Multifunctional integrated control keyboard for small ships and boats

By designing a multi-functional small boat integrated control keyboard, the direction control problem caused by the inability to use of the equipment when sailing at sea is solved, precise direction control and multi-functional operation are achieved, and the operation flexibility and safety of the boat are improved.

CN223180600UActive Publication Date: 2025-08-01CHANGZHOU FRP SHIPYARD CO LTD
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Patent Information

Application Number
CN202421406052.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-19
Publication Date
2025-08-01
Estimated Expiration
2034-06-19

AI Technical Summary

Technical Problem

During the sailing process, ships and boats need to place multiple equipment due to different navigation conditions, but when the waves are too large, the equipment cannot be used, resulting in the inability to accurately control the driving position of the ship and boat, causing panic.

Method used

A multi-functional small boat integrated control keyboard is designed, including a control box and a direction rocker. The direction rocker can rotate 360 degrees and is equipped with direction control components and direction buttons. Combined with control keyboard, photoelectric control, radar control and quick control, it realizes precise direction control and multi-function operation.

Benefits of technology

It realizes precise direction control and multi-functional operation when sailing at sea, avoids panic caused by the inability to use of equipment, and improves the operational flexibility and safety of ships and boats.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a multifunctional integrated control keyboard for small ships and boats, and relates to the technical field of multifunctional integrated control keyboards for small ships and boats, the multifunctional integrated control keyboard comprises a control box and a direction rocker, the direction rocker is arranged on one side of the control box, the direction rocker is wrapped with rubber, and the direction rocker controls the driving direction of the ship and boats through 360-degree rotation; according to the technical scheme, the control box is connected with a power source program of the ship, when the driving direction of the ship needs to be controlled, the direction is controlled through the direction rocker on one face of the control box, and due to the fact that the direction rocker can be 360 degrees, the ship can be controlled to be driven in the 360-degree direction; however, when an accurate position is needed in the driving process of the ship, the ship and boat can be controlled through a direction key arranged below a direction pressing rod due to the fact that the direction rocker cannot control the accurate driving position of the ship, boat and boat sometimes, and the situation that when the direction needs to be accurately controlled, the direction cannot be accurately controlled is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of aircraft model assembly, in particular to a multifunctional small boat integrated control keyboard. Background Art

[0002] The integrated navigation system of ships and boats is an essential equipment for navigation. It integrates Beidou navigation, radar, AIS, depth sounder, inertial navigation system, integrated optoelectronic system, and chart operation, etc. The integrated control keyboard is used for its quick operation to realize functions such as power switch, optoelectronic control, radar control, quick control, trackball control, and Beidou SOS distress.

[0003] During the navigation of existing ships and boats, it is necessary to control the ships and boats according to the navigation conditions. Since the navigation conditions are different each time, a lot of equipment needs to be placed on the ships and boats. However, sometimes some equipment cannot be used due to excessive sea waves, resulting in the inability to accurately control the driving position of the ships and boats, thus causing panic among the people on the ships and boats. Content of the Utility Model

[0004] In order to overcome the deficiency that during the navigation of existing ships and boats, it is necessary to control the ships and boats according to the navigation conditions. Since the navigation conditions are different each time, a lot of equipment needs to be placed on the ships and boats. However, sometimes some equipment cannot be used due to excessive sea waves, resulting in the inability to accurately control the driving position of the ships and boats, thus causing panic among the people on the ships and boats, the embodiment of the present application provides a multifunctional small boat integrated control keyboard, including a control box and a direction joystick. The direction joystick is arranged on one side of the control box, and the outside of the direction joystick is wrapped with a rubber skin. The direction joystick controls the driving direction of the boat through 360-degree rotation. A direction control component is arranged on one side of the direction joystick. The inside of the direction control component includes direction buttons in various directions for controlling the direction, and a tracker is arranged in the middle of the direction buttons.

[0005] The technical solution adopted by the embodiment of the present application to solve its technical problems is:

[0006] A multifunctional small boat integrated control keyboard, including a control box and a direction joystick, the direction joystick is arranged on one side of the control box;

[0007] Wherein, the outside of the direction joystick is wrapped with a rubber skin, the direction joystick controls the driving direction of the boat through 360-degree rotation, a direction control component is arranged on one side of the direction joystick, the inside of the direction control component includes direction buttons in various directions for controlling the direction, and a tracker is arranged in the middle of the direction buttons.

[0008] In a possible implementation manner, a control keyboard is arranged on one side of the direction button, and the inside of the control keyboard includes optoelectronic control, radar control, and quick control.

[0009] In a possible implementation, a trackball is provided on one side of the quick control, a direction navigation display is provided above the trackball, a photoelectric display is provided on one side of the navigation display, and control buttons are provided below the navigation display and the photoelectric display.

[0010] In a possible implementation, a photoelectric power supply is fixedly connected to the outside of one side of the control box, and an RS422 connection port, a USB connection port, and a DC24V connection port are respectively provided below the photoelectric power supply.

[0011] In a possible implementation, a navigation power supply is provided on one side of the photoelectric power supply, and the navigation power supply is used to supply power to the navigation device.

[0012] In a possible implementation, a debugging port is provided on one side of the photoelectric power supply, and the debugging port is used to connect the power supply of the entire control box.

[0013] In a possible implementation, a mounting plate is provided around the outside of one side of the control box, and mounting holes are provided inside the mounting plate.

[0014] In summary, the present utility model includes at least one of the following beneficial technical effects:

[0015] 1. By connecting the power supply program of the control box to the ship or boat, when it is necessary to control the driving direction of the ship or boat, the direction is controlled by the direction joystick on one side of the control box. Since the direction joystick can rotate 360 degrees, the ship or boat can be controlled to drive in a 360-degree direction. However, when the ship or boat sometimes needs an accurate position during driving, since the direction joystick cannot control the accurate position of the ship or boat's driving, at this time, the direction buttons included in the direction control component provided below the direction lever can be used. When it is necessary to drive in a certain direction, the button in that direction can be directly pressed, and then the ship or boat can automatically drive in that direction. Thus, the control of the direction can be completed through the control box, avoiding the inability to accurately control the direction when accurate direction control is required.

[0016] 2. Multiple practical functions are performed through the control keyboard inside the control keyboard on one side of the direction button. The photoelectric control inside the control keyboard is used to control the light source and power on the entire ship, so there is no need to open the electrical box for control, avoiding the need to check inside the electrical box during an emergency power outage. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic front view plane structure diagram of the whole of the present utility model;

[0018] Figure 2 It is a schematic side view plane structure diagram of the whole of the present utility model;

[0019] Figure 3 This is the overall structural schematic diagram of the present utility model.

[0020] Reference numerals: 1, control box; 2, direction joystick; 4, direction button; 5, tracker; 7, photoelectric control; 8, radar control; 9, quick control; 10, trackball; 11, navigation display; 12, photoelectric display; 13, control button; 14, photoelectric power supply; 15, RS422 connection port; 16, USB connection port; 17, DC24V connection port; 18, navigation power supply; 19, debugging port; 20, mounting plate; 21, mounting hole. Specific embodiments

[0021] The technical solutions in the embodiments of the present application are to solve the problems in the above-mentioned background technology, and the general idea is as follows:

[0022] Embodiment 1:

[0023] This embodiment introduces the specific structure of a multifunctional small boat integrated control keyboard. Specifically, refer to Figures 1 - 3 As shown, it includes a control box 1 and a direction joystick 2. The direction joystick 2 is arranged on one side of the control box 1. The outside of the direction joystick 2 is wrapped with a rubber skin to protect the direction joystick 2 from being damaged by external media. The direction joystick 2 controls the driving direction of the boat through 360-degree rotation, making the direction more precise during course movement. On one side of the direction joystick 2, there is a direction control component, which is set in a square block structure. The inside of the direction control component includes direction buttons 4 in various directions for controlling the direction. A tracker 5 is arranged in the middle of the direction buttons 4 to combine with the direction buttons 4 to track the boat to be positioned;

[0024] Among them, on one side of the direction buttons 4, there is a control keyboard, which has a keyboard-like appearance. The inside includes a photoelectric control 7, a radar control 8, and a quick control 9. These three modules are used to operate the basic functions inside the hull;

[0025] At the same time, on one side of the quick control 9, there is a trackball 10, which is set as a sphere and can be rotated to control the direction of the boat. Above the trackball 10, there is a direction navigation display 11 for displaying its own position, so as to better use the trackball 10 for driving. On one side of the navigation display 11, there is a photoelectric display 12 for displaying the power of the hull and the output power, so that the situation of the hull can be better understood. And below the navigation display 11 and the photoelectric display 12, there are control buttons 13 for controlling the on / off of the navigation display 11 and the photoelectric display 12;

[0026] Secondly, on one side of the outside of the control box 1, an optoelectronic power supply 14 is fixedly connected, which is used to connect the optoelectronic control line on the hull. When inserted, the optoelectronic display 12 lights up. Below the optoelectronic power supply 14, an RS422 connection port 15 is respectively provided for inserting the communication signal line inside the hull, so that the hull position can be sent to the outside. A USB connection port 16 is used to insert a series line so that the control box 1 can control the ship. A DC24V connection port 17 is inserted with a 24V DC voltage line;

[0027] Thirdly, on one side of the optoelectronic power supply 14, a navigation power supply 18 is provided. When the corresponding power cord of the incoming and outgoing ship is inserted, it supplies power to the radar and other navigation equipment;

[0028] At the same time, on one side of the optoelectronic power supply 14, a debugging port 19 is provided, and installation nuts are provided on both sides. For the inserted wire, when the corresponding wire is inserted into the debugging port 19, it connects the power supply of the entire control box 1 to supply power to it. Around one side of the outside of the control box 1, a mounting plate 20 is provided, which is used to fit with the ship wall for hull installation. When fitted, it is fixed through the mounting holes 21 opened inside the mounting plate 20;

[0029] By adopting the above technical solutions:

[0030] The above design connects the power supply program of the control box 1 with that of the ship. When it is necessary to control the driving direction of the ship, the direction is controlled through the direction joystick 2 on one side of the control box 1. Since the direction joystick 2 can rotate 360 degrees, the ship can be controlled to drive in a 360-degree direction. The rubber skin wrapped outside the direction joystick 2 is used to protect the direction joystick 2 from being damaged by external media, increasing the service life. However, when the ship needs an accurate position during driving, since the direction joystick 2 cannot control the accurate position of the ship's driving, at this time, the direction keys 4 included in the direction control component provided below the direction joystick 2 can be used. When it is necessary to drive in a certain direction, the corresponding key can be directly pressed, and then the ship can automatically drive in that direction. Thus, the control of the direction can be completed through the control box 1, avoiding the inability to accurately control the direction when the direction needs to be controlled. Since there are many functions that cannot be realized by ships when driving at sea now, it leads to limitations in use. When multiple operations are required, various practical functions can be performed through the control keyboard inside the control keyboard on one side of the direction keys 4. The optoelectronic control 7 inside the control keyboard is used to control the light sources and power on the entire ship, so there is no need to open the electrical box for control, avoiding the need to check inside the electrical box during an emergency power outage.

[0031] Embodiment 2:

[0032] Based on Embodiment 1, this embodiment introduces the specific structure of the direction key 4. A control keyboard is provided on one side of the direction key 4, and the interior of the control keyboard includes an optoelectronic control 7, a radar control 8, and a quick control 9;

[0033] Among them, the radar control 8 module beside the optoelectronic control 7 is used to connect to the space satellite to locate the position of the hull. Thus, when others need to find the position of the ship, they can find the ship through the satellite. And when the ship is in danger, the distress signal can be sent to the satellite through the radar control 8, and the satellite then sends the signal to the rescuers. Thus, it can be better for the rescuers to find you, avoiding the inability to send out a distress signal in time when in danger;

[0034] At the same time, the quick control 9 module on one side of the radar control 8 is used to quickly control some one-key start functions. The buttons inside the quick control 9 only need to be pressed to start, without the need to press the start button after adjustment. Thus, the buttons inside are all some emergency and easy-to-operate buttons. Therefore, when in a dangerous situation, the emergency button can be quickly pressed to call for rescue, avoiding the inability to send out a distress signal in time when in danger;

[0035] Furthermore, when the boat needs to travel according to the navigation, the navigation display 11 on one side of the quick control 9 shows the position of the boat and the route to go. Then, the trackball 10 below is controlled to make the boat travel along the route shown on the navigation display 11. The optoelectronic display 12 on one side of the navigation display 11 is used to display the power and energy consumption. Thus, the driver can adjust the speed of the hull according to the displayed data. Therefore, the navigation display 11 and the optoelectronic display 12 are controlled by the control buttons 13 below for switching on and off;

[0036] The operation steps of the user are as follows:

[0037] S1. The user needs to first fixedly connect an optoelectronic power supply 14 to the outside of the control box 1, insert the optoelectronic control line on the hull, so as to control the optoelectronic display 12 to light up. Then, insert the debugging port 19 on this side into the corresponding debugging line on the hull. After insertion, the RS422 connection port 15, USB connection port 16, and DC24V connection port 17 are respectively provided below the optoelectronic power supply 14, and all are inserted into the corresponding lines. Through slow adjustment and installation, when the installation is completed, the lower part can be installed;

[0038] S2. When the power connection of the control box 1 is completed, the surrounding mounting plate 20 on the outside is attached to the mounting part of the hull. When the attachment is completed, screws are put into the inside through the multiple mounting holes 21 opened inside the mounting plate 20, and the screws are screwed into the inside of the mounting holes 21. Thus, the control box 1 is fixedly installed at the mounting part of the hull, so that the user can better control the boat;

[0039] S3. When the control box 1 is connected to the hull and can be used, during free driving, only the direction joystick 2 needs to be pushed for direction movement. When autonomous driving is required, the direction buttons 4 below the direction joystick 2 can be used to control the movement in that direction. When the tracker 5 needs to be used, press the tracker 5 button, and the ship will move by tracking the position of the target ship, thus realizing the diversity of driving. The interior of the control keyboard on one side of the direction buttons 4 includes optoelectronic control 7, radar control 8, and quick control 9. There are many small control buttons inside each control panel, which can be used more flexibly and do not require excessive operations. When a certain operation is needed, just press the corresponding button to complete the operation, greatly saving the complexity of various operations.

[0040] Finally, it should be noted that: Obviously, the above embodiments are only examples for clearly illustrating the present invention, rather than limiting the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to enumerate all the implementation manners here. And the obvious changes or modifications derived therefrom are still within the protection scope of the present invention.

Claims

1. A multifunctional small boat integrated control keyboard, characterized in that Including: Control box (1); Direction joystick (2), which is arranged on one side of the control box (1); Wherein, the outside of the direction joystick (2) is wrapped with a rubber skin, the direction joystick (2) controls the driving direction of the boat through 360-degree rotation, a direction control component is arranged on one side of the direction joystick (2), and the inside of the direction control component includes direction buttons (4) for controlling the direction, and a tracker (5) is arranged in the middle of the direction buttons (4).

2. The multifunctional small boat integrated control keyboard according to claim 1, characterized in that: A control keyboard is arranged on one side of the direction buttons (4), and the inside of the control keyboard includes an optoelectronic control (7), a radar control (8) and a quick control (9).

3. The multifunctional small boat integrated control keyboard according to claim 2, characterized in that: A trackball (10) is arranged on one side of the quick control (9), a direction navigation display (11) is arranged above the trackball (10), an optoelectronic display (12) is arranged on one side of the navigation display (11), and control buttons (13) are arranged below the navigation display (11) and the optoelectronic display (12).

4. The multifunctional small boat integrated control keyboard according to claim 1, wherein: An optoelectronic power supply (14) is fixedly connected to the outside of one side of the control box (1), and an RS422 connection port (15), a USB connection port (16) and a DC24V connection port (17) are respectively arranged below the optoelectronic power supply (14).

5. The multifunctional small boat integrated control keyboard according to claim 4, characterized in that: A navigation power supply (18) is arranged on one side of the optoelectronic power supply (14), and the navigation power supply (18) is used to supply power to the navigation equipment.

6. The multifunctional small boat integrated control keyboard according to claim 5, characterized in that: A debugging port (19) is arranged on one side of the optoelectronic power supply (14), and the debugging port (19) is used to connect the power supply of the whole control box (1).

7. The multifunctional small boat integrated control keyboard according to claim 6, characterized in that: An installation plate (20) is arranged around the outside of one side of the control box (1), and installation holes (21) are opened in the inside of the installation plate (20).