WO2011071274A2 - 발광 다트판 세트 - Google Patents
발광 다트판 세트 Download PDFInfo
- Publication number
- WO2011071274A2 WO2011071274A2 PCT/KR2010/008613 KR2010008613W WO2011071274A2 WO 2011071274 A2 WO2011071274 A2 WO 2011071274A2 KR 2010008613 W KR2010008613 W KR 2010008613W WO 2011071274 A2 WO2011071274 A2 WO 2011071274A2
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- dart
- score
- light emitting
- board
- plate
- Prior art date
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Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41J—TARGETS; TARGET RANGES; BULLET CATCHERS
- F41J3/00—Targets for arrows or darts, e.g. for sporting or amusement purposes
Definitions
- the present invention relates to a light emitting dart plate set.
- a dart board consists of a circular target board and a dart pin inserted into the target board. When a player throws the dart pin toward the front of the target board, the game is scored according to the position of the dart pin. Edition.
- Conventional dart pins are made of metal sharp pins on the front side, and the dart board is made of a cork material that is soft so that the dart pins can be inserted. There was a problem that the front surface of the dart board is gradually damaged by the dart pin.
- a magnet is embedded in the front side of the dart pin, and an iron plate or an iron rubber sheet is attached to the front surface of the dart plate so that the magnet is attached, thereby preventing the dart plate from being damaged even during long-term use and by sharp dart pins. It prevents a safety accident that causes the player to be injured.
- a dart plate composed of such magnet dart pins includes a disc shaped dart plate composed of iron plates or steel rubber sheets, with compartments displayed concentrically on the front surface, and darts having magnets embedded in the front side so as to be attached to the front surface of the dart plate. It consists of a pin,
- a player throws a dart pin into which the magnet is interpolated and scores points according to the position where the dart pin is attached to the dart board to play the game.
- magnetic dartboards are not significantly different from dartboards consisting of dart pins made of sharp pins except that magnets can be used to attach the dart pins to the dartboard, and they are used almost permanently after purchase. Since this is possible, there is a problem that the consumption and marketability are greatly reduced.
- the conventional magnetic dart board has a problem that the interior interior effect can not be obtained at all because no special function is provided except a game tool for playing darts.
- the magnetic dart board is very easy to expose the promotional prints when used as promotional promotional materials, but the self-luminescence of the advertising text or advertising prints is essential in a dark indoor space. There is a problem that the aesthetic effect falls.
- the technical problem to be achieved by the present invention is a light emitting dart that makes it easy to visually identify the position where the dart pin is attached to the dart board and the printed text printed on the dart board when the dart pin with the magnet is thrown. To provide a set of editions.
- the present invention to produce aesthetic aesthetics for the interior interior by the dart board body and the edge cover that is prominent by the LED light emitting unit, the various promotional materials printed on the front of the dart plate is highlighted to promote the product or advertisers. It is to provide a light emitting dart plate set that can be expected.
- the magnet 11 is built in the front of the dart pin (10);
- a dart pin attachment plate 20 formed with any one of an iron plate or an iron rubber sheet, and having a dart print 22 attached to the front surface of the printing unit 21;
- a body having a reinforcing part 33 bent in the outward direction of the fixing part 32 to which the lower surface of the dart pin attaching plate 20 is coupled is formed in the outward direction along the periphery of the fixing part 32 ( 30);
- Cover the front surface of the periphery of the body 30, the cover portion 51 is bent along the periphery of the body 30 is formed and the edge cover formed from the cover portion 51, the light transmitting space 52 is formed 50;
- An LED light emitting part 70 configured inside the edge cover 50 to emit light toward the light transmitting space 52 of the edge cover 50;
- it may further include a shock absorbing plate 40 is installed between the lower surface of the dart print 22 and the upper surface of the body (30).
- the width (a) of the fixing portion 32 formed in the body 30 is formed wider than the width (b) of the edge cover 50 is installed along the circumference of the body 30,
- the circular light emitting band 80 may be further formed by the light emitted from the LED light emitting unit 70.
- the score generation sheet 210 is detected that the compression of the dart pin 10 is attached to the dart pin attachment plate 20 is Further configured, the printed circuit board 220 is electrically connected to the score generation sheet 210; The display unit 230 may be further included to be electrically connected to the printed circuit board 220.
- the score generation sheet 210, the first conducting sheet 212 is printed with a first conducting line 211 partitioned in concentric circles, respectively;
- the second conducting wires 213 which are respectively divided radially are printed and may be configured as a second conducting sheet 214 for distinguishing and detecting the energization of each section formed by crossing the first conducting sheet 212. .
- the printed circuit board 220, the micro to calculate a predetermined score value corresponding to each section of the score generation sheet 210 and to send the calculated score value to the display unit 230
- the processor 240 may be further configured.
- the first conductive sheet 212 constituting the score generation sheet 210, the first to fourth score area portion 212a, 212b, 212c, 212d corresponding to different scores are formed Each of the score zones is energized in parallel with a plurality of score zones corresponding to the same score, and is formed in the second electricity sheet 214 constituting the score generation sheet 210.
- the first to fourth ground zone portions 214a, 214b, 214c, and 214d to be grounded by crimping at positions corresponding to the first to fourth score zone portions 212a, 212b, 212c, and 212d of 212.
- Each ground zone portion is formed by being energized in parallel with a plurality of ground zone portions corresponding to the same score, and formed to correspond to the arrangement of the first conductive sheet 212, and the first to fourth portions. Scoring zones 212a, 212b, 212c, 212d and the first to fourth ground zones 214a, 214b, 214c, 214d. It may be detected by breaking the current flow.
- first scoring section 212a and the third scoring section 212c of the first conducting sheet 212 are electrically connected by a first detection line 215a, and the first conduction
- the second scoring zone portion 212b and the fourth scoring zone portion 212d of the sheet 212 may be electrically connected by the second detection line 215b.
- first ground zone portion 214a and the second ground zone portion 212b of the second conductive sheet 214 are electrically connected by a third detection line 215c, and the third ground The zone portion 214c and the fourth ground zone portion 214d may be electrically connected by the fourth detection line 215d.
- the front end pointed plastic needle 310 is screwed coupled to the dart pin 300; And a rim cover 410 having a light transmitting space 411, a number board 420 assembled inside the rim cover 410, and installed in the number board 420 and having a plurality of storage spaces 431.
- a segment accommodating board 430 having a needle hole 441 is accommodated in each partition space 431 of the segment accommodating board 430 so that the plastic needle 310 of the dart pin 300 can be inserted in the thickness direction.
- the LED light emitting unit 413 for emitting light toward the light transmitting space 412 side of the edge cover 410 is further arranged to be directed toward the center of the dart plate 400.
- At least one of the dart pin 300, the edge cover 410, the number board 420, the segment storage board 430, the segment 440, fluorescent pigments, phosphorescent pigments and fluorescent pigments / phosphorescent At least one of the mixture of pigments may further comprise a mixture.
- the rear cover 450 may further include a shock absorbing plate 460 installed on the inner surface corresponding to the segment 440.
- the display device 490 may further include a display unit 490 electrically connected to the printed circuit board 480.
- the printed circuit board 480 calculates a predetermined score value corresponding to each section of the score generation sheet 470 and transmits the calculated score value to the display unit 490. 481 may be further included.
- the vertical die 500, the dart plate 300 is installed;
- a coefficient monitor 510 installed above the dart plate 400 of the standing die 500 to output a dart score;
- An operation button 520 installed below the dart plate 400 of the standing die 500 to manipulate reset or on / off of the counting monitor 510;
- a speaker 530 installed below the operation button 520 of the upright die 500.
- the partition space 431 of the segment receiving board 430 may be partitioned equally in concentric or concentric and radial direction.
- the light emitting dart plate set according to the present invention includes a body and two front edges of the body.
- the interior effect in a dark space can be obtained by the lighting effect emitted by the LED light emitting unit configured inside the edge cover formed along the lev.
- the present invention by impregnating the fluorescent pigment in the dart pin can not only visually identify the attachment position of the dart pin in the dark space, but also obtains an aesthetic effect.
- the present invention is self-emitting by the light emitted by the LED light emitting part of the dart pin can be obtained a light-emitting effect on the portion to which the fluorescent dart pin is attached.
- the present invention can produce aesthetically beautiful by expressing a circular luminescent band between the body and the rim cover, it can be produced not only for the game but also as an interior effect of the interior can produce a beautiful and aesthetic interior space. .
- the present invention if the various promotional phrases or logos or brand names, etc. represented in the dart print formed on the front of the dart pin attached plate to which the dart pin is attached to the fluorescent pigment or photoluminescent pigment, the printed material itself emits light by the LED light emitting unit. The effect can be maximized to maximize the advertising effect of the advertiser.
- the score generation sheet is further configured, the score of the dart thrown by the game player is automatically calculated and displayed, so that the score in the dark space can be easily checked, and the game player can automatically check the score in the dark space. There is no need to add up scores, which improves game playability and usability.
- the present invention by greatly energizing the area of the same score on the score generation sheet in parallel to greatly simplify the key matrix structure, there is an effect that can reduce the operation failure rate and reduce the unit cost.
- the present invention can provide convenience to the visually impaired by outputting the dart score as a voice.
- FIG. 1 is a perspective view showing a light emitting dart plate set according to an embodiment of the present invention.
- Figure 2 is an exploded perspective view showing the configuration of a light emitting dart plate set according to an embodiment of the present invention.
- FIG. 3 is a perspective view illustrating a fluorescent dart pin which is one of components of a light emitting dart plate set according to an embodiment of the present invention.
- Figure 4 is a cross-sectional view showing the configuration of a light emitting dart plate set according to an embodiment of the present invention.
- FIG. 5 is an enlarged configuration diagram illustrating an enlarged configuration of a light emitting dart plate set according to an embodiment of the present invention.
- Figure 6 is a front configuration diagram showing another embodiment of a light emitting dart plate set according to an embodiment of the present invention.
- FIGS. 7 to 9 are diagrams showing still another embodiment of the light emitting dart plate set according to an embodiment of the present invention.
- 10 to 13 is a configuration diagram showing another embodiment of a light emitting dart plate set according to an embodiment of the present invention.
- FIG. 14 is a perspective view of a light emitting dart plate set according to another embodiment of the present invention.
- 15 is a front view of a light emitting dart plate set according to another embodiment of the present invention.
- 16 is an exploded perspective view of a light emitting dart plate set according to another embodiment of the present invention.
- 17 is a longitudinal cross-sectional view of a coupled state of a light emitting dart plate set according to another embodiment of the present invention.
- FIG. 18 is a longitudinal cross-sectional view of FIG. 1.
- FIG. 19 is an enlarged view illustrating main parts of FIG. 18.
- FIG. 20 is an enlarged view of FIG. 19.
- 21 to 25 are views illustrating various forms of a light emitting dart plate set according to another embodiment of the present invention.
- 27 is a configuration diagram of the dart pins.
- the light emitting dart plate set includes a fluorescent dart pin 10, a dart pin attaching plate 20 to which the dart pin 10 is attached, a body 30, an impact absorbing plate 40, Consists of the edge cover 50 and the LED light emitting portion 70.
- the dart pin 10 includes a magnet 11 embedded therein and a fluorescent pigment 101 impregnated therein, and the dart wing 12 and the dart pin 10 of the dart pin 10. ) Is formed into a body and the fluorescent pigment 101 is impregnated.
- the fluorescent dart pin 10 is attached to the front surface of the dart attaching plate 20 by the light emitted through the LED light emitting unit 70, the light emitting effect is displayed. 10) can easily identify the position attached to the dart attachment plate 20.
- the light emitted from the dart pin 10 can be obtained a light emitting effect that the light is emitted to the printed portion 21 side expressed on the front of the dart attachment plate 20 is attached to the dart pin ( It is possible to obtain the effect that the surrounding prints attached with 10) are visually highlighted.
- the dart attachment plate 20 is formed of an iron plate or a rubber sheet, and is attached to the dart print 22 in which the printing unit 21 is expressed on the front surface.
- the overall shape of the dart attachment plate 20 is made of a disc shape, the dart pin 10 is blown to the dart attachment plate 20 side and interpolated in front of the fluorescent dart pin 10 to the dart attachment plate 20.
- the magnet 11 serves to be magnetized so that it can be attached by magnetic force.
- the dart print 22 attached to the front surface of the dart attachment plate 20 is made of paper or synthetic resin sheet.
- the printing unit 21 represented in the dart print 22 is printed a promotional phrase, such as a dart picture, an archery picture, its promotional text or a product advertising text, a logo, such a printing portion 21 is a fluorescent pigment 101 ) Or a phosphorescent pigment 102 or a fluorescent pigment 101 and a phosphorescent pigment 102 may be printed with a mixed type / luminescent pigment so that the light emitting unit 70 emits light or emits light by itself. .
- the fluorescent pigment 101 is printed on the printing unit 21 represented on the front surface of the dart print 22, the light emitted by the printing unit 21 by the light emitted through the LED light emitting unit 70
- the phosphorescent pigment 102 is printed on the printing unit 21, even though the light is not emitted through the LED light emitting unit 70, the self-luminescence by the phosphorescent pigment 102 that has received and stored light is After the lights out, the luminous effect lasts for a certain time.
- the gamers who enjoy the dart game or the spectators who watch the dart game can highlight the visual effect so that the beauty and aesthetics can be felt through the light-emitting printing unit 21 of the dart print 22. Since the light is emitted in the space, the promotional effect of the company or the product is enhanced.
- the body 30, the lower surface of the dart pin mounting plate 20 is coupled to the fixing portion 32 is formed in the protrusion coupling groove 31 is formed in the inner side bent outwards along the circumference, the fixing portion ( A reinforcing part 33 vertically bent in the outward direction of 32 is formed.
- the lower portion of the body 30 may be a protruding portion 34 is formed to further protrude, the protruding portion 34 has a circular band-shaped two-row structure from the lower surface of the body 30 in the body 30 It may be formed to the same thickness as).
- the body 30 is formed in a circular flat plate shape so that the corresponding force to the tensile stress or the compressive stress generated at the time of injection molding is lowered and the body is bent in the process of injection molding. The phenomenon occurs.
- the shock absorbing plate 40 is located between the dart pin attachment plate 20 and the front surface of the body 30 to absorb the elastic force of the dart pin 10 attached to the dart pin attachment plate 20.
- the material is preferably formed of a sponge that is quick to restore the shape.
- the shock absorbing plate 40 As the shock absorbing plate 40 is positioned between the dart attaching plate 20 and the body 30, the dart pin 10 is blown to the dart attaching plate 20 to the dart attaching plate 20.
- the impact and noise generated when the dart pin 10 hits the front surface of the 20 can be absorbed so that the dart pin 10 is caused by the repulsive force generated when the dart pin 10 hits the dart attachment plate 20. The dropping is prevented without being attached to the dart attachment plate 20.
- the rim cover 50 is provided with a front portion of the circumference of the body 30, but a cover portion 51 bent along the circumference of the body 30 is formed and spaced apart from the cover portion 51 A transmissive space 52 is formed and the fixing protrusion 53 protrudes at a position corresponding to the protrusion coupling groove 31 formed in the fixing portion 32 of the body 30 therein.
- the edge cover 50 may include a fluorescent pigment 101.
- the edge cover 50 impregnated with a fluorescent pigment is to emit light by the light emitted through the LED light emitting unit (70).
- the rim cover 50 is spaced apart by a predetermined distance from the front of the circumference of the body 30 and the cover 51 of the rim cover 50 when the rim cover 50 is installed on the front of the circumference of the body 30.
- the light transmitting space 52 is naturally formed between the cover 51 and the circumference of the body 30.
- the light transmitting space 52 It is possible to make the light transmitting space 52 by inserting the fixing protrusions 53 formed on the inner side of the protruding defect groove 31 and the edge cover 50 of the body 30 and then fastening with a piece 61. . At this time, by inserting and fastening the support bracket 60 between the protruding coupling groove 31 and the fixing protrusion 53, the light transmitting space 52 can be secured to obtain a bright dart print effect.
- the reinforcing portion 33 vertically bent in the outward direction of the fixing portion 32 of the body 30 is configured to be in close contact with the edge cover 50, the body 30 and the edge cover 50 The binding can be improved.
- the LED light emitting unit 70 is configured inside the edge cover 50 to emit light toward the light transmitting space 52 of the edge cover 50.
- the LED light emitting unit 70 is usually composed of a light emitting diode and a printed circuit board which is electrically connected to the light emitting diode, and may be configured by selecting a chip-type diode or a ball-type diode.
- the LED light emitting unit 70 is configured to be connected in a band shape along the inner circumference of the cover portion 51 of the edge cover 50, the edge cover by the light emitted by the LED light emitting unit 70 Light is emitted to the printing unit 21 represented in the 50, the body 30, the dart pin 10, and the dart print 22.
- the light emitted from the LED light emitting unit 70 from the light transmitting space 52 is formed between the edge cover 50 and the fixing portion 32 of the body 30, the LED light emitting unit 70 Since light is emitted and the light is emitted toward the dart print 22 side of the dart pin attaching plate 20 configured on the front of the body 30 as well as the body 30 side, the attached dart pin ( 10) and the printing portion 21 expressed in the dart print 22 are made to emit light.
- the edge cover 50, the body 30 and the printing unit 21 of the dart print 22 emit light, thereby producing a beautiful and aesthetic visual image. It can be a means for dart games, as well as to improve the interior effect of the room.
- the wavelength of the light emitted through the LED light emitting unit 70 overlaps the printing unit 21 of the dart print 22 so that the image or the phrase expressed on the printing unit 21 is further highlighted. It is possible to highlight the visual effects of gamers and game viewers.
- the light emitting diode constituting the LED light emitting unit 70, the power consumption is formed between 0.1W ⁇ 0.5W and the light emitting diode can be configured between 10 to 100, the light emitting diode can be configured differently as needed
- the number of light emitting diodes is not limited.
- the light emitted from the light emitting diode of the LED light emitting unit 70 may include a white wavelength or a blue wavelength.
- the white wavelength or the blue wavelength emitted through the LED light emitting unit 70 may be printed on the edge cover 50 and the dart print 22 in which the fluorescent pigment 101 or the phosphorescent pigment 102 is selectively impregnated.
- the light of the part 21 and the dart pin 10 can maintain an optimal light emission state, to allow the gamers and spectators who play the game to feel more aesthetic and beautiful.
- the width (a) of the fixing portion 32 formed in the body 30 than the width (b) of the edge cover 50 is installed along the circumference of the body 30 It is widely formed.
- a circular light emitting band 80 is further formed by the emitted light of the LED light emitting part 70 that is emitted.
- the body 30 is the high of the body 30 is formed with a diverging light of the LED light emitting portion 70 emitted through the light transmitting space 52 is wider than the width (b) of the edge cover 50 Since the front part 32 is irradiated to the width c side, a circular light emitting band 80 can be naturally formed along the width c of the fixing part 32, so that the overall appearance of the light emitting dart plate set of the present invention can be obtained. The appearance of beauty and aesthetics can be further enhanced and the visual image of the interior can be highlighted.
- the dart pin 10 when the player throws the fluorescent dart pin 10, when the dart pin 10 is blown and attached to the dart attachment plate 20, the dart pin 10 is attached as shown in FIG.
- the light emitting zone 10a is formed around the fluorescent dart pin 10 by the light emitted through the dart pin 10 toward the printing unit 21 expressed on the front surface of the attachment plate 20, and thus the printing unit ( 21) can obtain a light emitting effect that the light is emitted can be obtained the effect that the peripheral printed matter is attached to the dart pin 10 is visually highlighted.
- the score generation sheet 210 is further configured to detect the dart pin 10 attached to the dart pin attachment plate 20 and In addition, the score generation sheet 210, the printed circuit board 220 is electrically connected to the, and the display circuit 230 is electrically connected to the printed circuit board 220 is further made.
- the score generation sheet 210 is a first conducting sheet 212 is printed with a first conducting wire 211 partitioned insulated in concentric circles, respectively, and a second conducting wire 213 partitioned with radially insulated, respectively.
- the printed first conductive sheet 212 and the nested second conductive sheet 214 is formed.
- the score generation sheet 210 may be configured as a film type membrane switch, and is applicable to all means switched by the impact generated when the thrown dart pin is attached.
- the printed circuit board 220 calculates a score value set at a position energized by the pressing of the dart pin 10 detected by the score generation sheet 210 and is calculated by the display unit 230. Further configured is a microprocessor 240 for sending out values.
- the first electrification line 211 and the second electrification sheet of the first electrification sheet 212 in which the dart pin 10 thrown by the player constitutes the score generation sheet 210.
- the second conductive line 213 of 214 is attached to any point where they cross each other, the first conductive line 211 and the second conductive line 213 at the point where the dart pin 10 is attached are in contact with each other.
- the first conducting wire 211 of the first conducting sheet 212 and the second conducting line 213 of the second conducting sheet 214 are electrically connected to a ground point on the printed circuit board 220.
- the score value is passed.
- the score region of the dartboard set has a certain pattern, and thus, the same score region is an embodiment in which the same score region is connected in parallel with one wire.
- the first to fourth score area portion 212a, 212b, 212c, 212d corresponding to different scores are formed
- Each of the score zones is energized in parallel with a plurality of score zones corresponding to the same score.
- the first to fourth score area portions 212a, 212b, 212c, and 212d of the first energizing sheet 212 are located.
- First to fourth ground zone portions 214a, 214b, 214c, and 214d for grounding by compression are formed.
- Each of the ground zones is electrically connected in parallel with a plurality of ground zones corresponding to the same score, and is formed to correspond to the arrangement of the first conductive sheet 212, and the first to fourth score zones
- the score is detected by energizing (212a, 212b, 212c, 212d) and the first to fourth ground zone portions 214a, 214b, 214c, and 214d.
- the first scoring section 212a and the third scoring section 212c of the first conducting sheet 212 are electrically connected to each other by a first detection line 215a, and the first conducting sheet 212
- the second scoring zone portion 212b and the fourth scoring zone portion 212d are electrically connected by the second detection line 215b.
- first ground zone portion 214a and the second ground zone portion 212b of the second conductive sheet 214 are electrically connected by a third detection line 215c
- third ground zone portion ( 214c and the fourth ground zone portion 214d are electrically connected by the fourth detection line 215d.
- the score detection of the light emitting dart plate set of the present invention configured as described above is any one of the first and second third quarter point score sections 212a, 212b, 212c, and 212d that are energized and connected to the first current sheet 212.
- the dart pin is attached to the score area of the first 1/2/3/4 score zones 212a, 212b, 212c, and 212d, the first 1/2/3/4 ground zones 214a are grounded.
- a ground zone portion of any one of 214b, 214c, and 214d is grounded with a score zone portion which comes to the position where the dart pin is attached, and a ground signal is connected to the first and second third detection lines 215a, 215b, 215c, 215d) is detected through the detection line in any one of them.
- the dart pin when one point shown in FIG. 13 is detected, when the dart pin is attached to the first point area section 212a corresponding to the first point of the first conducting sheet 212, the first point is scored.
- the zone portion 212a is grounded with the first ground zone portion 214a of the second conducting sheet 214, and the first detection line 215a is electrically connected to the first pointed zone portion 212a.
- the detection signal of the third detection line 215c electrically connected to the first ground zone 214a is transmitted to the printed circuit board 220, and as shown in FIG. A preset 'one point' corresponding to the key matrix combinations A1 and B2 of A1 'and' B1 'of the second detection line 215c is displayed.
- the set points corresponding to the coordinate values of each of the score zones to which the dart pin is attached and the respective ground zones to which the score zone is grounded are displayed.
- the player may visually check the score of the display unit 220 that is calculated and shown to determine the ranking.
- the light emitting dart plate set S is roughly divided into a dart plate 400 and a dart pin 300.
- the dart plate 400 is formed of a metal or a synthetic resin and has a circular shape as a whole. Unlike this, the front surface of the dart plate 400 is not limited to a circle but may be applied in various forms such as polygons.
- dart board 400 may be attached to the printed matter.
- the dart plate 400 is configured in detail with an edge cover 410 having an LED light emitting unit 413, a number board 420, a segment accommodating board 430, a segment 440, and a back cover 450. .
- the edge cover 410 forms a front circumference of the dart board 400 and is installed at the circumference of the number board 420.
- the edge cover 410 is formed with a cover portion 411 bent to surround the circumference of the number board 420, the light transmitting space 412 in the spaced inward from the cover portion 411 Is formed.
- the edge cover 410 when the edge cover 410 is installed on the front of the circumference of the number board 420, the circumference of the number board 420 and the cover 411 of the rim cover 410 is spaced at a predetermined interval Since it is assembled in a state, the light transmitting space 412 is naturally formed between the cover 411 and the circumference of the number board 420.
- the edge cover 410 may include any one selected from fluorescent pigments, photoluminescent pigments, fluorescent pigments and fluorescent photoluminescent pigments / phosphorescent pigments by impregnation, coating, etc. In this case, the edge cover 410 ) Is emitted by the light emitted through the LED light emitting unit 413 disposed to be disposed along the inner circumferential surface or self-emitted.
- edge cover 410 may be further formed with a coupling protrusion 414 fitted to the protrusion coupling portion 422 of the number board 420 to be described later in the rear portion.
- the LED light emitting unit 413 is configured on the inner circumferential surface of the edge buffer 410 to emit light toward the light transmitting space 412 of the edge cover 410, the light emitting diode and the light emitting diode is electrically It consists of a printed circuit board (not shown) that is connected to.
- the light emitting diode may be selected by applying any one of a chip type diode or a ball type diode.
- the LED light emitting unit 413 is configured by being connected in a band shape along the inner periphery of the cover portion 411 of the edge cover 410, by the light emitted by the edge cover 410, number board 420, Light is emitted to the pigment contained in the dart pin 400, the segment receiving board 430, and the segment 440 to be described later.
- the light emitted through the LED light emitting unit 413 is dispersed in various directions through the light transmitting space 412 formed between the rim cover 410 and the number board 420 containing the pigment described above
- the luminous effect can be enhanced as well as the interior effect.
- the light emitting diodes constituting the LED light emitting unit 413 may have a power consumption of 0.1W to 0.5W, and may include 10 to 100 light emitting diodes. In this case, the light emitting diodes may be configured differently as necessary, and the number or arrangement of the light emitting diodes is not particularly limited.
- the white wavelength or the blue wavelength can be maintained in the optimum light emission state in the light impregnated with the component selectively impregnated with the fluorescent pigment or photoluminescent pigment.
- the gamers and spectators alike it gives a more brilliant aesthetic and beauty.
- the number board 420 may include any one selected from a fluorescent pigment, a photoluminescent pigment, a fluorescent pigment and a photoluminescent pigment mixed with a phosphorescent pigment by impregnation, coating, etc.
- the edge cover 410 is The light is emitted or self-emitted by the light emitted through the LED light emitting unit 413 disposed to be disposed along its inner circumferential surface.
- the number board 420 is disposed at the rear of the rim cover 410, and is provided with a fixing portion 421 having a plurality of protrusion coupling portions 422 formed on the front surface, A reinforcement part 423 is horizontally bent outward along the circumference.
- the protruding coupling portion 422 is a coupling protrusion 414 formed in the rear portion of the rim cover 410 is assembled by the insertion, the protrusion coupling portion 422 of the coupling protrusion 414 is inserted into As the length increases, the size of the light transmitting space 412 may be extended. However, if their length is too long, it may be against the stable bond, so it may be desirable to set the appropriate length.
- the width (a) of the fixed portion 421 of the number board 420 is larger than the front width (b) of the edge cover 410, the deviation of the fixed portion width (a) and the front width (b) As many circular light emitting bands (not shown) corresponding to the width c are formed.
- the number board 420 has a width of the fixing part 421 of the number board 220, the LED light emitted through the light transmitting space 412 is wider than the front width (b) of the edge cover 210. Since it is irradiated toward the (a) side, the circular light emitting band is naturally formed along the width (a) of the fixing part 421, thereby enhancing the beauty and aesthetics of the overall appearance of the dart plate 400, The visual image can be highlighted.
- the LED light emitting part 413 is arranged in a circular shape in a band shape inwardly of the edge cover 410 so that the light is directed toward the center of the dart plate 400. Therefore, as the entire surface of the dart plate 400 emits light, the beauty and aesthetics of the dart plate are inspired.
- the segment accommodating board 430 is coupled to the rear cover 450 through a coupling flange 431 formed to be vertically bent outward at the rear side while being disposed at the center of the number board 420.
- the segment storage board 430 may include any one selected from fluorescent pigments, photoluminescent pigments, fluorescent pigments and photoluminescent pigments mixed with the photoluminescent pigments by impregnation, coating, etc.
- the edge cover 410 Is emitted by the light emitted through the LED light emitting unit 213 disposed to be disposed along its inner circumferential surface or self-emitted.
- the segment receiving board 430 has several storage spaces 432 therein.
- the accommodating space 432 may include twenty arc-shaped first accommodating parts 432 along the edges, and twenty arc-shaped second accommodating parts 433 and second inside the first accommodating part 432.
- 20 arcuate 3rd accommodating parts 434 are also provided inside the accommodating part 433, and 20 arcuate 4th accommodating parts 435 are also provided inside the 3rd accommodating part 434.
- the segment receiving board 430 may form a plurality of circular accommodating parts concentrically. It looks like an archery target, so you can play games similar to archery and actually use it as an archery target.
- the segment 440 accommodated in each storage space 432 of the segment receiving board 430 has a needle hole 441 in the thickness direction so that the plastic pin 310 of the dart pin 300 to be described later in the thickness direction can be inserted. ) Is formed.
- the segment storage board 430 may include any one selected from fluorescent pigments, photoluminescent pigments, fluorescent pigments and photoluminescent pigments mixed with phosphorescent pigments by impregnation, coating, etc.
- the edge cover ( 410 is emitted by the light emitted through the LED light emitting portion 413 disposed to be disposed along the inner circumferential surface or self-emission.
- the back cover 450 forms a rear surface of the dart board 400, and is screw-assembled to the number board 420.
- the rear cover 450 has a substantially flat plate shape, and has a flange portion 451 formed at an edge thereof to be horizontally bent outward and in close contact with an inner circumferential surface of the number board 420.
- a coupling groove 452 may be further formed on the inner surface of the rear cover 450.
- the coupling groove 452 is a protrusion 424 formed in the number board 420 is inserted through the shock absorbing plate 460 to cover the number board 420 and the shock absorbing plate 460 back cover 450 ) Can be easily matched to the structure of the assembly piece for easy bolt fixing.
- the light emitting dart plate set (S) according to the present invention may further include an impact absorbing plate 460 is installed on the inner surface corresponding to the segment 440 of the back cover 450.
- the shock absorbing plate 460 serves to absorb the elasticity (impact force) of the dart pin 300 to be inserted into the segment 440, the material is any one selected from the sponge, styrofoam, cork, rubber fast to restore the shape It is desirable to be one.
- the shock absorbing plate 460 is disposed on the inner surface of the rear cover 450 as described above, the impact and noise generated when the dart pin 300 hits the dart plate 400 may be absorbed so that the dart pin 300 may be absorbed. Falling without being stuck in this dart board 400 is prevented.
- the light emitting dart plate set (S) may further include a score generation sheet 470 is installed on the inner surface of the shock absorbing plate 460, and electrically with the score generation sheet 470
- a printed circuit board 480 connected thereto and a display unit 490 electrically connected to the printed circuit board 480 may also be included.
- the score generation sheet 470 is a first conduction sheet 471 printed with a first conducting wire partitioned and insulated in concentric circles, and a second conducting wire partitioned with a radially insulated second conducting line printed thereon. Consisting sheet 471 and overlapping the second conducting sheet 472, the score generating sheet 470, may be composed of a film-type membrane switch, in addition to the throwing dart pin 300 is attached Applicable to all means switched by the shock that occurs when the
- Reference numeral 473 denotes an insulating plate for insulating between the first and second conductive sheets 471 and 472.
- the printed circuit board 480 calculates a score value set at a position energized by the pressing of the dart pin 300 detected by the score generation sheet 470, and the score calculated by the display unit 490.
- a microprocessor 481 that sends a value may be further configured.
- the first electrification line and the second electrification sheet 472 of the first electrification sheet 471 in which the dart pin 300 thrown by the player constitutes the score generation sheet 470.
- the first conductive line and the second conductive line of the point where the dart pin 300 is attached to each other the first conductive sheet 471 of the first
- the score value for the ground point is transmitted to the printed circuit board 480 to which the first conducting line and the second conducting line of the second conducting sheet 472 are electrically connected.
- the area corresponding to the area where the dart pin 300 thrown by the player is inserted is inserted.
- the score value is calculated by the microprocessor 481 configured on the printed circuit board 480 and displayed on the display unit 490.
- the light emitting dart plate set (S) includes a count monitor (510); An operation button 520 for manipulating reset or on / off of the coefficient monitor 510; And a speaker 530 installed below the operation button 520.
- the light emitting dart plate set S has a counting monitor 510, an operation button 520, and a speaker at the lower or upper and lower portions of the dart plate 400, as shown in FIGS. 21 to 25.
- An installation unit in which the 530 is installed may be provided.
- a standing die 500 for standing up the light emitting dart plate set S in a standing manner is provided, and the dart plate 400, the counting monitor 510, the operation button 520, and the speaker are provided.
- the 530 may be installed.
- another LED light emitting unit 413 ' may be formed on both sides of the dart plate 400 separately from the LED light emitting unit 413 installed in the dart plate.
- the dart pin 300 as shown in Figure 27 is a plastic needle 310 with a sharp tip in front, and the pin body 320 is screwed to the plastic needle 310 is formed of metal or plastic One, it is composed of a dart wing 330 screwed to the rear of the pin body 320.
- the plastic needle 310 and the dart wing 330 or the pin body 320 of the dart pin 300 is a plastic injection molding, which is impregnated with a fluorescent pigment. Therefore, when the dart pin 300 is inserted into the front surface of the dart plate 400 by the light emitted through the LED light emitting unit 413, the light emitting effect is displayed, so that the dart pin 300 without separate lighting in a dark space. The position attached to this dart board 400 can be easily identified.
- protrusion 40 shock absorbing plate
- Score generation sheet 211 First electric wire
- first conducting sheet 213 second conducting line
- second conductive sheet 220 printed circuit board
- segment storage board 440 segment
- score generation sheet 480 printed circuit board
Landscapes
- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)
- Illuminated Signs And Luminous Advertising (AREA)
Abstract
Description
Claims (16)
- 전방에 자석(11)이 내장된 다트핀(10);철판 또는 철고무시트 중 어느 하나로 형성되고 전면에 인쇄부(21)가 표현된 다트인쇄물(22)이 부착된 다트핀부착판(20);상기 다트핀부착판(20)의 하면이 결합되는 고정부(32)가 둘레부를 따라 외측 방향으로 절곡형성되며 상기 고정부(32)의 외측방향으로 수직절곡된 보강부(33)가 형성된 몸체(30);상기 몸체(30)의 둘레부 전면을 포설하되 상기 몸체(30)의 둘레부를 따라 절곡된 커버부(51)가 형성되고 이 커버부(51)로부터 이격되어 빛 투광공간(52)이 형성된 테두리커버(50);상기 테두리커버(50)의 내측에 구성되어 상기 테두리커버(50)의 빛 투광공간(52) 측으로 빛을 발산하는 LED발광부(70); 및상기 다트핀(10), 상기 테두리커버(50) 및 상기 다트인쇄물(22) 중 적어도 어느 하나에 형광안료, 축광안료 및 형광안료/축광안료의 혼합물 가운데 적어도 어느 하나가 혼합되는 것을 포함하는 것을 특징으로 하는 발광 다트판 세트.
- 제1항에 있어서,상기 다트인쇄물(22)의 하부면과 상기 몸체(30) 상부면 사이에 설치되는 충격흡수판(40)을 더 포함하는 것을 특징으로 하는 발광 다트판 세트.
- 제1항에 있어서,상기 몸체(30)에 형성된 고정부(32)의 폭(a)은 상기 몸체(30)의 둘레부를 따라 설치되는 상기 테두리커버(50) 폭(b)보다 넓게 형성되어,상기 테두리커버(50)의 폭(b)보다 넓게 형성된 상기 몸체(30) 고정부(32)의 폭(c)을 따라 상기 테두리커버(50)에 의해 형성되는 빛 투광공간(52)을 통해 발산되는 상기 LED발광부(70)의 발산빛에 의해 발광되는 원형의 발광띠(80)가 더 형성되도록 한 것을 특징으로 하는 발광 다트판 세트.
- 제1항에 있어서,상기 다트핀부착판(20)과 인쇄부(21) 사이에는, 상기 다트핀부착판(20)에 부착되는 다트핀(10)의 압착이 감지되는 점수생성시트(210)가 더 구성되고,상기 점수생성시트(210)와 전기적으로 연결되는 인쇄회로기판(220);상기 인쇄회로기판(220)과 전기적으로 연결되는 디스플레이부(230)가 더 포함되는 것을 특징으로 하는 발광 다트판 세트.
- 제4항에 있어서,상기 점수생성시트(210)는,동심원상으로 각각 구획된 제1통전선(211)이 인쇄된 제1통전시트(212);방사상으로 각각 구획된 제2통전선(213)이 인쇄되며 상기 제1통전시트(212)와 교차되어 형성되는 각 구간의 통전을 구별하여 감지하기 위한 제2통전시트(214)로 구성되는 것을 특징으로 하는 발광 다트판 세트.
- 제4항에 있어서,상기 인쇄회로기판(220)에는, 상기 점수생성시트(210)의 각 구역에 대응하는 기설정된 점수값을 연산하고 상기 연산된 점수값을 상기 디스플레이부(230)로 송출하는 마이크로프로세서(240)가 더 구성되는 것을 특징으로 하는 발광 다트판 세트.
- 제4항에 있어서,상기 점수생성시트(210)를 구성하는 제1통전시트(212)에는,서로 다른 점수가 각각 대응되는 제1 내지 제4점수구역부(212a, 212b, 212c, 212d)들이 형성되고, 상기 각각의 점수구역부는 동일한 점수에 대응되는 다수의 점수구역부와 병렬로 통전되어 형성되며,상기 점수생성시트(210)를 구성하는 제2통전시트(214)에는,상기 제1통전시트(212)의 제1 내지 제4점수구역부(212a, 212b, 212c, 212d)에 대응하는 위치에 압착에 의해 접지되기 위한 제1 내지 제4접지구역부(214a,214b, 214c, 214d)가 형성되고, 상기 각각의 접지구역부는 동일한 점수에 대응되는 다수의 접지구역부와 병렬로 통전되어 형성되되 상기 제1통전시트(212)의 배열과 동일하게 대응되도록 형성되며,상기 제1 내지 제4점수구역부(212a, 212b, 212c, 212d)와 상기 제1 내지 제4 접지구역부(214a, 214b, 214c, 214d)의 통전에 의해 점수가 검출되는 것을 특징으로 하는 발광 다트판 세트.
- 제7항에 있어서,상기 제1통전시트(212)의 제1점수구역부(212a)와 제3점수구역부(212c)는 제1검출선(215a)에 의해 전기적으로 연결되고,상기 제1통전시트(212)의 제2점수구역부(212b)와 제4점수구역부(212d)는 제2검출선(215b)에 의해 전기적으로 연결된 것을 특징으로 하는 발광 다트판 세트.
- 제7항에 있어서,상기 제2통전시트(214)의 제1접지구역부(214a)와 제2접지구역부(212b)는 제3검출선(215c)에 의해 전기적으로 연결되고,상기 제3접지구역부(214c)와 제4접지구역부(214d)는 제4검출선(215d)에 의해 전기적으로 연결된 것을 특징으로 하는 발광 다트판 세트.
- 전방에 끝이 뾰족한 플라스틱 바늘(310)이 나사식으로 결합된 다트핀(300); 및빛 투광공간(411)을 갖는 테두리커버(410), 상기 테두리커버(410)의 내부에 조립되는 숫자보드(420), 상기 숫자보드(420)의 내부에 설치되며 다수의 수납공간(431)을 갖는 세그먼트 수납보드(430), 상기 세그먼트 수납보드(430)의 각 구획공간(431)에 수납되며 두께방향으로 상기 다트핀(300)의 플라스틱 바늘(310)이 꽂힐 수 있도록 바늘구멍(441)이 형성된 다수의 세그먼트(440), 상기 세그먼트 수납보드(430)의 후방에 배치되는 뒷덮개(450)로 이루어진 다트판(400);으로 구성됨을 포함하며,상기 테두리커버(410)의 내주면에 배치되어 상기 테두리커버(410)의 빛 투광공간(412) 측으로 빛을 발산하는 LED발광부(413)가 원형으로 배열되어 다트판(400)의 중심으로 향하도록 한 것을 더 포함하는 것을 특징으로 하는 발광 다트판 세트.
- 제10항에 있어서,상기 다트핀(300), 테두리커버(410), 숫자보드(420), 세그먼트 수납보드(430), 세그먼트(440) 중 적어도 어느 하나에 형광안료, 축광안료 및 형광안료/축광안료의 혼합물 가운데 적어도 어느 하나가 혼합된 것을 더 포함하는 것을 특징으로 하는 발광 다트판 세트.
- 제10항에 있어서,상기 뒷덮개(450)의 상기 세그먼트(440)와 대응하는 안쪽면에 설치되는 충격흡수판(460)을 더 포함하는 것을 특징으로 하는 발광 다트판 세트.
- 제10항에 있어서,상기 세그먼트(440)와 뒷덮개(450) 사이에, 상기 다트핀(300)이 세그먼트(440)의 바늘구멍(441)에 꽂히면서 발생되는 충격력을 감지하여 점수를 생성하는 점수생성시트(470);상기 점수생성시트(470)와 전기적으로 연결되는 인쇄회로기판(480);상기 인쇄회로기판(480)과 전기적으로 연결되는 디스플레이부(490)를 더 포함하는 것을 특징으로 하는 발광 다트판 세트.
- 제13항에 있어서,상기 인쇄회로기판(480)은 상기 점수생성시트(470)의 각 구역에 대응하는 기설정된 점수값을 연산하고 상기 연산된 점수값을 상기 디스플레이부(490)로 송출하는 마이크로프로세서(481)를 더 포함하여 이루어지는 것을 특징으로 하는 발광 다트판 세트.
- 제10항에 있어서,상기 다트판(300)이 설치되는 입식다이(500);상기 입식다이(500)의 다트판(400) 상측에 설치되어 다트점수를 출력하는 계수 모니터(510);상기 입식다이(500)의 다트판(400) 하측에 설치되어 상기 계수모니터(510)의 리셋이나 온/오프 등을 조작하는 조작버튼(520); 및상기 입식다이(500)의 조작버튼(520) 하측에 설치되는 스피커(530)를 더 포함하는 것을 특징으로 하는 발광 다트판 세트.
- 제10항에 있어서,상기 세그먼트 수납보드(430)의 구획공간(431)은 동심원상 또는 동심원상 및 지름방향으로 등분되게 구획된 것을 특징으로 하는 발광 다트판 세트.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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US13/514,186 US8979092B2 (en) | 2009-12-07 | 2010-12-03 | Luminous dart board set |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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KR20090120839 | 2009-12-07 | ||
KR10-2009-0120839 | 2009-12-07 |
Publications (2)
Publication Number | Publication Date |
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WO2011071274A2 true WO2011071274A2 (ko) | 2011-06-16 |
WO2011071274A3 WO2011071274A3 (ko) | 2011-11-24 |
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PCT/KR2010/008613 WO2011071274A2 (ko) | 2009-12-07 | 2010-12-03 | 발광 다트판 세트 |
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US (1) | US8979092B2 (ko) |
WO (1) | WO2011071274A2 (ko) |
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KR101549518B1 (ko) * | 2014-03-28 | 2015-09-03 | 주식회사 한궁세계화연구소 | 표적판용 다중 접점식 위치 감지 장치 |
GB2542108B (en) * | 2015-06-18 | 2017-08-30 | Flight Path Ip Ltd | Automatic dartboard scoring system |
TWI614055B (zh) * | 2015-08-21 | 2018-02-11 | 莫特格創新有限公司 | 電子飛鏢靶裝置 |
US20170110038A1 (en) | 2015-10-14 | 2017-04-20 | James A. Guertin | Lumineye |
US10443987B2 (en) | 2016-04-21 | 2019-10-15 | Indian Industries, Inc. | Dartboard scoring system |
US10234246B1 (en) * | 2017-11-13 | 2019-03-19 | Jinwei Plastic Model Hardware Fty. Ltd. | Rear cover of a dartboard and a noise attenuation structure thereof |
US20200147466A1 (en) * | 2018-11-14 | 2020-05-14 | Michael Heinrich | Portable game receptacle target for receiving game pieces |
USD923096S1 (en) * | 2019-06-14 | 2021-06-22 | Fredrick T. Nash | Archery dart board |
Citations (3)
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JP2001509251A (ja) * | 1997-01-20 | 2001-07-10 | ドモテック システムテヒニーク ゲゼルシャフト ミット ベシュレンクテル ハフツング | 標的上の矢の衝突点の検出のための装置 |
KR200267586Y1 (ko) * | 2001-11-29 | 2002-03-09 | 조광원 | 야광 다트게임기 |
US7163204B1 (en) * | 2005-10-18 | 2007-01-16 | Guten Electronics Industrial Co., Ltd. | Dart and dartboard set |
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Publication number | Priority date | Publication date | Assignee | Title |
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JPS6185280U (ko) | 1984-11-10 | 1986-06-04 | ||
US5593349A (en) * | 1994-09-09 | 1997-01-14 | Valley Recreation Products Inc. | Automated league and tournament system for electronic games |
US5755443A (en) * | 1996-07-10 | 1998-05-26 | Huang; Chun-Mu | Dart game controller that adjusts one score to effect other scores |
AU2760699A (en) * | 1998-02-04 | 1999-08-23 | Laserscore, Inc. | System for detecting the presence and location of at least one object in a fieldby using a divergent radiation source and an array of opposed plural detectors which rotate together around the field |
DE20312026U1 (de) * | 2002-08-08 | 2003-12-11 | Cho, Yufu | Dartscheibe |
BRPI0406354A (pt) * | 2004-10-25 | 2006-06-13 | Ramatis Piscirilli Ramos | processos de combate de focos de calor e/ou incêndios de qualquer magnitude, e equipamentos para operacionalização, equipamentos para extinção, e composições de extinção resultantes - projeto salamandras |
US20090218769A1 (en) * | 2008-03-01 | 2009-09-03 | Robert Krzewicki | Dart board with digital target display ring (dtdr) |
-
2010
- 2010-12-03 US US13/514,186 patent/US8979092B2/en not_active Expired - Fee Related
- 2010-12-03 WO PCT/KR2010/008613 patent/WO2011071274A2/ko active Application Filing
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2001509251A (ja) * | 1997-01-20 | 2001-07-10 | ドモテック システムテヒニーク ゲゼルシャフト ミット ベシュレンクテル ハフツング | 標的上の矢の衝突点の検出のための装置 |
KR200267586Y1 (ko) * | 2001-11-29 | 2002-03-09 | 조광원 | 야광 다트게임기 |
US7163204B1 (en) * | 2005-10-18 | 2007-01-16 | Guten Electronics Industrial Co., Ltd. | Dart and dartboard set |
Also Published As
Publication number | Publication date |
---|---|
US20120248702A1 (en) | 2012-10-04 |
WO2011071274A3 (ko) | 2011-11-24 |
US8979092B2 (en) | 2015-03-17 |
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