Printer
09757962 ยท 2017-09-12
Assignee
Inventors
Cpc classification
B41J15/04
PERFORMING OPERATIONS; TRANSPORTING
B65C9/18
PERFORMING OPERATIONS; TRANSPORTING
B41J3/4075
PERFORMING OPERATIONS; TRANSPORTING
B41J3/36
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65C9/18
PERFORMING OPERATIONS; TRANSPORTING
B41J15/04
PERFORMING OPERATIONS; TRANSPORTING
B41J3/407
PERFORMING OPERATIONS; TRANSPORTING
B41J11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A printer has a separation unit attached to a support board. The separation unit includes a guide rail hole to engage with a shaft so as to slide and swing with respect to the support board. The separation unit moves to a continuous ejection position in which one end of the guide rail hole comes in contact with the shaft, swings in a first rotation direction about the shaft in contact with the other end side of the guide rail hole so as to move away from a thermal head to a swing end position in which the separation unit on the forward end side is within a swing trajectory of the opening and closing cover, and swings from the swing end position in a second rotation direction while engaging on the forward end side with the opening and closing cover moving to the closed position so as to be located at a separation ejection position where the separation roller is adjacent to the feed roller when the opening and closing cover is located at the closed position.
Claims
1. A printer comprising: a housing; an opening and closing cover configured to swing with respect to the housing; a feed roller rotatably located on the opening and closing cover, the feed roller configured to feed a print medium; a print head located so as to be adjacent to the feed roller at a closed position of the opening and closing cover, the print head configured to print on the print medium; and a separation unit configured to swing with respect to the housing, the separation unit including a separation roller, the separation unit being positionable in a separation ejection position where the separation roller is adjacent to the feed roller, and a continuous ejection position where the separation roller is not adjacent to the feed roller, the separation unit swingable in a first direction from the continuous ejection position to a swing end position, the separation unit swinging in a second direction from the swing end position to the separation ejection position, the separation unit on the forward end side being configured to engage with the opening and closing cover as the opening and closing cover moves to the closed position, the second direction being opposite to the first direction.
2. The printer according to claim 1, wherein the opening and closing cover is rotatably located on the housing.
3. A printer comprising: a housing; an opening and closing cover configured to swing with respect to the housing; a feed roller rotatably located on the opening and closing cover, the feed roller configured to feed a print medium; a print head located so as to be adjacent to the feed roller at a closed position of the opening and closing cover, the print head configured to print on the print medium; and a separation unit configured to swing with respect to the housing, the separation unit including a separation roller, the separation unit being positionable in a continuous ejection position where the separation roller is stored inside of the housing, a swing end position where the separation unit is within a swing trajectory of the opening and closing cover when the opening and closing cover is located at an opening position, and a separation ejection position where the separation roller is adjacent to the feed roller.
4. The printer according to claim 3, further comprising a holding member configured to hold the separation unit at the continuous ejection position, wherein the separation unit is movable from the continuous ejection position to the swing end position when the separation unit held by the holding member is released.
5. The printer according to claim 4, wherein the opening and closing cover is rotatably located on the housing.
6. The printer according to claim 3, wherein the opening and closing cover is rotatably located on the housing.
7. A printer comprising: a housing; an opening and closing cover configured to swing with respect to the housing; a feed roller rotatably located on the opening and closing cover, the feed roller configured to feed a print medium; a print head disposed so as to be adjacent to the feed roller at a closed position of the opening and closing cover, the print head configured to print on the print medium; and a separation unit configured to swing with respect to the housing, the separation unit including: a support board having a long hole and a first stopper, a separation roller that is rotatably located on the separation unit, and a first claw, the separation unit being positionable in a continuous ejection position where the swing shaft is located in a first position in the long hole and the separation roller is not adjacent to the feed roller, a swing end position where the separation unit is within a swing trajectory of the opening and closing cover, and a separation ejection position where the separation roller is adjacent to the feed roller, the separation unit being configured to move from the continuous ejection position while the long hole engages with the swing shaft until the swing shaft is located on a second position in the long hole, and swing in a first direction about the swing shaft to move to the swing end position until the first claw comes in contact with the first stopper, the swing shaft being located in the second position in the long hole at the swing end position, and the separation unit being configured to swing in a second direction to move from the swing end position to the separation ejection position, and engage with the opening and closing cover as the closing of the opening and closing cover moves to the closed position, the second direction being opposite to the first direction.
8. The printer according to claim 7, further comprising an elastic member configured to apply a first biasing force to the separation unit to locate the swing shaft in the second position in the long hole, and to apply a second biasing force to swing the separation unit in the first direction about the swing shaft.
9. The printer according to claim 8, wherein the support board has a guide surface configured to guide the separation unit when the separation unit moves from the continuous ejection position, the first claw sliding on the guide surface when the separation unit moves from the continuous ejection position.
10. The printer according to claim 8, wherein the support board includes a second stopper, and the separation unit has a second claw configured to come in contact with the second stopper so as to regulate the separation unit to return to the continuous ejection position.
11. The printer according to claim 8, wherein the support board has a regulation surface configured to regulate the separation unit to return to the continuous ejection position, the first claw sliding on the regulation surface when the separation unit moves from the swing end position to the separation ejection position.
12. The printer according to claim 8, wherein the opening and closing cover is rotatably located on the housing.
13. The printer according to claim 7, wherein the support board has a guide surface configured to guide the separation unit when the separation unit moves from the continuous ejection position, the first claw sliding on the guide surface when the separation unit moves from the continuous ejection position.
14. The printer according to claim 13, wherein the support board includes a second stopper, and the separation unit has a second claw configured to come in contact with the second stopper so as to regulate the separation unit to return to the continuous ejection position.
15. The printer according to claim 13, wherein the support board has a regulation surface configured to regulate the separation unit to return to the continuous ejection position, the first claw sliding on the regulation surface when the separation unit moves from the swing end position to the separation ejection position.
16. The printer according to claim 13, wherein the opening and closing cover is rotatably located on the housing.
17. The printer according to claim 7, wherein the support board includes a second stopper, and the separation unit has a second claw configured to come in contact with the second stopper to regulate the separation unit to return to the continuous ejection position.
18. The printer according to claim 17, wherein the support board has a regulation surface configured to regulate the separation unit to return to the continuous ejection position, the first claw sliding on the regulation surface when the separation unit moves from the swing end position to the separation ejection position.
19. The printer according to claim 7 wherein the support board has a regulation surface configured to regulate the separation unit to return to the continuous ejection position, the first claw sliding on the regulation surface when the separation unit moves from the swing end position to the separation ejection position.
20. The printer according to claim 7, wherein the opening and closing cover is rotatably located on the housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(26) The present invention relates to Japanese Patent Application No. 2014-096924, filed on May 8, 2014, the contents of which are incorporated herein by reference.
(27) The following describes one embodiment of the present invention as one example 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.
(28)
(29) As shown in
(30) The body case 2 is a housing that defines a part of the outer shape of the printer 1. On one face of the body case 2, an opening 2a is formed as shown in
(31) As shown in
(32) As shown in
(33) The opening and closing cover 3 is an opening and closing cover of the paper container 6. In order that one end in the longitudinal direction (at a part closer to the center of the body case 2 in the longitudinal direction) of the opening and closing cover 3 can move away and closer to the body case 2, the other end in the longitudinal direction of the opening and closing cover 3 is pivotally supported at one end part in the longitudinal direction of the body case 2 via a hinge or the like. The opening and closing cover 3 is biased to the opening direction (the direction in which the one end in the longitudinal direction of the opening and closing cover 3 moves away from the body case 2) with a torsional spring (not illustrated in
(34) As shown in
(35) As shown in
(36) As shown in
(37) As shown in
(38) The separation unit 4 has a function to separate the labels PL from the mount PM during the separation ejection and to cause the feeding paths of the mount PM and the labels PL to branch. The one end in the longitudinal direction of the separation unit 4 can move between the continuous ejection position inside of the printer 1 and the separation ejection position outside of the printer 1. The configuration of the separation unit 4 is described later.
(39) As shown in
(40) The display unit 15 is a screen to display an operation command, a message or the like. The display unit 15 is an LCD (Liquid Crystal Display), for example. The operation buttons 16a, 16b are configured to manipulate the operation of the printer 1. The power-supply button 17 is configured to turn the power supply of the printer 1 on or off.
(41) The cover-open button 18 is configured to open the opening and closing cover 3. The release levers 19 are configured to hold the separation unit 4 at the continuous ejection position. The held separation unit 4 can be released by moving these release levers 9 closer to each other.
(42) The cutter 20 is configured to cut the mount PM of the label continuous body P that is continuously ejected. The cutter 20 is located at a forward end part of the front cover 5 on the opposite side of the opening and closing cover 3. The cutter 20 extends along the width direction of the label continuous body P. The outlet is formed between the opening and closing cover 3 and the front cover 5.
(43) The following describes the separation unit 4 with reference to
(44) The separation unit 4 includes a separation roller 4a, a shaft 4b, a pair of supporters 4c, a pair of plate springs 4da and a screw 4e.
(45) The separation roller 4a is rotatably located at the separation unit on the forward end side that is on one end side adjacent to the opening and closing cover 3. The separation roller 4a is located so as to be adjacent to the platen roller 10 during the separation ejection. Therefore, the mount PM inserted between this separation roller 4a and the platen roller 10 is fed while being pinched between the separation roller 4a and the platen roller 10.
(46) This separation roller 4a is made of an elastic member such as rubber. The separation roller 4a is pivotally supported at the shaft 4b that is sandwiched between one ends in the longitudinal direction of the pair of supporters 4c, so as to rotate. The separation roller 4a has a length that is shorter than the overall length of the shaft 4b. That is, the separation roller 4a is partly located at the center in the axial direction of the shaft 4b. The separation roller 4a is pressed toward the platen roller 10 via the label continuous body P during the separation ejection, so as to rotate following the rotation of the platen roller 10.
(47) The pair of supporters 4c is configured to support the separation roller 4a and the shaft 4b. An eave 4cp is formed at an upper part on one end side in the longitudinal direction of each supporter 4c. The eave 4cp extends outwardly from a lateral face of each supporter 4c. As shown in
(48) The pair of plate springs 4da is an elastic structure that comes into contact with the pressing parts 3a of the opening and closing cover 3 so as to bias the separation roller 4a toward the platen roller 10 when the opening and closing cover 3 is closed while the separation unit 4 moves to the separation ejection position. In an outer lateral face of each supporter 4c, each plate spring 4da is fixed at the one end side in the longitudinal direction of the supporter 4c (the side on which the separation roller 4a is located), and extends from the one end side in the longitudinal direction of the supporter 4c like a curve toward the other end side (the side on which the guide rail hole 4ch is located) in the longitudinal direction. The terminal end of each plate spring 4da floats.
(49) The internal configuration of the printer 1 is described with reference to
(50) As shown in
(51) The head bracket 27 is configured to hold the opening and closing cover 3 that is closed. This head bracket 27 is located in the body case 2 so as to swing about a rotating shaft 27a on the opposite side of the platen roller 10 when the opening and closing cover 3 is closed.
(52) This head bracket 27 has a groove 27b. In this groove 27b, the platen shaft 10a of the platen roller 10 is fitted so that the head bracket 27 holds the opening and closing cover 3.
(53) The head bracket 27 has a pressurization part 27c. This pressurization part 27c is located at a position (immediately below) adjacent to the cover-open button 18 shown in
(54) The thermal head 28 (see
(55) The coil spring 29 (see
(56) As shown in
(57) The continuous ejection and the separation ejection by the printer 1 are described with reference to
(58) In both of the continuous ejection mode and the separation ejection mode, at the printing step, while the label continuous body P reeled off from the paper container 6 is pinched between the thermal head 28 and the platen roller 10, the platen roller 10 is rotated to feed the label continuous body P. During this feeding, print timing is determined based on the information detected by the sensors 12. Then heat is selectively generated at the heater resistors of the thermal head 28 in accordance with the print signals transmitted to the thermal head 28 at the determined print timing, whereby desired information is printed on the labels PL of the label continuous body P.
(59) During the continuous ejection mode, as shown in
(60) As shown in
(61) Meanwhile, during the separation ejection mode, as shown in
(62) The printer 1 of the present embodiment can be switched between the continuous ejection mode and the separation ejection mode. Therefore, this printer 1 can support two situations including the situation in which the target for attachment of labels PL is located close to the printer 1, and the other situation in which such target is away from the printer 1. This makes the printer 1 useful and economical.
(63) Referring to
(64) The support board 41 is located in the opening 2a of the body case 2. This support board 41 has a base 41a. At this base 41a, a separation sensor 43 is located that is a light-reflective sensor configured to detect the presence or absence of the labels PL during the separation ejection. At both ends in the width direction of the base 41a, a pair of unit attachment parts 41b configured to attach the separation unit 4 is located.
(65) Each of the unit attachment parts 41b has a first attachment piece 41ba located outside in the width direction of the base 41a and a second attachment piece 41bb located inside in the width direction of the base 41a. This second attachment piece 41bb is adjacent to the first attachment piece 41ba. The small gap is formed between the first attachment piece 41ba and the second attachment piece 41bb. The supporter 4c of the separation unit 4 is located at the small gap and sandwiched between the first attachment piece 41ba and the second attachment piece 41bb.
(66) At each of the unit attachment parts 41b, a shaft 42 is mounted so as to extend between the first attachment piece 41ba and the second attachment piece 41bb. This shaft 42 is inserted into the guide rail hole 4ch that is formed at the supporter 4c. The supporter 4c is sandwiched between the first attachment piece 41ba and the second attachment piece 41bb. That is, the guide rail hole 4ch engages with the shaft 42.
(67) Therefore, as the guide rail hole 4ch moves along the shaft 42, the separation unit 4 can slide along the shaft 42 and can swing about the shaft 42.
(68) As shown in
(69) This configuration applies the separation unit 4 receives a first biasing force and a second biasing force to the separation unit 4. The direction of the first biasing force is a direction in which the guide rail hole 4ch on the attachment protrusion 4ci side contacts with the shaft 42 (in the opposite direction from the continuous ejection position). The direction (one example of a first rotation direction) of the second biasing force is a direction in which the separation unit 4 swings away from the thermal head 28 about the guide rail hole 4ch on the attachment protrusion 4ci side as the fulcrum that is in contact with the shaft 42 due to the first biasing force. That is, the coil spring 44 applies the two biasing forces, including the first biasing force for sliding and the second biasing force for swinging in the first rotation direction, to the separation unit 4.
(70) Thereby, when the holding at the continuous ejection position is released by the release levers 19, the biasing force of the coil spring 44 causes the separation unit 4 to move (slide) in the opposite direction from the continuous ejection position. When the one end of the guide rail hole 4ch comes in contact with the shaft 42 (slide movement position), the separation unit 4 swings about the shaft 42 as the fulcrum in the first rotation direction to a predetermined swing end (swing end position).
(71) As shown in
(72) The first protrusion 41be has a guide surface 45. When the separation unit 4 slides from the continuous ejection position to the opposite side along the shaft 42, the first claw 4cj slides along this guide surface 45 so as to guide the movement direction of the separation unit 4. The first protrusion 41be has a first stopper 46 as well. This first stopper 46 is configured to come in contact with the first claw 4cj when the separation unit 4 swings about the shaft 42 as the fulcrum in the first rotation direction as described above, so as to define the swing end position. The first protrusion 41be has a regulation surface 47 as well. When the separation unit 4 swings from the swing end position in a second rotation direction opposite to the first rotation direction to move to the separation ejection position, this regulation surface 47 is configured to regulate the first claw 4cj to slide and the separation unit 4 to return to the continuous ejection position.
(73) At the swing end position of the separation unit 4 at which the first claw 4cj comes in contact with the first stopper 46, the separation unit 4 on the one end side that is adjacent to the opening and closing cover 3 (one example of the forward end side) is within the swing trajectory of the opening and closing cover 3.
(74) Meanwhile, the second protrusion 41bf is located at a second stopper 48. When the separation unit 4 is positionable in the separation ejection position, the second claw 4ck comes in contact with the second protrusion 41bf so as to regulate the separation unit 4 to return to the continuous ejection position.
(75) Referring to
(76)
(77) As shown in
(78) From this continuous ejection position, the opening and closing cover 3 is moved to the opening position when the cover-open button 18 is pushed. The holding of the separation unit 4 at the continuous ejection position is released when the release levers 19 is manipulated. When the holding of the separation unit 4 is released, as shown in
(79) Subsequently, as shown in
(80) As described above, when the separation unit 4 is positionable in the swing end position, the separation unit 4 on the forward end side that is the one end side adjacent to the opening and closing cover 3 is within the swing trajectory of the opening and closing cover 3.
(81) As shown in
(82) When the opening and closing cover 3 is completely closed, as shown in
(83) In order to move the separation unit 4 from the separation ejection position to the continuous ejection position, the opening and closing cover 3 is moved to the open position by pressing the cover-open button 18, so as to release the holding of the separation unit 4 that is held at the separation ejection position by the opening and closing cover 3. Thereby, the biasing force of the coil spring 44 causes the separation unit 4 to swing in the first rotation direction. When the separation unit 4 swings in the first rotation direction, the first claw 4cj of the supporter 4c comes in contact with the first stopper 46 of the support board 41. Thereby, the separation unit 4 is positionable in the swing end position.
(84) The separation unit 4 is caused to swing in the second rotation direction against the biasing force of the coil spring 44 by pressing the first claw 4cj of the separation unit 4 against the regulation surface 47 of the support board 41. When the separation unit 4 reaches at the end of the regulation surface 47, the separation unit 4 moves to the slide movement position (the position where the separation unit slides in the opposite side of the continuous ejection position) as described above. When the separation unit 4 is pressed against the biasing force of the coil spring 44, the separation unit 4 is positionable in the continuous ejection position and is fixed to the continuous ejection position by the release levers 19.
(85) In this way, in the present embodiment, when the holding of the separation unit 4 at the continuous ejection position is released, the separation unit 4 swings in the first rotation direction, so that the one end side of the separation unit that is adjacent to the opening and closing cover 3 is positionable in the swing end position within the swing trajectory of the opening and closing cover 3. Therefore, as the opening and closing cover 3 is closed, the forward end of the separation unit 4 engages with the forward end of the opening and closing cover 3 and swings. When the opening and closing cover 3 is located at the closed position, the separation unit 4 is positionable in the separation ejection position. In this way, the separation unit 4 can be easily switched from the continuous ejection position to the separation ejection position.
(86) The specific description of the invention by the present inventor have been provided by way of the embodiments, however, the embodiments disclosed in the specification are illustrative in all aspects and 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.
(87) For instance, in the present embodiment, the guide rail hole 4ch that is the long hole comes in contact with the shaft 42 as the swing shaft at the one end or the other end. However, the guide rail hole 4ch may not come in contact with the shaft 42 at their ends. That is, it is enough that the shaft 42 as the swing shaft may be located on the one side or on the other side of the guide rail hole 4ch as the long hole.
(88) Although the present embodiment describes the case using a label continuous body including a plurality of labels temporarily adhering to a mount as a print medium, the present invention is not limited to this. For instance, a label continuous body (mountless label) having one face as an adhesive face or a continuous sheet without an adhesive face as well as film which can be printed with a thermal head instead of the 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, the feeding path may be coated with non-adhesive and a non-adhesive roller containing silicone may be used.