Claims
- 1. An electrophotographic printing apparatus comprising:
- a photosensitive object having a conductive substrate and a photoconductive surface layer formed on said conductive substrate;
- first rotating means for rotating said photosensitive object;
- charging means, facing said photoconductive surface layer, for charging said photoconductive surface layer;
- exposing means, facing said photoconductive surface layer, for partially exposing said photoconductive surface layer according to an image to be printed in order to form an electrostatic latent image on said photoconductive surface layer;
- developing means for developing the electrostatic latent image to a developer image, the developing means including a developer retaining object, located facing said photoconductive surface layer, for retaining developer on a surface thereof and bringing the retained developer into contact with said photoconductive surface layer, second rotating means for rotating said developer retaining object, and first electric field generating means for generating a first electric field between said photosensitive object and said developer retaining object to cause said developer to partially adhere to said photoconductive surface layer according to said electrostatic latent image;
- transferring means, facing said photoconductive surface layer, for transferring said developer image formed on said photoconductive surface layer to a specified printing medium;
- second electric field generating means for generating a second electric field between said photosensitive object and said developer retaining object to attract said developer to said developer retaining object from said photoconductive surface layer; and
- control means for controlling said first rotating means, said developing means and said charging means to start charging said photoconductive surface layer when said first rotating means begins rotating said photosensitive object, and then to cause said second electric field generating means to generate said second electric field until a charging starting position on said photoconductive surface layer facing said charging means at the start of charging by said charging means has passed a position facing said developing means and to cause said first electric field generating means to generate said first electric field after said charging starting position has passed the position facing said developing means.
- 2. An electrophotographic printing apparatus according to claim 1, wherein:
- said first electric field generating means comprises development bias power supply means for applying a specified development bias to said developer retaining object; and
- said second electric field generating means comprises reverse bias power supply means for applying to said developer retaining object a specified reverse bias of the opposite polarity to that of said development bias.
- 3. An electrophotographic printing apparatus according to claim 1, wherein said second electric field generating means comprises a bias power supply means for applying a specified bias voltage to the conductive substrate of said photosensitive object.
- 4. An electrophotographic printing apparatus according to claim 3, wherein:
- said first electric field generating means comprises a development bias power supply means for applying a specified development bias to said developer retaining object; and
- said transferring means includes a transfer power supply for applying a transfer voltage to said printing medium to transfer the developer image on said photoconductive surface layer to said printing medium,
- the potential of said photoconductive surface layer charged by said charging means, said development bias, and said transfer voltage having values equal to values prevailing when the conductive substrate of said photosensitive object is grounded plus the bias voltage applied to the conductive substrate of said photosensitive object, respectively.
- 5. A method of electrophotographically printing comprising the steps of:
- rotating a photosensitive object;
- charging a photoconductive surface of the photosensitive object;
- exposing selectively the photoconductive surface according to a document image to form an electrostatic latent image on the photoconductive surface;
- developing the electrostatic latent image to a developer image;
- transferring the developer image formed on the photoconductive surface to a printing medium at a transfer position;
- starting charging the photoconductive surface when the photosensitive object has started rotating;
- generating a first electric field for attracting developer to a developer retaining object from the photoconductive surface of the photoconductive object until the charging starting position of the photoconductive surface at which the charging is started has passed a developing position at which the developing is performed; and
- generating a second electric field for adhering developer to the latent image after a charging starting position of the photosensitive object at which the charging is started has passed a developing position at which the developing is performed.
- 6. A method of electrophotographically printing comprising the steps of:
- rotating a photosensitive object;
- charging a photoconductive surface of the photosensitive object;
- exposing selectively the photoconductive surface according to a document image to form an electrostatic latent image on the photoconductive surface;
- developing the electrostatic latent image to a developer image;
- transferring the developer image formed on the photoconductive surface to a printing medium at a transfer position;
- starting charging the photoconductive surface when the photosensitive object has started rotating;
- generating a first electric field for attracting developer from the photoconductive surface of the photosensitive object to a developer retaining object until the charging starting position of the photosensitive object has passed a developing position at which the developing is performed;
- generating a second electric field for adhering developer to the latent image after a charging starting position of the photosensitive object at which the charging is started has passed a developing portion at which the developing is performed;
- generating a third electric field for preventing transfer of developer from the photoconductive surface at least until the charge starting position of the photosensitive object reaches the transfer position; and
- generating a fourth electric field for promoting transfer of the developer image from the photoconductive surface to the printing medium during the transferring step after the charging stating position of the photosensitive object reaches the transfer position.
- 7. An electrophotographic printing apparatus comprising:
- a photosensitive object having a photoconductive surface;
- first rotating means for rotating said photosensitive object;
- charging means, facing said photoconductive surface, for charging said photoconductive surface;
- exposing means, facing said photoconductive surface, for partially exposing said photoconductive surface according to an image to be printed in order to form an electrostatic latent image on said photoconductive surface;
- developing means for developing the electrostatic latent image on said photoconductive surface to a developer image, said developing means including a developer retaining object, facing said photoconductor surface, for retaining developer on a surface thereof and bringing the retained developer into contact with said photoconductive surface, and second rotating means for rotating said developer retaining object;
- first electric field generating means for generating a first electric field between said photosensitive object and said developer retaining object to cause developer to adhere to said photoconductive surface according to said electrostatic latent image;
- transferring means facing said photoconductive surface;
- second electric field generating means for generating a second electric field for transferring said developer image formed on said photoconductive surface to a printing medium;
- third electric field generating means for generating a third electric field for inhibiting transfer of developer from said photoconductive surface to said transferring means; and
- control means for controlling said first rotating means, said charging means, said developing means and said first, second and third electric field generating means,
- to activate said developing means and said first electric field when a first period of time has elapsed from a time when said charging means started charging said photoconductive surface, the first period of time corresponding to a time period required for movement of said photosensitive object from a charging position at which said charging means charges said photoconductive surface to a developing position at which said developing means develops the electrostatic latent image on said photosensitive surface,
- to activate the second electric field when a second period of time has elapsed, the second period of time corresponding to a time period required for movement of said photoconductive object from the developing position, when the first time period elapses, to a transfer position at which said developer image transfers from said photoconductive surface to the printing medium, and
- to activate the third electric field during the first and second time periods.
- 8. An electrophotographic printing apparatus according to claim 7, wherein said control means includes:
- means for generating a first control signal to said charging means to start charging said photoconductive surface, generating a second control signal to said second rotating means to start rotating said developer retaining object upon elapse of the first time period, generating a third control signal to activate the first electric field upon elapse of the first time period, generate a fourth control signal to activate the third electric field during the first and second time periods, and generate a fifth control signal to deactivate the third electric field and activate the second electric field upon elapse of the first and second time periods.
- 9. An electrophotographic printing apparatus comprising:
- a photoconductive object including a conductive substrate and a photoconductive surface layer formed on the conductive surface and having a photoconductive surface;
- means for translating the photoconductive surface in a closed loop path;
- charging means for charging the photoconductive surface at a charging position;
- exposing means for selectively exposing the photoconductive surface to form an electrostatic latent image on the photoconductive surface;
- developing means including a developer retaining member for bringing developer into developing relation with the electrostatic latent image on the photoconductive surface at a developing position to form a developer image corresponding to the electrostatic latent image;
- transfer means for transferring the developer image to a printing medium at a transfer position;
- first and second power supplies;
- switching means; and
- control means for controlling the translating means, charging means and switching means, whereby to
- initiate translation of the photoconductive surface past the charging position, developing position, and transfer position in succession,
- initiate charging of the photoconductive surface at the charging position by the charging means at a charge starting location on the photoconductive surface,
- condition the first power supply through the switching means to generate a first electric field between the photoconductive surface and the developer retaining member during a first time period required for the charge starting location on the photoconductive surface to at least move from the charging position to the developing position, the first electric field effective to attract developer from the photoconductive surface to the developer retaining member;
- condition the second power supply through the switching means to generate a second electric field between the photoconductive surface and the transfer means during a second time period required for the charge starting location on the photoconductive surface to at least move from the charging position to the transfer position, the second electric field effective to inhibit transfer of developer from the photoconductive surface;
- condition the second power supply through the switching means to generate a third electric field between the photoconductive surface and the developer retaining member upon expiration of the first time period, the third electric field effective to attract developer form the developer retaining member to the photoconductive surface and form a developer image conforming to the electrostatic latent image, and
- condition the first power supply through the switching means upon expiration of the second time period to generate a fourth electric field between the photoconductive surface and the transfer means, the fourth electric field effective to transfer the developer image from the photoconductive surface to the printing medium.
Priority Claims (3)
Number |
Date |
Country |
Kind |
3-037487 |
Mar 1991 |
JPX |
|
3-039819 |
Mar 1991 |
JPX |
|
3-064530 |
Mar 1991 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 07/844,435, filed Mar. 2, 1992, now abandoned.
US Referenced Citations (13)
Continuations (1)
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Number |
Date |
Country |
Parent |
844435 |
Mar 1992 |
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