This application claims the priority benefit of Taiwan application serial no. 101105076, filed on Feb. 16, 2012. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The invention generally relates to a display film and a display apparatus, and more particularly, to an electrophoretic display film and an electrophoretic display apparatus.
2. Description of Related Art
In recent years, since various display techniques continue to flourish, after ceaselessly researching and developing, many display products such as electrophoretic display, liquid crystal display (LCD), plasma display, organic light-emitting diode display (OLED display) have been gradually commercialized and applied in display apparatuses with various sizes and areas. With the growing popularity of portable electronic products, flexible displays such as electronic paper (e-paper), e-books (e-book), and so on have been gradually attractive by the customers on the market.
In general speaking, the e-paper and the e-book are based on electrophoretic display technique for the display purpose. Taking the e-book with black and white displayed colours only as an example, the display medium thereof mainly comprises a black electrophoretic liquid and white charged particles doped in the black electrophoretic liquid. After applying voltages on the medium, the white charged particles are driven to migrate so that each pixel respectively displays black colour, white colour or gray colour with a graylevel.
In the prior art, the electrophoretic display mostly utilizes light reflection of an external light source to achieve display purpose, while through driving the white charged particles doped in the electrophoretic liquid by applied voltages, each pixel can display with a required graylevel. For expanding the application of the electrophoretic display, a colorful filter film is fabricated on the display medium and the colorful filter film is fixed on the display medium through an adhesive layer. At the time, after the incident light is reflected by the white charged particles in the display medium, the colorful filter film displays out a colorful hue. However, the reflectivity of the white charged particles is not high enough (for example, lower than 60%). As a result, the hue and luminance displayed after the reflected light passes through the colorful filter film are not noticeable and satisfied.
Accordingly, the invention is directed to an electrophoretic display film to reduce the conventional problems produced by low reflectivity of white charged particles.
The invention is also directed to an electrophoretic display apparatus able to produce better luminance and better hue quality.
The invention provides an electrophoretic display film, which includes a first protective film, a second protective film and a plurality of display media. The second protective film is opposite to the first protective film. The display media are disposed between the first protective film and the second protective film, in which each of the display media includes an electrophoretic liquid and a plurality of black charged particles and a plurality of charged particles with metallic gloss both distributed in the electrophoretic liquid.
In an embodiment of the present invention, the material of the above-mentioned first protective film includes poly-ethylene terephthalate (PET).
In an embodiment of the present invention, the material of the above-mentioned second protective film includes poly-ethylene terephthalate (PET).
In an embodiment of the present invention, each of the above-mentioned display media further includes a microcup structure disposed on the first protective film and joining the second protective film so as to pack the electrophoretic liquid, the black charged particles and the charged particles with metallic gloss in the microcup structure.
In an embodiment of the present invention, each of the above-mentioned charged particles with metallic gloss includes a silver particle, an aluminium particle or a magnesium particle.
In an embodiment of the present invention, the outer surface of each of the above-mentioned charged particles with metallic gloss is enclosed with a transparent resin.
In an embodiment of the present invention, each of the above-mentioned charged particles with metallic gloss is a white charged particle and the outer surface of the white charged particle is enclosed with a metallic dye or a metallic lacquer.
In an embodiment of the present invention, the diameter of each the above-mentioned charged particle with metallic gloss ranges between 10 nm and 20 μm.
The invention also provides an electrophoretic display apparatus, which includes a driving array substrate and an electrophoretic display film. The electrophoretic display film is disposed on the driving array substrate and includes a first protective film, a second protective film and a plurality of display media. The first protective film is located on the driving array substrate. The second protective film is opposite to the first protective film. The display media are disposed between the first protective film and the second protective film, in which each of the display media includes an electrophoretic liquid and a plurality of black charged particles and a plurality of charged particles with metallic gloss both distributed in the electrophoretic liquid.
In an embodiment of the present invention, the material of the above-mentioned first protective film includes poly-ethylene terephthalate (PET).
In an embodiment of the present invention, the material of the above-mentioned second protective film includes poly-ethylene terephthalate (PET).
In an embodiment of the present invention, each of the above-mentioned display media further includes a microcup structure disposed on the first protective film and joining the second protective film so as to pack the electrophoretic liquid, the black charged particles and the charged particles with metallic gloss in the microcup structure.
In an embodiment of the present invention, each of the above-mentioned charged particles with metallic gloss includes a silver particle, an aluminium particle or a magnesium particle.
In an embodiment of the present invention, each of the above-mentioned charged particles with metallic gloss is composed of a metallic particle and a transparent resin enclosing an outer surface of the metallic particle.
In an embodiment of the present invention, each of the above-mentioned charged particles with metallic gloss is composed of a white charged particle and a metallic dye or a metallic lacquer enclosing an outer surface of the white charged particle.
In an embodiment of the present invention, each of the above-mentioned charged particles with metallic gloss is composed of a metallic particle and a transparent resin enclosing an outer surface of the metallic particle.
In an embodiment of the present invention, each of the above-mentioned charged particles with metallic gloss is composed of a white charged particle and a metallic dye or a metallic lacquer enclosing an outer surface of the white charged particle.
In an embodiment of the present invention, the diameter of each the charged particle with metallic gloss ranges between 10 nm and 20 μm.
In an embodiment of the present invention, the above-mentioned electrophoretic display apparatus further includes a first transparent optical adhesive layer disposed between the driving array substrate and the first protective film of the electrophoretic display film, in which the electrophoretic display film is fixed on the driving array substrate through the first transparent optical adhesive layer.
In an embodiment of the present invention, the above-mentioned electrophoretic display apparatus further includes a color filter film disposed on the second protective film.
In an embodiment of the present invention, the above-mentioned electrophoretic display apparatus further includes a protective layer disposed on the color filter film.
In an embodiment of the present invention, the above-mentioned electrophoretic display apparatus further includes a second transparent optical adhesive layer disposed between the protective layer and the color filter film, in which the protective layer is fixed on the color filter film through the second transparent optical adhesive layer.
In an embodiment of the present invention, the above-mentioned driving array substrate is an active array substrate or a passive array substrate.
Based on the description above, since the display medium of the invention contains charged particles with metallic gloss therein, when the incident light enters the display medium, the charged particles with metallic gloss with better reflecting efficiency are able to effectively advance the displayed hue and luminance after the incident light is reflected.
Other objectives, features and advantages of the present invention will be further understood from the further technological features disclosed by the embodiments of the present invention wherein there are shown and described preferred embodiments of this invention, simply by way of illustration of modes best suited to carry out the invention.
Referring to
Since the display medium 130a of the embodiment contains the charged particles with metallic gloss 136a (or 136b, 136c), the reflection efficiency of the charged particles with metallic gloss 136a (or 136b, 136c) is largely increased (for example, 90%) in comparison with the conventional white charged particles, which is able to advance the displayed hue (for example, black colour, white colour or gray colour with a graylevel) and luminance after the incident light (not shown) is reflected by the charged particles with metallic gloss 136a (or 136b, 136c) of the display medium 130a.
Referring to
Since the display medium 130a of the embodiment contains the charged particles with metallic gloss 136a, the reflection efficiency of the charged particles with metallic gloss 136a is largely increased (for example, 90%) in comparison with the conventional white charged particles, which is able to advance the displayed hue (for example, black colour, white colour or gray colour with a graylevel) and luminance after the incident light (not shown) is reflected by the charged particles with metallic gloss 136a of the display medium 130a. In other words, the electrophoretic display apparatus 200a of the embodiment can display with better luminance and better hue quality.
Referring to
Since the display medium 130a of the embodiment contains the charged particles with metallic gloss 136a, the reflection efficiency of the charged particles with metallic gloss 136a is largely increased (for example, 90%) in comparison with the conventional white charged particles, which is able to advance the displayed hue (for example, colourful hue) and luminance after the incident light (not shown) is reflected by the charged particles with metallic gloss 136a of the display medium 130a and then passes through the color filter film 230. In other words, the electrophoretic display apparatus 200b of the embodiment can display with better luminance and better hue quality.
In addition, in other unshown embodiments, the display medium can contain other kinds of charged particles with metallic gloss such as 136b and 136c of the previous embodiments, and people skilled in the art can chose the previous parts to achieve the desired technical effect according to the application requirements and referring to the previous embodiments.
In summary, since the display medium of the invention contains charged particles with metallic gloss therein, when the incident light enters the display medium, the charged particles with metallic gloss with better reflecting efficiency are able to effectively advance the displayed hue and luminance after the incident light is reflected. In short, the electrophoretic display apparatus employing the electrophoretic display film can display with better luminance and better hue quality (for example, black colour, white colour, gray colour with a graylevel or colourful hue).
It will be apparent to those skilled in the art that the descriptions above are several preferred embodiments of the invention only, which does not limit the implementing range of the invention. Various modifications and variations can be made to the structure of the invention without departing from the scope or spirit of the invention. The claim scope of the invention is defined by the claims hereinafter.
Number | Date | Country | Kind |
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101105076 | Feb 2012 | TW | national |