The invention relates to a display device comprising picture elements having at least one first fluid and a second fluid immiscible with each other within a space between a first transparent support plate and a second support plate, the second fluid being electroconductive or polar.
Display devices like TFT-LCDs are used in laptop computers and in organizers, but also find an increasingly wider application in GSM telephones. Instead of LCDs, for example, (polymer) LED display devices are also being used.
Apart from these display effects which are well established by now other display techniques are evolving like electrophoretic displays, which are suitable for paper white applications.
The display device according to an exemplary embodiment of the invention comprises an intermediate substrate between the first support plate and the second support plate, the intermediate substrate having a reflective surface at the side of the first support plate and being provided with at least one passage between spaces at both sides of the intermediate substrate, the device comprising means for introducing flow of the first fluid through said passage.
The invention is based on a principle called electro-wetting. The invention provides new ways of using this principle.
If for instance a (first) fluid is a (colored) oil and the second (the other) fluid is water (due to interfacial tensions) a two layer system is provided which comprises a water layer on top of the oil layer. However, if a voltage is applied between the water layer and an electrode on a wall or a support plate, the stack of fluid layers is perturbed due to electrostatic forces. Since parts of the water now displace the oil layer the picture element becomes partly transparent.
Contrast is limited by the fraction of area occupied by (first) fluid ((colored) oil).
A further limitation is that a color display with a high brightness cannot be realized without special measures since each area of the display can only reflect one of the three colors desired to obtain the proper color performance. By providing spaces for each color at both sides of the intermediate substrate, with at least one passage between said spaces, one can obtain a high brightness reflective display while preventing mixing of the colored oils.
These and other aspects of the invention are apparent from and will be elucidated with reference to the embodiments described hereinafter.
In the drawings:
The Figures are diagrammatic and not drawn to scale. Corresponding elements are generally denoted by the same reference numerals.
In a first state, when no external voltage is applied (
The switching now occurs between a first state (
To control the direction and movement of the liquids in the flow channels or passages 13, it may be necessary to choose materials with the right surface properties for the pixel definition. For instance, one pixel wall could be hydrophilic, whereas the opposite pixel wall could be hydrophobic.
The switching now occurs between a first state (
With both display cells illustrated in
Spaces 15C, 15M, and 15Y are separated physically from each other by transparent substrates 24. Also the spaces 16C, 16M and 16Y should be fabricated such that no mixing of the differently colored oils will occur. The walls separating these spaces do not necessarily have to extend the fall space 16 between the intermediate reflector 14 and the second supporting plate 3 throughout the entire cell. In fact, leaving a part of the walls high enough to contain the oils and low enough such that the second polar fluid 6 is continuous through the sub-cells will facilitate the driving of the system. The spaces 15, 16 related to one specific color are interconnected to each other via channels or passages 13C, 13M, 13Y (
By introducing a voltage between the fluid layer 6 and the electrode on the second supporting plate 3 in each of the spaces 15C, 15M, 15Y displacement of the layers 5C, 5M, 5Y occurs again by introducing flow of the fluids 5 through said passages 13. To this end switches 23C, 23M, 23Y are controlled as shown schematically by control line 25 by driving apparatus 22 to supply driving voltages via interconnections 21, 20. If the voltage is sufficiently high the spaces 15C, 15M; 15Y are completely filled and the display reflects no light, resulting in a black state (
The three subtractive colors can be independently pumped due to the separated flow channels. Based on the color strength of the currently available oils suitable for electrowetting, good color rendition can be obtained for a flow channel thickness of less than 25 microns and therefore a total pixel thickness including the sub pixel reservoirs of less than 200 microns (not including the thickness of the active electrode layer and substrate).
Of course the invention is not limited to the embodiments as shown. For instance, if two or more of the fluids 5 are immiscible the transparent substrates 24 may be deleted. Due to the difference in mobility a stacking of the fluid layers may be introduced then by the driving scheme.
The invention resides in each and every novel characteristic feature and each and every combination of characteristic features. Reference numerals in the claims do not limit their protective scope. Use of the verb “to comprise” and its conjugations does not exclude the presence of elements other than those stated in the claims. Use of the article “a” or “an” preceding an element does not exclude the presence of a plurality of such elements.
Number | Date | Country | Kind |
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03100157 | Jan 2003 | EP | regional |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB2004/050008 | 1/12/2004 | WO | 00 | 7/22/2005 |
Publishing Document | Publishing Date | Country | Kind |
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WO2004/068208 | 8/12/2004 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3972595 | Romankiw et al. | Aug 1976 | A |
5659330 | Sheridon | Aug 1997 | A |
5757345 | Sheridon | May 1998 | A |
5956005 | Sheridon | Sep 1999 | A |
6449081 | Onuki et al. | Sep 2002 | B1 |
6603444 | Kawanami et al. | Aug 2003 | B1 |
6747777 | Sikora et al. | Jun 2004 | B1 |
7158282 | Liang et al. | Jan 2007 | B2 |
7187344 | Feenstra et al. | Mar 2007 | B2 |
Number | Date | Country |
---|---|---|
0884714 | Dec 1998 | EP |
Number | Date | Country | |
---|---|---|---|
20060132404 A1 | Jun 2006 | US |