Nova Patents
EP2201604B1

Led device having improved light output

Abstract

This record has no abstract on file.

EP2201604B1, drawing sheet 1
Sheet 1 of 12

Term

2 yearsleft in the term

Expires 16 September 2028.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

14 claims: 2 independent, 12 dependent

  1. 1
    A multi-color light-emitting micro-cavity light-emitting diode device, comprising:a) a substrate (10);b) a reflective electrode (12) and a semi-transparent electrode (16) formed over the substrate (10) and an unpatterned white-light-emitting layer (14) formed between the reflective electrode (12) and the semi-transparent electrode (16), the reflective electrode (12), semi-transparent electrode (16), and unpatterned white-light-emitting layer (14) forming an optical cavity (60, 62, 64, 66), and wherein either the reflective or semi-transparent electrode (12, 16) is patterned to form a plurality of independently-controllable light-emitting sub-pixel elements (50, 52, 54, 56);and c) a plurality of color filters (40R, 40G, 40B) formed over a side of the semi-transparent electrode (16) opposite the unpatterned white light-emitting-layer (14) in correspondence with the independently-controllable light-emitting elements (50, 52, 54, 56) to form colored sub-pixels (50, 52, 54), the plurality of color filters (40R, 40G, 40B) having at least two different colors, characterized in that : d) at least one independently-controllable light-emitting element (56) has at least two commonly-controlled portions (56B, 56Y) that together emit substantially white light to form a white sub-pixel (56);and e) the optical cavity (66) of one or more of the commonly-controlled portions (56B, 56Y) of the white sub-pixel (56) comprises a plurality of optical micro-cavities (66B, 66Y), each optical micro-cavity (66B, 66Y) tuned to emit light at a different complementary wavelength at an emission angle, wherein at least one of the commonly-controlled portions (56B, 56Y) of the white sub-pixel (56) is tuned to emit light at a peak wavelength different from the peak wavelengths of the colored sub-pixels (50, 52, 54).
  2. 14
    A method of making an LED device, comprising the steps of:a) providing a substrate (10);b) forming a reflective electrode (12) and a semi-transparent electrode (16) over the substrate (10) and forming an unpatterned white-light-emitting layer (14) between the reflective electrode (12) and the semi-transparent electrode (16), the reflective electrode (12), semi-transparent electrode (16), and unpatterned white-light-emitting layer (14) forming an optical cavity (60, 62, 64, 66), and wherein either the reflective or semi-transparent electrode (12, 16) is patterned to form a plurality of independently-controllable light-emitting sub-pixel elements (50, 52, 54, 56);and c) forming a plurality of color filters (40R, 40G, 40B) over a side of the semi-transparent electrode (16) opposite the unpatterned white light-emitting-layer (14) in correspondence with the independently-controllable light-emitting elements (50, 52, 54, 56) to form colored sub-pixels, the plurality of color filters (40R, 40G, 40B) having at least two different colors, characterized in that : d) at least one independently-controllable light-emitting element (50, 52, 54, 56) has at least two commonly-controlled portions (56B, 56Y) that together emit substantially white light to form a white sub-pixel;and e) the optical cavity (66) of one or more of the commonly-controlled portions (56B, 56Y) of the white sub-pixel comprises a plurality of optical micro-cavities (66B, 66Y), each optical micro-cavity (66B, 66Y) tuned to emit light at a different complementary wavelength at an emission angle, wherein at least one of the commonly-controlled portions (56B, 56Y) of the white sub-pixel (56) is tuned to emit light at a peak wavelength different from the peak wavelengths of the colored sub-pixels (50, 52, 54).