compartment

CN114961436BActive Publication Date: 2026-09-18FUJIFILM BUSINESS INNOVATION CORP
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Patent Information

Application Number
CN202111002745.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-02-24
Filing Date
2021-08-30
Publication Date
2026-09-18
Estimated Expiration
2041-08-30

AI Technical Summary

Benefits of technology

[0027] According to the first solution, compared to configuring the locking unit in a location easily accessible to the user in the door of the compartment, inappropriate contact with the locking unit installed in the compartment can be reduced.

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Abstract

The present application provides a compartment. The compartment is provided with: a compartment main body; a door which is a door provided to be openably and closably, the door having one end portion and another end portion whose positions in a width direction are different from each other, an operation- contacted portion which is contacted when a user performs an operation of opening and closing the door being provided on the one end portion side; and a door lock for locking the door, the locking being performed by controlling power supply to the door lock, a portion other than the one end portion of the door being fixed to the compartment main body by the door lock.
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Description

Technical Field

[0001] This disclosure pertains to the compartments. Background Technology

[0002] Japanese Patent Application Publication No. 2015-209674 discloses the following structure: a building has a door lock control system that verifies the legitimacy of an electronic lock through intelligent verification, and an outdoor person detection sensor and an indoor person detection sensor are installed on the door. Summary of the Invention

[0003] The internal cubicles are equipped with doors and electronic locks for locking, and part of the door is sometimes fixed relative to the main body of the cubicle.

[0004] Here, when the fixed part of the door, which is fixed to the main body of the compartment, is located in a position easily accessible to the user, it is more prone to malfunction compared to when the fixed part is located in a position difficult to access. If a malfunction occurs in the fixed part, the reliability of the door locking decreases.

[0005] The purpose of this disclosure is to reduce inappropriate contact with the locking unit installed in the compartment compared to installing the locking unit in a user-accessible location within the compartment door.

[0006] According to a first aspect of this disclosure, a compartment is provided, comprising: a compartment body; a door, which is an openable and closable door having one end and another end located at different positions in the width direction, and an operable part that is contacted when a user performs an operation to open or close the door is provided on the one end side; and a door lock for locking the door, which is performed by controlling the energization of the door lock, wherein the portion of the door other than the one end is fixed to the compartment body by the door lock.

[0007] According to a second aspect of this disclosure, the other end of the door is secured to the compartment body by means of a door lock.

[0008] According to the third aspect of this disclosure, the lower or upper end of the door is secured to the compartment body by a door lock.

[0009] According to the fourth embodiment of this disclosure, the door is a sliding door, and a door frame is provided in the compartment to accommodate the door, and the door is locked inside the door frame.

[0010] According to the fifth aspect of this disclosure, the door lock has: an electromagnet disposed on one of the door and the compartment body; and an attracted object disposed on the other and attracted by the electromagnet, the electromagnet being disposed on the compartment body and the attracted object being disposed on the door.

[0011] According to the sixth aspect of this disclosure, the position of the attracted body relative to the door can be adjusted.

[0012] According to the seventh aspect of this disclosure, the door is a sliding door, and the position of the attracted object relative to the door is adjusted by moving along the width direction of the door. This adjustment is an adjustment of the position of the attracted object in the width direction.

[0013] According to the eighth aspect of this disclosure, the door lock has: a movable part disposed on one of the door and the compartment body; and a hook part disposed on the other and hooking the movable part.

[0014] According to the ninth aspect of this disclosure, the position of at least one of the movable part and the hook part can be adjusted.

[0015] According to the tenth aspect of this disclosure, the door is a sliding door that moves along the width direction of the door. The movable part is disposed on the main body of the compartment, and the hook part is disposed on the door. The position of the hook part relative to the door is adjusted, and the adjustment is an adjustment of the position of the hook part in the width direction.

[0016] According to the eleventh aspect of this disclosure, the door is a sliding door, and a door frame is provided in the compartment to accommodate the door. An electrical wire extending toward the door by a lock is provided in the compartment, and at least a portion of the electrical wire passes through the door frame.

[0017] According to the twelfth aspect of this disclosure, when the door, which is a sliding door, is opened, the fixed part that is fixed to the main body of the compartment moves along a predetermined path within the door frame via the door lock in the door, and the wire within the door frame passes through a position above or below the predetermined path.

[0018] According to the thirteenth aspect of this disclosure, when the closed door is opened, the other end of the door becomes the front, the door moves within the door frame, the wire extends from the control device toward the door with a lock, and when the door is closed, the control device is positioned closer to the side of the door frame than the other end of the door.

[0019] According to the fourteenth aspect of this disclosure, a control device is provided for controlling the door lock. When the door is opened, a fixed part fixed to the main body of the compartment moves along a predetermined path by means of the door lock in the door. The control device is located above or below the predetermined path.

[0020] According to the fifteenth aspect of this disclosure, the compartment is further provided with an electrical wire extending from the control device to the door lock, the control device being disposed on one of the upper and lower sides, and the electrical wire also being disposed on that side.

[0021] According to the sixteenth aspect of this disclosure, at least a portion of the door lock is housed inside a column disposed in the compartment.

[0022] According to the seventeenth aspect of this disclosure, the door is a sliding door that moves along the width direction. A door-side cross surface is provided on the side of the door, which is a surface along a direction intersecting the width direction. A compartment-side cross surface is provided on the side of the compartment body, which is a surface along a direction intersecting the width direction. When the door is closed, the door-side cross surface and the compartment-side cross surface are opposite each other. By using the door lock, the cross surface of one of the door-side cross surface and the compartment-side cross surface is pulled to the other cross surface to lock the door.

[0023] According to the eighteenth aspect of this disclosure, the door travels in the width direction, and during the process of closing the door, the door side intersection surface contacts the compartment side intersection surface. After the door side intersection surface contacts the compartment side intersection surface, the door also travels further, thereby closing the door.

[0024] According to the nineteenth aspect of this disclosure, the upper end of the door is fixed to the compartment body by the door lock, and the control device for controlling the door lock is located above the upper end of the door.

[0025] According to the twentieth aspect of this disclosure, the lower end of the door is fixed to the compartment body by the door lock, and the control device for controlling the door lock is located at a position lower than the upper end of the door.

[0026] (Effect)

[0027] According to the first solution, compared to configuring the locking unit in a location easily accessible to the user in the door of the compartment, inappropriate contact with the locking unit installed in the compartment can be reduced.

[0028] According to the second solution, compared with the case where one end of the door is fixed relative to the main body of the compartment by a door lock, improper contact with the locking unit installed in the compartment can be reduced.

[0029] According to the third solution, compared with the case where one end of the door is fixed relative to the main body of the compartment by a door lock, improper contact with the locking unit installed in the compartment can be reduced.

[0030] According to the fourth solution, compared with the case where the door lock is located outside the door frame, inappropriate contact with the locking unit located in the compartment can be reduced.

[0031] According to the fifth solution, compared to the case where the electromagnet is installed in the door, it is easier to configure the wires extending to the electromagnet.

[0032] According to the sixth solution, compared to the case where the attracted object relative to the door cannot be adjusted, it is possible to prevent the situation where the door cannot be locked even though it is closed.

[0033] According to the seventh solution, compared to the case where the position of the attracted object in the width direction of the door cannot be adjusted, it is possible to prevent the situation where the door cannot be locked even though it is closed.

[0034] According to the eighth solution, the door can be locked or unlocked by moving the movable part.

[0035] According to the ninth solution, compared to the case where no position adjustment is made, it is possible to prevent a situation where the door cannot be locked even though it is closed.

[0036] According to the tenth solution, compared with the case where no position adjustment is made, it is possible to prevent the situation where the door cannot be locked even though it is closed.

[0037] According to the eleventh solution, it is easier to configure the wiring without the wires being visible, compared to the case where the wires do not pass through the door frame.

[0038] According to the twelfth solution, it is easier to configure the wires passing through the door frame compared to the case where the height of the wires passing through the door frame is aligned with the height of the path through which the fixed part passes.

[0039] According to the thirteenth solution, compared to the case where the control device is located closer to one end of the door than the other end, it is easier to configure the wire extending from the control device toward the door lock into the door frame.

[0040] According to the fourteenth solution, compared to the case where the position of the fixed part in the vertical direction of the moving path is flush with the position of the control device in the vertical direction, it is easier to configure the wire extending from the control device toward the door lock.

[0041] According to the fifteenth embodiment, compared to the case where the control device is located on one of the top and bottom sides and the wire is located on the other side, it is easier to configure the wire extending from the control device toward the door lock.

[0042] According to the sixteenth solution, compared to the case where a door lock is installed on the outside of the column of the compartment, the space inside the compartment can be expanded.

[0043] According to the seventeenth solution, compared with the case where the partition side is provided as the surface of the partition and the door side is provided as the door and is pulled closer to the partition side along the width direction of the door, the fixing strength of the door to the partition body can be improved.

[0044] According to the eighteenth solution, compared to the case where the door moves further after contacting the intersection point on the door side and the intersection point on the compartment side, the gap that may occur between the end of the door and the main body of the compartment can be reduced.

[0045] According to the nineteenth embodiment, compared to the case where the control device is located at a position lower than the upper end of the door, it is easier to configure the wire extending from the control device toward the door lock.

[0046] According to the twentieth solution, compared to the case where the control device is located at a position slightly above the upper end of the door, the wire extending from the control device toward the door lock can be shorter. Attached Figure Description

[0047] Figure 1 It is a diagram that roughly represents the overall structure of an information processing system.

[0048] Figure 2 It is a diagram representing a compartment as an example of space.

[0049] Figure 3 It is a diagram illustrating the interior of the compartment.

[0050] Figure 4 From Figure 2 A three-dimensional view of the door as seen in the direction indicated by arrow IV.

[0051] Figure 5 This is a diagram illustrating an example of the hardware structure of a space management server.

[0052] Figure 6 This is a diagram illustrating an example of the hardware structure of a user terminal.

[0053] Figure 7 This is a diagram illustrating an example of the hardware structure of a control device installed in a compartment.

[0054] Figure 8 This is an example of the display screen shown on a user's terminal when a user makes a reservation for a cubicle.

[0055] Figure 9 This is another example of a display screen shown on a user terminal.

[0056] Figure 10 (A) and (B) are Figure 2 A cross-sectional view of the compartment along the XX line is shown, along with an example of the structure of an electronic lock.

[0057] Figure 11 Figures (A) to (C) show one end of the door and the main body of the compartment when it is closed.

[0058] Figure 12 (A) and (B) are enlarged views of the part of the column in the compartment that contains the electromagnet.

[0059] Figure 13 (A) and (B) are diagrams illustrating the fixing components used to fix the attracted object.

[0060] Figure 14 yes Figure 2 A sectional view of the compartments along the XIV-XIV line.

[0061] Figure 15 This is a diagram showing other structural examples of electronic locks.

[0062] Figure 16 This is a diagram showing the wires used to supply power to the electromagnet.

[0063] Figure 17 This is a diagram showing other structural examples of compartments.

[0064] Figure 18 This is a diagram showing a comparative example of compartments.

[0065] Figure 19 This is a diagram showing other structural examples of compartments.

[0066] Figure 20 yes Figure 19 A sectional view of the compartments along the XX-XX line.

[0067] Figure 21 This is a diagram showing other structural examples of compartments.

[0068] Figure 22 (A) and (B) are diagrams illustrating the electronic lock.

[0069] Figure 23 (A) and (B) are diagrams illustrating the electronic lock. Detailed Implementation

[0070] Hereinafter, embodiments of the present disclosure will be described with reference to the accompanying drawings.

[0071] Figure 1 This is a diagram that roughly represents the overall structure of the information processing system 1 of this embodiment.

[0072] In this embodiment, multiple spaces 2 are provided as examples of places that can be used by users through reservation.

[0073] In this embodiment, each space 2 can be reserved, and users can use the space 2 after making a reservation in advance.

[0074] Space 2, as an example of a venue, includes partitions, guest rooms such as accommodation facilities, meeting rooms such as those in companies, etc. These are examples of spaces 2 that are separated from the surrounding area by walls, partitions, etc.

[0075] Furthermore, in this embodiment, space 2 includes tables, seats, etc., provided for receiving services in restaurants, barbershops, etc. These are examples of spaces 2 that are open to the surroundings.

[0076] Figure 1 The information processing system 1 shown consists of various terminals connected to the cloud network 3.

[0077] exist Figure 1 In this example, as terminals connected to the cloud network 3, a user terminal 4 for user operation and a space management server 5 as an example of an information processing device for managing the space 2 are shown. Furthermore, the cloud network 3 is connected to the space 2. More specifically, various devices are installed in the space 2, and these devices are connected to the cloud network 3.

[0078] In this embodiment, electronic locks are installed on the doors of spaces 2, allowing each space 2 to be locked. In this embodiment, a person with unlocking authority over a space 2 can use that space 2.

[0079] When unlocking space 2, the person unlocking it operates their user terminal 4 to issue an unlocking instruction. This instruction is sent to the space management server 5, which receives the instruction. The space management server 5 then issues an unlocking instruction for space 2. As a result, the electronic lock installed in space 2 activates, unlocking space 2.

[0080] In this embodiment, a portable smartphone is envisioned as the user terminal 4. However, the portable user terminal 4 can be a so-called wearable terminal, or a laptop computer or gaming terminal.

[0081] Space management server 5 manages various information related to space 2. For example, space management server 5 manages information such as identifying users, identifying space 2 as the reservation target, the start date and time of the reservation, and the end date and time of the reservation.

[0082] The information identifying the user includes, for example, the user's name, gender, age, account, user ID, password, and personal administrative information. Additionally, the information identifying the space 2 to be used includes, for example, information identifying the address or location, administrative name, and number.

[0083] In addition, the space management server 5 also functions as a control device, controlling various devices installed in space 2.

[0084] Alternatively, control devices can be installed in each space 2 corresponding to each space 2. In this case, the control devices installed in each space 2 control the various devices installed in each space 2.

[0085] <Exterior Structure of Space 2>

[0086] Figure 2 This is a diagram showing compartment 80 as an example of space 2.

[0087] exist Figure 2 In the example shown, the interior of compartment 80 becomes space 2, which is the reservation target. In this embodiment, it is possible to make a reservation for the space 2 inside compartment 80.

[0088] The partition 80 in this embodiment can be configured, for example, in commercial facilities such as stations, airports, office buildings, restaurants or department stores, banks, libraries, art galleries, museums, public institutions or facilities, communication channels, parks, etc., whether indoors or outdoors.

[0089] Figure 2 The partition 80 shown is a closed partition 80 with a roof installed.

[0090] Here, "closed type" does not mean sealed, but rather refers to a state that has practical sound insulation performance.

[0091] Furthermore, "compartment 80" refers to a structure that has partitions separating space 2 from other spaces located around space 2. It is not necessarily true that partitions exist on all sides of space 2; even a structure where partitions are absent in certain areas is equivalent to compartment 80.

[0092] For example, in the space 2 where the user is seated, even if there is a partition only in two places on the right and left sides of the user, it is equivalent to a compartment 80.

[0093] In addition, a ceiling is not necessary; even a structure without a ceiling is equivalent to an 80-square-meter partition.

[0094] exist Figure 2The compartment 80 shown has a compartment body 81 that constitutes the main part of the compartment 80. The compartment body 81 is formed in the shape of a cuboid.

[0095] The main body of the compartment 81 is provided with a ceiling 20A, a floor 20B, and a side wall 20C. In addition, the main body of the compartment 81 is provided with two side walls 20D and 20E located on both sides of the main body of the compartment 81, and a side wall 20F located on the side opposite to the side wall 20C.

[0096] In this embodiment, side wall 20C is located on the front side of compartment body 81, and side wall 20F is located on the inner side of compartment body 81. Side wall 20C and side wall 20F are arranged in a mutually opposing relationship.

[0097] Furthermore, in this embodiment, two sidewalls 20D and 20E are provided in an orthogonal (intersecting) manner relative to sidewalls 20C and 20F. Sidewalls 20D and 20E are configured in a relationship opposite to each other.

[0098] Furthermore, in this embodiment, a door 22 that can be opened and closed is provided on the front side of the compartment 80. This door 22 can move in the direction shown by arrow 2A in the figure. In addition, the door 22 can move along the side wall 20C.

[0099] Furthermore, the door 22 is suspended. In this embodiment, a guide rail (not shown) is provided that extends along the moving direction of the door 22 and supports the upper end 221 of the door 22. The door 22 moves along this guide rail.

[0100] In this embodiment, space 2 is surrounded by side wall 20C, door 22, side wall 20D, side wall 20E, and side wall 20F, and space 2 is provided inside the four side walls and door 22.

[0101] In other words, in this embodiment, a space 2 is provided inside the compartment body 81.

[0102] In this embodiment, door 22 is conceived as a sliding door capable of moving along side wall 20C. In other words, door 22 is conceived as a sliding door capable of moving in the direction indicated by arrow 2A in the figure. The direction indicated by arrow 2A is the width direction of door 22, along which door 22 moves.

[0103] In addition, Figure 2 In this case, door 22 is a single sliding door that slides in one direction, but it can also be a left-right sliding door that allows two or more parts to open and close in a cross manner, or a sliding door that allows two parts to slide left and right. Alternatively, door 22 can also be a push door that opens to the outside or inside of the compartment 80.

[0104] like Figure 2As shown, the door 22 of this embodiment has an end 223 and another end 224 located at different positions in the width direction of the door 22. Furthermore, an operable part 225 is provided on the door 22, which is contacted by the user when opening or closing the door 22. This operable part 225 is located on the side of the end 223 of the door 22.

[0105] The operated part 225 is a handle, on which the user's hand hooks when opening or closing the door 22. Furthermore, the operated part 225 is not limited to... Figure 2 The configuration shown also includes cases where a door handle or similar component is used. Additionally, the operable part 225 is also located on the inside of the door 22.

[0106] In the compartment 80 of this embodiment, a door frame (described later) that functions as a receiving part for a door 22 is located behind the side wall 20C. When the closed door 22 is opened, the other end 224 of the door 22 becomes the front end, and the door 22 moves within the door frame.

[0107] Additionally, an electronic lock 22C, serving as an example of a door lock, is provided in compartment 80. Furthermore, in this embodiment, an opening / closing sensor S1 is provided to detect the opening and closing of door 22.

[0108] In this embodiment, the door 22 is unlocked and locked using an electronic lock 22C. More specifically, in this embodiment, the electronic lock 22C is energized to perform locking or unlocking based on the electronic lock 22C. Here, "electronic lock 22C" refers to a lock that is unlocked or locked by controlling the energization of the lock.

[0109] Electronic lock 22C includes locks that use batteries to lock or unlock, and locks that use power supplied from an external power source to lock or unlock.

[0110] Furthermore, there are no particular limitations on the locking and unlocking methods based on the electronic lock 22C. The electronic lock 22C can be energized to generate a magnetic force using the electromagnet installed in the electronic lock 22C, and the magnetic force can be used to lock it. In addition, the lock can be unlocked by stopping the energization.

[0111] Alternatively, as another method of locking and unlocking based on the electronic lock 22C, a motor, solenoid, or similar device can be used to move (act) a movable part, causing the movable part to hook onto a hook portion provided on the door 22 or the compartment body 81, thereby locking. Alternatively, the movable part can be moved to release the hook portion, thereby unlocking.

[0112] The number of people who can use the cubicle 80 is roughly determined by the volume of the cubicle 80. In this embodiment, the cubicle 80 is basically designed as a cubicle for one person. However, the cubicle 80 can also be a large cubicle 80 that can accommodate a large number of people.

[0113] In addition, "single room" does not mean that it can only be used by one person, but rather that it can be used by a small number of people, such as 2 to 3 people.

[0114] Figure 3 This is a diagram illustrating the interior of compartment 80. Figure 3 The image shows the state of compartment 80 as viewed from above.

[0115] In this embodiment, each compartment 80 is equipped with a table 92 and a chair 91.

[0116] In addition, a luggage container 93 is provided in the compartment 80 for the user to place their own luggage. In other words, a luggage container 93 is provided in the compartment 80 to hold and place the user's luggage.

[0117] Additionally, inside compartment 80, as part of the equipment provided, such as Figure 2 , Figure 3 As shown, an internal monitor 32 is provided to display information.

[0118] In addition, in this embodiment, such as Figure 2 , Figure 3 As shown, an internal speaker 30A is provided for outputting sound. Alternatively, sound can be output from a speaker provided in the internal monitor 32 without the need for a separate internal speaker 30A.

[0119] In addition, in this embodiment, such as Figure 2 , Figure 3 As shown, an internal camera device 24 is provided for filming the interior of compartment 80. The internal camera device 24 is equipped with imaging elements such as CCD and CMOS, and uses these imaging elements to film the interior of compartment 80.

[0120] In addition, such as Figure 2 As shown, a human sensing sensor 25 is provided in the compartment 80 to detect the user inside the compartment 80. In addition, in this embodiment, a temperature sensor 26 is provided to detect the temperature inside the compartment 80.

[0121] In addition, a lighting device (not shown) is provided in compartment 80 to illuminate the interior of compartment 80.

[0122] Moreover, in this embodiment, such as Figure 2As shown, a window 42 is provided in the door 22. In this embodiment, the interior of the space 2 can be visually confirmed from the outside of the space 2 through the window 42.

[0123] Moreover, such as Figure 2 As shown, sometimes an information acquisition device 29 for acquiring various information of the user using the compartment 80 is provided on the outer surface of the compartment 80.

[0124] The information acquisition device 29 may be, for example, a reader that reads the aligned ID card. Alternatively, the information acquisition device 29 may also be a reader that reads the user's fingerprint, vein pattern, or similar data.

[0125] In addition, although the illustration is omitted, an air conditioning unit for regulating the temperature inside the compartment 80 is installed in the compartment 80.

[0126] In addition, such as Figure 2 As shown, a control device 89 for controlling each part of the compartment 80 is provided in the compartment 80.

[0127] In addition, such as Figure 3 As shown, inside the compartment 80, an inner wall 226 made of sheet metal is provided at a position opposite to the side wall 20C. In this embodiment, a door frame 227 for accommodating the door 22 is provided between the inner wall 226 and the side wall 20C.

[0128] When door 22 is opened, the other end 224 of door 22 becomes the front and moves within the door frame 227. Thus, door 22 is housed within the door frame 227.

[0129] Figure 4 From Figure 2 A three-dimensional view of door 22 viewed in the direction indicated by arrow IV. Additionally, in this... Figure 4 In the text, window 42 is omitted (see reference). Figure 2 Illustrations of ) etc.

[0130] In this embodiment, the door 22 is rectangular in shape when viewed from the front of the compartment 80.

[0131] Door 22 has a cuboid shape and six rectangular planes.

[0132] Specifically, door 22 has an orientation towards compartment 80 (see reference). Figure 2 The door 22 has an outer surface 301 on the outer side and an inner surface 302 on the side opposite to the outer surface 301 and facing the inside of the compartment 80. In addition, the door 22 has an upper surface 303 located at the upper end 221 of the door 22 and a lower surface 304 located at the lower end 222 of the door 22.

[0133] Furthermore, the door 22 has a left side 305 located at one end 223 of the door 22 and a right side 306 located at the other end 224 of the door 22.

[0134] Figure 5 This is a diagram illustrating an example of the hardware structure of the space management server 5.

[0135] As an example of an information processing device, the space management server 5 includes: a control unit 101 that controls the operation of the entire device; an information storage device 102 that stores management data and other information; and a network interface 103 that enables communication via LAN (Local Area Network) cables, etc.

[0136] The control unit 101 has a CPU (Central Processing Unit) 111, which serves as a processor, a ROM (Read Only Memory) 112, which stores basic software, BIOS (Basic Input Output System), etc., and a RAM (Random Access Memory) 113, which serves as a working area.

[0137] CPU 111 can be multi-core. Additionally, ROM 112 can be a rewritable, non-volatile semiconductor memory. Control unit 101 is what is known as a computer.

[0138] Information storage device 102 may be, for example, a hard disk drive. In other words, information storage device 102 may be, for example, a device for reading and writing data to a non-volatile storage medium on which a magnetic material is coated on the surface of a disk-shaped substrate. However, information storage device 102 may also be a semiconductor memory or magnetic tape.

[0139] In addition, the space management server 5 is equipped with input devices such as keyboards and mice, and display devices such as LCD monitors, as needed.

[0140] The control unit 101, the information storage device 102, and the network interface 103 are connected via a bus 104 and a signal line (not shown).

[0141] Here, the program executed by CPU111 can be provided to the space management server 5 in the form of a recording medium that can be read by a computer, such as a magnetic recording medium (magnetic tape, disk, etc.), an optical recording medium (optical disc, etc.), an optical-magnetic recording medium, or a semiconductor memory.

[0142] In addition, the program executed by CPU111 can also be provided to the space management server 5 via communication units such as the Internet.

[0143] Figure 6 This is a diagram illustrating an example of the hardware structure of user terminal 4. Figure 6 The structure shown assumes that user terminal 4 is a smartphone.

[0144] User terminal 4 includes: a control device 201 that controls the overall operation of the device; a memory card 202 that stores various data; various communication interfaces 203 that conform to wireless communication standards; input devices such as touch sensors 204; display devices such as liquid crystal displays and organic EL (Electro Luminescence) displays 205; and a GPS (Global Positioning System) sensor 206.

[0145] The control unit 201 includes a CPU 211, a ROM 212 storing firmware, BIOS, etc., and a RAM 213 used as a working area. The CPU 211 may be multi-core. In addition, the ROM 212 may be a rewritable non-volatile semiconductor memory.

[0146] Communication interface 203 is, for example, an interface for connecting to a mobile communication system or an interface for connecting to a wireless LAN.

[0147] GPS sensor 206 is a sensor that receives radio waves from GPS satellites and determines the location of user terminal 4. The latitude, longitude, and altitude information output from GPS sensor 206 provides the current location of user terminal 4. Additionally, GPS sensor 206 can also be used with indoor positioning systems.

[0148] Figure 7 This describes the control device 89 installed in compartment 80 (see reference). Figure 2 A diagram illustrating an example of the hardware structure of a device.

[0149] The control device 89 includes an information processing unit 89A, an information storage device 89B for storing information, and a network interface 89C for enabling communication via LAN (Local Area Network) cables, etc.

[0150] The information processing unit 89A includes a CPU (Central Processing Unit) 891, which serves as a processor; a ROM (Read Only Memory) 892, which stores basic software, BIOS (Basic Input Output System), etc.; and a RAM (Random Access Memory) 893, which serves as a working area.

[0151] CPU 891 can also be multi-core. Additionally, ROM 892 can be a rewritable, non-volatile semiconductor memory. Information processing unit 89A is what is known as a computer.

[0152] Information storage device 89B may be, for example, a hard disk drive. However, information storage device 89B may also be a semiconductor memory or magnetic tape.

[0153] The information processing unit 89A, the information storage device 89B, and the network interface 89C are connected via bus 89D and signal lines not shown.

[0154] Here, the program executed by CPU 891 can be provided to the control device 89 in the form of a recording medium that can be read by a computer, such as a magnetic recording medium (magnetic tape, magnetic disk, etc.), an optical recording medium (optical disc, etc.), an optical-magnetic recording medium, or a semiconductor memory.

[0155] In addition, the program executed by CPU 891 can also be provided to control device 89 via communication units such as the Internet.

[0156] In addition, in this embodiment, processor refers to processor in a broad sense, including general-purpose processors (e.g., CPU: Central Processing Unit) and special-purpose processors (e.g., GPU: Graphics Processing Unit, ASIC: Application Specific Integrated Circuit, FPGA: Field Programmable Gate Array, programmable logic device, etc.).

[0157] Furthermore, the actions of the processor can be performed not only by a single processor, but also by multiple processors located in physically separate positions working together. Additionally, the order of the processor's actions is not limited to the order described in this embodiment and can be varied.

[0158] Figure 8 This is an example of the display screen shown on the user terminal 4 when a user in cubicle 80 makes a reservation for cubicle 80.

[0159] exist Figure 8 The display screen shown presents a map, and the location of multiple compartments 80 is displayed on the map.

[0160] In this embodiment, when a user of cubicle 80 makes a reservation for cubicle 80, they first select a setting location from the multiple display settings.

[0161] In addition, it is not limited to this display method. For example, multiple setting locations can also be displayed in a list, and the user can select the setting location from the list.

[0162] When the setting location is selected, such as Figure 9 (As shown in the diagram illustrating another example of the display screen on user terminal 4), user terminal 4 displays the status of vacant rooms in the selected location according to time. Additionally, in Figure 9 The example shown illustrates a scenario where two compartments (80) are set at the selected location.

[0163] The user interacts with the displayed screen to specify the reservation time for cubicle 80. Then, the user presses the OK button (not shown).

[0164] Therefore, the space management server 5 confirms the reservation.

[0165] Specifically, after receiving information about the location and reservation time of compartment 80, the space management server 5 registers this information in the information storage device 102. Figure 5 The system then confirms the reservation. The confirmation result is then sent to user terminal 4 to notify the person who made the reservation.

[0166] In user terminal 4, when the user completes the reservation, a message indicating that the reservation is complete is displayed.

[0167] Figure 10 (A) and (B) are Figure 2 A sectional view of compartment 80 on line XX.

[0168] Reference Figure 10 The electronic lock 22C will be explained. Additionally, Figure 10 (A) indicates that door 22 is closed. Figure 10 (B) indicates the state during the opening of door 22.

[0169] In this embodiment, such as Figure 10 As shown in (A), an electronic lock 22C is provided. The electronic lock 22C consists of an electromagnet 401 and an attracted body 402 attracted by the electromagnet 401. The attracted body 402 is made of a strongly magnetic material such as iron.

[0170] In this embodiment, the electromagnet 401 is disposed on the compartment body 81 (see reference). Figure 2 On the side of the door 22, the attracted body 402 is located.

[0171] In addition, the arrangement of electromagnet 401 and attracted body 402 is not limited to this. Electromagnet 401 can also be arranged on the side of door 22 and attracted body 402 can be arranged on the side of compartment body 81.

[0172] In this embodiment, such as Figure 10 As shown in (B), a column 404 extending vertically is provided on the side of the compartment body 81. In this embodiment, an electromagnet 401 is housed inside the column 404.

[0173] It should be noted that the entire electromagnet 401 can be housed within the post 404, or a portion of it can be housed within the post 404 while the rest extends out from the post 404.

[0174] On the other hand, such as Figure 10 As shown in (B), the attracted body 402 is disposed on the side of the door 22 and moves in conjunction with the door 22. A fixing member 410 for fixing the attracted body 402 to the door 22 is provided on the side of the door 22.

[0175] And, as Figure 10 As shown in (B), an elastic member 420 is provided at the other end 224 of the door 22 to mitigate the impact acting on the door 22 and the partition body 81.

[0176] In this embodiment, when the door 22 is opened wide, the other end 224 of the door 22 may sometimes hit the side wall 20D (see reference). Figure 2 ).

[0177] In this case, in this embodiment, the elastic member 420 is located between the door 22 and the side wall 20D. This mitigates the impact from the door 22 acting on the side wall 20D and the impact from the side wall 20D acting on the door 22.

[0178] The elastic member 420 is made of rubber, for example. Furthermore, the elastic member 420 includes a sidewall-side portion 421 located on the sidewall 20D side and a door-side portion 422 located on the door 22 side. Moreover, in this embodiment, a gap 423 is provided between the sidewall-side portion 421 and the door-side portion 422.

[0179] In this embodiment, when the elastic member 420 comes into contact with the side wall 20D, the side wall portion 421 elastically deforms and approaches the door portion 422, thereby mitigating the impact.

[0180] In addition, in this embodiment, such as Figure 10 As shown in (B), a gap 10G is provided for filling the gap 10G created between door 22 and post 404 (see reference). Figure 10 (A)) gap filling component 425.

[0181] The gap filling member 425 is integrally formed with the elastic member 420. Alternatively, the gap filling member 425 and the elastic member 420 do not necessarily have to be integral; the gap filling member 425 can also be provided separately from the elastic member 420.

[0182] Additionally, in this embodiment, a method for facing the door 22 toward the side wall 20E (see reference) is provided. Figure 2 The force-applying mechanism (not shown) in this embodiment becomes the structure for automatically closing the door 22.

[0183] Moreover, in this embodiment, such as Figure 10 As shown in (A) and (B), an inner wall 226 is provided at a position opposite to the side wall 20C. A gap is provided between the side wall 20C and the inner wall 226, which serves as a door frame 227 for accommodating the door 22.

[0184] In this embodiment, a column 404 extending vertically is provided inside the door frame 227 and at the entrance 227A of the door frame 227. In this embodiment, an electromagnet 401 is provided inside the column 404, and the electromagnet 401 is also provided inside the door frame 227 at the entrance 227A of the door frame 227.

[0185] In addition, in this embodiment, the attracted body 402 is also provided inside the door frame 227.

[0186] In this embodiment, an electronic lock 22C is provided inside the door frame 227.

[0187] Moreover, in this embodiment, such as Figure 10 As shown in (A) and (B), a fixing component 410 and an elastic component 420 are provided inside the door frame 227.

[0188] In this embodiment, Figure 10 In the state shown in (A), when energizing the electromagnet 401, the attracted body 402 is attracted to the electromagnet 401 and is fixed to the electromagnet 401.

[0189] Therefore, relative to the main body of the compartment 81 (refer to) Figure 2 Door 22 is fixed and cannot be opened.

[0190] More specifically, in this embodiment, an attracted body 402 that forms part of the electronic lock 22C is provided at the other end 224 of the door 22. When the electromagnet 401 is energized, the other end 224 of the door 22 is fixed to the compartment body 81 by the electronic lock 22C.

[0191] In this embodiment, such as Figure 10As shown in (B), a door-side cross surface 228 is provided on the door 22 side, which is a surface that intersects (or is orthogonal) the width direction of the door 22. Similarly, a compartment-side cross surface 87 is provided on the compartment body 81 side, which is a surface that intersects (or is orthogonal) the width direction of the door 22.

[0192] The door-side cross surface 228 is formed by the side of the attracted body 402, and the compartment-side cross surface 87 is formed by the side of the electromagnet 401.

[0193] In this embodiment, when door 22 is closed, then as follows: Figure 10 As shown in (A), the door-side cross surface 228 and the compartment-side cross surface 87 are opposite to each other.

[0194] Furthermore, in this embodiment, the door-side cross surface 228 is pulled to the compartment-side cross surface 87 by means of the electronic lock 22C, thereby locking the door 22.

[0195] Figure 11 Figures (A) to (C) show one end 223 of the door 22 in the closed state and the main body of the compartment 81.

[0196] In this embodiment, the electromagnet 401 is in contact with the attracted object 402 (see reference). Figure 10 Under (A), such as Figure 11 As shown in (A), the structure creates a gap 11G between one end 223 of the door 22 and the side wall 20E of the partition body 81.

[0197] Therefore, in this embodiment, it is possible to prevent the electromagnet 401 (see reference) from being closed even though the door 22 is closed. Figure 10 The state of (A) being separated from the attracted body 402 makes it impossible to lock.

[0198] When a gap 11G is created between one end 223 of the door 22 and the side wall 20E of the compartment body 81, the user may mistakenly believe that the door 22 is not closed, and the user may forcibly close the door 22.

[0199] Therefore, in this embodiment, as Figure 11 As shown in (A), a protrusion 81E is provided, which makes the gap 11G invisible from the inside and outside of the door 22.

[0200] In addition, not limited to Figure 11 The method shown in (A) can also be as follows: Figure 11 As shown in (B), an elastic body 80F is provided between one end 223 of the door 22 and the side wall 20E, and the elastic body 80F is used to fill the gap 11G. Additionally, as... Figure 11As shown in (C), the gap 11G can also be hidden by forming a recess 80G in the sidewall 20E for one end 223 of the door 22 to enter.

[0201] Figure 12 (A) and (B) are enlarged views of the part in the column 404 of compartment 80 where the electromagnet 401 is installed.

[0202] Specifically, Figure 12 (A) is from Figure 10 The diagram shows the situation of column 404, with arrow XIIA pointing in the direction of (A). Figure 12 (B) is from Figure 12 The diagram shows the situation of column 404, with arrow XIIB pointing in the direction of (A).

[0203] like Figure 12 As shown in (A), in this embodiment, a notch 404A is provided in a part of the column 404, through which the electromagnet 401 is housed inside the column 404.

[0204] Moreover, in this embodiment, such as Figure 12 As shown in (A) and (B), a limiting member 440 is provided to limit the movement of the electromagnet 401 relative to the column 404.

[0205] The limiting component 440 is relative to the side wall 20C in the column 404 (see reference). Figure 10 The electromagnet 401 is mounted on the (A) side surface 404B and the component 440 restricts the movement of the electromagnet 401 toward the side wall 20C.

[0206] The limiting component 440 is formed in the shape of a plate and is arranged in the vertical direction along the direction in which the column 404 extends.

[0207] In addition, the upper end 441 and lower end 442 of the limiting component 440, which are located at the top of the figure, are both fixed to the column 404 by fastening components such as screws.

[0208] The electromagnet 401 is positioned opposite the portion of the limiting member 440 located between the upper end 441 and the lower end 442. In this embodiment, the movement of the electromagnet 401 is limited by the portion located between them.

[0209] Figure 13 This is a diagram illustrating the fixing component 410 used to fix the attracted body 402.

[0210] Figure 13 (A) is from Figure 10 The diagram shows the fixed component 410 viewed in the direction indicated by arrow XIIA (B). Figure 13 (B) is from Figure 13 The diagram shows the situation of the fixed component 410 as seen in the direction indicated by arrow XIIB in (A).

[0211] like Figure 13 As shown in (A), in this embodiment, the fixing member 410 is composed of a fixing member 411 that is fixed to the door 22 and a support member 412 that supports the attracted body 402.

[0212] The cross-sectional shape of the fixed component 411 and the supporting component 412 along the horizontal direction is L-shaped.

[0213] The fixed component 411 is provided with a direction orthogonal to the moving direction of the door 22 and relative to the right side 306 of the door 22 (see reference). Figure 4 The first part 411A is fixed, and the part connected to the first part 411A extends toward the sidewall 20D (see reference). Figure 2 The second part 411B extends from one side of the ).

[0214] The support member 412 is provided with a first part 412A, which is arranged and fixed in a direction orthogonal to the moving direction of the door 22, and a side wall 20E is provided at the point where it is connected to the first part 412A (see reference). Figure 2 The second part 412B extends from one side of the ).

[0215] The attracted body 402 is fixed to the first part 412A of the support member 412 by fastening components such as screws.

[0216] In this embodiment, the second part 411B of the fixed component 411 and the second part 412B of the supporting component 412 are opposite to each other.

[0217] Furthermore, in this embodiment, the support member 412 can move in the direction indicated by arrow 13A, which is the moving direction of the door 22.

[0218] In this embodiment, when the compartment 80 is shipped, after the position of the support member 412 is adjusted relative to the fixed member 411, the support member 412 is fixed to the fixed member 411, wherein the fixed member 411 is the fixed member 411 in the state of being fixed to the door 22.

[0219] In other words, based on the adjustment of the position of the attracted body 402 relative to the door 22, the attracted body 402 is fixed relative to the door 22.

[0220] In this embodiment, the position of the attracted body 402 relative to the door 22 is adjusted. The position of the attracted body 402 in the width direction of the door 22 can be adjusted. Based on the adjustment of the position of the attracted body 402 in the width direction, the support member 412 is fixed to the fixed member 411.

[0221] More specifically, in this embodiment, when shipping goods from compartment 80, the door 22 is closed. Figure 11 In the state shown in (A), the position of the support member 412 relative to the fixed member 411 is adjusted so that the electromagnet 401 is in contact with the attracted body 402.

[0222] Therefore, in this embodiment, the following problems will not occur: when the door 22 is closed, there will be a gap between the electromagnet 401 and the attracted body 402, making it impossible to lock; or the attracted body 402 will abut against the electromagnet 401, restricting the movement of the door 22 and thus preventing the door 22 from closing.

[0223] When the adjustment of the position of the support member 412 relative to the fixed member 411 is completed, the fixed member 411 and the support member 412 are fixed to each other.

[0224] This fixing is achieved, for example, through fasteners such as bolts and nuts, or welding.

[0225] When using fastening components, a rectangular elongated hole or the like is pre-made in the fixed component 411 and the support component 412, allowing one of them to move relative to the other. Thus, as described above, the position of the support component 412 relative to the fixed component 411 can be adjusted.

[0226] In addition, the electronic lock 22C can be like Figure 22 (Diagram illustrating electronic lock 22C) Figure 23 (The diagram illustrating the electronic lock 22C) shows the configuration as shown.

[0227] Figure 22 (A) represents from Figure 10 The diagram shows another structural example of column 404, viewed from the direction of arrow XXIIA in (A). Figure 22 (B) indicates from Figure 22 The diagram shows another structural example of column 404 when viewed in the direction of arrow XXIIB of (A).

[0228] In this structural example, such as Figure 22As shown in (A), an electronic lock 281 is provided inside the column 404, which causes a sickle-shaped movable part 280 to protrude by controlling the power supply. In this structural example, the movable part 280 protrudes while rotating.

[0229] like Figure 22 As shown in (B), the electric lock 281 is equipped with a so-called finger lock 282. In this structural example, the user in the compartment 80 can lock and unlock the lock manually.

[0230] On the other hand, such as Figure 23 As shown in (A) and (B), a linkage component 300 that moves in conjunction with the door 22 is provided on the side of the door 22.

[0231] The linkage component 300 has a fixing component 410 as described above (see reference). Figure 13 The same structure as gate 22 (refer to) Figure 10 The fixed part 411 and the hooked movable part 280 (see reference) Figure 22 It consists of a hook-and-hanging component 418. The hook-and-hanging component 418 is provided with a through hole 418A for the sickle-shaped movable component 280 to enter.

[0232] In this structural example, during locking, the electronic sickle lock 281 (see reference) is engaged. Figure 22 When (A) is energized, the motor and solenoid operate, and the movable part 280 protrudes. Furthermore, in this structural example, the protruding movable part 280 enters the linkage member 300 (see reference 300). Figure 23 The through hole 418A of (A)).

[0233] In this state, if the door 22 is to be opened, the movable part 280 is hooked onto the hooking part 418, which is an example of a hooking part, and the door 22 cannot be opened. In other words, in this case, the movable part 280 is located on the movement path of the linkage part 300 and the door 22 cannot be opened.

[0234] On the other hand, for example, when the power to the electronic lock 281 is stopped, the movable part 280 retracts. Thus, the movable part 280 is positioned offset from the through hole 418A, allowing the door 22 to be opened.

[0235] Furthermore, in this structural example, the position of the hook member 418 relative to the door 22 can also be adjusted, and the position of the hook member 418 in the width direction of the door 22 can be adjusted. In this structural example, based on the adjustment of the position of the hook member 418 in the width direction, the hook member 418 is fixed to the fixed member 411.

[0236] More specifically, during the shipment from compartment 80, with door 22 closed. Figure 11 In the state shown in (A), the position of the hook member 418 relative to the fixed member 411 is adjusted, and the movable member 280 enters the through hole 418A.

[0237] Therefore, in this structural example, the following situations can be avoided: when the door 22 is closed, there is a gap between the movable part 280 and the hook part 418, making it impossible to lock; or the hook part 418 abuts against the post 404, restricting the movement of the door 22, thus preventing the door 22 from closing.

[0238] When the adjustment of the position of the hook component 418 relative to the fixed component 411 is completed, the fixed component 411 and the hook component 418 are fixed to each other.

[0239] The fixing is similar to that described above, for example, by fastening components such as bolts and nuts, welding, etc.

[0240] In addition, in this structural example, a movable part 280 is provided on the column 404 side (partition body 81 side) and a hook part is provided on the door 22 side. However, it is not limited to this. A hook part can also be provided on the column 404 side (partition body 81 side) and a movable part 280 can be provided on the door 22 side.

[0241] Furthermore, while the above description illustrates the ability to adjust the position of the hook (hook member 418), the position of the movable member 280 can also be adjusted. Additionally, the positions of both the hook and the movable member 280 can be adjusted.

[0242] Furthermore, the movable part 280 is not limited to the movable part 280 that rotates and is provided in the electronic lock knife lock 281 described above. For example, it may also be a movable part 280 that moves linearly.

[0243] When using a movable part 280 that performs linear motion, for example, the movable part 280 moves forward and backward in a direction perpendicular to the direction of movement of the door 22, and when the door 22 is closed, the movable part 280 enters the hole provided in the compartment body 81 and the door 22.

[0244] When unlocking, the movable part 280 is retracted, and the movable part 280 is moved to the outside of the hole.

[0245] Figure 14 yes Figure 2 A sectional view of compartment 80 along line XIV-XIV.

[0246] exist Figure 2On the XIV-XIV line, there is no electronic lock 22C. Therefore, in Figure 2 On the XIV-XIV line, such as Figure 14 As shown, no [feature / equipment] is installed on column 404. Figure 12 The cutout 404A shown in (A).

[0247] Furthermore, in Figure 2 On the XIV-XIV line, Figure 14 The gap filling component 425 shown is... Figure 10 The gap filling component 425 shown in (A) and (B) is 425mm long.

[0248] Therefore, when door 22 is closed, as Figure 14 As shown, the gap filling member 425 extends toward the column 404, and the gap 10G generated between the column 404 and the elastic member 420 is filled by the gap filling member 425.

[0249] In this embodiment, the gap filling member 425 is composed of a single component and is arranged along the other end 224 of the door 22 and in the vertical direction.

[0250] Furthermore, in this embodiment, the gap filling member 425 and the limiting member 440 (see reference) Figure 12 The part opposite to (A) is, for example Figure 10 As shown in (A) and (B), its front end is cut off, thus shortening it.

[0251] On the other hand, for the portion of the gap filling member 425 that is not opposite to the limiting member 440, such as Figure 14 As shown, its front end was not cut off and instead became longer.

[0252] As in this embodiment, if the gap filling component 425 is provided, it will be difficult for external sound and dust to enter the compartment 80.

[0253] Figure 15 This is a diagram showing another structural example of the electronic lock 22C.

[0254] In this structural example, a helical spring 412S, which is an example of an elastic body, is provided between the first part 412A of the support member 412 and the attracted body 402.

[0255] In this structural example, if gate 22 from Figure 15 When the indicated state is turned off, the attracted body 402 comes into contact with the electromagnet 401, as shown by symbol 15A.

[0256] Furthermore, in this embodiment, when the door 22 is further closed, the coil spring 412S contracts, and the door 22 moves further. Moreover, ultimately, one end 223 of the door 22 (refer to...) Figure 2 It contacts the side wall 20E.

[0257] To elaborate further, in Figure 15 In the structural example shown, as the door 22 travels along its width and is closed, the door-side intersection 228 contacts the compartment-side intersection 87. Furthermore, in this embodiment, after the door-side intersection 228 contacts the compartment-side intersection 87, the door 22 travels further, thereby closing the door 22.

[0258] In this structural example, it is possible to suppress the generation between one end 223 of the door 22 and the sidewall 20E. Figure 11 The gap 11G shown in (A). In this case, the following part can be omitted: Figure 11 The protrusion 81E shown in (A) Figure 11 The elastomer 80F shown in (B) Figure 11 The recess 80G shown in (C).

[0259] Figure 16 This is a diagram showing the wires used to supply power to electromagnet 401. Additionally, in Figure 16 The image shows the state of compartment 80 as viewed from the front.

[0260] In this embodiment, such as Figure 16 As shown, a wire 250 is provided extending from the control device 89 toward the electromagnet 401. In this embodiment, power is supplied to the electromagnet 401 via this wire 250. In other words, in this embodiment, the electronic lock 22C based on the control device 89 is controlled via this wire 250.

[0261] In this embodiment, the wire 250 passes through the door frame 227 (see reference). Figure 14 The interior of the wire 250 extends to and is connected to the electromagnet 401. In this embodiment, at least a portion of the wire 250 passes through a structure within the door frame 227.

[0262] More specifically, the wire 250 is relative to the inner wall 226 (see reference). Figure 14 The inner surface 226A (the surface facing the sidewall 20C) of the ) is fixed and arranged along the inner surface 226A.

[0263] In this embodiment, the attracted body 402 (refer to...) Figure 10 (B) becomes the fixed part of the door 22, which is fixed to the compartment body 81 by electronic lock 22C.

[0264] When door 22 is opened, the fixed part moves along a pre-set path R1 within the door frame 227 (see reference). Figure 16The attracted object 402 moves along the movement path R1.

[0265] The wire 250 inside the door frame 227 passes through the portion of the movement path R1 and moves toward the electromagnet 401. More specifically, the wire 250 inside the door frame 227 moves toward the electromagnet 401 at a position higher than the predetermined movement path R1.

[0266] In this embodiment, the control device 89 is also positioned above the predetermined movement path R1. Furthermore, in this embodiment, the wire 250 extends from the control device 89 positioned above it, passing over the movement path R1, toward the electromagnet 401.

[0267] In other words, in this embodiment, the control device 89 is positioned above the movement path R1, and the wire 250 is also positioned above the side that is the same as the side where the control device 89 is located.

[0268] In addition, in this embodiment, when the door 22 is closed, the control device 89 is located on the side where the door frame 227 is provided, which is further away from the other end 224 of the door 22.

[0269] This allows the wire 250, which extends from the control device 89 to the electronic lock 22C, to pass through the door frame 227.

[0270] In addition, it is not limited to this, it can also be as follows: Figure 17 As shown in the figure (showing other structural examples of compartment 80), the control device 89 is positioned below the movement path R1, so that the wire 250 passes under the movement path R1 and faces the electromagnet 401.

[0271] In other words, in this structural example, the control device 89 is positioned below the movement path R1, and the wire 250 is also positioned below the side that is the same as the side where the control device 89 is located.

[0272] In addition, in this structural example, when the door 22 is closed, the control device 89 is located on the side where the door frame 227 is provided, which is further away from the other end 224 of the door 22.

[0273] Therefore, in this case, the wire 250 extending from the control device 89 to the electronic lock 22C also passes through the door frame 227.

[0274] Figure 18 This is a diagram showing a comparative example of compartment 80.

[0275] In this comparative example, the electronic lock 22C is configured to be installed at one end 223 of the door 22, and the one end 223 of the door 22 is fixed to the compartment body 81 by the electronic lock 22C.

[0276] More specifically, in this structural example, an electromagnet 401 is disposed on the side wall 20E, and an attracted body 402 is disposed at one end 223 of the door 22.

[0277] Furthermore, in this comparative example, a wire 250 extending from the control device 89 to the electromagnet 401 is also provided.

[0278] In this comparative example, the wire 250 does not pass through the door frame 227, but passes through a part outside the door frame 227 and is directed toward the electromagnet 401.

[0279] In this case, without using the door frame 227, compared to configuring the wire 250 through the door frame 227, the wire 250 needs to be configured in a narrow space, which requires labor and time.

[0280] Specifically, the wiring 250 needs to be routed through the inside of the frame or column that constitutes the main body of the compartment 81, or through the outside of the main body of the compartment 81, which requires labor and time.

[0281] In addition, such as Figure 18 As shown in the comparative example, if an electronic lock 22C is provided at one end 223 near the touch-operated part 225 when the user operates the door 22 to open or close it, the user can easily come into contact with the electromagnet 401 and the attracted body 402 that constitute the electronic lock 22C.

[0282] Thus, when the user has easy access to the electromagnet 401 or the attracted object 402, it is easy for problems such as damage or malfunction of the electronic lock 22C, or the inability to lock or unlock the door 22.

[0283] In contrast, as in this embodiment, if an electronic lock 22C is provided at the other end 224 of the door 22, and the part of the door 22 other than the end 223 is fixed to the compartment body 81 by the electronic lock 22C, the chance of the user coming into contact with the electronic lock 22C is reduced, and damage or malfunction of the electronic lock 22C is less likely to occur.

[0284] In particular, in this embodiment, such as Figure 10 As shown in (A) and (B), the electronic lock 22C is housed inside the door frame 227, further reducing the chances of the user coming into contact with the electronic lock 22C and making it even less likely for the electronic lock 22C to be damaged or malfunction.

[0285] Figure 19 This is a diagram showing other structural examples of compartment 80.

[0286] In this structural example, the lower end 222 of the door 22 is fixed to the compartment body 81 by an electronic lock 22C.

[0287] Specifically, in this structural example, an attracted body 402 is provided at the lower end 222 of the door 22, and an electromagnet 401 is provided in the lower part of the compartment body 81.

[0288] Furthermore, in this structural example, the control device 89 for controlling the electronic lock 22C is located below the upper end 221 of the door 22, and is located below the operated part 225 of the door 22.

[0289] Furthermore, in this structural example, a control device 89 is placed on the floor 20B of the main compartment 81. In other words, in this structural example, a control device 89 is provided at the lower part of the compartment 80.

[0290] Furthermore, in this structural example, the wire 250 extends from the control device 89 located at the lower part of the compartment 80 toward the electromagnet 401, which is also located at the lower part of the compartment 80.

[0291] Furthermore, in this structural example, the portion of the wire 250 indicated by reference numeral 19A also passes through the door frame 227.

[0292] Figure 20 yes Figure 19 A sectional view of compartment 80 along line XX-XX.

[0293] exist Figure 19 , 20 In the structural example shown, a recessed portion 291 facing upwards is provided on the lower surface 304 of the door 22. Furthermore, in this structural example, a rotating body 298 is provided, supported by the floor 20B of the partition body 81 and rotating around a rotation axis C extending vertically. In this structural example, the rotating body 298 enters the recessed portion 291, and the door 22 is guided by the rotating body 298.

[0294] In this structural example, as indicated by symbol 20A, the portion of the wire 250 passing through the lower part of the door 22 passes through the gap G between the rotating body 298 and the floor surface 20B.

[0295] In addition, for example, as indicated by symbol 20B, wire 250 may also be disposed below ground 20B.

[0296] Figure 21 This is a diagram showing other structural examples of compartment 80.

[0297] In this structural example, the upper end 221 of the door 22 is fixed to the compartment body 81 by an electronic lock 22C.

[0298] Specifically, in this structural example, an attracted body 402 is provided at the upper end 221 of the door 22, and an electromagnet 401 is provided in the part of the compartment body 81 located above the upper end 221 of the door 22.

[0299] Furthermore, in this structural example, the control device 89 for controlling the electronic lock 22C is located above the upper end 221 of the door 22. Specifically, in this structural example, the control device 89 is located on the ceiling 20A of the compartment 80.

[0300] Furthermore, in this structural example, the wire 250 extends from the control device 89 located above the upper end 221 of the gate 22 toward the electromagnet 401, which is also located above the upper end 221 of the gate 22.

[0301] In this structural example, the control device 89 is located above the upper end 221 of the gate 22. Therefore, compared to the case where the control device 89 is located below the upper end 221 of the gate 22, interference between the wire 250 extending from the control device 89 to the electromagnet 401 and the movement path R2 of the gate 22 can be easily avoided.

Claims

1. A compartment, comprising: The main body of the partition; A door, which is an openable and closable door, has one end and another end located at different positions in the width direction. An actuated part, which is contacted by a user when opening or closing the door, is located on the one end side. Furthermore, the door is a sliding door that moves along its width direction. A door lock, used for locking the door, is engaged by controlling the power supply to the door lock. The door lock has the following features: An electromagnet disposed in the compartment; and The attracted object is placed at the door and attracted by the electromagnet. The attracted object is disposed on the door by a support member that supports the attracted object and a fixed member that fixes the support member to the door. The support component is located on the side of the attracted body opposite to the electromagnet. An elastic body is present between the attracted body and the supporting member. The other end of the door is secured to the compartment body by a door lock.

2. The compartment according to claim 1, wherein, The elastic body is a helical spring.

3. The compartment according to claim 1, wherein, The compartment is equipped with a door frame to accommodate the door. The door lock is installed inside the door frame.

4. The compartment according to claim 1, wherein, It is capable of adjusting the position of the attracted object relative to the door.

5. The compartment according to claim 4, wherein, The position of the attracted object relative to the door is adjusted, which is an adjustment of the position of the attracted object in the width direction.

6. The compartment according to claim 1, wherein, The door lock has: a movable part disposed on one of the door and the compartment body; and a hook part disposed on the other and hooking the movable part.

7. The compartment according to claim 6, wherein, It is capable of adjusting the position of at least one of the movable part and the hook.

8. The compartment according to claim 6, wherein, The movable component is disposed on the main body of the compartment. The hook is provided on the door. The position of the hook portion relative to the door is adjusted, and the adjustment is an adjustment of the position of the hook portion in the width direction.

9. The compartment according to claim 1, wherein, The compartment is equipped with a door frame to accommodate the door. The compartment is equipped with an electrical wire extending toward the lock on the door. At least a portion of the wire passes through the door frame.

10. The compartment according to claim 9, wherein, When the door, which functions as a sliding door, is opened, the fixed portion of the compartment body, which is secured to the door via a lock, moves along a predetermined path within the door frame. The wires within the door frame pass through a position above or below the pre-defined path.

11. The compartment according to claim 9, wherein, When the closed door is opened, the other end of the door becomes the front, and the door moves within the door frame. The wire extends from the control device toward the door lock. With the door closed, the control device is positioned closer to the side where the door frame is located compared to the other end of the door.

12. The compartment according to claim 1, wherein, A control device is provided for controlling the lock on the door. When the door is opened, the fixed part of the door, which is secured to the main body of the compartment by a lock, moves along a pre-set path. The control device is positioned above or below the preset path.

13. The compartment according to claim 12, wherein, The compartment also contains a wire extending from the control device to the door lock. The control device is disposed on one of the above and the below, and the wire is also disposed on that side.

14. The compartment according to claim 1, wherein, At least a portion of the door lock is housed inside a column located in the compartment.

15. The compartment according to claim 1, wherein, A door-side intersecting surface is provided on the side of the door, which is a surface along a direction intersecting the width direction. A compartment side intersecting surface is provided on the main body side of the compartment. This compartment side intersecting surface is a surface that runs along a direction intersecting the width direction. When the door is closed, the door-side intersection faces the compartment-side intersection. By using the door lock, the intersection of one of the door side intersection and the compartment side intersection is pulled to the other intersection, thereby locking the door.

16. The compartment according to claim 15, wherein, The door travels in the width direction, and during the process of closing the door, the door side intersection surface contacts the compartment side intersection surface. After the door side intersection surface contacts the compartment side intersection surface, the door also travels further, thereby closing the door.

17. The compartment according to claim 1, wherein, The upper part of the door is secured to the compartment body by a door lock. The control device for controlling the door lock is positioned above the upper end of the door.

18. The compartment according to claim 1, wherein, The lower end of the door is secured to the compartment body by a door lock. The control device for controlling the door lock is located below the upper part of the door.

Citation Information

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