CN213692571U - Integrated kitchen of controller wired communication is switched through switching door plant - Google Patents

Integrated kitchen of controller wired communication is switched through switching door plant Download PDF

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Publication number
CN213692571U
CN213692571U CN202023172460.2U CN202023172460U CN213692571U CN 213692571 U CN213692571 U CN 213692571U CN 202023172460 U CN202023172460 U CN 202023172460U CN 213692571 U CN213692571 U CN 213692571U
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terminal
box body
contact piece
wired communication
door panel
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CN202023172460.2U
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Chinese (zh)
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鲜杰
潘光学
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Aopu Intelligent Technology Co ltd
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Aupu Home Style Corp Ltd
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Abstract

The utility model discloses an integrated kitchen through switching door plant switching controller wired communication belongs to integrated kitchen control technique, current removal, the easy fatigue aging of communication line that installation operation control panel sent on parts such as rotation, bad phenomenon such as unable operation appears, the utility model discloses separately establish the first terminal and the second terminal of connector in the position that corresponds on fuselage and door plant, first terminal and second terminal butt joint are with the circuit switch-on between controller and the control mainboard when the door plant is closed, and the controller on locating the door plant will be circular telegram and get into standby state, and the corresponding function of operatable realization, first terminal and second terminal throw off the circuit disconnection between controller and the control mainboard when the door plant is opened, cut off the communication and stop the function of carrying out, the unable work of operation controller under this state. Therefore, the connection and disconnection of communication are realized by opening and closing the integrated oven door plate. The connector can not fatigue ageing, and integrated kitchen is difficult for appearing bad phenomenon such as inoperative.

Description

Integrated kitchen of controller wired communication is switched through switching door plant
Technical Field
The utility model belongs to integrated kitchen control technology, concretely relates to through integrated kitchen of switching door plant switching controller wired communication.
Background
The controller used in the existing kitchen electrical product is generally provided with an operable controller (control circuit board) on a non-moving, non-rotating and other parts. When an operable controller (control circuit board) is mounted on a moving part, a rotating part and the like, the controller is connected at the moving part and the rotating part through a communication line, and after the controller is used for a long time, the communication line is aged due to fatigue, and the controller cannot be operated and the like.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model and the technical task that provides are overcome and have now on removing, parts such as rotation the easy fatigue aging of communication line that the installation operation control panel sent, appear the defect of bad phenomenon such as unable operation, provide an integrated kitchen through switching door plant switching controller wired communication.
In order to achieve the above object, the utility model discloses an integrated kitchen through switching door plant switching controller wired communication, include the fuselage and can open and the door plant of closing for the fuselage, establish the controller on the door plant, the control mainboard, characterized by are established to the fuselage: the position that corresponds on fuselage and the door plant separately establishes the first terminal and the second terminal of connector, the controller passes through the wire connection and locates terminal on the door plant, the control mainboard passes through the wire connection and locates terminal on the fuselage, when the door plant is closed first terminal and second terminal butt joint will circuit switch-on between controller and the control mainboard, when the door plant is opened first terminal and second terminal throw off will circuit disconnection between controller and the control mainboard.
As a preferable technical means: the first terminal is provided with an elastic telescopic conductive thimble, the second terminal is provided with a conductive contact piece, and when the door panel is closed, the conductive thimble is contacted on the conductive contact piece with certain elasticity to realize the butt joint of the first terminal and the second terminal.
As a preferable technical means: the conductive thimble is telescopically assembled on a first box body, and a spiral spring is supported on the rear side of the conductive thimble and supported by a thread sleeve assembled on the first box body.
As a preferable technical means: a copper sheet is arranged between the rear end of the conductive thimble and the spiral spring, a lead is welded on the copper sheet, and the lead penetrates through the threaded sleeve and is led out of the first box body.
As a preferable technical means: the first box body is provided with a reducing hole, the front section of the reducing hole is a small-diameter hole, and the rear section of the reducing hole is a large-diameter hole; the spiral spring is positioned in the large-diameter hole; the conductive thimble comprises a small-diameter column at the front section and a large-diameter column at the rear section, the large-diameter column is positioned in the large-diameter hole, and the small-diameter column extends out of the first box body through the small-diameter hole.
As a preferable technical means: the first box body is provided with a first supporting surface and a first clamping foot corresponding to the first supporting surface.
As a preferable technical means: the conductive contact piece is inserted into a second box body, and the conductive contact piece is connected with a lead.
As a preferable technical means: the conductive contact piece is provided with a bending part, the second box body is provided with a blocking part, and the bending part is blocked by the blocking part and locked on the second box body.
As a preferable technical means: and a second supporting surface and a second clamping pin corresponding to the second supporting surface are arranged on the second box body.
As a preferable technical means: the first terminal is provided with a fixed conductive thimble, the second terminal is provided with a conductive contact piece with a concave surface, and when the door panel is closed, the end part of the conductive thimble is contacted on the concave surface to realize the butt joint of the first terminal and the second terminal.
As a preferable technical means: the conductive thimble is clamped on a first box body through a radial flange arranged on the conductive thimble, and a lead of the first box body is led out from the rear end of the conductive thimble in a welding manner.
As a preferable technical means: the first box body is provided with an assembly hole, an annular edge is arranged in the assembly hole, a front inclined plane facing the front is arranged on the annular edge, and a clamping groove is formed in the rear side of the annular edge; the radial flange of the conductive thimble is provided with a rear inclined surface facing the rear, and the radial flange is positioned in the clamping groove.
As a preferable technical means: the first box body is provided with a first supporting surface and a first clamping foot corresponding to the first supporting surface.
As a preferable technical means: the conductive contact piece is inserted into a second box body, and the conductive contact piece is connected with a lead.
As a preferable technical means: the conductive contact piece is provided with a bending part, the second box body is provided with a blocking part, and the bending part is blocked by the blocking part and locked on the second box body.
As a preferable technical means: and a second supporting surface and a second clamping pin corresponding to the second supporting surface are arranged on the second box body.
As a preferable technical means: the conductive thimble and the conductive contact piece are in multiple pairs.
As a preferable technical means: the first terminal is provided with a first conductive contact piece with a first salient point, the second terminal is provided with a second conductive contact piece with a second salient point, and when the door panel is closed, the first salient point is in contact with the second salient point to realize butt joint of the first terminal and the second terminal.
As a preferable technical means: the first conductive contact piece is inserted on a first box body, and a lead is connected to the first conductive contact piece; the second conductive contact piece is inserted on a second box body, and the second conductive contact piece is connected with a lead.
As a preferable technical means: the first box body is provided with a first supporting surface and a first clamping pin corresponding to the first supporting surface; and a second supporting surface and a second clamping pin corresponding to the second supporting surface are arranged on the second box body.
As a preferable technical means: the first conductive contact piece is provided with a first bending part, the first box body is provided with a first blocking part, and the first bending part is blocked by the first blocking part and locked on the first box body; the second conductive contact piece is provided with a second bending part, the second box body is provided with a second blocking part, and the second bending part is blocked by the second blocking part and locked on the second box body.
As a preferable technical means: the first terminal and the second terminal are symmetrical when butted.
As a preferable technical means: the first conductive contact piece and the second conductive contact piece are in a plurality of pairs.
The utility model discloses separately establish the first terminal and the second terminal of connector in the position that corresponds on fuselage and door plant, the controller passes through the wire and connects the terminal of locating on the door plant, and the control mainboard passes through the wire and connects the terminal of locating on the fuselage, and first terminal and second terminal butt joint are with the circuit switch-on between controller and the control mainboard when the door plant is closed, and first terminal and second terminal throw off the circuit disconnection between with controller and the control mainboard when the door plant is opened. Therefore, the connection and disconnection of communication are realized by opening and closing the integrated oven door plate. When the integrated cooker is to be operated, the controller arranged on the door plate can be electrified to enter a standby state as long as the door plate is closed, and the integrated cooker can be operated to realize corresponding functions. After the door plate is opened, the power is automatically cut off to cut off the communication and stop the executing function, and the operation controller cannot work in the state.
The utility model discloses a separately locate fuselage and door plant with the first terminal and the second terminal of connector on, lay the communication line in removal, rotatory position department for prior art, the connector can not fatigue ageing, and bad phenomena such as unable operation are difficult for appearing in integrated kitchen.
Drawings
Fig. 1 is a schematic view of the integrated cooker of the present invention when the door panel is closed;
FIG. 2 is a schematic view of the integrated cooker of the present invention when the door panel is opened;
fig. 3 is a schematic view of the integrated cooker of the present invention with a first terminal on the body;
fig. 4 is a schematic view of the integrated cooker of the present invention with a second terminal on the door panel;
fig. 5 is a schematic structural view of the connector for an integrated cooker according to the present invention;
FIG. 6 is a schematic front view of FIG. 5;
FIG. 7 is a sectional view taken along line A-A of FIG. 6;
FIG. 8 is a sectional view taken along line B-B of FIG. 7;
fig. 9 is a second structural diagram of the connector for integrated cooker according to the present invention;
FIG. 10 is a schematic front view of FIG. 9;
FIG. 11 is a cross-sectional view taken along line C-C of FIG. 10;
FIG. 12 is a cross-sectional view taken along line D-D of FIG. 11;
fig. 13 is a third structural view of the connector for integrated cooker of the present invention;
FIG. 14 is a schematic front view of FIG. 13;
FIG. 15 is a cross-sectional view taken along line E-E of FIG. 14;
FIG. 16 is a sectional view taken along line F-F of FIG. 15;
fig. 17 is a schematic view of the control main board of the present invention connected to the controller via the connector;
the reference numbers in the figures illustrate:
100, integrated cooker: 101 fuselage, 102 door panels, 103 fuselage components, 104 door panel components;
200 a controller;
300 controlling the main board;
400, connector: 401 a first terminal, 402 a second terminal, 403 a conductive thimble, 404 a conductive contact piece, 405 a first box body, 406 a spiral spring, 407 a threaded sleeve, 408 a copper sheet, 409 a small-diameter hole, 410 a large-diameter hole, 411 a small-diameter column, 412 a large-diameter column, 413 a first supporting surface, 414 a first clamping foot, 415 a second box body, 416 a bent part, 417 a blocking part, 418 a second supporting surface and 419 a second clamping foot;
500, connector: 501 a first terminal, 502 a second terminal, 503 a conductive thimble, 504 a concave surface, 505 a conductive contact piece, 506 a radial flange, 507 a first box body, 508 a mounting hole, 509 a ring edge, 510 a front inclined surface, 511 a clamping groove, 512 a rear inclined surface, 513 a first supporting surface, 514 a first clamping pin, 515 a second box body, 516 a bending part, 517 a blocking part, 518 a second supporting surface and 519 a second clamping pin;
600, connector: 601 a first terminal, 602 a second terminal, 603 a first bump, 604 a first conductive contact piece, 605 a first box, 606 a second bump, 607 a second conductive contact piece, 608 a second box, 609 a first support surface, 610 a first clip, 611 a second support surface, 612 a second clip, 613 a first bend, 614 a first stop, 615 a second bend, 616 a second stop;
700 wire.
Detailed Description
The present invention will be further explained with reference to the drawings attached to the specification.
As shown in fig. 1-2, 3-4 and 17, the integrated cooker 100 includes a main body 101 and a door plate 102 that can be opened and closed relative to the main body, the main body 101 is provided with a corresponding function and is controlled by a control main board 300 provided on the main body, and the corresponding function is realized by operating a controller 200 provided on the door plate. The controller can have various operation modes, such as a touch screen, a knob, a key and the like. The function of the integrated cooker may be one or more of sterilization, drying, steaming, start-up/operation, but is not limited thereto.
In order to realize control, a first terminal 401 and a second terminal 402 of the connector are separately arranged at corresponding positions on the body 101 and the door panel 102, and although the figure shows that the first terminal 401 is assembled on the body 101 and the second terminal 402 is assembled on the door panel 102, the first terminal and the second terminal can be transposed in a specific implementation. The controller is connected with terminals arranged on the door plate through a lead 700, the control main board is connected with the terminals arranged on the machine body through the lead 700, when the door plate is closed, the first terminal 401 is in butt joint with the second terminal 402 to connect a circuit between the controller 200 and the control main board 300, and when the door plate is opened, the first terminal 401 is separated from the second terminal 402 to disconnect the circuit between the controller and the control main board.
As described above, the connector including the first terminal and the second terminal replaces the connection of the communication cable at the position where the communication cable moves and rotates in the prior art, the connector does not fatigue and age, and the integrated cooker is not easy to have adverse phenomena such as incapability of operation.
And the connection and disconnection of communication are realized by opening and closing the integrated oven door plate. When the integrated cooker is to be operated, the controller arranged on the door plate can be electrified to enter a standby state as long as the door plate is closed, and the integrated cooker can be operated to realize corresponding functions. After the door plate is opened, the power is automatically cut off to cut off the communication and stop the executing function, and the operation controller cannot work in the state.
Furthermore, the communication of the controller can be automatically cut off after the door plate is opened by controlling the main board, and related functions can be closed. And the corresponding function can be closed only after the function is cancelled through key operation again, unlike other function keys. After the door plate is closed, the controller is automatically electrified for communication, and the control main board can detect that the door plate is closed, so that the corresponding function is realized in normal work.
Based on the connector, the integrated cooker has high control precision and can be powered on at any time. Moreover, the integrated cooker is low in cost, good in working condition control effect, high in metering precision and high in safety, automation and intellectualization are achieved, and assembly efficiency is improved.
The connector may have various configurations, three of which are described in detail below.
In a connector 400 shown in fig. 5-8, a first terminal 401 has an elastically retractable conductive pin 403, a second terminal 402 has a conductive contact piece 404, and the conductive pin 403 contacts the conductive contact piece 404 with a certain elastic force when the door is closed, so that the first terminal and the second terminal are mated. Therefore, the conductive thimble can be well contacted and conducted with the conductive contact piece.
Specifically, the first terminal 401 includes a first box 405, a conductive thimble 403, a copper sheet 408, a coil spring 406, and a threaded sleeve 407.
The first box 405 is provided with 5 parallel reducing holes, the front section of the reducing hole is a small-diameter hole 409, and the rear section of the reducing hole is a large-diameter hole 410. The first box 405 is provided with a first supporting surface 413 and a first clamping leg 414 corresponding to the first supporting surface, so that the first supporting surface 413 and the first clamping leg 414 can be respectively disposed on two sides of the body component 103 as shown in fig. 8 to clamp the first box on the body.
The conductive thimble 403 is in a step-column shape, and includes a front small-diameter column 411 and a rear large-diameter column 412, the large-diameter column 412 is located in the large-diameter hole 410, and the small-diameter column 411 extends out of the first box body through the small-diameter hole 409.
The copper sheet 408 is located in the reducing hole and contacts the rear end of the conductive thimble 403, and a lead for connecting with the control mainboard is welded on the copper sheet 408.
The coil spring 406 is located at the rear side of the brass shim in the large diameter hole 410.
The threaded sleeve 407 is screwed to the rear end of the special-shaped hole, thereby compressing the coil spring and applying a certain elastic force to the conductive thimble.
The lead welded on the copper sheet is led out of the first box body through the threaded sleeve.
During the assembly, can put electrically conductive thimble, copper sheet in the reducing hole from the reducing hole rear end according to the preface, will weld the wire on the copper sheet and pass the thread bush, pass threaded connection at last with the thread bush in the rear end in dysmorphism hole with coil spring compression.
Accordingly, the conductive thimble is assembled on the first box body in an elastic and telescopic manner.
The second terminal 402 includes a second housing 415, a conductive contact pad 404.
The second housing 415 has 5 parallel slots corresponding to the conductive pins 403, and a conductive contact piece 404 is inserted into each slot. The conductive contact piece is connected with the controller through a lead.
In order to avoid the conductive contact piece falling off from the second box body, the conductive contact piece 404 is bent into a right-angle shape, a bent part 416 is formed at the bent part, and meanwhile, a blocking part 417 is arranged at a position corresponding to the slot on the second box body, so that after the conductive contact piece is inserted into the slot, the bent part is blocked by the blocking part and locked on the second box body, and the conductive contact piece cannot fall off from the second box body.
The second box body is provided with a second supporting surface 418 and a second clamping pin 419 corresponding to the second supporting surface. Therefore, the first container can be assembled on the door panel by placing the second supporting surface and the second locking leg on the two sides of the door panel member 104, respectively, as shown in fig. 8.
Therefore, when the door plate is closed, the conductive thimble can be contacted with the conductive contact piece with certain elasticity, and the conductive performance is ensured. Each corresponding conductive thimble and the conductive contact sheet form a pair, and when the conductive thimbles and the conductive contact sheets are contacted, a control circuit can be connected.
In a second connector 500, as shown in fig. 9-12, a first terminal 501 has a fixed conductive pin 503, a second terminal 502 has a conductive contact strip 505 with a concave surface 504, and the end of the conductive pin 503 contacts the concave surface 504 when the door is closed to mate the first terminal with the second terminal. Due to the existence of the concave surface, the end part of the conductive thimble can be contacted with the conductive contact piece in the three-dimensional space, and the conductive performance in the process of being capable of being contacted and contacted is ensured.
The first terminal 501 includes a first box 507 and a conductive thimble 503.
The first box 507 is provided with 5 parallel assembling holes 508, the assembling holes 508 are provided with a ring edge 509, the ring edge 509 is provided with a front inclined surface 510 facing to the front, and the rear side of the ring edge 509 is provided with a clamping groove 511.
The conductive thimble 503 is cylindrical, and a radial flange 506 is disposed at the rear end of the conductive thimble, and the radial flange 506 has a rear inclined surface 512 facing rearward. Accordingly, one end of the radial flange of the conductive thimble is disposed in the mounting hole through the front end of the mounting hole 508 and forces the radial flange 506 to pass over the rim 509 and locate in the slot 511, i.e. the radial flange 506 is clamped on the first box 507, so that the conductive thimble is fixed on the first box. The rear end of the conductive thimble is welded with a lead led out of the first box body for connecting the control mainboard, and the lead is preferably welded before the conductive thimble is assembled on the first box body.
The first box 507 is provided with a first supporting surface 513 and a first clamping leg 514 corresponding to the first supporting surface. The first case can be assembled to the body by placing the first supporting surface 513 and the first locking leg 514 on both sides of the body member 103 as shown in fig. 12.
The second terminal 502 includes a second case 515, a conductive contact strip 505.
The second box 515 is provided with 5 parallel slots corresponding to the conductive pins one by one, and a conductive contact plate 505 is inserted into each slot. The conductive contact piece is connected with the controller through a lead.
In order to avoid the conductive contact piece from falling off from the second box body, the conductive contact piece 505 is bent into a right-angle shape, a bent part 516 is formed at the bent part, and meanwhile, a blocking part 517 is arranged at a position corresponding to the slot on the second box body, so that after the conductive contact piece is inserted into the slot, the bent part is blocked by the blocking part and locked on the second box body, and the conductive contact piece cannot fall off from the second box body.
The concave surface arranged on the conductive contact sheet and corresponding to the conductive thimble can ensure to be in contact with the end part of the conductive thimble.
The second box body 515 is provided with a second supporting surface 518 and a second clamping pin 519 corresponding to the second supporting surface. The first container may be assembled to the door panel by placing the second support surface and the second engaging leg on both sides of the door panel member 104, respectively, as shown in fig. 12.
Therefore, when the door plate is closed, the conductive ejector pin can be in good contact with the conductive contact piece, and the conductive performance is guaranteed. Each corresponding conductive thimble and the conductive contact sheet form a pair, and when the conductive thimbles and the conductive contact sheets are contacted, a control circuit can be connected.
As shown in fig. 13-16, in the third connector 600, the first terminal 601 has a first conductive contact piece 604 with a first bump 603, the second terminal 602 has a second conductive contact piece 607 with a second bump 606, and when the door panel is closed, the first bump 603 contacts with the second bump 606 to realize the mating of the first terminal and the second terminal. Because the first salient point and the second salient point are both arranged in a protruding mode, the first conductive contact piece can be reliably contacted with the second conductive contact piece, and the conductive performance in the contact process is ensured. In particular, the first terminal and the second terminal are symmetrical to each other when they are mated, and thus the first terminal and the second terminal can be commonly used, which facilitates manufacturing and can save manufacturing costs.
The first box 605 has 5 parallel slots, each slot has a first conductive contact 604 inserted therein, and the first conductive contact 604 is connected to the control board. The second box 608 has 5 parallel slots, each slot has a second conductive contact 607 inserted therein, and the second conductive contact is connected to the controller via a conductive wire.
The first box body 605 is provided with a first supporting surface 609 and a first clamping pin 610 corresponding to the first supporting surface; the second box 608 has a second supporting surface 611 and a second engaging portion 612 corresponding to the second supporting surface. As shown in fig. 16, the first supporting surface 609 and the first engaging leg 610 are respectively disposed on both sides of the body member 103 to assemble the first box body to the body, and the second supporting surface 611 and the second engaging leg 612 are respectively disposed on both sides of the door member 104 to assemble the first box body to the door.
In order to avoid the first conductive contact from falling off from the first box, the first conductive contact 604 is bent into a right angle shape, and first bending portions 613 are formed at the bent portions, and meanwhile, a first blocking portion 614 is disposed at a position corresponding to the slot on the first box, so that after the first conductive contact is inserted into the slot, the bending portions are blocked by the blocking portion and locked on the first box, and the first conductive contact cannot fall off from the first box. The same structure is also embodied on the second terminal, that is, in order to avoid the second conductive contact piece from falling off from the second box body, the second conductive contact piece 607 is bent into a right angle shape, and second bending portions 615 are respectively formed at the bent portions, and meanwhile, second blocking portions 616 are arranged at positions corresponding to the slots on the second box body, so that after the second conductive contact piece is inserted into the slots, the bending portions are blocked by the blocking portions and locked on the second box body, and the second conductive contact piece cannot fall off from the second box body.
Each of the corresponding first and second conductive contacts 604, 607 form a pair, which when in contact, completes a control circuit and when disengaged, disconnects the control circuit.
The connectors of the three structures can be replaced with each other.

Claims (23)

1. Through switching on and off door plant switching controller wired communication's integrated kitchen, include the fuselage and can open and the door plant of closing for the fuselage, establish the controller on the door plant, the control mainboard, characterized by are established to the fuselage: the position that corresponds on fuselage and the door plant separately establishes the first terminal and the second terminal of connector, the controller passes through the wire connection and locates terminal on the door plant, the control mainboard passes through the wire connection and locates terminal on the fuselage, when the door plant is closed first terminal and second terminal butt joint will circuit switch-on between controller and the control mainboard, when the door plant is opened first terminal and second terminal throw off will circuit disconnection between controller and the control mainboard.
2. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 1, wherein: the first terminal is provided with an elastic telescopic conductive thimble, the second terminal is provided with a conductive contact piece, and when the door panel is closed, the conductive thimble is contacted on the conductive contact piece with certain elasticity to realize the butt joint of the first terminal and the second terminal.
3. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 2, wherein: the conductive thimble is telescopically assembled on a first box body, and a spiral spring is supported on the rear side of the conductive thimble and supported by a thread sleeve assembled on the first box body.
4. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 3, wherein: a copper sheet is arranged between the rear end of the conductive thimble and the spiral spring, a lead is welded on the copper sheet, and the lead penetrates through the threaded sleeve and is led out of the first box body.
5. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 3, wherein: the first box body is provided with a reducing hole, the front section of the reducing hole is a small-diameter hole, and the rear section of the reducing hole is a large-diameter hole; the spiral spring is positioned in the large-diameter hole; the conductive thimble comprises a small-diameter column at the front section and a large-diameter column at the rear section, the large-diameter column is positioned in the large-diameter hole, and the small-diameter column extends out of the first box body through the small-diameter hole.
6. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 3, wherein: the first box body is provided with a first supporting surface and a first clamping foot corresponding to the first supporting surface.
7. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 2, wherein: the conductive contact piece is inserted into a second box body, and the conductive contact piece is connected with a lead.
8. The integrated cooker with wired communication through an opening/closing door panel switching controller according to claim 7, wherein: the conductive contact piece is provided with a bending part, the second box body is provided with a blocking part, and the bending part is blocked by the blocking part and locked on the second box body.
9. The integrated cooker with wired communication through an opening/closing door panel switching controller according to claim 7, wherein: and a second supporting surface and a second clamping pin corresponding to the second supporting surface are arranged on the second box body.
10. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 1, wherein: the first terminal is provided with a fixed conductive thimble, the second terminal is provided with a conductive contact piece with a concave surface, and when the door panel is closed, the end part of the conductive thimble is contacted on the concave surface to realize the butt joint of the first terminal and the second terminal.
11. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 10, wherein: the conductive thimble is clamped on a first box body through a radial flange arranged on the conductive thimble, and a lead of the first box body is led out from the rear end of the conductive thimble in a welding manner.
12. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 11, wherein: the first box body is provided with an assembly hole, an annular edge is arranged in the assembly hole, a front inclined plane facing the front is arranged on the annular edge, and a clamping groove is formed in the rear side of the annular edge; the radial flange of the conductive thimble is provided with a rear inclined surface facing the rear, and the radial flange is positioned in the clamping groove.
13. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 11, wherein: the first box body is provided with a first supporting surface and a first clamping foot corresponding to the first supporting surface.
14. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 10, wherein: the conductive contact piece is inserted into a second box body, and the conductive contact piece is connected with a lead.
15. The integrated cooker with wired communication through an opening/closing door panel switching controller according to claim 14, wherein: the conductive contact piece is provided with a bending part, the second box body is provided with a blocking part, and the bending part is blocked by the blocking part and locked on the second box body.
16. The integrated cooker with wired communication through an opening/closing door panel switching controller according to claim 14, wherein: and a second supporting surface and a second clamping pin corresponding to the second supporting surface are arranged on the second box body.
17. The integrated cooker with wired communication through an opening/closing door panel switching controller according to claim 2 or 10, wherein: the conductive thimble and the conductive contact piece are in multiple pairs.
18. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 1, wherein: the first terminal is provided with a first conductive contact piece with a first salient point, the second terminal is provided with a second conductive contact piece with a second salient point, and when the door panel is closed, the first salient point is in contact with the second salient point to realize butt joint of the first terminal and the second terminal.
19. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 18, wherein: the first conductive contact piece is inserted on a first box body, and a lead is connected to the first conductive contact piece; the second conductive contact piece is inserted on a second box body, and the second conductive contact piece is connected with a lead.
20. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 19, wherein: the first box body is provided with a first supporting surface and a first clamping pin corresponding to the first supporting surface; and a second supporting surface and a second clamping pin corresponding to the second supporting surface are arranged on the second box body.
21. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 19, wherein: the first conductive contact piece is provided with a first bending part, the first box body is provided with a first blocking part, and the first bending part is blocked by the first blocking part and locked on the first box body; the second conductive contact piece is provided with a second bending part, the second box body is provided with a second blocking part, and the second bending part is blocked by the second blocking part and locked on the second box body.
22. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 18, wherein: the first terminal and the second terminal are symmetrical when butted.
23. The integrated cooker with wired communication through an opening/closing door panel switching controller as claimed in claim 18, wherein: the first conductive contact piece and the second conductive contact piece are in a plurality of pairs.
CN202023172460.2U 2020-12-24 2020-12-24 Integrated kitchen of controller wired communication is switched through switching door plant Active CN213692571U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112688104A (en) * 2020-12-24 2021-04-20 奥普家居股份有限公司 Integrated kitchen of controller wired communication is switched through switching door plant

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112688104A (en) * 2020-12-24 2021-04-20 奥普家居股份有限公司 Integrated kitchen of controller wired communication is switched through switching door plant

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