Double-face heating vertical warmer

By combining the frame panel with the first and second heating plates in a double-sided heater design, the problem of complex and unsightly structure of existing electric heaters is solved, providing a thin, beautiful and easy-to-install heating solution.

CN224261805UActive Publication Date: 2026-05-19FOSHAN XINHAORUI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN XINHAORUI TECH CO LTD
Filing Date
2025-07-15
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing electric heaters are complex, bulky, and unattractive, making it difficult to meet the aesthetic design requirements of living rooms and other living spaces.

Method used

It adopts a frame plate structure, combined with the first and second heating plates, and is electrically connected through the main board assembly to achieve double-sided heating. It can also be disassembled into pre-assembled products for easy installation and sales.

Benefits of technology

This invention achieves a slim and aesthetically pleasing double-sided heater with a reliable structure and simple installation, suitable for spaces such as family living rooms, meeting both functional and aesthetic requirements.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224261805U_ABST
    Figure CN224261805U_ABST
Patent Text Reader

Abstract

The utility model provides a double-face heating vertical warmer which comprises a frame plate body, and a first installation position used for installing a flat plate body is arranged on the front side of the frame plate body. A main board mounting space used for positioning and assembling a main board assembly is arranged on the side, corresponding to the first mounting position, of the frame board body, and the main board mounting space communicates with the first mounting position; the frame plate body is provided with a power connection position corresponding to the side of the mainboard mounting space, and the power connection position is communicated with the mainboard space; a second mounting position is arranged on the rear side of the frame plate body, the second mounting position is communicated with the mainboard mounting space, a second heating plate is arranged on the second mounting position, and the second heating plate is electrically connected with the mainboard assembly; and a positioning bracket is arranged on the lower side of the frame plate body. The warmer is combined and arranged based on the structure of the frame plate body, the first heating plate and the second heating plate can be effectively organized, a thin plate-shaped warmer structure is formed by being matched with the installation main plate, and therefore the warmer can replace a traditional warmer of a heavy structure to serve as a furniture product applied to warming in an object.
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Description

Technical Field

[0001] This utility model relates to the field of heater technology, specifically to a vertical heater with double-sided heating. Background Technology

[0002] Current technologies typically use heaters for heating, with electric heaters being the most common type. These heaters are widely used in various civil and public buildings, including residences, offices, hotels, shopping malls, hospitals, schools, train carriages, mobile heating systems, and temporary housing. However, existing electric heating devices often utilize metal or liquid as the heat transfer medium, resulting in complex and bulky structures that are difficult to move and aesthetically unappealing when placed in living rooms.

[0003] The prior art patent document CN 218735046 U discloses a structural design of a novel thin-plate heating element. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a vertical heater with double-sided heating.

[0005] A double-sided vertical heater includes a frame plate. A first mounting position for mounting a flat plate is provided on the front side of the frame plate. A motherboard mounting space for positioning and assembling a motherboard assembly is provided next to the first mounting position on the frame plate, and the motherboard mounting space is connected to the first mounting position. An electrical connection position is provided next to the motherboard mounting space on the frame plate, and the electrical connection position is connected to the motherboard space. A second mounting position is provided on the rear side of the frame plate, and the second mounting position is connected to the motherboard mounting space. A second heating plate is mounted on the second mounting position and electrically connected to the motherboard assembly. A positioning bracket is provided on the lower side of the frame plate.

[0006] Further, the frame body includes: a first frame plate disposed on the front side, with a first mounting position disposed on the front side of the first frame plate; a first mounting cavity disposed on the rear side of the first frame plate corresponding to the first mounting position; the first mounting cavity communicating with the first mounting position; a first connecting structure on the rear side of the first frame plate; a second frame plate disposed on the rear side, with a second mounting cavity disposed on the front side of the second frame plate corresponding to the position of the first mounting cavity, the first mounting cavity and the second mounting cavity combined to form the motherboard mounting space; a second connecting structure on the front side of the second frame plate cooperating with the first connecting structure; the first frame plate and the second frame plate being assembled and connected through the first connecting structure and the second connecting structure; the first frame plate and / or the second frame plate corresponding to the power connection position beside the motherboard mounting space.

[0007] Furthermore, the first mounting position accounts for 85% to 100% of the front end face of the first frame plate.

[0008] Furthermore, the first frame plate is provided with a plurality of first heat dissipation positions through the rear side corresponding to the first mounting position; a connecting channel is provided between the first mounting cavity and its adjacent first heat dissipation positions; a connecting groove is recessed between two adjacent first heat dissipation positions on the first mounting position; and / or, the second frame plate is provided with a second heat dissipation position through the front side corresponding to the second mounting position; a second connecting channel is provided between the second mounting cavity and its adjacent second heat dissipation positions; a second connecting groove is recessed between two adjacent second heat dissipation positions on the second mounting position.

[0009] Furthermore, the power connection position includes a front positioning groove provided on the outer periphery of the first frame plate near the first mounting cavity, and a rear positioning groove provided on the outer periphery of the second frame plate corresponding to the position of the front positioning groove. The front positioning groove and the rear positioning groove are combined to form a power connection installation space. A power connection cable groove is provided on the front side of the second frame plate between the rear positioning groove and the second mounting cavity.

[0010] Furthermore, the first connecting structure includes a plurality of first connecting holes disposed on the outer periphery of the rear side of the first frame plate, and the second connecting structure includes second connecting holes disposed on the second frame plate corresponding to each of the first connecting holes. The first connecting holes and the second connecting holes are connected by screws to realize the assembly connection between the first frame plate and the second frame plate.

[0011] Furthermore, a front mounting opening is provided through the side of the first frame plate corresponding to the first mounting position; a panel positioning groove is provided on the front side of the second frame plate corresponding to the position of the front mounting opening, and the front mounting opening and the panel positioning groove are combined to form a panel mounting space for positioning and assembling the control panel.

[0012] Furthermore, a control groove is provided on the front side of the second frame plate between the second mounting cavity and the panel positioning groove; the control groove is arranged around the outer periphery of the second mounting cavity.

[0013] Furthermore, the positioning bracket includes a support base plate resting on the bottom of the frame plate, the extension dimension of which is adapted to the length extension dimension of the frame plate; clamping brackets are provided at both ends of the support base plate corresponding to the front and rear sides of the frame plate, the clamping spacing of the clamping brackets being adapted to the thickness of the frame plate. A support side plate extends along the front-rear direction on the lower side of the clamping bracket, and a caster wheel is provided on the lower side of the support side plate.

[0014] The beneficial effects of this utility model are as follows:

[0015] The heater is based on a frame-panel structure that effectively organizes the first and second heating plates. Together with the main board, it forms a thin, panel-shaped heater structure, which can replace traditional heavy-duty heaters as a furniture product for heating in living spaces.

[0016] Based on the separate first and second frame panels of the frame body, the first heating plate is pre-assembled with the first frame panel, and the second heating plate is pre-assembled with the second frame panel, enabling the pre-assembled two sets of separate product components for separate packaging and sale. This also gives the heater the characteristics of reliable structure, simple and efficient installation. Attached Figure Description

[0017] Figure 1 This is an exploded view of the heater structure according to Embodiment 1 of this utility model;

[0018] Figure 2 This is a schematic diagram of the support frame structure of Embodiment 1 of this utility model;

[0019] Figure 3 This is an exploded view of the heater structure according to Embodiment 2 of this utility model;

[0020] Figure 4 This is a schematic diagram of the support frame structure of Embodiment 2 of this utility model.

[0021] Figure label:

[0022] Frame plate 1, first mounting position 11, first heat dissipation position 111, connecting channel 112, connecting groove 113, motherboard mounting space 12, power connection position 13, power connection mounting space 131, power connection opening 132, power cable groove 133, panel mounting space 14, control cable groove 141, mounting screw holes 15.

[0023] First frame plate 2, first mounting cavity 21, first connecting structure 22, front positioning groove 23, front mounting opening 24.

[0024] Second frame plate 3, second mounting position 30, second heat dissipation position 301, second connecting channel 302, second connecting groove 303, second mounting cavity 31, second connecting structure 32, rear positioning groove 33, panel positioning groove 34.

[0025] First heating plate 41, second heating plate 42, main board assembly 5, control panel 6, power connection assembly 7, back plate 8, connection opening 81, positioning bracket 9, support base plate 91, clamping bracket 92, support side plate 93, caster wheel 94. Detailed Implementation

[0026] To make the technical solution, purpose and advantages of this utility model clearer, the following explanation is given in conjunction with the accompanying drawings and embodiments.

[0027] like Figures 1 to 4 As shown, this utility model provides a heater with a flat and thin overall structure, which occupies a small space and has a neat and beautiful appearance. It can be used for heating in spaces with specific aesthetic design requirements, such as family living rooms and art gallery exhibition halls.

[0028] In this embodiment, a vertical heater with double-sided heating is provided.

[0029] The heater structure includes a frame plate 1. A first mounting position 11 for mounting a flat plate is provided on the front side of the frame plate 1. A first heating plate 41, also in the shape of a flat plate, is mounted on the first mounting position 11. A main board mounting space 12 is provided beside the first mounting position 11 on the frame plate 1. A main board assembly 5 is positioned and assembled in the main board mounting space 12. The main board mounting space 12 is connected to the first mounting position 11 so that the main board assembly 5 and the first heating plate 41 are electrically connected via wiring. A power connection position 13 is provided beside the main board mounting space 12 on the frame plate 1. The power connection position 13 is connected to the main board mounting space 12 so that the main board assembly 5 extends a power connection terminal to the power connection position 13, thereby meeting the application requirements for external power supply.

[0030] Meanwhile, a second mounting position 30 is provided on the rear side of the frame plate 1. The second mounting position 30 is connected to the motherboard mounting space 12. A second heating plate 42 is provided on the second mounting position 30. The second heating plate 42 is electrically connected to the motherboard assembly 5.

[0031] The first heating plate 41 and the second heating plate 42 used in this embodiment can be a thin plate-shaped heating element of the prior art. Based on the fact that the first heating plate 41 and the second heating plate 42 are installed together on the frame plate 1, and the power is connected to the outside through the power connection position of the main board component 5, the heating plates of the two heating plates can be controlled to generate heat, so that the heating and heating application of the front and back ends of the heater can be realized.

[0032] In a preferred embodiment, a positioning bracket 9 is provided on the lower side of the frame plate 1, and a decorative layer is provided on the surface of the first heating plate 41 and / or the second heating plate 42. The positioning bracket 9 allows the heater to be installed vertically, with the heating ends of the first heating plate 41 and the second heating plate 42 facing each other, ensuring the application of a double-sided heating structure. Simultaneously, the front end of the first heating plate 41 or the second heating plate 42 can be designed with decorative patterns, making the heater structure resemble a decorative screen, thus satisfying the need for concealed installation in home spaces, art galleries, etc., maximizing both functional and aesthetic design requirements.

[0033] In this embodiment, the frame plate 1 is structurally configured as follows:

[0034] The frame plate 1 is rectangular in shape, matching the structural shapes of the first heating plate 41 and the second heating plate 42, achieving a "narrow frame" simulation as a structural design application for a screen mural. Taking the installation of the first heating plate 41 as an example: the first mounting position 11 can occupy 85% to 100% of the front end face of the frame plate 1. In this embodiment, the first mounting position 11 (first heating plate 41) occupies 90% of the front side of the frame plate 1; after the first heating plate 41 is installed in the first mounting position 11, the front end face of the first heating plate 41 is flush with the frame plate 1; the first heating plate 41 is fixedly connected to the first mounting position 11 by adhesive.

[0035] The first mounting position 11 (first heating plate 41) is positioned on the side of the frame plate 1 along its length relative to the front side, while a motherboard mounting space 12 is provided on the other side of the frame plate 1 along its length. The frame plate 1 has several first heat dissipation positions 111 extending through the rear side of the first mounting position 11. A connecting channel 112 connects the motherboard mounting space 12 with its adjacent first heat dissipation positions 111. A connecting groove 113 is recessed on the first mounting position 11 between two adjacent first heat dissipation positions 111. The connecting channel 112 allows for the electrical connection of the motherboard component 5 wiring in the motherboard mounting space 12 to the lead wires of the first heating plate 41 located on the first mounting position 11. The connecting groove 113 accommodates the external wiring requirements that the first heating plate 41 may have. As a further design approach, the position of the connecting slot 113 will correspond to the position of the connecting channel 112 in the horizontal direction. In this way, when the first heating plate 41 with segmented heating is applied, the lead wire from the main board component 5 can be connected to the local heating potential of the corresponding first heating plate 41 across the length direction through the corresponding connecting slot 113, so as to realize the heating and heating needs of the first heating plate 41 with multiple local heating points in the heater.

[0036] The power connection position 13 includes a power connection installation space 131 located beside the first mounting position 11 for positioning and assembling the power connection component 7. The power connection installation space 131 is located on the other side of the frame plate 1 along its length and below the main board mounting space 12. The power connection installation space 131 has a power connection opening 132 on the outer periphery of the frame plate 1. The frame plate 1 has a power connection cable groove 133 connecting the main board mounting space 12 and the power connection installation space 131. The power connection position 13 is designed to allow the insertion of an independent power connection component 7 through the power connection installation space 131, and to set the power connection end of the power connection component 7 to the external power connection opening 132, so as to meet the power connection conversion requirements of different external power supply specifications and make the heater more adaptable to the power connection environment.

[0037] As an optional structural implementation, in this embodiment, a control panel 6 can also be provided on the frame plate 1 of the heater, allowing the user to operate the main board assembly 5 to link with the first heating plate 41 to perform heating operations in different modes via the control panel 6. A panel mounting space 14 for positioning and assembling the control panel 6 is provided on the side of the frame plate 1 corresponding to the first mounting position 11. Specifically, the panel mounting space 14 is located above the first mounting position 11 and close to the main board mounting space 12. A control cable groove 141 is provided on the frame plate 1, connecting the main board mounting space 12 and the panel mounting space 14, and the control cable groove 141 is arranged around the periphery of the first mounting position 11. Through the control cable groove 141, the control panel 6 and the main board assembly 5 can be electrically connected via wiring.

[0038] As a simple installation structure, the second heating plate 42 can be embedded in a frame back plate 8 for assembly onto the frame plate 1. Specifically, the frame plate 1 has multiple mounting screw holes 15 on its rear side, the outer diameter of the frame back plate 8 is adapted to the frame plate 1, and the frame back plate 8 has multiple connecting openings 81 corresponding to each mounting screw hole 15. The mounting screw holes 15 and the connecting openings 81 are connected by screws to achieve the assembly connection between the frame plate 1 and the frame back plate 8.

[0039] The positioning bracket 9 includes a support base plate 91 supported at the bottom of the frame plate 1, the extension dimension of which is adapted to the length extension dimension of the frame plate 1; clamping brackets 92 are provided at both ends of the support base plate 91 corresponding to the front and rear sides of the frame plate 1, the clamping spacing of the clamping brackets 92 is adapted to the thickness of the frame plate 1 (the first frame plate 2 and the second frame plate 3 are connected and combined). A support side plate 93 extends along the front and rear direction on the lower side of the clamping bracket 92 to form effective support for the frame plate 1; universal wheels 94 are provided on the lower side of the support side plate 93, and four sets of universal wheels 94 are arranged at the four corners to facilitate the overall turning and movement of the heater.

[0040] Example 2:

[0041] In this embodiment, for the purpose of easy assembly and simple installation and maintenance of products for sales applications, a frame plate 1 is provided with an overall structure that can be disassembled into two parts.

[0042] The frame body includes: a first frame plate 2 located on the front side, with a first mounting position 11 on the front side of the first frame plate 2; a first mounting cavity 21 located on the rear side of the first frame plate 2, corresponding to the first mounting position 11; the first mounting cavity 21 communicating with the first mounting position 11; a first connecting structure 22 on the rear side of the first frame plate 2; a second frame plate 3 located on the rear side, with a second mounting cavity 31 located on the front side of the second frame plate 3 corresponding to the position of the first mounting cavity 21; the first mounting cavity 21 and the second mounting cavity 31 combined to form the motherboard mounting space 12; a second connecting structure 32 on the front side of the second frame plate 3 cooperating with the first connecting structure 22; the first frame plate 2 and the second frame plate 3 are assembled and connected through the first connecting structure 22 and the second connecting structure 32; the first frame plate 2 and / or the second frame plate 3 correspond to the power connection position 13 on the side of the motherboard mounting space 12.

[0043] Based on the structural design of the first frame plate 2 and the second frame plate 3, the installation requirements of the main board assembly 5 can be met by connecting the first frame plate 2 and the second frame plate 3. Simultaneously, in product processing and sales, the first frame plate 2 can be connected and assembled with the first heating plate 41 first, and the second frame plate 2 can be connected and assembled with the second heating plate 42 first. This allows the corresponding frame plates and heating plates to be pre-assembled into an integrated product component for packaging and sale. Users can then simply connect the main board assembly 5, control panel 6, and power connection component 7, insert them into the corresponding installation space between the first frame plate 2 and the second frame plate 3, and then connect the first connection structure 22 and the second connection structure 32 to complete the overall assembly of the heater body. This design features reliable structure and simple, efficient installation. Furthermore, as independent pre-assembled products, the first heating plate 41 and the second heating plate 42 can be decorated with corresponding painted patterns and decorative designs according to actual needs, allowing users to choose and assemble them independently, making it more suitable for market sales applications.

[0044] Specifically, the first frame plate 2 has a plurality of first heat dissipation positions 111 extending through the rear side of the first mounting position 11; a connecting channel 112 is provided between the first mounting cavity 21 and its adjacent first heat dissipation positions 111; a connecting groove 113 is recessed between two adjacent first heat dissipation positions 111 on the first mounting position 11; and the second frame plate 3 has a second heat dissipation position 301 extending through the front side of the second mounting position 30; a second connecting channel 302 is provided between the second mounting cavity 31 and its adjacent second heat dissipation positions 301; a second connecting groove 303 is recessed between two adjacent second heat dissipation positions 301 on the second mounting position 30. The design and application principle of the corresponding second connecting channel 302 and second connecting groove 303 is the same as that of the connecting channel 112 and connecting groove 113, and the purpose is to connect the contact potentials of different heat dissipation areas on the motherboard assembly 5 and the corresponding second heating plate 42, so as to realize the application of heat control for different positions on different heating plates.

[0045] The power connection position 13 comprises a front positioning groove 23 located on the outer periphery of the first frame plate 2 near the first mounting cavity 21, and a rear positioning groove 33 located on the outer periphery of the second frame plate 3 corresponding to the front positioning groove 23. The front positioning groove 23 and the rear positioning groove 33 together form a power connection installation space 131. The power connection groove 133 is provided on the front side of the second frame plate 3 between the rear positioning groove 33 and the second mounting cavity 31, thus satisfying the application requirements for installing the power connection component 7 on the joined first frame plate 2 and second frame plate 3.

[0046] The first frame plate 2 has a through front mounting opening 24 on the side corresponding to the first mounting position 11; the second frame plate 3 has a panel positioning groove 34 on its front side corresponding to the position of the front mounting opening 24. The front mounting opening 24 and the panel positioning groove 34 are combined to form a panel mounting space 14 for positioning and assembling the control panel 6. In this structural design, the first frame plate 2 and the second frame plate 3 are joined together to meet the application requirements for mounting the control panel 6, and the control end face of the control panel 6 faces the front side for application.

[0047] The control wire groove 141 is provided on the front side of the second frame plate 3 between the second mounting cavity 31 and the panel positioning groove 34; the control wire groove 141 is arranged around the outer periphery of the second mounting cavity 31; to meet the wiring application requirements between the control panel 6 and the motherboard assembly 5 in the joined first frame plate 2 and second frame plate 3.

[0048] The first connecting structure 22 includes a plurality of first connecting holes disposed on the outer periphery of the rear side of the first frame plate 2, and the second connecting structure 32 includes second connecting holes disposed on the second frame plate 3 corresponding to each of the first connecting holes. The first connecting holes and the second connecting holes are connected by screws to realize the assembly connection between the first frame plate 2 and the second frame plate 3, thereby satisfying the installation and joining requirements of the first frame plate 2 and the second frame plate 3.

[0049] The above description is only a preferred embodiment of the present utility model. For those skilled in the art, modifications can still be made to the embodiments without departing from the first principle of the present utility model, and the corresponding modifications should also be considered within the protection scope of the present utility model.

Claims

1. A vertical heater with double-sided heating, characterized in that, The device includes a frame plate, with a first mounting position on the front side for mounting a flat panel; a motherboard mounting space for positioning and assembling a motherboard assembly is provided on the side of the frame plate corresponding to the first mounting position, and the motherboard mounting space is connected to the first mounting position; a power connection position is provided on the side of the frame plate corresponding to the motherboard mounting space, and the power connection position is connected to the motherboard space; a second mounting position is provided on the rear side of the frame plate, and the second mounting position is connected to the motherboard mounting space, with a second heating plate disposed on the second mounting position and electrically connected to the motherboard assembly; and a positioning bracket is provided on the lower side of the frame plate.

2. The vertical heater as described in claim 1, characterized in that, The framework itself includes: A first frame plate is located on the front side, and a first mounting position is provided on the front side of the first frame plate; a first mounting cavity is provided on the rear side of the first frame plate next to the first mounting position; the first mounting cavity communicates with the first mounting position; and a first connecting structure is provided on the rear side of the first frame plate. A second frame plate is located on the rear side, and a second mounting cavity is provided on the front side of the second frame plate corresponding to the position of the first mounting cavity. The first mounting cavity and the second mounting cavity are combined to form the motherboard mounting space. The front side of the second frame plate has a second connecting structure that cooperates with the first connecting structure. The first frame plate and the second frame plate are assembled and connected through the first connecting structure and the second connecting structure. The first frame plate and / or the second frame plate correspond to the power connection position next to the motherboard mounting space.

3. The vertical heater as described in claim 2, characterized in that, The first mounting position accounts for 85% to 100% of the front end face of the first frame plate.

4. The vertical heater as described in claim 2, characterized in that, The first frame plate has a plurality of first heat dissipation positions extending through the rear side corresponding to the first mounting position; a connecting channel is provided between the first mounting cavity and its adjacent first heat dissipation positions; a connecting groove is recessed between two adjacent first heat dissipation positions on the first mounting position; and / or The second frame plate has a second heat dissipation position through the front side of the second mounting position; the second mounting cavity is connected to the adjacent second heat dissipation position by a second connecting channel; and a second connecting groove is recessed between two adjacent second heat dissipation positions on the second mounting position.

5. The vertical heater as described in claim 2, characterized in that, The power connection position includes a front positioning groove on the outer periphery of the first frame plate near the first mounting cavity, and a rear positioning groove on the outer periphery of the second frame plate corresponding to the position of the front positioning groove. The front positioning groove and the rear positioning groove together form a power connection installation space. A power connection cable groove is provided on the front side of the second frame plate between the rear positioning groove and the second mounting cavity.

6. The vertical heater as described in claim 2, characterized in that, The first connection structure includes a plurality of first connection holes disposed on the outer periphery of the rear side of the first frame plate, and the second connection structure includes second connection holes disposed on the second frame plate corresponding to each of the first connection holes. The first connection holes and the second connection holes are connected by screws to realize the assembly connection between the first frame plate and the second frame plate.

7. The vertical heater as described in claim 2, characterized in that, The first frame plate has a through front mounting opening on the side corresponding to the first mounting position; the front side of the second frame plate has a panel positioning groove corresponding to the position of the front mounting opening, and the front mounting opening and the panel positioning groove are combined to form a panel mounting space for positioning and assembling the control panel.

8. The vertical heater as described in claim 7, characterized in that, A control line groove is provided on the front side of the second frame plate between the second mounting cavity and the panel positioning groove; the control line groove is arranged around the outer periphery of the second mounting cavity.

9. The vertical heater as described in any one of claims 1 to 8, characterized in that, The positioning bracket includes a support base plate that is supported at the bottom of the frame plate, the extension dimension of the support base plate being adapted to the length extension dimension of the frame plate; clamping brackets are provided at both ends of the support base plate corresponding to the front and rear sides of the frame plate, the clamping spacing of the clamping brackets being adapted to the thickness of the frame plate; a support side plate is provided on the lower side of the clamping bracket along the front and rear direction, and a caster wheel is provided on the lower side of the support side plate.