Printing apparatus
The positioning of the ink ribbon cartridge is achieved by the use of first and second convex portions on the ink ribbon cartridge's cases that fit into corresponding holes in the printing device's frame, addressing the alignment challenges of existing technologies.
Patent Information
- Application Number
- JP2021090203
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-05-28
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2041-05-28
AI Technical Summary
Existing ink ribbon cartridges face challenges in maintaining accurate positioning within printing devices due to the need for separate positioning protrusions on the frame, which complicates the alignment process.
The ink ribbon cartridge employs first and second convex portions on its cases that fit into corresponding holes in the printing device's frame, ensuring precise positioning without increasing the number of device parts.
This solution allows for improved positioning accuracy of the ink ribbon cartridge within the printing device without requiring additional parts or components, thereby enhancing the integration of the printing device's components.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an ink ribbon cartridge and a printing device. [Background technology]
[0002] Printing devices that print on a print medium by heating the ink ribbon with a thermal head and transferring the ink from the ink ribbon to the print medium, and ink ribbon cartridges that house the ink ribbons used in printing devices, are known. Patent Document 1 discloses a cartridge body that houses a supply spool that winds the ink ribbon and a take-up spool that winds up the used ink ribbon after it has been unwound from the supply spool. The insertion surface of the cartridge body faces the drive holes of the supply spool and the take-up spool. The drive holes engage with the drive shaft of the printer when the cartridge body is installed in the cartridge mounting section of the printer body. A positioning hole is formed on the positioning surface, which is the side of the cartridge body opposite the insertion surface. A positioning protrusion that corresponds to the positioning hole in the cartridge body is formed on a frame that constitutes the printer body. The positioning protrusion engages with the positioning hole from inside the cartridge body when the cartridge body is inserted into the cartridge mounting section. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2010-253846 Summary of the Invention [Problem to be solved by the invention]
[0004] The above technology requires that a separate positioning protrusion be provided on the frame, and since the cartridge body is positioned relative to the separate positioning protrusion provided on the frame, it is difficult to maintain the accuracy of positioning the cartridge body relative to the frame.
[0005] SUMMARY OF THE INVENTION An object of the present invention is to provide an ink ribbon cartridge and a printing device that can improve the positioning accuracy of the ink ribbon cartridge within the printing device without increasing the number of parts of the printing device. [Means for solving the problem]
[0006] An ink ribbon cartridge according to a first aspect of the present invention is an ink ribbon cartridge to be installed in a printing device, comprising: a first spool; a first case covering the first spool; a second spool; a second case covering the second spool; a first rib provided on the first case; a second rib provided on the second case; an ink ribbon having one end wound around the first spool and the other end wound around the second spool, with the one end and the other end being laid over the first spool, the first rib, the second rib, and the second spool in that order; a first convex portion that protrudes from a first end portion on one side in a first direction in which the first spool extends in the first case along the first direction and fits into a first hole provided in a first frame inside the printing device; and a second convex portion that protrudes from a second end portion on one side in a second direction in which the second spool extends in the second case along the second direction and fits into a second hole provided in the first frame.
[0007] The ink ribbon cartridge is positioned relative to the first and second holes by engaging the first protrusions on the first case and the second protrusions on the second case with the first and second holes, respectively, provided in the first frame inside the printing device. Therefore, the ink ribbon cartridge can improve the positioning accuracy of the ink ribbon cartridge within the printing device without increasing the number of parts of the printing device.
[0008] A printing device according to a second aspect of the present invention is a printing device into which the ink ribbon cartridge according to the first aspect can be installed, and comprises the first frame, a first support shaft that supports a platen roller, a second support shaft that supports a print head, a second frame that is arranged opposite the first frame, and a connecting member that connects the first frame and the second frame, wherein each of the first frame and the second frame has a third hole portion into which an end of the first support shaft fits and a fourth hole portion into which an end of the second support shaft fits, and the first support shaft fits into the third hole portion of each of the first frame and the second frame, and the second support shaft fits into the fourth hole portion of each of the first frame and the second frame, thereby disposing the first support shaft and the second support shaft in parallel, and the rigidity of the connecting member is lower than the rigidity of the first frame and the second frame.
[0009] The first support shaft and the second support shaft are arranged parallel to each other by fitting into the third hole and the fourth hole of the first frame and the second frame, respectively. When the first frame and the second frame are arranged opposite each other, the positions of the third hole and the fourth hole in the first frame and the positions of the third hole and the fourth hole in the second frame may deviate from a directly opposed state. Even in this case, because the rigidity of the connecting member is lower than the rigidity of the first frame and the second frame, the connecting member elastically deforms, maintaining the first support shaft and the second support shaft in a parallel position. Therefore, the printing device can accurately maintain the positional relationship between the platen roller and the print head. [Brief explanation of the drawings]
[0010] [Figure 1] FIG. 1 is a perspective view of a printing device 1. [Figure 2] 2 is a perspective view of the printing device 1 with the opening 28 open and the ink ribbon cartridge 3 removed. FIG. [Figure 3] FIG. 2 is a right side view of the printing device 1 with the ink ribbon cartridge 3 removed. [Figure 4]FIG. 2 is a perspective view of the printing mechanism 10. [Figure 5] FIG. 2 is an exploded perspective view of the printing mechanism 10. [Figure 6] FIG. 2 is a perspective view of the ink ribbon cartridge 3. [Figure 7] 2 is an exploded perspective view of the ink ribbon cartridge 3 as seen from the left rear. FIG. [Figure 8] 2 is an exploded perspective view of the ink ribbon cartridge 3 as seen from diagonally below on the right side. FIG. [Figure 9] FIG. 7 is a cross-sectional view taken along the line II in FIG. 6. [Figure 10] FIG. 2 is a left side view of the ink ribbon cartridge 3. DETAILED DESCRIPTION OF THE INVENTION
[0011] An embodiment of a printing device 1 and an ink ribbon cartridge 3 according to the present invention will be described with reference to the drawings. The drawings are used to explain technical features that can be adopted by the present invention, and the configurations of the devices described are merely illustrative examples and are not intended to limit the scope of the present invention. The top, bottom, upper left, lower right, lower left, and upper right in Figure 1 correspond to the top, bottom, left, right, front, and rear of the printing device 1 and the ink ribbon cartridge 3, respectively.
[0012] An overview of the printing device 1 will be described with reference to Figures 1 to 3. The printing device 1 is a thermal transfer printing device. As shown in Figure 1, the printing device 1 includes a housing 2. The housing 2 is made of synthetic resin and is box-shaped and small enough to be placed on a table. The housing 2 has an upper wall 2U, a lower wall 2S, a left wall 2L, a right wall 2R, a front wall 2F, a rear wall 2B, and a lid portion 2C. A plurality of switches 21 are provided at the front end of the upper surface 20U of the upper wall 2U. An ejection portion 22 is provided on the upper surface 20U, behind the switches 21. The ejection portion 22 is a through-hole formed in the upper wall 2U. The ejection portion 22 has a rectangular shape that is long in the left-right direction.
[0013] As shown in FIG. 2, the rear end of the top wall 2U, the upper end of the rear wall 2B, and the upper ends of the left wall 2L and the right wall 2R near their rear ends each form an opening 28 at the rear end of the housing 2. The lid 2C is rotatably supported on the upper end of the rear wall 2B and is capable of opening and closing the opening 28. FIGS. 1 and 3 show a state in which the opening 28 is closed by the lid 2C. FIG. 2 shows a state in which the lid 2C has been rotated from the state shown in FIGS. 1 and 3 to open the opening 28. The opening 28 communicates with a medium loading section 29, which is an internal region of the housing 2. A medium roll R, in which printing medium M is wound around a cylindrical core, is detachably loaded in the medium loading section 29. The user can replace the medium roll R by opening the opening 28.
[0014] The ink ribbon cartridge 3 is made of synthetic resin and includes a case 30 and a case cover 33. The case 30 includes a first case 31 and a second case 32, which will be described later with reference to FIG. 6. The first case 31 and the second case 32 each have a cylindrical shape extending in the left-right direction, and house an ink ribbon 39 inside. The case cover 33 has a substantially parallelogram shape in a side view, and is a member that closes the right side of the case 30. The ink ribbon 39 is unwound from the ink ribbon cartridge 3 and transported inside the housing 2.
[0015] An opening 24 is provided on the right surface 20R of the right wall 2R. The opening 24 is a rectangular tube extending leftward from the right surface 20R of the right wall 2R. When viewed from the right side, the shape of the opening 24 is substantially the same as the outer shape of the case cover 33. The depth of the opening 24 in the left-right direction is substantially the same as the thickness of the case cover 33 in the left-right direction. A side plate 25 is provided on the inside of the opening 24. The side plate 25 is a plate-like portion that stands upright from the lower left end of the opening 24 and is aligned parallel to the right wall 2R. A cartridge insertion opening 26 is formed in the side plate 25 and penetrates the side plate 25. The cartridge insertion opening 26 communicates with a cartridge mounting section 27, which is an internal area of the housing 2. An ink ribbon cartridge 3 is removably mounted in the cartridge mounting section 27 via the cartridge insertion opening 26. FIG. 1 shows the ink ribbon cartridge 3 mounted in the cartridge mounting section 27. 2 and 3 show a state in which the ink ribbon cartridge 3 is removed from the cartridge mounting portion 27. FIG.
[0016] The print medium M is unwound from the medium roll R mounted in the medium mounting section 29 in response to the driving force of a drive unit (not shown) provided inside the housing 2 and transported forward inside the housing 2 toward the discharge section 22. During part of the transport process, the print medium M runs parallel to the upper side of the ink ribbon 39 unwound from the ink ribbon cartridge 3. The portions of the print medium M and the ink ribbon 39 that run parallel to each other are hereinafter referred to as the "parallel running portion." In the parallel running portion, the ink ribbon 39 is heated by the print head 50, which will be described later with reference to Figures 4 and 5, and the ink on the ink ribbon 39 is transferred to the print medium M. The operation of the printing device 1 to heat the ink ribbon 39 with the print head 50 and transfer the ink on the ink ribbon 39 to the print medium M is hereinafter referred to as the "printing operation." The print medium M to which the ink has been transferred is discharged to the outside of the housing 2 via the discharge section 22. The cutting unit 23 provided at the front end of the discharge section 22 is a blade that can cut off the printed portion of the print medium M.
[0017] As shown in FIG. 3 , the cartridge insertion opening 26 includes a first opening 261, a second opening 262, and an opening connecting portion 263. The first opening 261 is an opening that forms the lower rear portion of the cartridge insertion opening 26 and is generally circular in side view. The second opening 262 is an opening that forms the upper front portion of the cartridge insertion opening 26 and is generally circular in side view. The opening connecting portion 263 is an approximately rectangular opening that extends obliquely upward from the upper portion of the first opening 261 toward the upper rear portion of the second opening 262. The inner diameter of the circular portion of the first opening 261 is generally the same as the outer diameter of the first case 31 of the ink ribbon cartridge 3. The inner diameter of the circular portion of the second opening 262 is generally the same as the outer diameter of the second case 32 of the ink ribbon cartridge 3.
[0018] 4 and 5, the printing mechanism 10 will be described. The printing mechanism 10 is disposed inside the housing 2, forward of the medium loading unit 29. The printing mechanism 10 includes a first frame 7, a second frame 8, a connecting member 9, a platen roller 4, a printing unit 5, and a lever member 6.
[0019] The first frame 7 and the second frame 8 are each a plate-like member that is approximately rectangular in side view. The first frame 7 and the second frame 8 are disposed opposite each other in the left-right direction inside the housing 2. The first frame 7 and the second frame 8 are provided to fix the platen roller 4, the printing unit 5, the lever member 6, and the ink ribbon cartridge 3 attached to the cartridge attachment portion 27 inside the housing 2.
[0020] The first frame 7 is disposed inside the housing 2 on the right side of the left wall 2L. The first frame 7 includes a facing surface 7A and fixing portions 7B and 7C. The facing surface 7A faces the second frame 8. The fixing portions 7B and 7C are portions that protrude leftward from the front and rear ends of the upper end of the facing surface 7A. Each of the fixing portions 7B and 7C has a screw hole into which a screw can be engaged. The first frame 7 is fixed to the housing 2 by screwing the screw holes into the housing 2. Therefore, the first frame 7 and the side plate portion 25 of the right wall 2R are disposed opposite each other in the left-right direction. Therefore, as shown in FIG. 3, when the housing 2 is viewed from the right with the ink ribbon cartridge 3 removed from the cartridge mounting portion 27, the facing surface 7A of the first frame 7 faces through the cartridge insertion opening 26 of the side plate portion 25.
[0021] The opposing surface 7A includes a first shaft hole 71, a second shaft hole 72, a first hole portion 73, a second hole portion 74, a first gear 75, a second gear 76, a first shaft portion 77, a second shaft portion 78, and a motor 79. The first shaft hole 71, the second shaft hole 72, the first hole portion 73, and the second hole portion 74 are each round holes that penetrate the opposing surface 7A in the left-right direction. The first shaft hole 71 is provided in the upper part of the opposing surface 7A, forward of the fixing portion 7C. The second shaft hole 72 is provided in the opposing surface 7A below and rearward of the first shaft hole 71. The first hole portion 73 is provided below and rearward of the second shaft hole 72. The second hole portion 74 is provided in the center of the opposing surface 7A in the front-rear direction, at approximately the same position as the second shaft hole 72 in the up-down direction. The first gear 75 and the second gear 76 are small gears. The first gear 75 is provided below and in front of the first hole portion 73. The second gear 76 is provided in front of the second hole portion 74. The first shaft portion 77 and the second shaft portion 78 are short shaft portions that protrude to the right from the opposing surface 7A. The first shaft portion 77 is provided below the first hole portion 73 and below and behind the first gear 75. The second shaft portion 78 is provided in front of the second hole portion 74 and behind the second gear 76. The motor 79 is provided in the front lower part of the opposing surface 7A. The motor 79 transmits driving force to multiple gears (not shown) provided on the surface of the first frame 7 opposite the opposing surface 7A. The first gear 75 and the second gear 76 rotate in accordance with the driving force transmitted to the multiple gears.
[0022] The second frame 8 is disposed inside the housing 2, on the left side of the right wall 2R. The second frame 8 includes fixing portions 8A, 8B, and 8C, a first shaft hole 81, a second shaft hole 82, an opening 83, and a fixing hole 84. The fixing portions 8A and 8B are portions that protrude to the right from the front and rear ends of the upper end of the second frame 8, respectively. The fixing portion 8C is a portion that protrudes to the right from the lower end of the second frame 8. Each of the fixing portions 8A, 8B, and 8C is provided with a screw hole into which a screw is engaged, and the second frame 8 is fixed to the housing 2 by screwing the respective screw holes into the housing 2.
[0023] The first shaft hole 81 and the second shaft hole 82 are each round holes penetrating the second frame 8 in the left-right direction. The first shaft hole 81 is provided in the upper part of the second frame 8, forward of the fixing portion 8B. The second shaft hole 82 is provided in the second frame 8 below and rearward of the first shaft hole 81. The first shaft hole 81 and the second shaft hole 82 are positioned so as to directly face the first shaft hole 71 and the second shaft hole 72, respectively, of the first frame 7 when the first frame 7 and the second frame 8 are arranged opposite each other in the left-right direction. The opening 83 is an opening that penetrating the second frame 8 in the left-right direction. The shape of the opening 83 is approximately the same as the cartridge insertion opening 26 provided in the side plate portion 25 of the right wall 2R, but the size of the opening 83 is slightly larger than the cartridge insertion opening 26. The fixing hole 84 is a round hole penetrating the second frame 8 in the left-right direction. The upper front part of the side plate portion 25 and the fixing hole 84 are fastened together with screws 8D shown in FIG. 3. The second frame 8 is fixed inside the housing 2 so that the opening 83 is located to the left of the cartridge insertion port 26 provided in the side plate portion 25. Therefore, as shown in Figure 3, when the housing 2 is viewed from the right with the ink ribbon cartridge 3 removed from the cartridge mounting portion 27, the second frame 8 is hidden by the side plate portion 25 and cannot be seen.
[0024] In order to accurately position the first shaft hole 71, the second shaft hole 72, the first hole portion 73, and the second hole portion 74 of the first frame 7, and the first shaft hole 81, the second shaft hole 82, the opening 83, and the fixing hole 84 of the second frame 8, the first frame 7 and the second frame 8 are preferably made of metal. In this embodiment, the first frame 7 and the second frame 8 are made of galvanized steel plate.
[0025] The platen roller 4 sandwiches the parallel running portions of the printing medium M and the ink ribbon 39 between itself and the print head 50 (described later). The platen roller 4 is cylindrical. The platen roller 4 is positioned above the parallel running portions of the printing medium M. The platen roller 4 is provided with a through hole 40 extending in the left-right direction. A first support shaft 41 is inserted into the through hole 40. The first support shaft 41 is made of a highly rigid metal. In this embodiment, the first support shaft 41 is made of free-cutting steel. The first support shaft 41 extends in the left-right direction. The left end of the first support shaft 41 is inserted into a first shaft hole 71 of the first frame 7 and is fixed to the first frame 7 by a fixing device 4A. The right end of the first support shaft 41 is inserted into a first shaft hole 81 of the second frame 8 and is fixed to the second frame 8 by a fixing device 4B. The platen roller 4 is rotatably supported by the first support shaft 41. The center of rotation of the platen roller 4 coincides with the center 4C of the first support shaft 41 shown in Fig. 5. The center 4C extends parallel to the left-right direction.
[0026] The printing unit 5 heats the parallel running portion of the ink ribbon 39 with a print head 50 (described later) and transfers the ink to the print medium M. The printing unit 5 is disposed below the parallel running portion of the ink ribbon 39. As shown in FIG. 5 , the printing unit 5 includes a support portion 51, a spring receiving portion 56, and a pair of springs 57.
[0027] The support portion 51 includes a base portion 51A and a pair of protrusions 51B. The base portion 51A is plate-shaped and intersects the up-down direction. The protrusions 51B protrude rearward from the rear end of the base portion 51A. The protrusions 51B have a through hole extending in the left-right direction. A second support shaft 52 is inserted into the through hole of the protrusions 51B. The second support shaft 52 extends in the left-right direction. The left end of the second support shaft 52 is inserted into the second shaft hole 72 of the first frame 7 and is fixed to the first frame 7 by a fixing device 5A. The right end of the second support shaft 52 is inserted into the second shaft hole 82 of the second frame 8 and is fixed to the second frame 8 by a fixing device 5B. The support portion 51 is rotatably supported by the second support shaft 52. The rotation center of the support portion 51 coincides with the center 5C of the second support shaft 52. The center 5C is disposed below and behind the center 4C of the first support shaft 41 that supports the platen roller 4. The center 5C is aligned parallel to the center 4C of the first support shaft 41.
[0028] A pedestal 53 is fixed to the upper surface of the base 51A. A substrate 54 is fixed to the upper surface of the pedestal 53. A print head 50 is provided on the upper surface of the substrate 54. The print head 50 is a line thermal head made up of multiple heating elements, and extends parallel to the center 5C of the second support shaft 52.
[0029] As shown in FIG. 5, the spring receiving portion 56 is disposed below the base portion 51A of the support portion 51. The spring receiving portion 56 receives a pair of springs 57 on its upper surface. The pair of springs 57 are disposed above the spring receiving portion 56 and near both left and right ends. Each of the pair of springs 57 is a compression coil spring. The pair of springs 57 is interposed between the base portion 51A of the support portion 51 and the spring receiving portion 56.
[0030] The lever member 6 includes a pressing portion 6A and an operating portion 6B. The pressing portion 6A is cylindrical and extends in the left-right direction. The pressing portion 6A has a through-hole that extends in the left-right direction. A lever rotation shaft (not shown) is inserted into the through-hole. The lever rotation shaft extends in the left-right direction. Both left and right ends of the lever rotation shaft are fixed to the first frame 7 and the second frame 8. The lever member 6 is rotatably supported by the lever rotation shaft. The rotation center of the lever member 6 coincides with the center 6C of the lever rotation shaft. The operating portion 6B extends downward and forward from the left end of the pressing portion 6A. In response to the user operating the operating portion 6B, the pressing portion 6A presses the spring receiving portion 56 from below, compressing the pair of springs 57. The pair of springs 57 press the support portion 51 with the elastic force generated by compression, and the print head 50 of the printing unit 5 is pressed toward the platen roller 4.
[0031] The connecting member 9 is a member that connects the lower part of the first frame 7 and the lower part of the second frame 8 in the left-right direction. The connecting member 9 is plate-shaped and includes a first curved portion 91, a second curved portion 92, a right side plate portion 93, and a left side plate portion 94. The first curved portion 91 extends in the left-right direction and is a portion that is recessed downward in a semi-cylindrical shape in a side view, forming the rear part of the connecting member 9. The second curved portion 92 is provided in front of and above the first curved portion 91, extends in the left-right direction like the first curved portion 91, and is a portion that is recessed downward in a semi-cylindrical shape in a side view. The shape of the first curved portion 91 is slightly larger than the shape of the lower part of the first case 31 of the case 30 of the ink ribbon cartridge 3. The shape of the second curved portion 92 is slightly larger than the shape of the lower part of the second case 32 of the case 30 of the ink ribbon cartridge 3. The right side plate portion 93 extends slightly downward from the right ends of the first curved portion 91 and the second curved portion 92, and forms the right side part of the connecting member 9. The left side plate portion 94 extends slightly downward from the left ends of the first curved portion 91 and the second curved portion 92, and constitutes the left side surface portion of the connecting member 9. A screw hole 93A into which a screw 9A engages is provided in approximately the center of the right side plate portion 93, and the second frame 8 and the connecting member 9 are connected by screwing the screw hole 93A into the second frame 8. Similarly, the left side plate portion 94 and the first frame 7 are connected to the first frame 7 and the connecting member 9. The cartridge mounting portion 27 is an area defined by the first frame 7, the second frame 8, and the connecting member 9.
[0032] The rigidity of the connecting member 9 is lower than the rigidity of the first frame 7 and the second frame 8, which are made of stainless steel. In this embodiment, the connecting member 9 is made of synthetic resin. When the first support shaft 41 is fixed to the first frame 7 and the second frame 8 at the first shaft holes 71 and 81 and the second support shaft 52 is fixed to the first frame 7 and the second frame 8 at the second shaft holes 72 and 82, the centers 4C and 5C are aligned parallel to each other. This ensures that the direction in which the parallel-running portions of the printing medium M are transported by the platen roller 4 is perpendicular to the extension direction of the print head 50, thereby maintaining printing accuracy for the printing medium M. Suppose that the first shaft hole 81 and the second shaft hole 82 of the second frame 8 are not directly aligned with the first shaft hole 71 and the second shaft hole 72 of the first frame 7, but are positioned offset from each other. Even in this case, the connecting member 9, which has lower rigidity than the first frame 7 and the second frame 8, elastically deforms, maintaining the parallel alignment of the center 4C of the first support shaft 41 and the center 5C of the second support shaft 52.
[0033] The structure of the ink ribbon cartridge 3 will be described with reference to Figures 6 to 8. Note that the ink ribbon 39 is not shown in Figures 7 and 8.
[0034] As shown in FIG. 6 , the case 30 includes a first case 31 and a second case 32. The first case 31 is cylindrical and extends in the left-right direction, constituting the rear of the case 30. The first case 31 covers a first spool 370 (described later with reference to FIGS. 7 and 8 ) and accommodates an ink ribbon 39 prior to use in a printing operation. The first case 31 includes a first main body 311, a first end 314, a first opening 312, a first rib 313, a first gear 316, a first gear cover 315, and a first protrusion 317. The first main body 311 constitutes the side of the cylindrical first case 31. The upper rear end of the first main body 311 is cut out in the left-right direction. The first end 314 corresponds to the bottom surface on the left side of the cylindrical first case 31 and constitutes the left end of the first case 31. The first rib 313 is a plate-like portion extending in the left-right direction and protruding obliquely upward and rearward from the upper front end of the first main body 311. The first opening 312 is an opening formed in the upper rear portion of the first case 31, surrounded by the upper end of the notch in the first main body 311, the upper rear portion of the first end 314, and the upper end of the first rib 313. The first opening 312 communicates with the first storage section 31A. The first storage section 31A is an internal area of the first case 31 that is defined in a substantially cylindrical shape by the inner wall of the first main body 311. The ink ribbon 39 stored in the first storage section 31A is unreeled from the first opening 312 and stretched across the first rib 313. The upper end of the first rib 313, with which the ink ribbon 39 abuts, is rounded.
[0035] First gear 316 is a gear provided in the center of first end portion 314. First gear cover 315 is a cover member that covers first gear 316 from the left. A cutout 315A is provided in the diagonally upper front portion of first gear cover 315, and a part of the gear of first gear 316 is exposed from cutout 315A. A through-hole 315B that penetrates the left surface of first gear cover 315 is provided in the center of first gear cover 315. First protrusion 317 is a shaft-shaped protrusion that protrudes leftward from the upper portion of first end portion 314.
[0036] A hole 318, which is a round hole that penetrates first end 314, is provided in the center of first end 314. First gear 316 has shaft 316A that extends rightward from the right face of the gear. The diameter of hole 318 is larger than the outer diameter of shaft 316A. A torsion spring 316B is inserted into the right end of shaft 316A.
[0037] The first housing section 31A accommodates a first spool 370. The first spool 370 includes a shaft portion 360, a gear connection portion 340, and a flange portion 350. The shaft portion 360 is an axial portion extending in the direction in which the first main body 311 of the first case 31 extends. The shaft portion 360 is provided with a through-hole 361 extending along an axis 37C of the shaft portion 360. Hereinafter, the direction in which the axis 37C extends when the first spool 370 is accommodated in the first housing section 31A is referred to as the "first direction." In this embodiment, the first direction coincides with the left-right direction. One end of the ink ribbon 39 prior to use in a printing operation is fixed to the shaft portion 360, and the ink ribbon 39 is wound around the fixed end. The first end portion 314 is an end portion of the first main body 311 covering the first spool 370 in the first direction. The first protrusion 317 protrudes from the first end 314 in a first direction.
[0038] The gear connection portion 340 constitutes an end portion of the first case 31 that is disposed toward the first end portion 314 when the first spool 370 is accommodated in the first accommodation portion 31A. The gear connection portion 340 is a member that fits onto the shaft portion 316A and the torsion spring 316B of the first gear 316 and transmits rotation of the first gear 316 to the shaft portion 360. The gear connection portion 340 includes an insertion shaft portion 341, a circular flange 342, and a first spool rib 343. The insertion shaft portion 341 is a shaft-shaped portion that extends in the first direction. The circular flange 342 constitutes the left end portion of the gear connection portion 340 and is a plate-shaped portion that is circular in side view and extends radially outward from the left end of the insertion shaft portion 341. The outer diameter of the circular flange 342 is approximately the same as the outer diameter of the shaft portion 360. The outer diameter of the insertion shaft portion 341 is approximately the same as the inner diameter of the through-hole 361 of the shaft portion 360. A step portion 344 is provided at the left end of the insertion shaft portion 341, protruding outward from the outer surface of the insertion shaft portion 341 by a predetermined width. The shaft portion 360 has a notch portion 362, which is a portion of the left end cut out toward the right with approximately the same width as the step portion 344. The insertion shaft portion 341 is inserted into the through-hole 361 from the left end of the shaft portion 360. The step portion 344 fits into the notch portion 362, thereby fixing the gear connection portion 340 to the shaft portion 360 in a rotation-preventing state. The first spool rib 343 is a cylindrical rib that protrudes in a first direction from the circular flange 342 and is centered on the axis 37C. The outer diameter of the first spool rib 343 is approximately the same as the outer diameter of the insertion shaft portion 341.
[0039] The inner edge of the first spool rib 343 communicates with the inner edge of the insertion shaft portion 341, forming a recess 346 recessed rightward from the left end of the first spool rib 343. The recess 346 is large enough to accommodate the shaft portion 316A of the first gear 316 fitted with the torsion spring 316B. The right end of the recess 346 is provided with an engagement portion 349 shown in FIG. 9, which engages with the right arm portion of the torsion spring 316B. The shaft portion 316A of the first gear 316 is provided with an engagement portion (not shown) which engages with the left arm portion of the torsion spring 316B. The center of the first gear 316 is provided with a recess 316C recessed rightward.
[0040] The end of the first case 31 opposite the first end 314 in the first direction and connected to the plate-shaped portion 301 is referred to as the first other end of the first case 31. The flange portion 350 constitutes the end that is disposed toward the first other end of the first case 31 when the first spool 370 is housed in the first housing portion 31A. The flange portion 350 includes an insertion shaft portion 351, a first flange portion 352, and a cylindrical portion 353. The insertion shaft portion 351 is a shaft-shaped portion that extends in the first direction. The outer diameter of the insertion shaft portion 351 is approximately the same as the inner diameter of the through-hole 361 of the shaft portion 360. The insertion shaft portion 351 is inserted into the through-hole 361 from the right end of the shaft portion 360. The first flange portion 352 is a plate-shaped portion that is circular in side view and extends radially outward from the right end of the insertion shaft portion 351. The outer diameter of the first flange portion 352 corresponds to the inner diameter of the first main body 311, i.e., the diameter of the cylindrical first housing portion 31A. In this embodiment, the outer diameter of the first flange portion 352 is slightly smaller than the inner diameter of the first main body 311, and the difference between the outer diameter of the first flange portion 352 and the inner diameter of the first main body 311 is approximately 0.1 millimeters. This positions the first spool 370 relative to the first case 31 so that the axis 37C of the first spool 370 housed in the first housing portion 31A is aligned with the center of the first main body 311. Furthermore, the first spool 370 is arranged in the first housing portion 31A so that it can rotate about the axis 37C. The cylindrical portion 353 is a cylindrical member that protrudes rightward from the right surface of the first flange portion 352.
[0041] The second case 32 has substantially the same shape as the first case 31 and constitutes the front portion of the case 30. The second case 32 covers a second spool 380 (described later with reference to FIGS. 7 and 8 ) and accommodates the ink ribbon 39 after use in a printing operation. The second case 32 includes a second main body 321, a second end portion 324, a second opening 322, a second rib 323, a second gear 326, a second gear cover 325, and a second protrusion 327. The second main body 321 constitutes the side portion of the cylindrical second case 32. The upper rear portion of the second main body 321 is cut out in the left-right direction. The second end portion 324 corresponds to the bottom surface on the left side of the cylindrical second case 32 and constitutes the left end portion of the second case 32. The second rib 323 is a plate-like portion extending in the left-right direction and protruding upward from the upper rear portion of the second main body 321. The second opening 322 is an opening formed in the upper rear portion of the second case 32, surrounded by the upper end of the notch in the second main body 321, the upper rear portion of the second end 324, and the upper end of the second rib 323. The second opening 322 communicates with the second storage section 32A. The second storage section 32A is an internal area of the second case 32 that is defined in a substantially cylindrical shape by the inner wall of the second main body 321. After being used in a printing operation, the ink ribbon 39 abuts against the second rib 323 and is then stored inside the second storage section 32A through the second opening 322. The upper end of the second rib 323, with which the ink ribbon 39 abuts, is rounded.
[0042] Second gear 326 is a gear provided in the center of second end 324. Second gear cover 325 is a cover member that covers second gear 326 from the left. A notch 325A is provided in the front of second gear cover 325, and a part of the gear of second gear 326 is exposed through notch 325A. A through-hole 325B that penetrates the left surface of second gear cover 325 is provided in the center of second gear cover 325. Second protrusion 327 is a shaft-shaped protrusion that protrudes leftward from the rear of second end 324.
[0043] A hole 328, which is a round hole that penetrates second end 324, is provided in the center of second end 324. Second gear 326 has shaft 326A extending rightward from the right surface of the gear. The diameter of hole 328 is larger than the outer diameter of shaft 326A. A torsion spring 326B is inserted into the right end of shaft 326A.
[0044] The second housing 32A accommodates a second spool 380. The second spool 380 includes a shaft 381, a second flange 382, and a gear connection portion 383. The shaft 381 is an axial portion extending in the same direction as the second body 321 of the second case 32. Hereinafter, the direction in which the axis 38C of the shaft 381 extends when the second spool 380 is accommodated in the second housing 32A is referred to as the "second direction." In this embodiment, the second direction coincides with the left-right direction, and the first and second directions are parallel to each other. One end of the ink ribbon 39 used in a printing operation is fixed to the shaft 381, and the ink ribbon 39 is wound around the fixed end. The second end 324 is an end on one side of the second body 321 that covers the second spool 380 in the second direction. The second protrusion 327 protrudes from the second end 324 along the second direction.
[0045] The gear connection portion 383 is an end portion that is disposed toward the second end portion 324 of the second case 32 when the second spool 380 is accommodated in the second accommodation portion 32A. The gear connection portion 383 is a plate-shaped portion that is circular in side view and extends radially outward from the left end of the shaft portion 381. The outer diameter of the gear connection portion 383 is approximately the same as the outer diameter of the second flange portion 382 (described later) and corresponds to the inner diameter of the second main body 321. The second spool rib 385 is a cylindrical rib that protrudes leftward from the gear connection portion 383 along the second direction and is centered on the axis 38C. The inner edge of the second spool rib 385 communicates with the inside of the shaft portion 381 and forms a recess 386 that recesses rightward from the left end of the second spool rib 385. The recess 386 is sized to accommodate the shaft portion 326A of the second gear 326 with the torsion spring 326B fitted thereon. 9 is provided at the right end of recess 386. An engaging portion (not shown) is provided at shaft 326A of second gear 326. An engaging portion (not shown) is provided at the right end of recess 386. A recess 326C is provided at the center of second gear 326, recessed to the right.
[0046] The end of the second case 32 opposite the second end 324 in the second direction and connected to the plate-shaped portion 301 is referred to as the second other end of the second case 32. The second flange portion 382 is the end that faces the second other end of the second case 32 when the second spool 380 is housed in the second housing portion 32A. The second flange portion 382 is a plate-shaped portion that is circular in side view and extends radially outward from the right end of the shaft portion 381. The outer diameter of the second flange portion 382 corresponds to the inner diameter of the second main body 321, i.e., the diameter of the cylindrical second housing portion 32A. In this embodiment, the outer diameter of the second flange portion 382 is slightly smaller than the inner diameter of the second main body 321, and the difference between the outer diameter of the second flange portion 382 and the inner diameter of the second main body 321 is approximately 0.1 millimeters. As a result, the second spool 380 is positioned relative to the second case 32 so that the axis 38C of the second spool 380 accommodated in the second accommodating portion 32A is positioned at the center of the second main body 321. Furthermore, in the second accommodating portion 32A, the second spool 380 is arranged in a state where it can rotate about the axis 38C. The cylindrical portion 388 is a cylindrical member that protrudes rightward from the right surface of the second flange portion 382.
[0047] 7 and 8, a plate-shaped portion 301 that is substantially parallelogram-shaped in a side view and extends in the up-down direction is provided at the right end of the case 30. The right end of the first main body 311 is connected to the rear lower portion of the plate-shaped portion 301, and the right end of the second main body 321 is connected to the front upper portion of the plate-shaped portion 301. The plate-shaped portion 301 has openings 303 and 304 that have the same shapes as the first main body 311 and the second main body 321 and penetrate the plate-shaped portion 301 in the left-right direction, corresponding to the positions where the first main body 311 and the second main body 321 are connected, respectively. The opening 303 communicates with the first storage portion 31A. The opening 304 communicates with the second storage portion 32A.
[0048] A first cap 331 and a second cap 332 are provided on the left surface of the case cover 33. The first cap 331 is cylindrical and protrudes leftward from the rear of the left surface of the case cover 33 along the axis 37C, opening to the left. The outer diameter of the first cap 331 is approximately the same as the inner diameter of the opening 303 and the first accommodating section 31A. A first support shaft 335 and a cylindrical section 333 are provided inside the first cap 331. The first support shaft 335 protrudes leftward from the center of the bottom of the inside of the first cap 331 along the axis 37C. The cylindrical section 333 is a cylindrical member that protrudes leftward from the outside of the first support shaft 335 along the axis 37C. The second cap 332 is approximately cylindrical and protrudes leftward from the front of the left surface of the case cover 33 along the axis 37C, opening to the left. The outer diameter of the second cap 332 is approximately the same as the inner diameter of the opening 304 and the second accommodating portion 32A. A second support shaft 336 and a cylindrical portion 334 are provided inside the second cap 332. The second support shaft 336 protrudes leftward along the axis 38C from the center of the bottom of the inside of the second cap 332. The cylindrical portion 334 is a cylindrical member that protrudes leftward along the axis 38C outside the second support shaft 336. Coil springs 33A and 33B are inserted into the first support shaft 335 and the second support shaft 336, respectively.
[0049] The case cover 33 is attached to the case 30, which houses the first spool 370 in the first housing portion 31A and the second spool 380 in the second housing portion 32A. The first cap 331 is inserted into the opening 303 of the first main body 311, which houses the first spool 370 in the first housing portion 31A. The cylindrical portion 353 of the first flange portion 352 is inserted between the cylindrical portion 333 of the first cap 331 and the first support shaft 335, and the coil spring 33A is disposed inside the cylindrical portion 353 in a slightly compressed state. The right end of the coil spring 33A abuts against the inside of the cylindrical portion 333 and presses the inside of the cylindrical portion 353 leftward. The rotational load acting on the first spool 370 due to the coil spring 33A pressing the inside of the cylindrical portion 353 leftward is smaller than the torque acting on the first spool 370 due to the rotation of the first gear 316. Therefore, the first flange portion 352 is rotatably supported relative to the first cap 331 via the coil spring 33A.
[0050] The second cap 332 is inserted into the opening 304 of the second main body 321, which accommodates the second spool 380 in the second accommodation portion 32A. The cylindrical portion 388 of the second flange portion 382 is inserted between the cylindrical portion 334 of the second cap 332 and the second support shaft 336, and the coil spring 33B is disposed inside the cylindrical portion 388 in a slightly compressed state. The right end of the coil spring 33B abuts against the inside of the cylindrical portion 334, and the coil spring 33B presses the inside of the cylindrical portion 388 leftward. The rotational load acting on the second spool 380 by the coil spring 33B pressing the inside of the cylindrical portion 388 leftward is smaller than the torque acting on the second spool 380 due to the rotation of the second gear 326. Therefore, the second flange portion 382 is rotatably supported by the second cap 332 via the coil spring 33B.
[0051] Referring to FIG. 9 , the structures of the first end 314 of the first case 31 and the second end 324 of the second case 32 will be described in detail. As shown in area W1 of FIG. 9 , the first end 314 includes a cylindrical first case rib 319 that protrudes in a first direction from the right surface of the first end 314 toward the inside of the first main body 311. The inner edge of the first case rib 319 communicates with the inner edge of the hole 318. The outer diameter of the first case rib 319 is approximately the same as the inner diameter of the first spool rib 343. Therefore, when the first spool 370 is accommodated in the first housing portion 31A and the case cover 33 is attached to the case 30, the first spool rib 343 fits onto the outside of the first case rib 319. As a result, the first spool 370 is positioned relative to the first case 31 so that the axis 37C of the first spool 370 accommodated in the first housing portion 31A is aligned with the center of the first main body 311. Since the first spool rib 343 is slidably fitted to the first case rib 319, the axis 37C is positioned at the center of the first main body 311 even when the first spool 370 rotates around the axis 37C.
[0052] As shown in area W2 of FIG. 9 , the second end 324 includes a cylindrical second case rib 329 that protrudes in the second direction from the right surface of the second end 324 toward the inside of the second main body 321. The inner edge of the second case rib 329 communicates with the inner edge of the hole 328. The outer diameter of the second case rib 329 is approximately the same as the inner diameter of the second spool rib 385. Therefore, when the second spool 380 is housed in the second housing portion 32A and the case cover 33 is attached to the case 30, the second spool rib 385 fits onto the outside of the second case rib 329. This positions the second spool 380 relative to the second case 32 so that the axis 38C of the second spool 380 housed in the second housing portion 32A is positioned at the center of the second main body 321. Since the second spool rib 385 is slidably fitted to the second case rib 329, the axis 38C is positioned at the center of the second main body 321 even when the second spool 380 rotates around the axis 38C.
[0053] 10, the arrangement of the first protrusion 317 at the first end 314 of the first case 31 and the arrangement of the second protrusion 327 at the second end 324 of the second case 32 will be described in a left side view of the ink ribbon cartridge 3 seen in a direction parallel to the first and second directions. When the ink ribbon cartridge 3 is attached to the cartridge attachment portion 27 of the housing 2, the first protrusion 317 fits into the first hole 73 in the facing surface 7A of the first frame 7 shown in FIGS. 3 to 5. The thickness of the first protrusion 317 is approximately the same as the diameter of the first hole 73 in the facing surface 7A of the first frame 7. In the left side view, a length M1 between the tip of the first rib 313 and the first protrusion 317 is shorter than a length L1 between the tip of the first rib 313 and the axis 37C.
[0054] When the ink ribbon cartridge 3 is mounted in the cartridge mounting portion 27 of the housing 2, the second protrusion 327 fits into the second hole 74 in the opposing surface 7A of the first frame 7. The thickness of the second protrusion 327 is approximately the same as the diameter of the second hole 74 in the opposing surface 7A of the first frame 7. Similarly, when viewed from the left side, the length M2 between the tip of the second rib 323 and the second protrusion 327 is shorter than the length L2 between the tip of the second rib 323 and the axis 38C.
[0055] The following describes a method for installing the ink ribbon cartridge 3 in the cartridge mounting section 27 and the printing operation of the printing device 1. To ensure the print quality of the printing device 1, the ink ribbon cartridge 3 must be positioned so as not to shift relative to the housing 2 during printing operations, and the transported ink ribbon 39 must be stably positioned inside the housing 2. The user installs the ink ribbon cartridge 3 in the cartridge mounting section 27 by inserting the first end 314 of the first case 31 and the second end 324 of the second case 32 into the cartridge insertion opening 26 in the right wall 2R of the housing 2. In the ink ribbon cartridge 3, the ink ribbon 39 has one end fixed to the first spool 370 and the other end fixed to the second spool 380, and is stretched over the first spool 370, first rib 313, second rib 323, and second spool 380 in that order. By providing the first rib 313 and the second rib 323, tension is applied to the ink ribbon 39 that is stretched between the first spool 370 and the first rib 313, the first rib 313 and the second rib 323, and the second rib 323 and the second spool 380. This allows the ink ribbon 39 to be transported smoothly. The ink ribbon 39 that is stretched between the first rib 313 and the second rib 323 is a parallel-running portion of the ink ribbon 39, and is housed inside the housing 2 through the opening connecting portion 263 of the cartridge insertion opening 26, and is disposed between the platen roller 4 and the print head 50.
[0056] When the first end 314 of the first case 31 approaches the first frame 7, the first shaft portion 77 of the facing surface 7A is inserted from the left into the recessed portion 316C of the first gear 316 through the through hole 315B of the first gear cover 315. When the second end 324 of the second case 32 approaches the first frame 7, the second shaft portion 78 of the facing surface 7A is inserted from the left into the recessed portion 326C of the second gear 326 through the through hole 325B of the second gear cover 325. This guides the first end 314 of the first case 31 and the second end 324 of the second case 32 so that they face each other substantially perpendicularly to the facing surface 7A. When the user pushes the ink ribbon cartridge 3 further leftward, the first convex portion 317 of the first end 314 and the second convex portion 327 of the second end 324 fit into the first hole 73 and the second hole 74 of the facing surface 7A, respectively. Therefore, with the first end 314 of the first case 31 and the second end 324 of the second case 32 positioned based on the positions of the first hole 73 and the second hole 74, the first end 314 of the first case 31 and the second end 324 of the second case 32 are fixed to the first frame 7. The opening 83 of the second frame 8 is larger than the cartridge insertion opening 26. Therefore, when the ink ribbon cartridge 3 is inserted into or removed from the cartridge mounting section 27 via the cartridge insertion opening 26, the ink ribbon cartridge 3 does not come into contact with the opening 83, preventing damage to the ink ribbon cartridge 3.
[0057] The length of the first body 311 in the first direction and the length of the second body 321 in the second direction are each approximately the same as the distance between the first frame 7 and the second frame 8. Therefore, a portion of the first body 311 adjacent to the plate-shaped portion 301 fits into the first opening 261 of the cartridge insertion opening 26, and a portion of the second body 321 adjacent to the plate-shaped portion 301 fits into the second opening 262 of the cartridge insertion opening 26. That is, the first other end of the first case 31 is supported in a state where it is positioned by the first opening 261, and the second other end of the second case 32 is supported in a state where it is positioned by the second opening 262. In this state, the first gear 75 provided on the opposing surface 7A meshes with the first gear 316 exposed from the cutout portion 315A of the first gear cover 315. The second gear 76 provided on the opposing surface 7A meshes with the second gear 326 exposed from the cutout portion 325A of the second gear cover 325. The ink ribbon 39 in the parallel running portion stretched between the first rib 313 and the second rib 323 is disposed between the platen roller 4 and the print head 50 .
[0058] The user operates the operating portion 6B of the lever member 6 to clamp the parallel running portions of the ink ribbon 39 and the printing medium M between the platen roller 4 and the support portion 51. At this time, the platen roller 4 contacts the printing medium M from above, and the print head 50 contacts the ink ribbon 39 from below. Additionally, the elastic force of the pair of springs 57 presses the print head 50, which is supported by the support portion 51, toward the platen roller 4. As described above, the center 4C of the first support shaft 41 that supports the platen roller 4 and the center 5C of the second support shaft 52 that supports the printing unit 5 are kept aligned in parallel.
[0059] The user performs an input operation on the switch 21 to start the printing operation. The printing device 1 starts the printing operation. A control unit (not shown) of the printing device 1 controls the drive unit to transport the printing medium M. The control unit also drives the motor 79. The first gear 75 and the second gear 76 rotate in response to the driving of the motor 79. In this embodiment, when the platen roller 4 rotates forward, the control unit rotates the motor 79 in the forward direction, and the second gear 76 rotates in response to this. The second gear 326 rotates in response to the rotation of the second gear 76. The second spool 380 rotates with a constant torque due to the biasing force of the torsion spring 326B generated in response to the rotation of the second gear 326. As a result, the ink ribbon 39 is unwound from the first spool 370, transported between the first rib 313 and the second rib 323, and then wound onto the second spool 380. When the platen roller 4 rotates in the reverse direction, the control unit reverses the motor 79, causing the first gear 75 to rotate accordingly. The rotation of the first gear 75 causes the first gear 316 to rotate. The biasing force of the torsion spring 316B generated in response to the rotation of the first gear 316 causes the first spool 370 to rotate with a constant torque. As a result, the ink ribbon 39 is unwound from the second spool 380, transported between the second rib 323 and the first rib 313, and then wound onto the first spool 370.
[0060] When the ink ribbon 39 is fed, a load is intermittently applied to the first rib 313 toward the axis 37C of the first spool 370 in accordance with the tension in the ink ribbon 39. A load is also intermittently applied to the second rib 323 toward the axis 38C of the second spool 380 in accordance with the tension in the ink ribbon 39. As described above, the length M1 is shorter than the length L1. Furthermore, the length M2 is shorter than the length L2. That is, the first protrusion 317 is supported by the first hole 73 of the first frame 7 at a position closer to the first rib 313 than the axis 37C when viewed from the first direction. The second protrusion 327 is supported by the second hole 74 of the first frame 7 at a position closer to the second rib 323 than the axis 38C when viewed from the second direction. Therefore, even if loads are intermittently applied to the first rib 313 and the second rib 323 due to the transport of the ink ribbon 39, the first end 314 of the first case 31 and the second end 324 of the second case 32 are stably supported by the first frame 7.
[0061] At the first end 314 of the first case 31, the first spool rib 343 of the first spool 370 fits onto the outside of the first case rib 319. At the second end 324 of the second case 32, the second spool rib 385 of the second spool 380 fits onto the outside of the second case rib 329. At the first other end of the first case 31, the outer diameter of the first flange portion 352 of the first spool 370 corresponds to the diameter of the first housing portion 31A. At the second other end of the second case 32, the outer diameter of the second flange portion 382 of the second spool 380 corresponds to the diameter of the second housing portion 32A. Therefore, the position of the first spool 370, which rotates about the axis 37C, within the first housing portion 31A is stable. The position of the second spool 380, which rotates about the axis 38C, within the second housing portion 32A is stable. The control unit heats the print head 50 in accordance with the transport of the print medium M and the ink ribbon 39. This heats the ink ribbon 39 and transfers ink to the print medium M. The print medium M to which the ink has been transferred is discharged from the discharge unit 22.
[0062] As described above, when the ink ribbon cartridge 3 is mounted in the cartridge mounting portion 27 of the housing 2, the first protrusion 317 provided on the first end 314 of the first case 31 of the ink ribbon cartridge 3 engages with the first hole 73 in the opposing surface 7A of the first frame 7. In addition, the second protrusion 327 provided on the second end 324 of the second case 32 engages with the second hole 74 in the opposing surface 7A. As a result, the first end 314 of the first case 31 and the second end 324 of the second case 32 are fixed to the first frame 7 in a state where they are positioned based on the positions of the first hole 73 and the second hole 74. Therefore, the ink ribbon cartridge 3 can improve the positioning accuracy of the ink ribbon cartridge 3 inside the cartridge mounting portion 27 of the housing 2 without increasing the number of parts of the printing device 1.
[0063] When viewed from the first direction, the length M1 between the tip of the first rib 313 and the first convex portion 317 is shorter than the length L1 between the tip of the first rib 313 and the axis 37C. When viewed from the second direction, the length M2 between the tip of the second rib 323 and the second convex portion 327 is shorter than the length L2 between the tip of the second rib 323 and the axis 38C. That is, when viewed from the first direction, the first convex portion 317 positions the first end portion 314 in the first hole portion 73 of the first frame 7 at a position closer to the first rib 313 than the axis 37C. When viewed from the second direction, the second convex portion 327 positions the second end portion 324 in the second hole portion 74 of the first frame 7 at a position closer to the second rib 323 than the axis 38C. Therefore, even if a load is intermittently applied to the first rib 313 and the second rib 323 due to the transport of the ink ribbon 39, the first end 314 and the second end 324 are stably supported by the first frame 7.
[0064] With the first protrusion 317 fitted into the first hole 73 and the first end 314 of the first case 31 positioned relative to the first hole 73 of the first frame 7, the first other end of the first case 31 fits into the first opening 261 of the cartridge insertion slot 26 of the side plate 25. With the second protrusion 327 fitted into the second hole 74 and the second end 324 of the second case 32 positioned relative to the second hole 74 of the first frame 7, the second other end of the second case 32 fits into the second opening 262 of the cartridge insertion slot 26. That is, with the ink ribbon cartridge 3 attached to the cartridge attachment section 27, both the end of the first case 31 and the second case 32 facing the first frame 7 and the end of the second case 32 facing the side plate 25 are positioned relative to the printing device 1. Therefore, even if the ink ribbon 39 of the ink ribbon cartridge 3 becomes wider, the position of the ink ribbon 39 relative to the printing device 1 can be stabilized.
[0065] Because the outer diameter of the first flange portion 352 of the first spool 370 corresponds to the inner diameter of the first main body 311 of the first case 31, the position of the axis 37C of the first spool 370 relative to the first case 31 is stable. Similarly, for the second spool 380, the outer diameter of the second flange portion 382 corresponds to the inner diameter of the second main body 321 of the second case 32, so the position of the axis 38C of the second spool 380 relative to the second case 32 is stable. Therefore, even when the first spool 370 and the second spool 380 perform an operation of winding up the ink ribbon 39, the first spool 370 and the second spool 380 are prevented from being misaligned with respect to the ink ribbon cartridge 3.
[0066] The first spool rib 343 protrudes in the first direction from a circular flange 342 provided on the end of the first spool 370 that is disposed toward the first end 314 of the first case 31. The first case rib 319 protrudes in the first direction from the right surface of the first end 314 toward the inside of the first main body 311. The first spool rib 343 fits onto the outside of the first case rib 319, thereby positioning the first spool 370 relative to the first case 31 so that the axis 37C of the first spool 370 housed in the first housing portion 31A is positioned at the center of the first main body 311. The second spool rib 385 protrudes in the second direction from a gear connection portion 383 provided on the end of the second spool 380 that is disposed toward the second end 324 of the second case 32. The second case rib 329 protrudes in the second direction from the right surface of the second end 324 toward the inside of the second main body 321. By fitting the second spool rib 385 to the outside of the second case rib 329, the second spool 380 is positioned relative to the second case 32 so that the axis 38C of the second spool 380 housed in the second housing portion 32A is positioned at the center of the second main body 321. Therefore, the positions of the first spool 370 and the second spool 380 inside the ink ribbon cartridge 3 are stable even during printing operations.
[0067] Because the first frame 7 is made of metal, the first hole portion 73 and the second hole portion 74 are precisely provided on the opposing surface 7A of the first frame 7. Therefore, the ink ribbon cartridge 3 is positioned with respect to the cartridge mounting portion 27 with precision.
[0068] The first support shaft 41 that supports the platen roller 4 and the second support shaft 52 that supports the printing unit 5 are arranged parallel to each other by fitting into first shaft holes 71, 81 and second shaft holes 72, 82 provided in the first frame 7 and second frame 8, respectively. The rigidity of the connecting member 9 that connects the lower part of the first frame 7 to the lower part of the second frame 8 is lower than the rigidity of the first frame 7 and second frame 8. Even if the first shaft holes 81 and second shaft holes 82 of the second frame 8 are not directly aligned with the first shaft holes 71 and second shaft holes 72 of the first frame 7 and are positioned in an offset position, the connecting member 9 elastically deforms, thereby maintaining the first support shaft 41 and second support shaft 52 aligned parallel to each other. Therefore, the printing device 1 can accurately maintain the positional relationship between the platen roller 4 and the print head 50 inside the housing 2, ensuring printing quality.
[0069] In the above embodiment, the ink ribbon cartridge 3 is an example of an "ink ribbon cartridge" of the present invention. The ink ribbon 39 is an example of an "ink ribbon" of the present invention. The first case 31 is an example of a "first case" of the present invention. The first rib 313 is an example of a "first rib" of the present invention. The first end 314 is an example of a "first end" of the present invention. The first convex portion 317 is an example of a "first convex portion" of the present invention. The first case rib 319 is an example of a "first case rib" of the present invention. The second case 32 is an example of a "second case" of the present invention. The second rib 323 is an example of a "second rib" of the present invention. The second end 324 is an example of a "second end" of the present invention. The second convex portion 327 is an example of a "second convex portion" of the present invention. The second case rib 329 is an example of a "second case rib" of the present invention. The first spool 370 is an example of a "first spool" of the present invention. The first flange portion 352 is an example of a "first flange portion" of the present invention. The first spool rib 343 is an example of a "first spool rib" of the present invention. The second spool 380 is an example of a "second spool" of the present invention. The second flange portion 382 is an example of a "second flange portion" of the present invention. The second spool rib 385 is an example of a "second spool rib" of the present invention. The printing device 1 is an example of a "printing device" of the present invention. The side plate portion 25 is an example of a "side plate portion" of the present invention. The first opening 261 is an example of a "first opening" of the present invention. The second opening 262 is an example of a "second opening" of the present invention. The first frame 7 is an example of a "first frame" of the present invention. The first hole portion 73 is an example of a "first hole portion" of the present invention. The second hole portion 74 is an example of a "second hole portion" of the present invention. The second frame 8 is an example of a "second frame" of the present invention. The connecting member 9 is an example of a "connecting member" of the present invention. The platen roller 4 is an example of a "platen roller" of the present invention. The first support shaft 41 is an example of a "first support shaft" of the present invention. The print head 50 is an example of a "print head" of the present invention. The second support shaft 52 is an example of a "second support shaft" of the present invention. The first shaft holes 71, 81 are an example of a "third hole portion" of the present invention. The second shaft holes 72, 82 are an example of a "fourth hole portion" of the present invention.
[0070] The present invention is not limited to the above embodiment, and various modifications are possible within the scope of the present invention. For example, the first direction and the second direction do not have to be parallel. Therefore, the axis 37C and the axis 38C may extend in directions that intersect with each other.
[0071] In the above embodiment, the first spool 370 is configured by combining three members, namely, the shaft portion 360, the flange portion 350, and the gear connection portion 340. The first spool 370 may be configured by two or four or more members, or may be configured by a single member. Furthermore, the second spool 380 may be configured by combining a plurality of members like the first spool 370.
[0072] It is sufficient that the outer diameter of a first flange portion 352 provided at least on an end of the first spool 370 that is disposed in the first housing portion 31A toward the first other end of the first case 31 corresponds to the inner diameter of the first main body 311. It is sufficient that the outer diameter of a second flange portion 382 provided at least on an end of the second spool 380 that is disposed in the second housing portion 32A toward the second other end of the second case 32 corresponds to the inner diameter of the second main body 321. Therefore, the outer diameter of a circular flange 342 constituting an end of the first spool 370 that is disposed toward the first end 314 in the first housing portion 31A may correspond to the inner diameter of the first main body 311, similar to the first flange portion 352. It is also sufficient that the outer diameter of a gear connection portion 383 constituting an end of the second spool 380 that is disposed toward the second end 324 in the second housing portion 32A does not correspond to the inner diameter of the second main body 321, but may be smaller than the inner diameter of the second main body 321.
[0073] The outer diameter of the first flange portion 352 corresponds to the inner diameter of the first main body 311, and may be large enough to allow the first spool 370 to rotate smoothly about the axis 37C while housed in the first housing portion 31A. Therefore, the outer diameter of the first flange portion 352 and the inner diameter of the first main body 311 may be substantially the same, so that the outer edge of the first flange portion 352 slides against the inner wall of the first main body 311 when the first spool 370 rotates about the axis 37C. Similarly, the outer diameter of the second flange portion 382 may be large enough to allow the second spool 380 to rotate smoothly about the axis 38C while housed in the second housing portion 32A, relative to the inner diameter of the second main body 321. Therefore, the outer diameter of the second flange portion 382 and the inner diameter of the second main body 321 may be substantially the same, so that the outer edge of the second flange portion 382 slides against the inner wall of the second main body 321 when the second spool 380 rotates about the axis 38C.
[0074] The first flange portion 352 does not have to be a perfect circle when viewed from the first direction. For example, the first flange portion 352 may have a shape in which a portion of a circle is cut out when viewed from the first direction. As long as the outer diameter of the first flange portion 352 determined by the uncut portion of the first flange portion 352 corresponds to the inner diameter of the first main body 311, the axis 37C of the first spool 370 is stably positioned relative to the first case 31. The same applies to the second flange portion 382. The first housing portion 31A defined by the inner wall of the first main body 311 does not have to be a perfect circle when viewed from the first direction. For example, a portion of the first main body 311 may be cut out. Furthermore, three or more ribs may be provided on the inner wall of the first main body 311 along the first direction, and the inner diameter of the first main body 311 may be determined by these three or more ribs. If the outer diameter of the first flange portion 352 corresponds to the inner diameter of the first main body 311 determined by three or more ribs, the axis 37C of the first spool 370 is stably positioned relative to the first case 31. In this case, it is easy to control the inner diameter of the first main body 311. The same applies to the second housing portion 32A and the second main body 321.
[0075] In the above embodiment, the printing device 1 configures the first frame 7, the second frame 8, and the connecting member 9 from different materials, thereby making the rigidity of the connecting member 9 lower than the rigidity of the first frame 7 and the second frame 8. For example, the first frame 7, the second frame 8, and the connecting member 9 may be configured from the same material, and the rigidity of the connecting member 9 may be made lower than the rigidity of the first frame 7 and the second frame 8 by devising the thickness of the structure, the shape of the structure, the composition of the material, the processing of the material, etc. [Explanation of symbols]
[0076] 1 Printing device 3 Ink ribbon cartridge 4 Platen roller 7 First Frame 8 Second Frame 9 Connecting members 25 Side plate part 31 First Case 32 Second Case 39 Ink ribbon 41 First support shaft 50 print heads 52 Second support shaft 71,81 First shaft hole 72,82 Second shaft hole 261 First opening 262 Second opening 313 First Rib 314 First end 317 First convex part 319 First case rib 323 Second Rib 324 Second end 327 Second convex part 329 Second case rib 343 First spool rib 352 First flange 370 First spool 380 Second spool 382 Second flange part 385 Second spool rib
Claims
1. A housing having an opening; a cartridge mounting portion that is in communication with the opening and is disposed inside the housing; a first frame in the interior of the housing, the first frame having a first hole portion and a second hole portion; An ink ribbon cartridge to be mounted in the cartridge mounting portion, a first spool extending in a first direction; a first case covering the first spool; a second spool extending in a second direction; a second case spaced apart from the first case and covering the second spool; a first rib provided on the first case; a second rib provided on the second case; an ink ribbon having one end wound around the first spool and the other end wound around the second spool, the one end being stretched over the first spool, the first rib, the second rib, and the second spool in this order; a first protrusion that protrudes along the first direction from a first end of the first case on one side in the first direction and that fits into the first hole; a second protrusion protruding along the second direction from a second end portion on one side in the second direction of the second case and fitted into the second hole; a plate-shaped portion connecting a first other end portion of the first case opposite the first end portion and a second other end portion of the second case opposite the second end portion; A case cover in the shape of a parallelogram with rounded corners, a first corner portion connected to the first other end portion of the first case; a second corner portion located diagonally opposite the first corner portion and connected to the second other end portion of the second case; The case cover having The ink ribbon cartridge includes: When viewed from a direction intersecting the first direction and the second direction, the first end and the second end are on the same side of the plate-like portion, The first end of the first case and the second end of the second case are not connected to each other, a case cover that covers the opening when the ink ribbon cartridge is attached to the cartridge attachment portion;
2. The first rib protrudes radially outward from the cylindrical first case, The second rib protrudes radially outward from the cylindrical second case, When viewed from the first direction, a length between the first rib and the first protrusion is shorter than a length between an axis of the first spool and the first rib, When viewed from the second direction, the length between the second rib and the second protrusion is shorter than the length between the axis of the second spool and the second rib.
2. The printing device according to claim 1.
3. The housing further comprises a side plate portion disposed opposite the first frame within the housing, the side plate portion having a first opening and a second opening; an outer diameter of the first case corresponds to an inner diameter of the first opening; an outer diameter of the second case corresponds to an inner diameter of the second opening; When the first protrusion is engaged with the first hole, the first other end portion between the plate-like portion and the first end portion is fitted into the first opening, With the second protrusion engaged with the second hole, the second other end portion between the plate-like portion and the second end portion fits into the second opening.
3. The printing device according to claim 1, wherein the printing device is a printer.
4. the first spool includes a first flange portion formed at least at an end of the first spool that is disposed toward the first other end portion and that protrudes radially outward from the first spool; the second spool includes a second flange portion formed at least at an end of the second spool that is disposed toward the second other end portion and that protrudes radially outward from the second spool; an outer diameter of the first flange portion corresponds to an inner diameter of the first case, The outer diameter of the second flange portion corresponds to the inner diameter of the second case.
4. The printing device according to claim 1, wherein the printing device is a printer.
5. the first spool includes a cylindrical first spool rib centered on an axis of the first spool, the first spool rib protruding along the first direction from an end of the first spool that is disposed toward the first end, the second spool includes a cylindrical second spool rib that projects along the second direction from an end of the second spool that is disposed toward the second end and is centered on an axis of the second spool; the first case includes a first case rib that protrudes cylindrically from the first end toward the inside of the first case along the first direction, the second case includes a second case rib that protrudes cylindrically from the second end toward the inside of the second case along the second direction, The first spool rib is fitted onto the outside of the first case rib, thereby positioning the first spool relative to the first case; The second spool ribs are fitted onto the outside of the second case ribs, thereby positioning the second spool relative to the second case.
5. The printing device according to claim 1, wherein the printing device is a printer.
6. 6. A printing device according to claim 1, wherein the first convex portion and the second convex portion engage with the first hole portion and the second hole portion, respectively, provided in the first frame made of metal.
7. A first support shaft that supports a platen roller; a second support shaft that supports the print head; a second frame disposed opposite the first frame; a connecting member that connects the first frame and the second frame; Equipped with each of the first frame and the second frame includes a third hole portion into which an end of the first support shaft fits and a fourth hole portion into which an end of the second support shaft fits, and the first support shaft fits into the third hole portion of each of the first frame and the second frame, and the second support shaft fits into the fourth hole portion of each of the first frame and the second frame, whereby the first support shaft and the second support shaft are arranged in parallel, 7. The printing apparatus according to claim 1, wherein the rigidity of the connecting member is lower than the rigidity of the first frame and the second frame.
Citation Information
Patent Citations
Ink doner film cassette structural body
JP1985236780A
Cassette and printer device
JP2001260448A
Printer
JP2001260470A
Image forming apparatus
JP2009202417A
Ink ribbon cartridge
JP2010253846A