Remote control transmitter device for underground coal mine manipulation
Patent Information
- Application Number
- CN202521127544.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-06-04
AI Technical Summary
[0002]遥控器是一种无线发射装置,通过现代的数字编码技术,将按键信息进行编码,通过红外线二极管发射光波,光波经接收机的红外线接收器将收到的红外信号转变成电信号,进处理器进行解码,解调出相应的指令来达到控制机顶盒等设备完成所需的操作要求,因此遥控发射器是一种重要的操纵装置,在现有的遥控发射器中,还没有一种用于煤矿井下操纵的遥控发射器装置,还都是直接在遥控器上安装操纵手柄,受到煤矿井下操纵条件的限制,不能保证对操纵手柄进行正确使用,从而影响了遥控发射器的使用效果正确性能,
[0013]以上两个技术方案的技术效果在于:实现了其它部件的集成安装,扩展了本实用新型的技术效果。
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Figure CN224789541U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a remote control transmitter device, and more particularly to a remote control transmitter device for operation in underground coal mines. Background Technology
[0002] A remote control is a wireless transmitting device that uses modern digital encoding technology to encode button information and emits light waves via infrared diodes. The received infrared signal is converted into an electrical signal by the receiver, which is then decoded and demodulated by a processor to extract the corresponding instructions to control devices such as set-top boxes to perform the required operations. Therefore, a remote control transmitter is an important control device. However, currently, there are no remote control transmitters specifically designed for operation in coal mines. Most transmitters simply have a control handle mounted directly on the remote control. Due to the limitations of operating conditions in coal mines, the correct use of the control handle cannot be guaranteed, thus affecting the effectiveness and performance of the remote control transmitter. This utility model, by enabling the installation position of the operating component to be in a hand touch recognition state, effectively explores and studies the technical problem of directly installing the control handle on the remote control from a technical perspective. Summary of the Invention
[0003] The subject of this utility model is a remote control transmitter device for operation in underground coal mines.
[0004] In order to overcome the above-mentioned technical shortcomings, the purpose of this utility model is to provide a remote control transmitter device for operation in underground coal mines, thereby improving the accuracy and effectiveness of the remote control transmitter.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a remote control transmitter device body comprising a housing, a master button switch and a control handle, and a bridge rod assembly disposed between the housing and the master button switch and the control handle.
[0006] By designing a remote control transmitter unit and a bridge rod assembly, the remote control transmitter unit enables remote control of mining machinery located in the coal mine. The bridge rod assembly enables the marking of the position of the main button switch and the control handle, allowing the installation position of the operating components to be recognized by hand touch. This solves the technical problem of directly installing the control handle on the remote control, thus improving the accuracy and effectiveness of the remote control transmitter.
[0007] This utility model designs a way to connect the main body of the remote control transmitter device and the bridge rod assembly in a manner that allows the installation position of the operating components to be in a hand touch recognition state.
[0008] This utility model is designed to connect the bridge pole assembly to the remote control transmitter device body in a manner that indicates the pole installation status.
[0009] This utility model designs a remote control transmitter device, which also includes a support plate, a processor module, a display screen, a data transmission module, a transmitting antenna, and a battery.
[0010] The technical effects of the above four technical solutions are: highlighting the technical feature of enabling the installation position of the operating component to be in a hand touch recognition state, and introducing its application in the technical field of remote control transmitter devices for operation in coal mines.
[0011] This utility model is designed to include a first accessory device, which is disposed between the bridge pole assembly and the remote control transmitter device body. The first accessory device is configured as a push-button switch.
[0012] This utility model is designed to include a second accessory device, which is disposed between the first accessory device and the remote control transmitter device body. The second accessory device is configured as an emergency stop button.
[0013] The technical effect of the above two technical solutions is that they enable the integrated installation of other components and expand the technical effect of this utility model.
[0014] This utility model is designed with a bridge rod assembly, a support plate, a transmitting antenna, a main button switch, a sub-button switch, and an emergency stop button respectively arranged on the housing. A control handle is arranged between the bridge rod assembly and the housing. A processor module, a data transmission module, and a battery are respectively arranged on the support plate. A display screen, a data transmission module, a main button switch, and a sub-button switch are respectively arranged on the processor module. An emergency stop button is arranged between the processor module and the display screen, data transmission module, main button switch, and sub-button switches. A transmitting antenna is arranged on the data transmission module. A battery is arranged on the main button switch. A control handle is arranged on the sub-button switches.
[0015] The technical effect of the above technical solution is that the basic technical solution of this utility model is composed of the housing, the bridge rod assembly, the support plate, the processor module, the display screen, the data transmission module, the transmitting antenna, the battery, the main button switch, the operating handle, the sub-button switches and the emergency stop button, which solves the technical problem of this utility model.
[0016] This utility model designs a bridge rod assembly comprising rod I and rod II, wherein the vertical end faces of rod I and rod II are respectively connected to the housing, the longitudinal portions of rod I and rod II on the longitudinal portion of the housing are respectively distributed corresponding to the operating handle, and the transverse portions of rod I and rod II on the transverse portion inside the housing are respectively distributed corresponding to the main push-button switch.
[0017] The present invention is designed such that rod I and rod II are respectively configured as U-shaped rods and rod I and rod II are arranged in an alternating manner.
[0018] The technical effect of the above two solutions is that they enable the installation positions of the main push-button switch and the control handle to be marked by the empty rod.
[0019] This utility model design includes a rectangular box-shaped housing. The left and right longitudinal sections and the inner horizontal section of the upper end face of the housing are respectively connected to the bridge rod assembly. The left and right longitudinal sections of the upper end face of the housing are connected to the operating handle, and the inner horizontal section of the upper end face of the housing is connected to the main push-button switch. The middle of the rear inner wall of the housing is connected to the support plate, and the middle of the upper end face of the housing is connected to the display screen. The right corner of the upper end face of the housing is connected to the emergency stop button, and the rear side edge of the housing is connected to the transmitting antenna. The left and right sides of the housing are connected to the individual push-button switches.
[0020] This utility model is designed such that the support plate is configured as an insulating sheet and the inner side of the support plate is configured to be connected to the housing, one side of the upper end face of the support plate is configured to be connected to the processor module and the other side of the upper end face of the support plate is configured to be connected to the battery, and the lower end face of the support plate is configured to be connected to the data transmission module.
[0021] The technical effect of the above two solutions is that they enable the installation and support to be provided by an internal insulating plate.
[0022] This utility model is designed such that the housing of the processor module, the housing of the data transmission module, and the housing of the battery are respectively connected to the support plate, and the housing of the display screen and the housing of the transmitting antenna are respectively embedded in the enclosure. The output interface of the processor module is respectively connected to the data transmission module and the display screen via an emergency stop button, and the input interface of the processor module is connected to the sub-button switch via an emergency stop button. The power interface of the processor module is connected to the main button switch via the emergency stop button, the battery interface is connected to the main button switch, and the output interface of the data transmission module is connected to the input interface of the transmitting antenna.
[0023] This utility model designs a main push-button switch as an automatically open button, with the housing of the main push-button switch being embedded in the housing, the button caps of the main push-button switch being distributed correspondingly to the bridge rod group, one of the interfaces of the main push-button switch being connected to the emergency stop button, and another interface of the main push-button switch being connected to the battery interface.
[0024] The technical effect of the above three technical solutions is that they enable the processing of operation signals with a self-contained power supply.
[0025] This utility model is designed such that the operating handle is set as an industrial electric control handle and the push-button switch is set as an normally open button. The base of the operating handle and the housing of the push-button switch are respectively set to be connected to the housing, and the handle of the operating handle is set to be distributed corresponding to the bridge rod group. The output interface of the operating handle is set to be connected to one of the interfaces of the push-button switch, and the other interface of the push-button switch is set to be connected to the processor module through the emergency stop button.
[0026] The technical effect of the above solution is that it enables the input of control signals under pre-controlled on / off states.
[0027] This utility model designs an emergency stop button that is configured as a normally closed button, with the housing of the emergency stop button connected to the housing. One interface of the emergency stop button is connected to the processor module, and the other interface of the emergency stop button is connected to the display screen, the data transmission module, the main button switch, and the sub-button switches.
[0028] The technical effect of the above solution is that it enables disconnection protection of the processor module.
[0029] This utility model is designed such that the housing, support plate, processor module, display screen, data transmission module, transmitting antenna, battery, main button switch, operating handle, and bridge rod assembly are arranged in a contact recognition operation manner, and the housing, support plate, processor module, display screen, data transmission module, transmitting antenna, battery, main button switch, operating handle, and bridge rod assembly are arranged in a branch circuit on / off control manner, and the housing, support plate, processor module, display screen, data transmission module, transmitting antenna, battery, main button switch, operating handle, and bridge rod assembly are arranged in a main circuit on / off control manner.
[0030] This utility model is designed with a bridge rod assembly, a control handle and a push-button switch as a set of control components, and the two sets of control components are arranged between the housing and the processor module.
[0031] In this technical solution, the bridge pole assembly is the basic component and an essential technical feature of this utility model. The housing, support plate, processor module, display screen, data transmission module, transmitting antenna, battery, main button switch, operating handle, sub-button switches, and emergency stop button are functional components that enable other technical effects of this utility model. The design of these technical features of pole I and pole II complies with the Patent Law and its implementing regulations.
[0032] In this technical solution, the hand touch recognition state of the operating component is achieved by the bridge rod assembly.
[0033] In this technical solution, the remote transmitter device body and the bridge rod assembly, which are installed in a hand touch recognition state, are important technical features. In the technical field of remote transmitter devices for operation in coal mines, this solution is novel, inventive and practical. The terms used in this technical solution can be explained and understood using patent documents in this technical field. Attached Figure Description
[0034] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0035] Figure 1 This is a schematic diagram of one of the first embodiments of the present utility model. Figure 2 for Figure 1 Top view, Box shell-1, bridge rod assembly-2, support plate-3, processor module-4, display screen-5, data transmission module-6, transmitting antenna-7, battery-8, main button switch-9, operating handle-91, sub-button switch-92, emergency stop button-93, rod I-21, rod II-22. Detailed Implementation
[0036] According to the examination guidelines, terms such as “having,” “comprising,” and “including” used in this invention should be understood as not dispensing the presence or addition of one or more other elements or combinations thereof.
[0037] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0038] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0039] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other. In addition, unless otherwise specified, the equipment and materials used in the following embodiments are commercially available. Unless otherwise specified, please make improvements according to conventional methods in the field.
[0040] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0041] Figure 1 This is one of the first embodiments of the present invention. The embodiment, described in detail with reference to the accompanying drawings, includes a housing 1, a bridge rod assembly 2, a support plate 3, a processor module 4, a display screen 5, a data transmission module 6, a transmitting antenna 7, a battery 8, a main button switch 9, a control handle 91, a sub-button switch 92, and an emergency stop button 93. The housing 1 is provided with the bridge rod assembly 2, support plate 3, transmitting antenna 7, main button switch 9, sub-button switch 92, and emergency stop button 93. The control handle 91 is located between the bridge rod assembly 2 and the housing 1. The processor module 4, data transmission module 6, and battery 8 are respectively located on the support plate 3. The processor module 4 is provided with the display screen 5, data transmission module 6, main button switch 9, and sub-button switch 92. The emergency stop button 93 is located between the processor module 4 and the display screen 5, data transmission module 6, main button switch 9, and sub-button switch 92. The transmitting antenna 7 is located on the data transmission module 6. The battery 8 is located on the main button switch 9. The control handle 91 is located on the sub-button switch 92.
[0042] The second embodiment of the present invention will be described in detail with reference to the accompanying drawings. In this embodiment, the housing 1 is configured as a rectangular box, and the left and right longitudinal portions and the inner transverse portion of the upper end face of the housing 1 are respectively connected to the bridge rod assembly 2. The left and right longitudinal portions of the upper end face of the housing 1 are connected to the operating handle 91, and the inner transverse portion of the upper end face of the housing 1 is connected to the main button switch 9. The middle of the rear inner wall of the housing 1 is connected to the support plate 3, and the middle of the upper end face of the housing 1 is connected to the display screen 5. The right corner of the upper end face of the housing 1 is connected to the emergency stop button 93, and the rear side edge of the housing 1 is connected to the transmitting antenna 7. The left and right sides of the housing 1 are connected to the individual button switches 92.
[0043] The housing 1 forms a support connection point for the bridge pole assembly 2, support plate 3, display screen 5, transmitting antenna 7, main button switch 9, operating handle 91, sub-button switch 92, and emergency stop button 93. The housing 1 realizes the connection with the bridge pole assembly 2, the support plate 3, the display screen 5, the transmitting antenna 7, the main button switch 9, the operating handle 91, the sub-button switch 92, and the emergency stop button 93. Its technical purpose is to serve as a support carrier for the bridge pole assembly 2, support plate 3, display screen 5, transmitting antenna 7, main button switch 9, operating handle 91, sub-button switch 92, and emergency stop button 93.
[0044] In this embodiment, the bridge rod assembly 2 is configured to include rod part I 21 and rod part II 22, and the vertical end face of rod part I 21 and the vertical end face of rod part II 22 are respectively configured to be connected to the housing 1. The vertical parts of rod part I 21 and rod part II 22 on the vertical part of the housing 1 are respectively configured to be distributed corresponding to the operating handle 91, and the horizontal parts of rod part I 21 and rod part II 22 on the horizontal part inside the housing 1 are respectively configured to be distributed corresponding to the main push button switch 9.
[0045] The bridge rod assembly 2 forms a support connection point for the housing 1, the main button switch 9, and the operating handle 91. The rod part I 21 and the rod part II 22 realize the connection with the housing 1, the main button switch 9, and the operating handle 91. Its technical purpose is to serve as a component for calibrating the position of the main button switch 9 and the operating handle 91.
[0046] In this embodiment, rod I 21 and rod II 22 are respectively configured as U-shaped rods and are arranged in an alternating pattern.
[0047] Its technical purpose is to provide support for the operator's hands.
[0048] In this embodiment, the support plate 3 is configured as an insulating sheet and the inner side of the support plate 3 is configured to be connected to the housing 1. One side of the upper end face of the support plate 3 is configured to be connected to the processor module 4 and the other side of the upper end face of the support plate 3 is configured to be connected to the battery 8. The lower end face of the support plate 3 is configured to be connected to the data transmission module 6.
[0049] The support plate 3 forms a support connection point for the housing 1, processor module 4, data transmission module 6 and battery 8. The support plate 3 realizes the connection with the housing 1, the processor module 4, the data transmission module 6 and the battery 8. Its technical purpose is to serve as a support carrier for the processor module 4, the data transmission module 6 and the battery 8.
[0050] In this embodiment, the housings of the processor module 4, the data transmission module 6, and the battery 8 are respectively connected to the support plate 3, and the housings of the display screen 5 and the transmitting antenna 7 are respectively embeddedly connected to the casing 1. The output interface of the processor module 4 is respectively connected to the data transmission module 6 and the display screen 5 via the emergency stop button 93, and the input interface of the processor module 4 is connected to the sub-button switch 92 via the emergency stop button 93. The power interface of the processor module 4 is connected to the main button switch 9 via the emergency stop button 93. The interface of the battery 8 is connected to the main button switch 9, and the output interface of the data transmission module 6 is connected to the input interface of the transmitting antenna 7.
[0051] The processor module 4, display screen 5, data transmission module 6, transmitting antenna 7, and battery 8 form a support connection point for the housing 1, support plate 3, main button switch 9, sub-button switches 92, and emergency stop button 93. The display screen 5 and transmitting antenna 7 are connected to the housing 1, the processor module 4, data transmission module 6, and battery 8 are connected to the support plate 3, the battery 8 is connected to the main button switch 9, the processor module 4 is connected to the sub-button switches 92, and the emergency stop button 93. Its technical purpose is to serve as a component for processing operating signals.
[0052] In this embodiment, the main push button switch 9 is configured as an automatically open button and the housing of the main push button switch 9 is configured to be embeddedly connected to the housing 1. The button caps of the main push button switch 9 are configured to be distributed correspondingly to the bridge rod group 2. One of the interfaces of the main push button switch 9 is configured to be connected to the emergency stop button 93. Another interface of the main push button switch 9 is configured to be connected to the interface of the battery 8.
[0053] The main push-button switch 9 forms a support connection point for the housing 1, the bridge rod assembly 2, the battery 8, and the emergency stop button 93. The main push-button switch 9 realizes the connection with the housing 1, the bridge rod assembly 2, the battery 8, and the emergency stop button 93. Its technical purpose is to be used as a component to control the working state of the battery 8.
[0054] In this embodiment, the operating handle 91 is configured as an industrial electronic control handle and the push-button switch 92 is configured as an normally open button. The base of the operating handle 91 and the housing of the push-button switch 92 are respectively configured to be connected to the housing 1, and the handle of the operating handle 91 is configured to be distributed corresponding to the bridge rod group 2. The output interface of the operating handle 91 is configured to be connected to one of the interfaces of the push-button switch 92, and the other interface of the push-button switch 92 is configured to be connected to the processor module 4 through the emergency stop button 93.
[0055] The control handle 91 and the push-button switch 92 form a support connection point for the housing 1, the bridge rod group 2, the processor module 4, and the emergency stop button 93. The control handle 91 and the push-button switch 92 realize the connection with the housing 1, the connection with the bridge rod group 2, the connection with the processor module 4, and the connection with the emergency stop button 93. Its technical purpose is to serve as a component for inputting control signals to the processor module 4.
[0056] In this embodiment, the emergency stop button 93 is configured as a normally closed button and the housing of the emergency stop button 93 is configured to be connected to the housing 1. One of the interfaces of the emergency stop button 93 is configured to be connected to the processor module 4 and the other interface of the emergency stop button 93 is configured to be connected to the display screen 5, the data transmission module 6, the main button switch 9 and the sub-button switch 92 respectively.
[0057] The emergency stop button 93 forms a support connection point for the housing 1, processor module 4, display screen 5, data transmission module 6, main button switch 9, and sub-button switches 92. The emergency stop button 93 realizes the connection with the housing 1, the processor module 4, the display screen 5, the data transmission module 6, the main button switch 9, and the sub-button switches 92. Its technical purpose is to serve as a component for controlling the on / off state of the interface of the processor module 4.
[0058] In this embodiment, the housing 1, support plate 3, processor module 4, display screen 5, data transmission module 6, transmitting antenna 7, battery 8, main button switch 9, and operating handle 91 are arranged with the bridge rod group 2 in a contact recognition operation manner. The housing 1, support plate 3, processor module 4, display screen 5, data transmission module 6, transmitting antenna 7, battery 8, main button switch 9, operating handle 91, and bridge rod group 2 are arranged with the sub-button switches 92 in a branch circuit on / off control manner. The housing 1, support plate 3, processor module 4, display screen 5, data transmission module 6, transmitting antenna 7, battery 8, main button switch 9, operating handle 91, and bridge rod group 2 are arranged with the emergency stop button 93 in a main circuit on / off control manner. One bridge rod group 2, one operating handle 91, and one sub-button switch 92 are arranged to form a set of operating components. The two sets of operating components are arranged between the housing 1 and the processor module 4.
[0059] The usage method of this embodiment is as follows: When it is necessary to use a remote control transmitter to control the set-top box of a mining machine in a coal mine, the operator holds the housing 1 and places their hand on lever I 21 and lever II 22. When the operator feels that the horizontal parts of lever I 21 and lever II 22 are distributed along the lateral direction of the housing 1, the main button switch 9 is located between lever I 21 and lever II 22. Pressing the button cap of the main button switch 9 puts the main button switch 9 into the connected state, connecting the battery 8 and the processor module 4, and putting the processor module 4 into the working state. When the operator feels that the horizontal parts of lever I 21 and lever II 22 are distributed along the longitudinal direction of the housing 1, the operating handle 91 is located between lever I 21 and lever II 22. Pressing the button cap of the sub-button switch 92 corresponding to the operating handle 91 puts the sub-button switch 92 into the connected state, connecting the operating handle. When the control handle 91 is connected to the processor module 4, the operator holds the control handle 91 and operates it, generating a control signal. The control signal is transmitted to the processor module 4, which processes the control signal. The processed control signal is displayed on the display screen 5, and transmitted to the mining machine set-top box by the data transmission module 6 and the transmitting antenna 7, enabling remote control of the mining machine located in the coal mine. After completing the remote control of the mining machine located in the coal mine, the main button switch 9 and the sub-button switch 92 are turned off. If the working status of the mining machine in the coal mine becomes abnormal during the remote control process, the emergency stop button 93 is pressed, which disconnects the processor module 4 from the display screen 5, the data transmission module 6, the main button switch 9, and the sub-button switch 92.
[0060] In verifying this utility model, the inventor abandoned the existing technical feature of directly installing the control handle on the remote control. Instead, they first proposed a technical feature that positions the operating components in a hand-touch recognition state, resulting in the first unexpected technical effect: providing bridge support for the operator's hand and improving the effectiveness of operation signal input; the second unexpected technical effect: guiding the operator's hand placement and improving the efficiency of operation signal input; and the third unexpected technical effect: enabling the clamping of the main button switch 9 and the control handle 91 by lever I 21 and lever II 22, thus improving the safety of the main button switch 9 and the control handle 91. The fourth unexpected technical effect was achieved: the enclosure 1 and support plate 3 enabled the support and fixing strength and electrical insulation performance of the bridge rod assembly 2, processor module 4, display screen 5, data transmission module 6, transmitting antenna 7, battery 8, main button switch 9, operating handle 91, sub-button switches 92 and emergency stop button 93, thus improving the safety performance of the output operating signals of the operating handle 91. The sixth unexpected technical effect was achieved: the emergency stop button 93 enabled the control of the interface of the processor module 4, thus achieving safety protection for the processor module 4.
[0061] In the second embodiment of this utility model, the remote control transmitter device body and the bridge rod assembly 2 are interconnected in such a way that the installation position of the operating component is in a hand touch recognition state.
[0062] In this embodiment, the bridge pole group 2 is connected to the remote control transmitter device body in a manner that indicates the pole installation status.
[0063] In this embodiment, the remote control transmitter device is also configured to include a support plate 3, a processor module 4, a display screen 5, a data transmission module 6, a transmitting antenna 7, and a battery 8.
[0064] In this embodiment, a first accessory device is also included and is disposed between the bridge pole group 2 and the remote control transmitter device body. The first accessory device is configured as a push-button switch 92.
[0065] In this embodiment, a second accessory device is also included and is disposed between the first accessory device and the remote transmitter device body. The second accessory device is configured as an emergency stop button 93.
[0066] The second embodiment of this utility model is based on the first embodiment.
[0067] This utility model has the following features: 1. By designing the remote control transmitter device body and the bridge rod group 2, the remote control transmitter device body enables remote control of mining machines located in the coal mine. The bridge rod group 2 enables the marking of the position of the main button switch 9 and the control handle 91, and enables the installation position of the operating parts to be in a hand touch recognition state. This solves the technical problem of directly installing the control handle on the remote control, thus improving the accuracy of the remote control transmitter's use.
[0068] 2. By designing a housing 1, a main button switch 9, a control handle 91, a support plate 3, a processor module 4, a display screen 5, a data transmission module 6, a transmitting antenna 7, and a battery 8, remote signal control of mining machines located in coal mines is realized.
[0069] 3. Due to the design of the push-button switch 92, the on / off control between the control handle 91 and the processor module 4 is realized.
[0070] 4. Due to the design of the emergency stop button 93, the on / off control of the interface of processor module 4 is realized.
[0071] 5. Because the design limits the numerical range of the structural shape, the numerical range is a technical feature in the technical solution of this utility model, and is not a technical feature obtained by formula calculation or a limited number of experiments. The experiment shows that the technical feature of the numerical range has achieved very good technical effect.
[0072] 6. Due to the design of the technical features of this utility model, and the combined effect of the individual technical features and the combination of the features, experiments have shown that the performance indicators of this utility model are at least 1.7 times that of the existing performance indicators, and it has been evaluated that it has great market value.
[0073] Other technical features that connect the remote transmitter device body and the bridge rod assembly 2 to the operating component installation position in the hand touch recognition state are also embodiments of this utility model. Furthermore, the technical features of the above embodiments can be combined arbitrarily. In order to meet the requirements of the Patent Law, the Patent Implementation Regulations and the Examination Guidelines, all possible combinations of the technical features in the above embodiments will not be described.
[0074] Therefore, in the technical field of remote control transmitter devices for underground operation in coal mines, any technical content that includes a remote control transmitter device body with a housing 1, a main button switch 9 and an operating handle 91, and a bridge rod assembly 2 set between the housing 1 and the main button switch 9 and the operating handle 91, is within the protection scope of this utility model.
Claims
1. A remote control transmitter device for operation in underground coal mines, characterized in that: It comprises a remote transmitter device body having a casing (1), a main push-button switch (9) and a control handle (91), and a bridge lever group (2) arranged between the casing (1), the main push-button switch (9) and the control handle (91). The bridge lever group (2) is configured to include a first rod portion (21) and a second rod portion (22), wherein the vertical end face of the first rod portion (21) and the vertical end face of the second rod portion (22) are respectively configured to be connected to the casing (1); the longitudinal portion of the first rod portion (21) on the longitudinal part of the casing (1) and the longitudinal portion of the second rod portion (22) are respectively configured to be distributed corresponding to the control handle (91), and the transverse portion of the first rod portion (21) on the transverse part inside the casing (1) and the transverse portion of the second rod portion (22) are respectively configured to be distributed corresponding to the main push-button switch (9). The first rod portion (21) and the second rod portion (22) are respectively configured as C-shaped rod-shaped bodies, and the first rod portion (21) and the second rod portion (22) are configured to be distributed in spaced arrangement.
2. The remote control transmitter device for underground operation in coal mines according to claim 1, characterized in that: The remote transmitter device body and the bridge lever group (2) are connected to each other in a manner that enables the installation position of the operating component to be in a state recognizable by hand touch.
3. The remote control transmitter device for underground operation in coal mines according to claim 2, characterized in that: The bridge lever group (2) is connected to the remote transmitter device body in a manner that realizes identification of the rod installation state.
4. The remote control transmitter device for underground operation in coal mines according to claim 1, characterized in that: The remote transmitter device body is further configured to include a support plate (3), a processor module (4), a display screen (5), a data transmission module (6), a transmitting antenna (7) and a battery (8). Alternatively, a first accessory device is further included, the first accessory device is arranged between the bridge lever group (2) and the remote transmitter device body, and the first accessory device is configured as a branch push-button switch (92). Alternatively, a second accessory device is further included, the second accessory device is arranged between the first accessory device and the remote transmitter device body, and the second accessory device is configured as an emergency stop button (93).
5. The remote control transmitter device for underground operation in coal mines according to claim 4, characterized in that: The bridge lever group (2), the support plate (3), the transmitting antenna (7), the main push-button switch (9), the branch push-button switch (92) and the emergency stop button (93) are respectively arranged on the casing (1); the control handle (91) is arranged between the bridge lever group (2) and the casing (1), and the processor module (4), the data transmission module (6) and the battery (8) are respectively arranged on the support plate (3); the display screen (5), the data transmission module (6), the main push-button switch (9) and the branch push-button switch (92) are respectively arranged on the processor module (4), and the emergency stop button (93) is arranged between the processor module (4) and the display screen (5), the data transmission module (6), the main push-button switch (9) and the branch push-button switch (92); the transmitting antenna (7) is arranged on the data transmission module (6), the battery (8) is arranged on the main push-button switch (9), and the control handle (91) is arranged on the branch push-button switch (92).
6. The remote control transmitter device for underground operation in coal mines according to claim 5, characterized in that: The housing (1) is a rectangular box-shaped body. The left and right longitudinal parts and the inner horizontal part of the upper end face of the housing (1) are respectively connected to the bridge rod assembly (2). The left and right longitudinal parts of the upper end face of the housing (1) are connected to the operating handle (91). The inner horizontal part of the upper end face of the housing (1) is connected to the main push button switch (9). The middle of the rear inner wall of the housing (1) is connected to the support plate (3). The middle of the upper end face of the housing (1) is connected to the display screen (5). The right corner of the upper end face of the housing (1) is connected to the emergency stop button (93). The rear side edge of the housing (1) is connected to the transmitting antenna (7). The left and right sides of the housing (1) are connected to the individual push button switches (92). Alternatively, the support plate (3) can be configured as an insulating sheet, with its inner surface connected to the housing (1), one side of the upper end face of the support plate (3) connected to the processor module (4), and the other side of the upper end face of the support plate (3) connected to the battery (8), and the lower end face of the support plate (3) connected to the data transmission module (6). Alternatively, the housings of the processor module (4), the data transmission module (6), and the battery (8) are respectively connected to the support plate (3), and the housings of the display screen (5) and the transmitting antenna (7) are respectively embedded in the casing (1). The output interface of the processor module (4) is respectively connected to the data transmission module (6) and the display screen (5) via the emergency stop button (93), and the input interface of the processor module (4) is connected to the sub-button switch (92) via the emergency stop button (93). The power interface of the processor module (4) is connected to the main button switch (9) via the emergency stop button (93). The interface of the battery (8) is connected to the main button switch (9), and the output interface of the data transmission module (6) is connected to the input interface of the transmitting antenna (7). Alternatively, the main push-button switch (9) is configured as an normally open button, and the housing of the main push-button switch (9) is configured to be embedded in the housing (1). The button caps of the main push-button switch (9) are configured to be distributed correspondingly to the bridge rod assembly (2), and one of the interfaces of the main push-button switch (9) is configured to be connected to the emergency stop button (93). Another interface of the main push-button switch (9) is configured to be connected to the interface of the battery (8). Alternatively, the operating handle (91) is configured as an industrial electric control handle and the push-button switch (92) is configured as an open button. The base of the operating handle (91) and the housing of the push-button switch (92) are respectively configured to be connected to the housing (1), and the handle of the operating handle (91) is configured to be distributed corresponding to the bridge rod group (2). The output interface of the operating handle (91) is configured to be connected to one of the interfaces of the push-button switch (92), and the other interface of the push-button switch (92) is configured to be connected to the processor module (4) through the emergency stop button (93).
7. The remote control transmitter device for underground operation in coal mines according to claim 5, characterized in that: The emergency stop button (93) is configured as a normally closed button and the housing of the emergency stop button (93) is configured to be connected to the housing (1). One of the interfaces of the emergency stop button (93) is configured to be connected to the processor module (4) and the other interface of the emergency stop button (93) is configured to be connected to the display screen (5), the data transmission module (6), the main button switch (9) and the sub-button switch (92) respectively.
8. The remote control transmitter device for underground operation in coal mines according to any one of claims 1 to 7, characterized in that: The enclosure (1), support plate (3), processor module (4), display screen (5), data transmission module (6), transmitting antenna (7), battery (8), main button switch (9), and operating handle (91) are arranged with the bridge rod group (2) in a contact recognition operation manner. The enclosure (1), support plate (3), processor module (4), display screen (5), data transmission module (6), transmitting antenna (7), battery (8), main button switch (9), operating handle (91), and bridge rod group (2) are arranged with the sub-button switches (92) in a branch circuit on / off control manner. The enclosure (1), support plate (3), processor module (4), display screen (5), data transmission module (6), transmitting antenna (7), battery (8), main button switch (9), operating handle (91), and bridge rod group (2) are arranged with the emergency stop button (93) in a main circuit on / off control manner. Alternatively, a bridge rod assembly (2), an operating handle (91), and a push-button switch (92) are configured to form a set of operating components, with the two sets of operating components located between the housing (1) and the processor module (4).