Operating table and integrated cooker

By designing an automated control panel sliding mechanism on the integrated stove, the problem of wasted stove space is solved, achieving efficient utilization of stove space and automated operation.

CN223740850UActive Publication Date: 2025-12-30HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Application Number
CN202423251205.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-30
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The presence of knobs and other components on the cooktop of integrated cooktops leads to wasted space, preventing users from making effective use of it.

Method used

Design an operating console including a frame, an operating panel, and a drive mechanism. The operating panel is driven to slide between a hidden position and a used position by the drive mechanism. The operation panel is moved automatically by the meshing of a rack and pinion and a rotating gear, which saves manpower and improves space utilization.

Benefits of technology

The automated control panel sliding mechanism solves the problem of wasted stove space, improves the space utilization of the stove, and reduces the labor intensity of user operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an operation table and an integrated cooker, and relates to the technical field of cooking equipment. The operating table comprises a frame, a base and a control panel, wherein the frame is arranged on a cooking bench of the integrated cooker; the at least one operation panel slides relative to the frame so as to be switched between a hidden position and a use position, and when the operation panel is in the hidden position, the operation panel is located in the cabinet body of the integrated cooker; when in the use position, the operation panel is positioned above the cooking bench; the driving mechanism is arranged in the frame, the operation panel is connected with the driving mechanism, and the driving mechanism is used for driving the operation panel to slide relative to the frame. According to the operating table and the integrated cooker, the space on the cooking bench can be utilized, and therefore waste of the space on the cooking bench is reduced.
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Description

Technical Field

[0001] This application relates to the field of cooking equipment technology, and in particular to a worktable and integrated stove. Background Technology

[0002] An integrated cooktop is a kitchen appliance that combines multiple kitchen functions into one unit. It typically includes a gas stove, range hood, disinfection cabinet, steam oven, and other functions.

[0003] The integrated stove of the relevant technology includes a cabinet, a cooktop, and a unit. The cooktop is set on the cabinet and can be a gas stove or an induction cooker. The cabinet is used to install a steam oven or a disinfection cabinet. Cabinets are set on both sides of the cabinet to store tableware or cooking utensils. The cabinets can also be used to install a steam oven or a disinfection cabinet.

[0004] However, when the stove is not in use, the presence of knobs and other components prevents users from utilizing the space on the stove, resulting in a waste of that space. Utility Model Content

[0005] This application provides a worktable and an integrated stove to solve the technical problem that users of related technologies cannot utilize the space on the stove, thus causing a waste of space on the stove.

[0006] On the one hand, this application provides an operating console, including:

[0007] A frame for mounting on the cooktop of an integrated stove;

[0008] The control panel is provided with at least one, and the control panel slides relative to the frame to switch between a hidden position and a used position. In the hidden position, the control panel is located inside the cabinet of the integrated stove; in the used position, the control panel is located above the stove.

[0009] A drive mechanism is provided within the frame, and the operation plate is connected to the drive mechanism. The drive mechanism is used to drive the operation plate to slide relative to the frame.

[0010] In some embodiments, the drive mechanism includes:

[0011] A rack, wherein at least one rack is provided, the rack slides relative to the frame, and the operating plate is connected to the rack;

[0012] A rotating gear is rotatably connected to the frame and meshes with the rack.

[0013] A drive assembly is disposed on the frame and is used to drive the rotating gear to rotate.

[0014] In some embodiments, two control panels are provided. In the hidden position, the two control panels are respectively located inside the cabinets on both sides; in the use position, both control panels are located above the stove.

[0015] Two racks are provided, and the two operating plates are respectively connected to the two racks. The two racks are respectively located on both sides of the rotating gear, and the two racks mesh with the rotating gear at the same time to drive the two operating plates to move closer or further apart from each other.

[0016] In some embodiments, the drive assembly includes a drive gear and a drive member, the drive gear being rotatably mounted on the frame and meshing with the rotating gear, the drive member being mounted on the frame and used to drive the drive gear to rotate.

[0017] In some embodiments, a guide component is also included, the guide component being configured to slide the rack within the frame.

[0018] In some embodiments, the guide assembly includes a mounting strip and a guide strip. The mounting strip is disposed within the frame, and a groove is provided on the mounting strip along its length. The guide strip is engaged and slidably connected within the groove, and the rack is connected to the guide strip.

[0019] In some embodiments, the cross-section of the slide is configured as a "T" shape, and the guide bar is configured to cooperate with the "T" shaped slide; or the cross-section of the slide is configured as a dovetail shape, and the guide bar is configured to cooperate with the dovetail shaped slide.

[0020] In some embodiments, a connecting plate is further included, one end of which is connected to the operating plate and the other end of which is connected to the rack, and the operating plate is connected to the rack through the connecting plate.

[0021] In some embodiments, a perforated panel is also included, which is detachably attached to the frame.

[0022] On the other hand, this application provides an integrated stove, including an integrated stove body and an operating table disposed on the integrated stove body.

[0023] This application provides a control panel and an integrated stove. The control panel provided by this application allows the control panel to slide relative to the frame, enabling it to move to a hidden position and a usable position. When the control panel is in the hidden position, it frees up space for the stove, making it easier for the user to use the stove. When the control panel is in the usable position, it covers the stove, making it easier for the user to use the control panel. The control panel effectively utilizes the space on the stove, thereby reducing wasted space. By employing a drive mechanism, the control panel can slide relative to the frame, eliminating the need for manual sliding by the user, saving manpower, and improving the automation level of the control panel. Attached Figure Description

[0024] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0025] Figure 1 This is a structural schematic diagram of the worktable in its assembled state, as provided in an embodiment of this application.

[0026] Figure 2 for Figure 1 Exploded structural diagram of the central stove, cabinet, and worktable;

[0027] Figure 3 for Figure 1 Structural diagram of the middle frame, operating table, and perforated panel;

[0028] Figure 4 for Figure 3 Exploded view of the first mounting plate, the second mounting plate, and the operating plate;

[0029] Figure 5 for Figure 4 A structural schematic diagram of the central drive mechanism and the control panel viewed from below;

[0030] Figure 6 for Figure 5 A schematic diagram of the structure of the mounting bar and rack.

[0031] Explanation of reference numerals in the attached figures:

[0032] 100. Frame; 110. First mounting plate; 120. Second mounting plate;

[0033] 200. Control panel; 210. Hidden location; 220. Usage location;

[0034] 300. Drive mechanism; 310. Rack; 320. Rotating gear; 330. Drive assembly; 331. Drive gear; 332. Drive component;

[0035] 400. Guide assembly; 410. Mounting strip; 411. Slide groove; 420. Guide bar;

[0036] 500. Connecting plate;

[0037] 600. Perforated board; 610. Connecting bolts;

[0038] 700; stovetop; 710; oven;

[0039] 800. Cabinet body; 810. Removal entrance;

[0040] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0041] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0042] As described in the background art, the integrated stove of the related technology includes a cabinet, a cooktop, and a unit. The cooktop is set on the cabinet and is configured as a gas stove or an induction cooker. The cabinet is used to install a steam oven or a disinfection cabinet. Cabinets are set on both sides of the cabinet. The cabinets are used to store tableware or cooking utensils and can also be used to install a steam oven or a disinfection cabinet.

[0043] However, when the stove is not in use, the knobs and other parts on it can interfere with the placement of utensils or tableware when users place them on the stove, making it impossible for users to utilize the space on the stove and resulting in a waste of space.

[0044] To address the aforementioned technical problems, this application provides an operating table and an integrated stove. When the user does not need to use the stove, a drive component drives a drive gear to rotate, which in turn drives a rotating gear to rotate. This rotating gear drives two racks to move simultaneously away from the cabinet, causing the racks to move two operating panels simultaneously via a connecting plate. The two operating panels abut against each other, moving from a concealed position to a usable position, thus blocking the stove. The user can then place kitchen utensils and tableware on the operating panels, effectively utilizing the stove's space and reducing waste. When the user needs to use the stove, the drive component drives the drive gear to rotate in the opposite direction, causing the racks to move towards the cabinet via the connecting plate. The operating panels move from a usable position to a concealed position, freeing up space for the stove and facilitating its use.

[0045] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.

[0046] Combination Figures 1 to 6 An operating console, comprising:

[0047] Frame 100, which is used to be installed on the cooktop 700 of the integrated stove;

[0048] The control panel 200 is provided with at least one control panel 200, which slides relative to the frame 100 to switch between a hidden position 210 and a used position 220. In the hidden position 210, the control panel 200 is located inside the cabinet 800 of the integrated stove; in the used position 220, the control panel 200 is located above the stove 700.

[0049] A drive mechanism 300 is disposed within the frame 100. The operation plate 200 is connected to the drive mechanism 300, and the drive mechanism 300 is used to drive the operation plate 200 to slide relative to the frame 100.

[0050] In this embodiment, the frame 100 includes a first mounting plate 110 and a second mounting plate 120. The first mounting plate 110 is U-shaped, and the second mounting plate 120 is horizontally sealed within the recess of the U-shaped first mounting plate 110. The first mounting plate 110 is used to mount on the stove 700 and is located at the innermost side of the stove 700. The width of the first mounting plate 110 is smaller than the width of the stove 700. The width of the second mounting plate 120 is the same as the width of the first mounting plate 110. The first mounting plate 110 can be connected by bolts. The first mounting plate 110 is detachably connected to the stove 700; both sides of the first mounting plate 110 extend to the positions of the cabinets 800 on both sides; part of the operating plate 200 is located outside the frame 100 and extends upward toward the stove 700; both sides of the stove 700 are provided with cabinets 800, and the side of the cabinets 800 facing the stove 700 has a sliding door 810, through which the operating plate 200 can be moved into or out of the cabinets 800; an oven 710 is provided at the bottom of the stove 700, and the oven 710 can also be replaced with kitchen equipment such as a disinfection cabinet or a steamer.

[0051] By adopting the above technical solution, the control panel 200 can slide relative to the frame 100, allowing it to move to a hidden position 210 and a usable position 220. When the control panel 200 is in the hidden position 210, it makes room for the stove 700, facilitating user access to the stove 700. When the control panel 200 is in the usable position 220, it covers the stove 700, further facilitating user access to the control panel 200. The control panel 200 effectively utilizes the space on the stove 700, reducing wasted space. Furthermore, the drive mechanism 300 allows the control panel 200 to slide relative to the frame 100, eliminating the need for manual sliding by the user, saving manpower, and improving the automation level of the control panel.

[0052] Combination Figures 1 to 6 The drive mechanism 300 includes:

[0053] At least one rack 310 is provided, the rack 310 slides relative to the frame 100, and the operation plate 200 is connected to the rack 310;

[0054] Rotating gear 320 is rotatably connected to frame 100 and meshes with rack 310;

[0055] The drive assembly 330 is mounted on the frame 100 and is used to drive the rotating gear 320 to rotate.

[0056] In this embodiment, the rack 310 is slidably disposed between the first mounting plate 110 and the second mounting plate 120, and the rotating gear 320 is rotatably disposed on the inner bottom wall of the first mounting plate 110 via a rotating shaft.

[0057] By adopting the above technical solution, when it is necessary to drive the operation panel 200 to move relative to the frame 100, the drive assembly 330 drives the rotating gear 320 to rotate. Because the rack 310 meshes with the rotating gear 320, the rotating gear 320 can drive the rack 310 to move. Because the operation panel 200 is connected to the rack 310, the rack 310 can drive the operation panel 200 to move, thereby switching the operation panel 200 between the hidden position 210 and the used position 220. By using the meshing drive method of the rotating gear 320 and the rack 310, the rotation... The rotating gear 320 and rack 310 can provide very precise position control, making it easy to drive the operating plate 200 to a designated position. The transmission efficiency through the rotating gear 320 is very high with minimal energy loss. Furthermore, the rotating gear 320 and rack 310 have self-locking characteristics, which can maintain their position even without continuous power, thus allowing the operating plate 200 to be fixed in the moved position. The rotating gear 320 and rack 310 can withstand large loads, and can still drive the operating plate 200 even when it is large and heavy.

[0058] Combination Figures 3 to 6 There are two control panels 200. When in the hidden position 210, the two control panels 200 are located inside the cabinets 800 on both sides respectively; when in the use position 220, both control panels 200 are located above the stove 700.

[0059] There are two racks 310, and two operating plates 200 are respectively connected to the two racks 310. The two racks 310 are respectively located on both sides of the rotating gear 320, and the two racks 310 mesh with the rotating gear 320 at the same time to drive the two operating plates 200 to move closer or further apart.

[0060] In this embodiment, the two control panels 200 are located on the same plane, and when the two control panels 200 are close to each other, their edges can abut against each other; the sum of the areas of the two control panels 200 is the same as the area of ​​the stove 700; the length of the rack 310 is the same as the width of the control panel 200 along the length direction of the rack 310; the two racks 310 are arranged opposite to each other, and the rotating gear 320 is located between the two racks 310; one rack 310 is located close to the control panel 200, and the other rack 310 is located away from the control panel 200; the teeth of one rack 310 are arranged towards the direction where the control panel 200 is located, and the teeth of the other rack 310 are arranged towards the direction away from the control panel 200.

[0061] By adopting the above technical solution, by setting two operation panels 200 and two racks 310, the same rotating gear 320 can drive the two racks 310 to move simultaneously. This allows the two racks 310 to simultaneously move the two operation panels 200 closer to or further away from each other, improving the driving effect of the rotating gear 320 and racks 310 on the two operation panels 200. Furthermore, by using two operation panels 200, under the same driving conditions, the two operation panels 200 can move to the hidden position 210 and the used position 220 faster than a single operation panel 200, thereby reducing the user's waiting time for the operation panels 200 to move.

[0062] Combination Figures 3 to 6 The drive assembly 330 includes a drive gear 331 and a drive member 332. The drive gear 331 is rotatably mounted on the frame 100 and meshes with the rotating gear 320. The drive member 332 is mounted on the frame 100 and is used to drive the drive gear 331 to rotate.

[0063] In this embodiment, the drive gear 331 is located between the two racks 310 and on one side of the rotating gear 320. The diameter of the drive gear 331 is smaller than the diameter of the rotating gear 320, thereby preventing interference between the drive gear 331 and the racks 310. The drive component 332 includes a servo motor, which is mounted on the inner bottom wall of the first mounting plate 110. The drive gear 331 is connected to the drive end of the servo motor. The servo motor drives the drive gear 331 to rotate, thereby causing the drive gear 331 to drive the rotating gear 320 to rotate. In other embodiments, the diameter of the drive gear 331 can be larger than the diameter of the rotating gear 320, and the drive component 332 can be replaced with a handle. The handle allows the drive gear 331 to be manually rotated.

[0064] By adopting the above technical solution, the drive component 332 drives the drive gear 331 to rotate, which in turn drives the rotating gear 320 to rotate. This causes the rotating gear 320 to move the two racks 310 closer together or further apart. The arrangement of the drive gear 331 and drive component 332, with the smaller diameter drive gear 331 meshing with the larger diameter rotating gear 320, provides a higher reduction ratio. The high-speed rotation of the motor can be converted into low-speed, high-torque motion of the racks 310. Due to the increased reduction ratio, the system's output torque also increases accordingly, improving the movement of the heavier control panel 200. A higher reduction ratio improves accuracy, making the movement of the racks 310 smoother and more precise. Increasing the reduction ratio reduces the torque required from the motor, allowing for the selection of a smaller, more economical motor. The meshing of the smaller diameter drive gear 331 with the larger diameter rotating gear 320 reduces slippage during meshing, thereby improving transmission efficiency.

[0065] Combination Figures 3 to 6 The control panel also includes a guide assembly 400, which is configured to guide the rack 310 to slide within the frame 100.

[0066] By adopting the above technical solution and by setting the guide component 400, the movement of the rack 310 within the frame 100 can be guided, thereby improving the stability of the rack 310 when moving within the frame 100 and preventing the rack 310 from causing the operating plate 200 to tilt during movement, thus improving the movement effect of the operating plate 200; and the setting of the guide component 400 can also bear the rack 310, thereby indirectly improving the bearing effect of the operating plate 200.

[0067] Combination Figures 3 to 6 The guide assembly 400 includes a mounting strip 410 and a guide strip 420. The mounting strip 410 is disposed within the frame 100. A groove 411 is provided on the mounting strip 410 along its length. The guide strip 420 is snapped into and slidably connected within the groove 411. The rack 310 is connected to the guide strip 420.

[0068] In this embodiment, two mounting strips 410 are provided, with both ends of the mounting strips 410 extending to the positions of the two side cabinets 800. The length of the mounting strip 410 is twice the length of the rack 310. One mounting strip 410 is located near the operation panel 200, and the other mounting strip 410 is located away from the operation panel 200. Slide grooves 411 are provided on the opposite surfaces of the two mounting strips 410, and the slide grooves 411 are provided along the length direction of the mounting strip 410. Two guide strips 420 are provided, and the two guide strips 420 are slidably connected in the slide grooves 411 of the two mounting strips 410 respectively. Two racks 310 are respectively connected to the opposite surfaces of the two guide strips 420.

[0069] By adopting the above technical solution, and by using the mounting strip 410, the slide groove 411, and the guide strip 420, when the rack 310 moves the operating plate 200, the rack 310 can move the guide strip 420 within the slide groove 411, thereby guiding the movement of the operating plate 200 through the slide groove 411 and the guide strip 420, thus indirectly improving the movement effect of the operating plate 200; the structure is simple and easy to manufacture by using the mounting strip 410 and the guide strip 420.

[0070] Combination Figures 3 to 6 The cross-section of the slide groove 411 is set to a "T" shape, and the guide bar 420 is configured to cooperate with the "T" shaped slide groove 411. In this embodiment, one end of the slide groove 411 is provided through the mounting bar 410, which facilitates the removal of the guide bar 420 from the slide groove 411, thereby facilitating the maintenance and replacement of the guide bar 420 and the rack 310. In other embodiments, the cross-section of the slide groove 411 can be set to a dovetail shape, and the guide bar 420 can be configured to cooperate with the dovetail-shaped slide groove 411.

[0071] By adopting the above technical solution, by setting the cross-section of the slide groove 411 to a "T" shape and setting the guide bar 420 in conjunction with the "T" shaped slide groove 411, the guide bar 420 is prevented from separating from the slide groove 411 along the length direction perpendicular to the slide groove 411, thereby further improving the sliding effect of the guide bar 420 in the slide groove 411, thereby indirectly improving the movement effect of the rack 310 and the operating plate 200 in the frame 100.

[0072] Combination Figures 3 to 6 The control panel also includes a connecting plate 500, one end of which is connected to the control panel 200 and the other end is connected to the rack 310. The control panel 200 is connected to the rack 310 through the connecting plate 500.

[0073] In this embodiment, one end of the connecting plate 500 is connected to the bottom surface of the operating plate 200, and the other end is connected to the bottom surface of the rack 310. When the two operating plates 200 are in use, the ends of the two connecting plates 500 connected to the operating plates 200 are located close to each other on the two operating plates 200, and the ends of the two connecting plates 500 connected to the rack 310 are located at the ends of the two racks 310 away from the cabinet 800. When the two racks 310 move toward the cabinet 800 in the two slides 411, the two racks 310 can drive the two operating plates 200 to move to the hidden position 210 inside the cabinet 800.

[0074] By adopting the above technical solution and using the connecting plate 500, it is easy to connect the operating plate 200 and the rack 310, thereby facilitating the movement of the operating plate 200 by driving the rack 310. The connecting plate 500 has a simple structure and is easy to manufacture.

[0075] Combination Figures 1 to 6 The control panel also includes a perforated board 600, which is detachably connected to the frame 100.

[0076] In this embodiment, the perforated plate 600 has multiple hanging holes, which are arranged in a circular shape; the perforated plate 600 is detachably connected to the second mounting plate 120 of the frame 100 by three connecting bolts 610.

[0077] By adopting the above technical solution and using the perforated plate 600, the space on the stove 700 can be further utilized. The perforated plate 600 facilitates the hanging of tableware and kitchen utensils, thereby further reducing the waste of space on the stove 700. By detachably connecting the perforated plate 600 to the frame 100, it is easy to install and remove the perforated plate 600, thereby facilitating the maintenance and replacement of the perforated plate 600.

[0078] This application also provides an integrated stove, including an integrated stove body and an operating table of any of the above embodiments disposed on the integrated stove body.

[0079] The specific structure of the control panel has been described in detail in the above embodiments, and will not be repeated here.

[0080] The integrated stove provided in this application embodiment, by setting up an operating platform, allows the user to rotate the drive gear 331 via the drive component 332 when the stove 700 is not in use. This drive gear 331 then drives the rotating gear 320 to rotate. At this time, the rotating gear 320 drives two racks 310 to move simultaneously away from the cabinet 800. This causes the two racks 310 to move simultaneously via the connecting plate 500, allowing the two operating plates 200 to abut against each other. The two operating plates 200 can then move from the hidden position 210 to the usable position 220, thus blocking the stove. Above the stove 700, the user can place kitchen utensils, tableware, and other items on the control panel 200, thus effectively utilizing the space on the stove 700 and reducing waste. When the user needs to use the stove 700, the drive component 332 drives the drive gear 331 to rotate in the opposite direction, causing the two racks 310 to move the two control panels 200 toward the cabinet 800 via the connecting plate 500. The two control panels 200 can move from the use position 220 to the hidden position 210, thus freeing up space for the use of the stove 700 and making it easier for the user to use the stove 700.

[0081] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the utility models disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this application are indicated by the following claims.

[0082] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

Claims

1. An operating table, characterized in that The utility model relates to an integrated cooker operation plate driving mechanism, including: Frame (100) for setting on the cooking zone (700) of integrated cooker; Operation plate (200) is provided with at least one, operation plate (200) relative frame (100) sliding, between hidden position (210) and use position (220) switching, when hidden position (210), operation plate (200) is located inside the cabinet (800) of integrated cooker;When use position (220), operation plate (200) is located above cooking zone (700); Driving mechanism (300) is arranged in frame (100), operation plate (200) is connected with driving mechanism (300), and driving mechanism (300) is used for driving operation plate (200) relative frame (100) sliding.

2. The operating panel according to claim 1, characterized in that Driving mechanism (300) includes: Rack (310) is provided with at least one, rack (310) relative frame (100) sliding, operation plate (200) is connected with rack (310); Rotary gear (320) is rotatably connected on frame (100), rotary gear (320) is engaged with rack (310); Driving assembly (330) is arranged on frame (100), and driving assembly (330) is used for driving rotary gear (320) rotation.

3. The operating platform according to claim 2, characterized in that Operation plate (200) is provided with two, when hidden position (210), two operation plate (200) is located inside the cabinet (800) of two sides respectively;When use position (220), two operation plate (200) are located above cooking zone (700); Rack (310) is provided with two, two operation plate (200) is connected on two rack (310) respectively, two rack (310) is arranged on the two sides of rotary gear (320) respectively, and two rack (310) is engaged with rotary gear (320) simultaneously, to drive two operation plate (200) mutually close or away.

4. The operating platform of claim 2, wherein, Driving assembly (330) includes driving gear (331) and driving part (332), driving gear (331) is rotatably arranged on frame (100), driving gear (331) is engaged with rotary gear (320), driving part (332) is arranged on frame (100), and driving part (332) is used for driving driving gear (331) rotation.

5. A console according to any one of claims 2 to 4, wherein, It further includes guiding assembly (400), guiding assembly (400) is configured to, the sliding of rack (310) in frame (100) is guided.

6. The operating panel according to claim 5, characterized in that The guiding assembly (400) comprises a mounting strip (410) and a guiding strip (420), the mounting strip (410) is arranged in the frame (100), a sliding groove (411) is arranged on the mounting strip (410) along the length direction of the mounting strip (410), the guiding strip (420) is connected in the sliding groove (411) through clamping and sliding, and the rack (310) is connected with the guiding strip (420).

7. The operating panel according to claim 6, characterized in that The sliding groove (411) is provided with a "T" shape in cross section, the guiding strip (420) is arranged in cooperation with the "T" shaped sliding groove (411), or the sliding groove (411) is provided with a dovetail shape in cross section, and the guiding strip (420) is arranged in cooperation with the dovetail shaped sliding groove (411).

8. A console according to any one of claims 2 to 4, wherein Further comprising a connecting plate (500), one end of the connecting plate (500) is connected with the operation plate (200), and the other end is connected with the rack (310), and the operation plate (200) is connected with the rack (310) through the connecting plate (500).

9. A console according to any one of claims 2 to 4, wherein Further comprising a hole plate (600), the hole plate (600) is detachably connected on the frame (100).

10. An integrated hob, characterized in that The integrated cooker body and the operation table as claimed in any one of claims 1-9 are arranged on the integrated cooker body.