cartridge
The cartridge's innovative holder design with a first hole and elastic member enables easy removal of storage media by avoiding obstruction, ensuring safe detachment and protection during the process.
Patent Information
- Application Number
- JP2022014343
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-02-01
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2042-02-01
AI Technical Summary
Conventional cartridges with storage media, such as the developer cartridge described in Patent Document 1, face difficulties in easily removing the storage medium due to insufficient space between the storage medium and its holder, making it challenging to detach the storage medium without damaging it.
The cartridge design includes a storage medium holder with a first holder, a second holder, an elastic member, and a first hole that allows for easy removal by inserting a rod-shaped tool, while the elastic member and second holder do not obstruct the insertion, and an adhesive fixes the storage medium to the first holder.
The design facilitates easy removal of the storage medium without direct contact, protecting it from damage and allowing for efficient detachment using leverage principles.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a cartridge. [Background technology]
[0002] In recent years, developing cartridges installed in image forming devices have been equipped with storage media for storing various types of information. For example, Patent Document 1 describes a developing cartridge (20) having a developing memory (31). The developing memory (30) is held in a first holder (34) that is movable relative to the housing (21) of the developing cartridge (20). Therefore, the developing memory (30) is movable relative to the housing (21). [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent Publication No. 2021-162749 Summary of the Invention [Problem to be solved by the invention]
[0004] However, with conventional technology, it has not been easy to remove the storage medium from the storage medium holder. For example, in the case of the developer cartridge described in Patent Document 1, it is conceivable to insert a jig into the gap between the developer memory (31) and the first holder (34) and remove the developer memory (31) using the principle of leverage. However, if there is not enough space between the developer memory (31) and the first holder (34), the developer memory (31) cannot be easily removed.
[0005] An object of the present disclosure is to provide a technique that allows a storage medium to be easily removed from a storage medium holder. [Means for solving the problem]
[0006] In order to solve the above problem, a first aspect is a cartridge comprising a housing, a storage medium having an electrical contact surface, and a storage medium holder for holding the storage medium, the storage medium holder being located at one end of the housing in a first direction and movable relative to the housing, wherein the storage medium holder has a first holder for holding the electrical contact surface, a second holder located at a distance from the first holder in a second direction intersecting the first direction, and an elastic member located between the first holder and the second holder and capable of expanding and contracting in the second direction, wherein the first holder has a first hole penetrating the first holder in the second direction, the first hole being located farther from the housing in the first direction than the second holder and the elastic member, and overlapping with the electrical contact surface in the second direction.
[0007] A second aspect is a cartridge of the first aspect, wherein the storage medium holder has a third holder extending in the second direction from the first holder toward the second holder, and the first hole is positioned farther from the housing in the first direction than the third holder.
[0008] A third aspect is the cartridge of the second aspect, wherein the first hole overlaps with the storage medium in the second direction.
[0009] A fourth aspect is the cartridge of any one of the first to third aspects, wherein the third holder is tubular and extends in the second direction, and the elastic member is located inside the third holder.
[0010] A fifth aspect is the cartridge of the fourth aspect, wherein a portion of the second holder is positioned within the third holder, and the second holder is movable relative to the third holder in the second direction.
[0011] A sixth aspect is the cartridge of any one of the first to fifth aspects, further comprising an adhesive positioned between the electrical contact surface and the first holder.
[0012] A seventh aspect is the cartridge of the sixth aspect, wherein the adhesive overlaps the electrical contact surface in the second direction.
[0013] An eighth aspect is the cartridge of the sixth or seventh aspect, wherein the adhesive overlaps with the first hole in the second direction.
[0014] A ninth aspect is a cartridge of the seventh or eighth aspect, wherein the storage medium has a first surface on which the electrical contact surface is located, a second surface located opposite the first surface in the second direction, and a storage medium convex portion protruding from the second surface in the second direction, the storage medium convex portion protruding in a direction away from the first surface, and the first hole overlaps with the storage medium convex portion in the second direction.
[0015] A tenth aspect is a cartridge according to any one of the seventh to ninth aspects, wherein the first holder has a first holder recess recessed in the second direction, the first hole is located within the first holder recess, and the adhesive is located within the first holder recess.
[0016] An eleventh aspect is a cartridge according to any one of the seventh to tenth aspects, wherein the first holder has a holder convex portion that protrudes in the second direction and protrudes away from the second holder in the second direction, the first hole is located on the holder convex portion, and the adhesive is located on the holder convex portion.
[0017] A twelfth aspect is a cartridge of the eleventh aspect, wherein the first holder has a second holder recess recessed in the second direction from the holder convex portion, the second holder recess recessed in the second direction toward the second holder, the first hole is located within the second holder recess, and the adhesive is located within the second holder recess.
[0018] A thirteenth aspect is the cartridge of the sixth aspect, wherein the first hole is positioned away from the adhesive in the first direction.
[0019] A 14th aspect is a cartridge of any one of the 6th to 13th aspects, wherein the first holder further has a second hole penetrating in the first direction, and the adhesive overlaps with the second hole in the second direction.
[0020] A fifteenth aspect is the cartridge of the fourteenth aspect, wherein an inner dimension of the first hole is larger than an inner dimension of the second hole.
[0021] A sixteenth aspect is the cartridge of any one of the first to fifteenth aspects, wherein an inner dimension of the first hole increases in the second direction as it approaches the second holder.
[0022] A seventeenth aspect is the cartridge of any one of the first to sixteenth aspects, wherein the first hole is a parallelogram.
[0023] An eighteenth aspect is the cartridge of any one of the first to seventeenth aspects, wherein a portion of the first holder is positioned farther from the second holder in the second direction than the electrical contact surface.
[0024] A 19th aspect is a cartridge of any one of the 1st to 18th aspects, wherein the storage medium holder has a fourth holder positioned between the housing and the electrical contact surface in the first direction, and a portion of the fourth holder is positioned farther from the second holder in the second direction than the electrical contact surface.
[0025] A 20th aspect is a cartridge of any one of the first to nineteenth aspects, wherein the first holder has a first side portion extending in a third direction intersecting the first direction and the second direction, and a second side portion extending in the third direction and positioned away from the first side portion in the first direction, the first side portion having a press-fit protrusion protruding toward the second side portion in the first direction, and the electrical contact surface is press-fit between the press-fit protrusion of the first side portion and the second side portion.
[0026] A twenty-first aspect is the cartridge of the twentieth aspect, wherein the first hole overlaps with the press-fit protrusion in the first direction.
[0027] A 22nd aspect is a cartridge of the 20th or 21st aspect, wherein, when the electrical contact surface is held by the first holder, the first hole is positioned closer to the second side portion in the first direction than the press-fit protrusion.
[0028] A twenty-third aspect is the cartridge of any one of the first to twenty-second aspects, further comprising a developing roller rotatable about a developing shaft extending in the first direction, and the housing is capable of containing the developer. [Effects of the Invention]
[0029] According to the cartridge of the first aspect, the storage medium attached to the first holder of the storage medium holder can be easily removed by inserting a rod-shaped removal tool into the first hole. Furthermore, because the first hole is located farther from the housing in the second direction than the second holder and the elastic member, the removal tool can be inserted into the first hole without being obstructed by the second holder and the elastic member.
[0030] According to the cartridge of the fifth aspect, the second holder moves within the third holder, thereby making it possible to reduce the size of the storage medium holder in the second direction.
[0031] According to the cartridge of the sixth aspect, the electrical contact surface can be fixed to the first holder by adhesive.
[0032] In the cartridge of the eighth aspect, the adhesive overlaps with the first hole in the second direction, so that when the removal tool is inserted into the first hole, the removal tool comes into contact with the storage medium via the adhesive. This prevents the removal tool from coming into direct contact with the storage medium, thereby appropriately protecting the storage medium.
[0033] According to the cartridge of the tenth aspect, the adhesive is positioned in the first holder recess, so that the adhesive is positioned between the first holder and the electrical contact surface, which prevents the removal tool from coming into direct contact with the storage medium when the removal tool is inserted into the first hole.
[0034] According to the cartridge of the twelfth aspect, the adhesive is positioned within the second holder recess, so that the adhesive is positioned between the electrical contact surface and the holder protrusion, which prevents the removal tool from coming into direct contact with the storage medium when the removal tool is inserted into the first hole from the other side in the first direction.
[0035] According to the cartridge of the thirteenth aspect, the adhesive is positioned away from the first hole, so when the storage medium is pushed with a removal tool inserted into the first hole, the storage medium can be easily removed from the first holder by the principle of leverage.
[0036] According to the cartridge of the fourteenth aspect, the adhesive overlaps with the second hole, so that the adhesive can be confirmed through the second hole.
[0037] According to the cartridge of the fifteenth aspect, by making the inner dimension of the first hole larger than the inner dimension of the second hole, it becomes easier to insert the removal jig into the first hole.
[0038] According to the cartridge of the sixteenth aspect, the inner dimensions of the first hole are made larger as it approaches the second holder, which makes it easier to insert the removal jig.
[0039] According to the cartridge of the seventeenth aspect, the first hole is a parallelogram, which makes it easy to insert the removal jig.
[0040] According to the cartridge of the nineteenth aspect, a portion of the fourth holder is positioned farther from the second holder than the electrical contact surface in the second direction, so that the storage medium can be removed from the first holder by inserting a removal tool into the first hole from the other side in the first direction while a portion of the fourth holder is in contact with the fixing surface.
[0041] According to the cartridge of the twentieth aspect, the electrical contact surface can be attached to the first holder by being press-fitted between the press-fit convex portion of the first side portion and the second side portion.
[0042] According to the cartridge of the 21st aspect, the first hole overlaps with the press-fit protrusion, so when the removal tool is inserted into the first hole, the removal tool presses against the portion of the storage medium that receives a strong force from the press-fit protrusion, making it easy to remove the storage medium.
[0043] According to the cartridge of the 22nd aspect, the first hole is located closer to the second side portion than the press-fit convex portion, so the first hole can be separated from the press-fit convex portion. This allows the part of the storage medium separated from the press-fit convex portion to be pushed by the removal jig, making it easy to remove the storage medium by using the principle of leverage. [Brief explanation of the drawings]
[0044] [Figure 1] FIG. 2 is a perspective view of the developing cartridge according to the embodiment. [Figure 2] FIG. 2 is a side view of the developing cartridge according to the embodiment. [Figure 3] 10 is a perspective view of the IC chip holder as viewed from one side in the second direction. FIG. [Figure 4] 10 is a perspective view of the IC chip holder as viewed from the other side in the second direction. FIG. [Figure 5] FIG. 2 is a plan view of the IC chip holder. [Figure 6] FIG. 10 is a plan view showing the IC chip holder from which the IC chip has been removed. [Figure 7] 6 is a cross-sectional view of the IC chip holder taken along line AA in FIG. 5. [Figure 8] FIG. 10 is a partial cross-sectional view of an IC chip holder according to a second embodiment. [Figure 9] FIG. 10 is a partial cross-sectional view of an IC chip holder according to a third embodiment. [Figure 10] FIG. 10 is a partial cross-sectional view of an IC chip holder according to a third embodiment. [Figure 11] FIG. 10 is a partial cross-sectional view of an IC chip holder according to a fourth embodiment. [Figure 12] FIG. 10 is a partial cross-sectional view of an IC chip holder according to a fifth embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0045] Hereinafter, embodiments of the present disclosure will be described with reference to the accompanying drawings. Note that the components described in the embodiments are merely examples and are not intended to limit the scope of the present disclosure. In the drawings, the dimensions and numbers of each part may be simplified as necessary for ease of understanding.
[0046] <1. Embodiment> FIG. 1 is a perspective view of a developer cartridge 10 according to an embodiment. FIG. 2 is a side view of the developer cartridge 10 according to an embodiment. FIG. 3 is a perspective view of an IC chip holder 24 as viewed from one side in the second direction. FIG. 4 is a perspective view of the IC chip holder 24 as viewed from the other side in the second direction. FIG. 5 is a plan view of the IC chip holder 24. FIG. 6 is a plan view showing the IC chip holder 24 from which the IC chip 21 has been removed. FIG. 7 is a cross-sectional view of the IC chip holder 24 taken along line AA in FIG. 5.
[0047] Hereinafter, the direction in which the developing roller axis A12 of the developing roller 12 in the developing cartridge 10 extends will be referred to as the "first direction." The direction intersecting with the electrical contact surface 213 provided on the developing cartridge 10 will be referred to as the "second direction." The direction in which the developing roller 12 and the first agitator 14 are aligned will be referred to as the "third direction." The first direction, second direction, and third direction intersect with each other, and more preferably are perpendicular to each other.
[0048] As shown in FIGS. 1 and 2, the developing cartridge 10 includes a housing 11, a developing roller 12, a first agitator 14, a gear cover 18, and a holder assembly 20.
[0049] The housing 11 is capable of containing a developer. The developer is, for example, toner. The housing 11 extends in a first direction. The housing 11 has an opening at one end of the housing 11 in a third direction. The housing 11 has a handle 113. The handle 113 is located at the other end of the housing 11 in the third direction. The housing 11 has a first outer surface 115 and a second outer surface 116. The first outer surface 115 is located at one end of the housing 11 in the second direction. The second outer surface 116 is located at the other end of the housing 11 in the second direction.
[0050] The developing roller 12 is rotatable about the developing roller shaft A12 when the developing cartridge 10 is attached to the printer body. The developing roller shaft A12 extends in a first direction. The developing roller 12 is located at an opening in the housing 11. In other words, the developing roller 12 is located at one end of the housing 11 in the third direction. When the developing cartridge 10 is attached to the printer body, the developing roller 12 supplies the developer in the housing 11 to the surface of the photosensitive drum (not shown).
[0051] The developing roller 12 has a developing roller body 121 and a developing roller shaft 122. The developing roller body 121 has a cylindrical shape extending in a first direction. The developing roller body 121 is made of, for example, rubber.
[0052] The developing roller shaft 122 has a cylindrical shape extending along the developing roller axis A12. The developing roller shaft 122 is made of, for example, metal. The developing roller shaft 122 is located inside the developing roller main body 121 in the radial direction of the developing roller main body 121. The developing roller shaft 122 penetrates the developing roller main body 121 in the first direction. It is not essential that the developing roller shaft 122 penetrates the developing roller main body 121. The developing roller shaft 122 may be attached to both ends of the developing roller main body 121. The developing roller 12 is rotatable about the developing roller shaft 122.
[0053] The gear cover 18 is fixed to one end of the housing 11 in the first direction via a screw or the like. The gear cover 18 covers various gears for rotating the developing roller 12 and the first agitator 14.
[0054] <Holder assembly 20> The holder assembly 20 has an IC chip 21, an IC chip holder 24, and a holder cover 25. As shown in Figures 1 and 2, the holder assembly 20 is located at one end of the gear cover 18 in the first direction.
[0055] As shown in FIG. 3, the IC chip 21 has a development memory 211 and an electrical contact surface 213. The IC chip 21 is an example of a "storage medium." The development memory 211 stores information about the development cartridge 10. The development memory 211 stores, for example, ID information and lifespan information. The ID information is identification information for identifying each individual development cartridge 10. The ID information is specifically a serial number. The lifespan information includes, for example, the cumulative number of rotations of the development roller 12, the cumulative number of pages printed using the development roller 12, and the cumulative number of dots.
[0056] The IC chip 21 has a flat plate shape. The IC chip 21 is located at one end of the IC chip holder 24 in the second direction. The electrical contact surface 213 is located at one end of the IC chip 21 in the second direction. The electrical contact surface 213 includes four thin plate-shaped electrodes. The electrical contact surface 213 is electrically connected to the development memory 211. When the development cartridge 10 is attached to the printer body, the electrical contact surface 213 is parallel to the third direction. The electrical contact surface 213 is movable relative to the housing 11 in the first direction, the second direction, and the third direction.
[0057] 1 and 2, the IC chip holder 24 is located at one end of the housing 11 in the first direction. As shown in Fig. 2, the IC chip holder 24 is located between the developing roller 12 and the handle 113 in the third direction.
[0058] The IC chip holder 24 holds the IC chip 21. The IC chip holder 24 is an example of a "storage medium holder." The IC chip holder 24 holds an electrical contact surface 213. The IC chip holder 24 has a first holder 41, a second holder 42, a third holder 43, a fourth holder 44, and an elastic member 45.
[0059] The first holder 41 has an outer surface 413. The outer surface 413 is located at one end of the first holder 41 in the second direction. The outer surface 413 has a recess into which the IC chip 21 can be inserted. The IC chip 21 is fixed to the outer surface 413 of the first holder 41. The outer surface 413 of the first holder 41 holds the IC chip 21. The outer surface 413 of the first holder 41 holds the electrical contact surface 213.
[0060] The second holder 42 is positioned in the second direction at a distance from the first holder 41. The second holder 42 is positioned away from the first holder 41 in the other side of the second direction.
[0061] The third holder 43 is connected to the other end of the first holder 41 in the second direction. The third holder 43 extends in the second direction from the first holder 41 toward the second holder 42. The third holder 43 has a rectangular cylindrical shape extending in the second direction. One end of the second holder 42 in the second direction is inserted into the third holder 43. The second holder 42 is movable relative to the first holder 41 in the second direction. In addition, the second holder 42 is movable relative to the third holder 43 in the second direction.
[0062] Since the second holder 42 is movable within the third holder 43, the size of the IC chip holder 24 in the second direction can be reduced.
[0063] The elastic member 45 is located between the first holder 41 and the second holder 42. The elastic member 45 is expandable and contractible in the second direction. The elastic member 45 is, for example, a coil spring.
[0064] As shown in FIGS. 1 and 2 , the holder cover 25 is located at one end of the gear cover 18 in the first direction. The holder cover 25, together with the gear cover 18, surrounds the periphery of the IC chip holder 24. The holder cover 25 surrounds one side of the IC chip holder 24 in the first direction, one side of the IC chip holder 24 in the third direction, and the other side of the IC chip holder 24 in the third direction. The holder cover 25 has a U-shape. The holder cover 25 holds the IC chip holder 24. The IC chip holder 24 is movable relative to the holder cover 25 in the first direction, the second direction, and the third direction.
[0065] 2, the holder cover 25 has a plate portion 251. The plate portion 251 is located away from the gear cover 18 in the first direction. The IC chip holder 24 is located between the plate portion 251 and the gear cover 18 in the first direction.
[0066] 2, the plate portion 251 has a through hole 254. The through hole 254 is located in the plate portion 251 of the holder cover 25. The through hole 254 extends in the third direction. The through hole 254 extends in the second direction.
[0067] The IC chip holder 24 has a first boss 241 extending in the first direction. The first boss 241 is located at one end of the IC chip holder 24 in the first direction. The first boss 241 is inserted into the through hole 254 with sufficient space in between. As shown in FIG. 2 , the size of the through hole 254 in the second direction is larger than the size of the first boss 241 in the second direction. When the IC chip holder 24 moves in the second direction relative to the holder cover 25, the first boss 241 moves in the second direction inside the through hole 254.
[0068] The size of through hole 254 in the third direction is larger than the size of first boss 241 in the third direction. When IC chip holder 24 moves in the third direction relative to holder cover 25, first boss 241 moves in the third direction inside through hole 254. Because first boss 241 can move in the third direction inside through hole 254, IC chip holder 24 can move in the third direction relative to housing 11.
[0069] The first holder 41 has a first hole 401. The first hole 401 penetrates the first holder 41 in the second direction. The first hole 401 is located away from the second holder 42 and the elastic member 45 in one direction in the first direction. That is, in the first direction, the first hole 401 is located farther from the housing 11 than the second holder 42 and the elastic member 45. In the second direction, the first hole 401 overlaps with the electrical contact surface 213 of the IC chip 21. The first hole 401 is located farther from the housing 11 than the third holder 43 in the first direction. The first hole 401 overlaps with the IC chip 21 in the second direction.
[0070] 4 and 7, the first holder 41 has a protruding portion 411. The protruding portion 411 is a portion that protrudes further in the first direction than the third holder 43. That is, in the first direction, the protruding portion 411 is positioned farther from the housing 11 than the third holder 43. The first hole 401 is positioned in the protruding portion 411.
[0071] As shown in FIG. 7 , when removing the IC chip 21 from the first holder 41, a removal jig 9 is used. The removal jig 9 has, for example, a rod shape bent at 90 degrees. By inserting the removal jig 9 into the first hole 401 from the other side in the second direction, the IC chip 21 attached to the first holder 41 of the IC chip holder 24 can be pushed in one direction in the second direction. This makes it possible to easily remove the IC chip 21. Furthermore, because the first hole 401 is positioned farther from the housing 11 than the second holder 42 and the elastic member 45 in the first direction, the removal jig 9 can be inserted into the first hole 401 without being obstructed by the second holder 42 and the elastic member 45.
[0072] Furthermore, the first hole 401 is located on the opposite side of the developing memory 211 from the electrical contact surface 213 in the second direction. This prevents the removal jig 9 inserted into the first hole 401 from coming into contact with the electrical contact surface 213, thereby protecting the electrical contact surface 213. Furthermore, by pressing the IC chip 21 with the removal jig 9, the IC chip 21 can be lifted from the outer surface 413 of the first holder 41. Therefore, the worker can remove the IC chip 21 from the first holder 41 by grasping the side of the lifted IC chip 21. In other words, the worker can be prevented from touching the electrical contact surface 213 formed on the IC chip 21 or the developing memory 211.
[0073] The elastic member 45 is located inside the third holder 43. One end of the elastic member 45 in the second direction is in contact with the first holder 41. The other end of the elastic member 45 in the second direction is in contact with the second holder .
[0074] 7, the IC chip holder 24 includes an adhesive 46. The adhesive 46 is located between the electrical contact surface 213 of the IC chip 21 and the first holder 41. The adhesive 46 is located between the IC chip 21 and the outer surface 413 of the first holder 41 in the second direction. The adhesive 46 may be a double-sided tape (a sheet-like substrate with adhesive applied to both sides).
[0075] 7, the adhesive 46 overlaps the electrical contact surface 213 of the IC chip 21 in the second direction. Also, as shown in Fig. 7, the adhesive 46 overlaps the first hole 401 in the second direction.
[0076] Since the adhesive 46 is positioned between the electrical contact surface 213 of the IC chip 21 and the first holder 41 , the IC chip 21 and the electrical contact surface 213 can be fixed to the first holder 41 .
[0077] Because adhesive 46 overlaps first hole 401 in the second direction, when removal jig 9 is inserted into first hole 401, removal jig 9 can press IC chip 21 via adhesive 46. This prevents removal jig 9 from coming into direct contact with IC chip 21, thereby enabling IC chip 21 to be appropriately protected.
[0078] As shown in Fig. 7, the first holder 41 has a holder protrusion 414 that protrudes in the second direction. The holder protrusion 414 is located on the outer surface 413 of the first holder 41. The holder protrusion 414 protrudes in one direction in the second direction. That is, the holder protrusion 414 protrudes in a direction away from the second holder 42. The first hole 401 is located on the holder protrusion 414. The adhesive 46 is located on the holder protrusion 414.
[0079] The first holder 41 has a holder recess 415 (second holder recess) recessed from one side to the other side in the second direction (the direction approaching the second holder 42). The holder recess 415 is recessed from the holder protrusion 414 to the other side in the second direction (the direction approaching the second holder 42). The first hole 401 is located within the holder recess 415. The adhesive 46 is located within the holder recess 415.
[0080] By positioning adhesive 46 in holder recess 415, adhesive 46 is positioned between electrical contact surface 213 and holder protrusion 414. This reduces direct contact between removal jig 9 and IC chip 21 when removal jig 9 is inserted into first hole 401.
[0081] It is not essential that adhesive 46 be positioned only within holder recess 415, but may be positioned outside holder recess 415. For example, adhesive 46 may be positioned over the entire surface of outer surface 413.
[0082] The fourth holder 44 is located between the housing 11 and the electrical contact surface 213 in the first direction. The fourth holder 44 is connected to the other end of the first holder 41 in the first direction. The fourth holder 44 is located between the housing 11 and the first holder 41 in the first direction. In the second direction, one end of the fourth holder 44 is located on one side of the electrical contact surface 213. That is, a part of the fourth holder 44 is located farther from the second holder 42 than the electrical contact surface 213 in the second direction.
[0083] In the second direction, a portion of the fourth holder 44 is farther from the second holder 42 than the electrical contact surface 213. Therefore, with a portion of the fourth holder 44 in contact with a fixed surface such as a table, the removal jig 9 is inserted into the first hole 401 from the other side in the first direction. This allows the IC chip 21 to be lifted from the first holder 41.
[0084] In the second direction, one end of the first holder 41 is located on one side of the electrical contact surface 213. In other words, a part of the first holder 41 is located farther away from the second holder 42 than the electrical contact surface 213 is in the second direction.
[0085] The first holder 41 has a first side portion 51 and a second side portion 52. The first side portion 51 and the second side portion 52 extend in the third direction. The second side portion 52 is located away from the first side portion 51 in the first direction. More specifically, the second side portion 52 is located away from the first side portion 51 to one side in the first direction. The first side portion 51 has a press-fit protrusion 511 that protrudes toward the second side portion 52 in the first direction. The IC chip 21 is press-fitted between the press-fit protrusion 511 and the second side portion 52 in the first direction. That is, the electrical contact surface 213 is press-fitted between the press-fit protrusion 511 and the second side portion 52 in the first direction.
[0086] The electrical contact surface 213 is press-fitted between the press-fit protrusion 511 of the first side portion 51 and the second side portion 52, whereby the electrical contact surface 213 is attached to the first holder 41.
[0087] 6, in the first direction, first hole 401 overlaps with press-fit protrusion 511. Because first hole 401 overlaps with press-fit protrusion 511, when removal jig 9 is inserted into first hole 401, the portion of IC chip 21 that receives force from press-fit protrusion 511 is pressed by removal jig 9. This allows IC chip 21 to be easily removed.
[0088] As shown in Figures 6 and 7, when the electrical contact surface 213 is held by the first holder 41, the first hole 401 is located closer to the second side portion 52 than the press-fit protrusion 511 in the first direction.
[0089] First hole 401 is positioned closer to second side portion 52 than press-fit protrusion 511. As a result, when removal jig 9 is inserted into first hole 401, the portion of IC chip 21 that is away from press-fit protrusion 511 is pressed by removal jig 9. Therefore, IC chip 21 can be easily removed by the principle of leverage.
[0090] 2. Second Embodiment Next, a second embodiment will be described. In the following description, elements having the same functions as elements already described will be given the same reference numerals or reference numerals with an additional alphabetical character, and detailed description thereof may be omitted.
[0091] FIG. 8 is a partial cross-sectional view of an IC chip holder 24 according to the second embodiment. The IC chip holder 24 according to the second embodiment has a first holder 41A. The first holder 41A has a configuration similar to that of the first holder 41. However, the first holder 41A has a holder recess 416 (first holder recess) that is recessed from one side to the other in the second direction (the direction toward the second holder 42). The holder recess 416 is located on an outer surface 413 of the first holder 41A. The first hole 401 is located within the holder recess 416. The adhesive 46 is located within the holder recess 416.
[0092] By positioning adhesive 46 in holder recess 416, adhesive 46 is positioned between first holder 41 and electrical contact surface 213. This prevents removal jig 9 from coming into direct contact with IC chip 21 when removal jig 9 is inserted into first hole 401.
[0093] The first holder 41A of the IC chip holder 24 holds the IC chip 21A. The IC chip 21A has a first surface 21S, a second surface 22S, and an IC chip protrusion 215. The electrical contact surface 213 is located on the first surface 21S. The second surface 22S is located on the opposite side of the first surface 21S in the second direction. The IC chip protrusion 215 protrudes from the second surface 22S in the other direction in the second direction. In other words, the IC chip protrusion 215 protrudes in a direction away from the first surface 21S. The IC chip protrusion 215 is, for example, a development memory. The first hole 401 overlaps with the IC chip protrusion 215 in the second direction.
[0094] Holder recess 416 overlaps IC chip protrusion 215 in the second direction. Therefore, adhesive 46 overlaps IC chip protrusion 215 in the second direction. This prevents removal jig 9 from coming into direct contact with IC chip protrusion 215 when removal jig 9 is inserted into first hole 401. Therefore, IC chip protrusion 215 can be appropriately protected.
[0095] 3. Third Embodiment FIG. 9 is a partial cross-sectional view of an IC chip holder 24 according to the third embodiment. The IC chip holder 24 according to the third embodiment has a first holder 41B. The first holder 41B has a configuration similar to that of the first holder 41. However, the first holder 41B has a second hole 402. The second hole 402 penetrates the first holder 41B in the second direction. The second hole 402 is located between the housing 11 and the first hole 401 in the first direction. The second hole 402 is located within the third holder 43. The adhesive 46 overlaps the second hole 402 in the second direction.
[0096] Because the adhesive 46 overlaps the second hole 402, the adhesive 46 can be seen through the second hole 402. This makes it possible to prevent forgetting to apply the adhesive 46. Furthermore, the adhesive 46 is located inside the third holder 43. Therefore, by looking into the third holder 43 from the other side of the third holder 43 in the second direction, the adhesive 46 can be seen through the second hole 402.
[0097] The inner dimensions of first hole 401 are larger than the inner dimensions of second hole 402. Therefore, removal jig 9 can be easily inserted into first hole 401.
[0098] Fig. 10 is a partial cross-sectional view of the IC chip holder 24 according to the third embodiment. As shown in Fig. 10, the adhesive 46 may overlap only the second hole 402, and not the first hole 401. In other words, the first hole 401 may be located away from the adhesive 46 in the first direction.
[0099] When the first hole 401 is positioned away from the adhesive 46, when the removal jig 9 is inserted into the first hole 401, the IC chip 21 can be easily removed from the first holder 41B by the principle of leverage.
[0100] 4. Fourth Embodiment 11 is a partial cross-sectional view of an IC chip holder 24 according to the fourth embodiment. The IC chip holder 24 according to the fourth embodiment has a first holder 41C. The first holder 41C has a configuration similar to that of the first holder 41. However, the inner dimensions of the first hole 401 of the first holder 41C increase toward the other side of the second direction. That is, the inner dimensions of the first hole 401 increase toward the second holder 42 in the second direction. When the first holder 41C is cut along a plane parallel to the second direction, the cross-sectional shape of the first hole 401 is trapezoidal.
[0101] By increasing the inner dimension of the first hole toward the second holder, the removal jig 9 can be guided into the first hole 401.
[0102] 5. Fifth Embodiment 12 is a partial cross-sectional view of an IC chip holder 24 according to a fifth embodiment. The IC chip holder 24 according to the fifth embodiment has a first holder 41D. The first holder 41D has a configuration similar to that of the first holder 41. However, when the IC chip holder 24 is cut in the first holder 41D along a plane parallel to the second direction, the cross-sectional shape of the first hole 401 is a parallelogram. More specifically, the first hole 401 extends in one direction in the first direction toward the other direction in the second direction.
[0103] By forming the cross section of first hole 401 in a parallelogram shape, removal jig 9 can be easily inserted.
[0104] <6. Variations> Although the embodiments have been described above, the present disclosure is not limited to the above and various modifications are possible.
[0105] In the above embodiment, the cartridge is described as a developing cartridge 10. However, the cartridge may be a drum cartridge that includes a photosensitive drum and is mounted in the printer body.
[0106] Although the present disclosure has been described in detail, the above description is illustrative in all respects and does not limit the present disclosure. It is understood that countless variations not illustrated can be envisioned without departing from the scope of this disclosure. The configurations described in the above embodiments and variations may be combined or omitted as long as they are not mutually inconsistent. [Explanation of symbols]
[0107] 10 Developer cartridge 11. Housing 12 Developing roller 20 Holder assembly 21,21A IC chip 211 Development Memory 211 213 Electrical contact surface 213 215 IC chip protrusion 215 21S 1st page 21S 22S 2nd side 22S 24 IC chip holder 401 Hole 1 402 Hole 2 41, 41A~41D First holder 414 Holder protrusion 415 Holder recess (second holder recess) 416 Holder recess (first holder recess) 42 Second Holder 43 Third Holder 44 4th Holder 45 Elastic member 46 Adhesive 51 Side (first side) 511 Press-fit convex part 52 Side (second side) 9 Removal jig
Claims
1. The housing and a storage medium having an electrical contact surface; a storage medium holder that holds the storage medium, the storage medium holder being located at one end of the housing in a first direction and movable relative to the housing, The storage medium holder includes: a first holder for holding the electrical contact surface; a second holder positioned at a distance from the first holder in a second direction intersecting the first direction; an elastic member located between the first holder and the second holder, the elastic member being stretchable in the second direction; an adhesive positioned between the electrical contact surface and the first holder; The first holder includes: a first hole penetrating the first holder in the second direction; a holder protrusion that protrudes in the second direction, the holder protrusion protruding in a direction away from the second holder in the second direction; The first hole is the second holder and the elastic member are positioned farther from the housing in the first direction; overlapping the electrical contact surface in the second direction; Located on the holder protrusion, The adhesive is overlapping the electrical contact surface in the second direction; A cartridge located on the holder protrusion.
2. 10. The cartridge of claim 1, The storage medium holder includes: a third holder extending in the second direction from the first holder toward the second holder; The cartridge, wherein the first hole is positioned farther from the housing than the third holder in the first direction.
3. 3. The cartridge of claim 2, The cartridge, wherein the first hole overlaps with the storage medium in the second direction.
4. 4. The cartridge according to claim 2 or claim 3, the third holder has a cylindrical shape extending in the second direction, The cartridge, wherein the elastic member is located within the third holder.
5. 5. The cartridge of claim 4, a portion of the second holder is located within the third holder; The cartridge, wherein the second holder is movable relative to the third holder in the second direction.
6. 6. The cartridge according to claim 1, The cartridge, wherein the adhesive overlaps with the first hole in the second direction.
7. 7. The cartridge according to claim 1, The storage medium is a first surface on which the electrical contact surface is located; a second surface located on the opposite side of the first surface in the second direction; a storage medium protrusion protruding from the second surface in the second direction, the storage medium protrusion protruding in a direction away from the first surface; The cartridge, wherein the first hole overlaps with the storage medium protrusion in the second direction.
8. 8. The cartridge according to claim 1, the first holder has a first holder recess recessed in the second direction, the first hole is located within the first holder recess; The cartridge, wherein the adhesive is located within the first holder recess.
9. 9. The cartridge according to claim 1, the first holder has a second holder recess recessed from the holder protrusion in the second direction, the second holder recess recessed toward the second holder in the second direction, the first hole is located within the second holder recess; The cartridge, wherein the adhesive is located within the second holder recess.
10. A housing; a storage medium having an electrical contact surface; a storage medium holder that holds the storage medium, the storage medium holder being located at one end of the housing in a first direction and movable relative to the housing, The storage medium holder includes: a first holder for holding the electrical contact surface; a second holder positioned at a distance from the first holder in a second direction intersecting the first direction; an elastic member located between the first holder and the second holder, the elastic member being stretchable in the second direction; an adhesive positioned between the electrical contact surface and the first holder; the first holder has a first hole penetrating the first holder in the second direction; The first hole is the second holder and the elastic member are positioned farther from the housing in the first direction; overlapping the electrical contact surface in the second direction; A cartridge, wherein the first hole is located away from the adhesive in the first direction.
11. A housing; a storage medium having an electrical contact surface; a storage medium holder that holds the storage medium, the storage medium holder being located at one end of the housing in a first direction and movable relative to the housing, The storage medium holder includes: a first holder for holding the electrical contact surface; a second holder positioned at a distance from the first holder in a second direction intersecting the first direction; an elastic member located between the first holder and the second holder, the elastic member being stretchable in the second direction; an adhesive positioned between the electrical contact surface and the first holder; the first holder has a first hole penetrating the first holder in the second direction; The first hole is the second holder and the elastic member are positioned farther from the housing in the first direction; overlapping the electrical contact surface in the second direction; the first holder further has a second hole penetrating in the first direction; The cartridge, wherein the adhesive overlaps with the second hole in the second direction.
12. 12. The cartridge of claim 11, A cartridge, wherein the first hole has an inner dimension larger than the inner dimension of the second hole.
13. A housing; a storage medium having an electrical contact surface; a storage medium holder that holds the storage medium, the storage medium holder being located at one end of the housing in a first direction and movable relative to the housing, The storage medium holder includes: a first holder for holding the electrical contact surface; a second holder positioned at a distance from the first holder in a second direction intersecting the first direction; an elastic member located between the first holder and the second holder, the elastic member being stretchable in the second direction; the first holder has a first hole penetrating the first holder in the second direction; The first hole is the second holder and the elastic member are positioned farther from the housing in the first direction; overlapping the electrical contact surface in the second direction; The cartridge, wherein an inner dimension of the first hole increases in the second direction as it approaches the second holder.
14. 14. A cartridge according to any one of claims 1 to 13, The cartridge, wherein the first hole is a parallelogram.
15. 15. A cartridge according to any one of claims 1 to 14, A cartridge, wherein a portion of the first holder is positioned farther from the second holder in the second direction than the electrical contact surface.
16. 16. A cartridge according to any one of claims 1 to 15, The storage medium holder includes: a fourth holder positioned between the housing and the electrical contact surface in the first direction; A part of the fourth holder includes: A cartridge characterized in that it is located farther from the second holder than the electrical contact surface in the second direction.
17. 17. A cartridge according to any one of claims 1 to 16, The first holder includes: a first side portion extending in a third direction intersecting the first direction and the second direction; a second side extending in the third direction and spaced apart from the first side in the first direction; and the first side portion has a press-fit protrusion that protrudes toward the second side portion in the first direction, A cartridge, wherein the electrical contact surface is press-fitted between the press-fit protrusion of the first side portion and the second side portion.
18. 18. The cartridge of claim 17, A cartridge, wherein the first hole overlaps with the press-fit protrusion in the first direction.
19. 19. A cartridge according to claim 17 or claim 18, A cartridge characterized in that, when the electrical contact surface is held by the first holder, the first hole is located closer to the second side portion in the first direction than the press-fit protrusion.
20. 20. A cartridge according to any one of claims 1 to 19, a developing roller rotatable about a developing shaft extending in the first direction; The cartridge is characterized in that the housing is capable of containing a developer.
Citation Information
Patent Citations
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