JP4986492B2 - Movable direction device for gaming machine - Google Patents

Movable direction device for gaming machine Download PDF

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Publication number
JP4986492B2
JP4986492B2 JP2006104254A JP2006104254A JP4986492B2 JP 4986492 B2 JP4986492 B2 JP 4986492B2 JP 2006104254 A JP2006104254 A JP 2006104254A JP 2006104254 A JP2006104254 A JP 2006104254A JP 4986492 B2 JP4986492 B2 JP 4986492B2
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Japan
Prior art keywords
electric drive
drive source
arm
light
gaming machine
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Expired - Fee Related
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JP2006104254A
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Japanese (ja)
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JP2007275235A (en
Inventor
敏幸 宇佐見
宏 榎本
秀俊 田中
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京楽産業.株式会社
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Description

  The present invention relates to a movable effect device that is provided in gaming machines such as a pachinko gaming machine, an arrangement ball machine, a sparrow ball gaming machine, a slot machine, and the like to increase interest.

The gaming machines shown in the following Patent Document 1 and Patent Document 2 are provided with a movable effect member on a frame-like frame provided on a gaming board so as to surround a variable display device such as a liquid crystal in a pachinko gaming machine, The production member is moved by an electric drive source such as a motor or a solenoid in conjunction with the display of the apparatus, thereby obtaining interest.
JP 2002-282438 A JP-A-2005-27920

However, the conventional game machine described above is a fun game because it merely moves up and down a movable production member that looks like a lion's fang or a doll's arm.
Therefore, the present invention is to provide a movable effect device that can make a more interesting and interesting movement, and to increase the interest of the gaming machine.

For this purpose, the movable effect device for a gaming machine according to claim 1 is provided such that an arm is pivoted by a first electric drive source in the vicinity of a variable display device in which symbols are displayed in a variable manner, and the light source is located inside. A spherical shell formed in a hollow shape and formed with a plurality of light-transmitting portions through which light from the light source is formed is rotatably provided at the tip of the arm, and the spherical shell is rotated. Two electric drive sources are provided, and when the display state of the variable display device starts to fluctuate and a reach state occurs, the first electric drive source is driven to move the tip of the arm forward and backward to the front surface of the variable display device. The second electric drive source is driven to rotate the spherical shell when there is a development to super reach, and the light of the fixed light source is emitted through the translucent part and swivels. To do.

  Since the production members make novel and interesting movements, the production is diversified, attracting players, and can increase the playability and interest of the gaming machine.

  FIG. 1 is a front view of a game board of a pachinko gaming machine according to the present invention. 1 is a variable display device comprising a color liquid crystal display device provided at the center of the game board, and 2 is a lower area of the variable display device. A tulip-shaped start winning opening provided so that a pair of blades can be opened and closed by a solenoid, 3 is a variable winning apparatus composed of a large rectangular large winning opening provided below the starting winning opening, The variable winning device is provided with an opening / closing door that opens and closes by the operation of a solenoid. 5a and 5b are passing chuckers that open and close the start winning opening 2 only for a short time when a game ball passes, and 6a and 6b are normal winning openings.

  7 is a decorative frame provided so as to surround the variable display device 1, and ball inlets 8 a and 8 b are formed on the left and right shoulders of the decorative frame, and warp passages 9 a and 9 b are formed downward from the ball inlet. The lower end of the warp passage opens to both side edges of the stage 10 formed on the lower side of the decorative frame. In addition, 11 is a curtain that has an emblem 12 in the center of the upper side of the decorative frame 7 in order to display the titles of artists, TV dramas, movies and the like that are themes of this pachinko machine. As shown in an enlarged view in FIG. 2, the stage 10 is formed with an upper stage 10a and an intermediate stage 10b that are formed in curved shapes such that the leading edge draws a gentle wave when viewed from the front. A plurality of variable members 13 pivotally supported so as to be independently movable up and down like a piano keyboard are arranged so as to be adjacent to each other in the lateral direction. Each of the variable members 13 is provided with a step in the height of the upper surface of each of the adjacent variable members so that the one located near the center is slightly lower than the one located near both side edges. ing. In addition, a ball guiding slope 14 converging in the center is formed in front of each variable member 13 so that the start winning opening 2 is located immediately below the center of the ball guiding slope.

  Further, as shown in FIG. 2, a first electric drive source 15 is provided inside the curtain 11 at the upper side of the decorative frame 7. As shown in FIGS. 3 and 4, the first electric drive source includes a reduction gear built-in motor 16, a small gear 17 provided on the rotating shaft of the motor, and a large gear 18 meshing with the small gear. The cam body 19 is integrally formed with the large gear, and the cam body 19 rotates in the direction of the arrow by rotating the motor. Reference numeral 20 denotes an optical sensor provided on the printed circuit board 21, which detects the rotation of the large gear 18 by detecting a protrusion 22 formed on the outer periphery of the large gear 18.

  Reference numerals 30 and 31 denote a pair of arms that are supported on the inner side of the curtain 11 by supporting shafts 32 and 33, respectively, and a lever portion 30a is integrally formed on one of the arms 30, and the tip of the lever portion. A roller 30 b provided rotatably is brought into sliding contact with the outer periphery of the cam body 19. The arm 30 and the arm 31 are connected by loosely fitting a pin 34 into a long hole 34 a formed at the end of the arm 31. For this reason, when the motor 16 is operated to rotate the large gear 18 and the cam body 19 in the direction of the arrow, the roller 30b is pressed, and the arm 30 tilts as shown by the arrow in FIG. Similarly, the arm 31 connected via the pin 34 tilts. The arms 30 and 31 have a substantially U-shaped cross section, and an electric wire (not shown) can be disposed inside thereof. Reference numeral 30 c denotes an arcuate cut formed in a part of the arm 30 in order to avoid collision with the large gear 18.

  The distal ends of the arms 30 and 31 are provided with a second electric drive source 35 and an effect member 36 that is movable by the second electric drive source. Since the second electric drive source 35 and the production member 36 have the same configuration for both arms 30 and 31, the configurations of the second electric drive source 35 and the production member 36 provided on one arm 30 are shown in FIGS. A description will be given with reference to FIG. A mounting portion 37 is integrally formed at the tip of the arm 30, the second electric drive source 35 and the effect member 36 are set in the mounting portion, and the mounting lid 38 is fixed to the mounting portion 37 with a screw 39. The second electric drive source 35 and the effect member 36 are attached to the distal end portion of the arm 30. The second electric drive source 35 is such that a reduction gear built-in motor 40 is fixed to the mounting portion 37, a small gear 41 is provided on the rotation shaft of the reduction gear built-in motor 40, and the small gear is engaged with an annular gear 42 described later. It is.

  On the other hand, the production member 36 includes a hollow spherical shell 50 and a light source 51 therein, and the light source 51 forms a circular plate 53 at the distal end of the base shaft portion 52 and a plurality of LEDs formed on one side of the circular plate. The light emitter 54 is fixed, and the electric wire 54 a of the light emitter is wired in the base shaft portion 52. As shown in the exploded perspective view of FIG. 10, the spherical shell 50 is formed into a substantially spherical shape by joining a pair of half members 50a and 50b formed of plastic. The half members 50a and 50b are respectively formed with a spherical portion 55, a large-diameter cylindrical portion 56, and a small-diameter cylindrical portion 57. The spherical portion 55 and the large-diameter cylindrical portion 56 are formed in a convex lens shape at appropriate intervals. A plurality of translucent portions 58 are formed, and each translucent portion is colored red, blue, yellow, green, etc., and portions other than the respective translucent portions are colored black so as not to be translucent. . Reference numerals 59a and 59b denote engaging claws and engaging grooves formed on the split edges of the half members 50a and 50b, respectively. The engaging claws and the engaging grooves are engaged to join the half members 50a and 50b together. As a result, the light source 51 is built in the half members 50 a and 50 b, and the annular gear 42 is fitted on the outer periphery of the small-diameter cylindrical portion 57. The small-diameter cylindrical portion 57 is set to be rotatable on the attachment portion 37 with the annular gear 42 fitted, and the base shaft portion 52 of the light source 51 is fixed in the attachment portion 37 so as not to rotate. Reference numeral 52 a denotes a rotation stop key formed on the outer periphery of the base shaft portion 52. Then, by fixing the mounting lid 38 with the screw 39, the spherical portion 55 and the large diameter cylindrical portion 56 of the spherical shell 50 are projected outward from the mounting portion 37, and in this state, the small diameter cylindrical portion 57 is formed. The externally fitted annular gear 42 is engaged with the small gear 41.

  Therefore, when the light emitter 54 is caused to emit light, the light is emitted to the outside through the plurality of light transmitting portions 58, and when the motor 40 is driven to rotate the annular gear 41, the spherical shell 50 is integrated with the annular gear 41. Therefore, the light emitted through the translucent part 58 turns like a searchlight. Further, since each light transmitting portion 58 is formed in a colored convex lens shape, the light that has passed through each light transmitting portion can be a colored parallel light beam.

  FIG. 11 is a block diagram showing an input / output device related to the present invention connected to a game control board 70 comprising a CPU, ROM, RAM, and I / O. Reference numeral 71 denotes a game ball won in the start winning opening 2. Start switch 72, 73 is a large winning opening switch and continuation switch for counting winning balls to the variable winning device 3, 74a, 74b are sensors for detecting game balls passing through the passing chuckers 5a, 5b, and 75 is a starting prize. A solenoid 76 that opens and closes the blades of the mouth 2 is a solenoid that opens and closes the opening and closing door of the variable winning device 3. The motor 16 and the motor 40 are also connected to operate according to a command from the game control board 70. Reference numeral 77 denotes an audio image control board composed of a CPU, ROM, RAM, and I / O connected to the game control board 70, and the variable display device 1 is connected to the audio image control board. The ROM of the audio image control board stores contents such as live images of famous hit songs, TV dramas, movies, etc., and these contents are displayed on the variable display device 1 according to instructions from the audio image control board 77. I try to do it. Reference numeral 78 denotes an audio output device that is connected to the game control board 70 and reproduces the audio and sound of the content on a speaker.

  In this pachinko machine, a game ball launched on the game board enters the ball entrance 8a or 8b, is discharged onto the upper stage 10a through the warp passages 9a and 9b, and falls from the upper stage to the middle stage 10b. Further, the game ball that has fallen from the front edge of the middle stage 10b falls on the variable member 13, moves the variable member up and down, and falls from the ball guide slope 14, so that it becomes easy to win the start winning opening 2 immediately below. . In addition, when the game ball that has fallen from the changing member at the end falls to the front as it is, the start winning opening 2 cannot be won.

  During the game, various contents are displayed on the variable display device 1 according to the game situation, and the voice and sound are output to the voice output device 78, and at the same time, a pair of spherical shells located on both upper sides of the variable display device 1 50 rotates, and the light emitted through the light transmitting portion 58 turns like a searchlight as shown in FIG. 5, so that a gorgeous effect is produced by light like a so-called disco ball or mirror ball. Further, when a game ball wins at the start winning opening 2, numbers 1 to 9 or symbols are variably displayed in three rows on the variation display device 1, and when the variation stops and a reach state or a big hit occurs, the first The electric drive source 15 operates and the arms 30 and 31 tilt. For this reason, the spherical shell 50 in the curtain plate 11 moves forward and backward to the front surface of the variable display device 1, and the light emitted from the translucent part 58 becomes more brilliantly visible to the player. Raise the atmosphere and further increase the fun.

  The timing for operating the first electric drive source 15 and the second electric drive source 35 can be freely set. For example, when the game ball wins the start winning opening 2, the symbol starts to change, and the reach state is reached. When the first electric drive source 15 is driven and the arms 30, 31 and the production member 36 hidden by the curtain plate 11 appear, the second electric drive source 35 is driven when the development to super reach occurs. You may make it rotate the spherical shell 50 of a member. By doing so, the player first expects the appearance of the disco ball as the first stage, and then expects the disco ball to rotate as the second stage, so that the expectation for the occurrence of the jackpot is stepwise Increased interest.

  As described above, the movable effect device for a gaming machine according to the present invention includes the first electric drive source 15 that moves the arms 30 and 31, and the second electric drive source 35 that is provided at the tip of the arm and moves the effect member 36. Therefore, it is possible to produce a gorgeous and high-impact effect in conjunction with the display of the variable display device 1 and to enhance the interest of the gaming machine.

  The present invention is not limited to the light effect as shown in the embodiment, and other forms of arms or effect members can also be provided. For example, an arm formed like a heel leg in appearance is operated by a first electric drive source, and formed as a scissor on a heel of the arm tip by a second electric drive source provided on the arm. It is configured to open and close the object, or to move an arm such as both arms of the gorilla by the first electric drive source, and to open and close the finger of the arm tip by the second electric drive source provided on the arm By making various settings in accordance with the theme expressed by the gaming machine, it is possible to produce effects with impact.

Further, since the second electric drive source is provided on the arm in the present invention, even a heavy performance member can be easily operated without requiring a particularly large driving force by the second electric drive source. Fine production is also possible.
In addition to the motor shown in this embodiment, an electric actuator such as a solenoid can be used as the first electric drive source and the second electric drive source.

  The present invention is not limited to the pachinko gaming machine shown in the embodiment, and can be applied to various gaming machines such as an arrangement ball machine, a sparrow ball gaming machine, and a slot machine.

The front view of the game board of the pachinko gaming machine which shows the embodiment of the present invention. The front view of the decoration frame provided with the movable production | presentation apparatus which shows embodiment of this invention. FIG. 3 is a view taken along line AA in FIG. 2. The perspective view of the movable production | presentation apparatus which shows embodiment of this invention. The front view of the decoration frame which showed the operation state of the movable production | presentation apparatus which shows embodiment of this invention. The longitudinal cross-sectional view of the production | presentation member of the movable production | presentation apparatus which shows embodiment of this invention. BB sectional drawing of FIG. The CC sectional view taken on the line of FIG. The DD sectional view taken on the line of FIG. The disassembled perspective view of the production | presentation member of the movable production | presentation apparatus which shows embodiment of this invention. The block diagram of the game control system of the pachinko gaming machine which shows the embodiment of the present invention.

Explanation of symbols

DESCRIPTION OF SYMBOLS 1 Fluctuation display apparatus 15 1st electric drive source 16 Motor 17 Small gearwheel 18 Large gearwheel 19 Cam body 30,31 Arm 30a Lever part 30b Roller 32,33 Support shaft 34 Pin 35 Second electric drive source 36 Production member 40 Motor 41 Small Gear 42 Ring gear 50 Spherical shell 51 Light source 52 Base shaft portion 54 Light emitter 50a, 50b Half member 55 Spherical portion 56 Large diameter cylindrical portion 57 Small diameter cylindrical portion 58 Translucent portion

Claims (1)

  1. An arm is provided in the vicinity of the variable display device in which the symbols are displayed in a variable manner so as to be swiveled by the first electric drive source. The arm is formed in a hollow shape so that the light source can be positioned therein, and the light from the light source A spherical shell formed with a plurality of transparent parts to be transmitted is rotatably provided at the tip of the arm, a second electric drive source for rotating the spherical shell is provided, and the display design of the variable display device varies. When the reach state is started, the first electric drive source is driven to move the tip of the arm forward and backward to the front surface of the variable display device. A movable effect device for a gaming machine, which is driven to rotate the spherical shell so that light from a fixed light source is emitted through the light-transmitting portion and turns .
JP2006104254A 2006-04-05 2006-04-05 Movable direction device for gaming machine Expired - Fee Related JP4986492B2 (en)

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Application Number Priority Date Filing Date Title
JP2006104254A JP4986492B2 (en) 2006-04-05 2006-04-05 Movable direction device for gaming machine

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