Embodiments of the disclosed technology relates to an electronic paper display device and its displaying method.
An electronic paper displaying technique is one kind of displaying techniques and can work as a sheet of paper to achieve comfortable reading, be thin and portable, have flexibility and ultra low power consumption, and it has gotten wide attention and been used in the display region at present.
An electronic paper display device is a reflective-type display. As shown in
However, the existing electronic paper display device can not normally work when the ambient light disappears or becomes weak, that is, when the display is performed in a dark environment, since the electronic paper display device needs ambient light to display, which brings inconvenience to the user.
An aspect of the disclosed technology provides an electronic paper display device comprising an upper substrate with a first conductive layer formed thereon; a lower substrate with a second conductive layer formed thereon, and an electronic ink layer disposed between the first conductive layer of the upper substrate and the second conductive layer of the lower substrate and comprising microcapsules arranged therein, wherein a fluorescent material is further disposed between the upper substrate and the lower substrate, and the fluorescent material is disposed in a region between the upper substrate and the lower substrate where it is capable of receiving irradiation of ambient light.
Another aspect of the disclosed technology provides a displaying method of an electronic paper display device comprising: displaying with ambient light while fluorescent material disposed in the electronic paper display device receives irradiation of ambient light to store optical energy; and displaying with light generated due to the optical energy discharging from the fluorescent material when the ambient light become weak or disappears.
Further scope of applicability of the present disclosed technology will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the disclosed technology, are given by way of illustration only, since various changes and modifications within the spirit and scope of the disclosed technology will become apparent to those skilled in the art from the following detailed description.
The disclosed technology will become more fully understood from the detailed description given hereinafter and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the disclosed technology and wherein:
One or more embodiments of the disclosed technology will be more clearly described by referring to the drawings, in which the embodiments of the disclosed technology is shown, in the following description.
It should be understood that the embodiments to be described are only part of the embodiments of the disclosed technology, instead of all the embodiments. Based on the embodiments described herewith, the other embodiments conceived by the skilled in the art without any creative work are within the scope claimed by the disclosed technology.
An embodiment of the disclosed technology provides an electronic paper display device comprising: an upper substrate with a first conductive layer, a lower substrate with a second conductive layer, and an electronic ink layer disposed between the first conductive layer of the upper substrate and the second conductive layer of the lower substrate and comprising microcapsules arranged therein. A fluorescent material, for example fluorescent powders, is further disposed between the upper substrate and the lower substrate. The fluorescent material is disposed in a region between the upper substrate and the lower substrate where it can be irradiated by ambient light.
The fluorescent material has the property to store optical energy upon receiving the irradiation of ambient light and gradually discharge optical energy stored therein in form of fluorescent light when ambient light become weak or disappears. The electronic paper display device according to the embodiment of the disclosed technology makes use of this property of the fluorescent material. The display performs display by using ambient light when ambient light is sufficient, and at the same time the fluorescent material receives the irradiation of ambient light to store optical energy; the display displays by using the fluorescent light emitted from the fluorescent material discharging the optical energy stored therein when the ambient light become weak or disappears. In this way, the electronic paper display provides a user with great convenience.
The electronic paper display devices according to embodiments of the disclosed technology are described in detail in the following, but is should be noted that the following embodiments are only used to explain the disclosed technology and the disclosed technology are not limited thereto.
In the present embodiment, a fluorescent material (for example in a form of fluorescent particles) is further disposed between the upper substrate 1 and the lower substrate 2. In the present embodiment, the fluorescent powers or particles are enclosed within each of the microcapsules 31 and distributed in the display particle dispersing solution as well. As shown in
For example, when the electronic paper display device of the present embodiment displays a white character on a black background, the fluorescent particles Y has the same charges as the white particles W. It can be seen from
In the present embodiment, the fluorescent powders enclosed within the microcapsule 31 preferably employ upconversion fluorescent powders which have high light transmittance efficiency and may not have any adverse effects on the displaying of microcapsule layer. In particular, the upconversion fluorescent powders in the present embodiment may have an average particle size of 30 nm and an excitation wavelength of 980 nm for example. It is obvious that other kind of fluorescent powders can also be used, and the present embodiment is not limited to this.
When the electronic paper display device according to the present embodiment is in an environment with sufficient ambient light, it can display by using such ambient light, and at the same time the fluorescent powders disposed within the capsule wall 32 can receive the irradiation of the ambient light and stores optical energy therein. When the ambient light become weak or disappears, the fluorescent powder disposed within the capsule wall 32 can release the stored optical energy in fluorescent light form. Thus, the electronic paper display device according to the present embodiment can display by using the light generated due to the optical energy releasing from the fluorescent powder.
For example, the fluorescent powders can be doped in the material for forming the encapsulate wall 32 to form the capsule wall 32 with a fluorescent material and to form the microcapsule 31 by enclosing the display particle dispersing solution within the capsule wall 32.
In the present embodiment, the fluorescent powders are preferable water-soluble fluorescent powders so that the powders can be more evenly dispersed in the material for forming the capsule wall 32. Therefore, the displaying effect can be further improved with the electronic paper display device according to the present embodiment because the electronic paper display device displays by using the light generated due to the optical energy releasing from the fluorescent powders. It is obvious that other kind of fluorescent powders may also be used, and the present embodiment is not limited to this.
In the present embodiment, the fluorescent material (e.g., fluorescent powders) layer 5 is disposed between the base layer 12 and the first conductive layer 11. When the electronic paper display device according to the present embodiment is in an environment with sufficient ambient light, it can display by using the ambient light, and at the same time the fluorescent material layer 5 receives the irradiation of the ambient light and stores optical energy therein. When the ambient light become weak or disappears, the fluorescent material layer 5 discharges optical energy in fluorescent light form, and the electronic paper display device according to the present embodiment can display by using the light generated due to the optical energy discharging from the fluorescent material layer 5.
For example, the fluorescent material layer 5 may be disposed on the base layer 12 by spreading, coating, screen printing or the like.
In the present embodiment, the fluorescent material preferably employs upconversion fluorescent powders which have high light transmittance efficiency and may not have any adverse effect on the displaying effect of the microcapsule layer. It is obvious that other kind of fluorescent powders can also be used, and the present embodiment is not limited thereto.
It should be noted that in the present application the fluorescent material layer 5 is not limited to be disposed between the base layer 12 and the first conductive layer 11; as shown in
The user is in front of the substrate 1 when the display device is used.
Moreover, an embodiment of the disclosed technology further provides a displaying method of the electronic paper display device, which comprises the following steps.
Step 101 of displaying with ambient light while the fluorescent material disposed in the electronic paper display device receives irradiation of the ambient light to store optical energy; and
Step 102 of displaying by using light generated due to the optical energy discharging from the fluorescent material when the ambient light become weak or disappears.
In an example, the electronic paper display device according to the embodiment of the disclosed technology displays by using the ambient light and the light generated due to the optical energy discharging from the fluorescent powder when the ambient light become weak; and the display device displays by only using the light generated due to optical energy discharging from the fluorescent material when the ambient light disappears.
The present embodiment provides a displaying method of the electronic paper display device in which the electronic paper display device as described above displays by using ambient light and at the same time the fluorescent power receives the irradiation of ambient light to stores optical energy therein when the ambient light around thereof is sufficient, and the fluorescent material discharges the optical energy in the form of fluorescent light when the ambient light become weak or disappears so that the electronic paper display device can display by using the light generated due to the optical energy discharging from the fluorescent material. This method make uses of the property of the fluorescent material which stores optical energy when receiving irradiation of the ambient light and gradually discharging optical energy in fluorescent light form when the ambient light become weak or disappears. The electronic paper display according to the embodiment of the disclosed technology can normally display when the ambient light become weak or disappears.
It should be appreciated that the embodiments described above are intended to illustrate but not limit the disclosed technology. Although the disclosed technology has been described in detail herein with reference to the embodiments, it should be understood by those skilled in the art that the disclosed technology can be realized with different material and equipment as necessary, and that various modification and equivalents thereof can be made herein without departing from the spirit and scope of the disclosed technology.
Number | Date | Country | Kind |
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201110143116.7 | May 2011 | CN | national |