1. Field of Invention
The invention relates to a display device and, in particular, to a dual display device.
2. Related Art
The present electronic devices have become more compact and lightweight, so the flat-panel displays thereof accordingly become more important. In addition, the electronic devices comprise various applications, wherein the electronic devices with dual display devices for displaying plentiful information are one of the major features of the new generation electronic products. For example, the mobile phone may include a dual display device, which can be used as a main-display panel and a sub-display panel, respectively.
The conventional dual display device is manufactured by attaching two single display panels, such as LCD panels or organic electroluminescent (OEL) panels. With reference to
However, since the conventional dual display device includes two cover plates 315 and 325 and two transparent substrates 311 and 321, the whole dual display device has a larger size, thickness, and weight, which can not match the trend towards the electronic device with more compact and lightweight.
It is therefore a subjective of the invention to provide a dual display device, which can solve the above-mentioned problems.
In view of the foregoing, the invention is to provide a compact and lightweight dual display device.
To achieve the above, a dual display device of the invention comprises a first display panel, a second display panel and an adhesive. In the invention, the first display panel sequentially comprises a first transparent substrate, a first electrode, a first organic functional layer and a second electrode. The second display panel sequentially comprises a second transparent substrate, a third electrode, a second organic functional layer and a fourth electrode. The second electrode and the fourth electrode are disposed opposite to each other. The adhesive seals the first transparent substrate and the second transparent substrate.
To achieve the above, a dual display device of the invention comprises a first display panel, a second display panel, an adhesive, and a drying unit. In the invention, the first display panel sequentially comprises a first transparent substrate, a first electrode, a first organic functional layer and a second electrode. The second display panel sequentially comprises a second transparent substrate, a third electrode, a second organic functional layer and a fourth electrode. The second electrode and the fourth electrode are disposed opposite to each other. The adhesive seals the first transparent substrate and the second transparent substrate. The drying unit is disposed between the first transparent substrate and the second transparent substrate.
As mentioned above, the dual display device utilizes the adhesive to seal the two display panels. Comparing with the prior art, the dual display device of the present invention saves two cover plates and cover plates are not necessary to be used in the present invention any more. Thus, the thickness of the whole device is more compact and more lightweight, and the cost of the dual display device is decreased. In addition, the adhesive of the invention is doped with solids, which can increase the diffusion path length and diffusion time of the external moisture and oxygen. Therefore, the lifetime and stability of the device are improved, and the damages of the organic electroluminescent elements (the organic functional layers) caused by package pressing can be prevented. Moreover, the solids can control the gap between two transparent substrates, and further provide a space for accommodating the drying unit. The drying unit can desiccate the moisture inside the device, which can prolong the lifetime of the device and increase the operation reliability. The two display panels of the dual display device of the invention can individually show image information, so as to enhance the display information capacity of the whole device. In summary, the dual display device of the invention is not only compact and lightweight, but also has a lower manufacturing cost. Furthermore, the dual display device of the invention has a longer lifetime, a better stability, and a simple information arrangement, so that it is suitable for mass production.
The invention will become more fully understood from the detailed description given hereinbelow illustration only, and thus is not limitative of the present invention, and wherein:
The present invention will be apparent from the following detailed description, which proceeds with reference to the accompanying drawings, wherein the same references relate to the same elements.
As shown in
In the present embodiment, the first transparent substrate 111 can be a flexible or a rigid substrate. The first transparent substrate 111 can also be a plastic or glass substrate. In particular, the flexible substrate or plastic substrate can be made of polycarbonate (PC), polyester (PET), cyclic olefin copolymer (COC), or metallocene-based cyclic olefin copolymer (mCOC).
The first electrode 112 is disposed on the first transparent substrate 111 by a sputtering method or an ion plating method. The first electrode 112 is usually used as an anode and made of a transparent conductive metal oxide, such as indium-tin oxide (ITO), aluminum-zinc oxide (AZO), or indium-zinc oxide (IZO).
The first organic functional layer 113 usually comprises a hole-injecting layer, a hole-transporting layer, a light-emitting layer, an electron-transporting layer and an electron-injecting layer (not shown). The first organic functional layer 113 can be formed on the first electrode 112 by utilizing evaporation, spin coating, ink jet printing, or printing. In addition, the light emitted from the first organic functional layer 113 can be blue, green, red, white, other monochromatic light, or a colorful light as a combination of monochromatic lights.
Referring to
In this case, the features and functions of the second transparent substrate 121, the third electrode 122, the second organic functional layer 123, and the fourth electrode 124 are the same to the first transparent substrate 111, the first electrode 112, the first organic functional layer 113, and the second electrode 114 described previously, so the detailed descriptions are omitted here for concise purpose.
With reference to
In the present embodiment, the solids 131 can be glass fibers or glass beads, and the solids 131 can be spherical and/or cylindrical. Of course, the adhesive 13 can be also doped with a free radical catcher and/or a drying material such as barium oxide (BaO).
In the current embodiment, the solids 131 doped in the adhesive 13 can increase the diffusion path length and diffusion time of the external moisture and oxygen. Therefore, the lifetime and stability of the device are improved. In addition, the solids 131 of the adhesive 13 can control the distance between the first transparent substrate 111 and the second transparent substrate 121, so that the damages of the organic electroluminescent elements (including the first electrode 112, the first organic functional layer 113, the second electrode 114, the third electrode 122, the second organic functional layer 123, and the fourth electrode 124) caused by package pressing can be prevented. Furthermore, an accommodating space can be formed.
With reference to
Since the first organic functional layer 113 and the second organic functional layer 123 (the organic electroluminescent elements) are very sensitive to moisture and oxygen, dark spots may be happened when the elements contact with air. Thus, the drying unit 14 is used to prevent the first organic functional layer 113 and the second organic functional layer 123 from being damaged by moisture and oxygen. In this case, the drying unit 14 may comprise desiccants, such as BaO, for desiccating the water contained in the dual display device 1 after they are encapsulated. This can efficiently prolong the lifetime of the dual display device.
In addition, the dual display device 1 of the embodiment may further comprise a driving circuit (not shown), which is a passive driving circuit or an active driving circuit. The driving circuit couples to the first display panel 11, the second display panel 12, and a power (not shown).
In the embodiment, the first display panel 11 and the second display panel 12 are individually driven. In other words, the applied voltages for the first display panel 11 and the second display panel 12 may be different from one another according to practical demands. Herein, the second display panel 12 can be used as a sub-display panel, which cooperates with the first display panel 11 to increase the convenient of users. In this case, the first display panel 11 and the second display panel 12 may respectively show films, picture, or numerals according to the demands. Of course, the first display panel 11 and the second display panel 12 can be driven at the same time.
In addition, the dual display device 1 of the embodiment further comprises an image transform module (not shown), which controls the image orientations of the first display panel 11 and the second display panel 12. In details, when the displayed image data of the second display panel 12 is transmitted from the first display panel 11, the image transform module may adjust the image orientation of the second display panel 12 according to the image data from the first display panel 11 based on the operation situation for facilitating users to view the image information. For example, the image data may be turned to the orientation directly facing the user.
Hereinafter, an example is shown, wherein the dual display device is embodied in a mobile phone with reference to
As shown in
Referring to
In the present embodiment, the adhesive 23 may be doped with a plurality of solids 231. In addition, the adhesive 23 may be also doped with a free radical catcher and/or a drying material.
In this embodiment, the features and functions of the first display panel 21, the first transparent substrate 211, the first electrode 212, the first organic functional layer 213, the second electrode 214, the second display panel 22, the second transparent substrate 221, the third electrode 222, the second organic functional layer 223, the fourth electrode 224, the adhesive 23, the solids 231 and the drying unit 24 are the same to those in the first embodiment, so the detailed descriptions of the elements are omitted here for concise purpose.
In the embodiment, the dual display device 2 may further comprise an image transform module (not shown) and a driving circuit (not shown). Those elements of the second embodiment are the same as those described in the first embodiment, so the detailed descriptions are omitted here for concise purpose.
As mentioned above, the dual display device of the invention utilizes the adhesive to seal the two display panels. Comparing with the prior art, the dual display device of the present invention saves two cover plates and cover plates are not necessary to be used in the dual display device any more. Thus, the thickness of the whole device is more compact and more lightweight, and the cost of the dual display device is decreased. In addition, the adhesive of the invention is doped with solids, which can increase the diffusion path length and diffusion time of the external moisture and oxygen. Therefore, the lifetime and stability of the device are improved, and the damages of the organic electroluminescent elements (the organic functional layers) caused by package pressing can be prevented. Moreover, the solids can control the gap between two transparent substrates, and further provide a space for accommodating the drying unit. The drying unit can desiccate the moisture inside the device, which can prolong the lifetime of the device and increase the operation reliability. The two display panels of the dual display device of the invention can individually show image information, so as to enhance the display information capacity of the whole device. In summary, the dual display device of the invention is not only compact and lightweight, but also has a lower manufacturing cost. Furthermore, the dual display device of the invention has a longer lifetime, a better stability, and a simple information arrangement, so that it is suitable for mass production.
Although the invention has been described with reference to specific embodiments, this description is not meant to be construed in a limiting sense. Various modifications of the disclosed embodiments, as well as alternative embodiments, will be apparent to persons skilled in the art. It is, therefore, contemplated that the appended claims will cover all modifications that fall within the true scope of the invention.
Number | Date | Country | Kind |
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092121064 | Jul 2003 | TW | national |
092121065 | Jul 2003 | TW | national |