EP0805028A2

Method and apparatus for detection of short circuits in thermal ink jet printers

Abstract

Disclosed is a method and apparatus for detection of low to moderate impedance short circuits on any driven line (P1-Pn) of a thermal ink jet printer to inhibit damage to printer driver circuitry (60), principally active elements thereof. The printer includes a printhead (28) having a plurality of thermally activated print nozzles therein for ink ejection upon thermal agitation of the ink within the nozzle. The printer also includes data drive lines (P1-Pn) driven by data line drivers (60) and address drive lines driven by address line drivers for selection and activation of nozzle heater active elements associated with each of the nozzles by effecting current flow through a heater element associated with each of said nozzles upon selection by associated address and data line activation. One method includes the steps of energizing one of a data line (P1-Pn) and address lines associated with at least one thermal ink jet nozzle on the printhead (28), detecting a lower than normal impedance on the energized line (P1-Pn), and inhibiting further activation or energization of at least one of the data and address line drivers. The inhibiting step may be accomplished, for example, by disabling the power supply (44) associated with driver (60) associated with the line having lower than normal impedance and/or by preventing the printer driver circuit from providing data and/or address signals to the printhead (28).

EP0805028A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 29 April 2017, 9.4 years ago.

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18 claims: 18 independent, 0 dependent

  1. 1
    A method for detecting a short circuit on a driven line of a thermal ink jet printer and for protecting said printer from said short circuits, said printer including a printhead having a plurality of thermally activated print nozzles having corresponding heater elements, and a plurality of drive lines driven by a line driver, wherein said drive lines supply signals to effect an operation of one or more of said heater elements, said method including the steps of:applying a potential to energize at least one of said drive lines;detecting a lower than normal impedance on the at least one of said drive lines so energized;and,inhibiting further operation of said line driver upon detection of said lower than normal impedance on the at least one of said drive lines.
  2. 2
    The method in accordance with claim 1, wherein said inhibiting step includes the step of disabling a power supply which supplies electrical energy to said line driver.
  3. 3
    The method in accordance with claim 1, wherein said inhibiting step includes the step of inhibiting the line driver from supplying signals to the plurality of drive lines.
  4. 4
    The method in accordance with claim 3, further comprising the step of disabling the power supply which supplies electrical energy to said line driver in response to the latching of the detection of such a short circuit.
  5. 5
    The method in accordance with any preceding claim, wherein said detection step includes the steps of:detecting a short circuit on the at least one of said drive lines so energized;andlatching the detection of such a short circuit only when a print command is not ON.
  6. 6
    The method in accordance with any of claims 1 to 4, wherein said detection step includes the steps of:detecting a short circuit on an address line by simultaneous energization of all of a plurality of address lines;determining if any of the address lines are not capable of being energized as the others due to a short circuit condition;andlatching the detection of such a short circuit condition only when a print command is not on.
  7. 7
    The method in accordance with claim 6, wherein said latching step includes the step of latching the detection of such a short circuit condition only upon determining the presence of a simultaneous energization of said address lines.
  8. 8
    The method in accordance with any preceding claim, further comprising the step of providing an indication of a shorted condition existing on a driven line.
  9. 9
    An apparatus for protecting a printer from short circuits occurring on a printhead, said printhead having a plurality of thermally activated print nozzles thereon for ejecting ink upon thermal agitation of the ink within an associated nozzle cavity, said printer including a data line driver having an associated plurality of data lines coupled thereto and an address driver having a plurality of address lines coupled thereto, wherein each of said plurality of data lines and plurality of address lines are coupled to a respective one of said nozzles, said apparatus comprising:an energizing circuit adapted to be coupled to one or more lines of said plurality of data lines and plurality of address lines, which energizes said one or more lines;a detecting circuit adapted to be coupled to said one or more lines, which detects changes in impedance and generates a detection signal if said one or more lines so energized has a lower than normal impedance;andan inhibiting circuit coupled to said detecting circuit which inhibits operation of one of said data driver and said address driver upon receipt of said detection signal.
  10. 10
    The apparatus in accordance with claim 9, wherein said inhibiting circuit includes circuitry for disabling a power supply associated with one of said data driver and said address driver.
  11. 11
    The apparatus in accordance with claim 9 or 10, wherein said detecting circuit includes circuitry which detects a short circuit on an energized driver line, and a latch circuit for latching the detection of such a short circuit only when a print command is not on.
  12. 12
    The apparatus in accordance with claim 9, 10 or 11, including an indicator which indicates a shorted condition existing on said one or more lines.
  13. 13
    An ink jet printer, comprising:a power supply;a printhead having a plurality of thermally activated print nozzles thereon for ink ejection upon thermal agitation of the ink within the nozzle;active element line drivers for driving data and address drive lines, said data and address drive lines being connected to nozzle heater active elements associated with each of said nozzles for effecting current flow through heater elements associated with each of said nozzles upon selection by associated address and data line activation, and said active element line drivers being connected to said power supply;means for energizing at least one of a data line and address line associated with at least one thermal ink jet nozzle on said printhead;means for detecting a lower than normal impedance on the energized line;and,means for inhibiting further energization of at least one of said data and address line drivers.
  14. 14
    An ink jet printer in accordance with claim 13, further including means for providing an indication of a shorted condition existing on a driven line.
  15. 15
    An ink jet printer in accordance with claim 13 or 14, wherein said means for inhibiting further energization of one of said data and address lines includes means for disabling said power supply.
  16. 16
    An ink jet printer in accordance with claim 15, further including a latch for latching up the detection of such a short circuit only when a print command is not on.
  17. 17
    An ink jet printer in accordance with claim 13, 14 or 15, further including means configured for detecting a short circuit on an address line by simultaneous energization of all of the address lines, said means configured for determining if any of the address lines is not capable of being energized to the same level as the other address lines due to a short circuit condition.
  18. 18
    An ink jet printer in accordance with claim 17, further including means configured for latching up the detection of such a short circuit condition only upon determining the presence of a simultaneous energization of said address lines.
Independent claims18