Claims
- 1. A method for banding suppression due to vibration in an imager utilizing a light emitting diode (LED) array, comprising the steps of:
selectively discharging an imaging means including a light emitting diode array for producing a light beam and scanning means for repeatedly scanning said light beam in parallel and adjacent linear scan lines across an electrophotographic medium, said imaging means further including beam modulation means for modulating light emitting diodes' driving currents in reverse direction corresponding to a banding signal to suppress said banding.
- 2. The method for banding suppression of claim 1 further comprising the step of:
modulating said driving current of each light emitting diode by −(1/k)m cos(2 παt).
- 3. The method for banding suppression of claim 2 further comprising the step of:
defining the frequency modulation rectangular irradiance distribution, H1(x), of amplitude H0 and width W modulated in time with a simple harmonic, H2(t), with amplitude m and temporal frequency α (i.e. H2(t)=1+m cos(2 παt)).
- 4. The method for banding suppression of claim 2 further comprising the step of:
defining an exposure distribution given by E(x)=(H1W/V0)[1+m sin c(Wα/V0)cos(2 παx/V0)].
- 5. The method for banding suppression of claim 4 further comprising the step of:
using said combination of amplitude and frequency modulation equations extended to multi-temporal vibration frequency and banding correction due to irradiance modulation.
- 6. The method for banding suppression of claim 2 further comprising the step of:
defining said amplitude modulation equation having a fixed amplitude sufficient to drive said beam modulation means to displace said light beam orthogonally a distance of the widest of said interstices between said adjacent linear scans.
- 7. The method for banding suppression of claim 2 further comprising the step of:
fixing amplitude of said combination of amplitude and frequency modulation signal sufficient to drive said beam modulation means to displace said light beam orthogonally a distance of the widest of said interstices between said adjacent linear scans.
- 8. The method for banding suppression of claim 2 further comprising the step of:
said beam modulation means displaces said light beam orthogonally by an amplitude directly related to said amplitude of frequency modulation.
- 9. The method for banding suppression of claim 2 further comprising the step of:
said beam modulation means comprises means for deflecting said light beam and thereby displacing said light beam orthogonally.
- 10. The method for banding suppression of claim 2 further comprising the step of:
producing a signal with a maximum modulation amplitude sufficient to drive said beam modulation means to displace said light beam orthogonally the distance of the widest of said interstices between said adjacent linear scans.
- 11. A system for banding suppression due to vibration in an imager utilizing a light emitting diode (LED) array, comprising:
imaging means including a light emitting diode array for producing a light beam and scanning means for repeatedly scanning said light beam in parallel and adjacent linear scan lines across an electrophotographic medium, said imaging means further including beam modulation means for modulating light emitting diodes' driving currents in reverse direction corresponding to a banding signal to suppress said banding.
- 12. The system for banding suppression of claim 11 further comprising:
modulating means for driving current of each light emitting diode by −(1/k)m cos(2 παt).
- 13. The system for banding suppression of claim 12 further comprising:
said modulation means including a frequency modulation rectangular irradiance distribution, H1(x), of amplitude H0 and width W modulated in time with a simple harmonic, H2(t), with amplitude m and temporal frequency α (i.e. H2(t)=1+m cos(2 παt)).
- 14. The system for banding suppression of claim 12 further comprising:
said modulation means including an exposure distribution given by E(x)=(H0W/V0)[1+m sin c(Wα/V0)cos(2 παx/V0)].
- 15. The system for banding suppression of claim 14 further comprising:
said combination of amplitude and frequency modulation equations extended to multi-temporal vibration frequency and banding correction due to irradiance modulation.
- 16. The system for banding suppression of claim 12 further comprising:
said amplitude modulation equation having a fixed amplitude sufficient to drive said beam modulation means to displace said light beam orthogonally a distance of the widest of said interstices between said adjacent linear scans.
- 17. The system for banding suppression of claim 12 further comprising:
said amplitude modulation equation having a fixed amplitude of said combination of amplitude and frequency modulation signal sufficient to drive said beam modulation means to displace said light beam orthogonally a distance of the widest of said interstices between said adjacent linear scans.
- 18. The system for banding suppression of claim 12 further comprising:
said beam modulation means displaces said light beam orthogonally by an amplitude directly related to said amplitude of frequency modulation.
- 19. The system for banding suppression of claim 12 further comprising:
said beam modulation means comprises means for deflecting said light beam and thereby displacing said light beam orthogonally.
- 20. A method for banding suppression due to vibration in an imager utilizing a light emitting diode (LED) array, comprising the steps of:
selectively discharging an imaging means including a light emitting diode array for producing a light beam and scanning means for repeatedly scanning said light beam in parallel and adjacent linear scan lines across an electrophotographic medium, said imaging means further including beam modulation means for modulating light emitting diodes' driving currents in reverse direction corresponding to a banding signal to suppress said banding wherein modulating said driving current of each light emitting diode is defined by −(1/k)m cos(2 παt) and using a frequency modulation rectangular irradiance distribution, H1(x), of amplitude H0 and width W modulated in time with a simple harmonic, H2(t), with amplitude m and temporal frequency α (i.e. H2(t)=1+m cos(2 παt)).
CO-REFERENCE TO RELATED APPLICATION
[0001] The present application is related to the following co-pending applications: Serial No. XXXX (Attorney Docket D/A1556Q) entitled “Banding Suppression Due to Vibration in Imager with Laser Driver” filed on the same date as the present application and commonly assigned to the present assignee, the contents of which are herein incorporated by reference.