Claims
- 1. An image forming apparatus comprising:
- a photoconductive element;
- charging means for charging a surface of said photoconductive element to a predetermined charge potential;
- exposing means for exposing said charged surface of said photoconductive element by a predetermined quantity of light to electrostatically form a latent image thereon;
- developing means applied with a predetermined bias for development of the latent image with a developer containing at least a toner;
- sensor means for sensing a density of a predetermined visible reference pattern formed on said photoconductive element; and
- control means for changing at least one of a variable correction bias, the charge potential and the quantity of light in response to an output of said sensor means;
- said control means changes the bias for development from a reference value by a predetermined potential difference in a direction for causing the toner to deposit on the photoconductive element, compares each of densities of reference patterns formed by the respective changed biases for development with a target density, determines a particular one of the biases for development based on a result of a comparison which shows that a toner has been deposited, and a mean value and a gradient of the densities of reflections from the reference patterns developed by predetermined ones of the bias for development preceding and succeeding said particular bias, calculates a shift of the bias for development based on said mean value and said gradient, and variably controls the bias for development on the basis of the calculated shift.
- 2. An apparatus as claimed in claim 1, wherein the reference value is a bias shifted from the background potential of said photoconductive element by a predetermined potential in a direction for causing the toner to deposit on the background.
- 3. An image forming apparatus comprising:
- a photoconductive element;
- charging means for charging a surface of said photoconductive element to a predetermined charge potential;
- exposing means for exposing said charged surface of said photoconductive element by a predetermined quantity of light to electrostatically form a latent image thereon;
- developing means applied with a predetermined bias for developing the latent image with a developer containing at least a toner;
- optical sensor means for sensing a density of a predetermined visible reference pattern formed on said photoconductive element in terms of a reflection from said pattern;
- control means for changing at least one of the bias, the charge potential and the quantity of light in response to an output of said optical sensor means representative of a reflection; and
- minimum signal detecting means for detecting a signal value appearing when the output of said optical sensor means is at or below a preselected minimum in response to a change in the amount of the developer deposited on said photoconductive element,
- wherein said minimum signal detecting means forms a plurality of visible reference patterns and said minimum signal detecting means forms at least three visible reference patterns and produces a signal indicating that the output of said optical sensor means is at or below said preselected minimum from secondary regression information based on outputs of said optical sensor means representative of reflections from said reference patterns.
- 4. An apparatus as claimed in claim 3, further comprising:
- detecting means for detecting a characteristic value representative of a developing ability;
- correction amount determining means for determining a correction amount on the basis of the characteristic value detected by said detecting means; and
- target density determining means for determining a target density of the density of the predetermined visible reference pattern by adding the minimum signal detected by said minimum signal detecting means and the correction amount determined by said correction amount determining means.
- 5. An apparatus as claimed in claim 4, wherein the correction amount to be determined by said correction amount determining means comprises a first correction amount to be determined on the basis of the characteristic value detected by said detecting means, and a second correction amount to be determined on the basis of said first correction amount.
- 6. An image forming apparatus comprising:
- a photoconductive element;
- charging means for charging a surface of said photoconductive element to a predetermined charge potential;
- exposing means for exposing said charged surface of said photoconductive element by a predetermined quantity of light to electrostatically form a latent image thereon;
- developing means applied with a predetermined bias for developing the latent image with a developer containing at least a toner;
- optical sensor means for sensing a density of a predetermined visible reference pattern formed on said photoconductive element in terms of a reflection from said pattern;
- control means for changing at least one of a variable correction bias, the charge potential and the quantity of light in response to an output of said optical sensor means representative of a reflection;
- said control means determining whether or not a current dynamic range for image formation is adequate in response to outputs of said optical sensor means representative of reflections from at least two kinds of visible reference patterns,
- wherein said control means executes toner density control by determining whether or not a gradient of outputs of said photosensor, associated with tones which set up, among densities of the reference patterns, a highlight density, a single amount of correction in the dynamic range, and a gradient of a minimum value of said outputs, each lies in a predetermined range with respect to a gradient of an output representative of a target density of the reference patterns, determines that an image can be formed by said minimum value and said dynamic range if a result of said decision is positive, and determines that said target value based on said minimum value cannot be obtained if the result of said decision is negative.
- 7. An image forming apparatus having a photoconductive element, charging means, exposing means, developing means, optical sensor means, and control means, said apparatus comprising:
- detecting means for detecting a characteristic value (TGRD) representative of a developing ability;
- comparing means for comparing the characteristic value detected by said detecting means (detected TGRD) and a target characteristic value (target TGRD);
- first correction amount determining means for determining a first correction amount on the basis of a result of comparison by said comparing means;
- second correction amount determining means for determining a second correction amount on the basis of the first correction amount determined by said first correction amount determining means; and
- target density determining means for determining a target density (VTC) of the density of the predetermined visible reference pattern on the basis of the correction amounts determined by said first and second correction amount determining means.
- 8. An image forming apparatus comprising:
- a photoconductive element;
- charging means for charging a surface of said photoconductive element to a predetermined charge potential;
- exposing means for exposing said charged surface of said photoconductive element by a predetermined quantity of light to electrostatically form a latent image thereon;
- developing means applied with a predetermined bias for developing the latent image with a developer containing at least a toner;
- optical sensor means for sensing a density of a predetermined visible reference pattern formed on said photoconductive element in terms of reflection; and
- control means for changing at least one of a variable correction bias, the charge potential and the quantity of light in response to an output of said optical sensor means representative of a reflection;
- said control means determining whether or not a current dynamic range for image formation is adequate in response to outputs of said optical sensor means representative of reflections from at least two kinds of visible reference patterns and, if a result of said decision is negative, adjusting an amount of toner supply,
- wherein said control means executes toner density control by determining whether or not a gradient of outputs of said optical sensor means, associated with tones which set up, among densities of the reference patterns, a highlight density, a single amount of correction in the dynamic range, and a gradient of a minimum value of said outputs, each lies in a predetermined range with respect to a gradient of an output representative of a target density of the reference patterns, determines that an image can be formed by said minimum value and said dynamic range if a result of said decision is positive, and determines that said target value based on said minimum value cannot be obtained and adjusts an amount of toner supply if the result of said decision is negative.
- 9. An image forming apparatus comprising:
- a photoconductive element;
- charging means for charging a surface of said photoconductive element to a predetermined charge potential;
- exposing means for exposing said charged surface of said photoconductive element by a predetermined quantity of light to electrostatically form a latent image thereon;
- developing means applied with a predetermined bias for developing the latent image with a developer containing at least a toner;
- optical sensor means for sensing a density of a predetermined visible reference pattern formed on said photoconductive element; and
- control means for changing at least one of a variable correction bias, the charge potential and the quantity of light in response to an output of said optical sensor means representative of a reflection;
- said control means executing toner density control by determining whether or not a gradient of outputs of said optical sensor means, associated with tones which set up, among the densities of the reference patterns, a highlight density, a single amount of correction in the dynamic range, and a gradient of a minimum value of said outputs, each lies in a predetermined range with respect to a gradient of an output representative of a target density of the reference patterns, determining that an image can be formed at said minimum value and said dynamic range if a result of said decision is positive, and determining that said target value based on said minimum value cannot be obtained and variably controlling said dynamic range for image formation if the result of said decision is negative.
- 10. An image forming apparatus comprising:
- a photoconductive element;
- charging means for charging a surface of said photoconductive element to a predetermined charge potential;
- exposing means for exposing said charged surface of said photoconductive element by a predetermined quantity of light to electrostatically form a latent image thereon;
- developing means applied with a predetermined bias for developing the latent image with a developer containing at least a toner;
- optical sensor means for sensing a density of a predetermined visible reference pattern formed on said photoconductive element; and
- control means for changing at least one of a variable correction bias, the charge potential and the quantity of light in response to an output of said optical sensor means representative of a reflection;
- said control means executing toner density control by comparing a minimum value of outputs of said optical sensor means representative of reflections from the reference pattern formed on said photoconductive element with a value of the output of the photosensor when the optical sensor is in an initial state such as an unused state and, if said minimum value has risen from said value of the initial state, determining that said photoconductive element should be replaced,
- wherein said minimum value is produced by a minimum signal detecting means which forms at least three visible reference patterns and produces said minimum value from secondary regression information based on output values of said optical sensor means representative of reflections from said visible reference patterns.
- 11. An image forming apparatus comprising:
- a photoconductive element;
- charging means for charging a surface of said photoconductive element to a predetermined charge potential;
- exposing means for exposing said charged surface of said photoconductive element by a predetermined quantity of light to electrostatically form a latent image thereon;
- developing means applied with a predetermined bias for developing the latent image with a developer containing at least a toner;
- optical sensor means for sensing a density of a predetermined visible reference pattern formed on said photoconductive element in terms of a reflection from said pattern;
- control means for changing at least one of the bias, the charge potential and the quantity of light in response to an output of said optical sensor means representative of a reflection;
- minimum signal detecting means for detecting a signal value appearing when the output of said optical sensor means is at or below a preselected minimum in response to a change in the amount of the developer deposited on said photoconductive element, wherein said minimum signal detecting means forms a plurality of visible reference patterns and said minimum signal detecting means forms at least three visible reference patterns and produces a signal indicating that the output of said optical sensor means is at or below said preselected minimum from secondary regression information based on outputs of said optical sensor means representative of reflections from said reference patterns;
- detecting means for detecting a characteristic value representative of a developing ability;
- correction amount determining means for determining a correction amount on the basis of the characteristic value detected by said detecting means;
- target density determining means for determining a target density of the density of the predetermined visible reference pattern by adding the minimum signal detected by said minimum signal detecting means and the correction amount determined by said correction amount determining means;
- bias determining means for determining a set condition of the bias for development;
- first gradient detecting means for detecting a gradient of outputs of said optical sensor means associated with, among the visible reference patterns, first visible reference patterns formed by said exposing means by a minimum quantity of light and a quantity of light shifted by a predetermined tone from said minimum quantity of light in an increasing direction;
- second gradient detecting means for detecting a gradient of outputs of said optical sensor means associated with, among the visible reference patterns, second visible reference patterns formed in a plurality of tones by quantities of light further shifted by predetermined tones from the shifted quantity of light in the increasing direction;
- second control means for controlling at least one of the bias, the charge potential, the quantity of light and the toner concentration on the basis of the set condition of the bias determined by said bias determining means, the gradient detected by said first gradient detecting means, and the gradient detected by said second gradient detecting means; and
- means for determining and detecting a set condition of the bias after the control of said second control means, a gradient of outputs of said optical sensor means associated with the first visible reference patterns, and a gradient of outputs of said optical sensor means associated with the second visible patterns, and determining a characteristic value on the basis of said set condition and said gradients.
Priority Claims (11)
Number |
Date |
Country |
Kind |
2-113092 |
Apr 1990 |
JPX |
|
2-113093 |
Apr 1990 |
JPX |
|
2-213339 |
Aug 1990 |
JPX |
|
2-219805 |
Aug 1990 |
JPX |
|
2-219806 |
Aug 1990 |
JPX |
|
2-219809 |
Aug 1990 |
JPX |
|
2-219810 |
Aug 1990 |
JPX |
|
2-219811 |
Aug 1990 |
JPX |
|
2-268016 |
Oct 1990 |
JPX |
|
2-306525 |
Nov 1990 |
JPX |
|
3-035371 |
Feb 1991 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 07/691,727, filed on Apr. 26, 1991, now abandoned.
US Referenced Citations (19)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0338963 |
Oct 1989 |
EPX |
2212419 |
Jul 1989 |
GBX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
691727 |
Apr 1991 |
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