Parameter setting device, method, program, and fishing reel for electric fishing reel
By employing a parameter setting device in an electric fishing reel and utilizing a combination of continuous pressing and a second operating element, the problem of slow parameter changes in existing technologies is solved, achieving efficient parameter setting and rotational stability.
Patent Information
- Application Number
- CN202110828464.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2020-07-30
- Filing Date
- 2021-07-22
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2041-07-22
AI Technical Summary
In electric fishing reels, existing technology requires users to frequently switch modes to change parameters when setting automatic action parameters, resulting in slow and inefficient operation.
The parameter setting device allows for parameter changes and selection by continuously pressing the first operating component in conjunction with the operation of the second operating component, simplifying the parameter setting process and reducing the steps involved in mode switching.
It enables rapid parameter changes without switching modes, improving operational efficiency, simplifying the operation process, reducing the number of operating parts, and preventing instability in the rotation of the winding drum.
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Figure CN114051985B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a parameter setting device for an electric fishing reel, an electric fishing reel having the device, a parameter setting method, and a parameter setting program. BACKGROUND
[0002] An electric fishing reel is known that switches to a timer setting mode for setting an automatic operation condition, i.e., a timer time, in response to a long press switch operation of a timer setting mode switch in a line length display mode, and returns to the line length display mode in response to a press operation of the timer setting mode switch (see, for example, Patent Literature 1).
[0003] [Related Art Documents]
[0004] [Patent Literature]
[0005] Patent Literature 1: Japanese Patent No. 2813690 SUMMARY
[0006] [Problems to be Solved by the Invention]
[0007] In the above-described electric fishing reel, a user performs an operation for setting a parameter after switching from a mode in which a line can be reeled in to a mode for setting a parameter when setting an automatic operation.
[0008] In order to respond to an actual fishing situation as quickly as possible, it is preferable to perform an operation for changing an automatic operation parameter as quickly as possible.
[0009] In view of such a situation, an object of the present application is to provide a parameter setting device for an electric fishing reel, an electric fishing reel having the device, a parameter setting method, and a parameter setting program, which enable an operation for changing a parameter in an electric fishing reel to be performed quickly.
[0010] [Means for Solving the Problems]
[0011] One aspect of the present application for solving the above-described problems is a parameter setting device for an electric fishing reel, including a parameter setting section that accepts a parameter change operation for changing a parameter that is an object of change among parameters in response to a state in which a first operation member is operated being set as an operation continuation state, in a state in which an operation mode in which a spool of the electric fishing reel is driven to rotate is set based on setting of two or more prescribed parameters.
[0012] According to the above structure, in a state where the operation mode capable of rotating driving the spool of the fishing electric reel is set in accordance with the setting of two or more specified parameters, even if the operation of switching from the operation mode to the parameter change mode is not performed, the operation of changing the parameters can be performed by making the first operation member be in the operation continuation state. Accordingly, the operation of quickly changing the parameters in the fishing electric reel can be achieved.
[0013] In addition, one aspect of the present application is that, in the above parameter setting device, the parameter setting section determines the parameter changed as the change target in the operation continuation state in response to the operation continuation state being released.
[0014] According to the above structure, even if the changed parameter is not determined by operating the specified operation member, the changed parameter can be determined by releasing the state where the first operation member is continuously pressed.
[0015] In addition, one aspect of the present application is that, in the above parameter setting device, the parameter setting section changes the parameter as the change target in response to the operation performed on one or more second operation members different from the first operation member in the operation continuation state.
[0016] According to the above structure, the user can change the parameter value as the change target by the simple operation of operating the second operation member while the first operation member is in the operation continuation state.
[0017] In addition, one aspect of the present application is that, in the above parameter setting device, the parameter setting section selects the parameter as the change target from the two or more specified parameters in response to the operation performed when not in the operation continuation state.
[0018] According to the above structure, in a state where the first operation member is not in the operation continuation state, the user can perform the operation of selecting the parameter as the change target from the two or more specified parameters.
[0019] In addition, one aspect of the present application is that, in the above parameter setting device, the parameter setting section selects the parameter as the change target from the two or more specified parameters in response to the operation performed on the second operation member, wherein the second operation member is one or more operation members different from the first operation member and is the same operation member as the operation member for the parameter change operation.
[0020] According to the above structure, in a state where the first operation member is not in the operation continuation state, the second operation member, which is the same as the operation member for the parameter value change, can be operated to select a parameter to be changed. Thus, the operation related to the parameter change can be performed efficiently, and the operation member for the operation related to the parameter change can be saved by sharing the second operation member.
[0021] In addition, one aspect of the present application is a parameter setting device in which the prescribed parameters include a rotational speed of the spool, an acceleration at which the spool reaches the rotational speed after the spool starts rotating, and a condition determination value for determining a condition for stopping the rotation of the spool started in response to an operation.
[0022] According to the above structure, the acceleration at which the spool reaches the rotational speed after the spool starts rotating is included as a parameter of the one-time automatic fish-attracting operation. By changing the parameter of the acceleration, the degree of the initial shaking in the fish-attracting operation can be adjusted, for example.
[0023] In addition, one aspect of the present application is a parameter setting device in which a spool drive control section that does not accept an operation for driving the rotation of the spool in the operation mode in the operation continuation state is provided.
[0024] According to the above structure, in a state where the first operation member is in the operation continuation state, even if an operation for driving the rotation of the spool is performed in order to wind the fishing line, the spool does not rotate. Thus, the rotation of the spool can be prevented from becoming unstable due to the parameter change when the spool is driven to rotate.
[0025] In addition, one aspect of the present application is a fishing reel including the parameter setting device described above.
[0026] In addition, one aspect of the present application is a parameter setting method for a fishing reel in which a parameter setting step is performed in which, in a state where an operation mode in which the rotation of a spool of the fishing reel can be driven is set based on the setting of two or more prescribed parameters, a parameter change operation for changing a parameter to be changed among the prescribed parameters in response to the setting of an operation continuation state is accepted, the operation continuation state being a state in which the operation of a first operation member is continued.
[0027] In addition, a technical solution of the present application is a parameter setting program for causing a computer included in an electric fishing reel to function as a parameter setting unit, wherein the parameter setting unit receives a parameter change operation for changing a parameter that is a change target among parameters in response to the parameter being set to an operation continuation state, in a state where an operation mode capable of driving rotation of a spool of the electric fishing reel is set based on setting of two or more prescribed parameters, wherein the operation continuation state is a state where a state in which a first operation member is operated continues.
[0028] [Effects of Invention]
[0029] As explained above, according to the present application, an effect of enabling rapid change of an operation of changing a parameter in an electric fishing reel can be achieved. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 is a view showing an example of an appearance of the electric fishing reel of the present embodiment.
[0031] Figure 2 is a view showing an example of an appearance of the electric fishing reel of the present embodiment.
[0032] Figure 3 is a view showing an example of a display operation panel in the electric fishing reel of the present embodiment.
[0033] Figure 4 is a view showing an example of a change in a spool rotation speed corresponding to a lapse of time in the automatic winding operation of the present embodiment.
[0034] Figure 5 is a view showing an example of a display method of the display unit of the present embodiment.
[0035] Figure 6 is a view showing an example of a functional structure of the electric fishing reel of the present embodiment.
[0036] Figure 7 is a flowchart showing an example of processing steps executed in association with setting of a drive control parameter of the automatic winding operation of the electric fishing reel of the present embodiment.
[0037] Figure 8 is a flowchart showing an example of processing steps executed in response to a winding operation of the electric fishing reel of the present embodiment.
[0038] [Explanation of Reference Numerals]
[0039] 1: electric fishing reel; 4: spool; 8: motor; 41: display operation panel; 101: operation part; 102: display part; 103: control part; 104: storage part; 105: motor drive circuit; 106: rotation sensor; 131: parameter setting part; 132: spool drive control part; 141: drive control information storage part; 142: intermediate winding speed storage part. DETAILED DESCRIPTION
[0040] <EMBODIMENT>
[0041] Hereinafter, an electric fishing reel 1 as a parameter setting device of the present embodiment will be described with reference to the drawings.
[0042] In the present embodiment, the drive of the spool means that the spool is rotated by power obtained by driving a motor or the like.
[0043] In addition, in the present embodiment, the drive control of the spool means control related to the drive of the spool. Such drive control of the spool includes control to rotate the spool, control to stop the rotation of the spool, control to change the rotation speed of the spool, and the like.
[0044] In addition, in the following description, regarding the "drive" of the spool, it is sometimes described as "rotation drive" for the purpose of explicitly showing that a rotation operation or the like is imparted.
[0045] Further, in the following description, a case where the electric fishing reel 1 is a double-bearing reel will be exemplified. Further, in the following description, the electric fishing reel 1 is exemplified as a reel for fishing. Figure 1 Figure 2 In the drawings, in order to make each structural component a size that can be visually confirmed, the scale of each structural component is sometimes appropriately changed as needed.
[0046] [Structure Example of Electric Fishing Reel]
[0047] Figure 1 Figure 2 An example of the appearance of the electric fishing reel 1 of the present embodiment is shown. The electric fishing reel 1 of the present embodiment mainly has a reel main body 2 that can be mounted on a fishing rod not shown, a handle 3 that is mounted to the reel main body 2 in a manner that can rotate about a handle axis O1 with respect to the reel main body 2, a spool 4 that can rotate about a spool axis O2 parallel to the handle axis O1 with respect to the reel main body 2 and on which a fishing line not shown is wound, and a clutch mechanism 6 that has a clutch operation lever 5.
[0048] In addition, the electric fishing reel 1 of the present embodiment has a motor (in the present embodiment, a brushless motor) 8 that is mounted to the reel main body 2. Figure 1 Figure 2 The motor is disposed in a motor housing cylinder 7 provided on the fishing reel main body 2, and is configured to rotationally drive the spool 4.
[0049] In addition, the electric fishing reel 1 has a motor housing (not shown) that is combined with the fishing reel main body 2 in a manner of blocking the motor housing cylinder 7, and fixes the motor on the fishing reel main body 2.
[0050] In the present embodiment, the handle axis O1 and the spool axis O2 are disposed in parallel to each other, and a direction along these axes is defined as a left-right direction L1. Also, a direction orthogonal to the left-right direction L1 and along a direction in which the fishing line wound on the spool 4 is paid out is defined as a front-rear direction L2.
[0051] Also, in the front-rear direction L2, a direction in which the fishing line is paid out from the spool 4 is defined as a front direction, and an opposite direction thereof is defined as a rear direction, and the left and right are defined from a viewpoint of observing the electric fishing reel 1 from the rear side (angler side). Thus, Figure 1 is a perspective view of the electric fishing reel 1 from an oblique upper left rear direction.
[0052] The fishing reel main body 2 has a main body frame 10, side covers 20 that cover both left and right sides of the main body frame 10, and a front cover 30 that covers a front side of the main body frame 10.
[0053] The main body frame 10 is, for example, a molded member made of synthetic resin or metal (for example, aluminum die casting). The main body frame 10 has a first side wall 11, a second side wall 12, and a connecting member 13, in which the first side wall 11 and the second side wall 12 are disposed facing each other in the left-right direction L1 with the spool 4 therebetween, and the connecting member 13 connects the first side wall 11 and the second side wall 12 to each other in the left-right direction L1.
[0054] The first side wall 11 is configured as a left side wall disposed on a left side (LH) with respect to the spool 4. In contrast, the second side wall 12 is configured as a right side wall disposed on a right side (RH) with respect to the spool 4. Also, the handle 3 is disposed at a position further to the right side (RH) than the second side wall 12, and is mounted to the main body frame 10 with the second side wall 12.
[0055] Thus, the electric fishing reel 1 of the present embodiment is configured as a right side handle type fishing reel. Also, the second side wall 12 is formed to protrude downward more than the first side wall 11 due to the relationship of mounting the connector portion 23 and the like.
[0056] The connecting member 13 is formed in a plate shape that connects the first side wall 11 and the second side wall 12 to each other in the left-right direction L1, and is disposed in the vicinity of a lower portion of the first side wall 11. Accordingly, the first side wall 11 and the second side wall 12 are firmly connected via the connecting member 13.
[0057] Further, in the central portion in the left-right direction LI of the connecting member 13, a mounting leg piece 14 for mounting the fishing reel 1 to a fishing rod is formed so as to extend in the front-rear direction L2.
[0058] In the main body frame 10 configured as described above, at least the motor housing cylinder 7 in which the motor is housed, the spool 4, the clutch operation lever 5, and the like are arranged between the first side wall 11 and the second side wall 12.
[0059] The spool 4 is arranged between the first side wall 11 and the second side wall 12 so as to be positioned on the rear side of the handle axis O1. The motor housing cylinder 7 is arranged between the first side wall 11 and the second side wall 12 so as to be positioned on the front side of the handle axis O1. Thus, the fishing reel 1 of the present embodiment is configured as a so-called spool-outside motor type in which the motor is arranged on the front side of the spool 4.
[0060] The side cover 20 has a first side cover 21 which is combined with the main body frame 10 so as to cover the first side wall 11 in which the opening portion of the motor housing cylinder 7 is formed from the left side (LH), and a second side cover 22 which is combined with the main body frame 10 so as to cover the second side wall 12 from the right side (RH).
[0061] The first side cover 21 is formed so as to bulge to the left side (LH), and is fixed to the first side wall 11, for example, by a screw.
[0062] The second side cover 22 is formed so as to bulge to the right side (RH), and is fixed to the second side wall 12, for example, by a screw.
[0063] On the portion of the second side cover 22 which is positioned on the front lower portion, a connector portion 23 for connecting a power reel cord for supplying electric power from an external power source or a portable battery is mounted in a state in which a connection end thereof is directed downward, although not shown. Further, in each of the drawings, a state in which the connection end is protected by a protection cap 24 is shown.
[0064] The front cover 30 is combined with the main body frame 10 so as to cover the front portion of the main body frame 10 from the front. Specifically, the front cover 30 is combined with the front portions of the first side wall 11 and the second side wall 12 so as to cover the motor housing cylinder 7 from the front, and is fixed to the first side wall 11 and the second side wall 12, for example, by a screw. Further, the front cover 30 is mounted so as not to block a movement region of a uniformizer (a winder which uniformly winds a wire), although not shown.
[0065] A counter case 40 is provided on the upper portion of the main frame 10 configured as described above. The counter case 40 is fixed to the upper portion of the first side wall 11 and the upper portion of the second side wall 12 in a state of being disposed between the first side wall 11 and the second side wall 12, for example, by screwing or the like.
[0066] The upper surface of the main body of the counter case 40 is configured as a display operation panel 41. The display operation panel 41 is a site at which display is performed to a user who uses the electric fishing reel 1 and at which an operation member such as a button, a switch, or the like is operated by the user.
[0067] Figure 3 The display operation panel 41 in the electric fishing reel 1 is shown. As this Figure 3 As shown, the display operation panel 41 has an operation portion 101 and a display portion 102.
[0068] The operation portion 101 is a site at which a button operation is performed by the user. In this Figure 3 In the operation portion 101, as buttons at which a button operation is performed, three buttons, a first button 111-1 (an example of a first operation member), a second button 111-2 (an example of a second operation member), and a third button 111-3 (an example of a second operation member) are disposed. Further, in the following description, when the first button 111-1, the second button 111-2, and the third button 111-3 are not particularly distinguished, they are described as buttons 111.
[0069] As the disposition of the buttons 111 in this Figure 3 The second button 111-2 and the third button 111-3 are disposed in the up-and-down direction in a positional relationship in which the second button 111-2 is above and the third button 111-3 is below. The first button 111-1 is positioned to the left of the positions at which the second button 111-2 and the third button 111-3 are disposed, and is disposed in the up-and-down direction at a position corresponding to the middle position of the second button 111-2 and the third button 111-3.
[0070] In the disposition of the buttons 111 as such, the second button 111-2 and the third button 111-3 function as an up button and a down button, respectively, in operations such as parameter value change and item selection, and the user easily adapts to the operation feeling thereof.
[0071] Further, a winding switch 112 is provided in the operation portion 101. The winding switch 112 is an operation member that performs an operation for winding the fishing line by rotating the line drum 4.
[0072] The winding switch 112 is a switch that performs an operation for automatically winding the fishing line. The winding switch 112 is a seesaw type pressure-sensitive switch, and can perform an operation of pressing down an upper switch portion 112a and an operation of pressing down a lower switch portion 112b.
[0073] The display portion 102 is a portion that displays a predetermined content in response to the operation of the electric fishing reel 1. The display device that is provided as the display portion 102 is not particularly limited, and for example, a liquid crystal display device, an organic EL display device, or the like can be cited.
[0074] Returning to Figure 1 , Figure 2 will be described. The handle 3 is used for an operation of winding the fishing line by a manual method. The handle 3 is disposed at a position that is rightward (RH) of the main frame 10 and the first side cover 21. The handle 3 has a handle shaft 50 that is disposed so as to be rotatable about a handle shaft line O1, a handle arm 51 that is mounted to the handle shaft 50 so as to be non-rotatable relative to the handle shaft 50, and a handle grip 52 that is mounted to an end portion of the handle arm 51 so as to be rotatable about an axis that is parallel to the handle shaft line O1.
[0075] A drag member 53 (a star-shaped drag member) that is disposed coaxially with the handle shaft line O1 is provided between the handle arm 51 and the first side cover 21. The drag member 53 functions to suppress the cutting of the fishing line by applying an arbitrary drag to the rotation of the spool 4 at the time of winding the fishing line.
[0076] When the clutch mechanism 6 is in the clutch-engaged state, the rotational torque from the handle 3 thus configured is directly transmitted to the spool 4 via a rotation transmission mechanism that is not shown.
[0077] Further, in the present embodiment, a so-called single-handle type in which the handle grip 52 is mounted to one end portion of the handle arm 51 is exemplified, but the present application is not limited to this case. For example, the electric fishing reel 1 of a so-called double-handle type in which the handle grips 52 are mounted to both end portions of the handle arm 51 and the central portion of the handle arm 51 is non-rotatably mounted to the handle shaft portion 50 can also be cited.
[0078] The spool 4 is disposed between the first side wall 11 and the second side wall 12 in the frame main body, and is supported to the first side wall 11 and the second side wall 12 so as to be rotatable about a spool shaft line O2 via a bearing that is not shown.
[0079] The spool 4 has a spool rotation shaft portion that is not shown and that rotates about the spool shaft line O2, and a spool main body portion 4a that is disposed coaxially with the spool rotation shaft portion and that rotates in conjunction with the spool rotation shaft portion.
[0080] The clutch mechanism 6 is capable of switching between a clutch engagement state and a clutch disengagement state by operation of the clutch operation lever 5, wherein in the clutch engagement state, the rotational torque from the handle 3 is capable of being transmitted to the spool 4 via a rotational transmission mechanism not shown; in the clutch disengagement state, the rotational torque from the handle 3 is not capable of being transmitted to the spool 4. Therefore, in the clutch engagement state, by performing a rotational operation on the handle 3, it is possible to transmit the rotational torque generated in conjunction with the rotational operation of the handle 3 to the spool 4, thereby making it possible to rotate the spool 4 about the spool axis O2. In accordance with this, it is possible to perform a manual winding operation.
[0081] Further, in the case where the clutch mechanism 6 is in the clutch disengagement state, the rotational torque generated in conjunction with the rotational operation of the handle 3 is not transmitted to the spool 4, and the spool 4 becomes in a state where it is capable of freely rotating (spool idling state).
[0082] The clutch operation lever 5 is a switching lever for switching the clutch mechanism 6 between the clutch engagement state and the clutch disengagement state. The clutch operation lever 5 is disposed between the first side wall 11 and the second side wall 12 at a position further rearward than the spool 4, and is capable of moving up and down in a manner of oscillating about the spool axis O2.
[0083] Further, the rotational transmission mechanism is configured to transmit the rotational torque to the spool 4 in a state where the rotation of the handle 3 is speeded up. Also, the rotational transmission mechanism is configured to, in the case where the clutch mechanism 6 is in the clutch engagement state, not only transmit the rotational torque in conjunction with the rotational operation of the handle 3 to the spool 4, but also to a uniform winding mechanism (not shown). The uniform winding mechanism is a mechanism for uniformly winding the fishing line on the spool 4 without bias.
[0084] Also, when the motor is driven in the case where the clutch mechanism 6 is in the clutch disengagement state, the rotational transmission mechanism is capable of transmitting the rotational torque generated in conjunction with the driving of the motor to the spool 4. In accordance with this, it is possible to perform an automatic winding operation. Further, the rotational transmission mechanism transmits the rotational torque to the spool 4 in a state where the rotation of the motor is slowed down.
[0085] [Regarding the electric jigging mode]
[0086] The fishing reel 1 of the present embodiment is capable of performing a winding operation of the fishing line in response to an operation of the user on the winding switch 112 in a state where the electric jigging mode is turned on, as follows. The electric jigging mode is an example of an operation mode in which the spool of the fishing reel is rotationally driven in accordance with the setting of two or more prescribed parameters.
[0087] In the electric flat-fishing mode, the upper switch portion 112a of the winding switch 112 is assigned to an operation for turning on or off the rotational drive of the line roller 4 for winding the fishing line.
[0088] That is, when the user starts pressing the upper switch portion 112a, the rotational drive of the line roller 4 starts, and the winding of the fishing line also starts. During the period in which the user continuously holds the pressing of the upper switch portion 112a, the rotational drive of the line roller 4 is continuously driven, and the winding of the fishing line also continuously proceeds. When the user releases the pressing of the upper switch portion 112a, the rotational drive of the line roller 4 stops, and the winding of the fishing line also stops.
[0089] In the electric flat-fishing mode, when the upper switch portion 112a is pressed for the first time, the winding of the fishing line is performed at a line roller rotational speed (intermediate winding speed) lower than a maximum speed set in advance. Thereafter, when the upper switch portion 112a is further pressed in a state in which the upper switch portion 112a is continuously pressed to perform an operation, the winding of the fishing line is performed in a state in which the winding speed is increased to the maximum.
[0090] In addition, in the electric flat-fishing mode, the lower switch portion 112b of the winding switch 112 is assigned to an operation for performing an automatic lure action (an example of the rotational drive of the line roller of the electric fishing reel according to the setting of two or more predetermined parameters).
[0091] That is, in response to the operation (single-click operation) in which the user presses the lower switch portion 112b once, the line roller 4 is rotationally driven for a certain period according to the drive control information set in advance, and thus the action of winding the fishing line is performed.
[0092] The drive control parameters (an example of two or more predetermined parameters) that constitute the drive control information corresponding to the automatic lure action of the present embodiment are three parameters of a winding length [LENGTH] (an example of a condition determination value), a speed [SPEED], and an acceleration [ACCEL].
[0093] The winding length [LENGTH] is the length of the fishing line that is wound in one automatic lure action. The winding length [LENGTH] corresponds to the length of the fishing line that is wound on the line roller 4.
[0094] The speed [SPEED] is the rotational speed of the line roller 4 when the fishing line is wound in the automatic lure action.
[0095] The acceleration [ACCEL] is the acceleration (angular acceleration) for reaching the speed [SPEED] after the line roller 4 starts to rotate in the automatic lure action.
[0096] Figure 4An example of behavior of the spool 4 corresponding to a first automatic lure action based on the setting of the driving control parameters of the above-described winding length [LENGTH], speed [SPEED], and acceleration [ACCEL] is shown. In this example, the horizontal axis is time, and the vertical axis is rotational speed. Figure 4
[0097] At time t0, when the user performs an operation of pressing the lower switch portion 112b of the winding switch 112 once, the spool 4 starts rotating from time tl, which is a time after a certain time lag (delay) from time t0.
[0098] The spool 4 that starts rotating at time tl increases the rotational speed at the acceleration [ACCEL] set. Then, at time t2, the rotational speed of the spool 4 reaches the speed [SPEED]. The inclination of the rotational speed from time tl to time t2 in this Figure 4
[0099] For example, as the driving control parameters, the acceleration [ACCEL] can not be set, but the spool 4 can be rotationally driven in such a manner that the spool 4 is always rotated at a constant acceleration to reach the speed [SPEED]. However, for example, in a lure action that the user actually performs while moving the fishing rod, sometimes changing the intensity of the initial shake in the lure action according to the situation affects the fishing result. Therefore, if the driving control parameters of the acceleration [ACCEL] are set as in the present embodiment, in the automatic lure action, it is possible to change the intensity of the initial shake in the lure action according to the user's intention.
[0100] The electric fishing reel 1 measures the length of the fishing line that is wound onto the spool 4 after the spool 4 starts rotating at time tl. Then, when the length of the fishing line that is wound reaches the winding length [LENGTH] at time t3, in order to stop the rotational drive of the spool 4, the supply of the current to the motor is stopped. Such a winding length [LENGTH] becomes a condition determination value for determining whether or not the condition for stopping the rotation of the spool 4 is satisfied.
[0101] The motor generates a phenomenon called over run, which means that even if the supply of the current is stopped, the motor does not immediately stop due to inertia, but stops after rotating to some extent. In this Figure 4 In the example of FIG. 8, during the period in which the over run is generated after time t3, the rotational speed of the spool 4 decelerates, and the rotation of the spool 4 stops at time t4.
[0102] In response to the lower side switch portion 112b of the winding switch 112 being operated once, the electric fishing reel 1 changes the rotational speed of the spool 4 as shown in the drawing, thereby performing a single automatic lure action. By winding the fishing line at a winding speed that varies with the rotational speed of the spool 4 in this way, an automatic lure action can be obtained. Figure 4
[0103] [Setting of driving control parameters corresponding to automatic lure action]
[0104] Next, a step example of the setting operation of the driving control parameters (winding length [LENGTH], speed [SPEED], and acceleration [ACCEL]) corresponding to the automatic lure action will be described. In the present embodiment, the setting operation of the driving control parameters corresponding to the automatic lure action can be performed in a state in which the electric flat fishing mode is turned on.
[0105] The driving control parameter setting in the present embodiment includes selection of the driving control parameter that is the object of change of the parameter value, and change of the parameter value of the driving control parameter that is selected as the object of change.
[0106] Figure 5 A display example of the display portion 102 in the electric flat fishing mode on state is shown. In the display portion 102 of the Figure 5 , a speed area AR10, a water depth area AR20, and a parameter display area AR30 are arranged.
[0107] The speed area AR10 is an area in which the rotational speed of the spool 4 that is currently set is displayed by a number of levels.
[0108] The water depth area AR20 is an area in which the water depth in which the hook assembly is currently located is displayed.
[0109] The parameter display area AR30 is an area in which the parameter value that is currently set for each driving control parameter is displayed. In the parameter display area AR30, a winding length display area AR31-1, a speed display area AR31-2, and an acceleration display area AR31-3 are included. In the case in which the winding length display area AR31-1, the speed display area AR31-2, and the acceleration display area AR31-3 are not distinguished from each other, they are written as individual parameter display areas AR31.
[0110] The winding length display area AR31-1 is an area in which the parameter value of the driving control parameter that is the winding length [LENGTH] is displayed.
[0111] The speed display area AR31-2 is an area in which the parameter value of the driving control parameter that is the speed [SPEED] is displayed.
[0112] The acceleration display area AR31-3 is an area that displays the parameter value of the driving control parameter of acceleration [ACCEL].
[0113] In this Figure 5 , an example of a state in which the winding length display area AR31-1 is highlighted in the parameter display area AR30 is shown. The state in which the winding length display area AR31-1 is highlighted indicates that the winding length [LENGTH] is selected as the change target of the parameter value among the driving control parameters (winding length [LENGTH], speed [SPEED], and acceleration [ACCEL]).
[0114] The parameter display area AR30 is in a state of highlighting which one of the winding length display area AR31-1, the speed display area AR31-2, and the acceleration display area AR31-3, depending on which one of the driving control parameters (winding length [LENGTH], speed [SPEED], and acceleration [ACCEL]) is selected as the change target.
[0115] Further, as a manner of highlighting, in this Figure 5 , the individual parameter display area AR31 that is the selection target is displayed in a light and dark reversal with respect to the other individual parameter display areas AR31. As the manner of highlighting, there is no particular limitation, and, for example, the frame or the characters of the individual parameter display area AR31 that is the selection target can be bolded or the like, or in the case of color display, the background color or the character color can be changed.
[0116] Further, in the parameter display area AR30 at the time of initial display in response to the electric ironing mode being turned on, for example, the individual parameter display areas AR31 can be highlighted next to the state at the time of the last time the electric ironing mode was turned off. Or, the individual parameter display areas AR31 corresponding to the particular driving control parameters that are set in advance can also be highlighted.
[0117] When the parameter display area AR30 in the state of this Figure 5 is displayed in the electric ironing mode, the user can change the parameter value of the winding length [LENGTH] that is selected as the change target by the operation described below.
[0118] In this case, the user continues the state of pressing the first button 111-1 of the pressing operation portion 101. That is, the user is in an operation continuation state of continuing the pressing operation of the first button 111-1. Accordingly, the fishing electric reel 1 can accept the operation of the second button 111-2 or the third button 111-3 as an operation of changing the parameter value.
[0119] The user increases the parameter value of the winding length [LENGTH] while continuing to press the first button 111-1 and operates the second button 111-2. The parameter value is increased in increments each time the second button 111-2 is pressed.
[0120] In addition, the user decreases the parameter value of the winding length [LENGTH] while continuing to press the first button 111-1 and operates the third button 111-3. The parameter value is decreased in decrements each time the third button 111-3 is pressed.
[0121] Further, the parameter value can be continuously increased in response to the user's long press of the second button 111-2 until the press of the second button 111-2 is released. In addition, the parameter value can be continuously decreased in response to the user's long press of the third button 111-3 until the press of the third button 111-3 is released.
[0122] In the winding length display area AR31-1, the parameter value of the winding length [LENGTH] that has been changed by the above operation is displayed. Accordingly, the user can confirm the parameter value that has been changed by his or her own operation.
[0123] When the user changes the parameter value to the desired parameter value, the user releases the press of the first button 111-1 that has been continued up to that point. Accordingly, the electric fishing reel 1 is set so as not to accept the operation of the second button 111-2 and the third button 111-3 to change the parameter value. In addition, the electric fishing reel 1 determines the winding length [LENGTH] from the parameter value displayed in the winding length display area AR31-1 at the time when the press of the first button 111-1 is released, thereby completing the setting of the drive control parameter.
[0124] Further, in the state where the first button 111-1 is pressed, the electric fishing reel 1 can invalidate the operation of the winding switch 112. That is, it can be configured so that, in the state where the first button 111-1 is pressed, even if the user operates the upper switch portion 112a, the spool 4 does not rotate, and even if the lower switch portion 112b is operated, the automatic lure action is not performed.
[0125] Accordingly, it is possible to prevent the rotation of the spool 4 from becoming unstable due to the change of the drive control parameter in the state where the spool 4 is rotating.
[0126] In addition, in the electric ironing mode, the user can select the drive control parameter that is the object of the change of the parameter value by the following operation.
[0127] In the electric flat-fishing mode, the user performs an operation on the second button 111-2 or the third button 111-3 without pressing the first button 111-1.
[0128] Each time the user presses the second button 111-2, in the parameter display region AR30, the individual parameter display region AR31 of the next segment from the individual parameter display region AR31 that was highlighted before is highlighted. The drive control parameter corresponding to the newly highlighted individual parameter display region AR31 is selected as the change target of the parameter value.
[0129] Further, in a state in which the individual parameter display region AR31 of the uppermost segment is highlighted, in a case where an operation of pressing the second button 111-2 once is performed, the operation can be invalidated, or the state in which the individual parameter display region AR31 of the lowermost segment is highlighted can be changed through a cycle.
[0130] In addition, each time the user presses the third button 111-3, in the parameter display region AR30, the individual parameter display region AR31 of the next segment from the individual parameter display region AR31 that was highlighted before is highlighted. In this case, the drive control parameter corresponding to the newly highlighted individual parameter display region AR31 is selected as the change target of the parameter value.
[0131] Further, in a state in which the individual parameter display region AR31 of the lowermost segment is highlighted, in a case where an operation of pressing the third button 111-3 once is performed, the operation can be invalidated, or the state in which the individual parameter display region AR31 of the uppermost segment is highlighted can be changed through a cycle.
[0132] As such, the electric fishing reel 1 of the present embodiment can perform an operation of changing the parameter values of the drive control parameters of the respective winding lengths [LENGTH], speeds [SPEED], and accelerations [ACCEL] (parameter change operation).
[0133] Further, the operation of changing the parameter values of the drive control parameters is performed in a state in which the electric flat-fishing mode is on. That is, for example, the user can perform the operation of changing the parameter values of the drive control parameters in the electric flat-fishing mode without performing an operation of changing from the electric flat-fishing mode to the setting mode of the drive control parameters. Accordingly, the user can quickly change the drive control parameters of the automatic lure action even during actual fishing.
[0134] Further, the operation of changing the parameter value and the operation of selecting the driving control parameter to be changed are performed using the second button 111-2 and the third button 111-3. By thus using the common operation member in the operation of changing the parameter value and the operation of selecting the driving control parameter, the number of operation members provided in the electric fishing reel 1 can be reduced.
[0135] [Functional configuration example of electric fishing reel]
[0136] Reference Figure 6 A functional configuration example of the electric fishing reel 1 will be described. In this Figure 6 example, the same reference numerals are attached to the same parts as those of Figure 1 , Figure 2 the first embodiment, and the description thereof will be appropriately omitted.
[0137] The electric fishing reel 1 of this Figure 6 example has an operation section 101, a display section 102, a control section 103, a storage section 104, a motor driving circuit 105, a motor 8, a spool 4, and a rotation sensor 106.
[0138] The control section 103 performs various controls in the electric fishing reel 1. The functions of the control section 103 are realized by a CPU (Central Processing Unit) of the electric fishing reel 1 executing a program.
[0139] The control section 103 has a parameter setting section 131 and a spool driving control section 132.
[0140] The parameter setting section 131 sets driving control parameters (rotation speed, driving time, and stop time) as first driving control information in response to an operation performed on the operation section 101.
[0141] The spool driving control section 132 performs driving control of the spool 4 in accordance with the driving control information.
[0142] The storage section 104 stores various information corresponding to the electric fishing reel 1. The storage section 104 has a driving control information storage section 141 and an intermediate winding speed storage section 142.
[0143] The driving control information storage section 141 stores driving control information. The driving control information is information for driving control of the spool 4 in the automatic lure action. As described above, the driving control parameters of winding length [LENGTH], speed [SPEED], and acceleration [ACCEL] are included in the driving control information.
[0144] The intermediate winding speed storage unit 142 stores an intermediate winding speed. The intermediate winding speed is a parameter relating to the rotational speed of the spool 4 specified when the upper switch unit 112a is pressed in the electric jigging mode. The intermediate winding speed can be arbitrarily set within a range lower than the maximum rotational speed of the spool 4, for example, through user operation.
[0145] [Processing steps example]
[0146] Reference Figure 7 An example of a processing procedure for setting drive control parameters corresponding to the automatic fish luring operation of the electric fishing reel 1 will be described with reference to a flowchart of FIG. Figure 7 The illustrated processing is executed in a state where the electric jigging mode is on.
[0147] Step S101: The parameter setting unit 131 in the electric fishing reel 1 determines whether the second button 111-2 has been pressed once.
[0148] Step S102 : When it is determined that the second button 111 - 2 is pressed once, the parameter setting unit 131 determines whether the first button 111 - 1 is pressed when the second button 111 - 2 is pressed once.
[0149] Step S103 : When it is determined in step S102 that the first button 111 - 1 is pressed, the parameter setting unit 131 increments the current parameter value of the drive control parameter currently selected as the target of change.
[0150] The parameter setting unit 131 may store the incremented parameter value as a temporary value in, for example, a RAM (Random Access Memory) or a register.
[0151] Furthermore, the parameter setting unit 131 performs display control so that the parameter value changed by incrementing is displayed in the corresponding individual parameter display area AR31. If the current parameter value is already at its maximum value at the time of step S103, the process of step S103 can be skipped. In this case, even though the second button 111-2 has been pressed once, the parameter value remains at its maximum value and does not change. Alternatively, if the current parameter value is already at its maximum value at the time of step S103, the process can be repeated to change to its minimum parameter value.
[0152] Step S104 : When it is determined in step S102 that the first button 111 - 1 is not pressed, the parameter setting unit 131 changes the drive control parameter selected as the change target.
[0153] The selection order is set for the drive control parameters. In step S104, the parameter setting section 131 reselects, as the change target, one drive control parameter whose selection order is in reverse order from the one previously selected as the change target.
[0154] Specifically, the selection order of the drive control parameters can be set in accordance with Figure 5 The selection order of the roll-up length display area AR31-1, the speed display area AR31-2, and the acceleration display area AR31-3 is the order of the roll-up length [LENGTH], the speed [SPEED], and the acceleration [ACCEL], as shown. In this case, for example, in the case where the speed [SPEED] was previously selected as the change target, the roll-up length [LENGTH] is reselected as the change target by step S104.
[0155] Further, in the case where step S104 is reached in a state where the roll-up length [LENGTH] whose selection order is first is selected, the parameter setting section 131 can maintain the roll-up length [LENGTH] without changing the selection of the drive control parameter, or can make the selection order circulate and reselect the acceleration [ACCEL] whose selection order is last (third).
[0156] Step S105: In the case where it is determined in step S101 that the one-press operation of the second button 111-2 is not performed, or after the processes of steps S103 and S104, the parameter setting section 131 determines whether the one-press operation of the third button 111-3 is performed.
[0157] Step S106: When it is determined that the one-press operation of the third button 111-3 is performed, the parameter setting section 131 determines whether the first button 111-1 is in the pressed state at the time of the one-press operation of the third button 111-3 this time.
[0158] Step S107: In the case where it is determined in step S106 that the first button 111-1 is in the pressed state, the parameter setting section 131 decrements the current parameter value of the drive control parameter currently selected as the change target.
[0159] The parameter setting section 131 can store the decremented parameter value as a tentative value in, for example, a RAM or a register, or the like.
[0160] In addition, the parameter setting section 131 performs display control so that the parameter value changed by the decrement is displayed in the corresponding individual parameter display area AR31.
[0161] Further, in a case where the current parameter value is already the minimum value at the stage of reaching step S107, the processing of step S107 can be skipped. In this case, although the one-press operation is performed on the third button 111-3, the parameter value remains the minimum value without being changed. Alternatively, in a case where the current parameter value is already the minimum value at the stage of reaching step S103, the parameter value can be changed to the maximum value in a loop.
[0162] Step S108: In a case where it is determined in step S106 that the first button 111-1 is not in the pressed state, the parameter setting section 131 reselects, as the change target, one of the drive control parameters that is selected in the order of the positive sequence after the drive control parameter that was previously selected as the change target.
[0163] Further, in a case where step S108 is reached in a state where the acceleration [ACCEL] that is the last (third) in the selection order is selected, the parameter setting section 131 can either leave the acceleration [ACCEL] unchanged without changing the selection of the drive control parameter, or can make the selection order loop and reselect the winding length [LENGTH] that is the first in the selection order.
[0164] Step S109: In a case where it is determined in step S105 that the one-press operation is not performed on the third button 111-3, or after the processing of steps S107 and S108, the parameter setting section 131 determines whether the state of the first button 111-1 changes from the previously pressed state to the pressed-release state.
[0165] In a case where it is determined that the state of the first button 111-1 does not change to the pressed-release state, the processing returns to step S101.
[0166] Step S110: When it is determined in step S109 that the state of the first button 111-1 changes to the pressed-release state, the parameter setting section 131 updates the parameter value of the drive control parameter that is currently selected as the change target among the drive control parameters stored in the drive control information storage section 141 to the parameter value that is currently stored as the provisional value. Thereby, the parameter value of the drive control parameter that is changed by step S103 or S107 is determined.
[0167] Further, when it is determined in step S109 that the state of the first button 111-1 has changed to the pressed-release state, in a case where the parameter value stored in the drive control information storage section 141 is the same as the parameter value displayed in the individual parameter display area AR31, step S110 can be skipped. After the processing of step S110, the processing returns to step S101.
[0168] Reference Signs List Figure 8The processing steps performed by the fishing reel 1 in response to the operation of the crank switch 112 in the state where the electric rod fishing mode is on will be described with reference to the flowchart of FIG. 10.
[0169] Step S201: In the fishing reel 1, the spool drive control section 132 determines whether or not the pressing operation of the upper switch section 112a in the crank switch 112 is started. In the electric rod fishing mode, as described above, during the period where the upper switch section 112a is continuously pressed, the spool 4 is rotationally driven, so that the winding of the fishing line is performed.
[0170] Step S202: When it is determined that the pressing operation of the upper switch section 112a is started, the spool drive control section 132 determines whether or not the first button 111-1 is in the pressed state while the pressing operation of the upper switch section 112a is performed.
[0171] In the case where it is determined that the first button 111-1 is in the pressed state, the processing is shifted to step S208. In this case, since step S203 to be described later is skipped, the spool 4 is not rotationally driven, so that the winding of the fishing line is not performed. That is, in the state where the first button 111-1 is pressed, the spool drive control section 132 does not accept the operation of pressing the upper switch section 112a as the operation of rotating the spool 4.
[0172] Step S203: In the case where it is determined that the first button 111-1 is not in the pressed state, the spool drive control section 132 starts the drive control for rotationally driving the spool 4 at the intermediate winding speed stored in the intermediate winding speed storage section 142.
[0173] Step S204: After the drive control for rotationally driving the spool 4 is started at the intermediate winding speed by step S203, the spool drive control section 132 determines whether or not the pressing force detected by the upper switch section 112a in the pressed state is changed in an increasing manner.
[0174] Step S205: In the case where it is determined that the pressing force is changed in an increasing manner, the spool drive control section 132 sets the rotation speed of the spool 4 to a predetermined value higher than the current one, and rotationally drives the spool 4. Further, in the case where the current rotation speed of the spool 4 is the maximum one, the processing of step S205 can be skipped.
[0175] Step S206: The spool drive control section 132 determines whether or not the state where the upper switch section 112a is pressed is released.
[0176] In the case where it is determined that the state where the upper switch section 112a is pressed is not released, the processing is returned to step S204.
[0177] Step S207: When it is determined in step S206 that the state in which the upper switch portion 112a is pressed is released, the spool driving control portion 132 stops the rotational drive of the spool 4.
[0178] Step S208: In a case where it is determined in step S201 that the pressing operation on the upper switch portion 112a is not started, or in a case where it is determined in step S202 that the first button 111-1 is in the pressed state, or after the processing of step S207, the spool driving control portion 132 determines whether the operation of pressing the lower switch portion 112b once is performed. The operation of pressing the lower switch portion 112b once is an operation of instructing the execution of the one-time automatic lure fish action.
[0179] In a case where it is determined that the operation of pressing the lower switch portion 112b once is not performed, the processing returns to step S201.
[0180] Step S209: In a case where it is determined that the operation of pressing the lower switch portion 112b once is performed, the spool driving control portion 132 determines whether the first button 111-1 is in the pressed state at the same time as the operation of pressing the lower switch portion 112b once.
[0181] In a case where it is determined that the first button 111-1 is in the pressed state, the processing returns to step S201. That is, in the state where the first button 111-1 is pressed, the spool driving control portion 132 does not accept the operation of pressing the lower switch portion 112b once as an operation of instructing the execution of the automatic lure fish action.
[0182] Step S210: In a case where it is determined in step S209 that the first button 111-1 is not in the pressed state, the spool driving control portion 132 causes the spool 4 to be rotationally driven in accordance with the drive control parameter included in the drive control information stored in the drive control information storage portion 141. Thereby, the one-time automatic lure fish action corresponding to the operation of pressing the lower switch portion 112b once is executed. After the processing of step S210, the processing returns to step S201.
[0183] <Modified Example>
[0184] Next, a modified example of the present embodiment will be described.
[0185] [First Modified Example]
[0186] In the drive control information of the above-described embodiment, the drive control parameter, which is a condition determination value, is the winding length [LENGTH], and the condition determination value is used to determine the condition for stopping the rotation of the spool 4 started in response to the operation of the third button 111-3.
[0187] However, the drive control parameter as the condition determination value can be, for example, a drive time [TIME] in addition to the winding length [LENGTH]. The drive time [TIME] is a time of rotating drive of the winding drum 4. Specifically, the drive time [TIME] can be, for example, a time from when the operation of the third button 111-3 is detected to when the supply of current to the motor that drives the winding drum 4 is stopped.
[0188] Further, it can be configured that either one of the winding length [LENGTH] and the drive time [TIME] can be selected as the condition determination value, that is, the drive control parameter, by the operation of the user.
[0189] [Second Modification Example]
[0190] In the above-described embodiment, in order to perform the operation of selecting the parameter as the change object and changing the parameter value of the drive control parameter as the change object, two buttons, that is, the second button 111-2 and the third button 111-3, are used as the up button and the down button, respectively.
[0191] However, the number of operation members for performing the operation of selecting the parameter as the change object and changing the parameter value of the drive control parameter as the change object is not limited to two, and can be one, for example.
[0192] In the case where the number of operation members is one and the operation member is a button, the parameter as the change object to be selected or the parameter value can be changed cyclically each time the pressing operation is performed. In the case where the operation member is an operation lever or the like, the parameter as the change object can be changed in the normal order in response to the operation lever being located in a prescribed direction, and the parameter as the change object can be changed in the reverse order in response to the operation lever being located in the other direction.
[0193] [Third Modification Example]
[0194] In the above-described embodiment, an example in which the buttons 111 (the first button 111-1, the second button 111-2, and the third button 111-3) are provided as physical operation members is described. However, the buttons 111 can be, for example, operation members displayed as images in the display portion 102 that is a touch panel.
[0195] [Fourth Modification Example]
[0196] Further, the fishing reel 1 can also be communicably connected with an external terminal device. The communication between the fishing reel 1 and the external terminal device can be wireless or wired. In addition, the external terminal device can be, for example, a device that displays information on fish finding to a user, or a smartphone or the like that operates an application program that assists fishing using the fishing reel 1.
[0197] Further, the drive control information corresponding to the automatic fish attracting operation of the present embodiment and the information on the intermediate winding speed can also be stored in the external terminal device. At this time, the operation related to the change of the drive control parameter in the drive control information or the intermediate winding speed can be made as an operation on the external terminal device.
[0198] Thus, in the case where the drive control information and the information on the intermediate winding speed are stored in the external terminal device, in order to execute the automatic fish attracting operation and the drive control of the spool 4 based on the intermediate winding speed, the drive control information and the information on the intermediate winding speed are set in the fishing reel 1 by the control of the external terminal device. The fishing reel 1 drives and controls the spool 4 in accordance with the set drive control information and the information on the intermediate winding speed, thereby performing the automatic fish attracting operation.
[0199] Further, a program for realizing the functions of the electric fishing reel 1 in the above-described embodiments can be recorded in a computer-readable recording medium, and a computer system can read in and execute the program recorded in the recording medium, whereby the processing of the electric fishing reel 1 described above can be performed. In this case, "causing a computer system to read in and execute a program recorded in a recording medium" includes installing the program in the computer system. The "computer system" described herein includes an OS, hardware such as a peripheral device, and the like. In addition, the "computer system" can include a plurality of computer devices connected via a network including a communication line such as the Internet, a WAN, a LAN, a dedicated line, and the like. In addition, the "computer-readable recording medium" refers to a removable medium such as a floppy disk, a magneto-optical disk, a ROM, a CD-ROM, and the like, a storage device such as a hard disk built into a computer system, and the like. Thus, the recording medium storing the program can also be a non-transitory recording medium such as a CD-ROM. In addition, the recording medium includes a recording medium provided inside or outside that can be accessed from a distribution server in order to distribute the program. The code of the program stored in the recording medium of the distribution server can be different from the code of the program that can be executed in a terminal device. That is, as long as it can be downloaded from the distribution server and installed in a form that can be executed in a terminal device, the form stored in the distribution server is not limited. In addition, it can also be a structure in which the program is divided into a plurality of parts, downloaded at different times, and combined in a terminal device, and the distribution servers that distribute the divided programs can be different. In addition, the "computer-readable recording medium" includes a medium that holds a program for a certain period of time, such as a volatile memory (RAM) inside a computer system as a server or a client in the case where a program is transmitted via a network. In addition, the above-described program can also be a program for realizing a part of the above-described functions. Furthermore, it can also be a so-called differential file (differential program) that can realize the above-described functions by being combined with a program already recorded in a computer system.
Claims
1. A parameter setting device of an electric fishing reel, characterized by comprising a parameter setting section that, in a state where an operation mode in which a spool of the electric fishing reel is driven to rotate is set in accordance with setting of two or more prescribed parameters, accepts a parameter change operation for changing a parameter among the prescribed parameters that is a change target in response to a state where a first operation member is operated being set as an operation continuation state, the parameter setting section being set so as not to accept the parameter change operation for changing the parameter among the prescribed parameters that is the change target in response to the operation continuation state of the first operation member being released, and determining the parameter that is the change target changed in the operation continuation state.
2. The parameter setting device according to claim 1, characterized in that the parameter setting section changes the parameter that is the change target in response to an operation performed on one or more second operation members different from the first operation member in the operation continuation state.
3. The parameter setting device according to claim 1 or 2, characterized in that the parameter setting section selects the parameter that is the change target from among the two or more prescribed parameters in response to an operation performed when not in the operation continuation state.
4. The parameter setting device according to claim 3, characterized in that the parameter setting section selects the parameter that is the change target from among the two or more prescribed parameters in response to an operation performed on a second operation member that is one or more operation members different from the first operation member and is the same operation member as the operation member used for the parameter change operation.
5. The parameter setting device according to claim 1 or 2, characterized in that the prescribed parameters include a rotational speed of the spool, an acceleration at which the rotational speed is reached after the spool starts rotating, and a condition determination value used to determine a condition for stopping the rotation of the spool started in response to an operation.
6. The parameter setting device according to claim 1 or 2, characterized by comprising a spool drive control section that, in the operation continuation state, does not accept an operation for driving the spool to rotate in the operation mode. the parameter setting device according to any one of claims 1 to 6.
8. A parameter setting method of an electric fishing reel, characterized by comprising a parameter setting step in which, in a state where an operation mode in which a spool of the electric fishing reel is driven to rotate is set in accordance with setting of two or more prescribed parameters, a parameter change operation for changing a parameter among the prescribed parameters that is a change target in response to a state where a first operation member is operated being set as an operation continuation state is accepted, 7. An electric fishing reel for fishing, characterized by comprising: the parameter setting step being set so as not to accept the parameter change operation for changing the parameter among the prescribed parameters that is the change target in response to the operation continuation state of the first operation member being released, and determining the parameter that is the change target changed in the operation continuation state. In the parameter setting step, in response to the operation-continuing state of the first operation member being released, the parameter change operation for changing the parameter of the prescribed parameters that is the change target is set to be unable to be accepted, and the parameter that is the change target and that is changed in this operation-continuing state is determined.
9. A storage medium in which a parameter setting program is stored, characterized by The parameter setting program is for causing a computer possessed by an electric fishing reel to function as a parameter setting section that, in a state in which an operation mode in which a spool of the electric fishing reel is driven to rotate is set in accordance with the setting of two or more prescribed parameters, accepts a parameter change operation for changing a parameter of the prescribed parameters that is a change target in response to the parameter being set to an operation-continuing state in which a first operation member is operated, In response to the operation-continuing state of the first operation member being released, the parameter change operation for changing the parameter of the prescribed parameters that is the change target is set to be unable to be accepted, and the parameter that is the change target and that is changed in this operation-continuing state is determined.
Citation Information
Patent Citations
Reel brake adjusting device and reel brake adjusting program
CN111226880A