Distribution panel structure of apartment building with enhanced earthquake resistance
Patent Information
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2026-08-12
Smart Images

Figure 112024073421265-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a multi-functional switchboard structure with enhanced seismic resistance for multi-unit residential buildings, and more specifically, to a multi-functional switchboard structure with enhanced seismic resistance for multi-unit residential buildings that protects the multi-functional switchboard by means of a lower elastic cushioning panel and a lifting seismic protection means to prevent the multi-functional switchboard from moving due to external force or impact, and cushions the transmission of impact to power equipment installed inside the multi-functional switchboard, thereby preventing damage to the multi-functional switchboard and power equipment, reducing maintenance costs and time associated with damage to the multi-functional switchboard and power equipment, and preventing safety accidents such as leakage current caused by damage. Background Technology
[0003] Generally, a multi-functional distribution panel is a device that receives power distributed and supplied from a substation via the relevant lines and safely distributes and sends electrical energy to locations requiring it; when communication functions, leakage detection functions, and other features are added to such a device, it is called a multi-functional distribution panel.
[0004] A multi-functional distribution panel is equipped with various power devices or electrical equipment, including transformers, switches, lightning arresters, power fuses, converters, circuit breakers, detectors, and computerized power meters, installed inside a relatively small cubicle enclosure, and includes a structure for attaching and supporting these devices, as well as conductors for connecting or linking each device.
[0005] These multi-functional distribution panels are installed on the ground or a wall (hereinafter referred to as "ground"), and vibrations or shocks caused by external forces or earthquakes are transmitted or moved (changed location), which can damage the multi-functional distribution panel or cause various devices installed inside to be damaged or short-circuited, resulting in interruption of power supply or leakage, and in severe cases, fire. Additionally, there is a persistent problem of excessive costs and time required for the maintenance of multi-functional distribution panels damaged by external vibrations or shocks.
[0006] The aforementioned invention refers to background technology in the technical field to which the present invention belongs, and does not refer to prior art. The problem to be solved
[0008] The present invention was devised to solve the aforementioned conventional problems, and the purpose of the present invention is to provide a multi-functional switchboard structure with enhanced seismic resistance for multi-unit residential buildings, which protects the multi-functional switchboard by means of a lower elastic cushioning panel and a lifting seismic protection means to prevent the multi-functional switchboard from moving or being damaged by vibration or impact caused by external forces, and cushions or weakens or eliminates the transmission of impact to power equipment installed inside the multi-functional switchboard, thereby preventing or avoiding damage to the multi-functional switchboard and power equipment, reducing maintenance costs and time due to damage to the multi-functional switchboard and power equipment, and preventing safety accidents such as leakage current caused by damage. means of solving the problem
[0010] The present invention is a multi-functional distribution panel structure configured to protect a multi-functional distribution panel that supplies electricity to a multi-unit building, comprising: a ground guide support panel disposed on the ground; a lower elastic cushioning panel fixed by connecting its lower surface to the upper surface of the ground guide support panel; a base connection support panel fixed by connecting its lower surface to the upper surface of the lower elastic cushioning panel fastened to the ground guide support panel; a multi-functional distribution panel fixed by connecting its upper surface to the base connection support panel fastened to the lower elastic cushioning panel; a mounting fixing frame disposed to surround the lower part of the multi-functional distribution panel, with its lower end connected to the upper surface of the base connection support panel and fixed thereto; a safety detection transmission means fixed by connecting it to the upper surface of the base connection support panel and detecting the status of the multi-functional distribution panel; and a lifting support protection means fixed by connecting it to the upper surface of the ground guide support panel.
[0011] In addition, the safety detection transmission means comprises a guide shaft, the lower end of which is connected and fixed to the base connection support panel connected to the lower elastic cushioning panel; a detection sensor, the lower end of which is connected and fixed to the guide shaft connected to the base connection support panel; and a transmitter and receiver, the upper surface of the base connection support panel, which receives and transmits a detection signal from the detection sensor. The lifting support protection means comprises a guide support shaft, the lower end of which is connected and fixed to the upper surface of the ground guide support panel; a guide horizontal shaft, the upper end of which is connected and fixed to the upper end of the guide support shaft connected to the ground guide support panel; a fixing bracket, the upper end of which is connected and fixed to the other end of the guide horizontal shaft connected to the guide support shaft; a lifting protection cylinder, the lower end of which is connected and fixed to the guide horizontal shaft; a lifting connection bracket, the upper end of which is connected and fixed to the lifting axis of the lifting protection cylinder connected to the fixing bracket; and the The upper surface of the upper portion of the lifting connection bracket connected to the lifting protection cylinder is connected and fixed, and the protective support frame member is formed to be raised and lowered by the driving of the lifting protection cylinder, so that the protective support frame member is raised and lowered by the driving of the lifting protection cylinder to surround and position the multi-functional distribution panel, and the ground guide support panel is further provided with a means for guiding the safety situation of the multi-functional distribution panel structure to transmit a danger signal when an emergency occurs during the installation process. Effects of the invention
[0013] The multi-functional switchboard structure with enhanced seismic (vibration-proof) function for multi-unit residential buildings according to the present invention protects the multi-functional switchboard by means of a lower elastic buffer panel and a lifting seismic protection means, thereby preventing the multi-functional switchboard from moving due to external forces or impacts and cushioning the transmission of impacts to power equipment installed inside the multi-functional switchboard. This prevents damage to the multi-functional switchboard and power equipment, reduces maintenance costs and time associated with such damage, and has the effect of preventing safety accidents such as electrical leakage caused by damage. Brief explanation of the drawing
[0015] FIG. 1 is a drawing showing a multi-functional distribution panel structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 2 is an operational state diagram showing a multi-functional distribution panel structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 3 is a cross-sectional view showing a multi-functional distribution panel structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 4 is a diagram showing the fastening state of a multi-functional distribution panel structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 5 is a plan view showing a multi-functional distribution panel structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 6 is an installation diagram showing a multi-functional distribution panel structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 7 is a drawing showing a multi-functional distribution panel structure safety status guidance means of a multi-functional distribution panel structure with reinforced seismic resistance function for a multi-unit residential building according to the present invention. FIG. 8 is a conceptual diagram showing a multi-functional distribution panel structure safety status guidance means of a multi-functional distribution panel structure with reinforced seismic resistance function for a multi-unit residential building according to the present invention. Specific details for implementing the invention
[0016] The description of the present invention is merely an example for structural or functional explanation, and therefore the scope of the present invention should not be interpreted as being limited by the examples described in the text. That is, since the examples may be modified in various ways and may take various forms, the scope of the present invention should be understood to include equivalents capable of realizing the technical concept.
[0017] Meanwhile, the meaning of the terms described in this invention should be understood as follows.
[0018] Terms such as "first," "second," etc., are intended to distinguish one component from another, and the scope of rights shall not be limited by these terms. For example, the first component may be named the second component, and similarly, the second component may be named the first component.
[0019] When it is stated that one component is "connected" to another component, it should be understood that while it may be directly connected to that other component, there may also be other components in between. Conversely, when it is stated that one component is "directly connected" to another component, it should be understood that there are no other components in between. Meanwhile, other expressions describing the relationships between components, such as "between" and "exactly between," or "adjacent to" and "directly adjacent to," should be interpreted in the same way.
[0020] A singular expression should be understood to include a plural expression unless the context clearly indicates otherwise, and terms such as "include" or "have" are intended to specify the existence of the implemented features, numbers, steps, actions, components, parts, or combinations thereof, and should be understood not to preclude the existence or addition of one or more other features, numbers, steps, actions, components, parts, or combinations thereof.
[0021] In each step, identifiers (e.g., a, b, c, etc.) are used for convenience of explanation and do not describe the order of the steps; the steps may occur differently from the specified order unless a specific order is clearly indicated in the context. That is, the steps may occur in the same order as specified, may be performed substantially simultaneously, or may be performed in the reverse order.
[0022] Unless otherwise defined, all terms used herein have the same meaning as generally understood by those skilled in the art to which this invention pertains. Terms defined in commonly used dictionaries should be interpreted as having meanings consistent with the context of the relevant technology and should not be interpreted as having an ideal or overly formal meaning unless explicitly defined in this invention.
[0024] FIG. 1 is a drawing showing a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 2 is an operational state diagram showing a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 3 is a cross-sectional view showing a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 4 is a fastening state diagram showing a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 5 is a plan view showing a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 6 is an installation state diagram showing a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 7 is a drawing showing a multi-functional switchboard structure safety status guidance means of a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention. FIG. 8 is a conceptual diagram showing a multi-functional switchboard structure safety status guidance means of a multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building according to the present invention.
[0025] As shown in the drawing, the multi-functional distribution panel structure (10) with enhanced seismic resistance of the present invention (hereinafter referred to as the multi-functional distribution panel structure for convenience of explanation) is a multi-functional distribution panel structure (10) designed to protect a multi-functional distribution panel (50) that supplies electricity to a multi-functional building. Accordingly, such a multi-functional distribution panel structure (10) is composed of a ground guide support panel (20), a lower elastic cushioning panel (30), a base connection support panel (40), a multi-functional distribution panel (50), a mounting fixing frame (60), a safety detection transmission means (70), and a lifting support protection means (80).
[0026] The above ground guide support panel (20) is placed on the ground.
[0027] The above ground guide support panel (20) is made of synthetic resin or metal and is placed on the ground.
[0028] The above ground guide support panel (20) can also be fixed by fastening it to an anchor bolt installed on the ground.
[0029] The lower elastic cushioning panel (30) is fixed by connecting its bottom surface to the upper surface of the ground guide support panel (20).
[0030] The lower elastic cushioning panel (30) is fixed by attaching its bottom surface to the upper surface of the ground guide support panel (20) or by screw fastening.
[0031] The lower elastic cushioning panel (30) is formed from a synthetic resin material having elasticity.
[0032] That is, the elasticity of the lower elastic cushioning panel (30) cushions the transmission of external force or shock caused by an earthquake to the multi-functional distribution panel (50).
[0033] The base connection support panel (40) is fixed by connecting its bottom surface to the upper surface of the lower elastic cushioning panel (30) which is connected to the ground guide support panel (20).
[0034] The above base connection support panel (40) is made of synthetic resin material and is fixed by attaching its bottom surface to the upper surface of the lower elastic cushioning panel (30) or by screw fastening.
[0035] The above base connection support panel (40) can also be formed from a metal material.
[0036] The above multi-functional distribution panel (50) is connected and fixed to the upper surface of the base connection support panel (40) which is fastened to the lower elastic cushioning panel (30).
[0037] The above multi-functional distribution panel (50) is fixed by being screwed or attached to the upper surface of the base connection support panel (40) at its lower end.
[0038] The above-mentioned mounting fixing frame (60) is positioned to surround the lower part of the multi-functional distribution panel (50), the lower end of which is connected and fixed to the upper surface of the base connection support panel (40).
[0039] The above-mentioned mounting fixing frame (60) is formed as a square frame structure, and its lower end is fixed by being screw-fastened or attached to the upper surface of the above-mentioned base connection support panel (40).
[0040] The lower part of the multi-functional distribution panel (50) is fitted into the above-mentioned mounting fixing frame (60), and the mounting fixing frame (60), which is positioned to surround the lower part of the multi-functional distribution panel (50), improves the support and fixing strength of the multi-functional distribution panel (50) and cushions the shock transmitted from the outside.
[0041] The above safety detection transmission means (70) is connected to and fixed to the upper surface of the base connection support panel (40) and detects the status of the multi-functional distribution panel (50).
[0042] The above safety detection transmission means (70) comprises a guide shaft (71) whose lower end is fixed by screw fastening to the base connection support panel (40) connected to the lower elastic cushioning panel (30), a detection sensor (72) which is attached to or fixed by screw fastening to the guide shaft (71) connected to the base connection support panel (40), and a transmitter / receiver (73) which is fixed by screw fastening to the upper surface of the base connection support panel (40) and receives and transmits a detection signal from the detection sensor (72).
[0043] The above detection sensor (72) detects heat and leakage caused by overheating in the above multi-functional distribution panel (50) and transmits a detection signal to the transmitter / receiver (73), and the transmitter / receiver (73) transmits the detection signal to the outside so that rapid maintenance can be performed, thereby preventing fire and safety accidents from occurring.
[0044] The above lifting support protection means (80) is connected to and fixed to the upper surface of the ground guide support panel (20).
[0045] The above lifting support protection means (80) comprises: a guide support shaft (81) with its lower end screw-fastened and fixed to the upper surface of the ground guide support panel (20); a guide horizontal shaft (82) with one end screw-fastened and fixed to the upper end of the guide support shaft (81) connected to the ground guide support panel (20); a fixing bracket (83) with its upper end screw-fastened and fixed to the other end of the guide horizontal shaft (82) connected to the guide support shaft (81); a lifting protection cylinder (84) with its lower end screw-fastened and fixed to the lower end of the fixing bracket (83) connected to the guide horizontal shaft (82); a lifting connection bracket (85) with its upper end screw-fastened and fixed to the lifting axis of the lifting protection cylinder (84) connected to the fixing bracket (83); and the above The upper surface is connected to and fixed to the lower part of the lifting connection bracket (85), and the protective support frame member (86) is raised by the driving of the lifting protection cylinder (84). By causing the protective support frame member (86) to be raised by the driving of the lifting protection cylinder (84) and positioned to surround the multi-functional distribution panel (50), the multi-functional distribution panel (50) is prevented from moving due to external forces and vibrations and shocks caused by earthquakes, and the multi-functional distribution panel (50) is prevented from falling to the ground while being separated from the base connection support panel (40), and the fixing and supporting power of the multi-functional distribution panel (50) is improved.
[0046] In addition, the shock transmitted from the outside is cushioned by the above protective support frame member (86).
[0047] At this time, a position sensor is further attached to the multi-functional distribution panel (50) to detect movement, so that when the multi-functional distribution panel (50) moves due to an external force, the position sensor transmits a detection signal to the lifting protection cylinder (84) to drive it.
[0048] Here, the protective support frame member (86) moves downward when the multi-functional switchboard (50) moves to surround and support the multi-functional switchboard (50), and it is also possible to initially position it in a state where it surrounds and supports the multi-functional switchboard (50), and then raise it upward to separate it from the multi-functional switchboard (50) during inspection.
[0049] It is preferable to further attach and fix an elastic cushioning support panel made of a synthetic resin material having elasticity on its inner surface to the above protective support frame member (86), thereby supporting the outer surface of the multi-functional distribution panel (50) by the elasticity of the elastic cushioning support panel to cushion the transmission of impact, prevent friction, and prevent friction noise caused by friction.
[0050] It is desirable to further fix a vibrator, which is a vibrator, to the outer surface of the protective support frame member (86) by screwing it in, so that the vibration of the vibrator is transmitted to the protective support frame member (86), thereby preventing the protective support frame member (86) or the elastic cushioning support panel from getting caught on the multi-functional distribution board (50) during the lifting process, and to remove foreign matter or moisture attached to the outer surface of the protective support frame member (86) to reduce the time and cost associated with maintenance.
[0051] It is preferable to further screw-fasten a sensing transfer cylinder to the ground guide support panel (20) and screw-fasten the guide shaft (71) to the drive shaft of the sensing transfer cylinder so that the guide shaft (71) and the sensing sensor (72) move and sense by the driving of the sensing transfer cylinder, thereby expanding the sensing range.
[0052] It is preferable to further attach and fix an elastic pressure support panel made of an elastic synthetic resin material to the inner surface of the above-mentioned mounting fixing frame (60), thereby pressing the outer surface of the above-mentioned multi-functional distribution panel (50) fitted into the above-mentioned mounting fixing frame (60) by the elasticity of the elastic pressure support panel, so as to cushion the transmission of shock and improve the fixing and supporting forces.
[0053] It is preferable to form an operating groove on the upper surface of the base connection support panel (40), and to fix the discharge transfer cylinder by inserting it into the operating groove and fastening it with a screw, thereby allowing the multi-functional distribution panel (50) fitted into the mounting fixing frame (60) to be lifted and moved by the driving of the discharge transfer cylinder, so as to facilitate easy replacement and maintenance.
[0054] The above ground guide support panel (20) is further provided with a multi-functional distribution panel structure safety situation guidance means (90) to transmit a danger signal when an emergency occurs during the installation process.
[0055] The above multi-functional switchboard structure safety status guidance means (90) comprises: a connection fixing module unit (91) fixed by screwing to the ground guide support panel (20); a pair of guide shafts (92) with their lower ends connected and fixed to the upper surface of the connection fixing module unit (91); a transfer module part (93) composed of a first panel transfer module (931), a second panel transfer module (932), and a third panel transfer module (933) that are fitted through the guide shaft (92) and guided along the guide shaft (92); a first lifting guide unit (941) with its lower end fixed by screwing to the upper surface of the connection fixing module unit (91) and its lifting shaft fixed by screwing to the lower surface of the first panel transfer module (931); and a lower end on the upper surface of the first panel transfer module (931). A lifting guide unit (94) comprising a second lifting guide unit (942) which is fixed by screw fastening and whose lifting shaft is fixed by screw fastening to the bottom surface of the second panel transfer module (932), and a third lifting guide unit (943) which has its lower end fixed by screw fastening to the top surface of the second panel transfer module (932) and whose lifting shaft is fixed by screw fastening to the bottom surface of the third panel transfer module (933); first rotation guide units (951) which are fixed by screw fastening to the bottom surface of the first panel transfer module (931) and whose first rotation module unit (951-1) is screw fastened to the rotation axis; and second rotation guide units (952) which are fixed by screw fastening to the bottom surface of the second panel transfer module (932) and whose second rotation module unit (952-1) is screw fastened to the rotation axis. A rotation guide section (95) composed of third rotation guide units (953) that are screw-fastened and fixed to the bottom surface of the third panel transfer module (933) and have a third rotation module unit (953-1) screw-fastened to the rotation axis, a first situation shooting unit (961) that is screw-fastened and fixed to the bottom surface of the first rotation module unit (951-1), a second situation shooting unit (962) that is screw-fastened and fixed to the bottom surface of the second rotation module unit (952-1), and a situation shooting section (96) composed of third situation shooting units (963) that are screw-fastened and fixed to the bottom surface of the third rotation module unit (953-1), and a connection fixing module unit (91) that is screw-fastened and fixed,It comprises a control unit (97) that is electrically connected to and controls the lifting guide unit (94) and the rotation guide unit (95) and receives shooting information from the first situation shooting unit (961), the second situation shooting unit (962), and the third situation shooting unit (963); a transmitting and receiving unit (98) that is screw-fastened and fixed to the third panel transfer module (933) and transmits the shooting information from the first situation shooting unit (961), the second situation shooting unit (962), and the third situation shooting unit (963) transmitted from the control unit (97); and a status guide speaker (99) that is screw-fastened and fixed to the third panel transfer module (933) and receives a signal from the control unit (97) to provide voice guidance or generate an alarm.
[0056] The above-mentioned connecting fixing module unit (91) is made of a panel structure formed of metal and is placed on the ground.
[0057] The first panel transfer module (931), the second panel transfer module (932), and the third panel transfer module (933) are formed of metal or synthetic resin panels, and a transfer hole is formed so as to be inserted through the guide shaft (92).
[0058] The first lifting guide unit (941), the second lifting guide unit (942), and the third lifting guide unit (943) are cylinders, the first rotation guide unit (951), the second rotation guide unit (952), and the third rotation guide unit (953) are motors, and the first situation shooting units (961), the second situation shooting units (962), and the third situation shooting unit (963) are cameras.
[0059] In addition, the first rotation module unit (951-1), the second rotation module unit (952-1), and the third rotation module unit (953-1) are formed as circular or square panel structures.
[0060] The first situation shooting unit (961), the second situation shooting unit (962), and the third situation shooting unit (963) can change their height by driving the first elevator guide unit (941), the second elevator guide unit (942), and the third elevator guide unit (943), and can photograph the ground or the site conditions or hazards on the ground.
[0061] The above control unit (97) receives a signal received by the above transmission and reception unit (98) through the administrator terminal and controls the above status guide speaker (99) to transmit voice or generate an alarm.
[0062] That is, after recognizing the dangerous situation of the phenomenon through the above-mentioned shooting information, a danger signal is transmitted through the above-mentioned status guidance speaker (99) to prevent safety accidents at the site.
[0063] In addition, the control unit (97) receives a signal received by the transmitting and receiving unit (98) through the administrator terminal and controls the operation of the lifting guide unit (94) and the rotation guide unit (95), thereby enabling the position of the first situation shooting unit (961), the second situation shooting unit (962), and the third situation shooting unit (963) to be changed.
[0065] Although the present invention has been described in detail so far, it should be made clear that the embodiments mentioned in the process are merely illustrative and not limiting, and that modifications to components that can be equivalently substituted within the scope of the technical spirit or field of the present invention provided by the following claims shall be considered to be within the scope of the present invention. Explanation of the symbols
[0067] 10: Multifunctional switchboard structure 20: Ground guide support panel 30 : Lower elastic cushioning panel 40 : Base connection support panel 50 : Multifunctional distribution panel 60 : Mounting fixing frame 70 : Safety detection transmission means 71 : Guide shaft 72 : Detection sensor 73 : Transmitter, receiver 80 : Lifting support protection means 81 : Guide support shaft 82 : Guide horizontal shaft 83 : Fixing bracket 84 : Lift protection cylinder 85 : Lift connection bracket 86 : Protective support frame member 90: Multifunctional switchboard structural safety status guidance means 91: Connection fixing module unit 92 : Guide shaft 93 : Transfer module 931 : 1st panel transfer module 932 : 2nd panel transfer module 933 : 3rd Panel Transfer Module 94 : Lifting Guide 941: 1st Elevator Information Unit 942: 2nd Elevator Information Unit 943 : 3rd Elevator Guide Unit 95 : Rotating Guide Section 951: 1st rotation guide unit 951-1: 1st rotation module unit 952 : 2nd rotation guide unit 952-1 : 2nd rotation module unit 953 : 3rd Rotation Guide Unit 953-1 : 3rd Rotation Module Unit 96: Situation Filming Department 961: 1st Situation Filming Unit 962: 2nd Situation Filming Unit 963: 3rd Situation Filming Unit 97: Control unit 98: Transmitter / Receiver unit 99 : Status information speaker
Claims
Claim 1 delete Claim 2 A multi-functional distribution panel structure configured to protect a multi-functional distribution panel supplying electricity to a multi-unit residential building, comprising: a ground guide support panel disposed on the ground; a lower elastic cushioning panel fixed with its bottom surface connected to the upper surface of the ground guide support panel; a base connection support panel fixed with its bottom surface connected to the upper surface of the lower elastic cushioning panel fastened to the ground guide support panel; a multi-functional distribution panel fixed with its top surface connected to the base connection support panel fastened to the lower elastic cushioning panel; a mounting fixing frame disposed to surround the lower part of the multi-functional distribution panel, with its lower end connected to and fixed to the upper surface of the base connection support panel; and a safety detection transmission means fixed with and connected to the upper surface of the base connection support panel and detecting the status of the multi-functional distribution panel.and is composed of a lifting support protection means connected to and fixed to the upper surface of the ground guide support panel, and the safety detection transmission means comprises a guide shaft whose lower end is connected and fixed to the base connection support panel attached to the lower elastic cushioning panel, a detection sensor connected and fixed to the guide shaft attached to the base connection support panel, and a transmitter and receiver connected and fixed to the upper surface of the base connection support panel and receiving and transmitting a detection signal from the detection sensor, and the lifting support protection means comprises a guide support shaft whose lower end is connected and fixed to the upper surface of the ground guide support panel, a guide horizontal shaft whose one end is connected and fixed to the upper end of the guide support shaft attached to the ground guide support panel, a fixing bracket whose upper end is connected and fixed to the other end of the guide horizontal shaft attached to the guide support shaft, a lifting protection cylinder whose one end is connected and fixed to the lower end of the fixing bracket attached to the guide horizontal shaft, and the A multi-functional switchboard structure with enhanced seismic resistance for a multi-unit residential building, characterized by comprising: a lifting connection bracket whose upper end is connected and fixed to the lifting shaft of a lifting protection cylinder; a protective support frame member whose upper surface is connected and fixed to the lower end of the lifting connection bracket fastened to the lifting protection cylinder and which is raised and lowered by the driving of the lifting protection cylinder, wherein the protective support frame member is raised and lowered by the driving of the lifting protection cylinder to surround and position the multi-functional switchboard; and further provided on the ground guide support panel a means for guiding safety status of the multi-functional switchboard structure to transmit a danger signal in the event of an emergency during the installation process.
Citation Information
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