Claims
- 1. An image forming apparatus comprising:a photoconductor; a development device for developing a latent image on said photoconductor to form a toner image; a transfer device, opposing said photoconductor, for transferring the toner image from said photoconductor onto a paper passing between said photoconductor and said transfer device; a measuring device for measuring a resistance of the paper; and a controller for controlling a development condition of said development device according to the resistance measured by said measuring device.
- 2. An image forming apparatus according to claim 1, wherein the development condition is a development bias voltage applied to said development device.
- 3. An image forming apparatus comprising:a photoconductor; a development device for developing a latent image on said photoconductor to form a toner image; a transfer device, opposing said photoconductor, for transferring the toner image from said photoconductor onto a paper passing between said photoconductor and said transfer device; a measuring device for measuring a resistance of the paper; a humidity sensor; and a controller for controlling image forming conditions of said image forming apparatus according to the resistance of the paper measured by said measuring device and the humidity measured by said humidity sensor.
- 4. An image forming apparatus according to claim 3, wherein the image forming conditions comprise a transfer condition of the transfer device.
- 5. An image forming apparatus according to claim 4, wherein the transfer condition is a transfer voltage of said transfer device.
- 6. A method for forming an image in an electrophotographic process, said method comprising the steps of:forming a latent image on a photoconductor; developing the latent image on the photoconductor with a development device to form a toner image; transferring the toner image from the photoconductor onto a paper passing between the photoconductor and a transfer device opposing the photoconductor; measuring a resistance of the paper; and controlling a development condition of said development device according to the thus measured resistance of the paper.
- 7. A method according to claim 6, wherein the development condition is a development bias voltage applied to said development device.
- 8. A method for forming an image in an electrophotographic process, said method comprising the steps of:forming a latent image on a photoconductor; developing the latent image on the photoconductor with a development device to form a toner image; transferring the toner image from the photoconductor onto a paper passing between the photoconductor and a transfer device opposing the photoconductor; measuring a resistance of the paper; measuring humidity of ambient environment; and controlling image forming conditions according to the thus measured resistance of the paper and the thus measured humidity.
- 9. A method according to claim 8, wherein the image forming conditions comprise a transfer condition of the transfer device.
- 10. A method according to claim 9, wherein the transfer condition is a transfer voltage of the transfer device.
- 11. An image forming apparatus comprising:a photoconductor; a development device for developing a latent image on the photoconductor to form a toner image; a transfer device for transferring the toner image on the photoconductor onto a paper; a first measuring device for measuring resistance of the paper; a second measuring device for measuring absolute humidity; a first comparator for comparing the resistance of the paper, as measured with the first measuring device, with a first standard resistance; a second comparator for comparing the absolute humidity, as measured with the second measuring device, with a standard absolute humidity; and a first controller for decreasing a peak-to-peak voltage of a sine wave superposed with a development bias voltage of the development device if the first comparator decides that the resistance of the paper is smaller than or equal to the first standard resistance and if the second comparator decides that the absolute humidity is larger than or equal to the standard absolute humidity.
- 12. An image forming apparatus according to claim 11, further comprising:a third comparator for comparing the resistance of the paper, as measured with the first measuring device, with a second standard resistance smaller than the first standard resistance; and a second controller for decreasing a transfer output of the transfer device if the third comparator decides that the resistance of the paper is smaller than or equal to the second standard resistance.
- 13. A method for forming an image comprising the steps of:forming a latent image on a photoconductor; developing the latent image with a development device to form a toner image; transferring the toner image on the photoconductor with a transfer device onto a paper carried between the photoconductor and the transfer device; measuring resistance of the paper; measuring absolute humidity; comparing the thus measured resistance of the paper with a first standard resistance; comparing the absolute humidity with a standard absolute humidity; and controlling a development bias voltage of the development device if the resistance of the paper is smaller than or equal to the first standard resistance and the absolute humidity is larger than or equal to the standard absolute humidity.
- 14. A method according to claim 13, further comprising the steps of:comparing the resistance of the paper with a second standard resistance smaller than the first standard resistance; and decreasing a transfer output of the transfer device if the resistance of the paper is smaller than or equal to the second standard resistance.
Priority Claims (3)
Number |
Date |
Country |
Kind |
8-302753 |
Nov 1996 |
JP |
|
8-302760 |
Nov 1996 |
JP |
|
8-302761 |
Nov 1996 |
JP |
|
RELATED APPLICATION
This application is a division of then application Ser. No. 08/970,331, filed Nov. 14, 1997, now U.S. Pat. No. 6,058,275, which claims priority from Japanese Patent Application No. 8-302753, filed Nov. 14, 1996, Japanese Patent Application No. 8-302760, filed Nov. 14, 1996, and Japanese Patent Application No. 8-302761, filed Nov. 14, 1996, each of which is hereby incorporated by reference in its entirety.
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