Remote controller handle control system
By designing a remote control handle control system, the free configuration of the signal sequence of the remote control handle is achieved by using dial switches and multiple valves, the problem of many models and high costs in the existing technology is solved, and flexible control and wide applicability of the arm frame is achieved.
Patent Information
- Application Number
- CN202421809934.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-07-29
AI Technical Summary
Due to different customer operating habits, the existing concrete pump truck remote controls have too many product models, high costs and inconvenient for product after-sales uniformity, which limits the consistency of the product and cost-reducing ability.
A remote control handle control system is designed, including a remote control, a dial switch and a multi-way valve. By changing the position of the dial switch corresponding to the internal handle of the remote control, changing the signal sequence of the remote control handle, the free configuration of the arm frame is achieved.
The remote control enables free configuration of the arm frame control, which is simple and convenient to configure, and is not limited by the number of action arm frames, and is highly applicable, and can meet the needs of various arm frame equipment.
Smart Images

Figure CN223022567U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of concrete pump truck equipment control, and particularly discloses a remote control handle control system. Background Art
[0002] Concrete pump truck equipment is widely used in concrete pouring construction. Its main principle is to utilize the power of the vehicle chassis, remote control, and hydraulic system transmission. The movement of the pump truck boom is controlled by a remote control, and concrete is pumped from the hopper of the equipment along the boom conveying pipeline to the target area.
[0003] For the flexibility of placing concrete, generally, the pump truck boom is composed of multiple sections of booms and a slewing platform. Each section of the boom operates independently and moves independently. In fact, due to different customer operation habits, the control habits and requirements of each section of the boom corresponding to the operation lever of the pump truck remote control are also different for operators.
[0004] To solve this problem, the current existing solution is that the main engine factory customizes a special remote control according to different customer requirements before the equipment leaves the factory. This leads to too many product models, high costs, and inconvenience in product after-sales unification, and there are great limitations in terms of product consistency and cost reduction.
[0005] Therefore, the above-mentioned defects existing in the existing remote control are technical problems that need to be solved urgently at present. Content of the Utility Model
[0006] The utility model provides a remote control handle control system, aiming to solve at least one of the above defects.
[0007] The utility model relates to a remote control handle control system, which includes a remote control, a DIP switch, and a multi-way valve. The remote control is respectively connected to the DIP switch and the multi-way valve. The DIP switch corresponds to the handle. The remote control is used to receive the control instructions sent by the DIP switch and control the multi-way valve to act.
[0008] Further, the DIP switch includes a first DIP switch group and a second DIP switch group. The remote control is respectively connected to the first DIP switch group and the second DIP switch group.
[0009] Further, the first DIP switch group includes a first switch, a second switch, a third switch, a fourth switch, a fifth switch, a sixth switch, and a seventh switch. The first pin of the remote controller is connected to one end of the first switch, the second pin of the remote controller is connected to one end of the second switch, the third pin of the remote controller is connected to the third switch, the fourth pin of the remote controller is connected to the fourth switch, the fifth pin of the remote controller is connected to the fifth switch, the sixth pin of the remote controller is connected to the sixth switch, the seventh pin of the remote controller is connected to the seventh switch, and the fifteenth pin of the remote controller is respectively connected to the other ends of the first switch, the second switch, the third switch, the fourth switch, the fifth switch, the sixth switch, and the seventh switch.
[0010] Further, the second DIP switch group includes an eighth switch, a ninth switch, a tenth switch, an eleventh switch, a twelfth switch, a thirteenth switch, and a fourteenth switch. The eighth pin of the remote controller is connected to one end of the eighth switch, the ninth pin of the remote controller is connected to one end of the ninth switch, the tenth pin of the remote controller is connected to the tenth switch, the eleventh pin of the remote controller is connected to the eleventh switch, the twelfth pin of the remote controller is connected to the twelfth switch, the thirteenth pin of the remote controller is connected to the thirteenth switch, and the fifteenth pin of the remote controller is respectively connected to the other ends of the eighth switch, the ninth switch, the tenth switch, the eleventh switch, the twelfth switch, the thirteenth switch, and the fourteenth switch.
[0011] Further, the multi-way valve includes a first boom, a second boom, a third boom, a fourth boom, and a fifth boom. The remote controller is respectively connected to the first boom, the second boom, the third boom, the fourth boom, and the fifth boom.
[0012] Further, the sixteenth pin of the remote controller is connected to the first pin of the first boom, the nineteenth pin of the remote controller is connected to the second pin of the first boom, and the twentieth pin of the remote controller is connected to the third pin of the first boom.
[0013] Further, the sixteenth pin of the remote controller is connected to the first pin of the second boom, the twenty-first pin of the remote controller is connected to the second pin of the second boom, and the twenty-second pin of the remote controller is connected to the third pin of the second boom.
[0014] Further, the sixteenth pin of the remote controller is connected to the first pin of the third boom, the twenty-third pin of the remote controller is connected to the second pin of the third boom, and the twenty-fourth pin of the remote controller is connected to the third pin of the third boom.
[0015] Further, the sixteenth pin of the remote controller is connected to the first pin of the four-section arm, the twenty-fifth pin of the remote controller is connected to the second pin of the four-section arm, and the twenty-sixth pin of the remote controller is connected to the third pin of the four-section arm.
[0016] Further, the sixteenth pin of the remote controller is connected to the first pin of the five-section arm, the twenty-seventh pin of the remote controller is connected to the second pin of the five-section arm, and the twenty-eighth pin of the remote controller is connected to the third pin of the five-section arm.
[0017] The beneficial effects achieved by the present utility model are as follows:
[0018] The present utility model provides a remote controller handle control system, which includes a remote controller, a DIP switch, and a multi-way valve. The remote controller is respectively connected to the DIP switch and the multi-way valve. The multi-way valve is connected to the boom. The DIP switch corresponds to the handle. The remote controller is used to receive the control instructions sent by the DIP switch and control the multi-way valve to act, so as to realize the corresponding boom control. The remote controller handle control system provided by the present utility model can change the signal sequence of the remote controller handle by changing the position of the DIP switch corresponding to the handle inside the remote controller, so as to realize the free configuration of the remote controller for boom control. The configuration is simple and convenient, and the handle control sequence can be freely configured at will; it is not limited by the number of action booms, has strong applicability, and can meet the needs of various boom-type equipment. Description of the Drawings
[0019] Figure 1 It is a functional block diagram of the remote controller handle control system of the present utility model;
[0020] Figure 2 It is a circuit diagram of the remote controller handle control system of the present utility model.
[0021] Explanation of the Reference Numerals in the Drawings:
[0022] 10. Remote controller; 20. DIP switch; 30. Multi-way valve; 21. First DIP switch group; 22. Second DIP switch group; 31. One-section arm; 32. Two-section arm; 33. Three-section arm; 34. Four-section arm; 35. Five-section arm. Detailed Embodiment
[0023] In order to better understand the above technical solution, the above technical solution will be described in detail below in conjunction with the drawings in the specification and specific embodiments.
[0024] As Figure 1 and Figure 2As shown in the figure, the first embodiment of the present utility model proposes a remote control handle control system, which includes a remote control 10, a DIP switch 20, and a multi-way valve 30. The remote control 10 is respectively connected to the DIP switch 20 and the multi-way valve 30. The multi-way valve is connected to the boom. The DIP switch 20 corresponds to the handle. The remote control 10 is used to receive the control instructions sent by the DIP switch 20 and control the multi-way valve 30 to act, so as to realize the corresponding boom control.
[0025] Further, please refer to Figure 1 and Figure 2 In the remote control handle control system proposed in this embodiment, the DIP switch 20 includes a first DIP switch group 21 (ST1) and a second DIP switch group 22 (ST2). The remote control 10 is respectively connected to the first DIP switch group 21 (ST1) and the second DIP switch group 22 (ST2). Specifically, the first DIP switch group 21 includes a first switch SA1, a second switch SA2, a third switch SA3, a fourth switch SA4, a fifth switch SA5, a sixth switch SA6, and a seventh switch SA7. The first pin of the remote control 10 is connected to one end of the first switch, the second pin of the remote control 10 is connected to one end of the second switch, the third pin of the remote control 10 is connected to the third switch, the fourth pin of the remote control 10 is connected to the fourth switch, the fifth pin of the remote control 10 is connected to the fifth switch, the sixth pin of the remote control 10 is connected to the sixth switch, the seventh pin of the remote control 10 is connected to the seventh switch, and the fifteenth pin of the remote control 10 is respectively connected to the other ends of the first switch, the second switch, the third switch, the fourth switch, the fifth switch, the sixth switch, and the seventh switch. The second DIP switch group 22 includes an eighth switch SA11, a ninth switch SA12, a tenth switch SA13, an eleventh switch SA14, a twelfth switch SA15, a thirteenth switch SA16, and a fourteenth switch SA17. The eighth pin of the remote control 10 is connected to one end of the eighth switch, the ninth pin of the remote control 10 is connected to one end of the ninth switch, the tenth pin of the remote control 10 is connected to the tenth switch, the eleventh pin of the remote control 10 is connected to the eleventh switch, the twelfth pin of the remote control 10 is connected to the twelfth switch, the thirteenth pin of the remote control 10 is connected to the thirteenth switch, and the fifteenth pin of the remote control 10 is respectively connected to the other ends of the eighth switch, the ninth switch, the tenth switch, the eleventh switch, the twelfth switch, the thirteenth switch, and the fourteenth switch. In the remote control handle control system proposed in this embodiment, by changing the position of the DIP switch corresponding to the handle inside the remote control, the signal sequence of the remote control handle is changed, so as to realize the free configuration of the control of the boom by the remote control. The configuration is simple and convenient, and the control sequence of the handle can be freely configured at will.
[0026] Preferably, refer toFigure 1 and Figure 2 , in the remote control handle control system proposed in this embodiment, the multi-way valve 30 includes a first boom 31, a second boom 32, a third boom 33, a fourth boom 34, and a fifth boom 35. The remote controller 10 is respectively connected to the first boom 31, the second boom 32, the third boom 33, the fourth boom 34, and the fifth boom 35. Specifically, the sixteenth pin of the remote controller 10 is connected to the first pin of the first boom 31, the nineteenth pin of the remote controller 10 is connected to the second pin of the first boom 31, and the twentieth pin of the remote controller 10 is connected to the third pin of the first boom 31. The sixteenth pin of the remote controller 10 is connected to the first pin of the second boom 32, the twenty-first pin of the remote controller 10 is connected to the second pin of the second boom 32, and the twenty-second pin of the remote controller 10 is connected to the third pin of the second boom 32. The sixteenth pin of the remote controller 10 is connected to the first pin of the third boom 33, the twenty-third pin of the remote controller 10 is connected to the second pin of the third boom 33, and the twenty-fourth pin of the remote controller 10 is connected to the third pin of the third boom 33. The sixteenth pin of the remote controller 10 is connected to the first pin of the fourth boom 34, the twenty-fifth pin of the remote controller 10 is connected to the second pin of the fourth boom 34, and the twenty-sixth pin of the remote controller 10 is connected to the third pin of the fourth boom 34. The sixteenth pin of the remote controller 10 is connected to the first pin of the fifth boom 35, the twenty-seventh pin of the remote controller 10 is connected to the second pin of the fifth boom 35, and the twenty-eighth pin of the remote controller 10 is connected to the third pin of the fifth boom 35. The remote control handle control system provided in this embodiment is not limited by the number of action booms, has strong applicability, and can meet the requirements of various boom-type devices.
[0027] As Figure 1 and Figure 2 shown, the working principle of the remote control handle control system provided in this embodiment is as follows:
[0028] By adding a DIP switch 20 inside the remote controller 10, each group of handles corresponds to a group of DIP switches 20. By changing the position where the DIP switch 20 is turned on, the signal sequence of the corresponding handle is changed, and finally the change of the device control action is realized. For example, if the remote controller is equipped with 7 groups of linear handles and it is necessary to swap the control of the first group of handles and the control signal of the seventh group of handles, turn the 7th switch of the DIP switch corresponding to the first group of handles to the 'ON' state, and the other bits are 'OFF'. Turn the 1st switch of the DIP switch corresponding to the seventh group of handles to the 'ON' state, and the other bits are 'OFF'. In this way, the signal exchange between the first group of handles and the 7th group of handles is realized. As shown in the following figure, in the default state, the state of the DIP switch corresponding to the first group of handles is that the first bit is in the on state, and the states of all the handles are sorted in sequence. The remote controller 10 receives the control instructions sent by the DIP switch 20 and controls the multi-way valve 30 to act, thereby realizing the corresponding boom control.
[0029] The remote control handle control system provided by this embodiment, compared with the prior art, adopts a remote control, a DIP switch and a multi-way valve. The remote control is respectively connected to the DIP switch and the multi-way valve. The multi-way valve is connected to the boom. The DIP switch corresponds to the handle. The remote control is used to receive the control instructions sent by the DIP switch and control the action of the multi-way valve, so as to realize the corresponding boom control. The remote control handle control system provided by this embodiment can change the signal sequence of the remote control handle by changing the position of the DIP switch corresponding to the handle inside the remote control, so as to realize the free configuration of the boom control by the remote control. The configuration is simple and convenient, and the handle control sequence can be freely configured at will; it is not limited by the number of operating booms, has strong applicability, and can meet the needs of various boom-type equipment.
[0030] Although the preferred embodiments of the present invention have been described, those skilled in the art can make additional changes and modifications once they know the basic creative concept. Therefore, the appended claims are intended to be construed as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention. Obviously, those skilled in the art can make various changes and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention is also intended to include these modifications and variations.
Claims
1. A remote control handle control system, characterized in that: The invention comprises a remote controller (10), a dial switch (20) and a multi-way valve (30), wherein the remote controller (10) is connected to the dial switch (20) and the multi-way valve (30) respectively, the dial switch (20) corresponds to a handle, and the remote controller (10) is used to receive a control instruction issued by the dial switch (20) to control the operation of the multi-way valve (30).
2. The remote controller control system according to claim 1, characterized in that: The dip switch (20) comprises a first dip switch group (21) and a second dip switch group (22), and the remote controller (10) is connected to the first dip switch group (21) and the second dip switch group (22) respectively.
3. The remote controller control system according to claim 2, characterized in that: The first dip switch group (21) comprises a first switch, a second switch, a third switch, a fourth switch, a fifth switch, a sixth switch and a seventh switch; the first pin of the remote controller (10) is connected to one end of the first switch, the second pin of the remote controller (10) is connected to one end of the second switch, the third pin of the remote controller (10) is connected to the third switch, the fourth pin of the remote controller (10) is connected to the fourth switch, the fifth pin of the remote controller (10) is connected to the fifth switch, the sixth pin of the remote controller (10) is connected to the sixth switch, the seventh pin of the remote controller (10) is connected to the seventh switch, and the fifteenth pin of the remote controller (10) is respectively connected to the other end of the first switch, the other end of the second switch, the other end of the third switch, the other end of the fourth switch, the other end of the fifth switch, the other end of the sixth switch and the other end of the seventh switch.
4. The remote controller control system according to claim 2, characterized in that: The second DIP switch group (22) comprises an eighth switch, a ninth switch, a tenth switch, an eleventh switch, a twelfth switch, a thirteenth switch and a fourteenth switch, the eighth pin of the remote controller (10) is connected to one end of the eighth switch, the ninth pin of the remote controller (10) is connected to one end of the ninth switch, the tenth pin of the remote controller (10) is connected to the tenth switch, the eleventh pin of the remote controller (10) is connected to the eleventh switch, the twelfth pin of the remote controller (10) is connected to the twelfth switch, the thirteenth pin of the remote controller (10) is connected to the thirteenth switch, and the fifteenth pin of the remote controller (10) is respectively connected to the other end of the eighth switch, the other end of the ninth switch, the other end of the tenth switch, the other end of the eleventh switch, the other end of the twelfth switch, the other end of the thirteenth switch and the other end of the fourteenth switch.
5. The remote controller control system according to claim 1, characterized in that: The multi-way valve (30) comprises a first-section arm (31), a second-section arm (32), a third-section arm (33), a fourth-section arm (34) and a fifth-section arm (35), and the remote controller (10) is respectively connected to the first-section arm (31), the second-section arm (32), the third-section arm (33), the fourth-section arm (34) and the fifth-section arm (35).
6. The remote controller control system according to claim 5, characterized in that: The sixteenth pin of the remote control (10) is connected to the first pin of the arm (31), the nineteenth pin of the remote control (10) is connected to the second pin of the arm (31), and the twentieth pin of the remote control (10) is connected to the third pin of the arm (31).
7. The remote controller control system according to claim 5, characterized in that: The sixteenth pin of the remote control (10) is connected to the first pin of the second-section arm (32), the twenty-first pin of the remote control (10) is connected to the second pin of the second-section arm (32), and the twenty-second pin of the remote control (10) is connected to the third pin of the second-section arm (32).
8. The remote controller control system according to claim 5, characterized in that: The sixteenth pin of the remote control (10) is connected to the first pin of the three-section arm (33), the twenty-third pin of the remote control (10) is connected to the second pin of the three-section arm (33), and the twenty-fourth pin of the remote control (10) is connected to the third pin of the three-section arm (33).
9. The remote controller control system according to claim 5, characterized in that: The sixteenth pin of the remote control (10) is connected to the first pin of the four-section arm (34), the twenty-fifth pin of the remote control (10) is connected to the second pin of the four-section arm (34), and the twenty-sixth pin of the remote control (10) is connected to the third pin of the four-section arm (34).
10. The remote controller control system according to claim 5, characterized in that: The sixteenth pin of the remote control (10) is connected to the first pin of the five-section arm (35), the twenty-seventh pin of the remote control (10) is connected to the second pin of the five-section arm (35), and the twenty-eighth pin of the remote control (10) is connected to the third pin of the five-section arm (35).