The light and energy-efficiency of classical liquid crystal displays is notoriously poor due to the use of absorption-based linear polarisers and colour filters. For instance, the light efficiency of PVAL polarisers is typically between 40 and 45 % and the colour filters have a typical efficiency below 35 % which results in a total light and energy-efficiency of the display below 10%. In the past, a variety of polarizers were developed with an enhanced efficiency in generating linearly polarized light. Typically, these polarizers are based on the polarisation-selective reflection, scattering or refraction of light: i.e. one polarisation direction of light is directly transmitted to the LCD/viewer and the other polarization direction of ligh...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
The light and energy-efficiency of classical liquid crystal displays is notoriously poor due to the ...
The light and energy-efficiency of classical liquid crystal displays is notoriously poor due to the ...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
\u3cp\u3eAn anisotropic hologram is combined with an edge-lit planar waveguide to produce an improve...
\u3cp\u3eNew designs are presented of backlight systems for transmissive and transflective LCD's bas...
An anisotropic hologram is combined with an edge-lit planar waveguide to produce an improved liquid ...
An anisotropic hologram is combined with an edge-lit planar waveguide to produce an improved liquid ...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
An anisotropic hologram is combined with an edge-lit planar waveguide to produce an improved liquid ...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
The light and energy-efficiency of classical liquid crystal displays is notoriously poor due to the ...
The light and energy-efficiency of classical liquid crystal displays is notoriously poor due to the ...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
New designs are presented of backlight systems for transmissive and transflective LCD's based on str...
\u3cp\u3eAn anisotropic hologram is combined with an edge-lit planar waveguide to produce an improve...
\u3cp\u3eNew designs are presented of backlight systems for transmissive and transflective LCD's bas...
An anisotropic hologram is combined with an edge-lit planar waveguide to produce an improved liquid ...
An anisotropic hologram is combined with an edge-lit planar waveguide to produce an improved liquid ...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
An anisotropic hologram is combined with an edge-lit planar waveguide to produce an improved liquid ...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...
A new front-illumination principle is demonstrated for use in energy efficient and bright reflective...