1460737093-9a3177ed-d4d3-4734-9e73-08ad5fa023d5

1. A fluid ejecting apparatus comprising:
an apparatus body; and
a plurality of fluid ejecting heads that can eject fluid onto a fluid ejection target medium;
wherein at least one of the plurality of fluid ejecting heads can move in a predetermined direction that intersects the transport direction of the fluid ejection target medium so as to change the relative positions of the plurality of fluid ejecting heads as viewed in the predetermined direction that intersects the transport direction of the fluid ejection target medium.
2. The fluid ejecting apparatus according to claim 1, further comprising: a movable guiding section that can move so as to determine the position of the fluid ejection target medium as viewed in the predetermined direction that intersects the transport direction of the fluid ejection target medium; wherein the above-mentioned at least one of the plurality of fluid ejecting heads that can move in the predetermined direction that intersects the transport direction of the fluid ejection target medium moves together with the movable guiding section.
3. The fluid ejecting apparatus according to claim 2, wherein one edge of the fluid ejection target medium as viewed in the direction of the width of the fluid ejection target medium is taken as a guide basis; and the movable guiding section can move in such a manner that the movable guiding section guides the other opposite edge of the fluid ejection target medium as viewed in the width direction of the fluid ejection target medium.
4. The fluid ejecting apparatus according to claim 1, further comprising a plurality of caps that are used for capping the plurality of fluid ejecting heads, respectively, wherein the cap that corresponds to, or the caps that correspond to, the above-mentioned at least one of the plurality of fluid ejecting heads that can move in the predetermined direction that intersects the transport direction of the fluid ejection target medium can move together with the above-mentioned at least one of the plurality of fluid ejecting heads.
5. The fluid ejecting apparatus according to claim 1, further comprising: a detecting section that can detect the position of the above-mentioned at least one movable fluid ejecting head as viewed in the predetermined direction that intersects the transport direction of the fluid ejection target medium; and a controlling section that identifies an overlapping area at which the plurality of fluid ejecting heads overlap each other or one another as viewed in the transport direction of the fluid ejection target medium in a fluid ejectable range on the basis of the detection result of the detecting section and then controls the operation of the plurality of fluid ejecting heads in such a manner that overlapping two or more fluid ejecting heads eject fluid in the identified overlapping area while shifting fluid landing positions on the fluid ejection target medium therebetween or thereamong.
6. The fluid ejecting apparatus according to claim 5, wherein the controlling section switches over fluid ejecting heads for ejection of fluid at the identified overlapping area at each time when the fluid ejection target media are changed over.
7. The fluid ejecting apparatus according to claim 5, further comprising a driving section that moves the above-mentioned at least one movable fluid ejecting head in the predetermined direction that intersects the transport direction of the fluid ejection target medium, wherein the detecting section can detect the movement position of the movable guiding section; and the controlling section controls the driving operation of the driving section on the basis of the detection result of the detecting section so as to move the above-mentioned at least one movable fluid ejecting head to a position that is in accordance with the width of the fluid ejection target medium.
8. A fluid ejection control method that is used by a fluid ejecting apparatus, the fluid ejecting apparatus having a plurality of fluid ejecting heads that can eject fluid onto a fluid ejection target medium, at least one of the plurality of fluid ejecting heads being able to move in a predetermined direction that intersects the transport direction of the fluid ejection target medium so as to change the relative positions of the plurality of fluid ejecting heads as viewed in the predetermined direction that intersects the transport direction of the fluid ejection target medium, the fluid ejection control method comprising:
moving the above-mentioned at least one movable fluid ejecting head to a position so as to position all nozzles inside the maximum fluid ejectable range that is determined by the size of the fluid ejection target medium; and
controlling, if there is an overlapping area at which the fluid ejectable ranges of the plurality of fluid ejecting heads overlap each other or one another as viewed in the transport direction of the fluid ejection target medium, the plurality of fluid ejecting heads in such a manner that overlapping two or more fluid ejecting heads eject fluid in the overlapping area while shifting fluid landing positions on the fluid ejection target medium therebetween or thereamong.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A display device comprising:
a pair of substrates; a display medium interposed between the pair of substrates; and a pixel having a reflective region for performing reflective display and a transmissive region for performing transmissive display,
wherein the display device includes a pixel electrode and a common electrode on one of the pair of substrates,
a voltage is applied to the display medium through the pixel electrode and the common electrode,
each of the pixel electrode and the common electrode is provided with a slit,
the common electrode is provided with the slit in the reflective region and the transmissive region, and
the pixel electrode comprises a first portion in the reflective region and a second portion in the transmissive region, wherein the first portion of the pixel electrode in the reflective region comprises a plurality of slits defined in the pixel electrode, and the second portion of the pixel electrode in the transmissive region does not include a plurality of slits defined therein, so that the pixel electrode does not include a plurality of slits in the tranmissive region of the pixel.
2. The display device according to claim 1, wherein the pixel electrode is formed over the entire transmissive region.
3. The display device according to claim 1, wherein the pixel electrode has a comb-tooth shape in the reflective region.
4. The display device according to claim 1, wherein the slit of the pixel electrode is entirely surrounded by the common electrode.
5. The display device according to claim 1, wherein the slit of the pixel electrode has a rectangular shape.
6. The display device according to claim 1, wherein the slit of the pixel electrode has a rectangular shape having at least one bent part.
7. The display device according to claim 1, wherein the slit of the pixel electrode has a zig-zag shape.
8. The display device according to claim 1, wherein the slit of the pixel electrode has a circular arc shape.
9. The display device according to claim 1, wherein the slit of the pixel electrode has a meandering shape.
10. The display device according to claim 1, wherein the common electrode has a comb-tooth shape.
11. The display device according to claim 1, wherein the slit of the common electrode is entirely surrounded by the common electrode.
12. The display device according to claim 1, wherein the slit of the common electrode has a rectangular shape.
13. The display device according to claim 1, wherein the slit of the common electrode has a rectangular shape having at least one bent part.
14. The display device according to claim 1, wherein the slit of the common electrode has a zig-zag shape.
15. The display device according to claim 1, wherein the slit of the common electrode has a circular arc shape.
16. The display device according to claim 1, wherein the slit of the common electrode has a meandering shape.
17. The display device according to claim 1, wherein the slit of the common electrode has substantially the same shape as a shape of the slit of the pixel electrode.
18. The display device according to claim 1, wherein a width of the slit of the common electrode in the reflective region is larger than a width of the slit of the common electrode in the transmissive region.
19. The display device according to claim 1, wherein a shield electrode is arranged between the pixel electrode and the common electrode in the reflective region.
20. The display device according to claim 19, wherein the shield electrode is connected to ground.