Breaking News

Sony Unveils Sony FE 100mm F2.8 Macro GM OSS Creative Launches Aurvana Ace 3 GIGABYTE Announces Availability of 27” QHD 280Hz WOLED Gaming Monitor MO27Q28G with 4-Sided Borderless Design Crucial ® LPCAMM2 Powers AI-Ready Laptops With Breakthrough 8,533MT/s Speeds Logitech announces MX Master 4

logo

  • Share Us
    • Facebook
    • Twitter
  • Home
  • Home
  • News
  • Reviews
  • Essays
  • Forum
  • Legacy
  • About
    • Submit News

    • Contact Us
    • Privacy

    • Promotion
    • Advertise

    • RSS Feed
    • Site Map

Search form

SDK Develops Organic EL Devices with Light Output of 40 Percent

SDK Develops Organic EL Devices with Light Output of 40 Percent

Enterprise & IT Jul 28,2009 0

Showa Denko K.K. (SDK) has developed a new structure for its organic electroluminescent (organic EL) devices, achieving approximately 40% in light output, which represents the highest level in the world. SDK claims that it has achieved a 30 lm/W emissive efficiency for its coated phosphorescent-polymer-based organic EL devices. ("Emissive efficiency" refers to the quantity of light emitted from light source, divided by electric power consumed.) The 30 lm/W emissive efficiency represents the highest level among coated-type organic EL devices that have been announced in the world.

The company has been developing a coated-polymer type (easy to make large area-emission organic EL panels) and a phosphorescent type (with high potential for increased emissive efficiency). As a result, SDK expects its organic EL devices with the new structure to be used widely for general lighting applications in the future. The company is currnetly working with SRI International, a non-profit research organization based in California, U.S.A., and Itochu Plastics Inc. (CIPS), of Japan, to promote the development of coated phosphorescent-polymer-based organic EL devices for early commercialization in the organic EL lighting market.

In terms of the production process, organic EL devices are classified into a deposition type and a coated type. The former generally has a multilayered structure of low-molecular-weight-compounds laminated through deposition processes under vacuum. Its production technology has almost been established, making it ready for volume production. However, its production cost is high, and there are many issues to be solved in producing a large area-emission panel based on this device. Meanwhile, the coated type is attracting keen attention because it consists of a few layers formed by coating polymer without the use of vacuum, providing the opportunity for substantial cost reductions and for the production of large area-emission panels in the future.

Organic EL devices are also classified by the emission method, into a fluorescent type and a phosphorescent type. At present, the former has longer life and is already used in displays of mobile phones. Meanwhile, emissive efficiency (lm/W) of the phosphorescent type can theoretically become four times that of the fluorescent type.

While the conventional-type device has a structure of cathode, emitter, anode, and glass substrate, the new structure has introduced a layer of dielectric/heat conductor that adjusts reflection of light. The new layer helps reduce the percentage of light trapped in the device, improving the light output. The dielectric/heat conductor layer, having high heat dissipation efficiency, prevents heat deterioration of the emitter, prolonging the device life.

SDK has already achieved a luminance half life of approximately 10,000 hours for white lighting through improvements in the phosphorescent-polymer materials. The company plans to continue developing organic EL devices with longer life based on the successful development of the new device structure.

SDK, SRI International and CIPS will work together to improve the design of device structure and start selling samples on a full scale in 2010 for use in the general lighting market. The three parties will also work to improve coating property of the phosphorescent polymer and prolong the device life, aiming to achieve a 150 lm/W emissive efficiency and a luminance half life of approximately 50,000 hours for white lighting by 2015. Thus, SDK is planning to commercialize its coated phosphorescent-polymer-based organic EL devices for general lighting by achieving high levels of performance exceeding that of fluorescent lamps.

Tags: Showa Denko
Previous Post
IBM to Acquire SPSS
Next Post
NEC and Renesas Report the Progress of Business Integration

Related Posts

  • Four Institutions Use AI to Accelerate The Development of Flexible Transparent Films

  • SDK Develops HAMR-Technology-based Hard Disk Media

  • Showa Denko Announces $8.8 Billion Deal for Hitachi Chemical

  • SDK to Start Shipping 18TB MAMR HD Media

  • SDK to Begin Shipping MAMR-Technology-based HD Media

  • SDK Group Develops Ultralight Laminate-type Radiator for EV Battery Modules

  • SDK to Transfer Its Rare Earth Magnetic Alloy R&D Sector to TDK

  • Showa Denko Starts Shipment of 3.5-Inch 1.5 TB HD Media

Latest News

Sony Unveils Sony FE 100mm F2.8 Macro GM OSS
Cameras

Sony Unveils Sony FE 100mm F2.8 Macro GM OSS

Creative Launches Aurvana Ace 3
Consumer Electronics

Creative Launches Aurvana Ace 3

GIGABYTE Announces Availability of 27” QHD 280Hz WOLED Gaming Monitor MO27Q28G with 4-Sided Borderless Design
Gaming

GIGABYTE Announces Availability of 27” QHD 280Hz WOLED Gaming Monitor MO27Q28G with 4-Sided Borderless Design

Crucial ® LPCAMM2 Powers AI-Ready Laptops With Breakthrough 8,533MT/s Speeds
Enterprise & IT

Crucial ® LPCAMM2 Powers AI-Ready Laptops With Breakthrough 8,533MT/s Speeds

Logitech announces MX Master 4
Enterprise & IT

Logitech announces MX Master 4

Popular Reviews

be quiet! Dark Mount Keyboard

be quiet! Dark Mount Keyboard

Terramaster F8-SSD

Terramaster F8-SSD

be quiet! Light Mount Keyboard

be quiet! Light Mount Keyboard

be quiet! Light Base 600 LX

be quiet! Light Base 600 LX

be quiet! Pure Base 501

be quiet! Pure Base 501

Soundpeats Pop Clip

Soundpeats Pop Clip

Akaso 360 Action camera

Akaso 360 Action camera

Dragon Touch Digital Calendar

Dragon Touch Digital Calendar

Main menu

  • Home
  • News
  • Reviews
  • Essays
  • Forum
  • Legacy
  • About
    • Submit News

    • Contact Us
    • Privacy

    • Promotion
    • Advertise

    • RSS Feed
    • Site Map
  • About
  • Privacy
  • Contact Us
  • Promotional Opportunities @ CdrInfo.com
  • Advertise on out site
  • Submit your News to our site
  • RSS Feed