IL168604A

Ink jet printhead, a printer system comprising it and a method of ejecting a drop of a bubble forming fluid from it

Abstract

A printhead module assembly includes a printhead integrated circuit (IC) assembly having a plurality of ink ejection nozzles arranged to form staggered rows, and defining a plurality of ink channels for supplying ink to the ink ejection nozzles; a flexible printed circuit board (PCB) electrically connected to supply both power and data to the IC assembly; a support sheet defining a plurality of ink holes and to which the IC assembly is bonded so that the ink channels are aligned with the ink holes; and a channel layer mounted to the support sheet adjacent to the IC assembly, the channel layer defining a plurality of slots aligned with respective air holes defined in the support sheet.

IL168604A, drawing sheet 1
Sheet 1 of 43

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

35 claims: 11 independent, 24 dependent

  1. 1
    An ink jet printhead comprising:a structure being less than 5 microns thick;5 a plurality of nozzles incorporated on the structure;and at least one respective heater element corresponding to each nozzle, wherein each element is arranged for being in thermal contact with a bubble forming liquid, and . each element is configured to heat at least part of the bubble forming liquid to a 10 temperature above its boiling point to form a gas bubble therein thereby to cause the ejection of a drop of the bubble forming liquid through the nozzle corresponding to that element .
  2. 9
    The printhead of darn 1 wherein the bubble which each element is configured to farm is collapsible and has a point of collapse, and wherein each dement is configured such fant faf. pnW of collapse of a babble formed thereby is spaced from that element
  3. 13
    14. Aptata^uemmwotamgapAta^ ««״tag to data 1.
  4. 14
    15. ^^rfdtaUWi«־^*«^ frimnal contact ־wifh. each said element. 10
  5. 15
    16. ThssjatacddatalSbemgcoofigorodtopitaariapageaiidtobaapage-wiiMi printhead.
  6. 16
    17. j״־־^Kt־fa:5^ili־1־n=s־isfe־s&si5i־sn־ai 15 ,8. T^syBtsnofditalSTteemratatatadeiiiitaismttatamofasuspHiM ΗΚ?Ώ 3 ־ί ״ώ^־**^־?^ηΏ : «־־η&^ώ^η7ηϊ4־*־**־ ,. :n ^ gW nd^fc E dth־^V 1e i B l™rf [ nb״arfa־־־i™ui^o־ a . 20 19. ,,^□ftataSOOfflKijtiitaWi.״^“^ tort ־effidarfly to &m saidWibl־ ή tot®bl־nn=־tq*=*«;n ־*־־=־
  7. 18
    21. Tte S ysteof־a־ml5ram J m™gas&^ ^.»־5־־ ta anozd־ Φ«Ι 8 ״־“^ 10 s rffa1aVof^»^ t ^^ tofcsdl ^ S ^ SI ^ lt '’ 0Mmrf ® PSr square can of substrate surface.
  8. 19
    22. The system of 15 wheremthe bubble winch each element is configured to mm is collapsible and has apomt of collapse, and wherein each element is configured such 15 thtafoepoirhof rall^se of a bifoble formed foereby is spaced from foal element
  9. 20
    23. The system of daim 15 comprising a plurality of nozzle chambers each companding to a respective nozzle, and apluraliiy of saidheater dementsbang disposed wifrnn each chamber, the dements within each chamber being formed in difeent 20 respective layers. 24 The system of claim 15 wherein each heater dement is fomed of solid material more than 90% of which, by atomic proportion, is constituted by at least one dement having an atomic number below 50. 25 ,,.
  10. 21
    25. The system of daiml5 wherein each heater element metades solid material and has amass סו nanograms of foe solid material offota dement to be heated to a toperatoe above foe boiling paint of foe bubble forming liquid thereby to heat said part of fofi bubble forming liquid to a temperature above said boiling point to cause foe gentian of 30 said drop. 26 The system of dam 15 wherein each dement is substantially covered by a conformal protective coating, the coating of each elementhavingbe^ applied substantially to all sides of the element simultaneously such that foe coating is seamless.
  11. 27
    35. The method nf claim 28 wherein theprinthead has a plurality ofnozzle chambers, each chamber corresponding to a respective nozzle, and wherein the step of providing the printhead includes forming a plurality of said heater elements in each chamber, such that the elements in each chamber are formed in different respective layers to one another.
  12. 28
    36. The method of claim 28 wherein, in the step of providing the printhead, each heater element is formed of solid material more than 90% of which, by atomic proportion, is constituted by at least one element having an atomic number below 50.
  13. 34
    42. An inkjet printhead comprising:a structure being less than 10 microns thick;a plurality of nozzles incorporated on the structure;at least one wall corresponding to each nozzle, the at least One wall bang integrally formed with, and extending from, the structure and forming a circumferential perimeter that together ־with the structure defines a chamber in communication with the respective nozzle for receiving a bubble forming liquid;and at least one respective heater element corresponding to each nozzle, wherein each element is arranged for bang in thermal contact with the bubble forming liquid, and each element is configured to heat at least part of the bubble forming liquid to a temperature above its boiling point to form a gas bubble therein thereby to cause the ejection of a drop of the bubble forming liquid through the nozzle corresponding to that element.