Augmented reality providing device
An augmented-reality-providing device includes a right eye lens having a first surface, a left eye lens having a first surface, a right eye filter overlapping the first surface of the right eye lens, and configured to change an illuminance of light passing through the right eye lens, a left eye filter overlapping the first surface of the left eye lens, and configured to change an illuminance of light passing through the left eye lens, a display unit configured to provide a first image to the right eye lens, and configured to provide a second image to the left eye lens, a right eye driver configured to control a transmittance of the right eye filter, and configured to control a transmittance of the first image, and a left eye driver configured to control a transmittance of the left eye filter, and configured to control a transmittance of the second image.
1 . An augmented reality (AR)-providing device comprising:
a right eye lens having a first surface that is a top surface;
a left eye lens having a first surface that is a top surface;
a right eye filter overlapping the first surface of the right eye lens, and configured to change an illuminance of light passing through the right eye lens;
a left eye filter overlapping the first surface of the left eye lens, and configured to change an illuminance of light passing through the left eye lens;
a display unit comprising:
a first display panel on a first side surface of the right eye lens that is orthogonal to the first surface of the right eye lens, and configured to provide a first image to a right eye reflector at a center of the right eye lens; and
a second display panel on a first side surface of the left eye lens that is orthogonal to the first surface of the left eye lens, and configured to provide a second image to a left eye reflector at a center of the left eye lens;
a right eye driver configured to control a transmittance of the right eye filter, and configured to control a transmittance of the first image;
a left eye driver configured to control a transmittance of the left eye filter, and configured to control a transmittance of the second image;
a right eye condenser that is between the first display panel and the first side surface of the right eye lens, and configured to condense the first image provided by the first display panel; and
a left eye condenser that is between the second display panel and the first side surface of the left eye lens, and configured to condense the second image provided by the second display panel,
wherein the right eye condenser and the left eye condenser respectively comprise at least two convex lenses,
wherein a width of the right eye reflector and a width of the left eye reflector are respectively less than a width of a pupil of an eye of a user,
wherein the right eye lens and the left eye lens comprise transmittance control regions comprising equally sized sub-filters,
wherein the first display panel comprises a plurality of regions arranged in a first direction,
wherein the right eye filter comprises a plurality of sub-filters arranged in the first direction, and
wherein a length of one of the plurality of regions is substantially equal to a length of one of the plurality of sub-filters.
2 . The AR-providing device of claim 1 , further comprising:
a first temple adjacent to the right eye lens, and with the right eye driver thereon; and
a second temple adjacent to the left eye lens, and with the left eye driver thereon.
3 . The AR-providing device of claim 1 , wherein the right eye driver is configured to be independently driven, and
wherein the left eye driver is configured to be independently driven.
4 . The AR-providing device of claim 1 ,
wherein the right eye reflector is between the first surface of the right eye lens, and a second surface of the right eye lens that is opposite to the first surface of the right eye lens, and
wherein the left eye reflector is between the first surface of the left eye lens, and a second surface of the left eye lens that is opposite to the first surface of the left eye lens.
5 . The AR-providing device of claim 4 , wherein the display unit is configured to provide the first image to the right eye reflector, and is configured to provide the second image to the left eye reflector.
6 . The AR-providing device of claim 1 , further comprising:
a support unit configured to support the right eye lens and the left eye lens; and
an illuminance sensor on the support unit, and configured to detect an illuminance of external light.
7 . The AR-providing device of claim 6 , further comprising an integrated driver configured to control transmittances of the right eye filter and the left eye filter based on an illuminance value sensed by the illuminance sensor.
8 . The AR-providing device of claim 1 , wherein the right eye filter and the left eye filter comprise a plurality of regions configured to individually adjust transmittances.
9 . The AR-providing device of claim 8 , wherein the right eye filter and the left eye filter comprise at least one lower electrode, at least one upper electrode, and an electrochromic layer interposed therebetween, and
wherein the regions respectively comprise one of the at least one lower electrode or one of the at least one upper electrode.
10 . The AR-providing device of claim 1 , wherein the right eye filter and the left eye filter are separated.
11 . The AR-providing device of claim 1 , wherein the right eye filter and the left eye filter comprise a film respectively attached to the first surface of the right eye lens and the first surface of the left eye lens.
12 . The AR-providing device of claim 1 , further comprising an integrated driver configured to adjust the right eye filter or the left eye filter to have a first transmittance so that an external world view is transmitted in an augmented mode, and configured to adjust the right eye filter or the left eye filter to have a second transmittance so that the external world view is blocked in a virtual mode.
13 . An augmented reality (AR)-providing device comprising:
a right eye lens having a first surface that is a top surface;
a left eye lens having a first surface that is a top surface;
a display unit comprising:
a first display panel on a first side surface of the right eye lens that is orthogonal to the first surface of the right eye lens, and configured to provide a first image to a right eye reflector at a center of the right eye lens; and
a second display panel on a first side surface of the left eye lens that is orthogonal to the first surface of the left eye lens, and configured to provide a second image to a left eye reflector at a center of the left eye lens;
a support unit configured to support the right eye lens, the left eye lens, and the display unit;
a right eye filter overlapping the first surface of the right eye lens, and configured to change an illuminance of light passing through the right eye lens;
a left eye filter overlapping the first surface of the left eye lens, and configured to change an illuminance of light passing through the left eye lens;
a first driver coupled to the support unit, and configured to adjust a transmittance of the right eye filter;
a second driver separated from the first driver, coupled to the support unit, and configured to adjust a transmittance of the left eye filter independently of the transmittance of the right eye filter;
a right eye condenser that is between the first display panel and the first side surface of the right eye lens, and configured to condense the first image provided by the first display panel; and
a left eye condenser that is between the second display panel and the first side surface of the left eye lens, and configured to condense the second image provided by the second display panel,
wherein the right eye condenser and the left eye condenser respectively comprise at least two convex lenses,
wherein a width of the right eye reflector and a width of the left eye reflector are respectively less than a width of a pupil of an eye of a user,
wherein the right eye lens and the left eye lens comprise transmittance control regions comprising equally sized sub-filters,
wherein the first display panel comprises a plurality of regions arranged in a first direction,
wherein the right eye filter comprises a plurality of sub-filters arranged in the first direction, and
wherein a length of one of the plurality of regions is substantially equal to a length of one of the plurality of sub-filters.
14 . The AR-providing device of claim 13 , further comprising an integrated driver coupled to the support unit, and configured to control the first driver and the second driver.
15 . The AR-providing device of claim 14 , wherein the integrated driver is configured to adjust the right eye filter or the left eye filter to have a first transmittance so that an external world view is transmitted in an augmented mode, and is configured to adjust the right eye filter or the left eye filter to have a second transmittance so that the external world view is blocked in a virtual mode.
16 . The AR-providing device of claim 14 , further comprising an illuminance sensor on the support unit, and configured to detect an illuminance of external light.
17 . The AR-providing device of claim 16 , wherein the integrated driver is configured to control the transmittances of the right eye filter and the left eye filter based on an illuminance value sensed by the illuminance sensor.
18 . The AR-providing device of claim 13 , wherein the right eye filter and the left eye filter respectively comprise regions configured to individually adjust transmittances.
19 . The AR-providing device of claim 14 , wherein the integrated driver is configured to adjust the transmittance of the right eye filter and the transmittance of the left eye filter differently from each other.