ADVERTISEMENT

Subscribe to the PowerPulse Newsletter

Conferences and Forums

Darnell's Energy Summit

Darnell's Power Forum

Green Building Power Forum

Smart Grid Electronics Forum

Industry News

March 7, 2013

25kW of Philips LED Technology Helps Shine Light on Bay Bridge as Sustainable Art

In a shining example of public-private partnership, The Bay Lights, the new LED lighting system for the Bay Bridge that was developed by Philips Color Kinetics, was turned on for the first time yesterday evening. Fulfilling the brainchild of Ben Davis, chairman of Illuminate the Arts (ITA) and the vision of acclaimed artist Leo Villareal, the bridge will become a one-of-a-kind lighted sculpture for the next two years. Installed with the support of the California Department of Transportation (Caltrans), the bridge is expected to be viewed by over 50 million people and bring nearly 100 million in revenue to the local San Francisco economy. The new LED lighting system uses 85 percent less energy than traditional lighting technologies, energy that will be offset by dedicated solar panels set up in Davis, CA by CleanPath.

Recommended: Bosch Claims First Sub-$450 240V EV Charging Station

Villareal, creator of The Bay Lights, is a pioneer in the use of LED lights and computer-driven imagery using Philips Color Kinetics eW Flex SLX product in 4200 Kelvin correlated color temperature (neutral white color) for the Bay Lights project. Powered by 24-Vdc, eW Flex SLX is a versatile strand of individually-controllable white light LED nodes. Each node consumes a maximum of 1W at full brightness. The complete installation of 25,000 nodes has a maximum power rating of 25kW at full brightness.

ADVERTISEMENT

Philips Color Kinetics worked with Villareal to create custom spacing between the nodes to accommodate his design. In the end, almost 4.5 miles of product was installed on the bridge, roughly equal to the total length of the Bay Bridge, counting both spans. The lighting will be viewable from San Francisco and points north, but not by drivers crossing the bridge.

Related: Amorphous and Tape-Wound Cores, SMD Capacitors and Rugged Connectors at PCIM

Turning the bridge into a monumental light sculpture is a unique application of LED lighting technology that sets the Bay Bridge apart. Villareal networked 25,000 of these LED nodes to create complex algorithms and patterns across the bridge's western span. These patterns dynamically recombine themselves over the two-year duration of the installation, transforming the bridge into a living piece of art which organizers believe to be the world's largest LED light sculpture.

"Using Philips LED technology really gives me the creative flexibility I need to bring this bridge to life and fulfill my vision," says Leo Villareal. "This isn't about just lighting another bridge with white or colored light. The Bay Lights emphasizes the use of ‘intelligent' lighting, fully utilizing individual control and the ability to create 255 levels of brightness per node. The custom software I have created allows for the creation of ever changing patterns site specifically created for this location with the goal of producing a work of art."

Opinion: Maximising Synergies between Power Electronics and ICT for improving Energy Efficiency

"The Bay Lights is a prime example of how LED technology can create meaningful value for a community in an environmentally friendly way," said Bruno Biasiotta, CEO and president of Philips Lighting Americas. "As lighting and technology converge, we push the boundaries of how we interact with light and start to see the art of what is possible. Through the tireless work of ITA, Leo Villareal and CalTrans, the residents of San Francisco will have a stunning new piece of artwork that honors the city's devotion to the arts and inviting visitors to see what else this fantastic city has to offer."

Share this story

Send via E-mail
Post to Twitter

On the Web:

Philips Color Kinetics
The Bay Lights

Related Stories

ADVERTISEMENT

White Papers

March 11, 2013

Power Modules for Charger Applications

Sponsored by Vincotech

February 27, 2013

The Adaptive Cell Converter Topology Enables Constant Efficiency Over Universal Input AC Line in Front-End, High-Density Power Factor Correction Applications

Sponsored by Vicor Corp.

February 27, 2013

From 48 V direct to Intel VR12.0: Saving "Big Data" $500,000 per datacenter, per year

Sponsored by Vicor Corp.

More White Papers

Most Popular

Design Features

October 22, 2012

Energy Efficiency with Class D Amplifier Modules

Class-D switching amplifiers are helping audio designers create personal multimedia devices and home audio/visual systems that demonstrate how compact and stylish equipment can also deliver high sound quality and high audio output power. The key to this breakthrough, providing freedom from the large and bulky boxes housing traditional audio products, lies in the class-D amplifier’s high energy efficiency, which is typically around 90%. This allows designers to reduce or eliminate heatsinks as well as using smaller-sized PCBs and smaller components such as transformers, connectors and power supplies.

Read this paper

Design Features

October 8, 2012

The Role of Hall Effect Sensors in Power Distribution Infrastructure

Power distribution units (PDUs) form an essential part of modern computing and data communications hardware. They provide multiple outputs for transferring electrical power with maximum efficiency, controlling the power capacity and safeguarding against the possible causes of supply interruption. With an ever increasing need from tech savvy consumers for higher data throughput and greater quantities of data storage capacity, as well as tough international legislation now governing CO&sub2; emissions, the demands being placed on these units are proving challenging for engineering teams to satisfy.

Read this paper

Product Focus

August 13, 2012

The Year in AC-DC Power Supply Technology

The past year witnessed significant new product releases, technological developments, and industry news related to the field of AC-DC Power Supply technology.

Read this paper

Read More Technical Features

 

©2013 Darnell Group Inc.