This application is based on and claims priority under 35 USC 119 from Japanese Patent Application No. 2024-005067 filed on Jan. 17, 2024, the entire content of which is incorporated herein by reference.
The present disclosure relates to a remote control device for remotely controlling a ship propulsion device.
In many cases, a remote control device for remotely controlling a ship propulsion device such as an outboard motor is installed in a console, which is an operator console or a control console, provided in a ship. The remote control device is provided with a remote control lever, and a ship operator can control a magnitude or a direction of a propulsive force generated by the ship propulsion device by performing an operation of tilting the remote control lever.
JP2022-176618A discloses a remote control device in which a display is incorporated in a housing, and various kinds of information related to a ship propulsion device or a ship can be displayed on the display.
In the remote control device disclosed in JP2022-176618A, the display is fixed in the housing of the remote control device and does not move with respect to the housing. In addition, as illustrated in FIG. 3 or FIG. 4 of JP2022-176618A, in a case where the remote control device is installed on a horizontal installation surface, an upper surface of the housing is inclined slightly downward toward a front side as viewed by the ship operator who operates the remote control device, and the display is arranged such that a screen thereof is parallel to the upper surface of the housing. That is, an angle of the screen of the display of the remote control device disclosed in JP2022-176618A is fixed to an angle that is slightly downward toward the front side as viewed by the ship operator in the case where the remote control device is installed on the horizontal installation surface.
The angle of the screen of the display is generally considered to be an angle easy for the ship operator to view, but depending on a time and a location, for example, external light such as sunlight is reflected by the screen of the display and enters eyes of the ship operator, and thus information displayed on the screen of the display may be difficult to be viewed.
In some consoles, the installation surface is inclined downward toward the front side as viewed by the ship operator. In a case where the remote control device disclosed in JP2022-176618A is installed on the installation surface inclined in such manner, the angle of the screen of the display becomes almost vertical, and as a result, the information displayed on the screen of the display becomes difficult to be viewed.
Examples of an aspect of ship maneuvering by the ship operator include an aspect in which the ship operator stands in front of a console and maneuvers the ship and an aspect in which the ship operator sits in a chair provided in front of the console, and a height position of the eyes of the ship operator changes depending on the aspect of ship maneuvering. In a case where the angle of the screen of the display of the remote control device is fixed, the information displayed on the screen of the display may be difficult to be viewed depending on the aspect of ship maneuvering.
Aspect of non-limiting embodiments of the present disclosure relates to provide a remote control device capable of avoiding difficulty in viewing information displayed on a screen of a display depending on a state of external light, an inclination angle of an installation surface, an aspect of ship maneuvering, and the like.
Aspects of certain non-limiting embodiments of the present disclosure address the features discussed above and/or other features not described above. However, aspects of the non-limiting embodiments are not required to address the above features, and aspects of the non-limiting embodiments of the present disclosure may not address features described above.
According to an aspect of the present disclosure, there is provided a remote control device for remotely controlling a ship propulsion device provided in a ship, the remote control device including:
Exemplary embodiment(s) of the present invention will be described in detail based on the following figures, wherein:
A remote control device according to an embodiment of the present disclosure is a device for remotely controlling a ship propulsion device provided in a ship. The remote control device of the present embodiment includes a remote control device main body, a display unit, and a support mechanism.
The remote control device main body includes a main body case and a remote control lever attached to the main body case. The main body case is installed on an installation surface provided in the ship.
The display unit includes a display case and a display provided in the display case. In addition, the display unit is provided outside the main body case of the remote control device main body.
The support mechanism couples the display unit and the remote control device main body to each other and supports the display unit.
In a case where a direction perpendicular to the installation surface is defined as an up-down direction, a direction perpendicular to the up-down direction is defined as a front-back direction, and a direction perpendicular to the up-down direction and the front-back direction is defined as a left-right direction, the support mechanism of the remote control device of the present embodiment couples the display unit and the remote control device main body such that the display unit is configured to be rotated with respect to the remote control device main body about a rotation axis extending in the left-right direction.
According to the remote control device of the present embodiment, for example, in a case where external light such as sunlight is reflected by a screen of the display and enters eyes of the ship operator, and thus the information displayed on the screen of the display is difficult to be viewed, an angle of the screen of the display can be changed by rotating the display unit. Accordingly, it is possible to prevent the external light reflected by the screen of the display from entering the eyes of the ship operator, and it is possible to make it easy to view the information displayed on the screen of the display. In addition, in a case where it is difficult to view the information displayed on the screen of the display due to the inclination angle of the installation surface on which the remote control device is installed, the display unit is caused to rotate to change the angle of the screen of the display, thereby making it easy to view the information displayed on the screen of the display. Further, even in a case where it is difficult to view the information displayed on the screen of the display depending on the aspect of ship maneuvering, the display unit is caused to rotate to change the angle of the screen of the display, thereby making it easy to view the information displayed on the screen of the display.
A first embodiment of the remote control device according to the present disclosure will be described with reference to
In the first embodiment, a direction of the ship is described based on a person standing at the center of a deck of the ship while facing a bow of the ship. Specifically, the front of the person, that is, a direction of the bow is considered as the front of the ship, the upper of the person is considered as the upper of the ship, and the right of the person is considered as the right of the ship. Hollow arrows A in
The remote control device 11 is configured to remotely control the outboard motor 3. The remote control device 11 has, in addition to a function of remotely controlling the outboard motor 3, a function of displaying various kinds of information related to the outboard motor 3, the ship 1, and the like.
As illustrated in
The remote control device main body 12 includes the main body case 13, a lever pivot portion 14, an arm pivot portion 15, and a remote control lever 17.
As illustrated in
The remote control device 11 is installed on the installation surface 5. Specifically, as illustrated in
The lever pivot portion 14 for supporting the remote control lever 17 is attached to a left end portion of the main body case 13. In addition, the arm pivot portion 15 for supporting the support arm 41 is attached to a right end portion of the main body case 13. As illustrated in
The remote control lever 17 is attached to a left end side of the main body case 13. The remote control lever 17 is configured to be rotated in the front-back direction with respect to the main body case 13. The rotation axis X1 of the remote control lever 17 extends in the left-right direction and passes through the main body case 13. The remote control lever 17 extends in a direction perpendicular to the rotation axis X1. A base end portion 17A of the remote control lever 17 is attached to the lever pivot portion 14 such that the base end portion 17A is configured to be rotated about the rotation axis X1 with respect to the lever pivot portion 14. By attaching and fixing the lever pivot portion 14 to the left end portion of the main body case 13, the remote control lever 17 is coupled to the main body case 13 such that the remote control lever 17 is configured to be rotated about the rotation axis X1 with respect to the main body case 13. In addition, a grip portion 18 is provided at a distal end portion of the remote control lever 17. The ship operator can control a magnitude or a direction of a propulsive force of the ship 1 generated by the outboard motor 3 by grasping the grip portion 18 and changing an inclination angle of the remote control lever 17.
Here, with respect to the inclination angle of the remote control lever 17 and the propulsive force generated by the outboard motor 3, a case where a power source of the outboard motor 3 is an engine and the outboard motor 3 is provided with a clutch will be described as an example with reference to
In a case where the inclination angle of the remote control lever 17 is within a neutral range Rn in
In a case where the inclination angle of the remote control lever 17 is within a forward range Rf in
In a case where the inclination angle of the remote control lever 17 is within a reverse range Rr in
As illustrated in
As illustrated in
The display unit 22 includes a display case 23 and a display 25.
The display case 23 is formed in a rectangular parallelepiped shape close to a flat plate, as illustrated in
The screen 26 of the display 25 is configured to display various kinds of information related to the outboard motor 3, the ship 1, and the like. For example, in a case where the power source of the outboard motor 3 is an engine, as illustrated in
The display 25 is a large display having a large number of pixels. A size of the display 25 is, for example, about 3 inches to 7 inches, but a display having a larger size can also be provided. Since the display 25 has a large number of pixels, information can be displayed using high-precision graphics. For example, as illustrated in
The support arm 41 couples the display unit 22 and the remote control device main body 12 to each other and supports the display unit 22. In addition, the support arm 41 supports the display unit 22 such that the display unit 22 is disposed at a position separated from the remote control device main body 12. As illustrated in
The support arm 41 couples the display unit 22 and the remote control device main body 12 such that a position and an orientation of the display unit 22 with respect to the remote control device main body 12 can be changed. Specifically, the support arm 41 couples the display unit 22 and the remote control device main body 12 such that, the display unit 22 can be moved from an upper side to a front side of the remote control device main body 12 at the same time as the orientation of the display unit 22 is changed such that an orientation of the screen 26 of the display 25 is changed from upward to forward, and the display unit 22 can be moved from an upper side to a back side of the remote control device main body 12 at the same time as the orientation of the display unit 22 is changed such that the orientation of the screen 26 of the display 25 is changed from upward to backward.
More specifically, the support arm 41 is configured to be rotated in the front-back direction with respect to the remote control device main body 12. The rotation axis X2 of the support arm 41 extends in the left-right direction and passes through the main body case 13 of the remote control device main body 12. The support arm 41 extends in a direction perpendicular to the rotation axis X2. A base end portion 41A of the support arm 41 is attached to the arm pivot portion 15 such that the base end portion 41A is configured to be rotated about the rotation axis X2 with respect to the arm pivot portion 15 of the remote control device main body 12. By attaching and fixing the arm pivot portion 15 to the right end portion of the main body case 13, the base end portion 41A of the support arm 41 is coupled to the right end portion of the main body case 13 such that the base end portion 41A is configured to be rotated about the rotation axis X2 with respect to the main body case 13. In the present embodiment, the rotation axis X2 of the support arm 41 is in alignment with the rotation axis X1 of the remote control lever 17. A length of the support arm 41 is longer than any of a distance between the rotation axis X2 and the upper surface 13B of the main body case 13, a distance between the rotation axis X2 and the front surface 13A of the main body case 13, and a distance between the rotation axis X2 and the rear surface of the main body case 13.
As illustrated in
Since the display unit 22 is coupled to the remote control device main body 12 via the support arm 41 in this manner, the display unit 22 is configured to be rotated about the rotation axis X2 with respect to the remote control device main body 12. For example, as illustrated in
As illustrated in
As described above, in the remote control device 11 according to the first embodiment of the present disclosure, the main body case 13 of the remote control device main body 12 is installed on the installation surface 5, and the display unit 22 is provided outside the body case 13. The display unit 22 is coupled to the remote control device main body 12 via the support arm 41 such that the display unit 22 is configured to be rotated about the rotation axis X2 with respect to the remote control device main body 12. According to the remote control device 11 of the present embodiment, for example, in a case where external light such as sunlight is reflected by the screen 26 of the display 25 and enters the eyes of the ship operator, and thus the information displayed on the screen 26 is difficult to be viewed, an angle of the screen 26 of the display 25 can be changed by rotating the display unit 22. Accordingly, it is possible to prevent the external light reflected by the screen 26 of the display 25 from entering the eyes of the ship operator, and it is possible to make it easy to view the information displayed on the screen 26.
The remote control device 11 may be installed on the horizontal installation surface 5 as illustrated in
Examples of the aspect of ship maneuvering by the ship operator include an aspect in which the ship operator stands in front of the console 4 and maneuvers the ship and an aspect in which the ship operator sits in a chair provided in front of the console 4, and depending on the aspect of ship maneuvering, it may be difficult to view the information displayed on the screen 26 of the display 25 of the remote control device 11. In a case where it is difficult to view the information displayed on the screen 26 depending on the aspect of ship maneuvering, the display unit 22 is caused to rotate to change the angle of the screen 26 of the display 25, thereby making it easy to view the information displayed on the screen 26.
In the remote control device 11 of the present embodiment, the base end portion 41A of the support arm 41 is coupled to the main body case 13 so as to be rotatable about the rotation axis X2 with respect to the remote control device main body 12, and the distal end portion of the support arm 41 is coupled to the display case 23 and fixed to the display case 23. With this configuration, the display unit 22 can move from an upper side to a front side of the remote control device main body 12 while changing the orientation of the screen 26 of the display 25 from upward to forward, and can move from the upper side to a back side of the remote control device main body 12 while changing the orientation of the screen 26 of the display 25 from upward to backward. Accordingly, the ship operator can change the orientation and the position of the display unit 22 such that the information displayed on the screen 26 can be easily viewed.
In the remote control device 11 of the present embodiment, the upper surface 13B of the main body case 13 is curved so as to draw an arc centered on the rotation axis X2 of the support arm 41. Accordingly, as compared with a case where the upper surface 13B of the main body case 13 is a flat surface parallel to the lower surface of the main body case 13, it is possible to increase an angular range of rotation of the display unit 22 and to reduce a rotation radius of the display unit 22 while avoiding a contact of the display unit 22 with the main body case 13 during the rotation.
In the remote control device 11 of the present embodiment, the rotation axis X1 of the remote control lever 17 and the rotation axis X2 of the support arm 41 are in alignment with each other. Thus, the designability of the remote control device 11 can be improved. Specifically, a track of rotation of the remote control lever 17 and a track of the rotation of the display unit 22 become similar to each other, and movement of the remote control lever 17 and movement of the display unit 22 have a sense of unity, thereby enhancing an aesthetic feeling.
In the remote control device 11 of the present embodiment, the rotation range Re of the support arm 41 is set such that the display unit 22 can be moved from a position where the back surface 23B of the display case 23 and the operation switch 19 face each other to a position where the back surface 23B of the display case 23 and the operation switch 19 do not face each other. With this configuration, in a case where the display unit 22 is at the position where the back surface 23B of the display case 23 and the operation switch 19 face each other and thus the ship operator cannot easily operate the operation switch 19, the ship operator can make the operation switch 19 easier to be operated by changing the position of the display unit 22 to the position where the back surface 23B of the display case 23 and the operation switch 19 do not face each other.
In the remote control device 11 of the present embodiment, the main body case 13 of the remote control device main body 12 is installed on the installation surface 5, and the display unit 22 is provided outside the body case 13. According to this configuration, even in a case where the display 25 is provided in the remote control device 11, it is possible to prevent an increase in area of the installation surface 5 on the ship side required for installation of the remote control device 11. That is, in the remote control device 11, a portion thereof installed on the installation surface 5 is the main body case 13 of the remote control device main body 12, and thus it is possible to prevent the increase in area of the installation surface 5 required for installation of the remote control device 11 by preventing an increase in size of the main body case 13. In addition, in the remote control device 11, the display unit 22 having the display 25 is provided outside the main body case 13, and thus the main body case 13 can be made smaller than in a case where the display 25 is provided inside the main body case 13. Accordingly, according to the remote control device 11 of the present embodiment, even in a case where the display 25 is provided in the remote control device 11, it is possible to prevent the increase in area of the installation surface 5 on the ship side required for installation of the remote control device 11. Further, according to the configuration of the remote control device 11 of the present embodiment, when the size of the display 25 is increased, the display unit 22 is increased in size, but the main body case 13 is not increased in size. Accordingly, even in a case where the display 25 provided in the remote control device 11 is a large display having a large number of pixels, it is possible to prevent the increase in area of the installation surface 5 on the ship side required for installation of the remote control device 11.
In the remote control device 11 of the present embodiment, the length W2 of the display case 23 in the left-right direction is longer than the length W1 of the lower surface of the main body case 13 facing the installation surface 5 in the left-right direction. By increasing the length W2 of the display case 23 in the left-right direction, the large display 25 having a large number of pixels can be accommodated in the display case 23. Further, by shortening the length W1 of the lower surface of the main body case 13 facing the installation surface 5 in the left-right direction, the area of the installation surface 5 required for installation of the remote control device 11 can be reduced. According to the remote control device 11 of the present embodiment, the area of the installation surface 5 required for installation of the remote control device 11 can be reduced while providing the large display 25 having a large number of pixels.
In the remote control device 11 of the present embodiment, the support arm 41 is attached to the right end portion of the main body case 13, and the remote control lever 17 is attached to the left end portion of the main body case 13. As described above, the support arm 41 for supporting the display unit 22 is provided on an end portion of the main body case 13 on one side in the left-right direction, and the remote control lever 17 is provided on an end portion of the main body case 13 on the opposite side in the left-right direction, so that the display unit 22 can be disposed at a position sufficiently separated from the remote control lever 17. Accordingly, the display unit 22 can be prevented from interfering with the operation of the remote control lever 17.
In the remote control device 11 of the present embodiment, the base end portion 41A of the support arm 41 is coupled to the right end portion of the main body case 13, the distal end portion of the support arm 41 is coupled to the right end portion of the display case 23, and the display unit 22 is disposed at a position facing the main body case 13. Thus, it is possible to prevent the display unit 22 from greatly protruding rightward from the remote control device main body 12. Accordingly, a size of the entire remote control device 11 in the left-right direction can be reduced, and a compact remote control device can be realized.
A second embodiment of the remote control device according to the present disclosure will be described with reference to
As illustrated in
The support arm 60 includes a first arm piece 61 forming a base end side portion of the support arm 60 and a second arm piece 62 forming a distal end side portion of the support arm 60.
The first arm piece 61 is configured to be rotated in the front-back direction with respect to the remote control device main body 12. A rotation axis X3 of the first arm piece 61 extends in the left-right direction and passes through the main body case 13 of the remote control device main body 12. The first arm piece 61 extends in a direction perpendicular to the rotation axis X3. A base end portion 61A of the first arm piece 61 is attached to the arm pivot portion 15 such that the base end portion 61A is configured to be rotated about the rotation axis X3 with respect to the arm pivot portion 15 of the remote control device main body 12. By attaching and fixing the arm pivot portion 15 to the right end portion of the main body case 13, the base end portion 61A of the first arm piece 61 is coupled to the right end portion of the main body case 13 such that the base end portion 61A is configured to be rotated about the rotation axis X3 with respect to the main body case 13. The base end portion 61A of the first arm piece 61 corresponds to a base end portion of the support arm 60.
In the present embodiment, the rotation axis X3 of the first arm piece 61 is in alignment with the rotation axis X1 of the remote control lever 17. A length of the first arm piece 61 is longer than any of a distance between the rotation axis X3 and the upper surface 13B of the main body case 13, a distance between the rotation axis X3 and the front surface 13A of the main body case 13, and a distance between the rotation axis X3 and the rear surface of the main body case 13.
A base end portion of the second arm piece 62 is rotatably coupled to a distal end portion of the first arm piece 61. The second arm piece 62 is configured to be rotated about a rotation axis X4 with respect to the first arm piece 61. The rotation axis X4 of the second arm piece 62 extends in the left-right direction. The second arm piece 62 extends in a direction perpendicular to the rotation axis X4.
A distal end portion of the second arm piece 62 is rotatably coupled to the display unit 22. The display unit 22 is configured to be rotated about a rotation axis X5 with respect to the second arm piece 62. The rotation axis X5 of the display unit 22 extends in the left-right direction. The distal end portion of the second arm piece 62 is coupled to a central portion of the back surface 23B of the display case 23 of the display unit 22. A bracket 63 is provided at the central portion of the back surface 23B of the display case 23 of the display unit 22 in the present embodiment, and the distal end portion of the second arm piece 62 is rotatably attached to the bracket 63. The distal end portion of the second arm piece 62 corresponds to a distal end portion of the support arm 60.
The display unit 22 is coupled to the distal end portion of the second arm piece 62 such that the display unit 22 is configured to be rotated about a rotation axis X6 extending in a direction perpendicular to the screen 26 of the display 25. As illustrated in
The display unit 22 is configured to be rotated about the rotation axis X3 with respect to the remote control device main body 12. The display unit 22 is configured to be rotated about the rotation axis X4 with respect to the remote control device main body 12. The display unit 22 is configured to be rotated about the rotation axis X5 with respect to the remote control device main body 12. The display unit 22 is configured to be rotated about the rotation axis X6 with respect to the remote control device main body 12.
The remote control device 51 according to the second embodiment of the present disclosure having such a configuration has substantially the same operation and effect as that of the remote control device 11 according to the first embodiment of the present disclosure. In addition, in the remote control device 51 according to the second embodiment of the present disclosure, the display unit 22 is coupled to the distal end portion of the support arm 60 so as to be rotatable about the rotation axis X5, thereby improving the degree of freedom in setting the orientation of the display unit 22. Further, the support arm 60 includes the first arm piece 61 and the second arm piece 62, and the second arm piece 62 is coupled to the first arm piece 61 so as to be rotatable about the rotation axis X4, thereby improving the degree of freedom in setting the position and the orientation of the display unit 22. For example, as illustrated in
Further, the display unit 22 is coupled to the distal end portion of the support arm 60 so as to be rotatable about the rotation axis X6, thereby improving the degree of freedom in setting the orientation of the display unit 22. For example, the orientation of the screen 26 of the display 25 can be changed from a horizontal orientation to a vertical orientation.
In each of the above embodiments, the remote control lever 17 is disposed on a left side of the main body case 13, and the support arm 41 (60) is disposed on a right side of the main body case 13, but the present invention is not limited thereto, and the remote control lever 17 may be disposed on the right side of the main body case 13 and the support arm 41 (60) may be disposed on the left side of the main body case 13.
In each of the above embodiments, a case where the base end portion 41A (61A) of the support arm 41 (60) is coupled to the right end portion of the main body case 13 is given as an example, but the present invention is not limited thereto. For example, as in a remote control device 71 illustrated in
In the remote control device 11 of the first embodiment, the display unit 22 may be coupled to the distal end portion of the support arm 41 such that the display unit 22 is rotatable about the rotation axis extending in the left-right direction with respect to the distal end portion of the support arm 41.
In the remote control device 51 of the second embodiment, the base end portion 61A of the first arm piece 61 is coupled to the main body case 13 such that the first arm piece 61 is rotatable with respect to the main body case 13, and the base end portion of the second arm piece 62 is coupled to the distal end portion of the first arm piece 61 such that the second arm piece 62 is rotatable with respect to the first arm piece 61, but the display unit 22 may be coupled to the distal end portion of the second arm piece 62 such that the display unit 22 does not move with respect to the second arm piece 62.
In the remote control device 51 of the second embodiment, the base end portion of the second arm piece 62 is coupled to the distal end portion of the first arm piece 61 such that the second arm piece 62 is rotatable with respect to the first arm piece 61, and the display unit 22 is coupled to the distal end portion of the second arm piece 62 such that the display unit 22 is rotatable with respect to the second arm piece 62, but the base end portion 61A of the first arm piece 61 may be coupled to the main body case 13 such that the first arm piece 61 does not move with respect to the main body case 13.
In the remote control device 51 of the second embodiment, the base end portion of the second arm piece 62 is coupled to the distal end portion of the first arm piece 61 such that the second arm piece 62 is rotatable with respect to the first arm piece 61, but the base end portion 61A of the first arm piece 61 may be coupled to the main body case 13 such that the first arm piece 61 does not move with respect to the main body case 13, and the display unit 22 may be coupled to the distal end portion of the second arm piece 62 such that the display unit 22 does not move with respect to the second arm piece 62.
In the remote control device 51 of the second embodiment, the support arm 60 may be formed of a single rod-shaped member without being divided into the first arm piece 61 and the second arm piece 62, the base end portion of the support arm 60 may be coupled to the main body case 13 such that the support arm 60 does not move with respect to the main body case 13, and the display unit 22 may be coupled to the distal end portion of the support arm 60 such that the display unit 22 is rotatable with respect to the support arm 60.
In the remote control device 51 of the second embodiment, the display unit 22 is rotatable about the rotation axis X6, but the display unit 22 may not rotate about the rotation axis X6.
The support arm 60 may be implemented such that three or more arm pieces are rotatably connected in a row, and the number of rotating portions of the support arm 60 may be increased. In addition, the support arm 60 may be formed of a flexible arm.
In each of the above embodiments, a case where the display unit 22 is supported by the support arm 41 (60) such that the display unit 22 is disposed at a position separated from the remote control device main body 12 is given as an example, but the present invention is not limited thereto. For example, as in a remote control device 91 illustrated in
The ship propulsion device remotely controlled by the remote control device 11 is not limited to the outboard motor, and may be another type of ship propulsion device such as a sterndrive. In addition, the power source of the ship propulsion device may be an engine (internal combustion engine) or a motor (electric motor).
The foregoing description of the exemplary embodiments of the present invention has been provided for the purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Obviously, many modifications and variations will be apparent to practitioners skilled in the art. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, thereby enabling others skilled in the art to understand the invention for various embodiments and with the various modifications as are suited to the particular use contemplated. It is intended that the scope of the invention be defined by the following claims and their equivalents.
| Number | Date | Country | Kind |
|---|---|---|---|
| 2024-005067 | Jan 2024 | JP | national |