Printing unit of the improved type and inkjet printing device comprising said printing unit
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B41J-002/165
출원번호
US-0050968
(2013-10-10)
등록번호
US-9085157
(2015-07-21)
우선권정보
IT-VI2012A0278 (2012-10-22)
발명자
/ 주소
Vodopivec, Mitja
출원인 / 주소
NEW SYSTEM S.R.L.
대리인 / 주소
Sughrue Mion, PLLC
인용정보
피인용 횟수 :
0인용 특허 :
18
초록▼
A printing unit is provided having a moveable printing head with a nozzle plate having a plurality of nozzles to eject liquid ink; a cleaning station having a cleaning surface with at least one suction element to generate air suction; the cleaning station configured to clean the nozzles when the pri
A printing unit is provided having a moveable printing head with a nozzle plate having a plurality of nozzles to eject liquid ink; a cleaning station having a cleaning surface with at least one suction element to generate air suction; the cleaning station configured to clean the nozzles when the printing head overlaps with the cleaning station so that the nozzle plate and the cleaning surface at least partially overlap; a movement actuator means configured to move the printing head with respect to the cleaning station between a first position in which the suction element overlaps a first end of the nozzle plate and a second position in which the suction element overlaps a second end, opposite the first end, of the nozzle plate. A proximity sensor means measures a distance between the nozzle plate and the cleaning surface.
대표청구항▼
1. A printing unit, comprising: a movable printing head comprising a nozzle plate comprising a plurality of nozzles configured to eject liquid ink;a cleaning station comprising a cleaning surface comprising at least one suction element configured to generate a suction of air, said cleaning station b
1. A printing unit, comprising: a movable printing head comprising a nozzle plate comprising a plurality of nozzles configured to eject liquid ink;a cleaning station comprising a cleaning surface comprising at least one suction element configured to generate a suction of air, said cleaning station being configured to clean said plurality of nozzles of said printing head when said printing head is in a cleaning region in which said printing head overlaps at least partially with said cleaning station, so that said nozzle plate and said cleaning surface face each other at least partially at a predefined distance;movement actuator means configured to perform the relative translation of said printing head and said cleaning station from a first position, in which said suction element is superimposed with a first end of said nozzle plate, to a second position, in which said suction element is superimposed with a second end, opposite said first end, of said nozzle plate and vice versa, thereby carrying out said cleaning operation, andproximity sensor means configured to measure a distance between said nozzle plate and said cleaning surface in at least said first position and said second position during said cleaning operation. 2. The printing unit according to claim 1, characterized in that said proximity sensor means comprises at least one emitter element arranged on said first end of said nozzle plate, at least one emitter element arranged on said second end of said nozzle plate, and at least one measuring element arranged on one end of said cleaning surface. 3. The printing unit according to claim 1, characterized in that said proximity sensor means comprises at least one emitter element arranged on a first end of said cleaning surface, at least one emitter element disposed on a second end of said cleaning surface, opposite said first end, and at least one measuring element arranged on one of said first end of said nozzle plate and said second end of said nozzle plate. 4. The printing unit according to claim 3, characterized in that each of said emitter elements is a permanent magnet and said at least one measuring element is a Hall effect proximity sensor. 5. The printing unit according to claim 1, wherein said proximity sensor means comprises: four permanent magnets arranged on four corners of one of said nozzle plate and said cleaning surface, andtwo Hall effect proximity sensors arranged on two corners of one end of one of said cleaning surface and said nozzle plate. 6. The printing unit according to claim 1, wherein said proximity sensor means comprises a proximity sensor of the inductive type. 7. The printing unit according to claim 1, wherein said proximity sensor means comprises an ultrasonic proximity sensor. 8. The printing unit according to claim 1, wherein said proximity sensor means is configured to simultaneously measure said distance at least two different points of said nozzle plate mutually spaced in a direction of a longitudinal axis of said nozzle plate. 9. The printing unit according to claim 1, wherein said movement actuator means is configured to move said cleaning station, with respect to said printing head, from said first position to said second position. 10. The printing unit according to claim 1, wherein said movement actuator means is an NC electric movement actuator means. 11. The printing unit according to claim 10, wherein said NC electric movement actuator means is an NC electric motor. 12. A printing device of the type ink jet for printing on the surfaces of electronic circuit boards, comprising the printing unit according to claim 1. 13. A printing head cleaning method, comprising: arranging a moveable printing head into a cleaning region in which the printing head at least partially overlaps with the cleaning station, so that a nozzle plate of the printing head and a cleaning surface of the cleaning station face each other at least partially at a predefined distance;performing a cleaning operation comprising: performing a relative translation of said printing head and said cleaning station from a first position, in which a suction element of the cleaning surface of the cleaning station is superimposed with a first end of said nozzle plate, to a second position, in which said suction element is superimposed with a second end, opposite said first end, of said nozzle plate and vice versa, thereby carrying out a cleaning operation, andmeasuring a distance between said nozzle plate and said cleaning surface in said first position and in said second position.
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이 특허에 인용된 특허 (18)
Markham Roger G. (Webster NY), Clean printhead cleaner.
MacLane Donald B. (Portland OR) Deur Ted E. (Hillsboro OR) Anderson Jeffrey J. (Camas WA) Titterington Donald R. (Tualatin OR) Oswald James C. (Beaverton OR) Meissner Richard S. (Portland OR), Ink jet print head maintenance system.
Pawlowski ; Jr. Norman E. (Corvallis OR) Hauck Mark (Corvallis OR) Cowger Bruce (Corvallis OR) Elgee Steven B. (Portland OR) Gast Paul D. (Vancouver WA), Ink level detection in a pressure regulated pen.
Burke Peter M. (Corvallis OR) Barton Earl L. (Corvallis OR), Method and apparatus for automatically cleaning the printhead of a thermal inkjet cartridge.
Offenhartz, David, Water based composition developed to clean ink-jet cartridge nozzle heads, by unclogging said nozzle head(s) of paper flash, ink-residue, and all other debris, which results in the increase of ink yield, maintained print quality, and the extension of the useful life of said ink-jet cartridge.
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