Printing devices including ink containers, such as ink cartridges, may include air trapped therein after an ink filling process. It may be desirable to provide an ink container that reduces air trapped therein.
Top surface 16 may include a downwardly extending recess 20, which in the embodiment shown may define a downwardly extending, truncated cone. Recess 20 may include a lower surface 22 that may include an ink inlet port 24, such as an aperture. Inlet port 24 may be sized to receive an ink fill nozzle 26 therein. In the embodiment shown, nozzle 26 may include a needle 28 and ink inlet port 24 may include a septum 30. Septum 30 may be manufactured of a flexible, elastic material, such as rubber, that may be adapted to allow the passage of needle 28 therethrough. Nozzle 26 may be positioned on an ink fill vessel 32 such that ink 34 may be filled into a cavity 36 of ink container 12, though needle 28 which is positioned through septum 30 of ink inlet port 24.
Ink container 12 may further include a gas exit port 38, which may also be referred to as a vent, that may define a gas exit pathway 40 from cavity 36. Gas exit port 38 may include a wall 42, which may be referred to as a baffle, that may extend from a position close to top surface 16 of ink container 12 and may extend downwardly toward a plane 44 defined by ink inlet port 24. In one embodiment, ink container 12 may be molded as an integral unit, including wall 42, downwardly extending recess 20, and top surface 16. Gas exit port 38 may terminate in a gas exit outlet 46 positioned within a lower region 48 of downwardly extending recess 20. Wall 42 may define an gas exit pathway 40 that is enclosed along its length such that ink 34 positioned within cavity 36 does not enter gas exit pathway 40 until the ink 34 rises to a level of a plane 50, defined by a topmost edge 52 of wall 42. In the embodiment shown, pathway 40 defines a tubular pathway, enclosed along its length and open at its entrance at plane 50 and open at its exit 38 within downwardly extending recess 20. Plane 50, defined by topmost edge 52 of wall 42, in the embodiment disclosed, is positioned above plane 44 defined by ink inlet port 24, and close to top surface 16 of ink container 12. Accordingly, cavity 36 may be filled with ink 34 to an ink level 54 that is positioned above plane 44 defined by ink inlet port 24. At a full capacity, ink cavity 36 may be filled with ink 34 up to an ink level 54 that is positioned at plane 50 defined by topmost edge 52 of wall 42 (see
The ink container 12 of the present invention may include several advantages. Ink container 12 may be filled to an ink level 54 positioned higher than a plane 44 of ink inlet port 24, thereby increasing the ink fill capacity of ink container 12. Filling ink container 12 to an ink level 54 positioned higher than plane 44 of ink let port 24 may also reduce air 56 trapped within cavity 36, which may increase the quality of the printing experience. Positioning of ink inlet port 24 and gas exit outlet 46 such that they are both positioned within a single downwardly extending recess 20, may reduce manufacturing costs of ink container 12. Positioning of ink inlet port 24 and gas exit outlet 46 such that they may both be sealed by a single sealing member 60, may reduce the cost of filling and/or sealing of ink container 12. A downwardly extending gas pathway 40 allows a reduced gas space 56 within filled cavity 36 while positioning sealing member 60 downwardly from top surface 16 of ink container 12.
A method of venting an ink container 12 during ink filling will now be described. Ink 34 is supplied to enclosed ink receiving cavity 36 through ink inlet port 24, which is positioned downwardly from top surface 16 of said ink receiving cavity top surface 16. Ink receiving cavity 36 is vented through gas exit port 38, wherein the gas enters gas exit pathway 40 at a position upwardly of ink inlet port 24, and exits pathway 40 at gas exit outlet 46, positioned below top surface 16. This allows filling of cavity 36 up to a level of the topmost edge 52 of wall 42 of gas exit pathway 40. The gas exit outlet 38 and the ink inlet port 24 are then sealed with a single sealing device 60 frictionally secured with downwardly extending recess 20.
In another embodiment, device 10 may include two downwardly extending recesses 20, wherein ink inlet port 24 is positioned within one recess and gas exit port 38 is positioned within another recess. In such an embodiment, a separate sealing member 60 may be utilized to seal each of ink inlet port 24 and gas exit port 38. Such an embodiment may allow sealing of gas exit port prior to sealing of ink inlet port 24.
Other variations and modifications of the concepts described herein may be utilized and fall within the scope of the claims below.