JP2010183962A - Movable accessory device - Google Patents

Movable accessory device Download PDF

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Publication number
JP2010183962A
JP2010183962A JP2009028590A JP2009028590A JP2010183962A JP 2010183962 A JP2010183962 A JP 2010183962A JP 2009028590 A JP2009028590 A JP 2009028590A JP 2009028590 A JP2009028590 A JP 2009028590A JP 2010183962 A JP2010183962 A JP 2010183962A
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Japan
Prior art keywords
movable plate
slider
stopper
movable
screw shaft
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JP2009028590A
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JP5540231B2 (en
Inventor
Hiroshi Shimizu
清水  拓
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Olympia:Kk
株式会社オリンピア
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Priority to JP2009028590A priority Critical patent/JP5540231B2/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a movable accessory device which uses a compact and simple driving mechanism using one motor as a driving source so as to move a movable plate in and out on display screen from an upper part and to reciprocate the movable plate right and left in front of the display screen. <P>SOLUTION: A screw shaft 28 rotates using the motor 24 as the driving source and a slider 31 is engaged with the screw shaft so as to reciprocate in the axial direction of the shaft. The abutment part 32b of the movable plate 32 abuts against an upper surface of a stopper 30a in the end (a first position) in a moving direction of the slider 31. Thereby, the movable plate 32 is horizontally stored in a storing space S1 in an upper inside position of a decorative case 11 and the abutment part 32b is detached from the stopper 30a as the slider 31 moves so that the movable plate 32 rotates downward so as to be exposed vertically in front of the display screen 12a. <P>COPYRIGHT: (C)2010,JPO&amp;INPIT

Description

  The present invention relates to a movable accessory device provided in a ball game machine, and more particularly to a movable accessory device having a movable plate that can reciprocate in the left-right direction in front of a display screen of a variable display device.

  In some ball game machines represented by pachinko machines, a variable display device and a start prize opening are provided in the game area of the game board, and the game balls launched toward the game area have won the start prize opening. There is a model in which an electronic lottery is performed as an opportunity, and a variable display device performs a variable display and a stop display based on the lottery result. Electronic lottery results include winning (winning) and losing (non-winning). When the lottery results are winning, a special combination of symbols is displayed on the display screen of the variable display device. Transition to game mode. In this special game mode, for example, a game ball enters a big prize opening exposed by an attacker opening operation, so that the player can acquire many prize balls.

  In such a ball game machine, the movable accessory device is arranged in a decorative case surrounding the display screen of the variable display device, and it is suggested or notified by the movable mode of the movable accessory device that it is won by electronic lottery. This is widely adopted. Such a movable accessory device performs various motions using an actuator such as a motor or a solenoid as a driving source. Conventionally, a movable plate made of a transparent material is moved in the left-right direction in front of the display screen of the variable display device. A movable accessory device that is reciprocally moved is known (see, for example, Patent Document 1).

  Such a conventional movable accessory device includes a screw shaft that rotates in both forward and reverse directions using a motor as a drive source, a guide shaft that is disposed parallel to the screw shaft at a predetermined interval, and the screw shaft and the guide. A slider that engages with the shaft and a movable plate that is integrated with the slider and hangs downward are provided. The slider has a protrusion that engages with a spiral groove of the screw shaft. As a result, when the screw shaft rotates in either the forward or reverse direction, the slider moves linearly in the axial direction of the screw shaft while being guided by the guide shaft, and the movable plate integrated with the slider moves the left and right sides of the front of the display screen of the variable display device. Move back and forth in the direction. In addition, a storage space for storing the movable plate when not in operation is secured on the back of one side of the decorative case surrounding the display screen, and the display of special symbols on the variable display device shifts from normal reach to super reach. If the player's expectation for a big hit increases, as in the case of losing after Super Leach is confirmed, the movable plate is exposed from the storage space of the decorative case to the front of the display screen. It is supposed to let you.

  As described above, in the conventional movable accessory device disclosed in Patent Document 1, after the movable plate hidden in the storage space of the decorative case suddenly jumps out from the side of the display screen, the front of the display screen is moved in the horizontal direction. Therefore, the effect of playing the game can be enhanced by combining the movement of the movable plate and the display content on the display screen.

JP 2005-34316 A

  By the way, the design and size of the decorative case have been very diversified in recent years. For example, a movable accessory other than the movable plate is arranged on the side of the decorative case, or the decoration is increased with the increase in the size of the display screen. The side dimensions of the case may need to be shortened. In such a case, it is difficult to secure the storage space for the movable plate on the back side of the decorative case. Therefore, the storage space for the movable plate is secured on the upper back instead of the side of the decorative case, It is necessary to move up and down using a drive mechanism different from the above. However, if the movable plate is moved in the vertical direction and the horizontal direction using two types of drive mechanisms, there is a problem that the entire drive mechanism is increased in size and cost.

  The present invention has been made in view of the situation of the prior art as described above, and an object of the present invention is to use a compact and simple driving mechanism that uses a single motor as a driving source to move the movable plate to the display screen. Another object of the present invention is to provide a movable accessory device that can be moved in and out from above and reciprocated in the left-right direction in front of the display screen.

  In order to achieve the above object, the present invention provides a movable accessory device which is arranged in a decorative case surrounding a display screen of a variable display device and suggests a result of electronic lottery to a player in a movable manner. A storage space defined inside the upper part of the case, a screw shaft disposed so as to extend horizontally in the storage space, a motor that rotates the screw shaft in both forward and reverse directions, and the screw shaft And a guide member disposed in parallel with each other at a predetermined interval, a slider that is reciprocally guided by the guide member and that engages with the spiral groove of the screw shaft, and a shaft portion that is connected to the slider. A movable plate supported rotatably and a stopper disposed in the vicinity of the end of the screw shaft, wherein the slider is the screw. As the shaft rotates, the movable plate can move horizontally between the first position and the second position, and the movable plate has a contact portion that can be engaged with and disengaged from the stopper in the vicinity of the shaft portion. The movable plate is rotated to a horizontal position and stored in the storage space by bringing the contact portion into contact with the upper surface of the stopper at the first position of the slider, and the slider is stored in the storage space. By releasing the contact between the contact portion and the stopper during the movement from the first position to the second position, the movable plate is rotated to a vertical posture so that the storage space moves forward from the storage space. It was configured to be exposed.

  In the movable accessory device configured as described above, when the abutting portion of the movable plate is in contact with the upper surface of the stopper at the first position, the movable plate is stored in the storage space defined in the upper part of the decorative case. When the screw shaft rotates in one direction using the motor as a drive source in this state, the slider moves along with the movable plate from the first position to the second position along the axial direction of the screw shaft. Start moving to. As a result, the abutment part is removed from the stopper, so that the movable plate rotates downward about the shaft part and is exposed to the front of the display screen. Thereafter, the movable plate is suspended from the slider by further rotation of the screw shaft. Move the front of the display screen left and right in a vertical position. When the screw shaft rotates in the other direction using the motor as a drive source in a state where the movable plate is exposed in the vertical posture in front of the display screen, the operation opposite to the above is performed. That is, after the movable plate suspended from the slider comes into contact with the stopper, the slider further moves toward the first position, so that the movable plate rotates upward about the shaft portion to enter the inside of the storage space. Stored in a horizontal position. Therefore, by using a compact and simple drive mechanism using one motor as a drive source, the movable plate can be moved in and out of the display screen from above and can be reciprocated in the left-right direction in front of the display screen.

  In the above-described configuration, the slider is formed in contact with a part of the movable plate to form a receiving portion that regulates the angle of the movable plate in a vertical posture, and the movable plate is urged in a direction in contact with the receiving portion. When the spring member is provided, the operation of rotating the movable plate downward about the shaft portion can be assisted by the biasing force of the spring member, and the screw shaft is reciprocally rotated in both forward and reverse directions with the motor as a drive source. It is preferable that a movable plate suspended from above the display screen can be moved.

  In this case, the abutting portion is formed in a convex shape having a linear portion, the linear portion is brought into contact with the upper surface of the stopper in a horizontal posture of the movable plate, and the linear portion in a vertical posture of the movable plate. Is preferably opposed to the side surface of the stopper because the movable plate can be stably rotated between the horizontal posture and the vertical posture.

  In the movable accessory device of the present invention, a slider that reciprocates in the axial direction is engaged with a screw shaft that is rotated by a motor, and a contact portion of a movable plate that is rotatably supported by the slider at a moving end position of the slider. Is brought into contact with the upper surface of the stopper so that the movable plate is stored in a horizontal posture inside the storage space defined in the upper part of the decorative case, and the abutting portion is detached from the stopper as the slider moves. As a result, the movable plate is rotated downward so that it is exposed in the vertical position in front of the display screen, so the movable plate is displayed using a compact and simple drive mechanism that uses a single motor as the drive source. The screen can be moved in and out from above and can be reciprocated in the left-right direction in front of the display screen.

1 is a perspective view of a ball game machine according to an embodiment of the present invention. It is a front view of the game board with which this bullet ball game machine is equipped. It is the perspective view which looked at the central accessory unit with which this game board is equipped from the front side. It is the perspective view which looked at this center accessory unit from the back side. It is a front view of the movable accessory apparatus with which this central accessory unit is equipped. It is the perspective view which looked at this movable accessory device from the front side. It is the perspective view which looked at this movable accessory device from the back side. It is operation | movement explanatory drawing of this movable accessory apparatus. It is operation | movement explanatory drawing of this movable accessory apparatus. It is operation | movement explanatory drawing of this movable accessory apparatus. It is operation | movement explanatory drawing of this movable accessory apparatus.

  As shown in FIG. 1, a ball game machine according to the present embodiment includes a machine frame 1 arranged in an island facility of a game arcade, and a front frame 2 attached to the machine frame 1 so as to be openable and closable. A later-described game board 3 stored and held in the front frame 2, a glass door 4 attached to the front surface of the front frame 2 so as to be openable and closable, and a front board 5 disposed below the front frame 2. A launch handle 6 attached to the front board 5 is provided. The front board 5 is provided with a tray 7.

  As shown in FIG. 2, the board surface of the game board 3 is a game area 9 surrounded by guide rails 8 and the like, and when the launch handle 6 is rotated at an arbitrary angle by the player, a launch device (not shown) However, the game balls stored in the tray 7 are continuously launched toward the game area 9. In the vicinity of the upper center of the game area 9, a central accessory unit 10 is disposed. The central accessory unit 10 includes a frame-shaped decorative case 11 and a variable display device 12 including a liquid crystal panel (LCD). ing. The decorative case 11 is disposed in front of the variable display device 12, and the display screen 12 a of the variable display device 12 is exposed in a rectangular opening 11 a opened at the center of the decorative case 11. In addition, a pair of start winning holes 13 and 14 are disposed immediately below the central accessory unit 10, and the upper start winning hole 13 is a start winning hole having a winning hole on the upper surface. The start winning opening 14 is a start winning opening having an electric tulip structure having a pair of movable pieces. Then, when a game ball wins at one of the start winning openings 13 and 14, an electronic lottery of special symbol display is performed as a trigger, and the variable display and stop of the symbol on the display screen 12a of the variable display device 12 are performed. Display is performed. In addition, a passing chucker 15 is arranged on the left side of the central bonus unit 10, and an electronic lottery with a normal symbol display is performed when a game ball passes through the passing chucker 15, and the lottery result is won. In this case, the movable piece of the lower start winning opening 14 is temporarily opened to allow game balls to enter. Further, an attacker 16 that opens and closes a large winning opening (not shown) is disposed immediately below the start winning openings 13 and 14, and a plurality of general winning openings 17 are disposed on the left and right sides of the attacker 16. Has been. Note that game balls that have not won any of the start winning ports 13, 14 and the general winning port 17 are discharged from the out port 18 provided at the lowermost end of the game area 9 to the back side of the game board 3. It has become.

  As shown in FIGS. 3 and 4, the decorative case 11 of the central accessory unit 10 is provided with a stage 19 adjacent to the lower side of the opening 11 a, and a warp outlet 20 is formed at the upper left portion of the stage 19. Has been. Although not shown in the drawing, the warp outlet 20 communicates with an upper warp inlet via a warp route provided inside the left side wall of the decorative case 11, and a game ball entering the warp inlet is warped. Through the warp outlet 20 and onto the stage 19. A groove 19a is formed in the center portion of the stage 19, and the above-described start winning opening 13 is arranged directly below the groove 19a, so that a game ball falling from the groove 19a has a high probability to the start winning opening 13. It is guided. A movable accessory 21 simulating the head of an animal is disposed on the right side wall of the decorative case 11, and a part of the movable accessory 21 is movable on the back side of the movable accessory 21. Drive mechanism (not shown) is provided. Further, a slit 22 extending in the horizontal direction (left-right direction) is formed on the upper wall of the decorative case 11, and an upper space communicating with the slit 22 is a storage space S1. A movable accessory device 23 according to an embodiment of the present invention is disposed inside the storage space S1, and the movable accessory device 23 will be described in detail below with reference to FIGS.

  The movable accessory device 23 according to the present embodiment includes a motor 24 attached to the back surface of the decorative case 11, a screw shaft 28 connected to the motor 24 via a reduction gear unit 25 and a pair of gears 26 and 27. A guide shaft 29 disposed in parallel with the screw shaft 28 at a predetermined interval, an L-shaped support member 30 disposed at one end of the screw shaft 28 and the guide shaft 29, the screw shaft 28 and the guide The slider 31 is engaged with the shaft 29, and the movable plate 32 is rotatably supported by the slider 31, and when the motor 24 rotates in either the forward or reverse direction, the rotation is reduced by the reduction gear unit 25. Are transmitted to the screw shaft 28 via a plurality of gears (not shown) or a pair of gears 26, 27. . A spiral groove 28a is formed on the outer peripheral surface of the screw shaft 28, and the screw shaft 28 and the guide shaft 29 extend in the horizontal direction (left-right direction) in the storage space S1.

  The support member 30 is fixed to the back surface of the decorative case 11 with a screw (not shown), and a flat stopper 30a is formed on the support member 30. The stopper 30a extends in parallel below one end of the screw shaft 28, and a clearance S2 extending in the horizontal direction is secured between the stopper 30a and the screw shaft 28 (see FIG. 5). A circuit board 33 is attached to the support member 30 in a vertical posture, and an optical sensor 34 made of a photo interrupter is mounted on the circuit board 33.

  The slider 31 includes an upper moving body 35 and a lower moving body 36 having a halved structure. The upper moving body 35 and the lower moving body 36 are integrated by screwing a screw shaft 28 from above and below. Yes. The upper moving body 35 has an inverted U-shaped half-cylinder part 35 a having an open lower surface, and a projection (not shown) formed on the inner peripheral surface of the half-cylinder part 35 a is engaged with the spiral groove 28 a of the screw shaft 28. Match. A detection piece 35b is formed on the outer peripheral surface of the half cylinder portion 35a. As will be described later, when the detection piece 35b blocks the optical path of the optical sensor 34, the origin position of the slider 31 is detected. ing. A pair of support shafts 35 c and 35 d are formed on the outer peripheral surface of the half cylinder portion 35 a, and these support shafts 35 c and 35 d protrude in the front-rear direction perpendicular to the axis of the screw shaft 28. Further, a pair of restricting projections 35e are formed on the upper surface of the half cylinder portion 35a, and the guide shaft 29 is sandwiched between these restricting projections 35e. Therefore, when the screw shaft 28 rotates with the motor 24 as a driving source, the slider 31 (the upper moving body 35 and the lower moving body 36) is guided along the axis of the screw shaft 28 while being guided by the guide shaft 29 (FIG. 5). In the X1-X2 direction). Note that a receiving portion 36 a is formed on the lower moving body 36, and the receiving portion 36 a protrudes in the same direction as the support shaft 35 d of the upper moving body 35.

  The movable plate 32 is a role imitating the target of a shooting competition, and is formed of a transparent or translucent synthetic resin. A shaft hole 32 a is formed at one end of the movable plate 32, and the shaft hole 32 a is inserted into a support shaft 35 d on the rear side of the upper moving body 35. On the other hand, a shaft hole 37a of a stop plate 37 is inserted into the support shaft 35c on the front side of the upper movable body 35. The movable plate 32 and the stop plate 37 are screwed by sandwiching the screw shaft 28 from the front and rear direction. It is integrated. As a result, the movable plate 32 and the stop plate 37 are rotatably supported by the slider 31 in a state in which the movable plate 32 and the stop plate 37 are prevented from coming off about the shaft portion (support shafts 35c, 35d). However, the rotation angle of the movable plate 32 is regulated by the receiving portion 36a of the lower moving body 36, and as shown in FIG. 5, the side portion of the movable plate 32 contacts the receiving portion 36a. At that time, further rotation is restricted, and the movable plate 32 is kept in a vertical posture at this position. A convex contact portion 32b is formed in the vicinity of the shaft hole 32a of the movable plate 32, and the contact portion 32b has a straight portion 32b-1. Although the detailed operation will be described later, when the slider 31 moves in the X2 direction of FIG. 5 and the abutting portion 32b is at a position away from the stopper 30a, the movable plate 32 is rotated by its own weight and maintained in a vertical posture. In this case, the movable plate 32 is in a projecting state in which it passes through the slit 22 and falls to the front of the display screen 12 a of the variable display device 12. On the other hand, when the slider 31 moves to the end position in the X1 direction in FIG. 5 and reaches above the clearance S2, the linear portion 32b-1 of the contact portion 32b contacts the upper surface of the stopper 30a, thereby moving the movable plate. 32 is rotated 90 degrees counterclockwise from the vertical posture of FIG. 5 and is stored in a horizontal posture inside the storage space S1. A coil spring 38, which is a spring member, is stretched between the contact portion 32b and the upper moving body 35, and the movable plate 32 is rotated in the clockwise direction in FIG. 5 by the elastic force of the coil spring 38. In order to be biased, the side portion of the movable plate 32 is pressed against the receiving portion 36 a of the lower moving body 36.

  Next, the operation of the movable accessory device 23 configured as described above will be described mainly with reference to FIGS. 8 to 11 are explanatory views of the operation of the movable accessory device 23 as viewed from the back side of the decorative case 11, so that the moving direction of the slider 31 and the arrangement relationship of the parts are different from those in FIG. It is reversed.

  In the movable accessory device 23 according to the present embodiment, the slider 31 (the upper moving body 35 and the lower moving body 36) is normally at the home position as shown in FIG. 8, and this home position is the end position in the X1 direction. When the end position in the X2 direction is referred to as a “second position”, the slider 31 is positioned above the clearance S2 at the “first position”. In this case, since the linear portion 32b-1 of the contact portion 32b of the movable plate 32 is in contact with the upper surface of the stopper 30a, the movable plate 32 is stored in the storage space S1 in a horizontal posture lying horizontally. In addition, the movable plate 32 is hidden from the display screen 12 a of the variable display device 12 inside the upper part of the decorative case 11. Further, since the detection piece 35b provided on the slider 31 is at a position where the optical path of the optical sensor 34 is blocked, the origin position of the slider 31 is detected based on the OFF signal output from the optical sensor 34 at the “first position”. Is done.

  When the slider 31 is in the “first position” shown in FIG. 8 and the screw shaft 28 starts to rotate in one direction due to the rotation of the motor 24 (for example, normal rotation), the slider 31 is guided by the guide shaft 29 and the screw Since the movement starts from the end position in the X1 direction along the axis of the shaft 28 in the X2 direction (left direction in FIG. 8) and the detection piece 35b is retracted from the optical path of the optical sensor 34 along with this, the optical sensor 34 is in the OFF state. Switch from on to off. Since the contact portion of the contact portion 32b and the stopper 30a shifts from the upper surface to the side surface while the slider 31 moves by a predetermined amount in the X2 direction, the movable plate 32 is centered on the support shaft 35d as shown in FIG. When the linear portion 32b-1 of the contact portion 32b contacts the side surface of the stopper 30a, the rotation of the movable plate 32 stops, and the movable plate 32 is rotated as shown in FIG. Is suspended from the slider 31 in a vertical posture. As a result, the movable plate 32 stored in the storage space S1 rotates 90 degrees downward through the slit 22, and the movable plate 32 falls to the front left side of the display screen 12a as shown in FIG. Exposed when suspended. Since the rotating operation of the movable plate 32 is assisted by the tensile force of the coil spring 38, the movable plate 32 can be stably rotated from the horizontal posture to the vertical posture.

  After the movable plate 3 rotates to the vertical posture shown in FIG. 10, when the slider 31 further moves in the X2 direction, the movable plate 32 moves in the left direction in the state suspended from the slider 31 and moves from the stopper 30a. Leave. At this time, since the side portion of the movable plate 32 is pressed against the receiving portion 36a of the lower moving body 36 by the tensile force of the coil spring 38, the movable plate 32 is suspended in a vertical state while being left in FIG. It moves in the direction, that is, in front of the display screen 12a from the left position in FIG. 2 toward the right side.

  When the slider 31 reaches the “second position” at the end in the X2 direction as shown in FIG. 11, the rotation of the screw shaft 28 is stopped by stopping the driving of the motor 24. At this time, the slider 31 is moved to the screw shaft. It moves from the “first position” to the “second position” along the 28 axis. Accordingly, the movable plate 32 moves in the horizontal direction in front of the display screen 12a while maintaining the vertical posture suspended from the slider 31, passes through the front surface of the display screen 12a from the left position in FIG. It stops at the position before the object 21. At this time, if a state in which a bullet is fired toward the movable plate 32 imitating the target is displayed on the display screen 12 a of the variable display device 12, the relationship between the display content of the display screen 12 a and the movement of the movable plate 32. Since the performance is enhanced, the effect of playing the game by the movable plate 32 can be remarkably enhanced. Note that the amount of rotation of the motor 24 required to move the slider 31 from the “first position” to the “second position” can be accurately controlled based on the above-described origin position detection signal.

  Further, when the slider 31 is in the “second position” shown in FIG. 11, if the motor 24 is rotated in the reverse direction and the screw shaft 28 starts to rotate in the other direction, the reverse operation is performed. In this case, when the slider 31 in the “second position” moves in the X1 direction (right direction in FIG. 11), the movable plate 32 moves in the same direction together with the slider 31 while maintaining the vertical posture. As shown, the linear portion 32b-1 of the contact portion 32b contacts the side surface of the stopper 30a before the “first position”. When the slider 31 further moves in the X1 direction and enters above the clearance S2, the movable plate 32 starts to rotate clockwise in FIG. 9 about the support shaft 35d, and the slider 31 moves to the end in the X1 direction. When the first position is reached, the linear portion 32b-1 of the contact portion 32b contacts the upper surface of the stopper 30a, so that the movable plate 32 rotates to a horizontal posture as shown in FIG. Stored internally. At this time, since the optical sensor 34 detects the detection piece 35b and switches from the ON state to the OFF state, the motor 24 stops based on the OFF signal of the optical sensor 34, and the slider 31 is the home position "first position". To wait. As a result, the movable plate 32 exposed in a suspended state in front of the display screen 12 a rotates 90 degrees upward through the slit 22 and is hidden behind the upper part of the decorative case 11.

  Here, on the rectangular display screen 12a in the variable display device 12, the left, middle, and right three symbols arranged side by side are individually displayed in a variable manner by winning of the game balls at the start winning ports 13 and 14, respectively. Display control for stopping and displaying symbols at random timing is performed. Then, when the stop display of these three symbols is a specific symbol combination, “big hit display” is indicated, and otherwise, “lost display” is indicated. The movable plate 32 is a vertically long decorative plate that reaches a position below the half in the vertical direction of the display screen 12a so as to completely cover one of the three symbols described above. Since the length) is equal to or greater than the length of the movable plate 32 in the vertical direction, a sufficient storage space S1 for the movable plate 32 can be secured above the display screen 12a. Further, the slider 31 is slid slightly in the left-right direction within the clearance S2 above the stopper 30a, so that the movable plate 32 rotates from the horizontal posture to the vertical posture and falls to the front of the display screen 12a. Therefore, the movable plate 32 can be moved in and out quickly with respect to the display screen 12a, enabling a dynamic movable action.

  As described above, in the movable accessory device 23 according to the present embodiment, the slider 31 that reciprocates in the axial direction is engaged with the screw shaft 28 that rotates in both forward and reverse directions using the motor 24 as a drive source, and this By bringing the contact portion 32b of the movable plate 32 into contact with the upper surface of the stopper 30a at the end position (first position) of the slider 31 in the moving direction, the decorative case 11 in which the movable plate 32 is disposed above the display screen 12a. The storage space S1 is stored in a horizontal posture, and the abutting portion 32b is detached from the stopper 30a as the slider 31 moves, so that the movable plate 32 is rotated downward to be in a vertical posture in front of the display screen 12a. Since it is exposed, the movable plate 32 is placed on the display screen 12a by using a compact and simple drive mechanism using one motor 24 as a drive source. It can be reciprocated in the lateral direction in front of the display screen 12a causes and out from above Te.

  Further, a receiving portion 36a is formed on the lower moving body 36 that is a component of the slider 31, and the angle of the movable plate 32 is regulated to a vertical posture by the receiving portion 36a, and the receiving portion 36a is received by the coil spring 38. The movable plate 32 can be smoothly rotated from the horizontal posture to the vertical posture by the assist force of the coil spring 38. When the slider 31 is positioned between the “first position” and the “second position”, when the motor 24 is driven and controlled to rotate the screw shaft 28 back and forth in both forward and reverse directions, the coil spring Since the movable plate 32 is continuously brought into and out of contact with the receiving portion 36a by the elastic force of 38, a state in which bullets are fired toward the movable plate 32 is displayed on the display screen 12a, and then the movable plate 32 is displayed. It is possible to realize a movement that sways in small increments by shooting the bullet. Further, the abutting portion 32b of the movable plate 32 is formed in a convex shape having a linear portion 32b-1, the linear portion 32b-1 is brought into contact with the upper surface of the stopper 30a in the horizontal posture of the movable plate 32, and the movable plate 32 is also brought into contact. Since the straight portion 32b-1 is opposed to the side surface of the stopper 30a in the vertical posture, the movable plate 32 can be stably rotated between the horizontal posture and the vertical posture.

  In the embodiment described above, the movable plate 32 is rotated between the horizontal position and the vertical position at the “first position” of the slider 31 by disposing the stopper 30a at the end of the screw shaft 28 on the X1 side. However, the stopper 30a is disposed at the end of the screw shaft 28 on the X2 side, and the movable plate 32 is rotated between the horizontal posture and the vertical posture at the “second position” of the slider 31. May be. Alternatively, by disposing the stoppers 30a at both ends of the screw shaft 28 on the X1 side and the X2 side, the movable plate 32 is placed in a horizontal posture and a vertical posture at both the “first position” and the “second position” of the slider 31. , And the movable plate 32 can be exposed in a vertical posture in front of the display screen 12a at other intermediate positions.

  In the above embodiment, the movable plate 32 is made of a transparent or translucent material, so that the content displayed on the display screen 12a of the variable display device 12 can be seen through the movable plate 32. The movable plate 32 may be formed of an opaque material. In this case, the opaque movable plate 32 that moves in front of the display screen 12a in the left-right direction can appropriately cover the symbol displayed on the display screen 12a, so a special symbol change is made for the masked symbol. It is possible to improve interest by performing the display.

DESCRIPTION OF SYMBOLS 3 Game board 9 Game area | region 10 Central accessory unit 11 Decoration case 11a Opening 12 Variable display device 12a Display screen 13,14 Start winning opening 22 Slit 23 Movable accessory device 24 Motor 28 Screw shaft 28a Spiral groove 29 Guide shaft 30 Support Member 30a Stopper 31 Slider 32 Movable plate 32a Shaft hole 32b Abutting portion 32b-1 Linear portion 33 Circuit board 34 Optical sensor 35 Upper moving body 35a Half cylinder portion 35b Detection piece 35c, 35d Support shaft 35e Restriction projection 36 Lower moving body 36a receiving part 36a
37 Stop plate 38 Coil spring (spring member)
S1 storage space S2 clearance

Claims (3)

  1. In the movable accessory device that is arranged in a decorative case surrounding the display screen of the variable display device and suggests the result of the electronic lottery to the player in a movable manner,
    A storage space defined inside the upper part of the decorative case, a screw shaft arranged to extend in the horizontal direction inside the storage space, a motor that rotates the screw shaft in both forward and reverse directions, and A guide member arranged in parallel with the screw shaft at a predetermined interval, a slider that is reciprocally guided by the guide member and that engages with the spiral groove of the screw shaft, and a shaft portion on the slider A movable plate that is rotatably supported through a stopper, and a stopper disposed near the end of the screw shaft,
    The slider is movable in the horizontal direction between the first position and the second position as the screw shaft rotates, and the movable plate is engaged with the stopper in the vicinity of the shaft portion. Has a tangent,
    The abutment portion is brought into contact with the upper surface of the stopper at the first position of the slider, whereby the movable plate is rotated in a horizontal posture and stored in the storage space.
    By releasing the contact between the contact portion and the stopper during the movement of the slider from the first position to the second position, the movable plate is rotated to a vertical posture to display the display from the storage space. A movable accessory device characterized by being exposed in front of the screen.
  2.   2. The slider according to claim 1, wherein the slider is formed in contact with a part of the movable plate to form a receiving portion for restricting the angle of the movable plate to a vertical posture, and the movable plate is attached in a direction to contact the receiving portion. A movable accessory device comprising a spring member for biasing.
  3.   3. The method according to claim 2, wherein the abutting portion is formed in a convex shape having a straight portion, the straight portion is brought into contact with the upper surface of the stopper in a horizontal posture of the movable plate, and in a vertical posture of the movable plate. A movable accessory device, wherein the straight portion is opposed to a side surface of the stopper.
JP2009028590A 2009-02-10 2009-02-10 Movable accessory device Active JP5540231B2 (en)

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013013685A (en) * 2011-07-06 2013-01-24 Universal Entertainment Corp Game machine
JP2013042764A (en) * 2011-08-16 2013-03-04 Daiichi Shokai Co Ltd Game machine
JP2013042765A (en) * 2011-08-16 2013-03-04 Daiichi Shokai Co Ltd Game machine
JP2013042762A (en) * 2011-08-16 2013-03-04 Daiichi Shokai Co Ltd Game machine
JP2013063212A (en) * 2011-09-20 2013-04-11 Daiichi Shokai Co Ltd Game machine
JP2014140664A (en) * 2013-12-25 2014-08-07 Universal Entertainment Corp Game machine
JP2014208232A (en) * 2014-05-30 2014-11-06 豊丸産業株式会社 Game machine
JP2015027467A (en) * 2014-08-18 2015-02-12 株式会社ユニバーサルエンターテインメント Game machine
JP2015077285A (en) * 2013-10-17 2015-04-23 株式会社平和 Game machine
JP2015177959A (en) * 2014-02-28 2015-10-08 株式会社三洋物産 Game machine
JP2016123646A (en) * 2014-12-26 2016-07-11 京楽産業.株式会社 Game machine
JP2016135396A (en) * 2016-04-28 2016-07-28 株式会社大一商会 Game machine

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JPH05310070A (en) * 1992-05-01 1993-11-22 Nifco Inc Drawer-type holder device for drink can or the like
JPH11286233A (en) * 1998-04-02 1999-10-19 Hino Motors Ltd Drink container holder
JP2007229066A (en) * 2006-02-28 2007-09-13 Sansei R & D:Kk Game machine

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JPH05310070A (en) * 1992-05-01 1993-11-22 Nifco Inc Drawer-type holder device for drink can or the like
JPH11286233A (en) * 1998-04-02 1999-10-19 Hino Motors Ltd Drink container holder
JP2007229066A (en) * 2006-02-28 2007-09-13 Sansei R & D:Kk Game machine

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013013685A (en) * 2011-07-06 2013-01-24 Universal Entertainment Corp Game machine
JP2013042764A (en) * 2011-08-16 2013-03-04 Daiichi Shokai Co Ltd Game machine
JP2013042765A (en) * 2011-08-16 2013-03-04 Daiichi Shokai Co Ltd Game machine
JP2013042762A (en) * 2011-08-16 2013-03-04 Daiichi Shokai Co Ltd Game machine
JP2013063212A (en) * 2011-09-20 2013-04-11 Daiichi Shokai Co Ltd Game machine
JP2015077285A (en) * 2013-10-17 2015-04-23 株式会社平和 Game machine
JP2014140664A (en) * 2013-12-25 2014-08-07 Universal Entertainment Corp Game machine
JP2015177959A (en) * 2014-02-28 2015-10-08 株式会社三洋物産 Game machine
JP2014208232A (en) * 2014-05-30 2014-11-06 豊丸産業株式会社 Game machine
JP2015027467A (en) * 2014-08-18 2015-02-12 株式会社ユニバーサルエンターテインメント Game machine
JP2016123646A (en) * 2014-12-26 2016-07-11 京楽産業.株式会社 Game machine
JP2016135396A (en) * 2016-04-28 2016-07-28 株式会社大一商会 Game machine

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