LIGHT-EMITTING APPARATUS
An apparatus ( 201 ) for use in a display device comprises a light-emitting layer ( 203 ) for providing a light output to the display device and a translucent layer ( 202 ) comprising a pressure-sensitive ink. The translucent layer diffuses the light output from the light-emitting layer and the pressure-sensitive ink provides a conductive layer of a sensing device ( 205 ) which is configured to measure a force in response to a mechanical interaction.
1 . Apparatus for use in a display device or light-emitting device, comprising:
a light-emitting layer for providing a light output; and
a translucent layer comprising a pressure-sensitive ink; wherein:
said translucent layer is arranged on top of said light-emitting layer such that said translucent layer is configured to diffuse said light output from said light-emitting layer; and
said pressure-sensitive ink provides a conductive layer of a sensing device configured to measure a force in response to a mechanical interaction.
2 . Apparatus according to claim 1 , wherein said pressure-sensitive ink comprises a quantum tunnelling composite material.
3 . Apparatus according to claim 1 , wherein said pressure-sensitive ink comprises a plurality of conductive or semi-conductive particles.
4 . Apparatus according to claim 1 , wherein said pressure-sensitive ink comprises an ultraviolet-cured (uv-cured) ink.
5 . Apparatus according to claim 1 , wherein said apparatus comprises a first area for diffusing said light output and a second area for measuring said force in response to said mechanical interaction.
6 . Apparatus according to claim 5 , wherein said second area is arranged around an edge of said apparatus.
7 . Apparatus according to claim 5 , wherein said apparatus comprises a rectangular or square cross section and said second area is arranged as elements in each corner of said rectangular or square cross section.
8 . Apparatus according to claim 1 , wherein said light-emitting layer comprises an organic light-emitting diode (OLED).
9 . Apparatus according to claim 8 , wherein said OLED forms a further layer of said sensing device.
10 . Apparatus according to claim 8 , wherein said translucent layer forms an input surface.
11 . Apparatus according to claim 10 , wherein said input surface is configured to adjust said light output from said light-emitting layer.
12 . Apparatus according to claim 1 , further comprising an index-matched optically clear adhesive.
13 . A display device comprising a touch screen and a sensing device and the apparatus of claim 1 .
14 . A method of manufacturing an apparatus for use in a display device, comprising the steps of:
providing a light-emitting layer for providing a light output;
printing a pressure-sensitive ink to form a translucent layer on top of said light-emitting layer and configuring said translucent layer to diffuse said light output; and
constructing a sensing device comprising a conductive layer provided by said pressure-sensitive ink and configuring said sensing device to measure a force in response to a mechanical interaction.
15 . A method of manufacturing according to claim 14 , further comprising the step of:
arranging said display device to comprise a first area for diffusing said light output and a second area for measuring said-a force in response to said-a mechanical interaction.
16 . A method of manufacturing according to claim 15 , wherein said step of arranging comprises arranging said second area around an edge of said display device.
17 . A method of manufacturing according to claim 15 , wherein said display device comprises a rectangular or square cross section and said step of arranging comprises arranging said second area as a plurality of elements in each corner of said rectangular or square cross section.
18 . A method of manufacturing according to claim 14 , wherein said light-emitting layer comprises an organic light-emitting diode (OLED), and said method further comprises forming a further layer of said sensing device by means of said OLED.