FISHING REEL
20210298280 ยท 2021-09-30
Inventors
Cpc classification
A01K89/0178
HUMAN NECESSITIES
A01K89/0186
HUMAN NECESSITIES
International classification
Abstract
[Problem] To provide a fishing reel including a controller capable of maintaining a low power consumption state based on the rotation state of a spool and the state of a clutch.
[Solution] A fishing reel according to an embodiment of the present invention includes a spool, a power supply, a controller, a clutch, and a clutch state detector, wherein the controller is configured to switch between a first state of high power consumption and a second state of lower power consumption than the first state, and to switch from the second state to the first state when the clutch detector detects the off-state of the clutch.
Claims
1. A fishing reel comprising: a spool, a power supply, a controller, a clutch, and a clutch state detector, wherein the controller switches between a first state of high power consumption, and a second state of lower power consumption than the first state, and wherein the clutch detector switches from the second state to the first state when detecting the off-state of the clutch.
2. The fishing reel according to claim 1, wherein the clutch detector switches from the first state to the second state when detecting the on-state of the clutch.
3. The fishing reel comprising: a spool, a power supply, a controller, and a spool state detector that detects the rotation state of the spool, wherein the controller switches between the first state of high power consumption, and the second state of lower power consumption than the first state, and wherein the spool state detector switches from the second state to the first state when detecting the forward rotation of the spool.
4. The fishing reel according to claim 3, wherein the spool state detector switches from the first state to the second state when detecting the backward rotation of the spool.
5. The fishing reel comprising; a spool, a power supply, a controller, and a spool state detector that detects the rotation state of the spool, wherein the controller switches between a first state of high power consumption, and a second state of lower power consumption than the first state, and wherein the spool state detector switches from the second state to the first state when detecting the rotation of the spool at a rotation speed of 500 rpm or more.
6. The fishing reel according to claim 5, wherein the spool state detector switches from the first state to the second state when detecting the rotation of the spool at a rotation speed of less than 500 rpm.
7. The fishing reel according to claim 1, comprising a flight distance measurer, wherein the controller switches the power consumption state of the flight distance measurer so that the first state is a measurable state, and the second state is a measurement stop state.
8. The fishing reel according to claim 1, comprising a communication processor, wherein the controller switches the power consumption state of the communication processor so that the first state is a communicable state, and the second state is an uncommunicable state.
9. The fishing reel according to claim 1, comprising a brake of a spool, wherein the controller switches the power consumption state of the brake so that the first state is a braking force changeable state, and the second state is a braking force unchangeable state.
10. The fishing reel according to claim 1, comprising a drag brake of a spool, wherein the controller switches the power consumption state of the drag brake so that the first state is a state capable of generating a drag force, and the second state is a state with no drag force.
11. The fishing reel according to claim 1, comprising: a spool; a main body supporting the spool; a handle provided on one side of the main body; a detected portion extending in the other lateral direction of the main body in response to an operation of the clutch; and a detected portion state detector that detects the state of the detected portion, wherein the power supply is provided on the other side of the main body and supplies power to the detected portion state detector.
Description
BRIEF DESCRIPTION OF THE FIGURES
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MODES FOR CARRYING OUT THE INVENTION
[0033] Hereinafter, embodiments of a locking device according to the present invention will be described in detail with reference to the accompanying drawings. Structures common in a plurality of drawings are denoted by the same reference numerals in a plurality of drawings. It should be noted that each of the drawings is not necessarily scaled for convenience of explanation.
[0034] First, an example of a procedure for casting and retrieving fishing equipment such as a lure using a general reel including the reel will be described with reference to
[0035] Then, as shown in
[0036] Further, as shown in
[0037] Then, when the height of the lure falls sufficiently, the lure lands on the water. At this time, if the braking force is too large, the casting distance of the lure becomes shorter. If the braking force is too small, the line is tangled, and winding and releasing cannot be performed normally. The appropriate value of the braking force varies depending not only on the size of the lure and the length of the rod, but also on various influences such as the casting method, wind, natural circumstances and the like.
[0038] After the lure is submerged in the water to a prescribed depth after landing on the water, the clutch 5 is operated and turned on to enable the spool 2 to be operated by a handle 13, and the lure is moved (retrieved). This allows the lure to be taken by a fish. The catch varies depending on the winding speed at this time. Further, when a predetermined or more tension is applied to the fishing line by the fish or any obstacle in this state, the spool 2 is idly rotated by the action of a drag brake 11, whereby breakage of the fishing line can be avoided.
[0039] First, the fishing reel 1 according to an embodiment of the present invention will be described with reference to
[0040] In the fishing reel 1 according to an embodiment of the present invention, the clutch detector 6 is configured to switch from the first state to the second state (S4) when detecting the on-state of the clutch 5 (S3). As described above, when a user is winding the fishing line by handle operation, the clutch is in an on-state. When the user casts fishing equipment such as a lure, the clutch is in an off-state. As described above, since the operation by the user can be inferred by detecting the state of the clutch, it is possible to switch to a process appropriate to the state.
[0041] In the fishing reel 1 according to an embodiment of the present invention, it is possible to significantly reduce power consumption by providing the controller 4 capable of maintaining a low power consumption state based on the state of the clutch 5.
[0042] With reference to
[0043] In the fishing reel 1 according to an embodiment of the present invention, the spool state detector 7 is configured to switch from the first state to the second state (R4) when detecting the backward rotation of the spool 2 (R3).
[0044] In the fishing reel 1 according to an embodiment of the present invention, it is possible to greatly reduce power consumption by providing the controller 4 capable of maintaining a low power consumption state based on the rotation state of the spool 2.
[0045] With reference to
[0046] In the fishing reel 1 according to an embodiment of the present invention, the spool state detector 7 is configured to switch from the first state to the second state (U4) when detecting the rotation of the spool 2 at a rotation speed of less than 500 rpm (U3).
[0047] In the fishing reel 1 according to an embodiment of the present invention, it is possible to greatly reduce power consumption by providing the controller 4 capable of maintaining a low power consumption state according to the rotation state of the spool 2.
[0048] Next, with reference to
[0049] Since the flight distance can be measured at the time of casting, the flight distance measurer is set to a measurable state when the clutch is off, and is set to a measurement stop state when the clutch is on, as described above, thereby allowing a significant reduction in power consumption. In addition, the spool rotates in the backward direction at the time of casting. Therefore, it is possible to significantly reduce power consumption by switching between the measurable state and the measurement stop state according to the rotation direction of the spool. At the time of casting, the spool generally rotates at a higher speed than at the time of retrieval. Therefore, making it measurable at a predetermined rotation speed or more significantly reduces power consumption.
[0050] Next, with reference to
[0051] In general, the communication processor 9 is, when performed simultaneously with other processing such as flight distance measurement and adjustment of braking force, likely to cause a failure such as communication failure. Therefore, it is desirable to perform the processing at a different timing from those of the others. When adjusting the braking force or measuring the flight distance at the time of casting, communication is enabled when the clutch is on and is disabled when the clutch is off. This reduces the risk of performing communication processing when any other processing is performed. Further, when retrieved data is measured or a drag force is electronically adjusted upon retrieval without performing the above-mentioned processing at the time of casting, communication is disabled when the clutch is on, and communication is enabled when the clutch is off. This reduces the risk of performing communication processing when any other processing is performed.
[0052] Next, with reference to
[0053] Next, with reference to
[0054] Next, with reference to
[0055] When a user operates the clutch operating member 51, the clutch cam 52 rotates substantially coaxially with the spool 2. This rotation movement allows the cam to move a portion of the transmission member and to switch from being transmissible to non-transmissible and vice versa between the handle 13 and the spool 2. The detected portion may be provided in part of the clutch operating member 51 as shown in the additional
[0056] Here, as the detected portion 14, for example, but not limited to, a light shielding plate provided at the end of the oscillate cylinder may be used. Further, the detected portion state detector 15 may be, for example, but not limited to, a light transmitting photosensor. Alternatively, the detected portion 14 may be a reflective photosensor reflector. Instead of the foregoing, a magnet may be used in combination with a magnetic sensor, or a protrusion may be used in combination with a contact switch.
[0057] Conventionally, since the clutch return operation is interlocked with the handle operation, the clutch mechanism is generally laid out on the handle side, the clutch detection means is also disposed on the handle side, and the brake that prevents backlash is often disposed on the handle side with a lot of space. Therefore, it is not easy to connect them electrically and mechanically because the brake and the clutch detection means are arranged opposite each other across the spool.
[0058] In contrast, in the fishing reel 1 according to an embodiment of the present invention, it is possible to arrange the power supply and the clutch detection means on the side opposite to the handle side; therefore, the reel can be downsized in its entirety.
[0059] The dimension, material and arrangement of each component described herein are not limited to those explicitly described in the embodiments, and each component can be modified to have any dimension, material and arrangement that may be within the scope of the present invention. Further, components not explicitly described herein may be added to the described embodiments, or some of the components described in each embodiment may also be omitted.
DESCRIPTION OF THE NUMERICAL REFERENCES
[0060] 1 Fishing reel [0061] 2 Spool [0062] 3 Power supply [0063] 4 Controller [0064] 5 Clutch [0065] 6 Clutch status detector [0066] 7 Spool status detector [0067] 8 Flight distance measurer [0068] 9 Communication processor [0069] 10 Brake [0070] 11 Drag brake [0071] 12 Main body [0072] 13 Handle [0073] 14 Detected portion [0074] 15 Detected portion state detector [0075] 16 One side [0076] 17 Other side [0077] 18 Transmission member [0078] 19 Fishing line guide [0079] X Other lateral direction