CN215494931U - Non-contact explosion-proof operation module - Google Patents

Non-contact explosion-proof operation module Download PDF

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Publication number
CN215494931U
CN215494931U CN202122399152.1U CN202122399152U CN215494931U CN 215494931 U CN215494931 U CN 215494931U CN 202122399152 U CN202122399152 U CN 202122399152U CN 215494931 U CN215494931 U CN 215494931U
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space
main control
control board
passive node
gesture
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CN202122399152.1U
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曾建民
高云鹏
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Beijing Xiaohuo Technology Co ltd
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Beijing Xiaohuo Technology Co ltd
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Abstract

The utility model discloses a non-contact type explosion-proof operation module which comprises a gesture intelligent recognition component and a space intelligent recognition main control board, wherein the gesture intelligent recognition component is connected with the space intelligent recognition main control board through a lead, and the surface of the space intelligent recognition main control board is sequentially provided with a J8 passive node, a J7 passive node, a J6 passive node, a J5 passive node, a J1 passive node, a J2 passive node, a J3 passive node and a J4 passive node from top to bottom and from left to right. This explosion-proof operation module of non-contact, the long-range discernment gesture of space discernment sensor sends corresponding pulse signal for space intelligent recognition main control board according to the gesture action, space intelligent recognition main control board makes corresponding passive node action according to preset program to reach the purpose of separating empty controlgear operation, thereby the people of being convenient for more use controlgear through this operation module, make corresponding operation with gesture controlgear promptly when observing equipment motion state, thereby be convenient for in time adjust the operating condition of equipment.

Description

Non-contact explosion-proof operation module
Technical Field
The utility model relates to the technical field of operation modules, in particular to a non-contact explosion-proof operation module.
Background
The explosion-proof operation module generally exists in the form of an explosion-proof control box or an explosion-proof operation column, and a control button and a touch screen in the explosion-proof control box or the explosion-proof operation column are operation modules, so that the explosion-proof operation module has the characteristics of high safety coefficient, strong operation function and stable performance.
The existing explosion-proof operation module mainly adopts contact operation, namely, the function operation is carried out through mutual contact of human and machine, the corresponding operation is simply realized by touching the operation module by a human body, and the operation can not be carried out at a certain interval, so that the operation is inconvenient, and therefore, a non-contact explosion-proof operation module is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a non-contact explosion-proof operation module, which is used for solving the problem that the existing explosion-proof operation module in the background technology mainly adopts contact operation, namely, the function operation is carried out through mutual contact of human and machine, the corresponding operation is simply realized by touching the operation module by a human body, and the operation cannot be carried out at certain intervals, so that the operation is inconvenient.
In order to achieve the purpose, the utility model provides the following technical scheme: the non-contact type explosion-proof operation module comprises a gesture intelligent recognition assembly and a space intelligent recognition main control board, wherein the gesture intelligent recognition assembly is connected with the space intelligent recognition main control board through a wire, the gesture intelligent recognition assembly is used for recognizing human gesture actions in a spaced mode, the gesture intelligent recognition assembly comprises a bulletproof glass shell, a space recognition sensor and a protective cover plate, the space recognition sensor is embedded into the bulletproof glass shell, the protective cover plate is arranged outside the space recognition sensor, and the surface of the space intelligent recognition main control board is sequentially provided with a J8 passive node, a J7 passive node, a J6 passive node, a J5 passive node, a J1 passive node, a J2 passive node, a J3 passive node and a J4 passive node from top to bottom and from left to right.
Preferably, the top of the protective cover plate is rotationally connected with the surface of the bulletproof glass shell, and the size of the inner opening of the protective cover plate is larger than that of the outer opening of the space identification sensor.
Preferably, the outline dimension of the space identification sensor is less than 2 square centimeters, and the surface of the space identification sensor is provided with four wiring ports of VCC, GND, PUL + and PUL-.
Preferably, the overall dimension of the space intelligent identification main control board is 5 cm in width and 10 cm in length.
Preferably, the space intelligent identification main control panel is installed in the distribution box or the explosion-proof operation column.
Preferably, the power supply of the space intelligent identification main control board adopts AC220V or DC 5-24V.
Preferably, the space intelligent recognition main control board surface is provided with four wiring ports of +5V, 0V, PUL + and PUL-.
The utility model provides a non-contact explosion-proof operation module, which has the following beneficial effects:
according to the utility model, the space recognition sensor can remotely recognize human body gestures and send corresponding pulse signals to the space intelligent recognition main control board according to the gesture actions, and the space intelligent recognition main control board enables corresponding passive nodes to act according to a preset program so as to achieve the purpose of controlling equipment to operate in an air-isolated mode, so that people can use the control equipment through the operation module more conveniently, namely, corresponding operation is performed by using the gesture control equipment while the motion state of the equipment is observed, and the working state of the equipment is adjusted in time conveniently.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a non-contact explosion-proof operating module according to the present invention;
FIG. 2 is a schematic structural diagram of an intelligent gesture recognition module of the non-contact explosion-proof operating module according to the present invention;
FIG. 3 is a schematic diagram of a spatial intelligent recognition main control board structure of the non-contact explosion-proof operating module according to the present invention;
in the figure: 1. a gesture intelligent recognition component; 101. a bullet-proof glass housing; 102. a spatial recognition sensor; 103. a protective cover plate; 2. a space intelligent identification main control board; 3. j8 passive node; 4. j7 passive node; 5. j6 passive node; 6. j5 passive node; 7. j1 passive node; 8. j2 passive node; 9. j3 passive node; 10. j4 passive node.
Detailed Description
As shown in fig. 1-3, the non-contact explosion-proof operating module comprises a gesture intelligent recognition component 1 and a space intelligent recognition main control board 2, the gesture intelligent recognition component 1 is connected with the space intelligent recognition main control board 2 through a wire, the gesture intelligent recognition component 1 is used for recognizing human gesture actions in an air-spaced manner, the gesture intelligent recognition component 1 comprises a bulletproof glass shell 101, a space recognition sensor 102 and a protective cover plate 103, the space recognition sensor 102 is embedded in the bulletproof glass shell 101, the protective cover plate 103 is arranged outside the space recognition sensor 102, J8 passive nodes 3, J7 passive nodes 4, J6 passive nodes 5, J5 passive nodes 6, J1 passive nodes 7, J2 passive nodes 8, J3 passive nodes 9 and J4 passive nodes 10 are sequentially arranged on the surface of the space intelligent recognition main control board 2 from top to bottom and from left to right, the top of the protective cover plate 103 is rotatably connected with the surface of the bulletproof glass shell 101, the size of an inner opening of the protective cover plate 103 is larger than that of an outer opening of the space recognition sensor 102, the overall size of the space recognition sensor 102 is smaller than 2 square centimeters, four wiring ports of VCC, GND, PUL and PUL are arranged on the surface of the space recognition sensor 102, the overall size of the space intelligent recognition main control board 2 is 5 centimeters wide and 10 centimeters long, the space intelligent recognition main control board 2 is installed in a distribution box or an explosion-proof operating column, the power supply of the space intelligent recognition main control board 2 adopts AC220V or DC5-24V, and the surface of the space intelligent recognition main control board 2 is provided with four wiring ports of +5V, 0V, PUL and PUL;
the specific operation is as follows, VCC, GND, PUL +, PUL-these four wiring ports on the surface of the space identification sensor 102 are respectively connected with +5V, 0V, PUL +, PUL-these four wiring ports on the surface of the space intelligent identification main control board 2 through wires, when needing to operate, the protective cover plate 103 of the space identification sensor 102 is opened, the gesture is done up and down, left and right, approach, far away, clockwise rotation, anticlockwise rotation, waving, continuous clockwise rotation, continuous anticlockwise rotation in the module identifiable area, corresponding pulse signals are sent to the space intelligent identification main control board 2 according to different gestures, the space intelligent identification main control board 2 makes corresponding passive node action according to the preset program, so as to achieve the purpose of controlling the operation of the equipment, when not needing to operate, the protective cover plate 103 is reset again, so as to prevent the generation of misoperation signals.
In summary, when the non-contact explosion-proof operation module is used, firstly, the four wiring ports VCC, GND, PUL + and PUL-on the surface of the space recognition sensor 102 are respectively connected with the four wiring ports +5V, 0V, PUL + and PUL-on the surface of the space intelligent recognition main control board 2 through leads, when the operation is required, the protective cover plate 103 of the space recognition sensor 102 is opened, the gesture up and down, left and right, approaching, departing, clockwise rotation, counterclockwise rotation, waving, continuous clockwise rotation and continuous counterclockwise rotation are performed in the recognizable area of the module, corresponding pulse signals are sent to the space intelligent recognition main control board 2 according to different gestures, the space intelligent recognition main control board 2 enables corresponding passive nodes to act according to a preset program so as to achieve the purpose of controlling the operation of equipment, when the operation is not required, the protective cover plate 103 is reset, to prevent the generation of misoperation signals;
the application case one: the explosion-proof operation box for controlling the straight loop has 1 start button, 1 stop button and 1 remote local selection switch, the start button is generally connected with an opening point, the stop button is generally connected with a closing point, the selection switch is generally connected with a public end and an opening and closing point, a wire originally connected with the start button is connected with 11/14 of the space intelligent identification main control board 2, a wire originally connected with the stop button is connected with 21/22 of the space intelligent identification main control board 2, a wire originally connected with the selection switch is connected with 31/32/34 of the space intelligent identification main control board 2, when the space recognition sensor 102 recognizes that the hand of the operator performs a gesture from left to right, the space intelligent recognition main control board 2 enables the J1 passive node 7 to be powered on, the J1 passive node 7 acts to enable 11/14 to be switched on, which is equivalent to the opening and closing of a starting button, and the motor equipment is started to run; when the space recognition sensor 102 recognizes that the hand of the operator performs a gesture from right to left, the space intelligent recognition main control board 2 enables the J2 passive node 8 to be powered on, the J2 passive node 8 acts to disconnect 21/22, which is equivalent to the stop button closing point disconnection, and the motor equipment stops running; when the space recognition sensor 102 recognizes that the hand of the operator makes a gesture from bottom to top, the space intelligent recognition main control board 2 enables the J3 passive node 9 to be powered on, the J3 passive node 9 acts to enable 31/32 to be disconnected, and meanwhile 31/34 is switched on, which is equivalent to that the selector switch is in a local state; when the space recognition sensor 102 recognizes that the hand of the operator performs a gesture from top to bottom, the space intelligent recognition main control board 2 enables the J3 passive node 9 to be powered off, the J3 passive node 9 acts to enable 31/32 to be connected, meanwhile 31/34 is switched off, and the selection switch is in a distant state;
application case two: the explosion-proof operation boxes for controlling the forward and reverse loops all have 1 forward rotation starting button, 1 reverse rotation starting button, 1 stopping button and 1 remote local selection switch, wherein the starting button is generally connected with an opening point, the stopping button is generally connected with a closing point, the selection switch is generally connected with a public end and an opening and closing point, a line originally connected with the forward rotation starting button is connected with 41/44 of the intelligent space identification main control board 2, a line originally connected with the reverse rotation starting button is connected with 51/54 of the intelligent space identification main control board 2, a line originally connected with the stopping button is connected with 21/22 of the intelligent space identification main control board 2, a line originally connected with the selection switch is connected with 31/32/34 of the intelligent space identification main control board 2, when the intelligent space identification sensor 102 identifies that the hand of an operator makes a clockwise rotation gesture, the intelligent space identification main control board 2 enables the J4 passive node 10 to be powered on, the action of the J4 passive node 10 enables 41/44 to be switched on, namely, the opening point of a forward rotation starting button is closed, and the motor equipment is started to rotate forward; when the space recognition sensor 102 recognizes that the hand of the operator performs a gesture from right to left, the space intelligent recognition main control board 2 enables the J2 passive node 8 to be powered on, the J2 passive node 8 acts to disconnect 21/22, which is equivalent to the stop button closing point disconnection, and the motor equipment stops running; when the space recognition sensor 102 recognizes that the hand of the operator makes a gesture of anticlockwise rotation, the space intelligent recognition main control board 2 enables the J5 passive node 6 to be powered on, the J5 passive node 6 acts to enable 51/54 to be switched on, which is equivalent to the turning-on point closing of a reverse starting button, and the motor equipment is started to reversely run; when the space recognition sensor 102 recognizes that the hand of the operator makes a gesture from bottom to top, the space intelligent recognition main control board 2 enables the J3 passive node 9 to be powered on, the J3 passive node 9 acts to enable 31/32 to be disconnected, and meanwhile 31/34 is switched on, which is equivalent to that the selector switch is in a local state; when the space recognition sensor 102 recognizes that the hand of the operator performs a gesture from top to bottom, the space intelligent recognition main control board 2 enables the J3 passive node 9 to be powered off, the J3 passive node 9 acts to enable 31/32 to be connected, meanwhile 31/34 is switched off, and the selection switch is in a far state.

Claims (7)

1. Non-contact explosion-proof operation module, including gesture intelligent recognition subassembly (1) and space intelligent recognition main control board (2), its characterized in that, gesture intelligent recognition subassembly (1) is connected with space intelligent recognition main control board (2) through the wire, gesture intelligent recognition subassembly (1) is used for separating empty discernment human gesture action, gesture intelligent recognition subassembly (1) is including shellproof glass shell (101), space recognition sensor (102) and protective cover board (103), shellproof glass shell (101) inside embedding has space recognition sensor (102), and the outside of space recognition sensor (102) is provided with protective cover board (103), the surface of space intelligent recognition main control board (2) is from last to down, from left to right in proper order J8 passive node (3), J7 passive node (4), J6 passive node (5), J5 passive node (6), J1 passive node (7), J2 passive node (8), J3 passive node (9), J4 passive node (10).
2. The contactless explosion-proof operating module according to claim 1, characterized in that the top of the protective cover plate (103) is in rotational connection with the surface of the bulletproof glass housing (101), and the size of the inner opening of the protective cover plate (103) is larger than that of the outer opening of the space recognition sensor (102).
3. The contactless explosion-proof operating module according to claim 1, characterized in that the spatial identification sensor (102) has an outer dimension of less than 2 square centimeters, and the spatial identification sensor (102) has four wiring ports VCC, GND, PUL +, PUL-on the surface.
4. The non-contact explosion-proof operating module according to claim 1, characterized in that the overall dimensions of the space intelligent identification main control board (2) are 5 cm wide and 10 cm long.
5. The non-contact explosion-proof operating module according to claim 1, characterized in that the space intelligent identification main control board (2) is installed in a distribution box or an explosion-proof operating column.
6. The contactless explosion-proof operating module according to claim 1, characterized in that the power supply of the space intelligent identification main control board (2) adopts AC220V or DC 5-24V.
7. The contactless explosion-proof operating module according to claim 1, characterized in that the space intelligent identification main control board (2) has four wiring ports of +5V, 0V, PUL +, PUL-on the surface.
CN202122399152.1U 2021-09-30 2021-09-30 Non-contact explosion-proof operation module Active CN215494931U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122399152.1U CN215494931U (en) 2021-09-30 2021-09-30 Non-contact explosion-proof operation module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122399152.1U CN215494931U (en) 2021-09-30 2021-09-30 Non-contact explosion-proof operation module

Publications (1)

Publication Number Publication Date
CN215494931U true CN215494931U (en) 2022-01-11

Family

ID=79770724

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122399152.1U Active CN215494931U (en) 2021-09-30 2021-09-30 Non-contact explosion-proof operation module

Country Status (1)

Country Link
CN (1) CN215494931U (en)

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