Friday, May 2, 2014

Hot Picks of the Week April 28-May 02






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Thursday, May 1, 2014

LED Program Helps Poultry Farmers Cut Costs




Hill has raised roaster and broiler chickens on her Lewes, Del., farm since 1979. She is now using LEDs in two of her poultry houses and watched lower lighting costs boost her bottom line. “It’s definitely worth the electrical savings,” said Hill, whose first experience with LEDs began with a controlled test she conducted for Delaware Electric Cooperative in 2012—a program the co-op will expand this year.

During the pilot test, the co-op installed separate meters for lighting in two of Hill’s poultry houses. LED bulbs were installed in fixtures in one, while incandescent bulbs were used in the other. Each house typically needs between 15 and 24 hours of illumination during a growth cycle.


LED technology being used in ceilings, carpets




LEDs no longer are just light bulbs. They’re now starting to appear as a built-in feature for ceilings – an advance predicted 50 years ago by science fiction writer Isaac Asimov. These tiny light-emitting diodes, often touted as the ultra-efficient replacement for old-fashioned incandescents, are being integrated into clothes, carpets and ceilings the same way that some solar panels have been tucked into rooftop shingles. The OneSpace luminous ceiling, by lighting company Philips, makes its debut at the Light + Building trade fair in Frankfurt, Germany. It uses LEDs packed tightly in a mesh, combined with textile, to create an ultra-thin, sound-absorbing panel that offers homogeneous light with no exterior fixtures.




Orthogonal Photolithography makes High-resolution OLED Microdisplays Possible


The realization of OLED technology is contingent upon the development of appropriate materials, processing strategies and device structures which are scalable in terms of their cost, capacity, and capability. During the past decade significant progress has been achieved in the synthesis and characterization of OLED materials. Better understanding of material properties and interfaces between organic semiconductors and other materials has enabled the achievement of superior device performance. Although organic devices have exhibited significant improvement over the last decade in terms of their end performance and stability, there still many technological issues to be solved in order to fully facilitate organic device manufacture on the same scale as e.g. the silicon industry. Whereas standard lithographic processes are already available for the patterning of inorganic circuit components, the micro-patterning, processing and integration of organic materials destined for electronic and optoelectronic systems remain among the most challenging issues to be addressed in the field of organic electronics.


Fraunhofer COMEDD in collaboration with its partner Orthogonal Inc. (Rochester, NY) explores novel approach for OLED micro-structuring, which is called Orthogonal Photolithography. “Orthogonal Photolithography is a patented technology, which allows direct patterning of organic material on CMOS-backplanes.”, explains Dr. Alexander Zakhidov, leader of the development group. “So, high-resolution OLED microdisplays for head-mounted displays and data eye-glasses with brightness of 5000 cd/m² are now possible.” Such high brightness micro-displays are required for augmented reality applications where the virtual image has to blend in smoothly with the daylight environment.


The limit for direct RGB-pixel patterning is given by conventional technologies like shadow masking, enabling pixel pitches of about 50 μm. Today smaller pixel pitches can be realized only by covering all sub-pixels with a white OLED and adding a color filter. This filter is able to separate red, green and blue sub-pixels. The disadvantage is, that the color filter causes enormous losses in the light brightness and brilliance. The reason is, that approximately 2/3 of the spectral range of the white pixels are always cut off for the colors that are not needed, and white OLED is itself less efficient than monochrome, therefore just 10 to 20 % of the emitted light could be used.


The new developed technology takes advantage of the fact that the vast majority of organic materials are either oleophilic or hydrophilic and are hence orthogonal (insolvable and stable) to highly fluorinated chemicals. Therefore, appropriate fluorinated photoresists can be used to pattern organic layers without compromising of performance of the organic device. The availability of such orthogonal photoresists promises to enable the fabrication of complex device structures, expanding the range of possibilities for organic electronics.


Fraunhofer COMEDD established Orthogonal Photolithography in its clean room and incorporated it into 200 mm wafer micro display pilot fabrication line. The scientists offer this technology for joint developments of OLED microdisplays and OLED micro-signage applications together with industrial partners.


Fraunhofer COMEDD capabilities for 200 mm wafer processing:


• 300 m2 clean room class 100


• Resist deposition/processing with uniformity deviation <1%


• Resolution 1 μm


• Alignment precision 1 μm


• Wet bench for cleaning/etching


• Dry RIE etching via Ar ion mill and O2 plasma


• Batch vacuum/N2 oven, hotplates Air/N2


• Optical inspection, particle control



Disclaimers of Warranties

1. The website does not warrant the following:

1.1 The services from the website meets your requirement;

1.2 The accuracy, completeness, or timeliness of the service;

1.3 The accuracy, reliability of conclusions drawn from using the service;

1.4 The accuracy, completeness, or timeliness, or security of any information that you download from the website

2. The services provided by the website is intended for your reference only. The website shall be not be responsible for investment decisions, damages, or other losses resulting from use of the website or the information contained therein<


Proprietary Rights

You may not reproduce, modify, create derivative works from, display, perform, publish, distribute, disseminate, broadcast or circulate to any third party, any materials contained on the services without the express prior written consent of the website or its legal owner.





LEDs Feature in New Green Buildings


Nowadays you never hear about some new ultra-efficient building somewhere without the mention of LED lighting in the mix of the energy savings. Here are two examples: the first Whole Foods store in Brooklyn, N.Y. (said to be the most energy-efficient store in the country) and the new US embassy building in Helsinki, the first to be certified LEED Platinum.


Whole Foods

The Whole Foods store on the Gowanus Canal in Brooklyn covers 56,000 sq. ft. (5203 sq. m) at Third Avenue and 3rd Street. It is referred to locally as "Third and 3rd" (and on Twitter as #thirdand3rd). It has been open since December 2013, but seems to be making a PR push recently to tout its many green features. The store is Whole Foods' showcase for its participation in the Better Building Challenge, an initiative intended to make US commercial and industrial buildings 20% more energy-efficient by 2020.




Whole Foods Sustainability in Brooklyn (Source: William Doble on Vimeo)


The store has a greenhouse on its roof, where produce is grown for sale downstairs. The greenhouse structure cools the building in summer and warms it in winter. I saw no mention of LED horticultural lights. Their use in a greenhouse environment seems to be a matter of research now.


The parking lot is lit by LED lights. These are powered by wind and solar generators on their poles. Other solar panels cover parking areas and generate 220 KWh for use in the store. Rainwater runoff is collected by the panels and directed to an underground 30,000 gal. (113,500 l.) tank. From there it is purified and used in the bathrooms and to water plants in the greenhouse.


The bricks from which the store was constructed are recovered from a demolished New Jersey warehouse. Wood from the Coney Island Boardwalk, dismantled after Hurricane Sandy, decorates some of the inside spaces.


The use of LEDs is not mentioned in the store proper. It makes sense that they would be lighting refrigerated and freezer cabinets, as well as providing overhead illumination. I was unable to get through to anyone at Third and 3rd to confirm.



US Embassy in Helsinki

The Innovation Center in Helsinki, which houses the embassy's public buildings, is claimed to be the first embassy building to be certified LEED Platinum. It uses 46% less energy and consumes 30% less water than a baseline design. It is also "the first US diplomatic building to be equipped with 100% light-emitting diode and organic LED for interior and exterior lighting."


GE Lighting has a few images on its website of the GE Lumination luminaires used in the embassy project. The site of the project's architects, Page Southerland Page, features more photos of some very imaginative lighting in a number of conference rooms.


— Keith Dawson, Editor-in-Chief, All LED Lighting Circle me on Google+ Follow me on Twitter Visit my LinkedIn page



Cree Introduces Industry’s First 8000 Lumen LED Module

Cree's 8000-lumen LMH2 is designed to replace 150-watt ceramic-metal-halide (CMH) lamps while using only 63 percent of the power and lasting three times as long. With the addition of the 8000-lumen LMH2, the Cree® LMH2 LED Module family offers the industry’s greatest range of lumen output from a single form factor, making it possible to obsolete CMH technology.



"The new Cree® 8000-lumen LMH2 LED Module allows us to effectively address high-ceiling, high-lumen applications without having to sacrifice color quality or reliability," said Wesley Johnson, product manager, Hi-Lite Mfg. "We can now easily offer our customers better lighting solutions to replace 150-watt ceramic-metal-halide lamps in spaces such as convention centers, airports, auditoriums and shopping malls."



Cree’s LMH2 LED Module family provides an extensive range of light output (850 to 8000 lumens) from a single light source, enabling lighting manufacturers to quickly develop an entire product portfolio with just one set of tooling and optical design. Lighting designers can now utilize one light source and technology to illuminate an entire space and avoid problems such as color inconsistency and re-lamping.



“Having an 8000-lumen option in the LMH2 LED Module family gives us the flexibility to create an entire product family from a single form factor,” said Chris Roemlein, president, Spectrum Lighting. “Cree’s ability to increase the performance of the LMH2 Module allows us to address a wide range of ceiling heights with minimal design investment.”



Samples and production quantities are available with standard lead times from Cree distributors. Cree also offers a complete ecosystem of LED accessories to help lighting manufacturers speed their time to market.



Please go to www.cree.com/lmh2 for additional information.



About Cree:

Cree is leading the LED lighting revolution and making energy-wasting traditional lighting technologies obsolete through the use of energy-efficient, mercury-free LED lighting. Cree is a market-leading innovator of lighting-class LEDs, LED lighting, and semiconductor products for power and radio frequency (RF) applications.

Cree’s product families include LED fixtures and bulbs, blue and green LED chips, high-brightness LEDs, lighting-class power LEDs, power-switching devices and RF devices. Cree® products are driving improvements in applications such as general illumination, backlighting, electronic signs and signals, power suppliers and solar inverters.

Please refer to www.cree.com for additional product and company information.





Wednesday, April 30, 2014

LED Lighting: Have You Made the Switch?




The city finds itself at odds with Duke Energy again — this time about streetlights. The city would like to start using street lamps powered by light-emitting diode, commonly called LED, as a way to save money. LED bulbs use 50 percent to 60 percent less energy than traditional lamps and provide better-quality light, Greensboro Transportation Director Adam Fischer said. Using LED bulbs should reduce the city’s $3.3 million annual streetlight bill.