The present disclosure relates to a printing-fluid containing device including a printing-fluid cartridge and an adaptor.
There are conventional image recording apparatuses known in the art that can record images on recording sheets by using ink. One such image recording apparatus includes an inkjet type recording head and is configured to selectively eject ink droplets from nozzles provided in the recording head, as disclosed in Japanese Patent Application Publication No. 2009-132098. As the ink droplets impact on the recording sheet, a desired image is recorded on the recording sheet. The image recording apparatus is provided with an ink cartridge that stores ink to be supplied to the recording head. The ink cartridge is attachable to and detachable from a cartridge attachment section of the image recording apparatus.
Japanese Patent Application Publication No. 2013-212587 discloses an ink cartridge that have an electronic component, such as a memory module, for storing data from which a color of ink, a material of ink, a remaining amount of ink, a maintenance condition, and the like are respectively determined. The memory module is electrically connected to an electric contact provided in the cartridge attachment section when the ink cartridge has been attached to the cartridge attachment section. Access to the memory module enables the data stored in the memory module to be retrieved therefrom.
A configuration has been proposed in which an electronic component such as a memory module is provided at an adaptor and an ink cartridge is replaced by another while the adaptor remains in the cartridge attachment section. In this configuration, however, relative positions among the ink cartridge, the adaptor and, the cartridge attachment section are fixed by a friction force generated between the ink cartridge and the adaptor and a friction force generated between the adaptor and the cartridge attachment section since the ink cartridge and the adaptor are merely pushed into the cartridge attachment section. Consequently, a detection portion for detection of a remaining amount of ink in the ink cartridge and an electronic module are not stably fixed in position, which may cause inaccurate detection of the remaining amount of ink or may hinder retrieval of data stored in the electronic module. The adaptor is liable to move in association with the movement of the ink cartridge. Shavings are liable to be generated due to sliding movement of the electronic module relative to the contacts.
In view of the foregoing, it is an object of the disclosure to provide a printing-fluid cartridge, an adaptor, and a cartridge attachment section that ensure the precision of positioning the printing-fluid cartridge, the adaptor, and the cartridge attachment section relative to one another.
According to one aspect, a printing-fluid containing device is configured to be inserted into a cartridge attachment section in an insertion direction to be detachably attached to the cartridge attachment section. The printing-fluid containing device includes: a printing-fluid cartridge; and an adaptor, to which the printing-fluid cartridge is configured to be detachably assembled. The printing-fluid cartridge includes: a casing configured to store printing-fluid therein; a supply portion configured to allow the printing-fluid stored in the casing to flow out of the casing; and a detection portion including a light accessible portion configured to be accessed by light emitted from an outside of the printing-fluid cartridge. The adaptor includes: an adaptor body into which the printing-fluid cartridge is insertable; an electrical interface; and an engagement portion. The adaptor body has a leading end and a trailing end in the insertion direction. The adaptor body has a front wall at the leading end. The front wall has an opening through which the supply portion extends. The adaptor body further has an outer surface. The electrical interface is disposed on the outer surface and electrically connectable to an electric contact provided at the cartridge attachment section. The engagement portion is configured to engage with the cartridge attachment section.
According to another aspect, an adaptor is configured to be inserted into a cartridge attachment section in an insertion direction to be detachably attached to the cartridge attachment section together with a printing-fluid cartridge. The printing-fluid cartridge is configured to be detachably assembled to the adaptor. The printing-fluid cartridge includes: a casing; a supply portion; and a detection portion including a light accessible portion configured to be accessed by light emitted from an outside of the printing-fluid cartridge. The adaptor includes: an adaptor body, into which the printing-fluid cartridge is insertable; an electrical interface; and an engagement portion. The adaptor body has a leading end and a trailing end in the insertion direction. The adaptor body has a front wall at the leading end. The front wall has an opening through which the supply portion extends. The adaptor body further has a top wall. The top wall faces upward when the adaptor is at an insertion posture that is a posture of the adaptor during a process of the adaptor being inserted into the cartridge attachment section. The top wall of the adaptor body has an opening through which the light accessible portion of the printing-fluid cartridge extends. The electrical interface is disposed on the top wall and electrically connectable to an electric contact provided at the cartridge attachment section. The engagement portion is configured to engage with the cartridge attachment section.
The particular features and advantages of the disclosure will become apparent from the following description taken in connection with the accompanying drawings, in which:
An ink cartridge 30 and an adaptor 160 according to one embodiment and a printer 10 configured to accommodate the ink cartridge 30 and the adaptor 160 therein will be described with reference to
The printer 10 is configured to selectively eject ink droplets onto recording sheets to record images thereon based on an inkjet recording method. As illustrated in
In the embodiment, four ink cartridges 30 corresponding to respective four colors of cyan, magenta, yellow, and black can be accommodated in the cartridge attachment section 110 of the ink supply device 100. Further, four adaptors 160 corresponding to the respective four ink cartridges 30 can also be accommodated in the cartridge attachment section 110 of the ink supply device 100. For an explanatory purpose, in the following description and the drawings, only one ink cartridge 30 and one adaptor 160 is assumed to be attached to the cartridge attachment section 110 unless otherwise specified.
Each of the ink cartridges 30 stores ink (an example of printing-fluid) that can be used in the printer 10. In a state where the ink cartridge 30 and the adaptor 160 are attached to the cartridge attachment section 110, the ink cartridge 30 and a recording head 21 are connected to each other by corresponding one of a plurality of ink tubes 20 (an example of a tube). The recording head 21 is provided with a plurality of sub-tanks 28 corresponding to the plurality of ink cartridges 30. Each sub-tank 28 is configured to temporarily store the ink supplied from the corresponding ink cartridge 30 through the corresponding ink tube 20. The recording head 21 is configured to selectively eject the ink supplied from the respective sub-tanks 28 through nozzles 29 according to an inkjet recording method.
The printer 10 further includes a sheet feeding tray 15, a sheet feeding roller 23, a pair of conveying rollers 25, a platen 26, a pair of discharge rollers 22, and a sheet discharge tray 16. The sheet feeding roller 23 feeds recording sheets from the sheet feeding tray 15 onto a conveying path 24, and the conveying rollers 25 convey the recording sheets over the platen 26. The recording head 21 selectively ejects ink onto the recording sheets as the recording sheets pass over the platen 26, whereby images are recorded on the recording sheets. The discharge rollers 22 receive the recording sheets that have passed over the platen 26 and discharge the recoding sheets onto the sheet discharge tray 16 provided at a position most downstream in the conveying path 24.
In the following description, it is assumed that the ink cartridge 30 and the adaptor 160 are at their respective insertion postures unless otherwise specified. The insertion postures of the ink cartridge 30 and the adaptor 160 imply postures of the ink cartridge 30 and the adaptor 160 during a process of the ink cartridge 30 and the adaptor 160 being inserted into the cartridge attachment section 110 as illustrated in
As illustrated in
As illustrated in
In the present embodiment, the insertion direction 57 and the removal direction 58 are parallel to the horizontal direction, but the insertion direction 57 and the removal direction 58 may not necessarily be parallel to the horizontal direction. The insertion direction 57 and the removal direction 58 may be parallel to the direction of gravity (vertical direction) or a direction crossing the horizontal direction and the direction of gravity. If the insertion direction 57 and the removal direction 58 are parallel to the direction of gravity, for example, a front surface of the ink cartridge 30 faces downward.
As illustrated in
The casing 31 has a front surface 40, a rear surface 41, a pair of left and right side surfaces 37, 38 (i.e. right surface 37 and left surface 38), and a top surface 39, and a bottom surface 42. The front surface 40 is a wall surface of the casing 31 facing forward (i.e. facing in the insertion direction 57) when the ink cartridge 30 is inserted into the cartridge attachment section 110 in the insertion direction 57. Further, the rear surface 41 is a wall surface of the casing 31 facing rearward (i.e. facing in the removal direction 58) when the ink cartridge 30 is inserted into the cartridge attachment section 110 in the insertion direction 57. The front surface 40 and the rear surface 41 are opposite to each other in the insertion direction 57 and the removal direction 58. The right surface 37 and the left surface 38 are wall surfaces of the casing 31 extending in the insertion direction 57 and the removal direction 58. The top surface 39 is a wall surface of the casing 31 that is connected to the right surface 37 and the left surface 38, and also connected to the front surface 40 and the rear surface 41. The top surface 39 extends from a top edge of the front surface 40 to a top edge of the rear surface 41 in the insertion direction 57 and the removal direction 58. The bottom surface 42 is a wall surface of the casing 31 that is connected to the right surface 37 and the left surface 38, and also connected to the front surface 40 and the rear surface 41. The bottom surface 42 extends from a bottom edge of the front surface 40 to a bottom edge of the rear surface 41 in the insertion direction 57 and the removal direction 58. The front surface 40 and the rear surface 41 are respectively defined by four wall surfaces of the casing 31, namely, the right surface 37, the left surface 38, the top surface 39 and the front surface 40. In other words, in the embodiment, when the ink cartridge 30 is at the insertion posture, a surface of the ink cartridge 30 facing forward or in the insertion direction 57 is the front surface 40; a surface of the ink cartridge 30 facing rearward or in the removal direction 58 is the rear surface 41; a surface of the ink cartridge 30 facing upward is the top surface 39; and a surface of the ink cartridge 30 facing downward is the bottom surface 42. That is, when the ink cartridge 30 is inserted into the cartridge attachment section 110 in the insertion direction 57, a front wall (a wall having the front surface 40) of the casing 31 constitutes a leading end of the casing 31 while a rear wall (a wall having the rear surface 41) of the casing 31 constitutes a trailing end of the casing 31. Specifically, with respect to the insertion direction 57, a front end of the casing 31 corresponds to the leading end of the casing 31 while a rear end of the casing 31 corresponds to the trailing end of the casing 31 in this embodiment.
Incidentally, each of the front surface 40, the rear surface 41, the top surface 39, the bottom surface 42, the right surface 37, and the left surface 38 is not necessarily formed by one flat surface. One surface or a plurality of surfaces of the casing 31 that is visible when the ink cartridge 30 is viewed in the rearward direction 54 may be recognized as the front surface 40. One surface or a plurality of surfaces of the casing 31 that is visible when the ink cartridge 30 is viewed in the forward direction 53 may be recognized as the rear surface 41. One surface or a plurality of surfaces of the casing 31 that is visible when the ink cartridge 30 is viewed in the downward direction 52 may be recognized as the top surface 39. One surface or a plurality of surfaces of the casing 31 that is visible when the ink cartridge 30 is viewed in the upward direction 51 may be recognized as the bottom surface 42. One surface or a plurality of surfaces of the casing 31 that is visible when the ink cartridge 30 is viewed in the leftward direction 55 may be recognized as the right surface 37. One surface or a plurality of surfaces of the casing 31 visible when the ink cartridge 30 is viewed in the rightward direction 56 may be recognized as the left surface 38.
An internal space formed in the casing 31 constitutes an ink chamber 36 for storing ink therein. The ink chamber 36 is located between the front surface 40 and the rear surface 41 of the casing 31.
As illustrated in
As illustrated in
Incidentally, the ink supply port 71 is not necessarily be opened and closed by the ink supply valve 70. For example, the ink supply port 71 may be closed by a film. In this case, the ink needle 122 pierces through the film to open the ink supply port 71 when the ink cartridge 30 and the adaptor 160 are attached to the cartridge attachment section 110. Further, the casing 31 may have an air communication port for allowing the ink chamber 36 maintained at negative pressure to communicate with ambient air (atmosphere) therethrough. Through such an air communication port, the pressure in the ink chamber 36 can be adjusted from negative pressure to atmospheric pressure.
As illustrated in
As illustrated in
The pair of side walls of the indicator housing 33 is made of light-transmissive resin that allows transmission of light (e.g. infrared light) emitted from an optical sensor 114 (described later,
Incidentally, in place of the light-transmissive resin, the indicator housing 33 may be provided by a reflection member that reflects light when the light is incident thereon at an angle exceeding a critical angle. Further, the light may be infrared light or visible light.
A space is formed between the pair of side walls (left and right walls) of the indicator housing 33 for storing ink therein. As illustrated in
The sensor arm 60 is pivotally movably supported to a pivot shaft 64 inside the ink chamber 36. The pivot shaft 64 is aligned in the leftward direction 55 and the rightward direction 56. The sensor arm 60 is configured to pivotally move in accordance with change in amount of ink remaining in the ink chamber 36. The sensor arm 60 can change its posture from a first posture (indicated by a solid line in
While the ink cartridge 30 and the adaptor 160 are attached to the cartridge attachment section 110 (i.e. when the ink cartridge 30 and the adaptor 160 are in attached states), the remaining-amount detection portion (the indicator housing 33 and the indicator 62) changes its state relative to the optical sensor 114 (
Note that, when the ink cartridge 30 and the adaptor 160 are in their attached states, the ink cartridge 30 and the adaptor 160 are in their respective upright states. That is, the ink cartridge 30 and the adaptor 160 are attached to the cartridge attachment section 110 in an attachment direction crossing the direction of gravity, at which time the ink supply port 71 faces in the attachment direction.
Incidentally, the detection portion 35 may not have the sensor arm 60. The optical sensor 114 has a light-emitting element and a light-receiving element disposed opposite to each other in the leftward direction 55 and the rightward direction 56, as described later in detail. Infrared light emitted from the light-emitting element of the optical sensor 114 travels in the leftward direction 55 or the rightward direction 56 and is received by the light-receiving element of the optical sensor 114. The detection portion 35 may be configured such that the infrared light emitted from the light-emitting element of the optical sensor 114 may be blocked or attenuated by the remaining-amount detection portion when an amount of ink in the ink chamber 36 is equal to or greater than the predetermined amount and that the infrared light emitted from the light-emitting element of the optical sensor 114 may pass through the remaining-amount detection portion such that an amount of light that has passed through the remaining-amount detection portion is greater than or equal to the predetermined value when an amount of ink in the ink chamber 36 is less than the predetermined amount.
Alternatively, the detection portion 35 may not have the indicator housing 33. A lever as the remaining-amount detection portion and a soft film supporting the lever may instead be provided. The lever may be pivotally movable and exposed to an outside. In this case, the soft film may be inflated when ink is stored in the ink chamber 36. When contacting the film at the inflated state, the lever may be maintained at a position blocking the infrared light. When no or little ink remains in the ink chamber 36, the film shrinks, thereby pivotally moving the lever downward to be moved to a position not blocking the infrared light.
Still alternatively, the infrared light emitted from the light-emitting element of the optical sensor 114 may be reflected so as not to reach the light-receiving element of the optical sensor 114 when ink is stored in the ink chamber 36, and may be reflected so as to reach the light-receiving element of the optical sensor 114 when no or little ink remains in the ink chamber 36.
As illustrated in
Each of the four adaptors 160 can be assembled to corresponding one of the four ink cartridges 30. The adaptor 160 may have a configuration that enables any one of the four ink cartridges 30 to be assembled thereto provided that information stored in an IC mounted on the adaptor 160 does not include information on color of ink.
As illustrated in
The adaptor body 161 has a front wall 162, a top wall 164, a pair of left and right side walls 165, 166 (i.e. right wall 165 and left wall 166), and a bottom wall 167. Further, the adaptor body 161 has an opening 163 that is open rearward. The front wall 162 is provided at a position opposite to the front surface 40 of the casing 31 when the ink cartridge 30 has been inserted into the adaptor 160. The opening 163 is positioned opposite to the front wall 162 in the rearward direction 54. Through the opening 163, the casing 31 can be inserted into the adaptor body 161. That is, the adaptor body 161 receives the casing 31 through the opening 163 as the casing 31 is inserted into the adaptor body 161 in the insertion direction 57. The top wall 164 is provided at a position opposite to the top surface 39 of the casing 31 when the ink cartridge 30 has been inserted into the adaptor 160. The right wall 165 and the left wall 166 are provided at positions opposite to the right surface 37 and the left surface 38 of the casing 31, respectively, when the ink cartridge 30 has been inserted into the adaptor 160. The bottom wall 167 is provided at a position opposite to the bottom surface 42 of the casing 31 when the ink cartridge 30 has been inserted into the adaptor 160. The top wall 164, the side walls 165, 166, and the bottom wall 167 are positioned between the front wall 162 and the opening 163 in the frontward direction 53 and rearward direction 54. The top wall 164 protrudes further rearward than the rear edges of the side walls 165, 166 and the rear edge of bottom wall 167 in the frontward direction 53 and rearward direction 54. In other words, the rear edge of the top wall 164 is positioned further rearward of the rear edges of the side walls 165, 166 and the rear edge of the bottom wall 167 in the frontward direction 53 and rearward direction 54.
With this configuration, the adaptor body 161 has a width (a dimension in the rightward direction 56) and a height (a dimension in the upward direction 51) that can cover the front surface 40 in its entirety of the casing 31 of the ink cartridge 30. Turning to a depth (a dimension in the rearward direction 54) of the adaptor body 161, the top wall 164 has a depth equal to the depth of the casing 31, while the side walls 165, 166 and the bottom wall 167 have a depth that can cover only the front part of the casing 31. Thus, the adaptor body 161 has a width that is slightly greater than a width of the casing 31, and has a height that is slightly greater than a height of the casing 31. At the top wall 164, the adaptor body 161 has a depth that is equal to a depth of the casing 31. At remaining parts other than the top wall 164, the adaptor body 161 has a depth that is smaller than the depth of the casing 31.
When the adaptor 160 is inserted into the cartridge attachment section 110 in the insertion direction 57 or removed from the cartridge attachment section 110 in the removal direction 58, the adaptor 160 is in its upright state illustrated in
The top wall 164 of the adaptor body 161 has a hole 168. The hole 168 penetrates the top wall 164 in the upward direction 51 and the downward direction 52. The hole 168 is a passage for exposing the indicator housing 33 provided on the casing 31 to an outside of the adaptor body 161 when the casing 31 of the ink cartridge 30 is inserted into the adaptor body 161. Hence, the hole 168 is formed at a position capable of receiving the indicator housing 33 and has a size and a shape in conformance with those of the indicator housing 33. The size of the hole 168 in the forward direction 53 and the rearward direction 54 is sufficiently greater than that of the indicator housing 33 such that the indicator housing 33 will not be caught by an edge of the hole 168 when the casing 31 is inserted into the adaptor body 161. At least part of the hole 168 is positioned further rearward of the rear edge of the bottom wall 167. The hole 168 is an example of an opening of the top wall 164.
The front wall 162 of the adaptor body 161 has a hole 169 at a lower portion thereof. The hole 169 penetrates the front wall 162 in the forward direction 53 and the rearward direction 54. The hole 169 is a passage for exposing the ink supply portion 34 provided on the casing 31 to an outside of the adaptor body 161 when the casing 31 of the ink cartridge 30 is inserted into the adaptor body 161. Hence, the hole 169 is formed at a position capable of receiving the ink supply portion 34 and has a size and a shape in conformance with those of the ink supply portion 34. The hole 169 is an example of an opening of the front wall 162.
When the ink cartridge 30 and the adaptor 160 are assembled to each other, the ink supply portion 34 is supported at an edge defining the hole 169 and the concave 170 is engaged with the convex 65, so that the adaptor 160 maintains the ink cartridge 30 at its insertion posture. The state where the ink cartridge 30 is assembled to the adaptor 160 is such a state that the casing 31 has been inserted in the adaptor body 161, with the indicator housing 33 being inserted in the hole 168, the ink supply portion 34 being inserted in the hole 169, and the convex 65 being engaged with the concave 170.
Further, in an assembled state of the ink cartridge 30 and the adaptor 160, that is, in the upright states of the ink cartridge 30 and the adaptor 160, the remaining-amount detection portion (i.e. the indicator housing 33 and the indicator 62) is positioned further upward than the top wall 164 of the adaptor body 161.
As illustrated in
In the process of the casing 31 of the ink cartridge 30 being inserted into the adaptor body 161, the convex 65 formed on the top surface 39 of the casing 31 is pressed against the bottom surface of the top wall 164 of the adaptor body 161, thereby being elastically deformed downward. When the casing 31 is further inserted into the adaptor body 161, the convex 65 reaches the concave 170 and is fitted into the concave 170. Hence, the convex 65 engages with the concave 170 (see
Incidentally, the convex 65 may be integral with a wall constituting the top surface 39 (top wall) of the casing 31 and formed in the same material as the top wall such as resin. In this case, during the process of the ink cartridge 30 being inserted into and removed from the adaptor 160, the top wall (top surface 39) of the casing 31 may be resiliently deformed downward while the convex 65 is pressed against the bottom surface of the top wall 164 of the adaptor body 161.
Further, the convex 65 may not be formed integrally with the top wall (top surface 39) of the casing 31. The convex 65 may be separate from the top wall (top surface 39) of the casing 31 and fixed to the top surface 39 of the casing 31 with adhesive, for example. Alternatively, the convex 65 may be provided on the top surface 39 of the casing 31 by a leaf spring.
Alternatively, the convex 65 may be made of a rigid body. The convex 65 may be engaged with the concave 170 in the process of inserting the detection portion 35 into the hole 168 by pivotally moving the casing 31 relative to the adaptor body 161.
Further, engagement of the ink cartridge 30 with the adaptor 160 is not limited to the one achieved by engaging the convex 65 with the concave 170. Any configuration known in the art may be available. For example, a through-hole, instead of the concave 170, may be formed in the top wall 164 of the adaptor body 161 so as to penetrate the top wall 164 in the upward direction 51 and the downward direction 52. The through-hole has an inner engagement surface that faces forward and that is configured to engage with the outer protruding engagement surface of the convex 65 that faces rearward.
As illustrated in
The light attenuation portion 43 is a rib formed in a thin plate shape. The light attenuation portion 43 extends upward from the top wall 164. The light attenuation portion 43 has a thickness in the leftward direction 55 and the rightward direction 56 as a thickness direction. A dimension of the light attenuation portion 43 in the leftward direction 55 and the rightward direction 56 is smaller than a dimension of the indicator housing 33 in the leftward direction 55 and the rightward direction 56. In a state where the adaptor 160 is attached to the cartridge attachment section 110 (a state illustrated in
The light attenuation portion 43 may be formed with one or more through-holes that penetrates the light attenuation portion 43 in the leftward direction 55 and the rightward direction 56. Whether the light attenuation portion 43 is formed with the one or more through-holes depends on at least one of the initial amount of ink stored in the ink chamber 36 of the ink cartridge 30 and composition of the ink stored in the ink chamber 36. The through-holes thus formed in the light attenuation portion 43 allow light emitted from the optical sensor 115 to pass through the light attenuation portion 43 without being attenuated or blocked by the light attenuation portion 43.
As illustrated in
An IC (not illustrated) and three electrodes 75 including a HOT electrode, a GND electrode and a signal electrode are mounted on the IC board 74. The IC is a semiconductor integrated circuit. The IC stores data indicative of information on the ink cartridge 30 (for example, a color of ink and a manufacturer of the ink cartridge 30) that need not be updated in association with replacement of the ink cartridge 30. External access to the IC enables the data stored in the IC to be retrieved therefrom.
The respective three electrodes 75 (i.e. the HOT electrode, the GND electrode, and the signal electrode) are electrically connected to the IC. The HOT electrode, the GND electrode, and the signal electrode extend in the forward direction 53 and the rearward direction 54, respectively, and are arranged spaced apart from each other in the leftward direction 55 and the rightward direction 56. The HOT electrode, the GND electrode, and the signal electrode are mounted on a top surface of the IC board 74 and are exposed to an outside so as to be electrically accessible from the outside. In other words, the HOT electrode, the GND electrode, and the signal electrode are exposed to an outside and can be accessed from above the ink cartridge 30 in the attached state.
As illustrated in
As illustrated in
Further, the protrusion 171 is positioned rearward of the hole 168. In other words, the protrusion 171 is disposed closer to the rear end of the adaptor body 161 than the hole 168 is to the rear end of the adaptor body 161 in the forward direction 53 and the rearward direction 54. More specifically, the protrusion 171 is disposed closer to the rear edge (trailing edge) of the top wall 164 than the hole 168 is to the rear edge (trailing edge) of the top wall 164 in the forward direction 53 and the rearward direction 54 (that is, in the insertion direction 57 and the removal direction 58). Accordingly, in the state where the casing 31 of the ink cartridge 30 has been inserted into the adaptor body 161 (the state shown in
As illustrated in
The cartridge attachment section 110 includes four connecting portions 103. As illustrated in
Each of the connecting portions 103 includes a retaining portion 121 and the ink needle 122. The ink needle 122 is made of resin having a tubular configuration. The connecting portion 103 is connected to the corresponding ink tube 20 at an outer side of the case 101, i.e. a side of the case 101 facing an outer end surface of the end wall opposite to the inner end surface 102 of the case 101. Specifically, the ink tube 20 is connected to the connecting portion 103 so that communication between the ink needle 122 and the ink tube 20 is provided.
The ink tube 20 connected to the connecting portion 103 at the outer side of the case 101 extends upward from the connecting portion 103 along the outer end surface of the case 101 to the recording head 21 of the printer 10, thereby allowing ink to be supplied to the recording head 21. Note that the ink tube 20 is not illustrated in
The retaining portion 121 is a cylindrical-shaped groove formed in the end wall of the case 101. The ink needle 122 is disposed at the center of the retaining portion 121. As illustrated in
Four optical sensors 114 and four optical sensors 115 are provided at the cartridge attachment section 110, corresponding to the four ink cartridges 30 and the four adaptors 160. For an explanatory purpose, only one of the optical sensors 114 and only one of the optical sensors 115 are illustrated in
As illustrated in
Each optical sensor 114 includes the light-emitting element such as an LED and the light-receiving element such as a photo-transistor. The light-emitting element and the light-receiving element of the optical sensor 114 are enclosed by a housing formed in a horseshoe shape. The optical sensor 114 has an external shape provided by its housing, and thus, the external shape thereof is horseshoe-shaped. The light-emitting element of the optical sensor 114 can emit light travelling in one direction (in this embodiment, either one of the leftward direction 55 and the rightward direction 56). The light-receiving element of the optical sensor 114 can receive the light emitted from the light-emitting element of the optical sensor 114 in the one direction. The light-emitting element and the light-receiving element of the optical sensor 114 are disposed within the horseshoe-shaped housing and are arranged in conformation with each other and spaced apart from each other by a prescribed distance in the leftward direction 55 and the rightward direction 56.
Similarly to the optical sensor 114, each optical sensor 115 also includes a light-emitting element such as an LED and a light-receiving element such as a photo-transistor. The light-emitting element and the light-receiving element of the optical sensor 115 are enclosed by a housing formed in a horseshoe shape. The optical sensor 115 has an external shape provided by its housing, and thus, the external shape thereof is horseshoe-shaped. The light-emitting element of the optical sensor 115 can emit light travelling in one direction (in this embodiment, either one of the leftward direction 55 and the rightward direction 56). The light-receiving element of the optical sensor 115 can receive the light emitted from the light-emitting element of the optical sensor 115 in the one direction. The light-emitting element and the light-receiving element of the optical sensor 115 are disposed within the horseshoe-shaped housing and are arranged in conformation with each other and spaced apart from each other by a prescribed distance in the leftward direction 55 and the rightward direction 56.
The light attenuation portion 43 of the adaptor 160 and the indicator housing 33 of the ink cartridge 30 can enter the space between the light-emitting element and light-receiving element of the optical sensor 114. The light attenuation portion 43 of the adaptor 160 can enter the space between the light-emitting element and the light-receiving element of the optical sensor 115.
When the ink cartridge 30 and the adaptor 160 have been attached to the cartridge attachment section 110 as illustrated in
As illustrated in
Each of the electric contacts 106 is connected to a computing device through an electric circuit. The computing device may include a CPU, a ROM, a RAM, and the like, for example. A controller of the printer 10 may function as the computing device. When one of the electric contacts 106 is electrically connected to the HOT electrode, a voltage Vc is applied to the HOT electrode. When another of the electric contacts 106 is electrically connected to the GND electrode, the GND electrode is grounded. Electrical connection between the electric contacts 106 and the HOT and GND electrodes supplies electric power to the IC. When the other of the electric contacts 106 is electrically connected to the signal electrode, data stored in the IC become accessible. Output from the electric circuit is inputted into the computing device.
As illustrated in
Next, an operation for attaching the ink cartridge 30 and the adaptor 160 to the cartridge attachment section 110 will be described while referring to
When a user attempts to use the printer 10 for the first time after purchasing the printer 10, neither the ink cartridge 30 of any color nor the adaptor 160 corresponding thereto is attached to the cartridge attachment section 110. Further, the ink cartridge 30 has not yet been assembled to the adaptor 160 before the ink cartridge 30 and the adaptor 160 are attached to the cartridge attachment section 110 for the first time.
The user first assembles the ink cartridge 30 to the adapter 160, as illustrated in
As shown in
More specifically, when the user pushes a rear portion of the top wall 164 of the adaptor 160 downward, the top wall 164 is bent downward. As a result, the ink cartridge 30 which is now pushed downward by the top wall 164 is pivotally moved downward (i.e. in a counterclockwise direction in
Incidentally, a gap 111 is formed between the bottom surface 42 of the ink cartridge 30 and the inner bottom surface 105 of the cartridge attachment section 110 for allowing the ink cartridge 30 to pivotally move downward. Further, a gap 176 is formed between the bottom surface 42 of the ink cartridge 30 and the bottom wall 167 of the adaptor 160 for allowing the ink cartridge 30 to pivotally move downward. At least part of the opening 160 exists at a position further rearward from the rear edge of the bottom wall 167. Accordingly, a space for allowing the ink cartridge 30 to pivotally move downward is secured in the internal space 113 of the cartridge attachment section 110.
As described above, the adaptor 160 may be pivotally moved during the process of the adaptor 160 being inserted into the cartridge attachment section 110. Alternatively, the adaptor 160 may be pivotally moved before inserted into the cartridge attachment section 110, and then, inserted into the cartridge attachment section 110 while maintaining its pivotally moved state.
As the adaptor 160 is pivotally moved, the protrusion 171 is moved to a position below the lock pin 117 as illustrated in
The rear surface 172 of the protrusion 171 can therefore contact the lock pin 117 from front (see
As illustrated in
While the ink cartridge 30 and the adaptor 160 are attached to the cartridge attachment section 110 (i.e. in the attached state) as illustrated in
Further, as illustrated in
When an amount of ink in the ink chamber 36 is reduced, the sensor arm 60 is pivotally moved from the first posture (indicated by the solid line in
In the process of the ink cartridge 30 and the adaptor 160 being inserted into the cartridge attachment section 110, the ink supply portion 34 exposed to an outside through the hole 169 of the adaptor 160 is brought into contact with the retaining portion 121, and the ink needle 122 enters into the ink supply port 71 of the ink supply portion 34. When the ink needle 122 contacts the ink supply valve 70 as the ink needle 122 enters into the ink supply port 71 and the ink cartridge 30 and the adaptor 160 are further moved forward, the ink supply valve 70 is pushed by the ink needle 122 and separated from the ink supply port 71, as illustrated in
In the process of the ink cartridge 30 and the adaptor 160 being attached to the cartridge attachment section 110 (attachment process), each of the electrodes 75 mounted on the IC board 74 overlaps the corresponding contact 106 of the cartridge attachment section 110 in the upward direction 51 and the downward direction 52, as viewed from a front side thereof. During the attachment process, the IC board 74 disposed on the top wall 164 of the adaptor body 161 of the adaptor 160 resiliently deforms the contacts 106 so as to press the electric contact 106 upward. In the attached state of the ink cartridge 30 and the adaptor 160, the contacts 106 are urged downward by their resilient restoring force, thereby electrically contacting the corresponding electrodes 75 (i.e., the HOT electrode, the GND electrode, and the signal electrode) mounted on the IC board 74 disposed on the top wall 164 of the adaptor body 161. Information retrieved from the IC board 74 is used to determine a color of ink stored in the ink cartridge 30 and a manufacturer of the ink cartridge 30. A color of ink and a manufacturer of the ink cartridge 30 can be determined by a method conventionally known in the art. Therefore, the determination method will not be described here in detail.
In order to remove both of the ink cartridge 30 and the adaptor 160 from the cartridge attachment section 110, the user pivotally moves the adaptor 160 about the front portion thereof, moving the rear portion of the adaptor 160 downward, similar to the process of the adaptor 160 being inserted into the cartridge attachment section 110. The protrusion 171 thus moves downward to a position below the lock pin 117. Hence, the rear surface 172 of the protrusion 171 is disengaged from the lock pin 117, thereby moving the ink cartridge 30 and adaptor 160 in the removal direction 58 (i.e. rearward direction 54) by the urging force of the coil spring 73.
By moving the ink cartridge 30 and adaptor 160 in the removal direction 58, the ink needle 122 is retracted from the ink supply portion 34. Further, the indicator housing 33 and the light attenuation portion 43 move further rearward than the optical sensors 114 and 115. The detection signals outputted from the optical sensors 114 and 115 therefore change. Based on the change in detection signal outputted from the optical sensor 115, the controller of the printer 10 determines that the adaptor 160 has been removed from the cartridge attachment section 110.
In order to remove the ink cartridge 30 from the cartridge attachment section 110 while maintaining the adaptor 160 to be attached to the cartridge attachment section 110, the user pivotally moves the ink cartridge 30 relative to the adaptor 160 in the counterclockwise direction indicated by the arrow 174 in
According to the above-described embodiment, the ink cartridge 30 is inserted into the cartridge attachment section 110 together with the adaptor 160 when used. The ink cartridge 30 is removed from the cartridge attachment section 110 when ink stored in the ink cartridge 30 has been consumed. Then, a new ink cartridge 30 is inserted into the cartridge attachment section 110. When the used ink cartridge 30 is removed from the cartridge attachment section 110, the adaptor 160 may remain in the cartridge attachment section 110, or alternatively, may be removed together with the ink cartridge 30 from the cartridge attachment section 110.
The adaptor 160 is fixed in position relative to the cartridge attachment section 110 by means of engagement between the protrusion 171 and the cartridge attachment section 110 (the lock pin 117). This enhances the precision of positioning the IC board 74 relative to the contacts 106. Further, since only the ink cartridge 30 is removed from the cartridge attachment section 110 while the adaptor 160 remains attached to the cartridge attachment section 110, the IC board 74 provided at the adaptor 160 does not slide over the contacts 106, thereby suppressing produce of shavings.
According to the above-described embodiment, the adaptor 160 can be attached to and removed from the cartridge attachment section 110 by a simple operation of pivotally moving the adaptor 160 relative to the cartridge attachment section 110.
Further, according to the above-described embodiment, the protrusion 171 is disposed at the top surface of the top wall 164 of the adaptor body 161. Hence, a space formed in the cartridge attachment section 110 for accommodating the adaptor 160 can have a reduced-size width, compared with a case where the protrusion 171 is disposed on the right wall 165 or the left wall 166.
Still further, according to the above-described embodiment, the indicator housing 33 is positioned further upward than the ink supply portion 34 when the ink cartridge 30 is at the insertion posture. This configuration can prevent the indicator housing 33 from being contaminated by ink. Further, the indicator housing 33 is not covered by the adaptor body 161 of the adaptor 160 and exposed to an outside. Therefore, the adaptor body 161 of the adaptor 160 can have a size almost the same as that of the casing 31 of the ink cartridge 30.
According to the above-described embodiment, a locus of the indicator housing 33 when only the ink cartridge 30 is removed from the cartridge attachment section 110 is below the protrusion 171. Accordingly, it becomes easy to remove the ink cartridge 30 from the cartridge attachment section 110.
According to the above-described embodiment, the protrusion 171, the indicator housing 33, and the light attenuation portion 43 are positioned above the casing 31 when the ink cartridge 30 and the adaptor 160 are at their insertion postures. This configuration allows parts and components of the cartridge attachment section 110 that access the protrusion 171, the indicator housing 33, and the light attenuation portion 43 to be arranged at an upper portion of the cartridge attachment section 110.
Further, according to the above-described embodiment, the indicator housing 33 is positioned further rearward than the light attenuation portion 43. Therefore, when the ink cartridge 30 is removed from the cartridge attachment section 110, the indicator housing 33 is unlikely to interfere with the light attenuation portion 43.
Next, an adaptor 260 according to a first modification to the embodiment will be described with reference to
The adaptor 160 according to the above-described embodiment is provided with the protrusion 171. However, in place of the protrusion 171, the adaptor 260 according to the present modification is provided with a lever 90 and a leaf spring 91. The lever 90 is pivotally movable relative to the adaptor body 161 of the adaptor 260 according to the present modification and urged upward by the leaf spring 91.
As illustrated in
At the top wall 164, the lever 90 extends diagonally above and rearward from a position rearward of the hole 168. The lever 90 has a generally flat-plate shape having a stepped engagement surface 94 (an example of an engagement portion). The engagement surface 94 extends downward at a middle portion of the lever 90 in the forward direction 53 and the rearward direction 54. Similarly to the rear surface 172 of the protrusion 171 of the adaptor 260, the engagement surface 94 is engageable with the lock pin 117 of the cartridge attachment section 110. The lever 90 has an operation portion 95 at a distal end portion (i.e. rear end portion) thereof. The operation portion 95 is a portion of the lever 90 positioned furthest upward from the top wall 164 of the adaptor body 161. Further, the operation portion 95 is positioned further rearward than the rear surface 41 of the casing 31 of the ink cartridge 30.
The leaf spring 91 is disposed between the lever 90 and the top wall 164 of the adaptor body 161. The leaf spring 91 urges the lever 90 upward, that is, clockwise in
In the embodiment described above, the adaptor 160 is required to be pivotally moved to engage the rear surface 172 of the protrusion 171 with the lock pin 117 in order to completely attach the adaptor 160 to the cartridge attachment section 110. However, according to the first modification, the user only has to pivotally move the lever 90 to engage the engagement surface 94 with the lock pin 117 as illustrated in
According to the first modification, engagement of the engagement surface 94 with the lock pin 117 and disengagement of the engagement surface 94 from the lock pin 117 can be achieved by pivotal movement of the lever 90. Therefore, a space in the cartridge attachment section 110 for moving the engagement surface 94 can be reduced to a size in conformance with the size of the lever 90.
Next, an ink cartridge 330 and an adaptor 360 according to a second modification will be described with reference to
The ink cartridge 330 according to the present modification is the same as the ink cartridge 30 in the embodiment, except for the points described below.
That is, as shown in
The adaptor 360 according to the present modification is the same as the adaptor 160 in the embodiment, except for the points described below. That is, as shown in
The first top-wall part 164A is provided at a position opposite to the first top-surface part 39A of the casing 31 in the upward direction 51 and downward direction 52 when the ink cartridge 330 has been inserted into the adaptor 360. The second top-wall part 164B is provided at a position opposite to the second top-surface part 39B of the casing 31 in the upward direction 51 and downward direction 52 when the ink cartridge 330 has been inserted into the adaptor 360. The connection wall part 164C is provided at a position opposite to the connection surface part 39C of the casing 31 in the forward direction 53 and rearward direction 54 when the ink cartridge 330 has been inserted into the adaptor 360. The additional right side wall 365 is provided at a position opposite to the right surface 37 of the casing 31 in the leftward direction 55 and rightward direction 56 when the ink cartridge 330 has been inserted into the adaptor 360. The additional left side wall 366 is provided at a position opposite to the left surface 38 of the casing 31 in the leftward direction 55 and rightward direction 56 when the ink cartridge 330 has been inserted into the adaptor 360. With this configuration, the rear end of the adaptor body 161 of the adaptor 360 is defined by the rear edge of the top wall 164, the rear edges of the additional side walls 365, 366, the rear edges of the side walls 165, 166, and the rear edge of the bottom wall 167 in the frontward direction 53 and rearward direction 54, and the opening 163 is defined by the rear edge of the top wall 164, the rear edges of the additional side walls 365, 366, the rear edges of the side walls 165, 166, and the rear edge of the bottom wall 167.
The light attenuation portion 43 and the IC board 74 are disposed on the first top-wall part 164A. As shown in
The hole 168 is formed in the first top-wall part 164A. A hole 177 is formed in the connection wall part 164C. The hole 177 penetrates the connection wall part 164C in the forward direction 53 and the rearward direction 54. The lower end of the hole 177 is connected to the rear end of the hole 168 so that the hole 177 and hole 168 constitute a single L-shaped opening. The dimension of the hole 177 in the leftward direction 55 and the rightward direction 56 is greater than that of the indicator housing 33. The hole 177 is formed in the connection wall part 164C such that the upper edge of the hole 177 is positioned at a height the same as a height of the bottom surface of the second top-wall part 164B in the upward direction 51 and the downward direction 52.
As shown in
The convex 65 on the ink cartridge 330 can be engaged with the concave 170 on the bottom surface of the second top-wall part 164B. In the upward direction 51 and downward direction 52, the size of the space in the adaptor 360 between the bottom wall 167 and the second top-wall part 164B is greater than the dimension of part of the ink cartridge 330 between the bottom surface 42 and the top end of the detection portion 35. Accordingly, the ink cartridge 330 can be attached to or detached from the adaptor 360 by moving the ink cartridge 330 in its upright state in the forward direction 53 or the rearward direction 54 relative to the adaptor 360 and pivotally moving the ink cartridge 330 relative to the adaptor 360 only by a relatively small amount that is required to engage or disengage the convex 65 to or from the concave 170. It is unnecessary to pivotally move the ink cartridge 330 relative to the adaptor 360 by an amount greater than the amount required for the engagement or disengagement between the convex 65 and concave 170. This is contrary to the embodiment, in which the ink cartridge 30 has to be pivotally moved relative to the adaptor 160 by an amount as large as the amount required for insertion or removal of the index housing 33 to or from the hole 168. According to the present modification, the ink cartridge 330 can be attached to or detached from the cartridge attachment section 110 by a simple operation of moving the ink cartridge 330 relative to the adaptor 360 substantially in the insertion direction 57 or the removal direction 58 (the forward direction 53 or the rearward direction 54).
In the above-described embodiment and the first modification, the protrusion 171, the lever 90, the IC board 74 and the light attenuation portion 43 are disposed at the top surface of the top wall 164 of the adaptor body 161. However, the protrusion 171, the lever 90, the IC board 74 and the light attenuation portion 43 may be disposed at a surface of the adaptor body 161 other than the top surface, for example, a right surface of the right wall 165.
In the above-described embodiment and the first modification, the indicator housing 33 is disposed at the top surface 39 of the casing 31 of the ink cartridge 30. Alternatively, the indicator housing 33 may be disposed at a surface of the casing 31 other than the top surface 39, for example, the right surface 37.
In the above-described embodiment and the above-described modifications, the ink cartridge 30, 330 is provided with the indicator housing 33 while the adaptor 160, 260, 360 is provided with the light attenuation portion 43. However, the light attenuation portion 43 may be provided at the ink cartridge 30, 330 as far as the light attenuation portion 43 is formed in a material that can block or attenuate light emitted from the optical sensor 115. Further, the indicator housing 33 may not be provided in the ink cartridge 30, 330.
While the description has been made in detail with reference to the embodiment and modifications thereof, it would be apparent to those skilled in the art that various changes and modifications may be made therein without departing from the scope of the disclosure.
Number | Date | Country | Kind |
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2016-192535 | Sep 2016 | JP | national |
This application is Continuation of U.S. application Ser. No. 15/473,965, filed Mar. 30, 2017, which application claims priority from Japanese Patent Application No. 2016-192535 filed Sep. 30, 2016. The entire content of the priority applications are incorporated herein by reference.
Number | Date | Country | |
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Parent | 15473965 | Mar 2017 | US |
Child | 16035786 | US |