Claims
- 1. In an ink jet printer including means for creating a stream of electrically conductive marking fluid and for breaking said stream into drops, means for imparting an electric charge on selected ones of said drops, a set of deflection electrodes for creating an electric field in flight path of said drops to alter the flight path thereof, said electric field being proportional to a deflection voltage present on said deflection electrodes, the improvement comprising:
- a control system for maintaining drop deflection substantially constant during normal printing operation of said printer, regardless of changes in the operating environment, said system including:
- a) means for periodically determining the velocity of said stream during said normal operation of said printer;
- b) means for adjusting said deflection voltage responsive to changes in stream velocity to maintain drop deflection substantially constant.
- 2. The printer of claim 1 wherein said means for adjusting includes a processor for altering said deflection voltage according to an approximation of the relationship:
- HV=K.sub.2 (V.sub.s).sup.2
- where HV represents the deflection voltage applied to the deflection electrodes, K.sub.2 represents a constant for a given drop marking device and V.sub.s represents the velocity of said stream.
- 3. The printer of claim 1 wherein said means for adjusting includes a processor for altering said voltage according to a linear approximation of empirically determined data relating said stream velocity to said voltage.
- 4. The printer of claim 1 wherein said means for adjusting includes memory means having a look-up table for relating said deflection voltage level to a corresponding stream velocity, said deflection voltage being periodically adjusted responsive to said determination of said stream velocity according to the corresponding deflection voltage value in the look-up table so that said drop deflection is uniformly maintained.
- 5. In an ink jet printer including means for creating a stream of electrically conductive marking fluid and for breaking said stream into drops, charge amplifier means for imparting an electric charge on selected ones of said drops, a set of deflection electrodes for creating an electric field in the flight path of said drops to alter the flight path thereof, said electric field being proportional to a deflection voltage present on said deflection electrodes, the improvement comprising:
- a control system for maintaining drop deflection substantially constant during normal printing operation of said printer, regardless of changes in the operating environment, said system including:
- a) means for periodically determining the velocity of said stream during said normal operation of said printer;
- b) means for scaling the electric charge applied to said drops responsive to changes in stream velocity to maintain drop deflection substantially constant.
- 6. The printer of claim 5 wherein said means for scaling includes a processor for altering charge amplifier gain according to an approximation of the relationship:
- G.sub.q =K.sub.4 (V.sub.s).sup.2
- where G.sub.q represents charge amplifier gain K.sub.4 represents a constant for a given drop marking device, including at least the value of said deflection voltage and the mass of each said drop, and V.sub.s represents the velocity of said stream.
- 7. The printer of claim 5 wherein said means for scaling includes a processor for altering charge amplifier gain according to a linear approximation of empirically determined data relating stream velocity to charge amplifier gain.
- 8. The printer of claim 5 wherein said means for scaling includes a memory means having a look-up table for relating charge amplifier gain to a corresponding stream velocity, said gain being periodically adjusted responsive to periodic determinations of said stream velocity.
- 9. In an ink jet printer including means for creating a stream of electrically conductive marking fluid and for breaking said stream into drops, means for imparting an electric charge on selected ones of said drops, a set of deflection electrodes for creating an electric field in the flight path of said drops to alter the flight path thereof, said electric field being proportional to a deflection voltage present on said deflection electrodes, the improvement comprising:
- a control system for maintaining drop deflection substantially constant during normal printing operation of said printer, regardless of changes in the operating environment, said system including:
- a) means for periodically determining the flight time of said drops over a known distance during said normal operation of said printer;
- b) means for adjusting said deflection voltage responsive to changes in flight time to maintain drop deflection substantially constant.
- 10. The printer of claim 9 wherein said means for adjusting includes a processor for altering said deflection voltage according to an approximation of the relationship:
- HV=[K.sub.3 ].multidot.1/(T.sub.FLT).sup.2
- where HV represents the deflection voltage applied to the deflection electrodes, K.sub.3 represents a constant for a given drop marking device and T.sub.FLT represents flight time of said drops over a known distance.
- 11. The printer of claim 9 wherein said means for adjusting includes a processor for altering said voltage according to a linear approximation of empirically determined data relating said flight time to said voltage.
- 12. The printer system of claim 9 wherein said means for adjusting includes a memory means having a look-up table for relating said deflection voltage to a corresponding flight time, said deflection voltage being periodically adjusted responsive to said determination of said flight time according to the corresponding voltage value in the look-up table so that said character height is uniformly maintained.
- 13. In an ink jet printer including means for creating a stream of electrically conductive marking fluid and for breaking said stream into drops, charge amplifier means for imparting an electric charge on selected ones of said drops, a set of deflection electrodes for creating an electric field in the flight path of said drops to alter the flight path thereof, said electric field being proportional to a deflection voltage present on said deflection electrodes, the improvement comprising:
- a control system for maintaining drop deflection substantially constant during normal printing operation of said printer, regardless of changes in the operating environment, said system including:
- a) means for periodically determining the flight time said drops over a known distance during said normal operation of said printer;
- b) means for scaling the electric charge applied to said drops responsive to changes in flight time to maintain drop deflection substantially constant.
- 14. The printer of claim 13 wherein said means for scaling includes a processor for altering charge amplifier gain according to an approximation of the relationship:
- G.sub.q =[K.sub.5 ].multidot.1/(T.sub.FLT).sub.2
- where G.sub.q represents the charge amplifier gain or scale factor, K.sub.5 represents a constant for a given drop marking device and T.sub.FLT represents flight time of said drops over a known distance.
- 15. The printer of claim 13 wherein said means for scaling includes a processor for altering charge amplifier gain according to a linear approximation of empirically determined data relating said flight time to said gain.
- 16. The printer of claim 13 wherein said means for scaling includes a memory means having a look-up table for relating charge amplifier gain to a corresponding flight time, said gain being periodically adjusted responsive to said determination of said flight time according to the corresponding gain value in the look-up table so that said deflection is uniformly maintained.
- 17. In an ink jet printer including means for creating a stream of electrically conductive marking fluid and for breaking said stream into drops, means for imparting an electric charge on selected ones of said drops, a set of deflection electrodes for creating an electric field in the flight path of said drops to alter the flight path thereof, said electric field being proportional to a deflection voltage present on said deflection electrodes, the improvement comprising:
- a control system for maintaining drop deflection substantially constant during normal printing operation of said printer, regardless of changes in the operating environment, said system including:
- a) means for periodically determining flow time of said stream of marking fluid between two known points within said system during said normal operation of said printer;
- b) means for adjusting said deflection voltage responsive to changes in flow time to maintain drop deflection substantially constant.
- 18. The printer of claim 17 wherein said means for adjusting includes a processor for altering said voltage according to a linear approximation of empirically determined data relating said flow time to said voltage.
- 19. The system of claim 17 wherein said means for adjusting includes memory means having a look-up table for relating said deflection voltage level to a corresponding flow time, said deflection voltage being periodically adjusted responsive to said determination of said flow time according to the corresponding deflection voltage value in the look-up table so that drop deflection is uniformly maintained.
- 20. In an ink jet printer including means for creating a stream of electrically conductive marking fluid and for breaking said stream into drops, charge amplifier means for imparting an electric charge on selected ones of said drops, a set of deflection electrodes for creating an electric field in the flight path of said drops to alter the flight path thereof, said electric field being proportional to a deflection voltage present on said deflection electrodes, the improvement comprising:
- a control system for maintaining drop deflection substantially constant during normal printing operation of said printer, regardless of changes in the operating environment, said system including:
- a) means for periodically determining flow time of said stream of marking fluid between two known points within said system during said normal operation of said printer;
- b) means for scaling the electric charge applied to said drops responsive to changes in flow time to maintain drop deflection substantially constant.
- 21. The system of claim 20 wherein said means for scaling includes a processor for altering charge amplifier gain according to a linear approximation of empirically determined data relating said flow time to said gain.
- 22. The system of claim 20 wherein said means for scaling includes a memory means having a look-up table for relating charge amplifier gain to a corresponding flow time, said gain being periodically adjusted responsive to said determination of said flow time according to the corresponding gain in the look-up table so that said drop deflection is uniformly maintained.
Parent Case Info
This is a continuation of application Ser. No 07/599,644 filed on Oct. 18, 1990 now abandoned
US Referenced Citations (8)
Continuations (1)
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Number |
Date |
Country |
Parent |
599644 |
Oct 1990 |
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