WO2009096699A2 - Flotteur pour la pêche sensible à l'éclairage - Google Patents
Flotteur pour la pêche sensible à l'éclairage Download PDFInfo
- Publication number
- WO2009096699A2 WO2009096699A2 PCT/KR2009/000403 KR2009000403W WO2009096699A2 WO 2009096699 A2 WO2009096699 A2 WO 2009096699A2 KR 2009000403 W KR2009000403 W KR 2009000403W WO 2009096699 A2 WO2009096699 A2 WO 2009096699A2
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- WO
- WIPO (PCT)
- Prior art keywords
- illumination
- fishing bobber
- light emitting
- light
- fishery
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K93/00—Floats for angling, with or without signalling devices
- A01K93/02—Floats for angling, with or without signalling devices with signalling devices
Definitions
- the present invention relates to a bobber used for fishing, and more particularly, to a fishing bobber that increases the user's perception according to ambient illumination.
- the fishing bobber floats on the water during fishing to allow the user to know the location of the fishing line and to grasp the fine movements of the fishing line, such as the chamfering of the fish and the moment the fish catches the bait. In other words, the fishing bobber informs the movement of the fishing hook with the bait and the fishing line, and thus is a means of judging the relationship between the submerged fish and the fish.
- the above fish means a signal that the fishing line is suddenly pulled by the fish to catch the bait, and will be used in the same meaning below.
- a fishing bobber with light emitting means is used as a means for increasing the recognition power of the bobber in an environment with low ambient light, and in addition, a fishing bobber that detects fishery and informs the angler as a light emitting means is used.
- Conventional light emitting means includes a method using a chemical light that emits light by chemical action (Korean Patent Publication No. 10-2003-0066833, Korean Utility Model No. 20-0395191, etc.), and a light emitting diode (LED). ), A light bulb or the like (Korean Utility Model Registration No. 20-0419863, Korean Patent Registration No. 10-0820574, etc.).
- the bobber itself is hidden by the floor of the wave, so that even if the light emitting diode emits light, the user may not observe the emission of the fishing bobber due to the brightness of the surroundings.
- an embodiment of the present invention is to provide a fishing bobber that is emitted by varying the brightness according to the ambient illumination.
- the recognition power of the fish is enhanced by high-luminance light emission, and when the ambient illumination is low, it emits light with low brightness to inform the user of the current position of the fish, and when the fishery is detected, it increases the brightness and emits light to the user.
- the purpose is to make it easier to recognize.
- It also has the purpose of enabling the use of a ready-made coin-type battery, the purpose of ensuring sufficient voltage while using the ready-made battery having a certain shape, and the purpose of reliably fixing the coin-type battery.
- the present invention provides a high luminance light emission when the fishery is detected when the ambient illumination is high, and low luminance light emission when the ambient illumination is low, the luminance is lower than the low luminance light emission when the fishery is detected
- the illumination response responsive fishing bobber characterized in that the additional light is added as the light source is added.
- the high luminance light emission when the ambient light is high is made of a light of a xenon lamp or a large light-emitting diode
- the low luminance light emission when the ambient light is low is made of a light emission of the main light emitting diode
- a light source suggests an illuminance responsive fishing bobber characterized in that it consists of light emission of the auxiliary light emitting diode.
- a magnetic force sensor is provided at the upper portion of the fishery detecting unit, the hollow fishery case, the auxiliary magnet fixed to the inner bottom of the fishery case, and the upper portion of the auxiliary magnet has the same polarity as the upper surface of the auxiliary magnet.
- the illumination response responsive fishing bobber characterized in that the main magnet is spaced apart from the auxiliary magnet by the repulsive force and is movable up and down.
- the inlet detection unit proposes an illumination response responsive fishing bobber, characterized in that consisting of a capacitive proximity sensor fixed to the inner surface of the body portion.
- the battery proposes the illumination response responsive fishing bobber characterized in that the coin-type battery is fixed to the electric circuit board provided in the middle and the guider formed in the lower side of the body portion.
- the battery has a cylindrical shape in which a first electrode surface is formed on an upper surface thereof, and a hollow cylindrical hole is formed in the center to penetrate up and down, and an inner circumferential surface of the cylindrical hole has a second electrode surface having a polarity opposite to that of the first electrode surface.
- FIG. 1 is a cross-sectional view of the irradiance response fishing bobber according to the first embodiment of the present invention.
- Figure 2 is a partial cross-sectional view of the roughness response fishing bobber according to the second embodiment of the present invention.
- Figure 3 is a cross-sectional view of the irradiance response fishing bobber according to the third embodiment of the present invention.
- Figure 4 is an exploded perspective view of the main portion of the rough response responsive fishing bobber shown in FIG.
- FIG. 5 is a perspective view showing another battery of the illuminance-responsive fishing bobber shown in FIG.
- the response response fishing bobber emits high luminance when the fishery is detected when the surrounding illumination is high, and emits the low brightness when the surrounding illumination is low, and when the fishery is detected, In order to increase the brightness, additional light is emitted as a light source is added.
- the fishing bobber does not emit light until there is a fisherman, and the position is observed by the naked eye of the user. Inform fish that fishery is detected by fishing bobber.
- the fishing bobber when the ambient light is low, i.e. at night or during the day, when the weather is cloudy, the fishing bobber emits light at low brightness to indicate the location of the fishing bobber, and when the fishery is detected by the fishing bobber, additional light is emitted to the above emission. This is because the brightness is increased to inform the user that the fishery is a potato by a fishing bobber.
- the distinction between high and low ambient light is determined based on the magnitudes of the light intensity values (LUX and LX).
- the roughness according to the weather conditions is about 10,000 LUX in clear daytime, about 1,000 LUX in daytime with clouds, and about 100 LUX at dusk, and 0.3 LUX on the clear night at full moon.
- the criteria for determining can be any illuminance value in the range of approximately 200 to 300 LUX. This becomes a reference illuminance previously input to the controller to be described later, and different reference illuminance may be set according to a specific use environment of the fishing bobber.
- FIG. 1 is a cross-sectional view of a rough response responsive fishing bobber according to the first embodiment of the present invention.
- the body portion 10 connected to the fishing line 10, the acquisition detection unit 20, the illumination intensity detection unit 30, the light emitting unit 40, a feeling of fishery A branch 50 and a controller 60 are provided.
- the body portion 10 is an airtight container with an empty inside, and the body portion includes an upper body 11 made of a transparent material or a translucent material, and a lower body 12 coupled to a lower portion of the upper body.
- a central cylinder (11a) extending through the upper and lower center of the body portion is formed in the center of the upper end of the upper body 11, the lower body 12 is a cylindrical guider (12a) so that the lower outer peripheral surface of the central cylinder is partially fitted and sealed. ) Is extended upwards. That is, the fishing line passes up and down in the central cylinder (11a) penetrating the body portion 10 is connected to the fishing line and the fishing bobber (1).
- the coupling portion of the upper body 11 and the lower body 12, the coupling portion of the central cylinder (11a) and the guider (12a) may be further provided with a waterproof ring (13) for sealing.
- the acquisition detection unit 20 detects whether the fishing bobber 1 is in use and is recovered or retrieved out of the water, and the control unit 60 determines the on / off operation of the fishing bobber. Provides information about
- the inlet detection unit 20 is provided with an inlet detection sensor formed on the exterior of the lower body portion that is submerged in water during normal use.
- an inlet detection sensor formed on the exterior of the lower body portion that is submerged in water during normal use.
- two terminals 21 spaced apart from each other may be provided on the exterior of the lower body, and when a weak current flows through the terminals 21, it may be determined whether the fishing bobber has been obtained by determining whether the current is energized.
- a method of determining whether or not obtained by comparing with a predetermined resistance value may be used.
- the illuminance detection unit 30 is provided on the upper portion of the electrical circuit board (E) coupled to the upper body, is provided with an illuminance measuring sensor for measuring the intensity of the external light incident through the transparent upper body. The ambient illuminance measured by the illuminance measuring sensor is then transmitted to the control unit, whereby the high and low of the ambient illuminance is determined, thereby becoming a selection criterion of the specific light emitting means.
- the light emitting unit 40 includes at least one small xenon lamp 41 and at least two light emitting diodes L.E.D. 42,43 which are provided on the upper part of the circuit board as light emitting means.
- the high luminance light emission when the ambient illumination is high and the fishery is detected is made by the xenon lamp 41, and the low luminance light emission and additional light emission when the ambient illumination is low are performed by the light emitting diodes 42 and 43.
- Light emitting means is selected.
- the controller 60 charges a capacitor (not shown) provided on the electric circuit board E.
- the controller causes the xenon lamp 41 connected to the charged capacitor to emit light.
- the very bright light emitted from the xenon lamp allows the user to easily recognize the high brightness light even in the daytime.
- the high brightness of the xenon lamp illuminates the vicinity of the fishing bobber, suggesting that fishes are detected from the surroundings of the waves as compared to the dark blue waves. There is an effect that makes it easy to recognize.
- the light emitting pattern may be formed as a pattern that blinks at a predetermined cycle through a blinking circuit provided in the controller.
- the xenon lamp may be replaced with a large light-emitting light emitting diode having a luminance equal to or greater than that of the xenon lamp.
- a part of the light-emitting diode (hereinafter, referred to as the main light emitting diode 42) and the remaining light-emitting diode (hereinafter referred to as the auxiliary light emitting diode 43) further lighted according to fishery detection. ) Can be distinguished.
- the low luminance light emission of the main light emitting diode 42 is a minimum enough to allow a general user to check the position of the fishing bobber 1 thrown in a low light environment, and selectively adjusts the luminance of the low luminance light emission.
- the control unit may be provided with a control means for selecting a portion of the plurality of light emitting diodes, or to change the current value of the pre-selected main light emitting diode.
- the brightness of the main light emitting diode may be automatically adjusted by the controller according to the illuminance measured by the illuminance sensor so as to have a predetermined brightness.
- the additional light emission is made by the auxiliary light emitting diode 43 is emitted by the control unit. That is, the auxiliary light emitting diode 43 additionally emits light in addition to the light emission of the existing main light emitting diode 42, thereby increasing the overall brightness and visually informing the user that the fishery is detected.
- the pattern of the additional light emission may be made in a manner of flashing at a predetermined cycle through the above-described flashing circuit, and the main light emitting diodes and the auxiliary light emitting diodes are all flickered, or the auxiliary light emitting diodes 43 are connected to the main light emitting diodes 42. It may be configured to have a different color from). That is, as the light emission pattern is changed to blink or the color is changed, the recognition power of the user is increased.
- the fishery detection unit 50 detects a change in magnetic force generated by the movement of the magnetic force generated by the inertia of the magnet provided inside the body portion detects the presence of fishery.
- the stopper 53 is provided at the lower portion of the electric circuit board E and fitted to the outer circumferential surface of the guider 12a and the magnetic force sensor 51 positioned at the upper portion of the guider 12.
- a ring-shaped magnet 52 that can freely move up and down is provided.
- the lower portion of the guider 12a may further include a cushioning rubber 54 to prevent the friction caused by the impact and frequent friction generated when contacting the magnet.
- the fishing bobber thrown in the sea is erected on the surface of the water, and when the water is confirmed from the acquisition detection unit and the control unit operates the fishing bobber, the magnet 52 is located under the guider 12a. Then, when the fish catches the bait, the fishing bobber connected to the fishing line generates a momentary pulling force, which is temporarily locked in the surface of the fishing bobber. When the fishing bobbin 1 is suddenly moved by this pulling force, the magnet 52 which can be freely moved in the pulling direction is relatively moved to the top of the guider by inertia.
- the magnetic force sensor 51 located above the guider detects a change in magnetic force generated by the movement of the magnet, thereby detecting the presence of fish.
- control unit 60 is installed on the electric circuit board (E), and controls the operation relationship of the above-described intake detection unit 20, illuminance detection unit 30, the light emitting unit 40, the fishery detection unit 50. .
- the controller 60 starts the operation of the fishing bobber when it is determined that the fishing bobber 1 has been obtained from the acquisition detecting unit 20.
- the illuminance measured by the illuminance sensing unit 30 is compared with a preset standard illuminance, and when the measured illuminance is greater than or equal to the standard illuminance, a charge such as a capacitor for high luminance light emission is prepared, and the measured illuminance is less than the standard illuminance.
- the main light emitting diode 42 emits low luminance.
- control unit 60 performs the high-luminance light emission as described above, or performs additional light emission.
- control unit 60 maintains light emission for a predetermined time when the fishing bobbin 1 is exposed and exposed to the air, and then shuts off the power so as to terminate the operation of the fishing bobber if there is no re-entry thereafter.
- the light emitting state is maintained for a predetermined time when the fishing bobber is collected at night, the user can easily measure the position of the sharp fishing hook, etc., thereby increasing safety during fishing.
- the power for operation is supplied by a battery (B) located in the lower portion of the electrical circuit board.
- a battery B located in the lower portion of the electrical circuit board.
- various types of ready-made products may be used as the battery.
- the battery B having a large mass is disposed below the fishing bobber so that the fishing bobber 1 stands on the surface of the water.
- FIG. 2 is a partial cross-sectional view of the roughness response fishing bobber according to the second embodiment of the present invention.
- Roughness response type fishing bobber 1 ' according to the second embodiment of the present invention has a rod shape.
- the illuminance-response fishing bobber 1 ' according to the second embodiment has a body portion 10', an intake detection portion 20, an illuminance detection portion 30, a light emitting portion 40, and a fishery detection portion 50 '. And a control unit 60.
- the body portion 10 ' is provided with a cap 11' of a transparent material formed on the upper portion, and a lower end cap 13 'detachably coupled to the cylindrical body 12' and the lower end.
- An auxiliary electric circuit board E1 having an illuminance sensing unit and a light emitting unit is coupled to the inside of the cap 11 ', and connected to the auxiliary electric circuit board, and the main electric circuit board E2 including the control unit is connected to the body 12'. Erected and combined.
- the fishery detecting portion 50 ' has a cylindrical casing 51' attached to one side of the main electric circuit board E2 erected along the longitudinal direction of the body 12 'and a magnet freely moving along the casing longitudinal direction. 52 'and one side of the cylindrical case is provided with a magnetic force sensor 53' for measuring a change in magnetic force.
- the magnet 52' inside the casing 51 ' is relatively lifted by inertia.
- the magnetic force sensor 53 'recognizes the change in magnetic force caused by the magnetic force and determines that there is a fishery.
- the configuration and operation of the acquisition detection unit 20, the illumination intensity detection unit 30, the light emitting unit 40 and the control unit 60 is the same as the illumination response type fishing bobber according to the first embodiment described above, Description is omitted.
- FIG. 3 is a cross-sectional view of the rough response responsive fishing bobber according to the third embodiment of the present invention
- Figure 4 is a perspective view exploded main portion of the rough response responsive fishing bobber shown in FIG.
- the illuminance-responsive fishing bobber 1 ′′ includes a body portion 10, an intake detection portion 20 ′′, an illuminance detection portion 30, a light emitting portion 40, and a fishery fish detection portion 50 ′′. And a control unit 60.
- the shape of the torso 10 is an egg like the first embodiment described above.
- the body portion 10 is divided into upper and lower body (11, 12), is assembled detachably by a screw thread in a state in which the waterproof ring 13 for sealing is interposed.
- the central cylinder (11a) is formed in the upper body 11, the lower body 12 is the same also provided with a guider (12a) surrounding the lower end of the central cylinder.
- the fishery detection unit 50 ′′ is provided on the upper portion of the electric circuit board E provided in the upper body tom 11, and the fishery detection unit 50 ′′ is provided with a magnetic force sensor 51 on the upper portion. It is located at the upper portion of the hollow auxin case 55 and the auxiliary magnet 52a and the auxiliary magnet 52a fixed to the inner bottom of the case, and has the same polarity as the upper surface of the auxiliary magnet 52a on the lower surface of the repulsive force.
- the main magnet 52b spaced apart from the auxiliary magnet 52a and movable up and down is provided.
- the main magnet 52b which is movable up and down in the case 55 is moved upward from the inside of the case by inertia when the bobber is moved into the water by the pulling force.
- the magnetic force sensor 51 detects the movement of the main magnet to check the fishery.
- the main magnet (52a) is usually floating in the bottom surface of the fishery case, it is very sensitive to the pulling force can be raised immediately.
- the main magnet if the main magnet is in contact with the bottom surface of the credit case in advance, the main magnet should rise while the contact area is filled with air, but as the auxiliary magnet is further provided, an air layer is formed between the main magnet and the auxiliary magnet in advance.
- the main magnet is able to rise smoothly even by a small pulling force.
- adjusting the magnetic force of the auxiliary magnet (52a), or by adjusting the upper and lower length of the fishery case 55 may be different sensitivity of the fishery detection unit.
- illumination response fishing bobbers having different sensitivity may be prepared, and the illumination response fishing bobber having an optimal sensitivity may be selected and used according to the condition of the waves and the target fish.
- the intake detection unit 20 ′′ may be made of a capacitive proximity sensor that is fixed to the inner surface of the body portion (10).
- the capacitive proximity sensor is provided inside the transparent or translucent body portion 10 when the fishing bobber is obtained and submerged in the water, the oscillation amplitude of the oscillation circuit when the high frequency oscillates in the oscillation circuit and is submerged in high quality water It consists of a commonly used capacitive proximity sensor that attenuates or stops and converts this change into an electrical signal to detect whether it is located in water.
- Such a capacitive proximity sensor does not require a terminal submerged as in the above-described embodiments, and thus has the advantage that there is no reliability problem due to corrosion and contamination of the terminal.
- the battery provided in the illumination response responsive fishing bobbin 1 ′′ according to the third embodiment may be made using a ready-made coin-type battery (B1) is fitted into the empty space of the lower body (12).
- the coin type battery B1 is inserted into and fixed to the electric circuit board E provided between the guider 12a formed in the lower side of the body portion 10 and the body portion 10.
- the coin type battery has a central convex surface having a (-) polarity and an opposite surface having a (+) polarity, and is obliquely inserted into an inner bottom of the lower body 12 and fixed.
- one end B11 of the coin-type battery B1 is inserted between the bottom surface of the lower body 12 and the guider 12a, and the other end B12 is the lower body 12.
- the side portion of the state is leaning against the inner wall surface of the electric circuit board (E) is to be fixed.
- the bottom surface of the circuit board (E) is formed with a metal surface (E10) for grounding to the (+) pole of the coin-type battery (B1), the center for grounding to the (-) pole of the coin-type battery
- the connecting leg E20 is coupled.
- the user rotates the upper body 11 against the lower body 12 so that the connecting leg E20 is grounded to the (-) pole during the assembly of the fishing bobber, and when the upper body is completely assembled to the lower body,
- the metal surface E10 of the circuit board is connected to the positive electrode of the coin-type battery, so that power can be supplied to the electric circuit board.
- the lower body 12 may be further coupled to the weight (W) for adjusting the weight of the fishing bobber.
- the support jaw 12b may be further formed so that the coin-type battery can be securely fitted.
- three coin-type batteries B1 may be inserted into the lower body 12 at equal intervals so as to center the center of gravity.
- the number of such coin-type batteries can be plural depending on the shape and size of the lower body.
- connection method of the coin-type battery is to change the circuit of the circuit board to meet the required voltage, and can be set in parallel or in series.
- Figure 5 is a perspective view showing another battery of the illumination response responsive fishing bobber shown in FIG.
- the battery B2 has a cylindrical shape in which a first electrode surface B21 is formed on an upper surface thereof, and a hollow cylindrical hole B20 is formed through the upper and lower portions so that the central cylinder 11a of the body portion passes through the center thereof.
- An inner circumferential surface of the ball B20 may have a second electrode surface B22 having a polarity opposite to that of the first electrode surface B21.
- the battery (B2) as a single body, it is easy to install and replace the fishing bobber, adjust the material or thickness of the battery (B2) appearance and easily adjust the weight of the fishing bobber by varying the total weight of the battery You can do that.
- Such batteries have a general configuration including a filling part in which an ammonium chloride solution, manganese dioxide, carbon powder, etc. are mixed, and a carbon rod submerged in the filling part, or a general mercury battery. It has a chemical reaction structure.
- the cylindrical battery B2 has a shape that is filled in the lower body, the space of the filling part can be sufficiently secured, and thus a large capacity can be manufactured. Therefore, the fishing bobber can be used for a long period of time without frequent battery replacement, and it is possible to prevent connection failure due to frequent battery replacement.
- the bottom surface of the electric circuit board E has a metal surface E10 'corresponding to each electrode surface position. This can be formed. Even in this case, the first and second electrode surfaces B21 and B22 and the metal surface E10 'are grounded or separated according to the degree of rotation of the upper body, thereby acting as a power switch.
- the cutting portion (B30) may be further formed to allow the fishing line to pass through the cylindrical hole (B20) in the side of the battery.
- the user removes the upper body while fishing, passes the fishing line through the cutout portion B30 of the battery B2, and the replacement of the battery is not performed without removing the fishing line. It can be made easily.
- the fishing bobber since the xenon lamp or light emitting diode is automatically selected to emit light so as to vary the intensity of the brightness according to the ambient illumination, the fishing bobber can be easily recognized. .
- the user can easily recognize that the speech is detected.
- the fishing bobber is automatically operated by the control unit when the fishing bobber is obtained through the acquisition detecting unit, and the power is automatically cut off after a predetermined time after the collection, thereby simplifying the use of the fishing bobber.
- the position of the sharp needle can be easily recognized, thereby preventing the safety accident during fishing.
- the fishery detection unit using the inertia is simple in configuration and durable, and since the fish surely detects the moment when the fish catches the bait, it also has the effect of making fishing easier for beginners.
- the auxiliary magnet is further provided has the effect that can be detected sensitively depending on the situation.
- the acquisition detecting unit is made of a capacitive proximity sensor, there is an effect that the problem of malfunction and shortening of life due to contamination of the terminal and the like are solved.
- the ready-made product is easy to insert and replace when using a coin-type battery, it is also possible to easily center the center of gravity of the fishing bobber by placing a plurality of coil-type batteries at equal intervals. .
- the coin-type battery has an effect of being able to stably maintain and maintain a constant angle when fitting.
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Abstract
L'invention concerne un flotteur pour la pêche, et plus particulièrement, un flotteur pour la pêche qui éclaire à des niveaux d'intensité de brillance dépendants du niveau d'éclairage ambiant. Dans un mode de réalisation de l'invention, une source de lumière est montée sur le flotteur pour la pêche de sorte que ce dernier éclaire à un niveau d'intensité de brillance élevé lorsque le niveau d'éclairage ambiant est élevé, une touche étant détectée et éclairée à un faible niveau d'intensité de brillance, et augmente son niveau d'intensité de brillance lors de la détection d'une touche lorsque le niveau d'éclairage ambiant est faible. L'éclairage à un niveau d'intensité de brillance élevé s'effectue au moyen d'une lampe au xénon ou d'une diode électroluminescente de grand volume dans le cas où le niveau d'éclairage ambiant est élevé, tandis que l'éclairage à un faible niveau d'intensité de brillance s'effectue au moyen d'une diode électroluminescente principale. La source de lumière pour un éclairage supplémentaire est une diode électroluminescente auxiliaire. Le flotteur pour pêche de l'invention sélectionne automatiquement une lampe au xénon ou une diode électroluminescente en fonction du niveau d'éclairage ambiant, et éclaire ou papillote à des niveaux d'intensité de brillance différents, ce qui permet d'améliorer la visibilité du flotteur pour pêche.
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR10-2008-0009791 | 2008-01-30 | ||
| KR20080009791 | 2008-01-30 | ||
| KR1020080104656A KR101046962B1 (ko) | 2008-01-30 | 2008-10-24 | 조도 반응형 낚시 찌 |
| KR10-2008-0104656 | 2008-10-24 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO2009096699A2 true WO2009096699A2 (fr) | 2009-08-06 |
| WO2009096699A3 WO2009096699A3 (fr) | 2009-11-26 |
Family
ID=40913408
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/KR2009/000403 Ceased WO2009096699A2 (fr) | 2008-01-30 | 2009-01-29 | Flotteur pour la pêche sensible à l'éclairage |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2009096699A2 (fr) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107105635A (zh) * | 2014-09-16 | 2017-08-29 | 朴炳成 | 钓鱼用发光浮标 |
| CN110346037A (zh) * | 2018-04-06 | 2019-10-18 | 沈瑜正 | 电子醒目豆及鱼漂用层状fpcb式照明度感测装置 |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH1098997A (ja) * | 1996-09-27 | 1998-04-21 | Yusuke Shida | 端子部露出型電気ウキ |
| JPH10286051A (ja) * | 1997-04-16 | 1998-10-27 | Yusuke Shida | 魚信感知用点滅変光式電気ウキの量産方法 |
| JP3511568B2 (ja) * | 1997-10-15 | 2004-03-29 | ダイワ精工株式会社 | 継式釣竿 |
| KR200292616Y1 (ko) * | 2002-08-05 | 2002-10-25 | 손원일 | 어신감지용 발광 낚시찌 |
| KR20040038935A (ko) * | 2004-03-29 | 2004-05-08 | 김영대 | 낚시용 발광찌 |
-
2009
- 2009-01-29 WO PCT/KR2009/000403 patent/WO2009096699A2/fr not_active Ceased
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107105635A (zh) * | 2014-09-16 | 2017-08-29 | 朴炳成 | 钓鱼用发光浮标 |
| CN110346037A (zh) * | 2018-04-06 | 2019-10-18 | 沈瑜正 | 电子醒目豆及鱼漂用层状fpcb式照明度感测装置 |
Also Published As
| Publication number | Publication date |
|---|---|
| WO2009096699A3 (fr) | 2009-11-26 |
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