EP0444861A2

Recording apparatus and method for detecting ink.

Abstract

A recording head comprises discharge ports (11) for discharging ink, a liquid chamber (14) for reserving the ink to be supplied to said discharge ports (11), a liquid channel (12) for connection between said discharge ports (11) and said liquid chamber (14), discharge energy generating elements (13) for generating the energy used for the discharge of ink which is provided within said liquid channel (12), and ink detection element for detecting the presence of ink which is provided in said liquid chamber.

EP0444861A2, drawing sheet 1
Sheet 1 of 23

Term

Term ended

Projected expiry passed 26 February 2011, 15.6 years ago.

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27 claims: 18 independent, 9 dependent

  1. 1
    A recording head comprising:discharge ports for discharging ink;a liquid chamber for reserving the ink to be supplied to said discharge ports;a liquid channel for connection between said discharge ports and said liquid chamber;discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel, and    ink detection element for detecting the presence of ink which is provided in said liquid chamber.
  2. 4
    A recording head comprising:discharge ports for discharging ink;a liquid chamber for reserving the ink to be supplied to said discharge ports;a liquid channel for connection between said discharge ports and said liquid chamber;discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel, and    a heat generating element provided within said liquid chamber, said heat generating element is broken if no ink exists in the vicinity of said heat generating element, and not broken if ink exists in the vicinity of said heat generating element, for a predetermined electrical signal supplied.
  3. 5
    A recording head according to either of claims 1 or 4, wherein said discharge energy generating elements are heat-electricity converters for generating the heat energy, and thereby discharging the ink through discharge ports with the generated energy.
  4. 6
    A recording head according to either of claims 1 or 4, wherein said discharge energy generating elements generate the heat energy, causing the film boiling in the ink and thereby discharging the ink through discharge ports with the growth of bubbles due to said film boiling.
  5. 7
    A recording head comprising:discharge ports for discharging ink;a liquid chamber for reserving the ink to be supplied to said discharge ports;a liquid channel for connection between said discharge ports and said liquid chamber;discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel;and    a resistor provided on a portion of said recording head except for said liquid channel, said resistor having an electrical resistance varying with the temperature change corresponding to whether or not the ink exists in said recording head.
  6. 8
    A recording head according to any of the preceding claims, which further comprises integrally an ink storage container communicating to said liquid chamber, and wherein said recording head is constituted as a cartridge detachable from the recording apparatus.
  7. 9
    A recording apparatus characterised by comprising an ink detection section for detecting the presence of ink within said liquid chamber, based on the information from said ink detection element which is located in a recording head comprising discharge ports for discharging ink, a liquid chamber for reserving the ink to be supplied to said discharge ports, a liquid channel for connection between said discharge ports and said liquid chamber, discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel, and ink detection element for detecting the presence of ink which is provided in said liquid chamber.
  8. 12
    A recording apparatus characterised by a control section for applying said predetermined electrical signal at a predetermined timing to said heat generating element of a recording head comprising discharge ports for discharging ink, a liquid chamber for reserving the ink to be supplied to said discharge ports, a liquid channel for connection between said discharge ports and said liquid chamber, discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel, and a heat generating element provided within said liquid chamber, said heat generating element is broken if no ink exists in the vicinity of said heat generating element, and not broken if ink exists in the vicinity of said heat generating element, for a predetermined electrical signal supplied;and    an ink detection element for detecting the presence of ink which is provided in said liquid chamber depending on whether or not said heat generating element is broken.
  9. 14
    A recording apparatus according to either of claims 9 or 12, wherein said discharge energy generating elements are heat-electricity converters for generating the heat energy, and thereby discharging the ink through discharge ports with the generated heat energy.
  10. 15
    A recording apparatus according to either of claims 9 or 12, wherein said discharge energy generating elements generate the heat energy, causing the film boiling in the ink, and thereby discharging the ink through discharge ports with the growth of bubbles due to said film boiling.
  11. 16
    A recording apparatus according to either of claims 9 or 12, wherein said liquid chamber of said recording head communicates to an ink storage container separately provided.
  12. 17
    A recording apparatus according to either of claims 10 or 12, wherein said heat generating element is a memory medium for storing the exhaustion of ink as a breakage of said heat generating element, and said ink detection section detects the presence of ink within said liquid chamber based on the information obtained from said memory medium.
  13. 18
    A recording apparatus characterised by comprising an ink detection section for detecting whether or not the ink exists in said recording head, based on the change in the electrical resistance of said electrical resistor for said recording head, said recording head comprising discharge ports for discharging ink, a liquid chamber for reserving the ink to be supplied to said discharge ports, a liquid channel for connection between said discharge ports and said liquid chamber, discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel, and a resistor provided on a portion of said recording head except for said liquid channel, said resistor having the electrical resistance varying with the temperature change corresponding to whether or not the ink exists in said recording head.
  14. 19
    A copying machine    a facsimile terminal equipment,    a word processor, or    a computer when comprising a recording apparatus according to either of claims 9 or 12.
  15. 20
    A method for detecting ink characterised by detecting whether or not the ink exists in said liquid chamber of recording head, said recording head comprising discharge ports for discharging ink, a liquid chamber for reserving the ink to be supplied to said discharge ports, a liquid channel for connection between said discharge ports and said liquid chamber, and discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel.
  16. 24
    A method for detecting ink characterised by detecting the presence of ink within said liquid chamber depending on whether or not said heat generating element is broken, by applying an electrical signal to said heat generating element of recording head, so that said heat generating element is broken if no ink exists in the vicinity of said heat generating element, while said heat generating element is not broken if the ink exists in the vicinity of said heat generating element, said recording head comprising discharge ports for discharging ink, a liquid chamber for reserving the ink to be supplied to said discharge ports, a liquid channel for connection between said discharge ports and said liquid chamber, and discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel.
  17. 26
    A method for detecting ink according to either of claims 23 or 24, wherein the application of said electrical signal is effected after the recovery operation of said recording head.
  18. 27
    A method for detecting ink characterised by detecting whether or not the ink exists in said recording head, based on the change in the electrical resistance of said electrical resistor for said recording head, said recording head comprising discharge ports for discharging ink, a liquid chamber for reserving the ink to be supplied to said discharge ports, a liquid channel for connection between said discharge ports and said liquid chamber, discharge energy generating elements for generating the energy used for the discharge of ink which is provided within said liquid channel, and a resistor provided on a portion of said recording head except for said liquid channel, said resistor having the electrical resistance varying with the temperature change corresponding to whether or not the ink exists in said recording head.