What is claimed is:
1. A developing apparatus developing an image on a photoreceptive drum in a printer, the developing apparatus comprising:
a disc rotating independently of the photoreceptive drum, disposed on one of sides of the photoreceptive drum and having a cam groove formed on an outer circumferential surface thereof;
a developing unit including a housing containing a developer and a developing roller supported by both sidewalls of the housing and having a shaft contacting the cam groove and the outer circumferential surface of the disc; and
an elastic member provided at a surface of the housing to bias the developing apparatus toward the photoreceptive drum.
2. The apparatus as claimed in claim 1, wherein the disc has a diameter greater than that of the photoreceptive drum.
3. The apparatus as claimed in claim 2, wherein the developing roller contacts the photoreceptive drum when the shaft is disposed in the cam groove.
4. The apparatus as claimed in claim 3, wherein the disc is rotatably and coaxially installed on the photoreceptive drum.
5. The apparatus as claimed in claim 4, further comprising:
a bearing provided around the shaft where the shaft and the outer circumferential surface of the disc contact.
6. The apparatus as claimed in claim 5, further comprising:
a power transfer unit driving the disc.
7. The apparatus as claimed in claim 6, wherein the disc comprises:
another cam groove, and the cam groove and another cam groove are provided at an interval along the outer circumferential surface of the disc.
8. The apparatus as claimed in claim 3, further comprising:
a bearing provided around the shaft where the shaft and the outer circumferential surface of the disc contact.
9. The apparatus as claimed in claim 8, further comprising:
a power transfer unit driving the disc.
10. The apparatus as claimed in claim 9, wherein the disc comprises:
another cam groove, and the cam groove and another cam groove are provided at an identical interval along the outer circumferential surface of the disc.
11. The apparatus as claimed in claim 1, further comprising:
a supply roller installed adjacent to the developing roller to supply the developer to the developing roller.
12. The apparatus as claimed in claim 1, wherein the disc comprises:
another cam groove, and the cam groove and another cam groove are provided at an identical interval along the outer circumferential surface of the disc.
13. A developing apparatus developing an image on a photoreceptive drum in a printer, comprising:
a disc which is rotatable and disposed on a side of the photoreceptive drum, and having a surface and a cam groove formed on the surface; and
a developing unit including a housing containing a developer and a developing roller supported by the housing, having a shaft disposed to contact one of the cam groove and the surface of the disc, and selectively moving toward and away from the photoreceptive drum during a development process in response to a contact between the shaft and the one of the cam groove and the surface of the disc.
14. The apparatus as claimed in claim 13, wherein the disc rotates at a first speed, and the photoreceptive drum rotates at a second speed.
15. The apparatus as claimed in claim 14, wherein the first speed of the disc varies, and the second speed of the photoreceptive drum does not vary during a development process.
16. The apparatus as claimed in claim 14, wherein the disc rotates intermittently during a continuous rotation of the photoreceptive drum.
17. The apparatus as claimed in claim 14, wherein the disc comprises another cam groove, and the first speed decreases in accordance with an increase of the number of the cam grooves formed on the outer circumferential surface.
18. The apparatus as claimed in claim 17, wherein the shaft of the developing unit selectively contacts one of the cam groove, the outer circumferential surface, and the another cam groove.
19. The apparatus as claimed in claim 13, wherein the disc comprises:
a curved portion formed between the cam groove and the surface of the disc to allow the developing unit to smoothly contact the photoreceptive drum when the shaft of the developing unit moves from the surface to the cam groove.
20. The apparatus as claimed in claim 13, wherein the cam groove has a depth with respect to the surface, and the depth corresponds to a moving distance of the developing unit with respect to the photoreceptive drum.
21. The apparatus as claimed in claim 13, wherein the surface of the disc comprises:
an outmost circumferential surface facing the shaft of the developing unit.
22. The apparatus as claimed in claim 13, further comprising:
another disc disposed on another side of the photoreceptive drum opposite to the side, having another surface and another cam groove, wherein the shaft of the developing unit is disposed in one of the cam groove and another cam groove during the development process, and the shaft contacts one of the surface and another surface of the disc when the developing unit does not contact the cam groove and another cam groove.
23. The apparatus as claimed in claim 13, further comprising:
a first power transfer unit rotating the disc; and
a second power transfer unit rotating the photoreceptive drum.
24. The apparatus as claimed in claim 13, wherein the disc rotates independently of the photoreceptive drum.
25. The apparatus as claimed in claim 13, wherein the disc and the photoreceptive drum rotates in one of a clockwise direction and a counterclockwise direction.
26. The apparatus as claimed in claim 13, wherein the developing unit is attached to the photoreceptive drum to develop the image with the developer when the shaft is disposed in the cam groove of the disc, and detached from the photoreceptive drum when the shaft contacts the surface of the disc.
27. The apparatus as claimed in claim 13, wherein the developing unit is biased toward the photoreceptive drum.
28. The apparatus as claimed in claim 13, further comprising:
an elastic member provided at a surface of the housing to push the developing unit toward the photoreceptive drum and to allow the developing unit to contact the photoreceptive drum when the shaft is disposed in the cam groove.
29. A developing apparatus developing an image on a photoreceptive drum in a printer, comprising:
a disc which is rotatable and disposed on a side of the photoreceptive drum, having a surface and a cam groove formed on the surface; and
a plurality of developing units disposed around the photoreceptive drum, each including a housing containing a developer and a developing roller supported by the housing, each having a shaft disposed to contact one of the cam groove and the surface of the disc, and each selectively moving toward and away from the photoreceptive drum in response to a contact between the shaft and the one of the cam groove and the surface.
30. The apparatus as claimed in claim 29, wherein one of shafts of the developing units is disposed in the cam groove to allow one of the developing units to contact the photoreceptive drum to develop the image with the developer.
31. The apparatus as claimed in claim 29, wherein respective shafts of the developing units are disposed around the disc to selectively contact one of the cam groove and the surface.
32. The apparatus as claimed in claim 29, wherein the disc rotates in a first speed in a forward direction or a reversed direction, and the photoreceptive drum rotates at a second speed.
33. The apparatus as claimed in claim 32, wherein the photoreceptive drum rotates in the forward direction.
34. A developing apparatus developing an image on a photoreceptive drum in a printer, comprising:
a disc rotating disposed on a side of the photoreceptive drum, having an outer circumferential surface, and having a plurality of cam grooves formed on the outer circumferential surface; and
a plurality of developing units disposed around the photoreceptive drum, each including a housing containing a developer and a developing roller supported by the housing, each having a shaft disposed to contact one of the cam grooves and the outer circumferential surface of the disc, and each selectively moving toward and away from the photoreceptive drum in response to a contact between the shaft and one of the cam grooves and the outer circumferential surface of the disc.
35. The apparatus as claimed in claim 34, wherein all of the developing units are disposed between the adjacent cam grooves.
36. The apparatus as claimed in claim 34, wherein the cam grooves comprises a first adjacent cam grooves and a second adjacent cam grooves, and a first number of the developing units are disposed between the first adjacent cam grooves while a second number of the developing unit are disposed between the second adjacent cam grooves.
37. The apparatus as claimed in claim 34, wherein one of the developing units contacts the photoreceptive drum to develop the image with the respective developer in response to the contact between the shaft and one of the cam grooves and the outer circumferential surface of the disc.
38. The apparatus as claimed in claim 34, wherein one of the shafts of the developing units is disposed in one of the cam grooves, and other shafts of the developing units are disposed on the outer circumferential surface of the disc.
39. The apparatus as claimed in claim 34, wherein the shafts of the developing units sequentially move from the outer circumferential surface of the disc to one of the cam grooves and from one of the cam grooves to the outer circumferential surface during a rotation of the disc and sequentially disposed in another one of the cam grooves disposed adjacent to the one of the cam grooves during the rotation of the disc after all of the shafts of the developing units sequentially move from the one of the cam grooves to the outer circumferential surface of the disc during a rotation of the disc.
40. The apparatus as claimed in claim 34, wherein the disc comprises another outer circumferential surface disposed opposite to the outer circumferential surface with respect to one of the cam grooves, and the shafts of the developing units comprise a first shaft disposed on the outer circumferential surface, a second shaft disposed in the one of the cam grooves, and a third shaft disposed on the another outer circumferential surface.
41. A developing apparatus developing an image on a photoreceptive drum in a printer, comprising:
a disc which is rotatable independently of the photoreceptive drum and disposed on a side of the photoreceptive drum, and having a cam groove formed on an outer circumferential surface thereof; and
a developing unit having a housing containing developer and a developing roller supported by both sidewalls of the housing, and having a shaft contacting the outer circumferential surface of the disc.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
What is claimed is:
1. An image sensor comprising:
a pixel array, comprising at least one row of pixels, each pixel having a light receiving element and a reset switch connected to a reset node of said light receiving element, divided into an effective pixel region and an optical black pixel region; and
a read-out circuit, scanning on said pixel array to read out signals from said pixels, including a black clamp circuit for holding an signal from said optical black pixel region as an integrated dark current signal and for correcting an signal from said effective pixel region with said integrated dark current signal,
wherein said optical black pixel region comprises a potential averaging line commonly connected to said reset nodes of a plurality of pixels in a pixel row.
2. The image sensor of claim 1, wherein pixels including said potential averaging line are located outside of said effective pixel region in a horizontal scanning direction, and line clamp is performed by said black clamp circuit.
3. The image sensor of claim 1, wherein said pixel array comprises a plurality of pixels arranged in rows and columns, pixels including said potential averaging line are located outside of said effective pixel region in a vertical scanning direction, and frame clamp is performed by said black clamp circuit.
4. The image sensor of claim 3, wherein said potential averaging lines in a plurality of pixel rows are connected to each other, and said reset switch is commonly connected to said potential averaging lines.
5. The image sensor of claim 1, wherein said pixel array comprises a plurality of pixels arranged in rows and columns, and each column comprises a vertical bus line coupled to pixels of this column in order to read out an signal from a pixel of selected row,
wherein said read-out circuit further comprises a correlation double sampling circuit for each column, said correlation double sampling circuit is coupled between said vertical bus line of this column and said black clamp circuit.
6. An image sensor comprising:
a pixel array, comprising a plurality of pixels, each pixel having a light receiving element;
a read-out circuit, scanning on said pixel array to read out signals from pixels; and
a control circuit, repeating sequential operation of a light integration period, a read-out period and a power-off period,
wherein said control circuit:
in said light integration period, causes said pixel array to perform light integration without supplying power to said read-out circuit;
in said read-out period, causes said read-out circuit to read out said signals; and
in said power-off period, ceases to supply power to said pixel array and said read-out circuit.
7. An image sensor comprising:
a pixel array, comprising a plurality of pixels, each pixel having a light receiving element;
a vertical scanning circuit, serially activating rows of said pixel array to read out signals from pixels of an activated row;
sample and hold circuits, sampling signals from the pixels of activated row and holding them;
a horizontal scanning circuit, serially activating said sample and hold circuits to read out a held signal from an activated sample and hold circuit on to a horizontal bus;
an amplifier circuit, amplifying a signal on said horizontal bus or said signals read out from said pixels of said activated row; and
a control circuit, repeating sequential operation of a light integration period, a read-out period and a power-off period,
wherein said control circuit:
in said light integration period, causes said pixel array to performs light integration for at least one frame period without supplying power to said sample and hold circuits and said horizontal scanning circuit;
in said read-out period, causes said vertical scanning circuit, said sample and hold circuits, and said horizontal scanning circuit to operate for one frame period; and
in said power-off period, ceases to supply power to said pixel array, said vertical scanning circuit, said sample and hold circuits, said horizontal scanning circuit and said amplifier circuit for at least one frame period.
8. An image sensor comprising:
a pixel array, comprising a plurality of pixels, each pixel having a light receiving element;
a read-out circuit, scanning on said pixel array to read out signals from pixels; and
a control circuit, repeating sequential operation of a light integration period and a read-out period,
wherein said control circuit:
in said light integration period, causes said pixel array to perform light integration without supplying power to said read-out circuit; and
in said read-out period, causes said read-out circuit to read out said signals.
9. An image sensor comprising:
a pixel array, comprising a plurality of pixels, each pixel having a light receiving element;
a vertical scanning circuit, serially activating rows of said pixel array to read out signals from pixels of an activated row;
sample and hold circuits, sampling signals from the pixels of activated row and holding them;
a horizontal scanning circuit, serially activating said sample and hold circuits to read out a held signal from an activated sample and hold circuit on to a horizontal bus;
an amplifier circuit, amplifying a signal on said horizontal bus or said signals read out from said pixels of said activated row; and
a control circuit, repeating sequential operation of a light integration period and a read-out period,
wherein said control circuit:
in said light integration period, causes said pixel array to performs light integration for at least one frame period without supplying power to said sample and hold circuits and said horizontal scanning circuit; and
in said read-out period, causes said vertical scanning circuit, said sample and hold circuits, and said horizontal scanning circuit to operate for one frame period.
10. An image sensor comprising:
a pixel array, comprising a plurality of pixels, each pixel having a light receiving element;
a vertical scanning circuit, serially activating rows of said pixel array to read out signals from pixels of an activated row;
sample and hold circuits, sampling signals from the pixels of activated row and holding them;
a horizontal scanning circuit, serially activating said sample and hold circuits to read out a held signal from an activated sample and hold circuit on to a horizontal bus;
an amplifier circuit, amplifying a signal on said horizontal bus or said signals read out from said pixels of said activated row; and
a control circuit, repeating sequential operation of a light integration period and a read-out period,
wherein said control circuit:
in said light integration period, causes said pixel array to performs light integration for one frame period without supplying power to said sample and hold circuits and said horizontal scanning circuit; and
in said read-out period, causes said vertical scanning circuit, said sample and hold circuits, and said horizontal scanning circuit to operate for at least one frame period.