CN217978924U - Control device and gas stove - Google Patents

Control device and gas stove Download PDF

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Publication number
CN217978924U
CN217978924U CN202221680896.9U CN202221680896U CN217978924U CN 217978924 U CN217978924 U CN 217978924U CN 202221680896 U CN202221680896 U CN 202221680896U CN 217978924 U CN217978924 U CN 217978924U
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China
Prior art keywords
gas stove
fixing
panel
control device
movable
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CN202221680896.9U
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Chinese (zh)
Inventor
韩杰
张凡
张炳卫
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Wuhu Midea Smart Kitchen Appliance Manufacturing Co Ltd
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Wuhu Midea Smart Kitchen Appliance Manufacturing Co Ltd
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Priority to CN202221680896.9U priority Critical patent/CN217978924U/en
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Abstract

The application discloses controlling means and gas-cooker belongs to kitchen thermal equipment's technical field to solve the big technical problem of present intelligent gas-cooker control mode energy consumption. The control device comprises a fixing part, a movable part, an activation part and at least two functional circuits, wherein the fixing part penetrates through a panel of the gas stove, the fixing part is provided with a first part located on the inner side of the gas stove and a second part located on the outer side of the gas stove, the movable part is movably connected to the panel of the gas stove, back to the panel on one side inside the gas stove, the activation part is arranged on the movable part, the at least two functional circuits are provided with corresponding contacts on the fixing part, the movable part moves relative to the fixing part, the activation part can act on the contacts of any functional circuit, and the functional circuit is connected. The first part of the fixing part is connected with the panel surface of the panel facing the inner side of the gas stove, so that the part of the fixing part connected with the panel can be hidden in the inner side of the gas stove, and the fixing part is more stably and reliably connected with the panel.

Description

Control device and gas stove
Technical Field
The application belongs to the technical field of kitchen heating equipment, and particularly relates to a control device and a gas stove.
Background
The gas stove is a kitchen utensil heated by direct fire with liquefied petroleum gas (liquid), artificial gas, natural gas and other gas fuels. With the increase of user demands, part of gas cookers already have intelligent control functions.
In the related art, the gas stove with the intelligent control function adopts the touchable display screen to realize the human-computer interaction of a user, the power consumption of the touchable display screen is large, and therefore good user experience is achieved only by accessing the mains supply, and the arrangement mode of the gas stove is complicated.
SUMMERY OF THE UTILITY MODEL
The application aims to solve the technical problem of high power consumption of the existing interaction mode of the gas stove at least to a certain extent. Therefore, the application provides a control device and a gas stove.
In a first aspect, an embodiment of the present application provides a control apparatus, including:
the fixing part penetrates through a panel of the gas stove so that the fixing part is provided with a first part positioned on the inner side of the gas stove and a second part positioned on the outer side of the gas stove, and the first part is connected with the panel surface of the panel positioned on the inner side of the gas stove;
the movable part is movably connected to the plate surface of the panel of the gas stove back to one side inside the gas stove;
an activation part provided to the movable part; and
at least two functional circuits, corresponding contacts are arranged on the fixed part, and the movable part moves relative to the fixed part, so that the activating part acts on the contacts of any one functional circuit to connect the functional circuit.
In the control device of the embodiment of the application, the first part of the fixing part is positioned on one side of the panel facing the inside of the gas stove and connected with the panel, the second part of the fixing part and the movable part are arranged on the panel of the gas stove, and the movable part can move relative to the fixing part, so that the activating part connected with the movable part can move along with the movable part, and the activating part can act on a contact of any functional circuit on the fixing part, so that different functions of the gas stove are controlled, and the aim of simplifying the control mode of the gas stove is fulfilled. The first part of the fixing part connected with the panel is arranged on one side of the panel facing the inside of the gas stove, so that the part of the fixing part connected with the panel can be hidden in the gas stove, the purpose of protecting the joint of the fixing part and the panel can be achieved, and the connecting effect of the fixing part and the panel is more reliable.
In some embodiments, the movable portion is rotatably disposed on the second portion, the activating portion is disposed on an inner wall of the movable portion, and the contact of the functional circuit is disposed on an outer wall of the second portion.
The movable part is sleeved on the fixed part, so that the movable part can rotate relative to the fixed part to move the activation part, the moving amplitude of the movable part is reduced, and the control device is more compact in structure.
In some embodiments, the control device further includes a resistor disc disposed around a side wall of the fixed portion, the contact of the functional circuit is located on the resistor disc, and one end of the activation portion is rotatable with the movable portion to be electrically connected to any one of the contacts on the resistor disc.
By contacting the activation portion with different positions of the resistive sheet, paths formed by the first electrical connection and the resistive sheet connection can have different resistance values, so that different functional circuits are communicated.
In some embodiments, the control device further includes a fixing member, the first portion has a first fixing hole, one side of the panel facing the inside of the gas stove has a second fixing hole corresponding to the first fixing hole, and the fixing member is disposed in the first fixing hole and the second fixing hole to fix the first portion to the panel.
The fixing part is arranged to fix the first part of the fixing part on the panel, so that the effect of the connection between the fixing part and the panel is more stable and reliable.
In some embodiments, the panel is provided with a positioning hole through which the fixing portion passes, the fixing portion is sleeved on the valve rod of the gas stove, the positioning hole passes through the panel of the gas stove, and the valve rod of the gas stove passes through the positioning hole.
The valve rod is sleeved with the fixing part, so that the structure of the control device is more compact.
In some embodiments, a gap is formed between the movable portion and the fixing portion, and a gap is also formed between the fixing portion and the valve stem of the gas range.
The clearance between the fixed part and the movable part can ensure that the valve rod cannot interfere with the movable part and the fixed part when rotating.
In some embodiments, the control device further includes a fire power adjusting knob connected to an end of the valve stem of the gas range located outside the gas range and having a gap with the fixing portion.
Can be convenient for the valve rod through setting up firepower adjust knob and rotate, firepower adjust knob and fixed part interferings can be prevented in the clearance between firepower adjust knob and the fixed part.
In some embodiments, the control device further includes a first blocking piece, the fixing portion is provided with a central hole through which the valve rod of the gas stove passes, the first blocking piece is arranged on one side of the second portion, which faces away from the panel of the gas stove, and is wound around the central hole, a second blocking piece is arranged on one side of the fixing portion, which faces the fire adjusting knob, and the first blocking piece is sleeved with the second blocking piece, and gaps are formed between the second blocking piece and the fixing portion and between the second blocking piece and the first blocking piece.
Through setting up first separation blade and second separation blade can prevent that the foreign matter from falling into the inside of gas-cooker through the clearance between valve rod and the locating hole.
In some embodiments, the control device further comprises a connector disposed on the first portion, the connector communicatively coupled to the functional circuitry.
Through setting up the joint in the first part of fixed part for the joint can be located the inside of gas-cooker, thereby makes joint and the inside circuit board that is provided with the function circuit of gas-cooker more be close, so that joint and circuit board communication connection.
In some embodiments, the control device further includes an elastic member, the inner wall of the movable portion is provided with a plurality of positioning grooves distributed along the circumferential direction of the movable portion, one end of the elastic member is connected with the fixed portion, and the other end of the elastic member can be embedded into the positioning grooves.
Through setting up the elastic component and the constant head tank cooperation, can fix the position of movable part more conveniently for the position control of movable part is accurate.
In some embodiments, the inner wall of the positioning groove is an arc surface, and the shape of one end of the elastic piece embedded in the positioning groove is matched with the groove shape of the positioning groove.
The inner wall of the positioning groove is set to be the cambered surface, so that one end of the elastic piece can be separated from the positioning groove by rotating the movable part.
In a second aspect, based on the above control device, the embodiment of the present application further provides a gas stove, including the above control device.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 illustrates a schematic diagram of a control device disclosed in an embodiment of the present application;
FIG. 2 shows a schematic top view of the control device of FIG. 1;
FIG. 3 is an enlarged display cross-sectional view of the area A in the direction A-A in FIG. 2;
FIG. 4 is a schematic view of the movable portion of FIG. 1 mounted on the fixed portion;
FIG. 5 shows a schematic view of the activation portion of FIG. 1 mated with a contact;
FIG. 6 shows a schematic view of the attachment of the fixed portion (excluding the ear portion) and the movable portion of FIG. 1;
fig. 7 shows a schematic view of the panel of fig. 1.
Reference numerals:
100-panel, 110-positioning hole,
200-fixing part, 210-resistor disc, 220-first part, 221-first fixing hole, 230-second part, 231-first stop, 240-center hole, 250-elastic element, 251-spherical element, 260-connector, 270-ear,
300-a movable part, 310-an activation part, 320-a positioning groove,
400-valve rod, 410-firepower adjusting knob, 411-second baffle.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that all the directional indications in the embodiments of the present invention are only used to explain the relative position relationship between the components, the motion situation, etc. in a certain posture, and if the certain posture is changed, the directional indication is changed accordingly.
In the present application, unless expressly stated or limited otherwise, the terms "connected" and "secured" are to be construed broadly, and thus, for example, "secured" may be a fixed connection, a removable connection, or an integral part; can be mechanically or electrically connected; they may be directly connected or indirectly connected through intervening media, or they may be connected internally or in any other suitable relationship, unless expressly stated otherwise. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In addition, descriptions in the present application as to "first", "second", and the like are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicit to the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
The application is described below with reference to specific embodiments in conjunction with the following drawings:
example one
Referring to fig. 1 to 6, an embodiment of the present application discloses a control device, which includes a fixed portion 200, a movable portion 300, an activation portion 310, and at least two functional circuits. The control device can be applied to the gas stove to control the gas stove to realize various functions.
It should be understood that the gas range is provided with the panel 100, the panel 100 is an upper side plate of the gas range, one side of the panel 100 faces the inside of the gas range, and the other side of the panel 100 faces away from the inside of the gas range, so that a user can directly observe various components on the panel 100 when using the gas range, and specifically, components such as switches and knobs of the gas range are positioned on the surface of the panel 100 facing away from the inside of the gas range.
The fixing portion 200 of the present application is inserted through the panel 100 of the gas stove, such that the panel 100 can divide the fixing portion 200 into two parts, and the fixing portion 200 has a first part 220 located inside the gas stove and a second part 230 located outside the gas stove. The movable portion 300 is movably disposed at a side of the panel 100 of the gas range facing away from the interior of the gas range, such that the movable portion 300 is movable, and the relative position relationship between the movable portion 300 and the fixing portion 200 can be changed.
At least two functional circuits can be electrically connected with the components of the gas stove, and different functions of the gas stove can be realized by activating different functional circuits. Specifically, a functional circuit for controlling the timing closing of the gas stove, a functional circuit for controlling the timing change of the fire intensity of the gas stove, a functional circuit for controlling the flame generation position of the gas stove, and the like can be provided, and the specific functions of the functional circuits are not limited in the present application.
The two functional circuits form contacts corresponding to the functional circuits on the fixing portion 200, the number of the contacts corresponding to the number of the functional circuits, and specifically, the functional circuits form contacts on the second portion 230 of the fixing portion 200. The activation portion 310 is disposed on the movable portion 300, so that in the process of the movable portion 300 moving relative to the fixed portion 200, the activation portion 310 can also move along with the movable portion 300, and in the process of the movable portion 300 driving the activation portion 310 to move, the activation portion 310 can act on a contact of any one of the at least two functional circuits, so that the functional circuit is activated, and the gas stove can realize a function corresponding to the functional circuit. The activation of the activation portion 300 may cause the activation portion 310 to act on the contacts of the different functional circuits, such that the different functional circuits are activated.
It should be understood that the control device of the present application may be provided with a circuit board, and in particular, at least two functional circuits may be provided on the circuit board, the circuit board may be provided inside the gas stove, and the circuit board may be provided with a conductive wire corresponding to the plurality of functional circuits, and one end of the conductive wire may extend through the panel 100 to the fixing portion 200 to form a contact.
In the process of adjusting the movement of the movable portion 300 relative to the fixed portion 200, because the movable portion 300 is disposed on a side of the panel 100 of the gas stove opposite to the inner side of the gas stove, the movable portion 300 can be conveniently mounted on the panel 100 of the gas stove, the first portion 220 of the fixed portion 200 is located on the inner side of the gas stove, that is, on a side of the panel 100 facing the inner side of the gas stove, the first portion 220 of the fixed portion 200 is fixed on a side of the panel 100 facing the inner side of the gas stove, the portion of the fixed portion 200 fixedly connected with the panel 100 can be hidden inside the gas stove, the joint of the fixed portion 200 and the panel 100 can be prevented from being exposed, the joint of the fixed portion 200 and the panel 100 can be protected, the connection effect of the fixed portion 200 and the panel 100 can be more reliable, and the process of mounting and dismounting the fixed portion 200 and the movable portion 300 can be simple and convenient.
In the control device according to the embodiment of the application, the first portion 220 of the fixing portion 200 is located on one side of the panel 100 facing the interior of the gas stove and connected with the panel 100, the second portion 230 and the movable portion 300 of the fixing portion 200 are arranged on the panel 100 of the gas stove, and the movable portion 300 can move relative to the fixing portion 200, so that the activating portion 310 connected with the movable portion 300 can move along with the movable portion 300, and thus the activating portion 310 can act on a contact of any one functional circuit on the fixing portion 200, and the functional circuit can be activated to control the gas stove to realize different functions, and the purpose of simplifying the control mode of the gas stove is achieved. The first portion 220 of the fixing portion 200 connected with the panel 100 is disposed on one side of the panel 100 facing the interior of the gas stove, so that the portion of the fixing portion 200 connected with the panel 100 can be hidden in the gas stove, thereby protecting the connection between the fixing portion 200 and the panel 100, and making the connection between the fixing portion 200 and the panel 100 more reliable.
In some embodiments, in order to make the structure of the movable part 300 and the fixing part 200 compact when the movable part 300 and the fixing part 200 are disposed on the panel 100 of the gas range, the movable part 300 may be disposed to be sleeved on the second portion 230 of the fixing part 200, and the movable part 300 may rotate around the second portion 230 of the fixing part 200. The contacts of at least two functional circuits formed on the fixing portion 200 may be disposed on different portions of the outer peripheral wall of the second portion 230 of the fixing portion 200 facing the movable portion 300, and correspondingly, the activating portion 310 may be disposed on an inner wall of the movable portion 300 facing the fixing portion 200, and during the rotation of the movable portion 300 relative to the second portion 230 of the fixing portion 200, the activating portion 310 may rotate with the movable portion 300, so that the activating portion 310 may act on the contacts of different functional circuits on the outer peripheral wall of the second portion 230 of the fixing portion 200, so as to activate the different functional circuits.
Specifically, after the activation part 310 is disposed on the movable part 300, a side of the activation part 310 facing away from the movable part 300 may be disposed to contact with the outer circumferential wall of the second portion 230 of the fixing part 200, and one end of the activation part 310 may rotate along the outer circumferential wall of the second portion 230 of the fixing part 200 during the rotation of the movable part 300 until rotating to contact with a contact of any one functional circuit, so that the functional circuit is activated.
The activation part 310 acts on the contact of each functional circuit by rotating the movable part 300 around the fixing part 200, so that the movable part 300 does not move along the panel 100 of the gas stove and the relative position relationship between the movable part 300 and the panel 100 of the gas stove does not change in the position change process of the activation part 310, and the purpose of reducing the space of the panel 100 of the gas stove occupied by the movable part 300 is achieved, thereby enabling the structure of the control device of the present application to be more compact.
Of course, in other embodiments, the movable portion 300 may be further disposed to be movable in a preset direction with respect to the panel 100 of the gas range, the preset direction may be a linear direction, and accordingly, the movable portion 300 may be disposed at one side of the second portion 230 of the fixing portion 200, contacts of the functional circuit may be distributed in the second portion 230 of the fixing portion 200 in the preset direction, and the activating portion 310 may be movable in the preset direction with the movable portion 300, so that one end of the activating portion 310 may act on the contacts of each of the functional circuits distributed in the preset direction in a process of moving in the preset reverse direction.
Specifically, in this embodiment, the contacts of the functional circuit may be disposed on the outer wall of the second portion 230 of the fixed part 200 facing the movable part 300, one end of the activation part 310 may be disposed to be connected to the outer wall of the movable part 300 facing the fixed part 200, and the other end of the activation part 310 may be disposed to be in contact with the outer wall of the second portion 230 of the fixed part 200 facing the movable part 300, such that the movement of the activation part 310 in the predetermined direction may bring the activation part 310 into contact with the contacts of the respective functional circuit, thereby activating the activation part 310 with the functional circuit.
By the above arrangement of the movable part 300, the movable part 300 can be moved relative to the panel 100 of the gas range, so that the change in the positional relationship between the movable part 300 and the fixed part 200 can be clearly observed, thereby making the way in which the user operates the movable part 300 more intuitive. Particularly, in an environment where the ambient light is weak, the user can select various functions by adjusting the positional relationship between the movable portion 300 and the fixed portion 200 in a blind operation manner.
In some embodiments, in order to form the contact points on the fixing portion 200 for each functional circuit, the control device of the present application may further include a resistor sheet 210, the resistor sheet 210 may be disposed around the outer peripheral wall of the second portion 230 of the fixing portion 200, the contact points of the functional circuit are located on the resistor sheet 210, the activating portion 310 may employ an electrical connector, an end of the activating portion 310 facing away from the movable portion 300 may be disposed to contact the resistor sheet 210, and an end of the activating portion 310 facing away from the movable portion 300 may contact each portion of the resistor sheet 210 during the movement of the activating portion 310 with the movable portion 300, so as to activate different functional circuits.
Specifically, in the process that the activation portion 310 rotates along the resistance sheet 210, the activation portion 310 contacts with different parts of the resistance sheet 210, so that the parts of the resistance sheet 210 contacting with the activation portion 310 have different resistance values.
In addition, in other embodiments, the control device of the present application may further include a hall sensor and a function selection circuit, the activation portion 310 may be a magnetic component, the function selection circuit is electrically connected to both the hall sensor and the plurality of functional circuits, and the hall sensor may be disposed on the fixing portion 200, and in particular, may be integrated inside the second portion 230 of the fixing portion 200. In the process that the magnetic part moves along with the movable part 300, the magnetic field formed by the magnetic part changes along with the magnetic part, so that the Hall sensor can detect different magnetic field signals, the function selection circuit can activate different function circuits according to different magnetic field signals, and the purpose of controlling various functions of the gas stove can be achieved.
Therefore, the contact of the functional circuit can be understood as that the magnetic member is at different positions, and the magnetic field signal detected by the hall sensor when the magnetic member is at different positions can correspond to different functional circuits, so as to realize the activation selection of the functional circuits.
In some embodiments, the contact of the functional circuit of the present application may be further configured as a micro switch, and the activation portion 310 may be configured as an electrical connector, specifically, a metal sheet, and by activating the activation portion 300, the activation portion 310 may be brought into contact with the micro switch of the different functional circuit, so as to achieve the purpose of enabling the micro switch to be turned on and the functional circuit to be activated.
Alternatively, the contact of the functional circuit may be a microswitch which can be pressed to be turned on, the activation portion 310 may be an insulating member, and the activation portion 310 may act on the microswitch by moving the movable portion 300, and may specifically be pressed against the microswitch, so that the microswitch is turned on, so that the functional circuit corresponding to the microswitch is activated.
The specific configuration of the contacts of the activation portion 310 and the functional circuit is not limited in this application.
In addition, it should be noted that the fixing portion 200 may be provided with a connector 260, the connector 260 and a circuit board inside the gas range may be connected to the connector 260 on the fixing portion 200 through a wire, or the circuit board may be provided with an interface directly connected to the connector 260 on the fixing portion 200. When a microswitch is provided on the stationary portion 200, the connector 260 may be in communication with the microswitch, or other electrical connection on the stationary portion 200, so that the functional circuitry may form contacts on the stationary portion 200. The connector 260 can be arranged on the first part 220 of the fixing part 200, and it should be understood that the circuit board provided with the functional circuit in the gas stove can be arranged inside the gas stove, so that the circuit board can be protected, correspondingly, the first part 220 of the fixing part 200 is also positioned on one side of the inside of the gas stove, and the connector 260 is arranged on the first part 220 of the fixing part 200, so that the connector 260 can be more close to the circuit board positioned inside the gas stove, thereby facilitating the communication connection of the connector 260 and the circuit board, and thus achieving the purpose of reducing the assembly difficulty of the gas stove of the application.
In some embodiments, in order to facilitate the rotation of the movable portion 300, so that the movable portion 300 can rotate relative to the fixed portion 200, the movable portion 300 may further include a grip ring, the grip ring is sleeved on the movable portion 300, and a plurality of grooves may be formed on a circumferential outer wall of the grip ring, so that when a user rotates the grip ring 330, friction may be increased, so as to facilitate the rotation of the grip ring and the movable portion connected to the grip ring. Of course, the circumferential outer wall of the holding ring can be provided with a protrusion for facilitating the rotation of a user.
In some embodiments, in order to make the fixing portion 200 more stable and reliable when being fixed on the panel 100 of the gas stove, the first portion 220 of the fixing portion 200 may be provided with a first fixing hole 221, and the panel 100 may be provided with a second fixing hole corresponding to the first fixing hole 221 of the first portion 220, and in particular, the second fixing hole may be provided on a panel surface of the panel 100 facing the inside of the gas stove. The control device of the present application is further provided with a fixing member, and after the first fixing hole 221 of the first portion 220 is opposite to the second fixing hole of the panel 100, the fixing member can be arranged in the first fixing hole 221 and the second fixing hole, so as to achieve the purpose of fixing the first portion 220 of the fixing portion 200 and the panel 100.
Specifically, the fixing portion 200 of the present application may further include an ear portion 270 connected to the first portion 220, the ear portion 270 may include a sheet structure, one end of the ear portion 270 is connected to an edge of the first portion 220, and the first fixing hole 221 may be disposed in the ear portion 270, so that it is not necessary to form a hole structure on the first portion 220 to complete the structure of the first portion 220. The number of the ear portions 270 may be set to be plural, specifically, the number of the ear portions 270 may be determined according to the number of the first fixing holes 221, the plurality of first fixing holes 221 may be respectively disposed on the plurality of ear portions 270, and the first portion 220 of the fixing portion 200 and the panel 100 may have a plurality of joints by disposing the plurality of first fixing holes 221, so that the connection effect of the fixing portion 200 and the panel 100 is more stable and reliable. In this embodiment, the number of the ears 270 may be two, two ears 270 are symmetrically disposed on two sides of the first portion 220, and correspondingly, the number of the first fixing holes 221, the number of the second fixing holes and the number of the fixing members are two.
In addition, it should be understood that, after the first fixing hole 221 is opened in the first portion 220 of the fixing portion 200 of the present application, when the control device of the present application is assembled, since the position of the second fixing hole of the panel 100 is determined, and the first fixing hole 221 of the first portion 220 needs to be opposite to the second fixing hole, the position where the fixing portion 200 is installed on the panel 100 is fixed, and the movable portion 300 of the present application rotates relative to the fixing portion 200, when the fixing portion 300 has contacts of a plurality of functional circuits, the control device of the present application can have a plurality of functions, and accordingly, corresponding marking scales can be set on the panel 100 corresponding to a plurality of positional relationships of the movable portion 300 relative to the fixing portion 200. After the fixing portion 200 is fixed to the panel 100, the position of the second fixing hole of the panel 100 is determined, so that the plurality of contacts on the fixing portion 200 can be respectively opposite to the plurality of marked scales on the panel 100 when the fixing portion 200 is installed on the panel 100, and therefore the control device is convenient to assemble, and the position of the fixing portion 200 opposite to the panel 100 does not need to be additionally debugged in the assembling process.
In some embodiments, in order to make the structure of the control device of the present application more compact, the fixing portion 200 of the present application may be disposed to be sleeved on the valve stem 400 of the gas stove, and correspondingly, the movable portion 300 may also be disposed to surround the valve stem 400 of the gas stove, so that the structure of the valve stem 400 of the gas stove may be fully utilized.
It should be understood that the valve stem 400 of the gas stove is a mechanism for adjusting the fire of the gas stove, the fire of the gas stove can be changed by rotating the valve stem 400 of the gas stove, one end of the valve stem 400 is located at a side of the panel 100 of the gas stove, which faces away from the interior of the gas stove, so that a user can operate to rotate the valve stem 400, the other end of the valve stem 400 extends to the interior of the gas stove and is connected with the fire adjusting mechanism of the gas stove, therefore, the valve stem 400 can penetrate through the panel 100 of the gas stove, and a through hole for the valve stem 400 to penetrate through is also formed on the panel 100 of the gas stove.
Because the fixing part 200 of the present application passes through the panel 100, the panel 100 is provided with the positioning hole 110 through which the fixing part 200 passes, and the through hole through which the valve rod 400 passes on the panel 100 of the gas stove can be the positioning hole 110, therefore, the positioning hole 110 can limit the fixing part 200, so that the connecting effect of the fixing part 200 and the panel 100 is reliable, and the valve rod 400 of the gas stove can pass through, therefore, the panel 100 of the gas stove does not need to additionally and separately provide through holes through which the valve rod 400 of the gas stove passes.
The fixing portion 200 may be sleeved on the valve stem 400 of the gas range, so that the fixing portion 200 should be provided with a through hole for the valve stem 400 of the gas range to pass through, and the through hole may be specifically arranged at a central portion, specifically the central hole 240, of the fixing portion 200. The inner diameter of the central hole 240 of the fixing part 200 may be set to be greater than the outer diameter of the valve stem 400 of the gas range, so that a certain gap may be formed between the inner wall of the central hole 240 of the fixing part 200 and the outer wall of the valve stem 400 of the gas range, when the valve stem 400 of the gas range is rotated to adjust the fire of the gas range, the fixing part 200 may not rotate with the valve stem 400 of the gas range, and the fixing part 200 may not cause resistance to the rotation of the valve stem 400 of the gas range, thereby making the fire adjustment of the gas range smoother.
The fixing portion 200 is sleeved on the valve stem 400 of the gas stove, so that the fixing portion 200 makes full use of a portion of the panel 100 of the gas stove, which is used for mounting the valve stem 400, and a through hole, through which the valve stem 400 of the gas stove passes, of the panel 100 of the gas stove is used for forming the positioning hole 110, so that the through hole can enable the bump 220 of the fixing portion 200 to be embedded therein and also enable a lead of a circuit board to pass.
In some embodiments, the control device of the present application is disposed on a gas stove, the gas stove may further include a fire adjusting knob 410, the fire adjusting knob 410 may be disposed to be connected to a valve stem 400 of the gas stove, specifically, the valve stem 400 of the gas stove has a first end located inside the gas stove and a second end extending to a side of the panel 100 of the gas stove opposite to the inside of the gas stove, and the fire adjusting knob 410 may be connected to an end of the valve stem 400 of the gas stove extending to a side of the panel 100 of the gas stove opposite to the inside of the gas stove, that is, connected to the second end of the valve stem 400, so that a user may rotate the valve stem 400 of the gas stove by rotating the fire adjusting knob 410, thereby achieving an objective of adjusting the fire of the gas stove.
Specifically, the second end of the valve rod 400 passes through the central hole 240 of the fixing portion 200 and extends out of the fixing portion 200, the fire power adjusting knob 410 is a cover-shaped structural member, and the fire power adjusting knob 410 can be arranged to have a certain gap with both the fixing portion 200 and the movable portion 300, so that the fire power adjusting knob 410, the fixing portion 200 and the movable portion 300 are in a non-contact state, when the fire power adjusting knob 410 is rotated, the movable portion 300 can be prevented from rotating along with the fire power adjusting knob 410, and the fixing portion 200 cannot cause resistance to the fire power adjusting rotation. Similarly, the movable portion 300 does not drive the fire power adjusting knob 410 to rotate in the process that the movable portion 300 rotates relative to the fixed portion 200, so that the fire power adjustment and the function selection of the gas stove using the control device of the present application are not affected.
In addition, the area of the end surface of the fire power adjusting knob 410 facing the fixing portion 200 may be set to be not smaller than the sectional area of the center hole 240 of the fixing portion 200, so that the fire power adjusting knob 410 may cover the center hole 240 of the fixing portion 200 to shield the center hole 240 of the fixing portion 200, thereby preventing foreign materials from entering the inside of the gas range through the center hole 240 of the fixing portion 200. And, the fire power adjusting knob 410 and the valve stem 400 of the gas range may be detachably connected, and when the fixing part 200 needs to be cleaned, the fixing part 200 may be exposed by detaching the fire power adjusting knob 410 from the valve stem 400, so that the user can clean the fixing part 200.
In some embodiments, in order to further prevent foreign matters from entering the gas stove through the central hole 240 of the fixing portion 200, the control device of the present application may further include a first blocking piece 231 and a second blocking piece 411, wherein the second blocking piece 411 is disposed on a side of the fire power adjusting knob 410 facing the fixing portion 200, the first blocking piece 231 is disposed on a side of the second portion 230 of the fixing portion 200 facing the fire power adjusting knob 410, and therefore, the first blocking piece 231 and the second blocking piece 411 are disposed opposite to each other, the second blocking piece 411 may further cover at least a portion of the first blocking piece 231 therein, and an outer wall of the second blocking piece 411, an inner wall of the first blocking piece 231, and an outer wall of the second portion 230 of the fixing portion 200 have a certain gap, so that the second blocking piece 411 does not rub against the first blocking piece 230 and the fixing portion 200 when the fire power adjusting knob 410 rotates, so that the fire power adjusting knob 410 rotates smoothly.
Because the first blocking piece 231 and the second blocking piece 411 are respectively arranged on the fixing portion 200 and the fire adjusting knob 410, the first blocking piece 231 is sleeved in the second blocking piece 411, a gap is formed between the first blocking piece 231 and the second blocking piece 411, and an opening of the gap faces the fixing portion 200, foreign matters on one side of the gas stove panel 100, which faces away from the interior of the gas stove, cannot enter the fixing portion 200 through the gap between the first blocking piece 231 and the second blocking piece 411, so that the purpose of preventing the foreign matters from entering the interior of the gas stove is achieved.
In some embodiments, it is understood that when the movable portion 300 moves relative to the fixed portion 200, the activating portion 310 can be driven to move along with the movable portion 300, the activating portion 310 can be located at different positions to act on different contacts of the functional circuit, and the activating portion 310 needs to be kept stable after the activating portion 310 acts on the contacts electrically connected to the contacts of the functional circuit, so that the contacts of the functional circuit and the activating portion 310 have a good electrical connection effect.
Therefore, the control device of the present application is further provided with the elastic element 250, the inner wall of the second portion 230 of the movable portion 300 facing the fixed portion 200 may be provided with a plurality of positioning grooves 320 disposed along the circumference of the movable portion 300, one end of the elastic element 250 is connected with the second portion 230 of the fixed portion 200, and the other end of the elastic element 250 may be embedded into the positioning grooves 320 of the movable portion 300, so that, after the movable portion 300 rotates relative to the fixed portion 200, one end of the elastic element 250 may be respectively embedded into each positioning groove 320 of the movable portion 300, and after one end of the elastic element 250 is embedded into one positioning groove 320 of the movable portion 300, the elastic element 250 may limit the movable portion 300, so as to prevent the movable portion 300 from continuing to rotate under the condition of no external force or small external force.
Specifically, the positioning grooves 320 of the movable portion 300 may be disposed at positions corresponding to contacts of each functional circuit, and when one end of the elastic member 250 is inserted into one positioning groove 320, the activating portion 310 acts on the contact of one functional circuit, and if a user needs to switch the function of the gas range, a large force needs to be applied to the elastic member 250 to compress the elastic member 250, so that the distance between one end of the elastic member 250 and the positioning groove 320 of the movable portion 300 is increased, and one end of the elastic member 250 is separated from the positioning groove 320. When the movable portion 300 rotates to another positioning slot 320 to be opposite to one end of the elastic member 250, the restoring deformation force of the elastic member 250 can make one end of the elastic member 250 embedded into another positioning slot 320, and the activating portion 310 can act on a contact of another functional circuit.
In addition, the inner wall of the positioning groove 320 may be an arc surface, specifically, the groove shape of the positioning groove 320 is a sphere-like structure, and one end of the elastic member 250, which is embedded in the positioning groove 320, may be configured to be matched with the groove shape of the positioning groove 320, so that when one end of the elastic member 250 is embedded in one positioning groove 320, one end of the elastic member 250 may slide along the inner wall of the positioning groove 320 by rotating the movable portion 300, and thus one end of the elastic member 250 may be separated from the positioning groove 320. Specifically, one end of the elastic member 250 may be provided with a ball 251.
Example two
Based on the same utility model concept, the embodiment of the application also provides a gas stove, which comprises a control device in the first embodiment. The gas stove can realize the control of various functions through the control device.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above are not necessarily intended to refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, various embodiments or examples described in this specification can be combined and combined by those skilled in the art.

Claims (12)

1. A control device, comprising:
the gas stove comprises a fixing part (200) and a gas-liquid separator, wherein the fixing part (200) penetrates through a panel (100) of the gas stove, so that the fixing part (200) is provided with a first part (220) positioned on the inner side of the gas stove and a second part (230) positioned on the outer side of the gas stove, and the first part (220) is connected with the panel surface of the panel (100) positioned on the inner side of the gas stove;
the movable part (300) is movably connected to the plate surface of the panel (100) of the gas stove, which is back to one side of the interior of the gas stove;
an activation section (310) provided to the movable section (300); and
at least two functional circuits, corresponding contacts are arranged on the fixed part (200), the movable part (300) moves relative to the fixed part (200), and the activating part (310) can act on the contacts of any one functional circuit to connect the functional circuit.
2. The control device according to claim 1, wherein the movable portion (300) is rotatably sleeved on the second portion (230), the activating portion (310) is disposed on an inner wall of the movable portion (300), and the contact of the functional circuit is disposed on an outer wall of the second portion (230).
3. The control device according to claim 1, characterized in that it further comprises a resistive sheet (210), said resistive sheet (210) being arranged around a side wall of said fixed part (200), contacts of said functional circuit being located on said resistive sheet (210), said active part (310) being an electrical connection, one end of said active part (310) being rotatable with said movable part (300) into electrical connection with any contact on said resistive sheet (210).
4. The control device according to claim 1, further comprising a fixing member, wherein the first portion (220) is opened with a first fixing hole (221), one side of the panel (100) facing the interior of the gas range is opened with a second fixing hole corresponding to the first fixing hole (221), and the fixing member is disposed in the first fixing hole (221) and the second fixing hole to fix the first portion (220) to the panel (100).
5. The control device according to claim 4, wherein the panel (100) is provided with a positioning hole (110) for the fixing portion (200) to pass through, the fixing portion (200) is sleeved on the valve stem (400) of the gas stove, the positioning hole (110) passes through the panel (100) of the gas stove, and the valve stem (400) of the gas stove passes through the positioning hole (110).
6. The control device according to claim 5, wherein a gap is provided between the movable portion (300) and the fixed portion (200), and a gap is also provided between the fixed portion (200) and a stem (400) of the gas range.
7. The control device according to claim 5, further comprising a fire power adjusting knob (410), wherein the fire power adjusting knob (410) is connected to an end of the valve stem (400) of the gas range located outside the gas range with a gap from the fixing portion (200).
8. The control device according to claim 7, further comprising a first blocking piece (231), wherein the fixing portion (200) is provided with a central hole (240) for a valve rod (400) of the gas stove to pass through, the first blocking piece (231) is arranged on one side of the second portion (230) back to the panel (100) of the gas stove and wound around the central hole (240), a second blocking piece (411) is arranged on one side of the fire power adjusting knob (410) facing the fixing portion (200), the first blocking piece (231) is sleeved inside by the second blocking piece (411), and gaps are formed between the second blocking piece (411) and the fixing portion (200) as well as between the second blocking piece (411) and the first blocking piece (231).
9. The control device of claim 1, further comprising a connector (260), the connector (260) being disposed on the first portion (220), the connector (260) being communicatively coupled to the functional circuit.
10. The control device according to claim 1, further comprising an elastic member (250), wherein the inner wall of the movable portion (300) is provided with a plurality of positioning grooves (320) distributed along the circumferential direction of the movable portion (300), one end of the elastic member (250) is connected with the fixing portion (200), and the other end of the elastic member (250) can be embedded into the positioning grooves (320).
11. The control device as claimed in claim 10, wherein the inner wall of the positioning slot (320) is a cambered surface, and the outer shape of the end of the elastic member (250) embedded in the positioning slot (320) is matched with the slot shape of the positioning slot (320).
12. A gas cooker comprising a control device as claimed in any one of claims 1 to 11.
CN202221680896.9U 2022-06-30 2022-06-30 Control device and gas stove Active CN217978924U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221680896.9U CN217978924U (en) 2022-06-30 2022-06-30 Control device and gas stove

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221680896.9U CN217978924U (en) 2022-06-30 2022-06-30 Control device and gas stove

Publications (1)

Publication Number Publication Date
CN217978924U true CN217978924U (en) 2022-12-06

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221680896.9U Active CN217978924U (en) 2022-06-30 2022-06-30 Control device and gas stove

Country Status (1)

Country Link
CN (1) CN217978924U (en)

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