Block flowerpot
The block flower pot addresses space utilization and water discharge issues by allowing stacking and arranging in various shapes, with a control system for efficient water management and authentication.
Patent Information
- Application Number
- PCT/KR2024/007275
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-12-04
AI Technical Summary
Existing flower pots occupy a large amount of space when placed side by side, especially in small living spaces, and there is a need for a solution that maximizes space utilization and facilitates easy water discharge.
A block flower pot design featuring a columnar body with concave and guide spaces, a connecting rod, and a support structure that allows for stacking and arranging in various shapes, along with a control system for water management and authentication.
The block flower pot enables efficient space utilization by stacking and easy water discharge, while providing a control system for managing water flow and authentication.
Smart Images

Figure KR2024007275_04122025_PF_FP_ABST
Abstract
Description
block flower pot
[0001] The present invention relates to a flower pot, and more particularly, to a block flower pot that allows for maximizing space utilization by stacking flower pots and arranging them in various desired shapes.
[0002] A flowerpot is a container that creates a space for growing plants. It has an open top and a bottom with a drainage hole. People fill the flowerpot with soil and plant the plants to grow them. Here, the flowerpot is placed on the floor of a designated space, with multiple flowerpots placed side by side.
[0003] Meanwhile, when multiple flower pots are placed side by side on the floor, they can take up a relatively large space. This problem is especially pronounced in apartments with relatively small living spaces. While potted plants are expected to provide a landscaping effect, the large number of flower pots can also create clutter. Therefore, there is a growing demand for flower pots that can be neatly arranged even in relatively narrow spaces and maximize space utilization.
[0004] The technical task to be achieved by the block flowerpot according to the technical idea of the present invention is to provide a block flowerpot that can be easily stacked in space and arranged in various shapes and sizes, thereby maximizing space utilization.
[0005] In addition, a technical task to be achieved by a block flowerpot according to the technical idea of the present invention is to provide a block flowerpot that allows supplied water to be easily discharged and processed.
[0006] The technical problems to be solved by the block flower pot according to the technical idea of the present invention are not limited to the problems mentioned above, and other problems not mentioned will be clearly understood by those skilled in the art from the description below.
[0007] According to one embodiment of the technical idea of the present invention, a block flowerpot comprises: a body part having a columnar shape, in which a columnar body space is concavely formed in the center of the upper surface, and a plurality of guide spaces are formed so as to penetrate the upper and lower surfaces while being connected to the body space in a state of being spaced apart from each other along the circumferential direction of the body space; and a connecting part having a rod shape, in which a connecting space is formed that penetrates both longitudinal cross-sections, and is detachably coupled to the body part, wherein when a pair of body parts are positioned in the vertical direction, the connecting part connects the body parts so that the guide space and the connecting space are connected by being positioned between the body parts.
[0008] In addition, the body part may include a bottom body formed in a plate shape; a plurality of wall bodies each formed in a plate shape, spaced apart from each other along an edge of the bottom body and positioned at an edge of the bottom body, and forming a body space when combined with the bottom body; and a plurality of guide bodies formed in a plate shape each bent to form an induction space, and positioned between the wall bodies to connect the wall bodies.
[0009] In addition, the inner diameter of the induction space and the inner diameter of the connection space are the same, and a tubular induction connector having an outer diameter corresponding to the inner diameter of the induction space and an inner diameter smaller than the inner diameter of the induction space is positioned on the lower surface of the induction body while corresponding to the induction space, the induction connector is inserted into the connection space through the first end surface of the connection portion, the outer surface of the induction connector is in contact with the inner surface of the connection space, the lower surface of the induction body is in contact with the first end surface of the connection portion, and a tubular induction body having an outer diameter corresponding to the inner diameter of the connection space and an inner diameter smaller than the inner diameter of the connection space while corresponding to the connection space is positioned on the second end surface opposite to the first end surface of the connection portion, the connection body is inserted into the induction space through the upper surface of the induction body of the body portion, the outer surface of the connection body is in contact with the inner surface of the induction space, and the second end surface of the connection portion can be in contact with the upper surface of the induction body.
[0010] Additionally, the inductive connector may be positioned lower than the bottom body.
[0011] In addition, the block flowerpot further includes a support portion that is formed in a cone shape and is joined to the body portion or the connection portion through an upper surface that is the same as or larger than the second longitudinal section of the lower surface of the induction body or the connection portion, and supports the body portion or the connection portion, wherein the support portion is formed in a column shape corresponding to the induction connector or the connection body, and a support space is formed by penetrating the upper and lower surfaces of the support portion, and a support groove is formed concavely on the lower surface of the support portion so as to extend from the support space toward the edge of the lower surface of the support portion and connect the support space and the outside of the support portion, and the inner diameter of the support space corresponds to the outer diameter of the induction connector or the outer diameter of the connection body, the induction connector is inserted into the support space, the body portion is joined to the support portion, the connection body is inserted into the support space, the connection portion is joined to the support portion, and water can be guided from the induction space or the connection space to the support space, and can flow along the support groove and be discharged from the support space.
[0012] In addition, an auxiliary body in the shape of a plate is positioned at the center of the upper surface of the bottom body, and the upper surface of the auxiliary body is inclined so as to become closer to the lower surface of the bottom body as it approaches the edge of the bottom body, so that it can be connected to the lower surface of the bottom body.
[0013] In addition, the body portion is formed in a curved plate shape corresponding to both sides of each of the guide bodies and having the same curvature as the curvature of the guide bodies, and further includes an induction control portion positioned to protrude from one side of the guide body or inserted into one side of the guide body to open and close between both sides of the guide body, wherein a control guide space is concavely formed on one side of the guide body to correspond to the induction control portion, a control guide opening is formed on an outer surface of the guide body along the circumferential direction of the guide body to correspond to the control guide space, and a rod-shaped control protrusion is formed on the induction control portion to be able to pass through the induction guide opening, and in a state where the induction control portion is inserted into the control guide space, the control protrusion can be inserted into the control guide opening and move along the control guide opening.
[0014] In addition, the connecting portion is formed in a plate shape corresponding to a part of the cross-section of the connecting space, and is fixed to the inner surface of the connecting portion so as to close a part of the cross-section of the connecting space; a connecting control body formed in a plate shape, and positioned so as to be rotatable about a rotational axis crossing the connecting portion at the upper side of the control base in the connecting space, and positioned so that the lower surface faces the control base, and the upper surface opposite the lower surface is positioned higher than the lower surface and faces the inner surface of the connecting space; And a connection control unit including a control inducer positioned at the lower portion of the connection control body along the lower surface of the connection control body, wherein, in a state in which the connection unit is coupled to the induction body, the control base is positioned to correspond between the two sides of the induction body, and in a state in which the control inducer is positioned at the control base, water is induced toward the control base in the connection space, so that the water is temporarily stored in the space between the connection control body on the control base and the inner surface of the connection space, and the control inducer is floated by the water, so that the lower surface of the connection control body moves upward and is separated from the control base, and the upper surface of the connection control body moves downward and is directed toward the inner surface of the connection space, and the water can pass between the lower surface of the connection control body and the control base at the control base and descend through the remaining part of the cross-section of the connection space.
[0015] In addition, the induction control unit and the control terminal are connected to the management server via a network, the control terminal transmits a control signal to the management server, the induction control unit receives a control signal from the management server and is controlled according to the transmitted control signal, the control terminal transmits request information to the management server, receives authentication information according to the request information from the management server, receives authentication information and transmits it to the management server, and when the authentication information transmitted from the management server to the control terminal matches the authentication information, the management server transmits the control signal received from the control terminal that transmitted the authentication information to the induction control unit, and the control terminal is a display unit in the form of a display device located on one surface of the control terminal and displays authentication data including authentication information, and allows the touched authentication data to be input into the control terminal; And a detector unit in the form of a camera or sensor spaced from the display unit on one side of the control terminal and positioned at a first end portion of the control terminal, the block flowerpot is formed in a plate shape corresponding to the upper surface of the control terminal, and a plurality of rectangular authentication openings are formed to correspond to authentication data displayed on the display unit, and a pair of moving guide grooves are formed along the longitudinal direction of the authentication opening on both sides of each authentication opening so as to be concavely facing each other, and an authentication plate having a detector mark formed on the first end portion of the lower surface; a pair of coupling guides positioned along the longitudinal direction of the authentication plate on both sides of the lower surface of the authentication plate;And further comprising an authentication auxiliary device including an authentication control unit positioned on the authentication plate to correspond to each authentication opening and capable of opening and closing the authentication opening, wherein the control terminal is positioned between the coupling guides and coupled to the coupling guides, the authentication plate is positioned on the upper surface of the control terminal, the detector unit is positioned to correspond to the detector mark, the authentication control unit maintains the authentication opening in a closed state, and when the detector unit detects the detector mark and the detected detector mark includes information corresponding to the control terminal, the display unit displays authentication data including the authentication information transmitted to the control terminal, and the control terminal can control the authentication control unit according to the authentication information to sequentially open the authentication openings one by one.;
[0016] In addition, the authentication control unit comprises: a control body formed of an electromagnet and positioned along the first end face of the authentication opening; a control winder formed of a rod shape and positioned rotatably inside the authentication plate so as to be adjacent to a second end face opposite the first end face of the authentication opening; a control moving body formed of a rod shape and positioned in the authentication opening so as to be positioned between the first end face and the second end face of the authentication opening, the control moving body having both end portions inserted into moving guide grooves and being movable along the moving guide grooves; a control sheet formed of a sheet shape and connected to the control winder and the control moving body, and receiving a winding force transmitted from the control winder to the control winder; And a pair of control connectors, each of which is formed in the form of a tension spring and is positioned between the first end face of the authentication opening and the control moving body to connect the first end face of the authentication opening and the control moving body, and a control body is positioned therebetween, wherein, in a state where the authentication control unit closes the authentication opening, the control body has a different polarity from the control moving body and generates an attractive force between the control moving body, and the sum of the attractive force between the control body and the control moving body and the force of the control connecting body that attempts to position the control moving body close to the control body is greater than the force of the control winder that attempts to wind the control sheet, so that the control sheet is unfolded in a state where it is released from the control winder and positioned in a state where the authentication opening is closed, and in the authentication control unit of the authentication opening corresponding to the sign included in the authentication information, the control body is controlled to have the same polarity as the control moving body and generates a repulsive force between the control moving body and the control moving body, and the sum of the repulsive force between the control body and the control moving body and the force of the control winder that attempts to wind the control sheet is greater than the force of the control connecting body that attempts to position the control moving body close to the control body, so that the control The sheet is wound around the control winder, moves the control moving body closer to the control winder, opens the authentication opening, and the control connecting body accumulates restoring force as it is extended.In a state where a symbol included in the authentication information is exposed through an open authentication opening, the symbol of the display unit is touched through the authentication opening, inputted into the control terminal, deleted from the display unit, and after the control terminal transmits the authentication information to the operation server, the control terminal controls the authentication control unit to close the open authentication openings, and in the authentication control unit corresponding to each of the plurality of open authentication openings, the control body is controlled to have a different polarity from the control moving body and generates an attractive force between the control moving body and the control moving body, and the sum of the attractive force between the control body and the control moving body and the restoring force of the control connecting body is greater than the force of the control winder that wants to wind the control sheet, so that the control moving body is moved to be close to the control body by the control body and the control connecting body, and the control sheet is released from the control winder and unfolded to close the open authentication opening.
[0017] The block flowerpot according to embodiments of the technical idea of the present invention has the following effects.
[0018] (1) It can be easily stacked in space and arranged in various shapes and sizes, so that space utilization can be maximized.
[0019] (2) The supplied water can be easily discharged and treated.
[0020] However, the effects that can be achieved by the block flowerpot according to one embodiment of the present invention are not limited to those mentioned above, and other effects not mentioned will be clearly understood by those skilled in the art from the description below.
[0021] To facilitate a more thorough understanding of the drawings cited herein, a brief description of each drawing is provided.
[0022] FIG. 1 is a perspective view illustrating a block flowerpot according to one embodiment of the present invention in isolation.
[0023] FIG. 2 is a perspective view showing a block flower pot arranged in space by stacking according to one embodiment of the present invention.
[0024] Figure 3 is a perspective view showing a block flowerpot in a deformed state according to one embodiment of the present invention.
[0025] FIG. 4 is a drawing showing the operation of a connection control unit of a connection unit in a deformed state of a block flowerpot according to one embodiment of the present invention.
[0026] FIG. 5 is a perspective view illustrating an authentication auxiliary device applied to a control terminal connected to a block flowerpot according to one embodiment of the present invention.
[0027] FIG. 6 is a drawing showing the operation of an authentication auxiliary device applied to a control terminal connected to a block flowerpot according to one embodiment of the present invention.
[0028] The present invention is susceptible to various modifications and embodiments. Specific embodiments are illustrated in the drawings and described in detail. However, this is not intended to limit the present invention to specific embodiments, and it should be understood that the present invention encompasses all modifications, equivalents, and alternatives falling within the spirit and technical scope of the present invention.
[0029] In describing the present invention, detailed descriptions of related known technologies will be omitted if they are deemed to unnecessarily obscure the gist of the present invention. Furthermore, numbers (e.g., "first," "second," etc.) used throughout the description of this specification are merely identifiers used to distinguish one component from another.
[0030] Additionally, in this specification, when a component is referred to as being “connected” or “connected” to another component, it should be understood that the component may be directly connected or connected to the other component, but may also be connected or connected via another component in between, unless there is a specific description to the contrary.
[0031] In addition, the components expressed as "~part" in this specification may be two or more components combined into one component, or one component may be divided into two or more components with more detailed functions. In addition, each component described below may additionally perform some or all of the functions performed by other components in addition to its own main function, and of course, some of the main functions performed by each component may be exclusively performed by other components.
[0032] Hereinafter, embodiments according to the technical idea of the present invention will be described in detail one by one.
[0033] FIG. 1 is a perspective view illustrating a block flower pot (100) according to one embodiment of the present invention in isolation, and FIG. 2 is a perspective view illustrating a block flower pot (100) according to one embodiment of the present invention stacked and arranged in space.
[0034] As illustrated in FIGS. 1 and 2, a block flowerpot (100) according to one embodiment of the present invention includes a body portion (101) and a connecting portion (102), and can be arranged in various shapes and sizes by connecting a plurality of body portions (101) using the connecting portion (102). The block flowerpot (100) according to this embodiment can be made of metal, steel, synthetic resin, ceramics, etc., and is not limited thereto, and can be made of various materials that can maintain a certain shape.
[0035] The body part (101) is formed in a columnar shape and can be used to accommodate soil, plant plants in the soil, and grow them, and to discharge water supplied for the plants. A body space (110) and an induction space (1101) can be formed in the body part (101).
[0036] The body space (110) may be formed concavely on the upper surface of the body part (101). Here, it may be positioned to correspond to the center of the upper surface of the body part (101) and may be formed in a shape corresponding to the body part (101). This body space (110) may be used as a space for growing plants.
[0037] The induction space (1101) may be formed in a plurality of pieces, and may be positioned to be spaced apart from each other along the circumferential direction of the body space (110). Here, each of the induction spaces (1101) may be formed in the body part (101) so as to be connected to the body space (110) and penetrate the upper and lower surfaces of the body part (101). These induction spaces (1101) may be used to discharge water that has entered the body space (110) to the lower side of the body space (110).
[0038] Additionally, the body part (101) may include a bottom body (111), a wall body (112), and an induction body (113).
[0039] The bottom body (111) may be formed in a plate shape. In the present embodiment, it is illustrated as being formed in a rectangular plate shape, but is not limited thereto and may be formed in various shapes such as a triangle, an oval, a hexagon, etc.
[0040] Additionally, an auxiliary body (1111) may be positioned at the center of the upper surface of the bottom body (111). The auxiliary body (1111) may be formed in the shape of a plate having a thin thickness (e.g., 5 mm), and may be positioned in a protruding form from the upper surface of the bottom body (111).
[0041] In addition, the upper surface of the auxiliary body (1111) may be inclined so as to become closer to the lower surface of the bottom body (111) as it approaches the edge of the bottom body (111) and may be connected to the lower surface of the bottom body (111). When water is guided to the auxiliary body (1111), the water can easily flow along the auxiliary body (1111) toward the edge of the bottom body (111).
[0042] The wall body (112) may be formed in a plurality of pieces, and may be positioned at the edge of the floor body (111) while being spaced apart from each other along the edge of the floor body (111). Here, each of the wall bodies (112) may be formed in a plate shape corresponding to the edge of the floor body (111). For example, when the wall body (112) is positioned at the edge of the straight floor body (111), the wall body (112) may be formed in a flat rectangular plate shape. In addition, when the wall body (112) is positioned at the edge of the curved floor body (111), the wall body (112) may be formed in a curved rectangular plate shape.
[0043] In addition, when the floor body (111) is formed in a plate shape with corners, for example, a rectangular plate shape, the corner portions of the floor body (111) may be positioned between the wall bodies (112). That is, the wall bodies (112) may be spaced apart from each other at the corner portions of the floor body (111), and may be positioned at the edges of the floor body (111), respectively.
[0044] The wall bodies (112) as described above can be combined with a floor body (111) to form a body space (110). Here, the auxiliary body (1111) of the floor body (111) can be positioned in the body space (110).
[0045] The guide body (113) may be formed in a plurality of pieces and may be positioned to connect the wall bodies (112) between the wall bodies (112). Here, the guide bodies (113) may each be formed in a plate shape bent into a tube shape and may form an induction space (1101). In addition, the induction space (1101) may be connected to the body space (110). The length of the induction space (1101) formed by the guide bodies (113) may correspond to the height of the body space (110).
[0046] In addition, the lower surface of the induction body (113) may be positioned on the same plane as the lower surface of the floor body (111), and the edge of the floor body (111) may have a shape that does not correspond to the induction space (1101). It may be preferable that the number of such induction bodies (113) is the same as that of the wall body (112).
[0047] In addition, an induction connector (1131) may be positioned on the lower surface of the induction body (113). The induction connector (1131) may be formed in a tubular shape, and may be positioned on the lower surface of the induction body (113) to correspond to the induction space (1101), and may have an outer diameter corresponding to the inner diameter of the induction space (1101) and an inner diameter smaller than the inner diameter of the induction space (1101). This induction connector (1131) may have a length shorter than the length of the connection part (102) to be specifically described later, and may be positioned lower than the bottom body (111).
[0048] The connecting portion (102) may be formed in a rod shape. A connecting space (120) penetrating both longitudinal sections may be formed in the connecting portion (102). Here, the inner diameter of the connecting space (120) may be the same as the inner diameter of the guide space (1101). In addition, the connecting portion (102) may be detachably connected to the body portion (101) through the guide space (1101).
[0049] In addition, the inductive connector (1131) of the inductive body (113) of the body part (101) can be inserted into the connection space (120) through the first end face of the connection part (102), the outer surface of the inductive connector (1131) can be in contact with the inner surface of the connection space (120), and the lower surface of the inductive body (113) can be in contact with the first end face of the connection part (102).
[0050] In addition, a connecting body (121) may be positioned on a second end surface opposite the first end surface of the connecting portion (102). The connecting body (121) may be formed in a tubular shape, and may be positioned on the second end surface of the connecting portion (102) to correspond to the connecting space (120), and may have an outer diameter corresponding to the inner diameter of the connecting space (120) and an inner diameter smaller than the inner diameter of the connecting space (120). This connecting body (121) may have a length shorter than the length of the connecting portion (102) or the length of the guide body (113).
[0051] In the block flower pot (100) of the present embodiment, the body parts (101) can be positioned in a vertically separated state. Here, the connecting parts (102) are provided in the same number as the induction bodies (113) of the body parts (101), and can be used to connect the body parts (101) in a vertically positioned state.
[0052] For example, the connecting body (121) of the connecting portion (102) can be inserted into the induction space (1101) through the upper surface of the induction body (113) of the body portion (101) located at the lower side. Here, the outer surface of the connecting body (121) is in contact with the inner surface of the induction space (1101), and the second longitudinal section (i.e., the lower surface) of the connecting portion (102) and the upper surface of the induction body (113) can be in contact. As a result, the connecting portion (102) can be coupled to the body portion (101) located at the lower side, and the connecting portion (102) can be supported by the body portion (101) located at the lower side.
[0053] In addition, the inductive connector (1131) of the inductive body (113) of the body part (101) located on the upper side can be inserted into the connection space (120) through the first longitudinal surface (i.e., the upper surface) of the connection part (102). Here, the outer surface of the inductive connector (1131) is in contact with the inner surface of the connection space (120), and the lower surface of the inductive body (113) and the first longitudinal surface of the connection part (102) can be in contact. As a result, the connection part (102) can be coupled to the body part (101) located on the upper side, and the connection part (102) can support the body part (101) located on the upper side.
[0054] The block flowerpot (100) according to the present embodiment can be formed into a predetermined shape and size by connecting the body (101) using a number of connecting parts (102) corresponding to the number of inductive bodies (113) of the body (101).
[0055] Meanwhile, the inductive connector (1131) of the inductive body (113) of the body part (101) located on the upper side can be inserted into the inductive space (1101) of the inductive body (113) of the body part (101) located on the lower side. Here, the outer surface of the inductive connector (1131) is in contact with the inner surface of the inductive space (1101), and the lower surface of the inductive body (113) of the body part (101) located on the upper side and the upper surface of the inductive body (113) of the body part (101) located on the lower side can be in contact. As a result, the body part (101) located on the lower side can be coupled to the body part (101) located on the upper side and can support the body part (101) located on the upper side.
[0056] In some cases, a part of the inductive connectors (1131) of the inductive body (113) of the body part (101) located on the upper side may be inserted into the connection space (120) through the upper surface of the connection part (102), and the remaining part of the inductive connectors (1131) of the inductive body (113) of the body part (101) located on the upper side may be inserted into the inductive space (1101) through the upper surface of the inductive body (113) of the body part (101) adjacent to the body part (101) located on the lower side. That is, the body part (101) located on the upper side may be supported by the connection part (102) and the body part (101) adjacent to the body part (101) located on the lower side.
[0057] As described above, the body parts (101) can be arranged to form various shapes and sizes in a stacked form by combining with the connecting parts (102). Therefore, the block flowerpot (100) according to the present embodiment can position a plurality of body parts (101) in a narrow space, thereby maximizing space utilization.
[0058] In addition, in the block flowerpot (100) according to the present embodiment, water can be supplied to the body space (110) of the body part (101) located at the upper side while the body parts (101) are stacked. Here, the water can be induced from the body space (110) to the induction space (1101), and can descend from the induction space (1101) and flow along the connection part (102) to be induced to the induction space (1101) of the body part (101) located at the lower side. The body parts (101) as described above can be combined with the connection part (102) to allow the supplied water to be easily discharged after being used for growing plants. Therefore, the block flowerpot (100) according to the present embodiment can easily discharge the supplied water.
[0059] Meanwhile, in a state where the body parts (101) are stacked, the body space (110) and the induction space (1101) in the body part (101) located at the lower side can be partitioned so as not to be connected to each other. In addition, after water passes through the connection part (102) from the body part (101) located at the upper side, the water can be guided to the induction space (1101) instead of being guided to the body space (110) of the body part (101) located at the lower side. As a result, water can be prevented from being excessively guided to the body space (110) of the body part (101) located at the lower side.
[0060] Meanwhile, the block flowerpot (100) according to the present embodiment may further include a support (103).
[0061] The support member (103) is formed in the shape of a horn, and can be connected to the guide body (113) or the connection member (102) of the body member (101) through the upper surface. Here, the horn member is a three-dimensional figure having a lower surface larger than the upper surface, and can have a cross-section that gradually increases from the upper surface to the lower surface, and can have an upper surface that is the same as the lower surface of the guide body (113) or the second longitudinal cross-section of the connection member (102), or larger than the lower surface of the guide body (113) or the second longitudinal cross-section of the connection member (102). This support member (103) can be positioned on the ground and can support the body member (101) or the connection member (102). After water is guided into the induction space (1101) of the induction body (113) or into the connection space (120) of the connection part (102), the water can be guided from the induction space (1101) or the connection space (120) to the support part (103) and discharged.
[0062] Additionally, a support space (131) and a support groove (132) can be formed in the support portion (103).
[0063] The support space (131) is formed in a columnar shape corresponding to the inductive connector (1131) or the connecting body (121), and may be formed by penetrating the upper and lower surfaces of the support portion (103). Here, the inner diameter of the support space (131) may correspond to the outer diameter of the inductive connector (1131) of the inductive body (113) or the outer diameter of the connecting body (121) of the connecting portion (102).
[0064] In addition, the inductive connector (1131) can be inserted into the support space (131) through the upper surface of the support space (131), the outer surface of the inductive connector (1131) can be in contact with the inner surface of the support space (131), and the lower surface of the inductive body (113) can be in contact with the upper surface of the support space (131). Here, the body part (101) can be coupled to the support part (103) through the inductive body (113).
[0065] In addition, the connecting body (121) can be inserted into the support space (131) through the upper surface of the support space (131), the outer surface of the connecting body (121) can be in contact with the inner surface of the support space (131), and the second longitudinal surface of the connecting portion (102) can be in contact with the upper surface of the support space (131). Here, the connecting portion (102) can be coupled to the support portion (103).
[0066] The support groove (132) may be formed concavely on the lower surface of the support portion (103), and may be formed to extend from the support space (131) toward the edge of the lower surface of the support portion (103) so as to connect the support space (131) and the outside of the support portion (103). As a result, water may be guided to the support space (131), flow along the support groove (132), and be discharged from the support space (131).
[0067] The support portion (103) as described above can be positioned on the ground with a wider area while supporting the body portion (101) or the connection portion (102), and can supply water to the support space (131) and discharge it to the outside through the support groove (132). As a result, the support portion (103) can support the body portion (101) or the connection portion (102) more stably and discharge water stably.
[0068] FIG. 3 is a perspective view showing a block flower pot (100) in a deformed state according to one embodiment of the present invention, and FIG. 4 is a drawing showing the operation of the connection control unit (123) of the connection unit (102) in a deformed state of the block flower pot (100) according to one embodiment of the present invention.
[0069] As illustrated in FIGS. 3 and 4, a block flowerpot (100) according to an embodiment of the present invention may be modified. In this embodiment, the block flowerpot (100) may be modified to further include an induction control unit (114) and a connection control unit (123). In addition, the induction body (113) and the connection unit (102) of the modified block flowerpot (100) may be formed in a shape corresponding to a circular rod shape, and the induction space (1101) and the connection space (120) may be formed in a shape corresponding to the induction body (113) and the connection unit (102), respectively.
[0070] The induction control unit (114) is formed in a curved plate shape corresponding to the two sides of each induction body (113), and is positioned to protrude from one side of the induction body (113) or be inserted into one side of the induction body (113) so as to open and close the space between the two sides of the induction body (113). In addition, the induction control unit (114) may have the same curvature as the curvature of the induction body (113).
[0071] Meanwhile, a control guide space (1130) may be formed concavely on one side of the induction body (113) to correspond to the induction control unit (114), and a control guide opening (1140) may be formed along the circumferential direction of the induction body (113) on the outer side of the induction body (113) to correspond to the control guide space (1130).
[0072] Additionally, the induction control unit (114) may include a control protrusion (1141). The control protrusion (1141) may be formed in a rod shape and may be positioned in the induction control unit (114) so as to pass through the induction guide opening (1140).
[0073] In a state where the induction control unit (114) is inserted into the control guide space (1130), the control protrusion (1141) is inserted into the control guide opening (1140) and can move along the control guide opening (1140). Here, the control protrusion (1141) can be moved so as to be close to one side of the induction body (113) or away from one side of the induction body (113). In addition, as the control protrusion (1141) approaches one side of the induction body (113), the induction control unit (114) can protrude from one side of the induction body (113) to close the space between the body space (110) and the induction space (1101), whereas as the control protrusion (1141) is spaced apart from one side of the induction body (113), the induction control unit (114) can be inserted into one side of the induction body (113) to open the space between the body space (110) and the induction space (1101). Therefore, the induction control unit (114) can open and close the space between the body space (110) and the induction space (1101), so that the induction of water from the body space (110) to the induction space (1101) can be controlled.
[0074] The connection control unit (123) is located in the connection space (120) of the connection unit (102) and can control the flow of water induced into the connection space (120). In addition, the connection control unit (123) can include a control base (1231), a connection control body (1232), and a control inductor (1233).
[0075] The control base (1231) is formed in a plate shape corresponding to a portion of the cross-section of the connection space (120), and can be fixed to the inner surface of the connection part (102) so as to close a portion of the cross-section of the connection space (120). Here, when the connection part (102) is coupled to the guide body (113) of the body part (101), the control base (1231) can be positioned so as to correspond between the two sides of the guide body (113). As a result, water can be guided from the body space (110) through the guide space (1101) to the connection space (120) and flow toward the control base (1231).
[0076] The connection control body (1232) is formed in a plate shape and can be positioned to rotate around a rotation axis (1230) that crosses the connection portion on the upper side of the control base (1231) in the connection space (120). Here, the lower surface of the connection control body (1232) can be positioned to face the control base (1231), and the upper surface opposite the lower surface of the connection control body (1232) can be positioned to face the inner surface of the connection space (120) while being positioned higher than the lower surface of the connection control body (1232).
[0077] In addition, when the lower surface of the connection control body (1232) comes into contact with the control base (1231), the space between the connection control body (1232) and the control base (1231) can be closed, and the upper surface of the connection control body (1232) can be positioned to be spaced apart from the inner surface of the connection space (120). Meanwhile, the connection control body (1232) can be rotated, and the lower surface of the connection control body (1232) can be moved upward and spaced apart from the control base (1231). Here, the space between the connection control body (1232) and the control base (1231) can be opened, and the upper surface of the connection control body (1232) can be moved downward to come into contact with the inner surface of the connection space (120).
[0078] The control inductor (1233) is formed of a buoyant body and can be positioned at the lower portion of the connection control body (1232) along the lower surface of the connection control body (1232). The control inductor (1233) can be positioned on the control base (1231) to maintain the lower surface of the connection control body (1232) in contact with the control base (1231) (see FIG. 4(a)).
[0079] With the control inductor (1233) positioned on the control base (1231), water can be induced from the connection space (120) toward the control base (1231). In addition, the water can be temporarily stored in the space between the connection control body (1232) on the control base (1231) and the inner surface of the connection space (120). Here, the control inductor (1233) is floated by the water, so that the lower surface of the connection control body (1232) can move upward and be separated from the control base (1231), and the upper surface of the connection control body (1232) can move downward and be directed toward the inner surface of the connection space (120). In addition, the lower surface of the connection control body (1232) can be separated from the control base (1231) until the upper surface of the connection control body (1232) comes into contact with the inner surface of the connection space (120).
[0080] In particular, the lower surface of the connection control body (1232) can be maintained stably separated from the control base (1231) in combination with the control inducer (1233) floating in water (see FIG. 4(b)). As a result, water can be introduced to the control base (1231) in the connection space (120) and then pass between the lower surface of the connection control body (1232) and the control base (1231) to descend through the remaining portion of the cross-section of the connection space (120) (i.e., the connection space (120) where the control base (1231) is not located).
[0081] The above-described connection control unit (123) can control the flow of water induced into the connection space (120). In particular, the water can be induced into a portion of the induction space (1101) located apart from the body space (110) after passing through the connection space (120).
[0082] FIG. 5 is a perspective view showing an authentication auxiliary device (1000) applied to a control terminal (10) connected to a block flowerpot (100) according to one embodiment of the present invention, and FIG. 6 is a drawing showing the operation of an authentication auxiliary device (1000) applied to a control terminal (10) connected to a block flowerpot (100) according to one embodiment of the present invention.
[0083] According to the present embodiment, the manager of the block flowerpot (100) can use the control terminal (10) to access a management server (not shown) through a network and exchange signals with the management server. The induction control unit (114) can be connected to the management server through the network. The manager can input a control signal into the control terminal (10), the control terminal (10) can transmit the control signal to the management server, and the management server can transmit the control signal to the induction control unit (114). Here, the induction control unit (114) can be operated to open and close the body space (110) and the induction space (1101) according to the control signal. In particular, the induction control unit (114) can include a power device that generates power to move the control protrusion (1141) along the control guide opening (1140), and the control signal can implement the movement of the control protrusion (1141).
[0084] As illustrated in FIGS. 5 and 6, the control terminal (10) can be detachably coupled to the authentication auxiliary device (1000), transmit request information to the management server, receive authentication information according to the request information from the management server, operate the authentication auxiliary device (1000) according to the authentication information, receive authentication information, and transmit the received authentication information to the management server. Here, the authentication information is composed of a combination of multiple symbols, and the symbols may be numbers, letters, symbols, etc. When the authentication information transmitted from the management server to the control terminal (10) matches the authentication information received from the control terminal (10), the management server can transmit a control signal received from the control terminal (10) that transmitted the authentication information to the induction control unit (114).
[0085] The control terminal (10) may be in the form of a smartphone, and may include a display unit (11) in the form of a display device that is located on one side of the control terminal (10) and can display authentication data including authentication information and allow authentication data touched by an administrator to be input into the control terminal (10), and a detector unit (12) in the form of a camera or sensor that is spaced apart from the display unit (11) on one side of the control terminal (10) and located at a first end portion of the control terminal (10) (see the upper portion of the control terminal (10) in FIG. 5). Here, the authentication data may include a symbol that is not included in the authentication information.
[0086] The authentication auxiliary device (1000) is coupled to the control terminal (10) and can be operated according to authentication information transmitted to the control terminal (10) when it corresponds to the control terminal (10). When the authentication auxiliary device (1000) is operated, the control terminal (10) can only receive authentication information from the authentication data displayed on the display unit (11) through the authentication auxiliary device (1000).
[0087] Additionally, the authentication assistant device (1000) may include an authentication plate (1100), a coupling guide (1200), and an authentication control unit (1300).
[0088] The authentication plate (1100) may be formed in a plate shape corresponding to the upper surface of the control terminal (10). In addition, an authentication opening (1001) and a movement guide groove (1002) may be formed on the authentication plate (1100).
[0089] The authentication openings (1001) may be formed in a plurality of pieces, each of which may be formed on the authentication plate (1100) in a size corresponding to one piece of authentication data displayed on the display unit (11) of the control terminal (10). Here, the authentication openings (1001) may be formed in a rectangular shape. When the authentication plate (1100) is positioned on the upper surface of the control terminal (10), the authentication openings (1001) may be positioned to correspond to each piece of authentication data.
[0090] The moving guide grooves (1002) are formed in a pair, and can be concavely formed on both sides of each authentication opening (1001) and positioned to face each other. Here, the moving guide grooves (1002) can be formed along the longitudinal direction of the authentication plate (1100).
[0091] Additionally, a detector mark (M) may be formed on the first end portion of the lower surface of the authentication plate (1100) (see the upper portion of the authentication plate (1100) in FIG. 5). Here, the detector mark (M) may be formed in the form of a QR code, bar code, or the like.
[0092] In a state where the authentication plate (1100) is positioned on the upper surface of the control terminal (10), the detector mark (M) can be positioned to correspond to the detector unit (12) of the control terminal (10). The detector unit (12) can detect the detector mark (M). Here, when the detected detector mark (M) includes information corresponding to the control terminal (10), the display unit (11) of the control terminal (10) can display authentication data including authentication information, and the control terminal (10) can be connected to the authentication auxiliary device (1000) and control the authentication auxiliary device (1000), particularly, the authentication control unit (1300) which will be described in detail later, according to the authentication information.
[0093] The coupling guides (1200) are formed as a pair, and can be positioned along the longitudinal direction of the authentication plate (1100) on both sides of the lower surface of the authentication plate (1100). When the control terminal (10) is positioned between the coupling guides (1200), the control terminal (10) is coupled to the coupling guides (1200), and the authentication plate (1100) can be positioned on the upper surface of the control terminal (10). Here, the authentication data displayed on the display unit (11) of the control terminal (10) can be positioned to correspond to the authentication opening (1001) of the authentication plate (1100), and the detector unit (12) of the control terminal (10) can be positioned to correspond to the detector mark (M) of the authentication plate (1100).
[0094] The authentication control unit (1300) is composed of a plurality of units, and is positioned on the authentication plate (1100) so as to correspond to each authentication opening (1001) and can open and close the authentication opening (1001). In particular, the authentication control unit (1300) can keep the authentication opening (1001) closed and sequentially open the authentication openings (1001) one by one according to authentication information transmitted to the control terminal (10) coupled to the authentication auxiliary device (1000).
[0095] Additionally, the authentication control unit (1300) may include a control body (1301), a control winder (1302), a control moving body (1303), a control sheet (1304), and a control connecting body (1305).
[0096] The control body (1301) is formed of an electromagnet and can be positioned at the first end face of the authentication opening (1001). In particular, the control body (1301) can be positioned along the first end face of the authentication opening (1001) and inserted into the first end face of the authentication opening (1001) so as to be positioned on the same plane as the first end face of the authentication opening (1001).
[0097] Additionally, the control body (1301) is connected to the control terminal (10) and is controlled by the control terminal (10), so that the polarity can be changed. That is, the control body (1301) may have a N pole or a S pole.
[0098] The control winder (1302) is formed in a rod shape and can be rotatably positioned inside the authentication plate (1100) adjacent to a second end face opposite the first end face of the authentication opening (1001). Here, the control winder (1302) is positioned along the second end face of the authentication opening (1001) and can transmit a force for winding the control sheet (1304), which will be described later, to the control sheet (1304).
[0099] The control moving body (1303) is formed in a rod shape and can be positioned in the authentication opening (1001) so as to be located between the first end face and the second end face of the authentication opening (1001). Here, both end parts of the control moving body (1303) can be inserted into the movement guide groove (1002), respectively. As a result, the control moving body (1303) can move along the movement guide groove (1002).
[0100] Additionally, the control mover (1303) may be formed of a magnet having a constant polarity. Here, the control mover (1303) may have the same polarity as the control body (1301), which may have a changeable polarity, or may have a different polarity.
[0101] The control sheet (1304) is formed in a sheet shape and can be connected to the control winder (1302) and the control moving body (1303). Here, the control sheet (1304) can have a width corresponding to the length of the control moving body (1303), a first end can be connected to the control moving body (1303), and a second end opposite the first end can be connected to the control winder (1302).
[0102] Additionally, the control winder (1302) can move the control moving body (1303) toward the control winder (1302) while winding the control sheet (1304). Here, the control sheet (1304) can be positioned to gradually open the authentication opening (1001).
[0103] The control connectors (1305) may be formed as a pair, each in the form of a tension spring. The control connectors (1305) may be positioned between the first end face of the authentication opening (1001) and the control moving body (1303) to connect the first end face of the authentication opening (1001) and the control moving body (1303). Here, the control body (1301) may be positioned between the control connectors (1305), and the control connector (1305) may attempt to position the control moving body (1303) closer to the control body (1301). In addition, as the control moving body (1303) is spaced apart from the control body (1301), the control connectors (1305) may expand and accumulate a restoring force to restore to its original shape.
[0104] The above authentication auxiliary device (1000) can be applied to a control terminal (10) and operated as follows.
[0105] First, an authentication auxiliary device (1000) can be coupled to a control terminal (10). Here, the control terminal (10) can be coupled to the authentication auxiliary device (1000) by being positioned between coupling guides (1200). In addition, an authentication plate (1100) can be positioned on the upper surface of the control terminal (10), and an authentication control unit (1300) can be positioned to close an authentication opening (1001) of the authentication plate (1100).
[0106] When the authentication control unit (1300) closes the authentication opening (1001), the control body (1301) has a different polarity from the control moving body (1303) and can generate an attractive force between the control moving body (1303). In the present embodiment, the control moving body (1303) can have a south pole and the control body (1301) can have a north pole. Here, the sum of the attractive force between the control body (1301) and the control moving body (1303) and the force of the control connecting body (1305) that attempts to position the control moving body (1303) close to the control body (1301) can be greater than the force of the control winder (1302) that attempts to wind the control sheet (1304). Due to this, the control sheet (1304) can be positioned in a state where it is unfolded and released from the control winder (1302) and the authentication opening (1001) is closed (see FIG. 6(a)).
[0107] In addition, when the authentication plate (1100) is positioned on the upper surface of the control terminal (10), the detector mark (M) of the authentication plate (1100) can be positioned to correspond to the detector unit (12) of the control terminal (10). Here, the detector unit (12) can detect the detector mark (M). When the detected detector mark (M) includes information corresponding to the control terminal (10), the display unit (11) of the control terminal (10) can display authentication data including the authentication information transmitted to the control terminal (10), and the control terminal (10) can be connected to the authentication auxiliary device (1000) and control the authentication control unit (1300) according to the authentication information.
[0108] The control terminal (10) can control the authentication control unit (1300) to open the authentication opening (1001) corresponding to the first symbol included in the authentication information in the authentication data displayed on the display unit (11). Here, the control body (1301) in the authentication control unit (1300) of the authentication opening (1001) corresponding to the first symbol included in the authentication information is controlled to have the same polarity as the control moving body (1303), and a repulsive force can be generated between the control moving body (1303). In the present embodiment, the control moving body (1303) can have a south pole and the control body (1301) can have a south pole. Here, the sum of the repulsive force between the control body (1301) and the control moving body (1303) and the force of the control winder (1302) that attempts to wind the control sheet (1304) may be greater than the force of the control linkage (1305) that attempts to position the control moving body (1303) closer to the control body (1301). As a result, the control sheet (1304) in the authentication control unit (1300) of the authentication opening (1001) corresponding to the first symbol included in the authentication information is wound around the control winder (1302), thereby moving the control moving body (1303) closer to the control winder (1302), so that the authentication opening (1001) corresponding to the first symbol included in the authentication information can be gradually opened (see FIG. 6(b)). The control linkage (1305) can accumulate a restoring force that is stretched and attempts to be restored to its original shape. Here, the first symbol included in the authentication information displayed on the display unit (11) can be exposed through the authentication opening (1001). The administrator can input the first symbol included in the authentication information of the display unit (11) into the control terminal (10) by touching it through the authentication opening (1001), and the first symbol included in the touched authentication information can be deleted from the display unit (11).
[0109] After the first code of the display unit (11) included in the authentication information is input into the control terminal (10), the control body (1301) in the authentication control unit (1300) of the authentication opening (1001) corresponding to the second code included in the authentication information is controlled to have the same polarity as the control moving body (1303), and a repulsive force can be generated between the control moving body (1303). Here, the sum of the repulsive force between the control body (1301) and the control moving body (1303) and the force of the control winder (1302) that wants to wind the control sheet (1304) may be greater than the force of the control connecting body (1305) that wants to position the control moving body (1303) close to the control body (1301). Accordingly, the control sheet (1304) in the authentication control unit (1300) of the authentication opening (1001) corresponding to the second symbol included in the authentication information is wound around the control winder (1302) and the control moving body (1303) is moved closer to the control winder (1302), so that the authentication opening (1001) corresponding to the second symbol included in the authentication information can be gradually opened. The control connecting body (1305) can be extended while accumulating restoring force. Here, the second symbol included in the authentication information displayed on the display unit (11) can be exposed through the authentication opening (1001). The administrator can input the second symbol included in the authentication information of the display unit (11) into the control terminal (10) by touching it through the authentication opening (1001), and the second symbol included in the touched authentication information can be deleted from the display unit (11).
[0110] As described above, the operation of the authentication control unit (1300) for opening the authentication opening (1001) according to the authentication information and the touching of the display unit (11) according to the authentication information through the opened authentication opening (1001) can be performed according to the order of the symbols included in the authentication information. Accordingly, the administrator can input the last symbol included in the authentication information of the display unit (11) through the authentication opening (1001) into the control terminal (10), and the last symbol included in the authentication information of the display unit (11) can be deleted from the display unit (11). Here, the control terminal (10) can transmit the authentication information to the management server.
[0111] Meanwhile, after the control terminal (10) transmits authentication information to the management server, the control terminal (10) can control the authentication control unit (1300) to close the open authentication openings (1001). Here, the control body (1301) in the authentication control unit (1300) corresponding to each of the plurality of open authentication openings (1001) is controlled to have a different polarity from the control moving body (1303), and an attractive force can be generated between the control moving body (1303). In the present embodiment, the control moving body (1303) may have a south pole, and the control body (1301) may again have a north pole. Here, the sum of the attractive force between the control body (1301) and the control moving body (1303) and the restoring force of the control connecting body (1305) may be greater than the force of the control winder (1302) that attempts to wind the control sheet (1304). As a result, the control moving body (1303) is moved to approach the control body (1301) by the control body (1301) and the control connecting body (1305), thereby releasing and unfolding the control sheet (1304) from the control winder (1302), and the opened authentication opening (1001) can be gradually closed (see Fig. 6(c)). That is, the authentication auxiliary device (1000) can keep the authentication opening (1001) closed after being used to input authentication information into the control terminal (10).
[0112] In a state where an authentication auxiliary device (1000) is applied to a control terminal (10) for a block flowerpot (100) of the present embodiment, authentication information transmitted to the control terminal (10) can be input into the control terminal (10). Authentication data including authentication information displayed on the display unit (11) of the control terminal (10) can be sequentially confirmed and touched according to the authentication information using the authentication auxiliary device (1000). Here, the administrator can input authentication information by touching the display unit (11) of the control terminal (10) while checking the symbols included in the authentication information one by one. As a result, the administrator can more easily and accurately input authentication information into the control terminal (10) and transmit it to the management server.
[0113] Above, the technical idea of the present invention has been described in detail with reference to preferred embodiments, but the technical idea of the present invention is not limited to the above embodiments, and various modifications and changes are possible by a person having ordinary knowledge in the art within the scope of the technical idea of the present invention.
[0114] [Explanation of symbols]
[0115] 100: Block Flower Pot
[0116] 101: Body
[0117] 102: Connection
[0118] 103: Support
Claims
1. A body part having a columnar shape, in which a columnar body space is formed concavely in the center of the upper surface, and a plurality of guide spaces are formed so as to penetrate the upper and lower surfaces while being connected to the body space in a state of being spaced apart from each other along the circumferential direction of the body space; and It is formed in the shape of a rod, has a connecting space penetrating both cross-sections, and includes a connecting portion that is detachably connected to the body portion. A block flower pot characterized in that when a pair of body parts are positioned in a vertical direction, a connecting portion connects the body parts so that the body parts are positioned between them to connect the induction space and the connecting space.
2. In paragraph 1, the body part, Bottom body made of plate shape; A plurality of wall bodies, each having a plate shape, spaced apart from each other along the edge of the floor body and positioned at the edge of the floor body, and forming a body space in combination with the floor body; and A block flowerpot characterized in that it comprises a plurality of guide bodies each having a curved plate shape to form an induction space, and is positioned between wall bodies to connect the wall bodies.
3. In paragraph 2, The inner diameter of the induction space and the inner diameter of the connection space are the same, On the lower surface of the induction body, a tubular induction connecting body is positioned, which corresponds to the induction space and has an outer diameter corresponding to the inner diameter of the induction space and an inner diameter smaller than the inner diameter of the induction space. The inductive connector is inserted into the connection space through the first end face of the connection part, the outer surface of the inductive connector is in contact with the inner surface of the connection space, and the lower surface of the inductive body is in contact with the first end face of the connection part. At the second end face opposite the first end face of the connecting portion, a tubular connecting body having an outer diameter corresponding to the inner diameter of the connecting space and an inner diameter smaller than the inner diameter of the connecting space is positioned, corresponding to the connecting space. A block flower pot characterized in that the connecting body is inserted into the induction space through the upper surface of the induction body of the body part, the outer surface of the connecting body is in contact with the inner surface of the induction space, and the second longitudinal section of the connecting body is in contact with the upper surface of the induction body.
4. In paragraph 3, A block flower pot characterized in that the inductive connector is positioned lower than the bottom body.
5. In the third paragraph, the block flowerpot, It is formed in the shape of a horn, and further includes a support part that supports the body part or the connection part by being joined to the body part or the connection part through an upper surface that is the same as or larger than the second longitudinal section of the lower surface of the inductive body or the connection part. The support portion is formed in a column shape corresponding to the inductive connector or connecting body, and a support space is formed by penetrating the upper and lower surfaces of the support portion, and a support groove is formed concavely on the lower surface of the support portion so as to extend from the support space toward the edge of the lower surface of the support portion and connect the support space and the outside of the support portion. The inner diameter of the support space corresponds to the outer diameter of the inductive connector or the outer diameter of the connecting body, The inductive connector is inserted into the support space and the body part is connected to the support part, and the connecting body is inserted into the support space and the connecting part is connected to the support part. A block flowerpot characterized in that water is guided from an induction space or a connection space to a support space, flows along a support groove, and is discharged from the support space.
6. In paragraph 2, An auxiliary body in the shape of a plate is positioned in the central part of the upper surface of the bottom body, A block flower pot characterized in that the upper surface of the auxiliary body is inclined so as to become closer to the lower surface of the bottom body as it approaches the edge of the bottom body and is connected to the lower surface of the bottom body.
7. In the second paragraph, the body part, Each induction body is formed in a curved plate shape with a curvature identical to the curvature of the induction body while corresponding between both sides of the induction body, and further includes an induction control unit positioned to protrude from one side of the induction body or inserted into one side of the induction body to open and close between both sides of the induction body. On one side of the induction body, a control guide space is formed concavely to correspond to the induction control unit, and on the outer side of the induction body, a control guide opening is formed along the circumferential direction of the induction body to correspond to the control guide space. The induction control unit has a rod-shaped control protrusion formed so that it can pass through the induction guide opening. A block flowerpot characterized in that the control projection is inserted into the control guide opening and is movable along the control guide opening while the induction control unit is inserted into the control guide space.
8. In the second paragraph, the connecting part, A control base formed in a plate shape corresponding to a portion of the cross-section of the connecting space, and fixed to the inner surface of the connecting portion so as to close a portion of the cross-section of the connecting space; A connection control body having a plate shape and positioned so as to be rotatable around a rotation axis crossing the connection portion on the upper side of the control base in the connection space, the lower side being positioned to face the control base, and the upper side opposite the lower side being positioned higher than the lower side and facing the inner side of the connection space; and A connecting control unit comprising a buoyancy body and a control derivative positioned at the lower portion of the connecting control body along the lower surface of the connecting control body, With the connecting portion coupled to the inductive body, the control base is positioned so as to correspond between the two sides of the inductive body, With the control inductor positioned on the control base, water is guided toward the control base in the connection space, so that the water is temporarily stored in the space between the connection control body on the control base and the inner surface of the connection space. The control derivative is floated by water, the lower surface of the connecting control body moves upward and separates from the control base, and the upper surface of the connecting control body moves downward and faces the inner surface of the connecting space. A block flowerpot characterized in that water passes between the lower surface of the connecting control body and the control base and descends through the remaining part of the cross-section of the connecting space.
9. In paragraph 7, The induction control unit and control terminal are connected to the management server via the network. The control terminal transmits a control signal to the management server, and the induction control unit receives the control signal from the management server and is controlled according to the received control signal. The control terminal transmits request information to the management server, receives authentication information based on the request information from the management server, receives authentication information, and transmits it to the management server. When the authentication information transmitted from the management server to the control terminal matches the authentication information received from the control terminal, the management server transmits the control signal received from the control terminal that transmitted the authentication information to the induction control unit. The control terminal is, A display unit in the form of a display device that is located on one side of the control terminal and displays authentication data including authentication information and allows the touched authentication data to be input into the control terminal; and A detector unit in the form of a camera or sensor is included, which is spaced apart from the display unit on one side of the control terminal and is located at the first end portion of the control terminal, The block flower pot is, An authentication plate having a plate shape corresponding to the upper surface of a control terminal, in which a plurality of rectangular authentication openings are formed to correspond to authentication data displayed on a display unit, and on both sides of each authentication opening, a pair of moving guide grooves are formed along the longitudinal direction of the authentication opening so as to face each other in a concave manner, and a detector mark is formed on a first end portion of the lower surface; A pair of mating guides positioned along the length of the authentication plate on both sides of the lower surface of the authentication plate; and Further comprising an authentication auxiliary device including an authentication control unit positioned on the authentication plate to correspond to each authentication opening and capable of opening and closing the authentication opening, The control terminal is positioned between the coupling guides and coupled to the coupling guides, an authentication plate is positioned on the upper surface of the control terminal, a detector unit is positioned to correspond to the detector mark, and the authentication control unit keeps the authentication opening closed. A block flower pot characterized in that when a detector unit detects a detector mark and the detected detector mark includes information corresponding to a control terminal, the display unit displays authentication data including authentication information transmitted to the control terminal, and the control terminal controls the authentication control unit according to the authentication information to sequentially open the authentication openings one by one.
10. In paragraph 9, the authentication control unit, A control body comprising an electromagnet and positioned along the first end face of the authentication opening; A control winder having a rod shape and positioned rotatably within the authentication plate so as to be adjacent to a second end face opposite the first end face of the authentication opening; A control moving body made of a bar-shaped magnet, positioned in the authentication opening so as to be positioned between the first end face and the second end face of the authentication opening, and each end face is inserted into a moving guide groove, so as to be movable along the moving guide groove; A control sheet having a sheet shape, connected to a control winder and a control moving body, and receiving winding force from the control winder to the control winder; and Each of which is formed in the form of a tension spring and includes a pair of control connecting bodies positioned between the first end face of the authentication opening and the control moving body, and a control body positioned between them. In a state where the authentication control unit closes the authentication opening, the control body has a different polarity from the control moving body and generates an attractive force between the control moving body and the control moving body, and the sum of the attractive force between the control body and the control moving body and the force of the control linkage that attempts to position the control moving body close to the control body is greater than the force of the control winder that attempts to wind the control sheet, so that the control sheet is unfolded in a state where it is released from the control winder and positioned in a state where the authentication opening is closed. In the authentication control unit of the authentication opening corresponding to the symbol included in the authentication information, the control body is controlled to have the same polarity as the control moving body and generates a repulsive force between the control moving body and the control moving body, and the sum of the repulsive force between the control body and the control moving body and the force of the control winder that wants to wind the control sheet is greater than the force of the control linkage that wants to position the control moving body close to the control body, so that the control sheet is wound around the control winder and moves the control moving body close to the control winder to open the authentication opening, and the control linkage accumulates a restoring force while being extended, The symbol included in the authentication information is exposed through the open authentication aperture, the symbol on the display is touched through the authentication aperture, inputted into the control terminal, and deleted from the display. After the control terminal transmits the authentication information to the operation server, the control terminal controls the authentication control unit to close the open authentication ports. A block flower pot characterized in that the control body in the authentication control unit corresponding to each of the plurality of open authentication openings is controlled to have a different polarity from the control moving body and generates an attractive force between the control moving body and the control moving body, and the sum of the attractive force between the control body and the control moving body and the restoring force of the control connecting body is greater than the force of the control winder that wants to wind the control sheet, so that the control moving body is moved close to the control body by the control body and the control connecting body, and the control sheet is released from the control winder and spread out to close the open authentication opening.
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