Electronic device
An electronic device includes a light emitting layer, a light conversion layer and an adjustable structure. The light emitting layer has a plurality of light emitting units for emitting light. The light conversion layer converts the wavelength of the light emitted by at least one light emitting unit to provide converted light. The adjustable structure is controlled to adjust a light penetrating area to correspond to the affected part to be treated, wherein at least one of the light and the converted light passes through the light penetrating area to irradiate the affected part.
1 . An electronic device for treating an affected part, comprising:
a light emitting layer having a plurality of light emitting units for emitting light;
a light conversion layer for converting wavelength of light emitted by at least one of the light emitting units to provide converted light;
an adjustable structure controlled to adjust a light penetrating area to correspond to the affected part to be treated, wherein at least one of the light and the converted light passes through the light penetrating area to irradiate the affected part; and
a light sensor array having a plurality of sensors for detecting reflected light obtained from at least one of the light and the converted light irradiating the affected part, based on which the adjustable structure is adjusted so as to form the light penetrating area and a non-penetrating area;
wherein the adjustable structure further includes a reflective structure corresponding to the non-penetrating area, and the reflective structure reflects at least one of the light and the converted light to pass through the light penetrating area.
2 . The electronic device as claimed in claim 1 , wherein the light conversion layer is disposed between the light emitting layer and the adjustable structure.
3 . The electronic device as claimed in claim 2 , wherein the light conversion layer includes a host material and a plurality of light conversion particles distributed in the host material, and the light emitting units are encapsulated by an encapsulation layer.
4 . The electronic device as claimed in claim 3 , wherein the plurality of light conversion particles include different types of light conversion particles.
5 . The electronic device as claimed in claim 2 , wherein the light conversion layer includes a host material and a plurality of light conversion particles distributed in the host material, and the light conversion layer encapsulates the light emitting units.
6 . The electronic device as claimed in claim 2 , wherein the light conversion layer includes a host material and a plurality of light conversion particles distributed in the host material, and the light conversion layer is separately arranged on the light emitting units, respectively, so as to individually encapsulate the light emitting units.
7 . The electronic device as claimed in claim 6 , wherein the light conversion layer encapsulating the light emitting units has light conversion particles with different particle sizes.
8 . The electronic device as claimed in claim 2 , wherein the light conversion layer includes a host material and a plurality of light conversion particles distributed in the host material, and the light conversion layer is separately arranged on part of the light emitting units, respectively, so as to individually encapsulate the part of the light emitting units.
9 . The electronic device as claimed in claim 1 , wherein the adjustable structure is disposed between the light emitting layer and the light conversion layer.
10 . The electronic device as claimed in claim 9 , further comprising: an encapsulation layer for encapsulating the light emitting units; and a connection layer arranged between the encapsulation layer and the adjustable structure.
11 . The electronic device as claimed in claim 1 , wherein the converted light includes light of two peak wavelengths.
12 . The electronic device as claimed in claim 1 , wherein the converted light has a wavelength in a range of 520 nm to 1100 nm.
13 . The electronic device as claimed in claim 1 , wherein, when the light sensor array detects the reflected light obtained from at least one of the light and the converted light irradiating the affected part, the adjustable structure is controlled so that light passes through entire area of the adjustable structure.
14 . The electronic device as claimed in claim 1 , wherein the adjustable structure has a cholesteric liquid crystal layer.
15 . The electronic device as claimed in claim 14 , wherein the adjustable structure includes a first substrate, a second substrate, and the cholesteric liquid crystal layer sandwiched between the first substrate and the second substrate, in which a first electrode is formed on one side of the first substrate facing the cholesteric liquid crystal layer, and a second electrode is formed on one side of the second substrate facing the cholesteric liquid crystal layer.
16 . The electronic device as claimed in claim 1 , wherein the adjustable structure has an electrophoretic array.
17 . The electronic device as claimed in claim 16 , wherein the adjustable structure 15 includes a third substrate, a fourth substrate, and the electrophoretic array sandwiched between the third substrate and the fourth substrate, in which a third electrode is formed on one side of the third substrate facing the electrophoretic array, and a fourth electrode is formed on one side of the fourth substrate facing the electrophoretic array.
18 . The electronic device as claimed in claim 1 , wherein the light sensor array has a transparent substrate and the plurality of light sensors are arranged in a matrix on the transparent substrate.