation network, the fourth seacoast of the United States, an operating area that extends over 8,300 miles of shoreline, encompassing a water surface area of roughly 100,000 square miles. Read More

HARTING Electronics: Circular Connectors – A Round Thing

Circular Connectors 400

Jonas Diekmann, Technical Editor at HARTING Electronics

The metric system of units was introduced for the first time in 1793 during the French Revolution and is used even today in almost all countries worldwide. The metric round plug connectors are also based on this system of units and are a known standard in raw industrial applications. In various diameters and codes, they are a reliable connection for the three lifelines of industrial applications. Data, signals and performance are essential for drive, control and communication. The typical round appearance with the thread for screwing in is a success story up to the present. But classics often also still reveal unexpected potential. With its new PushPull Locking and Com-Lock HARTING is making two round guild models ready for the future.

Metric round plug connectors are some of the most widespread interfaces worldwide, when it comes to cabling for machines, industrial plant and devices under demanding conditions of use.

Read More

Rockwell SleemanTen years ago, tourists looking for a taste of the local life in Southern Canada may have asked for one of the region’s best wines. Today, it’s all about craft beer.

From entrepreneurial newcomers to large-scale producers, brewers in Canada are cashing in on the thirst for craft beer. The number of microbreweries – ­producing less than 25,000 cases of 24 – has more than doubled in the last seven years.

The explosion in craft beer popularity had one company – Sleeman Breweries – bursting at its production seams. The third-largest brewer in Canada, Sleeman brews and distributes popular beers from lagers to pale ales.

 Read More

 

Product News

  • Prev
The NITRA pneumatic AC Series of coalescing air filters from AutomationDirect allows finer removal ...
The smallest robot controller in its class, the ultra-compact YRC1000micro minimizes installation ...
Introduced specifically for manufacturers branching out into robotics, the new Smart Series suite ...
Yaskawa Cockpit is a new software platform that monitors, accumulates and visually delivers ...
The next generation of robot programming, Smart Pendant radically changes the way a robot is ...
Ideal for high-speed assembly and handling applications, the GP7, GP8 and GP12 robots are fast, ...
Featuring power and force limiting technology, Yaskawa Motoman’s HC10 and HC10DT robots work safely ...
With the free, PC-based Festo Automation Suite commissioning software, getting a new drive package ...
The new CU81xx uninterruptible power supply (UPS) series is designed for universal use in the ...
Acknowledging the ix Industrial connector, the HARTING Technology Group has been awarded this ...
Kerrwil Publications

538 Elizabeth Street, Midland,Ontario, Canada L4R2A3 +1 705 527 7666
©2019 All rights reserved

Use of this Site constitutes acceptance of our Privacy Policy (effective 1.1.2016)
The material on this site may not be reproduced, distributed, transmitted, cached or otherwise used, except with the prior written permission of Kerrwil