Claims
- 1. In an image forming apparatus having an endless photoreceptive member, the endless photoreceptive member being composed of a transparent support member laminated with a transparent electroconductive layer and a photoconductive element composed of at least one layer of photoconductive material, the transparent electroconductive layer being interposed between the transparent support member and the photoconductive element, the image forming apparatus further having exposure means disposed within the endless photoreceptive member and positioned at the side of said transparent electroconductive layer for irradiating said photoreceptive member with light, and a toner support member for carrying developer and forming a brush of the developer, said toner support member disposed opposing the photoreceptive member, the improvement wherein: said exposure means comprise a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, said LED elements being divided into a predetermined number of blocks, said exposure means exposing the photoreceptive member in a time sharing manner block by block of the LED elements, said photoconductive element has an exposure portion located therein for receiving light exposed with said exposure means, and said photoconductive element is formed of an amorphous silicon compound; said photoreceptive member has a developer brushing contact region in contact with said brush of the developer and is electrified through said brush of the developer; the exposure portion is located in the developer brushing contact region; and the photoconductive material in said photoreceptive member has a total thickness approximately in a range from 2 to 17 .mu.m.
- 2. An image forming apparatus as claimed in claim 1, wherein the photoconductive layer is formed of a plurality of layer regions including a photoinductive layer region at the side of the transparent electroconductive layer, and a carrier transfer layer region provided at the side of the surface layer for transferring carrier generated with the photoinductive layer region to the surface layer.
- 3. In an image forming apparatus having an endless photoreceptive member laminated with a transparent electroconductive layer and a photoconductive layer on a transparent support member, exposure means disposed within the endless photoreceptive member and positioned at the side of said transparent electroconductive layer for irradiating said photoreceptive member with light, and a toner support member for carrying developer and forming a brush of the developer, said toner support member disposed opposing the photoreceptive member, the improvement wherein: said exposure means having a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, said LED elements being divided into a predetermined number of blocks, said exposure means exposing the photoreceptive member in a time sharing manner block by block of the LED elements; said photoconductive layer has an exposure portion located therein for receiving light exposed with said exposure means, and said photoconductive layer is formed of an amorphous silicon compound; said photoreceptive member has a developer brushing contact region in contact with said brush of the developer and is electrified through said brush of the developer; the exposure portion is located in the developer brushing contact region; and the exposure portion is located downstream, in the direction of movement of the photoreceptive member, from the middle of the developer brushing contact region.
- 4. An image forming apparatus as claimed in claim 3, wherein the developer includes a carrier having a surface formed by an electric conductive treatment, and high electric resistivity or dielectric toner.
- 5. An image forming apparatus as claimed in claim 4, wherein the average size of the carrier is approximately in a range from 1 to 5 times of that of the toner.
- 6. An image forming apparatus as claimed in claim 4, wherein the carrier is so formed that a basic particle made any of dielectric resins having magnetic powder dispersed therein, and that electric conductive fine particles are attached on the surface of the basic particle, and wherein the carrier is electric conductive and heat fusible having the color almost the same as toner.
- 7. In an image forming apparatus having an endless photoreceptive member laminated with a transparent electroconductive layer and a photoconductive layer on a transparent support member, exposure means disposed within the endless photoreceptive member and positioned at the side of said transparent electroconductive layer for irradiating said photoreceptive member with light, and a toner support member for carrying developer and forming a brush of the developer, said toner support member disposed opposing the photoreceptive member, the improvement wherein: said exposure means comprise a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, said LED elements being divided into a predetermined number of blocks, said exposure means exposing the photoreceptive member in a time sharing manner block by block of the LED elements; said photoconductive layer has an exposure portion located therein for receiving light exposed with said exposure means, and said photoconductive layer is formed of an amorphous silicon compound; said photoreceptive member has a developer brushing contact region in contact with said brush of the developer and is electrified through said brush of the developer; the exposure portion is located in the developer brushing contact region; and said photoreceptive member is formed in a cylindrical photoreceptor drum having a diameter smaller than 50 mm.
- 8. An image forming apparatus as claimed in claims 1 or 7, wherein the moving direction of the photoreceptive member in the developer brushing contact region is set to be opposite to the toner carrying direction of the toner support member.
- 9. A rear side exposure type electrophotographic image forming apparatus comprising: an endless photoreceptive member including a transparent support member, a transparent electroconductive layer provided on said support member and a photoconductive layer provided on said electroconductive layer, said photoconductive layer being formed of an amorphous silicon compound; exposure means disposed within the endless photoreceptive member and positioned at the transparent support member side of the photoreceptive member for irradiating the photoconductive layer thereby forming a latent image in the photoconductive layer, the exposure means having a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, the LED elements being divided into a predetermined number of blocks along the main scanning line; driving means for driving the array of the LED elements for light irradiation block by block in a time sharing manner; toner support means disposed opposing the photoreceptive member; and developer carried by said toner support means and forming a brush wherein the developer includes a carrier, said carrier having dielectric basic particles, magnetic powder dispersed in each basic particle and electric conductive particles attached on the surface of each basic particle.
- 10. An electrophotographic image forming apparatus as claimed in claim 9 wherein the carrier has an average size approximately 1 to 5 times larger than that of a toner particle used in the developer.
- 11. An electrophotographic image forming apparatus as claimed in claim 9 wherein the dielectric basic particle is formed by a heat fusible material having substantially the same color as that of a toner used in the developer.
- 12. An electrophotographic image forming apparatus as claimed in claim 9 wherein the photoconductive layer is formed of an amorphous silicon compound.
- 13. A rear side exposure type electrophotographic image forming apparatus comprising: an endless photoreceptive member including a transparent support member, a transparent electroconductive layer provided on said support member and a photoconductive layer provided on said electroconductive layer, said photoconductive layer being formed of an amorphous silicon compound; exposure means disposed within the endless photoreceptive member and positioned at the transparent support member side of the photoreceptive member for irradiating the photoconductive layer thereby forming a latent image in the photoconductive layer, the exposure means having a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, the LED elements being divided into a predetermined number of blocks along the main scanning line; driving means for driving the array of the LED elements for light irradiation block by block in a time sharing manner; and toner support means disposed opposing the photoreceptive member for carrying developer and forming a brush of the developer, wherein the photoreceptive member has a developer brushing contact region in contact with the brush of the developer and is electrified through the brush of the developer within the developer brushing contact region and wherein said exposure means irradiates the photoconductive layer with light at an exposure site located within the developer brushing contact region, and further wherein the photoreceptive member in the developer contact region moves in a direction opposite to a moving direction of the developer carried by the toner support means and wherein the exposure site is located downstream from the middle of the developer brushing contact region along movement of the photoreceptive member a predetermined distance which is sufficient to reduce electrification of the photoconductive layer after exposure.
- 14. A rear side exposure type electrophotographic image forming apparatus comprising: an endless photoreceptive member including a transparent support member, a transparent electroconductive layer provided on said support member and a photoconductive layer provided on said electroconductive layer, said photoconductive layer being formed of an amorphous silicon compound; exposure means disposed within the endless photoreceptive member and positioned at the transparent support member side of the photoreceptive member for irradiating the photoconductive layer thereby forming a latent image in the photoconductive layer, the exposure means having a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, the LED elements being divided into a predetermined number of blocks along the main scanning line; driving means for driving the array of the LED elements for light irradiation block by block in a time sharing manner; and toner support means disposed opposing the photoreceptive member for carrying developer and forming a brush of the developer, wherein the photoreceptive member has a developer brushing contact region in contact with the brush of the developer and is electrified through the brush of the developer within the developer brushing contact region and wherein said exposure means irradiates the photoconductive layer with light at an exposure site located within the developer brushing contact region, further wherein the exposure site is located downstream along movement of the photoreceptor from the middle of the developer brushing contact region a predetermined distance so that a time for electrification before the exposure site is longer than a time for electrification after the exposure site, and wherein an electrification time C from the beginning of electrification until a charge in the photoreceptive member reaches a predetermined level, an exposure time R during which the charge reduces from the predetermined charge level to a charge level for forming the latent image, and a passing time T required for the photoreceptive member to pass through the developer brushing contact region satisfy the following formula (1) and formula (2):
- T>C+R FORMULA (1), and
- C>R FORMULA (2).
- 15. An electrophotographic image forming apparatus as claimed in claim 14, wherein the passing time T further satisfies the following formula (3):
- T<2C+R FORMULA (3).
- 16.
- 16. An image forming apparatus as claimed in claim 1 wherein said photoreceptive member is further composed of an injection blocking layer constituted by a high resistivity amorphous silicon carbide compound formed between, and contacting, the photoconductive element and the transparent electroconductive layer.
- 17. An image forming apparatus as claimed in claim 16 wherein said photoreceptive member is further composed of a high resistivity a-SiC surface layer formed on, and contacting, the photoconductive element, said photoconductive element being interposed between said injection blocking layer and said surface layer.
- 18. An image forming apparatus as claimed in claim 1, wherein, in the developer brushing contact region, an electrification time C from the beginning of electrification until a charge in the photoreceptive member reaches a predetermined level, an exposure time R during which the charge reduces from the predetermined charge level to a charge level for forming a latent image due to the exposure, and a passing time T for passing the photoreceptive member through the developer brushing contact region satisfy the following formula (1) and formula (2):
- T>C+R FORMULA (1), and
- C>R FORMULA (2).
- 19. An image forming apparatus as claimed in claim 1, wherein, in the image forming apparatus an electrically conductive toner or carrier is provided, a light input energy intensity received on the photoconductive layer exposed with the LED elements in n bits unit is set more than 0.5 .mu.J/cm.sup.2, and an exposure pulse time is set in a range from 5 to 200 .mu.s.
- 20. An image forming apparatus as claimed in claim 18, wherein the passing time T further satisfies the following formula (3):
- T<2C+R FORMULA (3).
- 21. A rear side exposure type electrophotographic image forming apparatus comprising: an endless photoreceptive member including a transparent support member, a transparent electroconductive layer provided on said support member and a photoconductive layer provided on said electroconductive layer, said photoconductive layer being formed of an amorphous silicon compound; exposure means disposed within the endless photoreceptive member and positioned at the transparent support member side of the photoreceptive member for irradiating the photoconductive layer thereby forming a latent image in the photoconductive layer, the exposure means having a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, the LED elements being divided into a predetermined number of blocks along the main scanning line; driving means for driving the array of the LED elements for light irradiation block by block in a time sharing manner; and toner support means disposed opposing the photoreceptive member for carrying developer and forming a brush of the developer, wherein the photoreceptive member has a developer brushing contact region in contact with the brush of the developer and is electrified through the brush of the developer within the developer brushing contact region and wherein said exposure means irradiates the photoconductive layer with light at an exposure site located within the developer brushing contact region, wherein the photoreceptive member in the developer contact region moves in a direction opposite to a moving direction of the developer carried by the toner support means and wherein the exposure site is located downstream from the middle of the developer brushing contact region along movement of the photoreceptive member a predetermined distance which is sufficient to reduce electrification of the photoconductive layer after exposure.
- 22. A rear side exposure type electrophotographic image forming apparatus comprising: an endless photoreceptive member including a transparent support member, a transparent electroconductive layer provided on said support member and a photoconductive layer provided on said electroconductive layer, said photoconductive layer being formed of an amorphous silicon compound; exposure means disposed within the endless photoreceptive member and positioned at the transparent support member side of the photoreceptive member for irradiating the photoconductive layer thereby forming a latent image in the photoconductive layer, the exposure means having a plurality of LED elements arrayed along a main scanning line of the photoreceptive member, the LED elements being divided into a predetermined number of blocks along the main scanning line; driving means for driving the array of the LED elements for light irradiation block by block in a time sharing manner; and toner support means disposed opposing the photoreceptive member for carrying developer and forming a brush of the developer, wherein the photoreceptive member has a developer brushing contact region in contact with the brush of the developer and is electrified through the brush of the developer within the developer brushing contact region and wherein said exposure means irradiates the photoconductive layer with light at an exposure site located within the developer brushing contact region; wherein the exposure site is located downstream along movement of the photoreceptor from the middle of the developer brushing contact region a predetermined distance so that a time for electrification before the exposure site is longer than a time for electrification after the exposure site, and wherein an electrification time C from the beginning of electrification until a charge in the photoreceptive member reaches a predetermined level, an exposure time R during which the charge reduces from the predetermined charge level to a charge level for forming the latent image, and a passing time T required for the photoreceptive member to pass through the developer brushing contact region satisfy the following formula (1) and formula (2):
- T>C+R FORMULA (1), and
- C>R FORMULA (2).
- 23.
- 23. An electrophotographic image forming apparatus as claimed in claim 18 wherein the developer brushing contact region has a first area before the exposure site and a second area after the exposure site, and wherein a time required for the photoreceptive member to pass through the first area substantially represents a time required for electrification of the photosensitive layer to a predetermined level and a time required for the photoreceptive member to pass through the second area substantially represents a time required for discharging the predetermined charge level to a charge level for forming the latent image.
- 24. An electrophotographic image forming apparatus as claimed in claim 22, wherein the passing time T further satisfies the following formula (3):
- T<2C+R FORMULA (3).
Priority Claims (2)
Number |
Date |
Country |
Kind |
2-324381 |
Nov 1990 |
JPX |
|
3-222149 |
Aug 1991 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 07/797,322 filed on Nov. 25, 1991, now abandoned.
US Referenced Citations (24)
Foreign Referenced Citations (7)
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58-098749 |
Jun 1983 |
JPX |
58-153957 |
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60-34877 |
Feb 1985 |
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61-123862 |
Jun 1986 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
797322 |
Nov 1991 |
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