Label printer
09849698 ยท 2017-12-26
Assignee
Inventors
Cpc classification
B65H41/00
PERFORMING OPERATIONS; TRANSPORTING
B41J15/04
PERFORMING OPERATIONS; TRANSPORTING
B41J13/025
PERFORMING OPERATIONS; TRANSPORTING
B65C2009/0093
PERFORMING OPERATIONS; TRANSPORTING
B41J15/042
PERFORMING OPERATIONS; TRANSPORTING
B41J3/4075
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H41/00
PERFORMING OPERATIONS; TRANSPORTING
B41J15/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A separation unit (10) of a label printer includes a metal nip roller shaft (11), a resin nip roller (12) disposed at a center part of the nip roller shaft and is supported so as to be rotatable around the nip roller shaft, and resin supporters (13) that support both ends of the nip roller shaft. The separation unit (10) is attached to the body case (2) to be relatively movable between the normal ejection position and the separation ejection position. Each of the pair of supporters has a part protruding toward the nip roller, and this part is a roller holder (13d) to insert an end of the nip roller shaft. The roller holder and the supporter are integrally formed for enhanced strength of the supporter.
Claims
1. A label printer, comprising: a housing including an opening; an opening and closing cover attached to the housing so as to open and close the housing; a feed roller rotatably supported on the opening and closing cover, the feed roller being configured to feed a print medium; a separation bar supported on the opening and closing cover and disposed in the vicinity of the feed roller; a print head disposed in the housing, the print head being disposed so as to be opposing the feed roller when the opening and closing cover is closed, the print head being configured to print on the print medium; and a separation mechanism disposed adjacent to the feed roller when printing on the print medium, wherein the separation mechanism includes: a pair of supporters opposing each other in a direction orthogonal to a feed direction of the print medium; a pair of roller holders each extending from an inner surface of a respective one of the pair of supporters in a direction orthogonal to the corresponding supporter, the direction being along which the pair of roller holders come closer to each other, each of the pair of roller holders being integrally formed with the corresponding supporter; a nip roller shaft having both ends each supported by a respective one of the pair of roller holders; and a nip roller supported on the nip roller shaft so as to be rotatable.
2. The label printer according to claim 1, wherein the pair of roller holders inserts therein the both ends of the nip roller shaft and supports the nip roller shaft so as to cover the both ends of the nip roller shaft.
3. The label printer according to claim 1, wherein the pair of roller holders supports the nip roller shaft so as to cover the nip roller shaft from both ends of the nip roller shaft toward a center part in the axial direction of the nip roller shaft to the both ends of the nip roller.
4. The label printer according to claim 1, wherein the separation mechanism is disposed in the housing.
5. The label printer according to claim 1, wherein the supporters are made of a first resin, and the nip roller is made of a second resin, the second resin being different from the first resin.
6. The label printer according to claim 1, wherein each of the roller holders has a thick portion that is disposed along an elongation direction of the nip roller shaft.
7. The label printer according to claim 6, wherein the thick portion protrudes toward an opposite direction from the separation bar when printing on the print medium in a separation ejection mode.
8. A label printer, comprising: a housing including an opening; an opening and closing cover attached to the housing so as to open and close the housing; a feed roller rotatably supported on the opening and closing cover, the feed roller being configured to feed a print medium; a separation bar supported on the opening and closing cover and disposed in the vicinity of the feed roller; a print head disposed in the housing, the print head being disposed so as to be opposing the feed roller when the opening and closing cover is closed, the print head being configured to print on the print medium; and a separation mechanism disposed adjacent to the feed roller when printing on the print medium, the separation mechanism including: a pair of supporters opposing each other in a direction orthogonal to a feed direction of the print medium, a pair of roller holders each extending from a respective one of the pair of supporters in a direction orthogonal to the corresponding supporter, the direction being along which the pair of roller holders come closer to each other, each of the pair of roller holders being integrally formed with the corresponding supporter, a nip roller shaft having both ends each supported by a respective one of the pair of roller holders, and a nip roller supported on the nip roller shaft so as to be rotatable, wherein a lateral part of the pair of supporters, in sides at which the nip roller is disposed, is connected only by a portion of the nip roller shaft, the portion of the nip roller shaft being covered with the pair of roller holders.
9. The label printer according to claim 8, wherein the pair of roller holders supports the nip roller shaft so as to cover the nip roller shaft from both ends of the nip roller shaft toward a center part in an axial direction of the nip roller shaft to the vicinity of both ends of the nip roller.
10. The label printer according to claim 8, wherein substantially a whole structure of the separation mechanism is disposed in the housing.
11. The label printer according to claim 8, wherein the supporters are made of a first resin, and the nip roller is made of a second resin, the second resin being different from the first resin.
12. The label printer according to claim 8, wherein each of the roller holders has a thick portion protruding in a radial direction, the thick portion being disposed along an elongation direction of the nip roller shaft.
13. The label printer according to claim 12, wherein the thick portion protrudes toward an opposite direction from the separation bar when printing on the print medium in a separation ejection mode.
14. A label printer, comprising: a housing including an opening; an opening and closing cover attached to the housing so as to open and close the housing; a feed roller rotatably supported on the opening and closing cover, the feed roller being configured to feed a print medium; a separation bar supported on the opening and closing cover and disposed in the vicinity of the feed roller; a print head disposed in the housing, the print head being disposed so as to be opposing the feed roller when the opening and closing cover is closed, the print head being configured to print on the print medium; and a separation mechanism disposed adjacent to the feed roller when printing on the print medium, the separation mechanism including: a pair of supporters opposing each other in a direction orthogonal to a feed direction of the print medium, a pair of roller holders each extending from a respective one of end surfaces of the pair of supporters in only a direction orthogonal to the corresponding supporter, the direction being along which the pair of roller holders come closer to each other, the end surfaces of the pair of supporters facing each other, each of the pair of roller holders being integrally formed with the corresponding supporter, a nip roller shaft having both ends each supported by a respective one of the pair of roller holders, and a nip roller supported on the nip roller shaft so as to be rotatable, wherein the pair of roller holders inserts therein the both ends of the nip roller shaft and supports the nip roller shaft so as to cover the both ends of the nip roller shaft.
15. The label printer according to claim 14, wherein substantially a whole structure of the separation mechanism is disposed in the housing.
16. The label printer according to claim 14, wherein the supporters are made of a first resin, and the nip roller is made of a second resin, the second resin being different from the first resin.
17. The label printer according to claim 14, wherein each of the roller holders has a thick portion that is disposed along an elongation direction of the nip roller shaft.
18. The label printer according to claim 17, wherein the thick portion protrudes toward an opposite direction from the separation bar when printing on the print medium in a separation ejection mode.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(19) The present invention relates to Japanese Patent Application No. 2014-130331 filed on Jun. 25, 2014 and Japanese Patent Application No. 2014-241437 filed on Nov. 28, 2014, the entire contents of which are incorporated herein by reference.
(20) The following describes one embodiment of the present invention in details, with reference to the drawings. In the drawings to describe the embodiment, the same reference numerals are basically assigned to the corresponding elements, and the repeated descriptions thereon are omitted.
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(22) A label printer 1 of the present embodiment is a portable label printer capable of normal-ejection mode (continuous-ejection mode) printing and separation-ejection mode printing. The label printer 1 includes a body case (a housing) 2, a front cover 3 that covers the upper face of this body case 2, and an opening and closing cover 4 that is attached openably and closably to the upper face of the body case 2.
(23) The rear end part (see the right end part in
(24) The front cover 3 is fixed to the body case 2 so as to cover the front face (that is, on the left of
(25) On a part of the front cover 3 that is on the front side of the opening 3a, an operating panel 5, a cover-open button 6, a pair of cancellation levers 8, 8 and a cutter 9 are disposed.
(26) As shown in
(27) The cover-open button 6 is configured to open the opening and closing cover 4. As shown in
(28) The cancellation levers 8, 8 are configured to fix a separation unit (one example of a separation mechanism) 10, which is disposed in the vicinity of these levers, at the position of the normal ejection. When the operator slides these levers so as to be closer to each other (so as to be closer to the cover-open button 6), the engagement between the separation unit 10 and the cancellation levers 8, 8 is canceled. Though
(29) The cutter 9 is configured to cut mount 21 (see
(30) A paper container is formed in the body case 2 to contain the label continuous body P. A paper guide 20 is attached to each of the both lateral faces of this paper container. Each paper guide 20 has a disk shape (Please note that the paper guides 20 is visible in
(31) As shown in
(32) A printing part is disposed in a region adjacent to the paper container in the body case 2. The printing part is configured to print on the label continuous body P released from the paper container. As shown in
(33) Among these members of the printing part, the head bracket 34, the thermal head 35 and the coil spring 36 are attached to the body case 2, while the platen roller 30 and the separation bar 33 are attached to the tip of the opening and closing cover 4.
(34) The platen roller 30 is feeding means of the label continuous body P. This platen roller 30 is supported at the opening and closing cover 4 so that the roller can rotate in the forward direction and the reverse direction via a platen roller shaft 31. The separation bar 33 is configured to mechanically separate the labels 22 after printing from the mount 21 of the label continuous body P when the label printer 1 prints in the separation ejection mode, and The separation bar 33 is disposed in the vicinity of the platen roller 30 so that both ends of the separation bar 33 are pivotally supported at the opening and closing cover 4.
(35) The head bracket 34 is attached to the body case 2, and is configured to keep the opening and closing cover 4 closed. As shown in
(36) As shown in
(37) When the operator sets the opening and closing cover 4 to the body case 2, as shown in
(38) The thermal head 35 of the printing part is configured to print information such as letters, symbols, graphics, or barcodes on the label continuous body P. As shown in
(39) As shown in
(40) At the tip of the opening and closing cover 4 and below the platen roller 30, a light-emitting device 25a and a reflective sensor 26 are attached. A light-receiving device 25b (see
(41) This transmissive sensor is configured to apply light from the light-emitting device 25a to a gap between the light-emitting device 25a and the light-receiving device 25b (that is, a feeding path of the label continuous body P fed from the paper container) and detect the light transmitting through the label continuous body P traveling along this feeding path by the light-receiving device 25b, so as to detect the label position or the like of the label continuous body P. The reflective sensor 26 is configured to detect whether the label continuous body P travels or not along the feeding path as described above, for example.
(42) As shown in
(43) As shown in
(44) A control part, which is not illustrated, is disposed below the operating panel 5 inside the body case 2 shown in
(45) The label printer 1 of the present embodiment may be used transversely with the opening 3a of the front cover 3 directed upward (as shown in
(46) Referring now to
(47) The separation unit 10 includes a metal nip roller shaft 11, a resin nip roller 12, and resin supporters 13, 13. The nip roller 12 is disposed at a center part of the nip roller shaft 11, and is pivotally supported so as to be rotatable around the nip roller shaft 11. The supporters 13, 13 support both ends of the nip roller shaft 11. The separation unit 10 is attached to the body case 2 to be relatively movable between the normal ejection position and the separation ejection position.
(48) When the label printer 1 prints in the separation ejection mode, the nip roller 12 is disposed adjacent to the platen roller 30, and is configured to separate the labels 22 after printing from the mount 21 of the label continuous body P in cooperation with the separation bar 33 (see
(49) Each of the pair of supporters 13, 13 supporting the nip roller 12 has an elongated guide rail hole 13a at one end in the longitudinal direction. The guide rail hole 13a is configured to guide the movement of the separation unit 10 in the body case 2 and to restrict the moving range of the separation unit 10. Each of the pair of supporters 13, 13 has a lever 13b that is integrally formed at the other end, and the lever 13b has a flat upper face. The operator manipulates these levers 13b with his or her fingers so as to move the separation unit 10.
(50) Each of the pair of supporters 13, 13 has a rectangular locking hole 13c in the vicinity of the lever 13b. This locking hole 13c is intended to insert one end of the cancellation lever 8 (see
(51) Each of the pair of supporters 13, 13 has a roller holder 13d protruding toward the nip roller 12. These roller holders 13d are provided to insert ends of the nip roller shaft 11. In the label printer 1 of the present embodiment, the roller holder 13d inserting the end of the nip roller shaft 11 and the supporter 13 are integrally formed with synthetic resin.
(52) The roller holder 13d and the supporter 13 are integrally formed with synthetic resin in the following method. Firstly as shown in step S1 of
(53) In this way, since the roller holders 13d and the supporters 13 are integrally formed with synthetic resin, the supporters 13 employs enhanced mechanical strength. Further since the roller holders 13d, which is integrally formed with the supporters 13, support the nip roller shaft 11 so as to cover both ends of the nip roller shaft 11, the separation unit 10 also employs enhanced mechanical strength. Such integral forming of the roller holders 13d and the supporters 13 enhance the workability during the assembly of the separation unit 10 as well.
(54) Each of the roller holders 13d, 13d, which are integrally formed with the supporters 13, has a protrusion C (one example of a thick portion) along the elongation direction of the nip roller shaft 11. The protrusion C protrudes toward the other end in the longitudinal direction of the supporter 13 (that is, the opposite side of the guide rail hole 13a). In other words, the protrusion C protrudes toward the opposite direction from the separation bar 33 in the vicinity of the platen roller 30 when the separation unit 10 is at the separation ejection position.
(55) As described above, each of the roller holders 13d, 13d, which support the nip roller shaft 11, has the protrusion C, and the protrusion C is a thick portion of the roller holders 13d, 13d. Accordingly the roller holders 13d employs enhanced mechanical strength. As a result, the supporters 13 and accordingly the separation unit 10 can employs more enhanced mechanical strength.
(56) Further, each of the pair of supporters 13, 13 has a metal plate spring 14 attached thereto detachably. Each of these plate springs 14, 14 has a base end that is fixed to the other end side in the longitudinal direction (that is, the side on which the nip roller shaft 11 is attached) of the supporter 13 via a screw 15. The plate spring 14 extends in a curved line from there to one end side in the longitudinal direction (the side on which the guide rail hole 13a is disposed), and the tip of the plate spring 14 floats. As described later, these plate springs 14, 14 are elastic members that are brought into contact with the unit holders 4b (see
(57) Next, the printing step of the label printer 1 will be described. Firstly in case of printing in the normal ejection mode, as shown in
(58) In a case in which the label printer is switched from the normal ejection mode to the separation ejection mode, the engagement between the cancellation levers 8, 8 shown in
(59) Subsequently, as shown in
(60) Similarly to the printing in the normal ejection mode, in case of printing in the separation ejection mode, the platen roller 30 is rotated while the label continuous body P released from the paper container of the body case 2 is pinched between the thermal head 35 and the platen roller 30 as shown in
(61) At this time, the labels 22 after printing are separated from the mount 21 one by one, and are ejected to the outside through the gap (outlet) between the front cover 3 and the tip of the opening and closing cover 4. Meanwhile, the mount 21 pinched between the nip roller 12 of the separation unit 10 and the platen roller 30 via the separation bar 33 is ejected to the outside via the ejection guide 4a of the opening and closing cover 4.
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(63) Thus the protrusion C of the roller holder 13d does not interfere with the separation and feeding of the mount 21 by the separation bar 33 and the nip roller 12. Further, the protrusion C guides the mount 21 passed between the nip roller 12 and the platen roller 30 toward the ejection port, and this can lead to advantageous effect that the mount 21 is prevented from being caught up in the separation unit 10. That is, the labels 22 can be separated favorably during printing in the separation ejection mode.
(64) Although the specific descriptions of the invention by the present inventor have been provided by way of the embodiment, the embodiment disclosed in the specification is illustrative in all aspects and the invention should not be limited to the disclosed techniques. That is, the technical scope of the present invention should not be construed limitedly based on the descriptions on the above embodiments, but should be construed in accordance with the definitions of the claims. The present invention should cover equivalent and all modifications thereof without departing from the scope of claims.
(65) For instance, as shown in
(66) For instance, although the embodiment describes a printer of a double-function type that can be used for both of the normal ejection and the separation ejection, the present invention is not limited to this specific printer. The embodiment is applicable to a printer configured to print in the separation ejection mode only.
(67) Although the present embodiment describes the case in which a label continuous body including a plurality of labels temporarily adhering to a mount is used as a print medium, the present invention is not limited to such case. For instance, a continuous label (mountless label) having an adhesive surface on one side, a continuous sheet without an adhesive surface, or film which can be printed with a thermal head instead of paper, may be used as the print medium. The mountless label, the continuous sheet or the film may have location detection marks thereon. In order to feed a mountless label that exposes adhesive agent, the feeding path may be coated with anti-adhesive and a anti-adhesive roller containing silicone may be used.