The present invention relates to a shelf tag attachment apparatus.
As a shelf tag attachment apparatus for attaching, to a product shelf, a shelf tag for displaying a product price or the like, for example, an adaptor for a double hook hanger (hereinafter, referred to as an “adaptor”) described in PTL 1 is suggested.
The adaptor described in PTL 1 is an adaptor mounted to a tip of an upper bar member, and is constituted of a price display tool, a tip engagement member, and an intermediate member.
The price display tool includes a price display means support portion on a front surface, and a back engagement portion on a rear surface. The tip engagement member includes a pair of left and right engagement protrusions mounted to the tip of the upper bar member. The intermediate member includes a first engagement portion being engaged with the back engagement portion of the price display tool, and a second engagement portion being engaged with a pair of the engagement protrusions of the tip engagement member.
The second engagement portion of the intermediate member is constituted of a pair of left and right upper arm portions, and a pair of left and right lower arm portions forming, in an inner peripheral portion, a raised portion formed by two depressed portions. A pair of the left and right engagement protrusions each includes a protruding portion extending in a frontward and diagonally downward direction, in a lower front portion of a minor-axis member having a substantially circular cross section, and are held between inner sides of the upper arm portion and the lower arm portion.
According to the adaptor described in PTL 1, when a displayed product is pulled out, the product or a hand of a person contacts the rear surface of the price display tool, and, thereby, the price display tool has a display surface facing diagonally upwards about a pair of the engagement protrusions of the tip engagement member. Then, when pull-out of the product is completed, and external force is eliminated, the price display tool rotates, by weight thereof, about a pair of the engagement protrusions of the tip engagement member in a direction of returning to an original pose. PTL 1 describes that, since the rotation is finished by abutment between a rear surface of the intermediate member and a front surface of the tip engagement member, the display surface of the price display tool is brought into a vertical state, and returns to an original display pose.
[PTL 1] Japanese Utility Model Registration Publication No. 3137183
According to PTL 1, as described above, downward rotation of a price display tool by weight thereof is suppressed in a previously determined range, by abutment between a rear surface of an intermediate member and a front surface of a tip engagement member. Specifically, a display surface of the price display tool is suppressed from facing downwards further than a vertical state.
However, in an adaptor described in PTL 1, both the intermediate member and the tip engagement member require a configuration that abuts in order to suppress downward rotation of the price display tool by weight thereof, and a structure of the adaptor becomes complicated.
The present invention has been made in view of a situation described above, and one of objects thereof is to suppress, by a shelf tag attachment apparatus having a relatively simple structure, a display surface of a shelf tag from rotating beyond a previously determined range in a direction to face downwards.
In order to achieve the object described above, a shelf tag attachment apparatus according to the present invention includes:
According to the present invention, by a shelf tag attachment apparatus having a relatively simple structure, it becomes possible to suppress a display surface of a shelf tag from rotating beyond a previously determined range in a direction to face downwards.
Hereinafter, one example embodiment of the present invention is described by use of the drawings. Note that, in all of the drawings, a similar component is assigned with a similar reference sign, and description thereof is omitted, as appropriate.
As illustrated in a perspective view in
The electronic shelf tag 101 is a shelf tag including, in a display surface, a display portion 104 configured by, for example, a liquid crystal display panel. Typically, a product name, a price, an advertisement, and the like are displayed on the display portion 104. Note that, the electronic shelf tag 101 is one example of a first shelf tag, and the first shelf tag may be made of paper, paper held onto a resin plate, made of resin, or the like.
In the present example embodiment, it is assumed that, when an orientation of a character, a sign, or the like displayed on the display portion 104 is correctly faced in an up-down direction, and the display portion 104 (i.e., the display surface) is disposed parallel to a vertical direction, a direction in which the display portion 104 faces is a frontward direction, and a direction opposite thereto is a backward direction. Moreover, the up-down direction in this case conforms to a vertically upward side and a vertically downward side opposite thereto. It is assumed that a left-right direction is defined by being viewed from front, and is equivalent to a lateral direction. Note that, the directions are used in order to describe the present invention, and are not intended to limit the present invention.
As illustrated in a perspective view in
Specifically, the groove portion 105 is constituted of a front step portion 106, an upwardly facing upper surface portion 107, and a back wall portion 108 provided with a clearance at a back end of the upper surface portion 107. The back wall portion 108 is provided with a clearance (gap), and, thereby, the groove portion 105 is discretely provided with a clearance in the lateral direction. Thus, the groove portion 105 includes a backwardly open portion.
In the present example embodiment, the three back wall portions 108 arranged in the lateral direction are provided, a clearance is provided between the middle back wall portion 108 and each of the left and right back wall portions 108, and, thereby, the groove portion 105 is opened backwards at two places.
Although the groove portion 105 (the upper groove portion 105) provided at the upper end of the electronic shelf tag 101 has been described with reference to
In other words, the groove portion 105 (the lower groove portion 105) provided at the lower end of the electronic shelf tag 101 is constituted of a front step portion, a downwardly facing lower surface portion, and a back wall portion provided with a clearance at a back end of the lower surface portion. In the lower groove portion 105 as well, the three back wall portions 108 arranged in the lateral direction are provided with a clearance. Thereby, the lower groove portion 105 is also discretely provided with a clearance in the lateral direction, similarly to the upper groove portion 105.
In the present example embodiment, a position, in the left-right direction, of a backwardly open region is the same in the upper and lower groove portions 105.
The support member 102 is a member that supports the shelf tag holding portion 103 to which the electronic shelf tag 101 is attached rotatably about a rotation axis P extending in the lateral direction of the electronic shelf tag 101, and is attached to a first product shelf MS1 as one example is illustrated in
As illustrated in
The support member 102 includes left and right arm portions 110 provided in pairs, and a coupling and fixing portion 111 for coupling the arm portions 110 and fixing the arm portions 110 to the rod-shaped body 109.
The left and right arm portions 110 are flat-plate-shaped portion oppositely disposed with a clearance in the left-right direction, and are elongated in a front-back direction. A tip of each of the arm portions 110 is substantially in a semi-circular shape, when viewed from the lateral direction.
Each of the left and right arm portions 110 includes a shaft portion 112 as a second fit portion extending inwards in a vicinity of a tip of an inner surface. Herein, the inner surface is a surface facing an inward side. Moreover, the inward side is a right side in the left arm portion 110, and is a left side in the right arm portion 110.
In the present example embodiment, the shaft portion 112 is provided through a center of a semicircle formed by an outer shape of a tip when viewed from the lateral direction.
The coupling and fixing portion 111 is a flat-plate-shaped portion being parallel to the up-down direction and being elongated in the left-right direction, and a tip of the rod-shaped body 109 is fixed to substantially a center in the left-right direction. A back end of the arm portion 110 is connected to each of left and right ends of the coupling and fixing portion 111.
As illustrated in perspective views in
The shelf tag attachment portion 113 is a substantially rectangular flat-plate-shaped portion having thickness in the front-back direction. In the present example embodiment, an upper end and a lower end of the shelf tag attachment portion 113 extend in the left-right direction, and a left end and a right end extend in the up-down direction.
The flange portion 114 projects frontwards from each of the upper end and lower end of the shelf tag attachment portion 113, and continues in the lateral direction.
The upper protrusion portion 115 projects downwards, and the lower protrusion portion 115 projects upwards. Thereby, the upper protrusion portion 115 fits into the upper groove portion 105, the lower protrusion portion 115 fits into the lower groove portion 105, and the electronic shelf tag 101 is held.
Specifically, the upper protrusion portion 115 projects downwards from the upper flange portion 114, and is provided in such a way as to be discretely arranged in the left-right direction. In the present example embodiment, three pieces are provided in such a way as to be arranged with clearances (gaps) on left and right sides.
The lower protrusion portion 115 projects upwards from the lower flange portion 114, and is provided in such a way as to be discretely arranged in the left-right direction. In the present example embodiment, three pieces are provided in such a way as to be arranged with clearances in the left-right direction.
In the present example embodiment, the protrusion portion 115 is provided in a vicinity of a front end of the flange portion 114, and, thereby, a groove is formed between the shelf tag attachment portion 113 and the protrusion portion 115. Then, since the upper protrusion portion 115 and the lower protrusion portion 115 are arranged with a clearance in the left-right direction as described above, the groove between the shelf tag attachment portion 113 and the protrusion portion 115 opens frontwards through the clearance.
A clearance provided for the upper protrusion portion 115 and a clearance provided for the lower protrusion portion 115 are at the same position in the left-right direction. In other words, positions, in the left-right direction, of frontwardly open regions are the same in upper and lower grooves.
The spring portion 116 includes a press protrusion 121 being a cantilever-beam-shaped portion provided substantially in a center of the shelf tag attachment portion 113 when viewed from front, and projecting frontwards in a vicinity of a tip. When the electronic shelf tag 101 is attached, the spring portion 116 has the press protrusion 121 pressed by a rear surface of the electronic shelf tag 101, and pushes the electronic shelf tag 101 frontwards by elastic force.
The clip portion 117 is provided on a rear surface of the shelf tag attachment portion 113, and forms a cut being open on a lower side for sandwiching a plate provided in a second product shelf MS2 as a shelf.
As illustrated in a perspective view in
The L-shaped plate 124 is a plate-shaped member bent in an L-shape when viewed from the left-right direction. The L-shaped plate 124 includes a front plate 125 disposed substantially parallel to the partition plate 123 in front of the partition plate 123 with a relatively small gap, and a fixed portion 126 being fixed below the shelf 122 by screwing or the like. The clip portion 117 is a portion for sandwiching the front plate 125 being provided by insertion from below.
Specifically, each of the left and right clip portions 117 includes an extension portion 127 extending backwards from the rear surface of the shelf tag attachment portion 113, and a suspended portion 128 suspending downwards from a back end of the extension portion 127. A gap for sandwiching the front plate 125 as described above is formed between the suspended portion 128 and the shelf tag attachment portion 113 by including the extension portion 127, and elastic force for sandwiching and holding the front plate 125 can be applied to the front plate 125 when the front plate 125 is sandwiched.
Moreover, a bearing portion 129 as a first fit portion into which the shaft portion 112 fits is provided in a part in which each of the left and right clip portions 117 is connected to the shelf tag attachment portion 113. The bearing portion 129 according to the present example embodiment forms a cylindrical through-hole extending on left and right sides, and is provided in the extension portion 127, the suspended portion 128, and the shelf tag attachment portion 113.
Lengths, in the up-down direction, of the suspended portions 128 provided in the left and right clip portions 117 differ from each other, and, in the present example embodiment, the left suspended portion 128 is longer than the right suspended portion in the up-down direction. The left suspended portion 128 is provided with a stopper 130 being a pin-shaped portion projecting leftwards from a left end of the left suspended portion 128.
In the present example embodiment, a right end of the right clip portion 117 is configured flush with the right end of the shelf tag attachment portion 113, and a left end of the left clip portion 117 is configured flush with the left end of the shelf tag attachment portion 113. Thus, the stopper 130 projects leftwards from the left end of the left suspended portion 128, and thereby projects in the lateral direction from a side portion (the left end of the shelf tag attachment portion 113) of the shelf tag holding portion 103.
The stopper 130 according to the present example embodiment is provided in only the left suspended portion 128, is not provided in the right suspended portion 128, and a position of the stopper 130 in the up-down direction is lower than a lower end of the right suspended portion 128.
The plug portion 118 is provided on the rear surface of the shelf tag attachment portion 113, and forms a cut, being open on an upper side, for holding a display plate 131 as a second shelf tag. The display plate 131 is a relatively thin sheet-shaped member made of paper, resin, or the like for displaying an advertisement or the like of a product.
The holding plate portion 119 is a flat-plate-shaped portion, in the rear surface of the shelf tag attachment portion 113, projecting backwards below the left and right clip portions 117 and extending in the lateral direction. The holding plate portion 119 is in a flat plate shape in which an upper surface and a lower surface are parallel to each other, and is preferably substantially perpendicular to the rear surface of the shelf tag attachment portion 113. Thereby, removal from a mold becomes easy, and it becomes possible to ease manufacture.
The holding plate connection portion 120 connects a base end of the holding plate portion 119 and the shelf tag attachment portion 113. The holding plate connection portion 120 is thinner than the holding plate portion 119 regarding thickness being a length in the up-down direction, and is provided with a plurality of through-holes H (long holes being long on left and right sides in the present example embodiment) passing through in the up-down direction.
The holding plate portion 119 is connected to the rear surface of the shelf tag attachment portion 113 via such a holding plate connection portion 120, and, thereby, the holding plate portion 119 can be easily separated from the shelf tag attachment portion 113. For example, the holding plate connection portion 120 is easily subjected to brittle fracture by swinging the holding plate portion 119 up and down about the holding plate connection portion 120 several times in a state where the shelf tag attachment portion 113 is held. Thereby, the holding plate portion 119 can be easily separated from the shelf tag attachment portion 113.
Note that, the holding plate connection portion 120 may be configured to be capable of separating the holding plate portion 119 from the shelf tag attachment portion 113, and may be provided with no through-hole when the holding plate connection portion 120 is thinner than the holding plate portion 119. When a through-hole in the up-down direction is provided, the through-hole is not limited to a long hole being long in the left-right direction as in the example embodiment, and may be a relatively small hole in such a shape as a substantially cylindrical shape being shorter in length in the left-right direction than in the example embodiment. When a small through-hole is adopted, a plurality of through-holes may be arranged and provided in the left-right direction with a relatively shorter clearance, and, thereby, the holding plate connection portion 120 may be perforated.
So far, the configuration of the shelf tag attachment apparatus 100 has been described. From now on, a method of attaching and detaching the electronic shelf tag 101 to and from the shelf tag holding portion 103 is described.
The electronic shelf tag 101 is pressed against the shelf tag attachment portion 113 from a front side of the shelf tag holding portion 103 in such a way that the back wall portion 108 passes through a gap of the protrusion portion 115.
Specifically, the electronic shelf tag 101 is pressed against the shelf tag attachment portion 113 from the front side of the shelf tag holding portion 103 in such a way that the upper back wall portion 108 passes through a gap of the upper protrusion portion 115, and the lower back wall portion 108 passes through a gap of the lower protrusion portion 115. In this instance, the upper protrusion portion 115 passes through a gap of the upper back wall portion 108, and the lower protrusion portion 115 passes through a gap of the lower back wall portion 108.
Thereby, as illustrated in
In a state illustrated in
From the state illustrated in
Thereby, the electronic shelf tag 101 is held to the shelf tag holding portion 103, and attachment of the electronic shelf tag 101 is finished.
When the electronic shelf tag 101 is detached from the shelf tag holding portion 103, a process being opposite to the attachment method described above may be performed.
In other words, the electronic shelf tag 101 is slid and moved leftwards or rightwards in such a way that the upper back wall portion 108 is located behind a gap of the upper protrusion portion 115, and the lower back wall portion 108 is located behind a gap of the lower protrusion portion 115. Then, the electronic shelf tag 101 is moved frontwards relative to the shelf tag attachment portion 113, and, thereby, the electronic shelf tag 101 is detached from the shelf tag holding portion 103.
Thus, in the shelf tag attachment apparatus 100 according to the present example embodiment, both a combination of the upper groove portion 105 and the protrusion portion 115 that fits into the groove portion 105, and a combination of the lower groove portion 105 and the protrusion portion 115 that fits into the groove portion 105 are discretely provided.
Thereby, when the electronic shelf tag 101 is attached to and detached from the shelf tag holding portion 103, there is no longer a need to slide and move a right end of the electronic shelf tag 101 to a left end of the shelf tag holding portion 103, or a left end of the electronic shelf tag 101 to a right end of the shelf tag holding portion 103. With a movement amount less than a movement amount of such slide and movement in the left-right direction, the electronic shelf tag 101 according to the present example embodiment can be attached to and detached from the shelf tag holding portion 103.
Therefore, it becomes possible to attach the electronic shelf tag 101 in a small work space.
Moreover, in the present example embodiment, the flange portion 114 is provided continuously in the lateral direction. Moreover, the upper protrusion portion 115 projects downwards from the upper flange portion, and the lower protrusion portion 115 projects upwards from the flange portion projecting frontwards from the lower end of the shelf tag attachment portion 113.
Thereby, it becomes more difficult for dust to enter the groove portion 105 in a state where the electronic shelf tag 101 is attached to the shelf tag holding portion 103, than when the flange portion 114 is discretely provided with a gap. Thus, a possibility that slide and movement of the protrusion portion 115 is blocked due to dust entering the groove portion 105 can be reduced.
Therefore, even when time elapses in a state where the electronic shelf tag 101 is attached to the shelf tag holding portion 103, it becomes possible to easily detach the electronic shelf tag 101 from the shelf tag holding portion 103.
Further, in the present example embodiment, as illustrated in a side view in
Particularly in the present example embodiment, as described above, the electronic shelf tag 101 is detached from the shelf tag holding portion 103 by relatively slight slide and movement. There is a possibility that the electronic shelf tag 101 easily comes off the shelf tag holding portion 103, falls, and is damaged. By inhibiting slide and movement of the electronic shelf tag 101 by the spring portion 116, it becomes possible to reduce such a possibility of damage of the electronic shelf tag 101.
Further, in the present example embodiment, as illustrated in the side view in
Further, in the present example embodiment, the plug portion 118 forming a cut, being open on an upper side, for holding the display plate 131 is provided. Thereby, as illustrated in
Each of the left and right shaft portions 112 is positioned in such a way as to be sandwiched between the left and right arm portions 110 from the left-right direction, and inserted from below each of the left and right clip portions 117. Then, the shelf tag holding portion 103 is pressed downwards against the arm portion 110.
Thereby, as illustrated in
The shelf tag holding portion 103 attached to the arm portion 110 can rotate about rotation axis P passing through centers of the left and right shaft portions 112. Particularly in the present example embodiment, since the tip of the arm portion 110 is in a semi-circular shape, the stopper 130 moves along the tip of the arm portion, and thereby the shelf tag holding portion 103 can rotate about the rotation axis P relative to the support member 102, as illustrated by an arc-shaped arrow in
Herein,
Generally, the display portion 104 may face downwards by touching a hand of a customer or the like who purchases a product.
Moreover, generally, the electronic shelf tag 101 weighs approximately 30 grams, and is heavy as compared with a shelf tag made of paper or resin, and, therefore, there is a concern that the display portion 104 faces downwards by weight thereof in the shelf tag holding portion 103 holding the electronic shelf tag 101.
Particularly, a gravity center of the general electronic shelf tag 101 is mostly positioned substantially in a center or in a vicinity of a center in the up-down direction, and, as illustrated in
In the present example embodiment, the stopper 130 projecting leftwards as described above is provided in the left suspended portion 128. Thus, by contacting a lower end of the left arm portion 110 behind the rotation axis P, the shelf tag holding portion 103 is locked in such a way that the display portion 104 does not rotate beyond a previously determined range in a direction to face downwards.
Rotation in a direction in which the display portion 104 faces downwards means rightward rotation about the rotation axis P in
Referring to
Thus, according to the present example embodiment, only providing the stopper 130 projecting in the lateral direction can suppress the display portion 104 of the electronic shelf tag 101 from rotating beyond a previously determined range in a direction to face downwards. Therefore, by the shelf tag attachment apparatus 100 having a relatively simple structure, it becomes possible to suppress the display portion 104 of the electronic shelf tag 101 from rotating beyond a previously determined range in a direction to face downwards.
Further, in the present example embodiment, a stopper is provided, in the left-right direction, at a position being far from the gravity center of the shelf tag holding portion. By being far from gravity center G in the left-right direction, the display portion 104 of the electronic shelf tag 101 can be suppressed, with relatively small force, from rotating beyond a previously determined range in a direction to face downwards. Thus, rotation can be sufficiently suppressed even when the stopper 130 is relatively small.
Therefore, by the shelf tag attachment apparatus 100 having a simple structure, it becomes possible to suppress the display portion 104 of the electronic shelf tag 101 from rotating beyond a previously determined range in a direction to face downwards.
Generally, the gravity center of the electronic shelf tag 101 is mostly positioned substantially in a vicinity of a center in the left-right direction, and, thus, the gravity center G of the shelf tag holding portion 103 holding the electronic shelf tag 101 is also mostly positioned substantially in a vicinity of a center in the left-right direction.
Particularly, the stopper 130 according to the present example embodiment projects leftwards from the left end of the left suspended portion 128. This means that the stopper 130 is provided at a place that mostly becomes a position being farthest, in the left-right direction, from the gravity center G of the shelf tag holding portion 103 holding the electronic shelf tag 101.
Thus, in the present example embodiment, the display portion 104 of the electronic shelf tag 101 can be suppressed, with relatively small force, from rotating beyond a previously determined range in a direction to face downwards, and rotation can be sufficiently suppressed even when the stopper 130 is relatively small.
Therefore, by the shelf tag attachment apparatus 100 having a simpler structure, it becomes possible to suppress the display portion 104 of the electronic shelf tag 101 from rotating beyond a previously determined range in a direction to face downwards.
When the shelf tag holding portion 103 holding the electronic shelf tag 101 is attached to the second product shelf MS2, there are two attachment methods depending on a relation between a length L1 and a length L2, as illustrated in
A first attachment method to the second product shelf MS2 is a method of attaching the shelf tag holding portion 103 to the second product shelf MS2 when the length L1 is equal to or less than the length L2. As one example of this case,
As illustrated in a right side view in
In this case, the electronic shelf tag 101 attached to the second product shelf MS2 via the shelf tag holding portion 103 not only sandwiches the front plate 125, but is also held by the holding plate portion 119, as described above. In other words, even when force by which the display portion 104 swings in such a way as to face upwards or downwards or force by which the display portion 104 moves upwards is applied, a range of the swing or movement is limited by contact of the holding plate portion 119 with a lower surface of the second product shelf MS2 (in the example in
Thus, even when force is applied to the electronic shelf tag 101 by, for example, touching or the like of a hand of a purchaser of a product on the second product shelf MS2, it becomes difficult for the electronic shelf tag 101 to come off the second product shelf MS2. Therefore, it becomes possible to reduce a possibility that the electronic shelf tag 101 falls and is damaged.
A second attachment method to the second product shelf MS2 is a method of attaching the shelf tag holding portion 103 to the second product shelf MS2 when the length L1 is longer than the length L2, and
As illustrated in a right side view in
The shelf tag attachment apparatus 100 according to the present example embodiment can attach the electronic shelf tag 101 to the first product shelf MS1 and the second product shelf MS2 differing in an attachment method. Moreover, since the holding plate portion 119 can be easily separated from the shelf tag attachment portion 113 as described above, the electronic shelf tag 101 can be attached to a variety of the second product shelves MS2.
While one example embodiment of the present invention has been described so far, the present invention is not limited thereto, and may be modified as follows.
For example, in the example embodiment, an example has been described in which the shelf tag holding portion 103 includes the bearing portion 129 as a first fit portion being one of a shaft portion and a bearing portion for rotating about the rotation axis P relative to the support member 102. Moreover, an example has been described in which the support member 102 includes the shaft portion 112 as a second fit portion being another of the shaft portion and the bearing portion for rotating about the rotation axis P relative to the support member 102.
However, the shelf tag holding portion 103 may include a shaft portion as a first fit portion, and the support member 102 may include a bearing portion as a second fit portion. This also provides an advantageous effect similar to that in the example embodiment.
For example, an example has been described in which the right suspended portion 128 is shorter than the left suspended portion 128, and the stopper 130 is provided in only the long left suspended portion 128, and is disposed below the lower end of the right suspended portion 128. Thereby, as illustrated in
However, the right suspended portion 128 may be provided with the same length as the left suspended portion 128, and the stoppers 130 may be provided in both the left and right suspended portions 128.
Moreover, for example, in the example embodiment, an example has been described in which the stopper 130 projects leftwards from the left end of the left suspended portion 128, and thereby projects from the side portion of the shelf tag holding portion 103. However, may not project from the side portion of the shelf tag holding portion 103.
For example, outer dimensions of the left and right arm portions 110 in the left-right direction may be contained inside the left and right clip portions 117, and the shaft portion 112 of the arm portion 110 may extend outwards, in contrast to the example embodiment.
In other words, the shaft portion 112 extending leftwards from a left end face of the left arm portion 110, and the shaft portion 112 extending rightwards from a right end face of the right arm portion 110 may be provided. In this case, the shaft portion 112 provided in the left arm portion 110 may be provided by insertion in the left bearing portion 129 from a right side, and the shaft portion 112 provided in the right arm portion 110 may be provided by insertion in the right bearing portion 129 from a left side.
In this instance, since the left arm portion 110 is positioned on a right side of the left suspended portion 128, the stopper 130 may extend rightwards from a right end of the left suspended portion 128, i.e., extend towards a center of the shelf tag attachment portion 113 in the left-right direction. A position of the stopper 130 in the front-back direction and the up-down direction may be the same as that in the example embodiment.
Thereby, similarly to the example embodiment, the shelf tag holding portion 103 can lock by contact between the stopper 130 and the left arm portion 110 in such a way that the display portion 104 does not further rotate in a direction to face downwards, beyond a direction to face frontwards.
Therefore, by the shelf tag attachment apparatus 100 having a relatively simple structure, it becomes possible to suppress the display portion 104 of the electronic shelf tag 101 from rotating beyond a previously determined range in a direction to face downwards.
In the example embodiment, an example has been described in which positions of gaps in a lateral direction are the same in a combination of an upper groove portion 105 and a protrusion portion 115 that fits into the groove portion 105, and a combination of the lower groove portion 105 and the protrusion portion 115 that fits into the groove portion 105.
However, positions of gaps in the lateral direction may differ from each other on upper and lower sides in a combination of the upper groove portion 105 and the protrusion portion 115 that fits into the groove portion 105, and a combination of the lower groove portion 105 and the protrusion portion 115 that fits into the groove portion 105.
The lower groove portion 205 (a back wall portion 208) is provided below a gap of the upper groove portion 105 (a back wall portion 108). Moreover, the lower protrusion portion 215 is provided below a gap of the upper protrusion portion 115.
The present figure illustrates, with a dotted line, one example of a position where a rear surface of an electronic shelf tag 201 is disposed when the electronic shelf tag 201 is pressed against a shelf tag attachment portion 113 in order to attach the electronic shelf tag 201 to the shelf tag holding portion 203.
As understood from the present figure, according to the present modified example as well, similarly to the example embodiment, the protrusion portions 115 and 215 can move along the groove portion 105 in a left-right direction, and the back wall portion 108 can move along a groove between the shelf tag attachment portion 113 and the protrusion portions 115 and 215 in the left-right direction.
Therefore, an advantageous effect similar to that in the example embodiment is provided.
Moreover, according to the present modified example, the electronic shelf tag 201 is not allowed to be turned upside down and attached to the shelf tag holding portion 203. Thus, the electronic shelf tag 201 can be prevented from being erroneously inverted in an up-down direction and attached to the shelf tag holding portion 203.
In the example embodiment, an example has been described in which both combinations of a combination of an upper groove portion 105 and a protrusion portion 115 that fits into the groove portion 105, and a combination of the lower groove portion 105 and the protrusion portion 115 that fits into the groove portion 105 are discretely provided.
However, only one combination of a combination of the upper groove portion 105 and a protrusion portion that fits into the groove portion 105, and a combination of the lower groove portion 105 and the protrusion portion 115 that fits into the groove portion 105 may be discretely provided.
In the present modified example, the electronic shelf tag 101 may be somewhat tilted, the lower protrusion portion 315 may be fitted into the lower groove portion 105, and then the electronic shelf tag 101 may be pressed against the shelf tag attachment portion 113 from a front side of a shelf tag holding portion 103 in such a way that an upper back wall portion 108 passes through a gap of the upper protrusion portion 115.
Thus, similarly to the example embodiment, the protrusion portions 115 and 315 can be moved along the groove portion 105 in a left-right direction, and the back wall portion 108 can be moved along a groove between the shelf tag attachment portion 113 and the protrusion portions 115 and 315 in the left-right direction.
According to the present modified example as well, an advantageous effect similar to that in the example embodiment is provided.
One means or all means according to the example embodiment described above can also be described as, but are not limited to, the following supplementary notes.
1. A shelf tag attachment apparatus including:
2. The shelf tag attachment apparatus according to supplementary note 1 described above, wherein
the stopper projects in the lateral direction, and contacts the arm portion from below.
3. The shelf tag attachment apparatus according to supplementary note 1 or 2 described above, wherein
the rotation axis is provided higher than a gravity center of the shelf tag holding portion holding the first shelf tag, when viewed from the lateral direction.
4. The shelf tag attachment apparatus according to any one of supplementary notes 1 to 3 described above, wherein
the stopper is provided, in the lateral direction, at a position being far from a gravity center of the shelf tag holding portion holding the first shelf tag.
5. The shelf tag attachment apparatus according to supplementary note 4 described above, wherein
the stopper projects from a side portion of the shelf tag holding portion.
6. The shelf tag attachment apparatus according to supplementary note 5 described above, wherein
the stopper projects from only one of the side portions of the shelf tag holding portion.
7. The shelf tag attachment apparatus according to any one of supplementary notes 1 to 6 described above, wherein
8. The shelf tag attachment apparatus according to any one of supplementary notes 1 to 7 described above, wherein
the first shelf tag is an electronic shelf tag.
9. The shelf tag attachment apparatus according to any one of supplementary notes 1 to 8 described above, wherein
the shelf tag holding portion includes a plug portion that holds a plugged second shelf tag.
10. The shelf tag attachment apparatus according to any one of supplementary notes 1 to 9 described above, wherein
the shelf tag holding portion includes
11. The shelf tag attachment apparatus according to supplementary note 10 described above, wherein
the holding plate connection portion is provided with a plurality of through-holes passing through in a thickness direction of the holding plate portion.
12. The shelf tag attachment apparatus according to supplementary note 10 or 11 described above, wherein
the holding plate portion is provided perpendicularly to the shelf tag attachment portion.
13. The shelf tag attachment apparatus according to any one of supplementary notes 10 to 12 described above, wherein
the shelf tag holding portion is that the holding plate portion is in a flat plate shape in which an upper surface and a lower surface are parallel to each other.
This application is based upon and claims the benefit of priority from Japanese patent application No. 2020-130341, filed on Jul. 31, 2020, the disclosure of which is incorporated herein in its entirety by reference.
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Number | Date | Country | Kind |
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2020-130341 | Jul 2020 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2021/028120 | 7/29/2021 | WO |