Claims
- 1. A developer apparatus equipped with at least one transport path wherein a plurality of electrodes are arranged in at least one row to be mutually separated by at least one prescribed spacing and with at least one developer material supply means arranged at front side of said at least one transport path, said developer material being supplied from said at least one of the developer material supply means to the front side, at least one polyphase alternating current voltage being applied to said plurality of electrodes, at least one traveling-wave electric field being formed and causing at least a portion of the developer material to be transported along the front to an image carrier, and the image carrier causing a latent electrostatic image to be developed, said developer apparatus having a rear electrode arranged at a back side of said at least one transport path opposite said at least one developer material supply means, and a developer-material-supplying electric field being formed between the rear electrode and said at least one developer material supply means.
- 2. The developer apparatus according to claim 1, wherein a width of the rear electrode in said at least one developer material transport direction is greater than a pitch between said plurality of electrodes in said at least transport path.
- 3. The developer apparatus according to claim 1 or 2, wherein the rear electrode is disposed with a bias in said at least one developer material transport direction relative to said at least one developer material supply means.
- 4. The developer apparatus according to claim 1, wherein a length of at least one rear electrode in a direction perpendicular to at least one developer material transport direction is less than a length of said plurality of electrodes in at least one transport path in said perpendicular direction.
- 5. The developer apparatus according to claim 1, wherein at least one developer-material-supplying electric field is an alternating electric field.
- 6. The developer apparatus according to claim 5, wherein at least one alternating current voltage corresponding to the alternating electric field is applied to said at least one of the rear electrodes.
- 7. The developer apparatus according to claim 5 or 6, wherein a condition (L/λ)×(1/(N×f2))>1/f1 is satisfied, where f1 is a frequency of the at least one alternating electric field, N is a number of phases of at least one of the polyphase alternating current voltage which forms at least one of the traveling-wave electric field, f2 is a frequency of said at least one of the traveling-wave electric field, L is a width of said at least one of the rear electrode in said at least one developer material transport direction, and λ is said at least one pitch between respective electrodes in said at least one of the transport path.
- 8. The developer apparatus according to claim 1, wherein the in that supply of developer material from said at least one developer material supply means to the front of said at least one transport path is stopped by switching said at least one developer-material-supplying electric field to a non-developer-material-supplying electric field.
- 9. The developer apparatus according to claim 1, wherein condition d1>d2 is satisfied, where d1 is a distance separating said at least one rear electrode and said plurality of electrodes of said at least one transport path, and d2 is a distance separating said plurality of electrodes of said at least one transport path and the front of said at least one transport path.
- 10. The developer apparatus according to claim 1, wherein condition Bs>d1 is satisfied, where Bs is a distance separating said plurality of electrodes of said at least one transport path, and d1 is a distance separating at least said rear electrode and said plurality of electrodes of said at least one transport path.
- 11. An image forming apparatus being equipped with at least one developer apparatus equipped with at least one transport path wherein a plurality of electrodes are arranged in at least one row to be mutually separated by at least one prescribed spacing and with at least one developer material supply means arranged at a front side of at least said one transport path, said developer material being supplied from said at least one of the developer material supply means to the front side, at least one polyphase alternating current voltage being applied to said plurality of electrodes, at least one traveling-wave electric field being formed and causing at least a portion of the developer material to be transported along the front to an image carrier, and the image carrier causing a latent electrostatic image to be developed, said developer apparatus having a rear electrode arranged at a back side of said at least one transport path opposite said at least one developer material supply means, and a developer-material-supplying electric field being formed between the rear electrode and said at least one developer material supply means.
- 12. The image forming apparatus according to claim 11, wherein a width of the rear electrode in said at least one developer material transport direction is greater than a pitch between said plurality of electrodes in said at least transport path.
- 13. The image forming apparatus according to claim 12, wherein the rear electrode is disposed with a bias in said at least one developer material transport direction relative to said at least one developer material supply means.
- 14. The image forming apparatus according to claim 11, wherein a length of at least one rear electrode in a direction perpendicular to at least one developer material transport direction is less than a length of said plurality of electrodes in at least one transport path in said perpendicular direction.
- 15. The image forming apparatus according to claim 11, wherein at least one developer-material-supplying electric field is an alternating electric field.
- 16. The image forming apparatus according to claim 15, wherein at least one alternating current voltage corresponding to the alternating electric field is applied to said at least one of the rear electrodes.
- 17. The image forming apparatus according to claims 15 or 16, wherein a condition (L/λ)×(1/(N×f2))>1/f1 is satisfied, where f1 is a frequency of the at least one alternating electric field, N is a number of phases of at least one of the polyphase alternating current voltage which forms at least one of the traveling-wave electric field, f2 is a frequency of said at least one of the traveling-wave electric field, L is a width of said at least one of the rear electrode in said at least one developer material transport direction, and λ is said at least one pitch between respective electrodes in said at least one of the transport path.
- 18. The image forming apparatus according to claim 11, wherein the supply of developer material from said at least one developer material supply means to the front of said at least one transport path is stopped by switching said at least one developer-material-supplying electric field to a non-developer-material-supplying electric field.
- 19. The image forming apparatus according to claim 11, wherein condition d1>d2 is satisfied, where d1 is a distance separating said at least one rear electrode and said plurality of electrodes of said at least one transport path, and d2 is a distance separating said plurality of electrodes of said at least one transport path and the front of said at least one transport path.
- 20. The image forming apparatus according to claim 11, wherein condition Bs>d1 is satisfied, where Bs is a distance separating said plurality of electrodes of said at least one transport path, and d1 is a distance separating at least said rear electrode and said plurality of electrodes of said at least one transport path.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2001-392293 |
Dec 2001 |
JP |
|
Parent Case Info
This nonprovisional application claims priority under 35 U.S.C. §119(a) on patent application No. 2001-392293 filed in JAPAN on Dec. 25, 2001, which is herein incorporated by reference.
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