IP Library Granted Patent US 9,446,591
Granted Patent B2
US 9,446,591 · App. 14/548,602 · Granted Sep 20, 2016

Inkjet head for reducing variation in liquid ejection performance

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Quick Facts
Patent No.
US 9,446,591
App. No.
14/548,602
Granted
Sep 20, 2016
Kind
B2
Abstract

An inkjet head comprises a pressure chamber; a nozzle plate including a first surface at the side of the pressure chamber, a second surface opposite to the first surface, a first nozzle formed into a frustum which penetrates the first surface and the second surface and the diameter of which decreases as it goes closer to the second surface, and a second nozzle formed into a frustum which is the same as the frustum of the first nozzle; and a driving element configured adjacent to the pressure chamber to eject droplets from the first nozzle and the second nozzle simultaneously; wherein the part of the first nozzle on the first surface is integrally connected to the part of the second nozzle on the first surface, and the part of the first nozzle on the second surface is separated from the part of the second nozzle on the second surface.

Claims (17)

1. An inkjet head comprising:

a nozzle plate configured to include a first surface at the side of a pressure chamber and a second surface opposite to the first surface;

a plurality of integrated nozzles formed into a frustum which penetrate the first surface and the second surface, wherein the plurality of integrated nozzles are arrayed along the nozzle plate in a longitudinal direction of the nozzle plate, and each integrated nozzle of the plurality of integrated nozzles comprises a first nozzle and a second nozzle, the diameters of the first nozzle and the diameter of the second nozzle decrease as they get closer to the second surface, an edge of an opening of the first nozzle on the first surface is integrally connected to an edge of an opening of the second nozzle on the first surface, an edge of an opening of the first nozzle on the second surface is separated from an edge of an opening of the second nozzle on the second surface, a portion of the nozzle plate which separates the first nozzle from the second nozzle at the second surface forms a triangular shape extending from the second surface towards the first surface, a peripheral surface of the first nozzle extends linearly from the second surface towards the first surface and intersects, at the way from the second surface towards the first surface, with a peripheral surface of the second nozzle which extends linearly from the second surface towards the first surface, and a point of the portion of the nozzle plate which is furthest from the second surface does not reach the first surface;

a driving element configured adjacent to the pressure chamber to eject droplets from the first nozzle and the second nozzle simultaneously; and

a base plate configured to comprise a plurality of supply holes and a plurality of discharge holes, wherein the plurality of supply holes and the plurality of discharge holes penetrate the base plate in the same direction as the plurality of integrated nozzles penetrate the nozzle plate, a supply hole of the plurality of supply holes is located at a first end of the driving element and a discharge hole of the plurality of the discharge holes is located at a second end of the driving element, the plurality of supply holes and the plurality of discharge holes arrayed along the base plate in the same longitudinal direction as the plurality of integrated nozzles.

2. The inkjet head according to claim 1 , wherein

the diameter of the first nozzle at the second surface is larger than an interval between the first nozzle at the second surface and the second nozzle at the second surface.

3. The inkjet head according to claim 1 , wherein

the nozzle plate is made from polyimide.

4. An inkjet head comprising:

a nozzle plate configured to include a first surface at the side of a pressure chamber and a second surface opposite to the first surface;

a plurality of integrated nozzles formed into a frustum which penetrate the first surface and the second surface, wherein the plurality of integrated nozzles are arrayed along the nozzle plate in a longitudinal direction of the nozzle plate, and each integrated nozzle of the plurality of integrated nozzles comprises a first nozzle, a second nozzle, a third nozzle, and a fourth nozzle, the diameters of the first nozzle, the second nozzle, the third nozzle, and the fourth nozzle decrease as they get closer to the second surface, edges of openings of the first-fourth nozzles on the first surface are integrally connected to each other, and edges of openings of the first-fourth nozzles on the second surface are separated from each other, the edges of the openings of the first-fourth nozzles on the first surface are integrally arranged into a substantially quadrangular shape, the diameter of the first nozzle at the second surface is larger than an interval at the second surface between any two of: the first nozzle, the second nozzle, the third nozzle, and the fourth nozzle, a point of the portion of the nozzle plate which is furthest from the second surface does not reach the first surface;

a plurality of portions of the nozzle plate which separate adjacent nozzles of the plurality of integrated nozzles from each other, and each portion of the plurality of portions having a triangular shape extending from the second surface towards the first surface;

a driving element configured adjacent to the pressure chamber to eject droplets from the first nozzle, the second nozzle, the third nozzle and the fourth nozzle simultaneously; and

a base plate configured to comprise a plurality of supply holes and a plurality of discharge holes, wherein the plurality of supply holes and the plurality of discharge holes penetrate the base plate in the same direction as the plurality of integrated nozzles penetrate the nozzle plate, a supply hole of the plurality of supply holes is located at a first end of the driving element and a discharge hole of the plurality of the discharge holes is located at a second end of the driving element, the plurality of supply holes and the plurality of discharge holes arrayed along the base plate in the same longitudinal direction as the plurality of integrated nozzles.

5. The inkjet head according to claim 4 , wherein

the nozzle plate is made from polyimide.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2025
From: KABUSHIKI KAISHA TOSHIBA
To: RISO TECHNOLOGIES CORPORATION
Reel/Frame 071670/0260 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2024
From: TOSHIBA TEC KABUSHIKI KAISHA
To: RISO TECHNOLOGIES CORPORATION
Reel/Frame 068493/0970 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2014
From: SUZUKI, ISAO
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA TEC KABUSHIKI KAISHA
Reel/Frame 034218/0068 →