1. Field of the Invention
The present invention relates to an ink cartridge suitable for an ink-jet printing apparatus in which an ink-jet print head is provided to a reciprocating carriage and an ink cartridge is detachably mounted on the carriage, and more particularly relates to an ink cartridge provided with a memory device such as a semiconductor chip storing thereon information related to the ink cartridge or ink contained in the ink cartridge.
2. Related Art
An ink-jet printing apparatus with a print head generates a driving signal in accordance with print data and applies the signal to a pressure generating section such as a piezoelectric vibrator and a heating section, to pressure ink within a pressure generating chamber and eject ink droplets from nozzle apertures formed in the print head. The ink-jet printing apparatus of this type is also provided with an ink cartridge for supplying ink to the print head.
As the printing quality is determined by the resolution of a print head and, in addition, greatly depends upon the viscosity of ink, a condition of bleeding on a recording medium and the like, the characteristics of ink and a driving signal applied to the print head are improved to enhance the quality of printing. Further, the cycle of ink-missing ejection has been improved to prevent the nozzle apertures from being clogged, and also the maintenance conditions such as forced ejection of ink droplets into a cap of a cleaning mechanism has been improved.
Therefore, there has often been proposed a semiconductor memory device storing data related to ink or ink cartridge which is provided to an ink cartridge, so that the data is read from the memory device by a printing apparatus, printing is executed under an optimum condition, or data related to a state in which the ink cartridge is used is stored in the semiconductor memory device. For example, as disclosed in Japanese published unexamined patent application No. Hei. 3-67657, there has been proposed an ink cartridge wherein a semiconductor memory chip is mounted on an upper surface of a container composing the ink cartridge so that data can be read out by a printing apparatus via a substrate. Further, an ink cartridge is known wherein a recessed portion is formed in the ink cartridge and a semiconductor memory chip is fitted in the recessed portion so that data can be read out.
However, as the above semiconductor memory chip is mounted in a state in which it is always left exposed, there is a problem that users may readily come to touch the semiconductor memory chip with their fingers, and the memory chip may be broken or lost due to static electricity or other factors. If such happens, the printing apparatus would not read out information stored on the semiconductor memory chip for proper printing.
According to the conventional ink cartridge with a semiconductor memory device, it is required to provide an extra mechanism for fixing the semiconductor memory device to an ink cartridge which causes another problem of rising up the manufacturing cost and also the manufacturing process becomes complicated.
An ink cartridge, including a housing for containing ink therein, has an opening. A lid covers the opening of the housing. An ink supply port is formed on a wall of the housing, the ink supply port discharging ink out of the housing. A memory device storing information relating to the ink cartridge or ink in the cartridge is mounted to one of the housing or lid and a seal member is affixed to a part of the housing and the memory device.
Accordingly, it is an object of the invention to provide an improved cartridge for an ink-jet printer.
Another object of the present invention is to provide an ink cartridge for an ink-jet printing apparatus capable of preventing information related to the ink cartridge or ink in the cartridge from being broken or lost due to the rough handling of a user.
A further object of the present invention is to provide an ink cartridge for an ink-jet printing apparatus which enables a memory device such as a semiconductor chip to be readily mounted without requiring special mechanism and structure of the cartridge.
Yet another object of the present invention is to provide an ink jet printing apparatus mounting thereon an ink cartridge with a memory device capable of achieving any one of the foregoing objects.
Still another object of the present invention is to provide a sticker component including a seal tape and a memory device such as a semiconductor chip for an ink cartridge mountable on an ink jet printing apparatus, which sticker component capable of achieving any one of the foregoing objects.
Still other objects and advantages of the invention will in part be obvious and will in part be apparent from the specification.
The invention accordingly comprises the features of construction, combination of elements, and arrangement of parts which will be exemplified in the construction hereinafter set forth, and the scope of the invention will be indicated in the claims.
For a fuller understanding of the invention, reference is had to the following description taken in connection with the accompanying drawings (s), in which:
FIGS. 3(a) to 3(c) are perspective views respectively showing the embodiment of the ink cartridge in a state before a film is installed, in a state in which a film is installed and in a state in which a part of a film is peeled for use;
FIGS. 7(a) to 7(c) are perspective views respectively showing another embodiment of the ink cartridge in a state before a film is installed, in a state in which a film is installed and in a state in which a part of a film is peeled for use;
FIGS. 9(a) to 9(c) and FIGS. 10(a) to 10(c) are perspective views respectively showing the other embodiments of the ink cartridge in a state before a film is installed, in a state in which a film is installed and in a state in which a part of a film is peeled for use;
The carriage 4 connects to a control section 10 described later via a flexible cable 9. The printing apparatus is also provided with a paper feed motor 11 for driving a paper feed mechanism 12, a pump unit 13, a cleaning mechanism 14 for cleaning the clogging of nozzle apertures of the print head 8.
An ink inlet 25 and an air communicating port 26 are formed in a surface of the lid 22. The air communicating port 26 connects to an end of a fine groove 28 sealed by a sealing film 27 as shown in FIG. 3. The sealing film 27 is provided with a first seal part 27a and a removable second seal part 27b. The fine groove 28 formed on an outer surface of the lid 22 performs to generate the capillary action. The other end of the fine groove 28 extends to an area which is covered by the removable second seal part 27b of the sealing film 27. A recessed portion 29 is formed in a position of lid 22 covered by the second, removable part 27b of the film 27. A memory device 30 fits in the recessed portion 29. According to the present embodiment, the sealing film 27 sticks onto the lid 22 and covers the memory device 30 fitted in the recessed portion 29 in such a manner that a gap is defined between the memory device 30 and the sealing film 27. Further, no sticking layer or material is applied to the part of the sealing film 27 which faces the recessed portion 29. It is desirable that the sealing film 27 in an area sealing the recessed portion 29 is formed at least partly from a material having an air impermeable characteristics and/or electrical conductivity. In a case where the sealing film 27 is conductive, because the conductive material holds and discharges the static electricity the adverse affect due to the static electricity is hardly applied to the memory storing part of the memory device 30.
As shown in
In addition to the above regular control operation in the ink-jet printing apparatus, the main control unit 40 controls printing operation by communicating with the memory device 30 provided to the ink cartridge 20 and reading the information of the ink cartridge such as the ink composition, production date code, model number or the like.
Communication between the memory device 30 of the ink cartridge 20 and the printing apparatus is executed in this embodiment when a detecting section 46 detects new connection between each electrode 34 of the memory device 30 and the respective one of the group of contacts 45 provided to the lever 5 or when the main control unit 40 reads data stored in the semiconductor chip 32 in power on.
In this embodiment, when the ink cartridge 20 is distributed and a user unpacks the ink cartridge, the memory device 30 is still covered with the sealing film 27 and is still out of contact with a user.
When a removable part 27(b) of the film 27 is peeled as shown in FIG. 3(c) before the use of the ink cartridge, an air communication hole 28a and a part of the fine, circuitous groove 28 becomes open to atmospheric air as does the memory device 30. In this state, when the ink cartridge 20 is installed in the holder 6 with the ink cartridge properly directed and the lever 5 is turned to close holder 6 the ink supply needle 7 inserts into the ink supply port 21 as shown in FIG. 6. The ink supply from the ink cartridge 20 to the print head 8 is enabled and as each of the group of contacts 45 of the lever 5 and each electrode 34 of the memory device 30 come into contact, the information of the ink cartridge 20 is read out from the memory device 30 and then a proper or optimum printing is enabled.
In this embodiment, as the memory device 30 is housed in the recessed portion 29 integrated with the ink cartridge 20, the electrodes 34 are precisely positioned, and secure communicating between the electrodes and the printing apparatus can be secured.
FIGS. 7(a) to 7(c) respectively show another embodiment of the ink cartridge according to the present invention. In this embodiment, a recessed portion 29′ is formed on one of the side wall 23a of a container 23 serving as the ink cartridge. Preferably a side closest to the ink supply port 21 chosen and memory device 30 is closer to ink supply port 21. The above memory device 30 is fitted in the recessed portion 29′ in the side wall 23a.
A lid 22′ including an ink inlet port 25, an air communicating port 26 and a fine, circuitous groove 28 performing a capillary action positioned on the lid 22′ in the vicinity of a port 21 are open to the air and therefore are sealed by a first sealing film 50. In addition, an air communication hole 28a is formed on lid 22′ in the vicinity of the recessed portion 29′. The air communication hole 28a is sealed by a second sealing film 51 which can be peeled so that the second film overlaps with a part of the first film 50. An adhesive is applied only to the stuck area 51a of the second film 51 and one end 51b is kept in a lifted state so that it functions as a handhold when the second film is peeled off.
When the ink cartridge is installed in a normal position as shown in
In this embodiment, when the second sealing film 51 is peeled as shown in FIG. 7(c), the fine groove 28 becomes open to the air and the memory device 30 on the side wall 23a is exposed. In this state, when the ink cartridge 10 is installed in a holder 6 and the lever 5 is pivoted to close holder 6, each of the group of contacts 45′ comes into contact with the respective electrode 34 of the memory device 30 when an ink supply needle 7 is inserted into an ink supply port 21 as shown in FIG. 8. The information of the ink cartridge 20 stored on the memory device 30 is read out and the proper or optimum printing is realized.
In the above embodiments, the recessed portions are formed respectively in the lid 22 of the ink cartridge or in the container 23 and the memory device 30 is housed in the recessed portion. According to other embodiments as shown in FIGS. 9(a)-9(c) and 10(a)-10(c), a memory device 30 is secured to a label or sticker affixed on each surface of respective areas 52a and 53a left on an ink cartridge after unsealing of sealing films 52 and 53 stuck on the ink cartridge 20. Therefore, the accurate positional relationship of the memory device 30 can be achieved.
As shown in FIGS. 9(a) to 9(c), a memory device 30 is attached or adhered onto a first sealing part 52a of the sealing film 52, and a second sealing part 52c is removed when the ink cartridge is in use so that the air communication hole 28a becomes open to the atmosphere. The first sealing part 52a being connected to the second sealing part 52c by a bridge 52b. In an arrangement in FIGS. 10(a) to 10(c), an edge of the first sealing part 53a of the sealing film 53 extends to reach the side wall of the ink cartridge when the sealing film is attached to the cartridge, and the memory device 30 is attached or adhered to a part of the first sealing part 53a which is disposed on the side wall of the ink cartridge. A second sealing part 53c is removed when the ink cartridge is in use so that the air communication hole 28a becomes open to the atmosphere. The first sealing part 53a being connected to the second scaling part 53c by a bridge 53b. According to the arrangement, the width of the part of the first sealing part 53a, which is disposed on the side wall of the ink cartridge, is smaller than that of the other part of the first sealing part 53a as shown in FIGS. 10(a) to 10(c).
In these embodiments, after the film 52 or 53 is stuck on the lid 22 of the cartridge 20, the memory device 30 is fixed in a defined position by an adhesive and the like. On the other hand, after the memory device 30 is fixed in a defined position on the film beforehand, the film 52 or 53 is stuck on the lid 22 so that the memory device 30 is located in a defined position of the cartridge.
According to the foregoing embodiments, the above recessed portions 29 and 29′ for housing the memory device in the lid 22 and the container 23 respectively composing the ink cartridge are not required. As a result the manufacturing process can be simplified, and the memory device can be readily provided to the ink cartridge without changing a metal mold for injection molding used for manufacturing a conventional type ink cartridge.
This type of ink cartridge can be realized in a printing apparatus having a non-contact type communication system as described below.
In the above embodiments of the invention, communication between the semiconductor chip of the memory device and the printing apparatus is realized by contact between the electrodes and the group of contacts. However, as shown in
Further, according to the present invention, if desired, another type of information storing part may also be employed such as a magnetic recording medium other than the semiconductor memory chip.
According to the invention, the memory device 30 may be entirely constituted of a semiconductor chip if desired.
Also, in the above embodiments, the cartridge for housing one type of ink is described, however, it is clear that even if the present invention is applied to a color ink cartridge wherein a container is divided into plural chambers for housing different inks by a partition or partitions and ink supply ports communicating with each chamber are formed, the similar action is produced.
It will thus be seen that the objects set forth above, among those made apparent from the preceding description, are efficiently attained and, since certain changes may be made in the above construction without departing from the spirit and scope of the invention, it is intended that all matter contained in the above description or shown in the accompanying drawing shall be interpreted as illustrative and not in a limiting sense.
It is also to be understood that the following claims are intended to cover all of the generic and specific features of the invention herein described and all statements of the scope of the invention which, as a matter of language, might be said to fall therebetween.
Number | Date | Country | Kind |
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10-146680 | May 1998 | JP | national |
10-151882 | May 1998 | JP | national |
10-151883 | May 1998 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
4253103 | Heinzl et al. | Feb 1981 | A |
4471872 | Dedow | Sep 1984 | A |
4639933 | Howell et al. | Jan 1987 | A |
5262802 | Karita et al. | Nov 1993 | A |
5365312 | Hillmann et al. | Nov 1994 | A |
5398257 | Groenteman | Mar 1995 | A |
5406315 | Allen et al. | Apr 1995 | A |
5411343 | Childers | May 1995 | A |
5477963 | Mochizuki et al. | Dec 1995 | A |
5506611 | Ujita et al. | Apr 1996 | A |
5541631 | Hashimoto | Jul 1996 | A |
5594481 | Keefe et al. | Jan 1997 | A |
5646660 | Murray | Jul 1997 | A |
5748210 | Watanabe et al. | May 1998 | A |
5781208 | Karita et al. | Jul 1998 | A |
5847735 | Betschon | Dec 1998 | A |
5850238 | Karita et al. | Dec 1998 | A |
5971525 | Inoue et al. | Oct 1999 | A |
6074041 | Imanaka et al. | Jun 2000 | A |
6102517 | Kobayashi et al. | Aug 2000 | A |
6168262 | Clark et al. | Jan 2001 | B1 |
6209980 | Kobayashi et al. | Apr 2001 | B1 |
6227643 | Purcell et al. | May 2001 | B1 |
6502916 | Naka | Jan 2003 | B1 |
6502917 | Shinada et al. | Jan 2003 | B1 |
Number | Date | Country |
---|---|---|
26 10 518 | Sep 1977 | DE |
86 31 850 | Apr 1987 | DE |
42 14 446 | Nov 1993 | DE |
91 16 990.9 | Jan 1995 | DE |
295 13 646 | May 1996 | DE |
297 11 115 | Dec 1997 | DE |
197 48 857 | Aug 1998 | DE |
0 276 403 | Aug 1988 | EP |
0 313 205 | Apr 1989 | EP |
0 412 459 | Feb 1991 | EP |
0 412 459 | Feb 1991 | EP |
0 429 179 | May 1991 | EP |
0 440 261 | Aug 1991 | EP |
0 581 298 | Feb 1994 | EP |
0 622 235 | Nov 1994 | EP |
0 710 568 | May 1996 | EP |
08 197 748 | Jun 1996 | EP |
0 724 966 | Aug 1996 | EP |
0 789 322 | Aug 1997 | EP |
0 789 322 | Aug 1997 | EP |
0 854 043 | Jul 1998 | EP |
0 854 044 | Jul 1998 | EP |
0 854 043 | Dec 1998 | EP |
2 293 140 | Mar 1996 | GB |
2 293 141 | Mar 1996 | GB |
2 293 142 | Mar 1996 | GB |
62-184856 | Aug 1987 | JP |
3-67657 | Mar 1991 | JP |
03-101944 | Apr 1991 | JP |
3-227626 | Oct 1991 | JP |
3-227629 | Oct 1991 | JP |
05-084925 | Apr 1993 | JP |
07-060953 | Mar 1995 | JP |
7-232438 | Sep 1995 | JP |
08-102820 | Apr 1996 | JP |
08-132635 | May 1996 | JP |
8-174839 | Jul 1996 | JP |
8-197750 | Aug 1996 | JP |
08-216429 | Aug 1996 | JP |
2000-103087 | Apr 2000 | JP |
9000974 | Feb 1990 | WO |
WO 9605061 | Feb 1996 | WO |
9723352 | Jul 1997 | WO |
9728001 | Aug 1997 | WO |
9804414 | Feb 1998 | WO |
9855318 | Dec 1998 | WO |
9959823 | Nov 1999 | WO |
Number | Date | Country | |
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Parent | 09312065 | May 1999 | US |
Child | 11799757 | US |