Clothes treating apparatus

WO2024262746A3PCT designated stage expired Publication Date: 2025-08-14SAMSUNG ELECTRONICS CO LTD
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Patent Information

Application Number
PCT/KR2024/003285
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-06-19
Filing Date
2024-03-15
Publication Date
2025-08-14

AI Technical Summary

Technical Problem

Existing clothing treatment devices lack an efficient and user-friendly method for filtering foreign substances from wastewater discharged during washing machine operations, leading to potential clogging and reduced effectiveness in maintaining water quality.

Method used

A clothing treatment device incorporating a filter device connected to the washing machine's drainage system, featuring a detachable and easily mountable design with a supporter and support bracket, which includes a buffer member to absorb vibrations and facilitate installation on various surfaces, ensuring effective filtration and ease of use.

Benefits of technology

The solution provides improved filtration efficiency by ensuring the filter device can be easily installed and maintained, reducing vibration-induced damage and allowing for flexible mounting options, thereby enhancing the usability and effectiveness of the filtration process.

✦ Generated by Eureka AI based on patent content.

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Abstract

This clothes treating apparatus comprises: a housing; a tub inside the housing; a drain device for discharging water from the tub to the outside of the housing; a filter device which is disposed outside the housing, and is configured to be connected to the drain device so as to be supplied with water discharged by the drain device and filter out foreign matter from the supplied water, the filter device including a coupling portion at the bottom thereof; and an installation device for mounting the filter device on a surface, the installation device including a supporter which includes a supporter mounting portion, wherein the installation device is configured such that the supporter can be seated on the surface and the supporter mounting portion can be coupled to the coupling portion so that the filter device is mounted on the surface while the supporter is seated on the surface and the supporter mounting portion is coupled to the coupling portion.
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Description

Garment processing device

[0001] The present disclosure relates to a garment treatment device including a filter device and a washing machine.

[0002] A washing machine is a device that uses the driving force of a motor to mix laundry, water, and detergent inside a tub, thereby washing them through friction between them.

[0003] The cycles performed by a washing machine, regardless of the type of washing machine, may include a washing cycle in which detergent and water are supplied to a tub containing laundry and the drum is rotated to wash the laundry, a rinsing cycle in which water is supplied to the tub and the drum is rotated to rinse the laundry, and a dehydration cycle in which water is discharged from the tub and the drum is rotated to remove moisture from the laundry.

[0004] The washing machine may include a drain device configured to drain water from the tub to the outside of the washing machine when performing a wash cycle, a rinse cycle, and / or a spin cycle. The drain device may also be configured to drain water discharged from the tub back into the tub when performing a wash cycle and / or a rinse cycle.

[0005] One aspect of the present disclosure provides a garment treatment device having improved installability of a filter device.

[0006] One aspect of the present disclosure provides a garment treatment device having improved usability of a filter device.

[0007] The technical problems to be achieved in this document are not limited to the technical problems mentioned above, and other technical problems not mentioned can be clearly understood by a person having ordinary skill in the technical field to which the present invention belongs from the description below.

[0008] A garment treatment device according to the invention comprises a housing, a tub inside the housing, a drainage device for discharging water from the tub to the outside of the housing, a filter device disposed outside the housing and configured to be connected to the drainage device to receive water discharged by the drainage device and filter foreign substances from the supplied water, the filter device including a coupling portion at the bottom of the filter device, and an installation device for mounting the filter device on a surface, the installation device including a supporter including a supporter mounting portion. The installation device is configured such that the supporter is mountable on the surface, and the supporter mounting portion is mountable to the coupling portion while the supporter is mounted on the surface and the supporter mounting portion is coupled to the coupling portion, so that the filter device is mounted on the surface.

[0009] A clothing treatment device according to the invention comprises a washing machine including a washing machine housing, a tub provided inside the washing machine housing, and a drainage device for discharging water from the tub to the outside of the washing machine housing, a filter device disposed outside the washing machine housing, the filter device being connectable to the drainage device to filter foreign substances from water discharged from the washing machine, and an installation device for mounting the filter device. The installation device includes a support bracket detachably connectable to the filter device, and a supporter detachably mountable to the support bracket and detachably mountable to the filter device.

[0010] These and / or other aspects of the present disclosure will become apparent and more readily understood from the following description of embodiments taken in conjunction with the accompanying drawings, in which:

[0011] FIG. 1 illustrates a garment treatment device according to one embodiment of the present disclosure.

[0012] FIG. 2 illustrates a cross-section of a washing machine according to one embodiment of the present disclosure.

[0013] FIG. 3 is a control block diagram of a washing machine according to one embodiment of the present disclosure.

[0014] FIG. 4 illustrates a garment treatment device according to one embodiment of the present disclosure.

[0015] FIG. 5 illustrates a cross-section of a washing machine according to one embodiment of the present disclosure.

[0016] Figure 6 illustrates the interior of a filter device according to one embodiment of the present disclosure.

[0017] FIG. 7 is an exploded view of a filter device according to one embodiment of the present disclosure.

[0018] FIG. 8 illustrates a filter device according to one embodiment of the present disclosure from a different direction than FIG. 7.

[0019] Figure 9 is a control block diagram of a filter device according to one embodiment of the present disclosure.

[0020] FIG. 10 illustrates a cross-section of a part of a filter device according to one embodiment of the present disclosure.

[0021] FIG. 11 illustrates a flow of water flowing into a filter case according to one embodiment of the present disclosure and then being discharged after passing through the filter.

[0022] FIG. 12 illustrates a state in which foreign substances inside a filter are collected by a filter cleaning device according to one embodiment of the present disclosure.

[0023] FIG. 13 illustrates a case where a filter device of a clothing treatment device according to one embodiment of the present disclosure is mounted on the upper surface of a washing machine through an installation device.

[0024] FIG. 14 illustrates a case where a filter device of a clothing treatment device according to one embodiment of the present disclosure is mounted on the upper surface of a washing machine through an installation device, from a different direction than FIG. 13.

[0025] FIG. 15 illustrates a state before an installation device is coupled to a filter device according to one embodiment of the present disclosure.

[0026] Fig. 16 illustrates a state in which an installation device is coupled to a filter device according to one embodiment of the present disclosure.

[0027] Fig. 17 illustrates a state in which an installation device is fixed to a filter device according to one embodiment of the present disclosure.

[0028] FIG. 18 illustrates a case where a filter device of a garment treatment device according to one embodiment of the present disclosure is mounted on a side wall via an installation device.

[0029] FIG. 19 illustrates a state before a support bracket is coupled to a supporter of an installation device according to one embodiment of the present disclosure.

[0030] FIG. 20 illustrates a state in which a support bracket is coupled to a supporter of an installation device according to one embodiment of the present disclosure.

[0031] FIG. 21 illustrates a state in which a support bracket is fixed to a supporter according to one embodiment of the present disclosure.

[0032] It should be understood that the various embodiments and terms used in this document are not intended to limit the technical features described in this document to specific embodiments, but rather to include various modifications, equivalents, or substitutes of the embodiments.

[0033] In connection with the description of the drawings, similar reference numerals may be used for similar or related components.

[0034] The singular form of a noun corresponding to an item may include one or more of said items, unless the relevant context clearly indicates otherwise.

[0035] In this document, each of the phrases "A or B", "at least one of A and B", "at least one of A or B", "A, B, or C", "at least one of A, B, and C", and "at least one of A, B, or C" may include any one of the items listed together in that phrase, or all possible combinations thereof.

[0036] The term "and / or" includes any combination of a plurality of related described elements or any one of a plurality of related described elements.

[0037] Terms such as "first," "second," or "first" or "second" may be used simply to distinguish one component from another and do not qualify the components in any other respect (e.g., importance or order).

[0038] When a component (e.g., a first component) is referred to as being "coupled" or "connected" to another component (e.g., a second component), with or without the terms "functionally" or "communicatively," it means that the component can be connected to the other component directly (e.g., wired), wirelessly, or through a third component.

[0039] The terms "include" or "have" are intended to specify the presence of a feature, number, step, operation, component, part or combination thereof described in this document, but do not preclude the presence or addition of one or more other features, numbers, steps, operations, components, parts or combinations thereof.

[0040] When a component is said to be “connected,” “coupled,” “supported,” or “in contact with” another component, this includes not only cases where the components are directly connected, coupled, supported, or in contact, but also cases where the components are indirectly connected, coupled, supported, or in contact through a third component.

[0041] When we say that a component is "on" another component, this includes not only cases where the component is in contact with the other component, but also cases where there is another component between the two components.

[0042] Washing machines according to various embodiments can perform washing, rinsing, spin-drying, and drying processes. A washing machine is an example of a clothing treatment device, and the term "clothing treatment device" encompasses devices that wash clothing (laundry items, drying items), devices that dry clothing, and devices that can perform both washing and drying of clothing.

[0043] Washing machines according to various embodiments may include top-loading washing machines in which the laundry inlet for loading or removing laundry is provided facing upward, or front-loading washing machines in which the laundry inlet is provided facing forward. Washing machines according to various embodiments may include washing machines of other loading methods other than top-loading washing machines and front-loading washing machines.

[0044] In the case of a top-loading washing machine, laundry can be washed using a water current generated by a rotating body such as a pulsator. In the case of a front-loading washing machine, laundry can be washed by rotating the drum to repeatedly raise and lower the laundry. The front-loading washing machine may include a washing machine with a dryer that can dry the laundry contained inside the drum. The washing machine with a dryer may include a hot air supply device for supplying high-temperature air into the drum and a condensing device for removing moisture from the air discharged from the drum. For example, the washing machine with a dryer may include a heat pump device. The washing machine according to various embodiments may include a washing machine with a washing method other than the washing method described above.

[0045] Washing machines according to various embodiments may include a housing that accommodates various components therein. The housing may be provided in the form of a box with a laundry inlet formed on one side.

[0046] A washing machine may include a door for opening and closing the laundry compartment. The door may be rotatably mounted to the housing by a hinge. At least a portion of the door may be transparent or translucent to allow the interior of the housing to be viewed.

[0047] A washing machine may include a tub provided within a housing to store water. The tub may be provided in a generally cylindrical shape with a tub opening formed on one side, and may be positioned within the housing such that the tub opening corresponds to a laundry inlet.

[0048] The tub may be connected to the housing by a damper. The damper can absorb vibrations generated when the drum rotates, thereby reducing the vibrations transmitted to the housing.

[0049] A washing machine may include a drum configured to accommodate laundry.

[0050] The drum may be positioned within the tub such that the drum opening provided on one side corresponds to the laundry inlet and the tub opening. Laundry may be sequentially passed through the laundry inlet, the tub opening, and the drum opening to be accommodated within the drum or taken out from the drum.

[0051] The drum rotates within the tub and can perform each of the washing, rinsing, and / or dehydration operations. The cylindrical wall of the drum is formed with a number of perforations, allowing water stored in the tub to flow into or out of the drum.

[0052] A washing machine may include a drive device configured to rotate a drum. The drive device may include a drive motor and a rotating shaft for transmitting driving force generated by the drive motor to the drum. The rotating shaft may be connected to the drum by penetrating the tub.

[0053] The driving device can rotate the drum forward or backward to perform each operation according to the washing, rinsing, and / or dehydration, or drying cycle.

[0054] A washing machine may include a water supply device configured to supply water to a tub. The water supply device may include a water supply pipe and a water supply valve provided on the water supply pipe. The water supply pipe may be connected to an external water source. The water supply pipe may extend from the external water source to a detergent supply device and / or the tub. Water may be supplied to the tub via the detergent supply device. Water may be supplied to the tub without passing through the detergent supply device.

[0055] The water supply valve can open or close the water supply pipe in response to an electrical signal from the control unit. The water supply valve can allow or block the supply of water to the tub from an external water source. The water supply valve may include, for example, a solenoid valve that opens and closes in response to an electrical signal.

[0056] A washing machine may include a detergent supply device configured to supply detergent to a tub. The detergent supply device may include a manual detergent supply device that requires a user to add detergent for each wash cycle, and an automatic detergent supply device that stores a large amount of detergent and automatically supplies a predetermined amount of detergent during a wash cycle. The detergent supply device may include a detergent compartment for storing detergent. The detergent supply device may be configured to supply detergent into the tub during a water supply process. Water supplied through a water supply pipe may be mixed with detergent via the detergent supply device. The water mixed with detergent may be supplied into the tub. Detergent is used as a comprehensive term for pre-wash detergent, main wash detergent, fabric softener, bleach, etc., and the detergent compartment may be divided into a pre-wash detergent storage area, a main wash detergent storage area, a fabric softener storage area, and a bleach storage area.

[0057] A washing machine may include a drainage device configured to discharge water contained in a tub to the outside. The drainage device may include a drain pipe extending from the bottom of the tub to the outside of the housing, a drain valve provided in the drain pipe to open and close the drain pipe, and a pump provided on the drain pipe. The pump may pump water in the drain pipe to the outside of the housing.

[0058] The washing machine may include a control panel positioned on one side of the housing. The control panel may provide a user interface for a user to interact with the washing machine. The user interface may include at least one input interface and at least one output interface.

[0059] At least one input interface can convert sensory information received from a user into an electrical signal.

[0060] At least one input interface may include a power button, an operation button, a course selection dial (or a course selection button), and a wash / rinse / spin setting button. The at least one input interface may include, for example, a tact switch, a push switch, a slide switch, a toggle switch, a micro switch, a touch switch, a touch pad, a touch screen, a jog dial, and / or a microphone.

[0061] At least one output interface can visually or audibly convey information related to the operation of the washing machine to the user.

[0062] For example, at least one output interface may transmit information related to the washing cycle and operating time of the washing machine, as well as washing / rinsing / spin settings to the user. Information related to the operation of the washing machine may be output via a screen, indicator, voice, etc. At least one output interface may include, for example, a liquid crystal display (LCD) panel, a light emitting diode (LED) panel, a speaker, etc.

[0063] The washing machine may include a communication module for communicating with external devices via wires and / or wirelessly.

[0064] The communication module may include at least one of a short-range communication module or a long-range communication module.

[0065] The communication module can transmit data to or receive data from external devices (e.g., a server, a user device, and / or a home appliance). For example, the communication module can establish communication with a server, a user device, and / or a home appliance, and transmit and receive various data.

[0066] To this end, the communication module may support the establishment of a direct (e.g., wired) communication channel or a wireless communication channel between external devices, and the performance of communication through the established communication channel. According to one embodiment, the communication module may include a wireless communication module (e.g., a cellular communication module, a short-range wireless communication module, or a global navigation satellite system (GNSS) communication module) or a wired communication module (e.g., a local area network (LAN) communication module, or a power line communication module). Any of these communication modules may communicate with the external device via a first network (e.g., a short-range communication network such as Bluetooth, wireless fidelity (WiFi) direct, or infrared data association (IrDA)) or a second network (e.g., a long-range communication network such as a legacy cellular network, a 5G network, a next-generation communication network, the Internet, or a computer network (e.g., a LAN or WAN)). These various types of communication modules may be integrated into a single component (e.g., a single chip) or implemented as multiple separate components (e.g., multiple chips).

[0067] The short-range wireless communication module may include, but is not limited to, a Bluetooth communication module, a BLE (Bluetooth Low Energy) communication module, a near field communication module, a WLAN (Wi-Fi) communication module, a Zigbee communication module, an infrared (IrDA, infrared Data Association) communication module, a WFD (Wi-Fi Direct) communication module, an UWB (ultrawideband) communication module, an Ant+ communication module, a microwave (uWave) communication module, etc.

[0068] The remote communication module may include a communication module that performs various types of remote communication and may include a mobile communication unit. The mobile communication unit transmits and receives wireless signals with at least one of a base station, an external terminal, and a server on a mobile communication network.

[0069] In one embodiment, the communication module can communicate with external devices such as a server, a user device, and other home appliances through a peripheral access point (AP). The access point (AP) can connect a local area network (LAN) to which the washing machine or the user device is connected to a wide area network (WAN) to which the server is connected. The washing machine or the user device can be connected to the server through the wide area network (WAN). The control unit can control various components of the washing machine, such as a drive motor and a water inlet valve. The control unit can control various components of the washing machine to perform at least one cycle, including water supply, washing, rinsing, and / or spin-drying, according to a user input. For example, the control unit can control the drive motor to adjust the rotation speed of the drum, or control the water inlet valve of the water supply device to supply water to the tub.

[0070] The control unit may include hardware such as a CPU or memory, and software such as a control program. For example, the control unit may include an algorithm for controlling the operation of components within the washing machine, at least one memory storing program-type data, and at least one processor performing the aforementioned operation using data stored in the at least one memory. The memory and the processor may each be implemented as separate chips. The processor may include one or more processor chips or one or more processing cores. The memory may include one or more memory chips or one or more memory blocks. Additionally, the memory and the processor may be implemented as a single chip.

[0071] Below, washing machines according to various embodiments are specifically described with reference to the attached drawings.

[0072] FIG. 1 illustrates a garment treatment device according to one embodiment of the present disclosure. FIG. 2 illustrates a cross-section of the washing machine illustrated in FIG. 1.

[0073] As illustrated in FIGS. 1 and 2, the washing machine (10) of the clothing treatment device (1) may include a washing machine housing (11) that accommodates various components therein. The washing machine housing (11) may form the exterior of the washing machine (10). The washing machine housing (11) may have a box shape with one portion open.

[0074] The washing machine housing (11) may include a housing opening (12) formed to allow access to the interior of the drum (30). The housing opening (12) may be opened approximately forward.

[0075] The washing machine (10) may include a door (13) for opening and closing a housing opening (12) provided in the washing machine housing (11). The door (13) may be rotatably mounted to the washing machine housing (11) by a hinge (14). At least a portion of the door (13) may be provided to be transparent or translucent so as to allow the interior of the washing machine housing (11) to be visible.

[0076] The washing machine (10) may include a tub (20) provided inside the washing machine housing (11) to store water. The tub (20) may be placed inside the washing machine housing (11). The tub (20) may include a tub opening (22) provided to correspond to the housing opening (12). The tub opening (22) may be opened approximately forward. The tub (20) may be supported inside the washing machine housing (11). The tub (20) may have an approximately cylindrical shape with one side open.

[0077] The tub (20) can be elastically supported from the washing machine housing (11) by a damper (80). The damper (80) can connect the washing machine housing (11) and the tub (20). The damper (80) can be provided to absorb vibration energy between the tub (20) and the washing machine housing (11) to attenuate vibration when vibration generated when the drum (30) rotates is transmitted to the tub (20) and / or the washing machine housing (11).

[0078] A washing machine (10) may include a drum (30) configured to accommodate laundry. The drum (30) may be rotatably provided within a tub (20). The drum (30) may perform washing, rinsing, and / or dehydration while rotating within the tub (20). The drum (30) may include a hole (34) connecting the inner space of the drum (30) and the inner space of the tub (20). The drum (30) may have a generally cylindrical shape with one side open. At least one lifter (35) may be installed on the inner circumference of the drum (30) so that laundry can be raised and lowered when the drum (30) rotates.

[0079] The drum (30) may include a drum opening (32) that is provided to correspond to the housing opening (12) and the tub opening (22). Laundry may be fed into the drum (30) or taken out from the drum (30) through the housing opening (12), the tub opening (22), and the drum opening (32).

[0080] The washing machine (10) may include a washing machine drive device (40) configured to rotate a drum (30). The washing machine drive device (40) may include a drive motor (41) and a rotation shaft (42) for transmitting the driving force generated by the drive motor (41) to the drum (30). The rotation shaft (42) may pass through the tub (20) and be connected to the drum (30).

[0081] The washing machine (10) can be divided into a direct drive type in which a rotating shaft (42) is directly connected to a driving motor (41) to rotate a drum (30) and an indirect drive type in which a pulley (43) is connected between a driving motor (41) and a rotating shaft (42) to drive a drum (30).

[0082] A washing machine (10) according to one embodiment may be provided as an indirect drive type, but is not limited thereto and may also be provided as a direct drive type.

[0083] A rotary shaft (42) may be connected at one end to a drum (30) and at the other end to a pulley (43) to transmit power from a drive motor (41). A motor pulley (41a) may be formed on the rotation axis of the drive motor (41). A drive belt (44) may be provided between the motor pulley (41a) and the pulley (43), so that the rotary shaft (42) may be driven by the drive belt (44).

[0084] A bearing housing (45) may be installed on a rear portion of the tub (20) to rotatably support a rotating shaft (42). The bearing housing (45) may be made of an aluminum alloy and may be inserted into a rear portion of the tub (20) when the tub (20) is injection molded.

[0085] The washing machine driving device (40) may be provided to perform washing, rinsing, and / or dehydration, or drying operations by rotating the drum (30) forward or backward.

[0086] The washing machine (10) may include a water supply device (50). The water supply device (50) may supply water to the tub (20). The water supply device (50) may be located on the upper side of the tub (20). The water supply device (50) may include a water supply pipe (51) and a water supply valve (56) provided in the water supply pipe (51). The water supply pipe (51) may be connected to an external water source. The water supply pipe (51) may extend from the external water source to a detergent supply device (60) and / or the tub (20). Water may be supplied to the tub (20) via the detergent supply device (60). Water may be supplied to the tub (20) without passing through the detergent supply device (60).

[0087] The water supply valve (56) can open or close the water supply pipe (51) in response to an electrical signal from the control unit (90). The water supply valve (56) can allow or block the supply of water from an external water source to the tub (20). The water supply valve (56) may include, for example, a solenoid valve that opens and closes in response to an electrical signal.

[0088] The washing machine (10) may include a detergent supply device (60) configured to supply detergent to the tub (20). The detergent supply device (60) may be configured to supply detergent into the tub (20) during the water supply process. Water supplied through the water supply pipe (51) may be mixed with detergent via the detergent supply device (60). The water mixed with the detergent may be supplied into the tub (20). The detergent may include not only laundry detergent but also a dryer rinse, a deodorant, a sterilizer, or an air freshener. The detergent supply device (60) may be connected to the tub (20) through a connecting pipe (61).

[0089] The washing machine (10) may include a drainage device (70). The drainage device (70) may be configured to discharge water contained in the tub (20) to the outside. The drainage device (70) may include a drainage pump (73) for discharging water in the tub (20) to the outside of the washing machine housing (11), a connection hose (71) for connecting the tub (20) and the drainage pump (73) so that water inside the tub (20) can flow into the drainage pump (73), and a drainage hose (74) for guiding water pumped by the drainage pump (73) to the outside of the washing machine housing (11). The drainage device (70) may include a drainage valve (72) provided in the connection hose (71) for opening and closing the connection hose (71).

[0090] The washing machine (10) may provide a user interface device (15) for interaction between the user and the washing machine (10).

[0091] The washing machine (10) may include at least one user interface device (15). The user interface device (15) may include at least one input interface (16) and at least one output interface (17).

[0092] At least one input interface (16) can convert sensory information received from a user into an electrical signal.

[0093] At least one input interface (16) may include a power button, an operation button, a course selection dial (or a course selection button), and a wash / rinse / spin setting button. The at least one input interface (16) may include, for example, a tact switch, a push switch, a slide switch, a toggle switch, a micro switch, a touch switch, a touch pad, a touch screen, a jog dial, and / or a microphone.

[0094] At least one output interface (17) can transmit various data related to the operation of the washing machine (10) to the user by generating sensory information.

[0095] For example, at least one output interface (17) can transmit information related to the washing course and the operating time of the washing machine (10), washing settings / rinsing settings / spin settings to the user. Information related to the operation of the washing machine (10) can be output through a screen, an indicator, voice, etc. At least one output interface (17) can include, for example, a liquid crystal display (LCD) panel, a light emitting diode (LED) panel, a speaker, etc.

[0096] The clothing treatment device (1) may include a filter device (100) that is provided to be connected to a drainage device (70) of a washing machine (10). The filter device (100) may be arranged outside the washing machine (10). The filter device (100) may be provided to filter foreign substances from water discharged from the washing machine (10). The filter device (100) may be provided to filter foreign substances having a size smaller than the size of foreign substances that can be filtered in the washing machine (10). For example, the filter device (100) may be provided to filter foreign substances having a size smaller than the size of foreign substances that can be filtered in the drainage device (70) of the washing machine (10).

[0097] FIG. 3 is a control block diagram of a washing machine according to one embodiment of the present disclosure.

[0098] In one embodiment, the washing machine (10) may include a user interface device (15), a driving device (40), a water supply device (50), a drainage device (70), a sensor unit (95), a communication module (96), and a control unit (90).

[0099] The user interface device (15) can provide a user interface for interaction between the user and the washing machine (10).

[0100] The user interface device (15) may include at least one input interface (16) and at least one output interface (17).

[0101] At least one input interface (16) can convert sensory information received from a user into an electrical signal.

[0102] At least one input interface (16) may include a power button, an operation button, a course selection dial (or a course selection button), and a wash / rinse / spin setting button. The at least one input interface (16) may include, for example, a tact switch, a push switch, a slide switch, a toggle switch, a micro switch, a touch switch, a touch pad, a touch screen, a jog dial, and / or a microphone.

[0103] At least one output interface (17) can transmit various data related to the operation of the washing machine (10) to the user by generating sensory information.

[0104] For example, at least one output interface (17) can transmit information related to the washing course and the operating time of the washing machine (10), washing settings / rinsing settings / spin settings to the user. Information related to the operation of the washing machine (10) can be output through a screen, an indicator, voice, etc. At least one output interface (17) can include, for example, a liquid crystal display (LCD) panel, a light emitting diode (LED) panel, a speaker, etc.

[0105] The driving device (40) may include a driving motor (41) that provides driving force to rotate the drum (30). The driving device (40) may operate based on a control signal from the control unit (90).

[0106] The water supply device (50) may include a water supply valve (56) that opens and closes a water supply pipe (51) extending from an external water source to the detergent supply device (60) and / or the tub (20). The water supply valve (56) may be opened and closed based on a control signal from the control unit (90).

[0107] The drainage device (70) may include a drain pump (73) for discharging water from the tub (20) to the outside of the washing machine (10) housing (11). The drain pump (73) may operate based on a control signal from the control unit (90).

[0108] The sensor unit (95) may include at least one sensor that obtains information related to the operating status of the washing machine (10).

[0109] For example, the sensor unit (95) may include at least one of a water level sensor that detects the water level of the tub, a sensor that detects the operating status of the driving device (40), a flow rate sensor that detects the flow rate flowing into the tub (20) through the water supply device (50), or a sensor that detects the operating status of the drainage device (70).

[0110] The sensor that detects the operating status of the driving device (40) may include, for example, a current sensor that measures the driving current applied to the driving motor (41), but is not limited thereto.

[0111] The sensor that detects the operating status of the drainage device (70) may include, for example, a current sensor that measures the driving current applied to the drainage pump (73), but is not limited thereto.

[0112] The washing machine (10) may include a communication module (96) for communicating with an external device via wire and / or wirelessly.

[0113] The communication module (96) may include at least one of a short-range communication module or a long-range communication module.

[0114] The communication module (96) can transmit data to an external device (e.g., a server, a user device, a home appliance, and / or a filter device (100)), or receive data from an external device. For example, the communication module (96) can establish communication with a server and / or a user device and / or a home appliance, and transmit and receive various data.

[0115] To this end, the communication module (96) can support the establishment of a direct (e.g., wired) communication channel or a wireless communication channel between external devices, and the performance of communication through the established communication channel. According to one embodiment of the present disclosure, the communication module (96) can include a wireless communication module (e.g., a cellular communication module, a short-range wireless communication module, or a global navigation satellite system (GNSS) communication module) or a wired communication module (e.g., a local area network (LAN) communication module, or a power line communication module). Any of these communication modules can communicate with the external device through a first network (e.g., a short-range communication network such as Bluetooth, wireless fidelity (WiFi) direct, or infrared data association (IrDA)) or a second network (e.g., a long-range communication network such as a legacy cellular network, a 5G network, a next-generation communication network, the Internet, or a computer network (e.g., a LAN or WAN)). These different types of communication modules may be integrated into a single component (e.g., a single chip) or implemented as multiple separate components (e.g., multiple chips).

[0116] The short-range wireless communication module may include, but is not limited to, a Bluetooth communication module, a BLE (Bluetooth Low Energy) communication module, a near field communication module, a WLAN (Wi-Fi) communication module, a Zigbee communication module, an infrared (IrDA, infrared Data Association) communication module, a WFD (Wi-Fi Direct) communication module, an UWB (ultrawideband) communication module, an Ant+ communication module, a microwave (uWave) communication module, etc.

[0117] The long-distance communication module may include a communication module that performs various types of long-distance communication and may include a mobile communication unit. The mobile communication unit transmits and receives wireless signals with at least one of a base station, an external terminal, and a server on a mobile communication network.

[0118] In one embodiment, the communication module can communicate with external devices such as a server, a user device, and other home appliances through a peripheral access point (AP). The access point (AP) can connect a local area network (LAN) to which the washing machine (10) or the user device is connected to a wide area network (WAN) to which the server is connected. The washing machine (10) or the user device can be connected to the server through the wide area network (WAN). The control unit (90) can control various components of the washing machine (10) (e.g., a driving device (40), a water supply device (50)). The control unit (90) can control various components of the washing machine (10) to perform at least one cycle including water supply, washing, rinsing, and / or spin-drying according to a user input. For example, the control unit (90) can control the driving motor (41) to adjust the rotation speed of the drum (30), or control the water supply valve (56) of the water supply device (50) to supply water to the tub (20).

[0119] The control unit (90) may include hardware such as a CPU or memory, and software such as a control program. For example, the control unit (90) may include at least one memory (92) that stores algorithms for controlling the operation of components within the washing machine (10), data in the form of programs, and at least one processor (91) that performs the aforementioned operation using data stored in the at least one memory. The memory (92) and the processor (91) may each be implemented as separate chips. The processor (91) may include one or more processor chips or one or more processing cores. The memory (92) may include one or more memory chips or one or more memory blocks. In addition, the memory (92) and the processor (91) may be implemented as a single chip.

[0120] FIG. 4 illustrates a garment treatment device according to one embodiment of the present disclosure. FIG. 5 illustrates a cross-section of the washing machine illustrated in FIG. 4.

[0121] As illustrated in FIGS. 4 and 5, the washing machine (10a) of the clothing treatment device (1a) may include a housing (11a) that accommodates various components therein. The housing (11a) may form the exterior of the washing machine (10a). The housing (11a) may have a box shape with one portion open.

[0122] The housing (11a) may include a housing opening (12a) formed to allow access to the interior of the drum (30a). The housing opening (12a) may be opened approximately upwards.

[0123] The washing machine (10a) may include a door (13a) for opening and closing a housing opening (12a) provided in the housing (11a). The door (13a) may be rotatably mounted to the housing (11a) by a hinge. At least a portion of the door (13a) may be provided to be transparent or translucent so as to allow the interior of the housing (11a) to be visible.

[0124] The washing machine (10a) may include a tub (20a) provided inside the housing (11a) to store water. The tub (20a) may be arranged inside the housing (11a). The tub (20a) may include a tub opening (22a) provided to correspond to the housing opening (12a). The tub opening (22a) may be opened approximately upward. The tub (20a) may be supported inside the housing (11a). The tub (20a) may have an approximately cylindrical shape with one side open.

[0125] The tub (20a) can be elastically supported from the housing (11a) by a damper (80a). The damper (80a) can connect the housing (11a) and the tub (20a). The damper (80a) can be provided to absorb vibration energy between the tub (20a) and the housing (11a) to attenuate the vibration when the vibration generated when the drum (30a) rotates is transmitted to the tub (20a) and / or the housing (11a).

[0126] A washing machine (10a) may include a drum (30a) configured to accommodate laundry. The drum (30a) may be rotatably provided within a tub (20a). The drum (30a) may perform washing, rinsing, and / or dehydration while rotating within the tub (20a). The drum (30a) may include a hole (34a) connecting the internal space of the drum (30a) and the internal space of the tub (20a). The drum (30a) may have a generally cylindrical shape with one side open.

[0127] A balancing unit (36a) may be installed on the upper portion of the drum (30a) to resolve the load imbalance caused by laundry. The balancing unit (36a) includes a housing having an annular channel and a ball or fluid mass that is movably provided inside the channel, and the ball or fluid moves in accordance with the rotation of the drum (30a) to resolve the load imbalance of the drum (30a).

[0128] A pulsator (37a) is rotatably installed at the bottom of the drum (30a) to generate a washing water stream. Laundry can be washed by the washing water stream generated by the pulsator (37a).

[0129] The drum (30a) may include a drum opening (32a) provided to correspond to the housing opening (12a) and the tub opening (22a). Laundry may be fed into the drum (30a) or taken out from the drum (30a) through the housing opening (12a), the tub opening (22a), and the drum opening (32a).

[0130] A washing machine (10a) may include a washing machine drive device (40a) configured to rotate a drum (30a) and a pulsator (37a). The washing machine drive device (40a) may include a drive motor (41a) and a shaft system for transmitting driving force generated by the drive motor (41a) to the drum (30a) and the pulsator (37a).

[0131] The drive motor (41a) may include a fixed stator (48a) and a rotor (49a) that rotates by electromagnetic interaction with the stator (48a).

[0132] The shaft system may include a dehydration shaft (47a) provided to transmit the driving force of the driving motor (41a) to the drum (30a), a washing shaft (46a) provided to transmit the driving force of the driving motor (41a) to the pulsator (37a), and a clutch device (45a) for connecting or disconnecting the driving motor (41a) and the dehydration shaft (47a).

[0133] The dehydration shaft (47a) is formed to have a hollow portion, and the washing shaft (46a) can be provided in the hollow portion of the dehydration shaft (47a). The washing shaft (46a) is maintained in a state connected to the rotor (49a) of the driving motor (41a), and the dehydration shaft (47a) can be connected to or disconnected from the rotor (49a) of the driving motor (41a) by a clutch device (45a).

[0134] When the clutch device (45a) disconnects the dehydration shaft (47a) and the driving motor (41a), power is transmitted only to the washing shaft (46a), so that only the pulsator (37a) rotates. When the clutch device (45a) connects the dehydration shaft (47a) and the driving motor (41a), power is transmitted to both the dehydration shaft (47a) and the washing shaft (46a), so that the drum (30a) and the pulsator (37a) can rotate simultaneously.

[0135] When only the pulsator (37a) rotates, a washing water flow is generated by the rotation of the pulsator (37a), and the laundry rotates by the generated washing water flow, causing friction with the drum (30a), so that the laundry can be washed. When the pulsator (37a) and the drum (30a) rotate simultaneously, the laundry inside the drum (30a) rotates, causing the moisture in the laundry to be removed by centrifugal force, so that the laundry can be dehydrated.

[0136] The washing machine (10a) may include a water supply device (50a). The water supply device (50a) may supply water to the tub (20a). The water supply device (50a) may be located above the tub (20a). The water supply device (50a) may include a water supply pipe and a water supply valve provided in the water supply pipe. The water supply pipe may be connected to an external water source. The water supply pipe may extend from the external water source to a detergent supply device (60a) and / or the tub (20a). Water may be supplied to the tub (20a) via the detergent supply device (60a). Water may be supplied to the tub (20a) without passing through the detergent supply device (60a).

[0137] The water supply valve can open or close the water supply pipe in response to an electrical signal from the control unit. The water supply valve can allow or block the supply of water from an external water source to the tub (20a). The water supply valve may include, for example, a solenoid valve that opens and closes in response to an electrical signal.

[0138] The washing machine (10a) may include a detergent supply device (60a) configured to supply detergent to the tub (20a). The detergent supply device (60a) may be configured to supply detergent into the tub (20a) during the water supply process. Water supplied through the water supply pipe may be mixed with detergent via the detergent supply device (60a). The water mixed with detergent may be supplied into the tub (20a). The detergent may include not only laundry detergent but also a rinse agent for a dryer, a deodorant, a sterilizer, or an air freshener.

[0139] The washing machine (10a) may include a drainage device (70a). The drainage device (70a) may be configured to discharge water stored in the tub (20a) to the outside. A drainage port (21a) may be formed at the bottom of the tub (20a) to drain water stored in the tub (20a) to the outside of the tub (20a). A drainage hose (74a) may be connected to the drainage port (21a), and a drainage valve (72a) for opening and closing the drainage hose (74a) may be provided on the drainage hose (74a).

[0140] The washing machine (10a) may provide a user interface device (15a) for interaction between the user and the washing machine (10a).

[0141] The washing machine (10a) may include at least one user interface device (15a). The user interface device (15a) may include at least one input interface (16a) and at least one output interface (17a).

[0142] At least one input interface (16a) can convert sensory information received from a user into an electrical signal.

[0143] At least one input interface (16a) may include a power button, an operation button, a course selection dial (or a course selection button), and a wash / rinse / spin setting button. The at least one input interface (16a) may include, for example, a tact switch, a push switch, a slide switch, a toggle switch, a micro switch, a touch switch, a touch pad, a touch screen, a jog dial, and / or a microphone.

[0144] At least one output interface (17a) can transmit various data related to the operation of the washing machine (10a) to the user by generating sensory information.

[0145] For example, at least one output interface (17a) can transmit information related to the washing course and the operating time of the washing machine (10a), washing settings / rinsing settings / spin settings to the user. Information related to the operation of the washing machine (10a) can be output through a screen, an indicator, voice, etc. At least one output interface (17a) can include, for example, a liquid crystal display (LCD) panel, a light emitting diode (LED) panel, a speaker, etc.

[0146] The clothing treatment device (1a) may include a filter device (100) that is the same as the filter device (100) illustrated in FIGS. 1 and 2. For example, the filter device (100) according to one embodiment may be connected to a front-loading washing machine or a top-loading washing machine. The filter device (100) may be provided to be connectable to a drainage device (70a) of the washing machine (10a). The filter device (100) may be disposed outside the washing machine (10a). The filter device (100) may be provided to filter foreign substances from water discharged from the washing machine (10a). The filter device (100) may be provided to filter foreign substances having a size smaller than the size of foreign substances that can be filtered by the washing machine (10a). For example, the filter device (100) may be provided to filter foreign substances having a size smaller than the size of foreign substances that can be filtered by the drainage device (70a) of the washing machine (10a).

[0147] The washing machine (10a) of the clothing treatment device (1a) illustrated in FIGS. 4 and 5 may have the same control configuration as the control configuration of the washing machine (10) illustrated in FIG. 3.

[0148] FIG. 6 illustrates the interior of the filter device illustrated in FIGS. 1 and 4 according to one embodiment of the present disclosure. FIG. 7 illustrates an exploded view of the filter device illustrated in FIG. 6. FIG. 8 illustrates the filter device illustrated in FIG. 7 from a different orientation from FIG. 7. FIG. 9 is a control block diagram of the filter device according to one embodiment of the present disclosure. FIG. 10 illustrates a cross-section of a portion of the filter device illustrated in FIG. 6.

[0149] Referring to FIGS. 6 to 8, a filter device (100) according to an embodiment of the present disclosure may include a filter housing (101) that accommodates various components. The filter housing (101) may include a housing body (102), a housing cover (103), and a housing bracket (104). For example, the housing body (102), the housing cover (103), and the housing bracket (104) may each be provided as separate components. For example, the housing body (102) may be formed integrally with the housing cover (103). For example, the housing body (102) may be formed integrally with the housing bracket (104). For example, the housing cover (103) may be formed integrally with the housing bracket (104). For example, the housing body (102) may be formed integrally with the housing cover (103) and the housing bracket (104).

[0150] The housing body (102) can form a space for accommodating various components. The housing body (102) can have a cross-section that is approximately U-shaped and is perpendicular to the direction in which the filter (120) accommodated therein extends. The housing body (102) can have a box shape with an open front, rear, and top. The housing body (102) can be detachably coupled to a housing cover (103) and / or a housing bracket (104).

[0151] The housing body (102) may include a housing inlet (102a) for introducing water into the interior of the filter device (100) and a housing discharge (102b) for discharging water inside the filter device (100) to the exterior of the filter device (100). The housing inlet (102a) and / or the housing discharge (102b) may be located at the lower portion of the housing body (102).

[0152] The housing inlet (102a) can be connected to the drain hose (74, 74a) of the washing machine (10, 10a). The housing outlet (102b) can be connected to the drain line (105).

[0153] A housing cover (103) may be provided to cover the open front and upper surface of the housing body (102). The housing cover (103) may be detachably coupled to the housing body (102) and / or the housing bracket (104). The housing cover (103) may include a cover opening (103a) formed to allow a filter (120) to pass through. The housing cover (103) may include an installation portion (103b) in which a user interface device (197) is installed. At least a portion of the user interface device (197) may be exposed to the outside of the filter device (100) through the installation portion (103b).

[0154] The housing bracket (104) may be provided to cover the open rear surface of the housing body (102). The housing bracket (104) may be detachably coupled to the housing body (102) and / or the housing cover (103). The housing bracket (104) may include a cable opening (104a) formed to allow a power cable (109) to pass through. The housing bracket (104) may include a connector mounting portion (104b) formed to allow a connector for communication with an external device, such as a washing machine (10), to be connected.

[0155] The filter device (100) may include a filter case (110) positioned inside the filter housing (101). The filter case (110) may form a passage through which water flowing into the filter device (100) passes. The filter case (110) may be provided to accommodate a filter (120). The filter case (110) may include a case body (111) and a case cover (112).

[0156] The case body (111) may extend along the direction in which the filter (120) accommodated therein extends. The case body (111) may include a case opening (111a) formed to allow the filter (120) to pass through. The case opening (111a) may be provided to correspond to the cover opening (103a). The case opening (111a) may be positioned closer to the case outlet (111b) than to the case inlet (112a), and may be provided to allow the filter (120) to pass through.

[0157] The case body (111) may include a case discharge portion (111b) for discharging water flowing into the filter case (110) from the filter case (110). The case discharge portion (111b) may be located at the lower portion of the case body (111). The case discharge portion (111b) may be located adjacent to the case opening (111a). The case discharge portion (111b) may be located close to the other end opposite to the end where the filter opening (120a) of the filter (120) is located. The case discharge portion (111b) may be located closer to the second filter portion (122) than to the first filter portion (121) of the filter (120).

[0158] The case discharge portion (111b) may be connected to the housing discharge portion (102b). The filter device (100) may include a discharge guide (107) for connecting the case discharge portion (111b) and the housing discharge portion (102b).

[0159] The case cover (112) can be detachably coupled to one end of the case body (111) opposite to the end where the case opening (111a) is located. For example, the case cover (112) can be formed integrally with the case body (111).

[0160] The case cover (112) may include a case inlet (112a) for allowing water to flow into the interior of the filter case (110). The case inlet (112a) may be connected to the housing inlet (102a). The filter device (100) may include an inlet guide (106) for connecting the case inlet (112a) and the housing inlet (102a).

[0161] The case cover (112) may include a motor mounting portion (112b) for mounting a filter cleaning device (130). The motor mounting portion (112b) may be positioned above the case inlet portion (112a). A cleaning motor (136) of the filter cleaning device (130) may be mounted on the motor mounting portion (112b).

[0162] The filter device (100) may include a filter (120) that can be detachably connected to a filter case (110). The filter (120) may be configured to filter out fine foreign substances. The filter (120) may be configured to filter out microplastics having a size of approximately 5 mm or less. The filter (120) may include a mesh filter. The filter (120) may extend approximately between the case inlet (112a) and the case outlet (111b).

[0163] The filter (120) may include a filter opening (120a) that opens toward the case inlet (112a) when mounted on the filter case (110). Water flowing into the filter case (110) through the case inlet (112a) may move into the interior of the filter (120) through the filter opening (120a).

[0164] The filter (120) may include a first filter unit (121) and a second filter unit (122). The first filter unit (121) may be positioned closer to the case inlet (112a) than the second filter unit (122). Water flowing into the filter case (110) may have foreign substances filtered out by the first filter unit (121), or may pass through the first filter unit (121) without being filtered out by the first filter unit (121) and then be filtered out by the second filter unit (122). The first filter unit (121) and the second filter unit (122) may be sequentially arranged along the direction in which the filter (120) extends. Foreign substances transferred from the first filter unit (121) by the filter cleaning device (130) may be collected in the second filter unit (122).

[0165] The filter device (100) may include a handle (129) that is at least partially exposed to the outside of the filter housing (101) when the filter (120) is mounted in the filter case (110). For example, the handle (129) may be detachably coupled to the filter (120). As the handle (129) is detachably coupled to the filter (120), the filter (120) may be easily maintained and / or repaired. The handle (129) may be rotatably coupled to the cover opening (103a) and / or the case opening (111a).

[0166] The filter device (100) may include a filter cleaning device (130) for cleaning the filter (120). The filter cleaning device (130) may be mounted on the filter case (110). The filter cleaning device (130) may include a cleaning member (131) for cleaning the surface of the filter (120) through which foreign substances are filtered, and a cleaning driving device (135) for driving the cleaning member (131).

[0167] The cleaning member (131) may be positioned inside the filter (120). The cleaning member (131) may be provided to correspond to the first filter portion (121) of the filter (120). The cleaning member (131) may have a blade (132) extending in a spiral shape. The blade (132) may extend radially from the rotational axis of the cleaning member (131). The cleaning member (131) may be provided to contact the surface of the filter (120) where foreign substances are filtered. The cleaning member (131) may be provided to contact the inner surface of the filter (120). For example, the cleaning member (131) may include a plurality of brushes.

[0168] The cleaning member (131) may be provided to transfer foreign substances filtered from a portion of the filter (120) close to the case inlet (112a) to a portion of the filter (120) close to the case outlet (111b) of the filter (120) while being driven by the cleaning drive device (135). The cleaning member (131) may be provided to transfer foreign substances filtered in the first filter portion (121) to the second filter portion (122). For example, the cleaning member (131) may be provided to be rotatable inside the filter (120). The cleaning member (131) may include a flexible material. The cleaning member (131) may rotate while in contact with the filter (120) and clean foreign substances filtered in the filter (120). The cleaning member (131) can scrape and remove foreign substances attached to the filtering surface of the filter (120) while being driven in contact with the filter (120). For example, the cleaning member (131) can be provided so as to be slidable within the filter (120).

[0169] The cleaning member (131) is provided to transfer foreign substances filtered in the first filter unit (121) to the second filter unit (122), and as water flowing into the filter case (110) flows from the first filter unit (121) to the second filter unit (122), foreign substances filtered in the first filter unit (121) can be efficiently collected in the second filter unit (122). Considering the flow of water passing through the filter (120), the cleaning member (131) can be arranged behind the reference line (C) illustrated in FIG. 10, and the case discharge unit (111b) can be arranged in front of the reference line (C) illustrated in FIG. 10.

[0170] The cleaning drive device (135) may include a cleaning motor (136) and a motor shaft (137). The cleaning motor (136) may be configured to generate power for driving the cleaning member (131). The motor shaft (137) may be connected to the cleaning member (131). The cleaning motor (136) may be mounted on the filter case (110). The cleaning motor (136) may be positioned closer to the case inlet (112a) than to the case outlet (111b).

[0171] The filter device (100) may include a circuitry (190) located inside the filter housing (101). The circuitry (190) may be located at an upper portion inside the filter housing (101). The circuitry (190) may be located on one side of the filter case (110). For example, the circuitry (190) may be located on the upper side of the filter case (110). For example, the circuitry (190) may be arranged on the upper side of the filter (120).

[0172] The electric part (190) may be provided with a control part (191) for controlling the filter device (100) and a communication part (199) for communicating with the washing machine (10, 10a).

[0173] The filter device (100) may include a user interface device (197) positioned on the upper side of the front part (190). At least a portion of the user interface device (197) may be exposed to the outside of the filter device (100) through the installation part (103b) of the filter housing (101). The user interface device (197) may be positioned on the upper surface of the filter device (100). The user interface device (197) may include a first button (197a) and a second button (197b). The first button (197a) may include one of a power button and a WiFi connection button. The second button (197b) may include one of a power button and a WiFi connection button other than the first button (197a).

[0174] The filter device (100) may include a display (198) that displays visualized information related to the filter device (100). The display (198) may be located on the upper surface of the filter device (100). For example, the display (198) may be provided as a component of a user interface device (197).

[0175] The filter device (100) may include a filter sensor (181) that obtains information about the status of the filter (120). The filter sensor (181) may be mounted on the filter case (110). The filter sensor (181) may be located on the outside of the filter case (110). The filter sensor (181) may be positioned to correspond to the second filter unit (122) of the filter (120) mounted on the filter case (110). For example, the filter sensor (181) may include a magnetic sensor. For example, the filter sensor (181) may include an optical sensor.

[0176] The filter device (100) may include a water supply sensor (182) for detecting the supply of water to the filter device (100). The water supply sensor (182) may be mounted on the lower portion of the filter case (110). The water supply sensor (182) may be located close to the case inlet (112a) of the filter case (110).

[0177] Figure 9 is a control block diagram of a filter device according to one embodiment of the present disclosure.

[0178] According to one embodiment, a filter device (100) may include a user interface device (197) for interaction with a user, a filter sensor (181), a water supply sensor (182), a filter cleaning device (130), a display (198), a communication unit (199), and a control unit (191) for controlling various components of the filter device (100).

[0179] The control unit (191) may include at least one memory (191a) and at least one processor (191b) to perform the operations described above and the operations described below.

[0180] In one embodiment, the control unit (191) may include at least one memory (191a) that stores data in the form of an algorithm and / or a program for controlling the operation of components within the filter device (100), and at least one processor (191b) that performs the operations described above and the operations described below using the data stored in the at least one memory (191a). The memory (191a) and the processor (191b) may each be implemented as separate chips. The processor (191b) may include one or more processor chips or one or more processing cores. The memory (191a) may include one or more memory chips or one or more memory blocks. In addition, the memory (191a) and the processor (191b) may also be implemented as a single chip.

[0181] The control unit (191) processes user input received through the user interface device (197) and can control various components of the filter device (100) (e.g., filter cleaning device (130), display (198)) based on the processed user input.

[0182] The user interface device (197) may include a first button (197a) and a second button (197b), and may operate based on a control signal of the control unit (191).

[0183] The filter sensor (181) can be mounted on the filter case (110). The filter sensor (181) can detect the amount of foreign substances collected in the filter (120).

[0184] For example, the filter sensor (181) may include an optical sensor (e.g., an infrared sensor) that detects the amount of foreign substances collected in the filter (120). However, the type of the filter sensor (181) is not limited thereto, and any configuration capable of detecting the amount of foreign substances collected in the filter (120) may be adopted as the filter sensor (181).

[0185] A water supply sensor (182) can be mounted on the filter case (110). The water supply sensor (182) can detect water flowing into the filter case (110).

[0186] For example, the water supply sensor (182) may include a capacitive sensor that detects the inflow of water into the interior of the filter case (110). However, the type of the water supply sensor (182) is not limited thereto, and any configuration capable of detecting the inflow of water into the filter case (110) may be adopted as the water supply sensor (182).

[0187] The control unit (191) processes sensor data received through the filter sensor (181) and / or the water supply sensor (182), and can control various components of the filter device (100) (e.g., the filter cleaning device (130)) based on the processed sensor data.

[0188] The filter cleaning device (130) may include a cleaning member (131) that is slidably and rotatably inserted into the inner surface of the filter (120), and a cleaning motor (136) for rotating the cleaning member (131).

[0189] The control unit (191) can control the filter cleaning device (130).

[0190] In one embodiment, the control unit (191) can control a drive circuit that applies a driving current to the cleaning motor (136). The drive circuit can supply a driving current to the cleaning motor (136) in response to a driving signal of the control unit (191). The drive circuit can include a rectifier circuit that rectifies AC power of an external power source, a DC link circuit that removes ripples of the rectified power and outputs DC power, an inverter circuit that converts the DC power into driving power in the form of a sinusoidal wave and outputs the driving current to the cleaning motor (136), a current sensor that measures the driving current supplied to the cleaning motor (136), and a gate driver that turns on / off a switching element included in the inverter circuit based on a driving signal of the control unit (191).

[0191] The driving circuit connected to the cleaning motor (136) may include components for driving a DC motor.

[0192] The display (198) can display visualized information related to the filter device (100). For example, the display (198) may be provided as a separate configuration from the user interface device (197). For example, the display (198) may be provided as a component of the user interface device (197).

[0193] The communication unit (199) can transmit data to an external device or receive data from an external device based on a control signal from the control unit (191). For example, the communication unit (199) can communicate with a server and / or a user terminal device and / or a home appliance including a washing machine (10, 10a) to transmit and receive various types of data.

[0194] The communication unit (199) for this purpose can support the establishment of a direct (e.g., wired) communication channel or a wireless communication channel between external electronic devices (e.g., servers, user terminal devices, and / or home appliances), and the performance of communication through the established communication channel. According to one embodiment, the communication unit (199) may include a wireless communication module (e.g., a cellular communication module, a short-range wireless communication module, or a GNSS (global navigation satellite system) communication module) or a wired communication module (e.g., a local area network (LAN) communication module, or a power line communication module). Among these communication modules, the corresponding communication module can communicate with the external electronic device through a first network (e.g., a short-range communication network such as Bluetooth, WiFi (wireless fidelity) direct, or IrDA (infrared data association)) or a second network (e.g., a long-range communication network such as a legacy cellular network, a 5G network, a next-generation communication network, the Internet, or a computer network (e.g., a LAN or WAN)). These different types of communication modules may be integrated into a single component (e.g., a single chip) or implemented as multiple separate components (e.g., multiple chips).

[0195] According to various embodiments, the communication unit (199) can establish communication with a user terminal device through a server.

[0196] In various embodiments, the communication unit (199) may include a Wi-Fi module and may perform communication with an external server and / or user terminal device based on establishing communication with an access point (AP) in the home.

[0197] Fig. 11 illustrates the flow of water flowing into the filter case illustrated in Fig. 10 and then being discharged after passing through the filter. Fig. 12 illustrates a state in which foreign substances inside the filter are collected by the filter cleaning device illustrated in Fig. 10.

[0198] Referring to FIG. 11, water flowing into the filter device (100) through the housing inlet (102a) can be guided to the filter case (110) by the inlet guide (106). Water flowing into the interior of the filter case (110) through the case inlet (112a) can flow into the interior of the filter (120) through the filter opening (120a). Water flowing into the filter case (110) can flow into the interior of the filter (120). Water flowing into the interior of the filter (120) can pass through the filter (120) and foreign substances can be filtered out. Water passing through the filter (120) can be discharged to the outside of the filter case (110) through the case discharge portion (111b). Water discharged through the case discharge portion (111b) can be discharged from the filter device (100) by sequentially passing through the discharge guide (107) and the housing discharge portion (102b). Water discharged from the filter device (100) can be guided through the drain line (105).

[0199] Referring to FIG. 12, while water flowing into the filter case (110) passes through the filter (120) and foreign substances are filtered, foreign substances may accumulate on the inner surface (filtering surface) of the filter (120). The filter cleaning device (130) can transfer foreign substances accumulated on the inner surface of the filter (120) to one end of the filter (120). The filter cleaning device (130) can remove foreign substances filtered on the inner surface of the filter (120) from the inner surface of the filter (120). The filter cleaning device (130) can clean the inner surface of the filter (120) where foreign substances are filtered. The filter cleaning device (130) can clean the filter (120) by rotating the filter (120) while the blade (132) is in contact with the inner surface of the filter (120).

[0200] FIG. 13 illustrates a case where a filter device of a clothes treatment device according to one embodiment of the present disclosure is mounted on the upper surface of a washing machine via an installation device. FIG. 14 illustrates a case where a filter device of a clothes treatment device according to one embodiment of the present disclosure is mounted on the upper surface of a washing machine via an installation device, from a different direction than FIG. 13. FIG. 15 illustrates a state before an installation device is coupled to a filter device according to one embodiment of the present disclosure. FIG. 16 illustrates a state where an installation device is coupled to a filter device according to one embodiment of the present disclosure. FIG. 17 illustrates a state where an installation device is fixed to a filter device according to one embodiment of the present disclosure.

[0201] Referring to FIGS. 13 and 14, the clothing treatment device (1, 1a) may include an installation device (200) for installing a filter device (100). According to one example, the installation device (200) may be used to install the filter device (100) on the upper surface of a washing machine (10), as shown in FIG. 1, or on the upper surface of a shelf or the like.

[0202] The installation device (200) may include a supporter (210). The supporter (210) may be detachably coupled to the filter device (100). The supporter (210) may be detachably coupled to the filter housing (101) of the filter device (100). The supporter (210) may be detachably coupled to the housing body (102) of the filter housing (101).

[0203] The filter device (100) may include a coupling portion (102c) for detachably coupling the supporter (210). The coupling portion (102c) may be provided in the housing body (102) of the filter housing (101). The coupling portion (102c) may be located on the bottom surface of the filter device (100). The coupling portion (102c) may have a substantially groove shape. For example, a plurality of coupling portions (102c) may be provided. The filter device (100) includes a coupling portion (102c) formed on the bottom surface of the filter device (100) so as to be coupled with the supporter mounting portion (213) of the supporter (210).

[0204] The supporter (210) may include a supporter body (211) having a roughly plate shape. The supporter body (211) may be provided to have a length greater than the width of the filter device (100) while the supporter (210) is directly coupled to the filter device (100). The supporter body (211) may support the filter device (100) so that the filter device (100) does not tip over while the supporter (210) is mounted on the upper surface of the washing machine (10) while being directly coupled to the filter device (100).

[0205] The supporter (210) may include a supporter mounting portion (213) for detachably being coupled to the coupling portion (102c) of the filter device (100). The supporter mounting portion (213) may have a shape that protrudes from the supporter body (211) to correspond to the coupling portion (102c) of the filter device (100). For example, the number of supporter mounting portions (213) may correspond to the number of coupling portions (102c).

[0206] Referring to FIGS. 14 and 15, the coupling portion (102c) of the filter device (100) may include a passage portion (102ca) through which at least a portion of the supporter mounting portion (213) of the supporter (210) may pass. The passage portion (102ca) may be formed so that the fixed body (213b) of the supporter mounting portion (213) may pass therethrough. The passage portion (102ca) may include a portion having a shape corresponding to the fixed body (213b) of the supporter mounting portion (213).

[0207] The coupling portion (102c) of the filter device (100) may include a coupling support portion (102cb) for supporting and fixing a portion of the supporter mounting portion (213) that has passed through the passage portion (102ca). The coupling support portion (102cb) may be provided to support the fixing body (213b) of the supporter mounting portion (213) that has passed through the passage portion (102ca). The coupling support portion (102cb) may be positioned adjacent to the passage portion (102ca).

[0208] The supporter mounting portion (213) of the supporter (210) may include a mounting body (213a) and a fixed body (213b) protruding from the mounting body (213a). The mounting body (213a) may protrude from the supporter body (211). The mounting body (213a) may have a roughly cylindrical shape.

[0209] The fixed body (213b) may be positioned at an end of the mounting body (213a) spaced apart from the supporter body (211). The fixed body (213b) may protrude from the mounting body (213a) in a direction different from the direction in which the mounting body (213a) protrudes. The fixed body (213b) may protrude in the radial direction of the mounting body (213a). The fixed body (213b) may be provided so as to pass through the passage (102ca). The fixed body (213b) may be supported and fixed by the coupling support (102cb) while passing through the passage (102ca).

[0210] The filter device (100) may include a supporter fixing portion (102d) for fixing the filter device (100) in a state of being coupled with the supporter (210). The supporter fixing portion (102d) may be provided in the housing body (102) of the filter housing (101). The supporter fixing portion (102d) may have an approximate slit shape. The supporter fixing portion (102d) may be positioned spaced apart from the coupling portion (102c).

[0211] The supporter (210) may include a fixed support portion (215) that is provided to be coupled with the supporter fixing portion (102d) of the filter device (100). The fixed support portion (215) may be provided to correspond to the shape of the supporter fixing portion (102d). The fixed support portion (215) may protrude from the supporter body (211). The fixed support portion (215) may be positioned spaced apart from the supporter mounting portion (213).

[0212] After the supporter mounting portion (213) is inserted into the coupling portion (102c), as the supporter (210) slides relative to the filter device (100), the fixed body (213b) is coupled to the coupling support portion (102cb), and the fixed support portion (215) can be inserted into the supporter fixing portion (102d). As the fixed support portion (215) is inserted into the supporter fixing portion (102d), the supporter (210) can be restricted from moving in a direction away from the filter device (100).

[0213] The supporter (210) may include an elastic material. By separating the fixed support member (215) from the supporter fixing member (102d) and moving the supporter (210) in a direction opposite to the mounting direction of the supporter (210), the supporter mounting member (213) can be separated from the coupling member (102c), and the supporter (210) can be separated from the filter device (100).

[0214] The installation device (200) may include a buffer member (230) to reduce vibrations that may occur in the washing machine (10) from being transmitted to the filter device (100) while the supporter (210) mounted on the filter device (100) is directly installed in the washing machine (10).

[0215] The supporter (210) may include a mounting surface (211a) on which a buffer member (230) is mounted. The mounting surface (211a) may be located on the opposite side from the surface on which the supporter mounting portion (213) of the supporter (210) is located.

[0216] The buffer member (230) may include a material more flexible than the supporter (210). The buffer member (230) may include a material having adhesive properties. The buffer member (230) may be detachably bonded to the supporter (210). The buffer member (230) may be detachably bonded to the washing machine (10).

[0217] The buffer member (230) may include a first surface (231) for bonding to the supporter (210) and a second surface (232) for bonding to the washing machine (10). The first surface (231) may be formed to be approximately flat. The buffer member (230) may include a protrusion (232a) protruding from the second surface (232).

[0218] The buffer member (230) may be provided with a protrusion (232a) on the second surface (232), so that the frictional force and / or adhesive force of the first surface (231) in contact with the supporter (210) is greater than the frictional force and / or adhesive force of the second surface (232) in contact with the washing machine (10). As the frictional force and / or adhesive force between the first surface (231) of the buffer member (230) and the supporter (210) is greater than the frictional force and / or adhesive force between the second surface (232) of the buffer member (230) and the washing machine (10), when the filter device (100) mounted on the installation device (200) is separated from the washing machine (10), the buffer member (230) may be separated from the washing machine (10) in a state in which it is adhered to the supporter (210).

[0219] Referring to FIGS. 15 to 17, a method of mounting a filter device (100) on the upper surface of a washing machine (10) is described.

[0220] Referring to FIGS. 15 and 16, a first surface (231) of a buffer member (230) may be attached to the surface opposite to the surface of the supporter (210) that is mounted on the filter device (100). The supporter (210) to which the buffer member (230) is attached may be initially coupled to the filter device (100) in a state in which the fixed body (213b) of the supporter mounting portion (213) is aligned so that it can pass through the passage portion (102ca) of the coupling portion (102c).

[0221] Referring to FIGS. 16 and 17, when the fixed body (213b) of the supporter mounting portion (213) passes through the passage portion (102ca) of the coupling portion (102c), and the supporter (210) is slidably moved relative to the filter device (100), the fixed body (213b) of the supporter mounting portion (213) is coupled with the coupling support portion (102cb) and can be supported by the coupling support portion (102cb).

[0222] In a state where the fixed body (213b) of the supporter mounting portion (213) is supported by the coupling support portion (102cb), the fixed support portion (215) of the supporter (210) can be coupled to the supporter fixing portion (102d) of the filter device (100). In a state where the fixed body (213b) of the supporter mounting portion (213) is supported by the coupling support portion (102cb), the fixed support portion (215) of the supporter (210) is coupled to the supporter fixing portion (102d) of the filter device (100), so that the installation device (200) can be mounted and fixed to the filter device (100).

[0223] According to this configuration, the installation device (200) according to one embodiment of the present disclosure can be easily mounted on the filter device (100) and easily separated from the filter device (100), so that the installability of the filter device (100) can be improved, and the usability of the filter device (100) can be improved.

[0224] FIG. 18 illustrates a case where a filter device of a garment treatment device according to one embodiment of the present disclosure is mounted on a side wall via an installation device. FIG. 19 illustrates a state before a support bracket is coupled to a supporter of an installation device according to one embodiment of the present disclosure. FIG. 20 illustrates a state in which a support bracket is coupled to a supporter of an installation device according to one embodiment of the present disclosure. FIG. 21 illustrates a state in which a support bracket is fixed to a supporter according to one embodiment of the present disclosure.

[0225] Referring to FIG. 18, the installation device (200) of the clothing treatment device (1, 1a) may be arranged to install the filter device (100) on the side wall (W) and / or the side of the washing machine (10, 10a). According to one example, the installation device (200) may be used to install the filter device (100) on the surface of the side wall (W) adjacent to the washing machine (10a), as illustrated in FIG. 4.

[0226] The supporter (210) of the installation device (200) according to one embodiment can be directly coupled to the filter device (100) to support the filter device (100) when the filter device (100) is mounted on the upper surface of the washing machine (10) as shown in FIG. 1, and can be indirectly coupled to the filter device (100) to support the filter device (100) when the filter device (100) is mounted on the side wall (W) adjacent to the washing machine (10a) as shown in FIG. 4.

[0227] According to one embodiment, the supporter (210) of the installation device (200) may be coupled with a support bracket (220) mounted on the filter device (100) to support the filter device (100). The supporter (210) may be detachably mounted on the support bracket (220). According to one embodiment, the supporter (210) of the installation device (200) may be detachably mounted on the filter device (100) and may also be detachably mounted on the support bracket (220).

[0228] An installation device (200) according to one embodiment may include a support bracket (220) detachably mounted to a supporter (210). The support bracket (220) may be detachably coupled to a filter device (100).

[0229] The support bracket (220) may include a bracket body (221) having a roughly L-shape. The bracket body (221) may include a bottom portion (221a) facing the bottom surface of the filter device (100) and a side portion (221b) facing the left side or the right side of the filter device (100) while being coupled to the filter device (100). The bottom portion (221a) of the bracket body (221) may support the filter device (100). Depending on the position of the side wall (W), the support bracket (220) may be coupled to the filter device (100) such that the side portion (221b) faces the left side of the filter device (100), or may be coupled to the filter device (100) such that the side portion (221b) faces the right side of the filter device (100).

[0230] The support bracket (220) may include an insertion portion (226) that can be inserted into the coupling portion (102c) of the filter device (100). The insertion portion (226) may have a shape that protrudes from the bracket body (221). The insertion portion (226) may be inserted into the coupling portion (102c) while the support bracket (220) is mounted on the filter device (100). The number of insertion portions (226) may correspond to the number of coupling portions (102c). The insertion portions (226) may guide the position of the support bracket (220) with respect to the filter device (100) so that the fastening member (B) can be fastened to the fastening hole (224) of the support bracket (220) and the fastening hole (102e, see FIG. 14) of the filter device (100).

[0231] The support bracket (220) may include a fastening hole (224) for being fixed to the filter device (100) by a fastening member (B). When the support bracket (220) is positioned relative to the filter device (100) so that the insertion portion (226) is inserted into the joining portion (102c), the fastening member (B) is coupled to the fastening hole (224) of the support bracket (220) and the fastening hole (102e) of the filter device (100), thereby the support bracket (220) may be fixed to the filter device (100).

[0232] The support bracket (220) may include a bracket coupling portion (223) to which the supporter mounting portion (213) of the supporter (210) is detachably coupled. The number of bracket coupling portions (223) may correspond to the number of supporter mounting portions (213).

[0233] The bracket joint (223) may include a bracket passage (223a) through which at least a portion of the supporter mounting portion (213) of the supporter (210) may pass. The bracket passage (223a) may be provided so that the fixed body (213b) of the supporter mounting portion (213) may pass through.

[0234] The bracket coupling portion (223) may include a bracket support portion (223b) for supporting and fixing a portion of the supporter mounting portion (213) that passes through the bracket passage portion (223a). The bracket support portion (223b) may be positioned adjacent to the bracket passage portion (223a). The bracket support portion (223b) may be positioned above the bracket passage portion (223a) in the direction of gravity. The bracket support portion (223b) may have a smaller size than the bracket passage portion (223a). The bracket support portion (223b) may be provided so that the fixing body (213b) of the supporter mounting portion (213) does not pass through it.

[0235] The support bracket (220) can be mounted on the supporter (210) as the fixed body (213b) of the supporter mounting portion (213) slides in the direction of gravity with respect to the supporter (210) after passing through the bracket passage portion (223a). When the support bracket (220) is mounted on the supporter (210), the mounting body (213a) can support the bracket support portion (223b) in the direction of gravity, and the fixed body (213b) can support the side portion (221b) of the bracket body (221) in the opposite direction to the direction in which the support bracket (220) is detached from the supporter (210), thereby preventing the support bracket (220) from being detached from the supporter (210).

[0236] The supporter (210) may include a support rib (217) for limiting relative movement of the support bracket (220) with respect to the supporter (210) while being coupled to the support bracket (220). The support rib (217) may be positioned adjacent to the support mounting portion (213). The support rib (217) may extend in a direction in which the support bracket (220) is mounted to the supporter (210).

[0237] The support bracket (220) may include a bracket groove (227) that is coupled to a support rib (217) while mounted on the supporter (210). The support rib (217) may be inserted into the bracket groove (227) while the support bracket (220) is mounted on the supporter (210). The bracket groove (227) may extend in the direction in which the support bracket (220) is mounted on the supporter (210).

[0238] As the supporter rib (217) of the supporter (210) is inserted into the bracket groove (227) of the support bracket (220), the support bracket (220) can be restricted from moving relative to the supporter (210). By the supporter rib (217) and the bracket groove (227), the support bracket (220) can be restricted from moving in a direction perpendicular to the direction of gravity with respect to the supporter (210) and the direction in which the support bracket (220) is separated with respect to the supporter (210). By the supporter rib (217) and the bracket groove (227), the support bracket (220) can be restricted from moving forward and backward with respect to the filter device (100) with respect to the supporter (210).

[0239] The supporter (210) may include a supporter groove (218) for limiting relative movement of the support bracket (220) with respect to the supporter (210) while the support bracket (220) is coupled. The supporter groove (218) may extend approximately parallel to the support rib (217). The supporter groove (218) may extend in the direction of gravity.

[0240] The support bracket (220) may include bracket ribs (228, 229) that are coupled to the supporter groove (218) while being coupled to the supporter (210). The bracket ribs (228, 229) may be inserted into the supporter groove (218) while the support bracket (220) is mounted on the supporter (210). As the bracket ribs (228, 229) of the support bracket (220) are inserted into the supporter groove (218) of the supporter (210), the relative movement of the support bracket (220) with respect to the supporter (210) may be limited.

[0241] Bracket ribs (228, 229) may be provided in multiple positions symmetrical with respect to the bracket groove (227). The bracket ribs (228, 229) may be located at both ends of the side portion (221b) of the bracket body (221).

[0242] As illustrated in FIG. 18, when the side wall (W) is located on the left side of the filter device (100), the support bracket (220) can be mounted on the supporter (210) by inserting one bracket rib (228) among the plurality of bracket ribs (228, 229) into the supporter groove (218). For example, when the side wall (W) is located on the right side of the filter device (100), the support bracket (220) can be mounted on the supporter (210) by inserting another bracket rib (229) among the plurality of bracket ribs (228, 229) into the supporter groove (218).

[0243] Referring to FIGS. 18 to 21, a method of mounting a filter device (100) on a side wall (W) is described.

[0244] Referring to Fig. 18, in order to mount the filter device (100) on the side wall (W), a supporter (210) may be mounted on the side wall (W). The supporter (210) may be fixed to the side wall (W) by a fastening member (B). The supporter (210) may include a fastening hole (213c) for the fastening member (B). The fastening hole (213c) may be provided in the supporter mounting portion (213).

[0245] Referring to Fig. 19, the support bracket (220) can be mounted on the filter device (100). By inserting the insertion portion (226) into the coupling portion (102c) and fastening the fastening member (B) into the fastening hole (224) of the support bracket (220) and the fastening hole (102e) of the filter device (100), the support bracket (220) can be mounted on the filter device (100).

[0246] Referring to FIG. 20, as the fixed body (213b) of the supporter mounting portion (213) passes through the bracket passage portion (223a) of the bracket coupling portion (223), the support bracket (220) can be primarily coupled to the supporter (210). The supporter rib (217) of the supporter (210) can be inserted into the bracket groove (227) of the support bracket (220). The bracket rib (228) of the support bracket (220) can be inserted into the supporter groove (218) of the supporter (210).

[0247] Referring to FIG. 21, as the support bracket (220) moves in the direction of gravity with respect to the supporter (210), the mounting body (213a) of the supporter mounting portion (213) can be positioned on the bracket support portion (223b) of the bracket coupling portion (223). The mounting body (213a) of the supporter mounting portion (213) can support the support bracket (220) in the direction of gravity. The fixed body (213b) of the supporter mounting portion (213) can support the support bracket (220) in the opposite direction to the direction in which the support bracket (220) is separated from the supporter (210).

[0248] An installation device (200) according to one embodiment may include a supporter (210), a support bracket (220), and a buffer member (230). An installation device (200) according to one embodiment may include a supporter (210) and a buffer member (230). An installation device (200) according to one embodiment may include a supporter (210) and a support bracket (220).

[0249] When the filter device (100) is mounted on a washing machine (10, 10a), the installation device (200) may include a buffer member (230) to absorb vibration from the washing machine (10, 10a).

[0250] When the filter device (100) is mounted on the side wall (W) or the side of the washing machine (10, 10a), the installation device (200) may include a support bracket (220).

[0251] According to this configuration, the installation device (200) according to one embodiment can mount the filter device (100) on the upper surface of the washing machine (10, 10a) or the upper surface of a shelf, etc., as needed, and can also be mounted on the side of the washing machine (10, 10a) or the side of the side wall (W), etc., so that the installability of the filter device (100) can be improved and the usability of the filter device (100) can be improved.

[0252] A garment treatment device (1, 1a) according to one embodiment includes a housing (11, 11a), a tub (20, 20a) inside the housing, a drainage device for discharging water from the tub to the outside of the housing, a filter device configured to be connected to the drainage device to receive water discharged by the drainage device and filter foreign substances from the supplied water, the filter device including a coupling portion at the bottom of the filter device, and an installation device for mounting the filter device on a surface, the installation device including a supporter including a supporter mounting portion. The installation device is configured such that the supporter can be mounted on the surface, and the supporter mounting portion can be coupled to the coupling portion while the supporter is mounted on the surface and the supporter mounting portion is coupled to the coupling portion, such that the filter device is mounted on the surface. According to this configuration, the garment treatment device according to one embodiment can facilitate mounting of the filter device. According to this configuration, the garment treatment device according to one embodiment can improve usability of the filter device.

[0253] The above-described installation device may further include a buffer member (230) capable of absorbing vibrations transmitted from the garment treatment device to the filter device. According to this configuration, the garment treatment device according to one embodiment can reduce damage to the filter device due to vibrations generated from the washing machine, even when the filter device is installed in the washing machine.

[0254] The above-mentioned buffer member may include an adhesive material. According to this configuration, the garment treatment device according to one embodiment may omit a separate configuration for mounting the installation device to the washing machine.

[0255] The above-mentioned buffer member may include a first side (231) attached to the installation device, and a second side (232) configured to be attached to the surface, wherein the second side is configured such that the frictional force between the second side and the surface is lower than the frictional force between the first side and the installation device. According to this configuration, the clothes treatment device according to one embodiment can easily separate the installation device from the washing machine.

[0256] The above-mentioned buffer member may include a protrusion (232a) formed on a side to come into contact with the washing machine.

[0257] The filter device may include a supporter fixing portion (102d) at the bottom of the filter device. The supporter may include a fixing support portion (215) that is connectable to the supporter fixing portion (102d) so that movement of the supporter relative to the filter device is limited while the supporter mounting portion is connected to the connecting portion. According to this configuration, the clothes treatment device according to one embodiment can reduce shaking of the filter device when the filter device is connected to the washing machine by the supporter.

[0258] The above-described installation device may further include a support bracket configured to be coupled to the filter device and coupled to the supporter. With this configuration, the garment treatment device according to one embodiment can mount the filter device in various locations, thereby improving the usability of the filter device.

[0259] The support bracket may include an insertion portion (226) that can be inserted into the coupling portion; and a first fastening hole configured to receive a fastening member. The filter device may include a second fastening hole configured to receive the fastening member. While the insertion portion is inserted into the coupling portion, the fastening member is received in the first fastening hole (224) of the support bracket and the second fastening hole (102e) of the filter device, so that the support bracket can be coupled to the filter device. According to this configuration, the clothes treatment device according to one embodiment can easily mount the support bracket to the filter device.

[0260] The above support bracket may include a bracket coupling portion (223) configured to be coupled to the supporter mounting portion of the supporter.

[0261] The supporter may include a support rib (217) extending laterally so that the support bracket can be coupled to the supporter. The support bracket may include a bracket groove (227) into which the support rib is inserted while the support bracket is coupled to the supporter. According to this configuration, the garment treatment device according to one embodiment can reduce shaking of the filter device mounted on the supporter by the support bracket.

[0262] The above-described support bracket may include a plurality of bracket ribs arranged symmetrically with respect to the bracket groove. The supporter may include a support groove (218) into which one of the plurality of bracket ribs is inserted while the supporter rib is inserted into the bracket groove. According to this configuration, the garment treatment device according to one embodiment may mount the filter device at various locations.

[0263] The above support bracket may include a bottom portion (221a) for supporting a portion of the bottom of the filter device while the support bracket is coupled to the filter device, and a side portion (221b) for covering a portion of the left or right side of the filter device while the support bracket is coupled to the filter device.

[0264] The above-mentioned support bracket may be configured to be connected to the supporter by sliding movement. According to this configuration, the garment treatment device according to one embodiment can mount the filter device in a relatively simple manner.

[0265] The supporter may be configured to be coupled to the filter device by sliding movement. With this configuration, the garment treatment device according to one embodiment can mount the filter device in a relatively simple manner.

[0266] The supporter may include a fastening hole (213c) in the supporter mounting portion to accommodate a fastening member (B). With this configuration, the garment treatment device according to one embodiment can form a neat appearance when the supporter is installed on the side wall.

[0267] A clothing treatment device (1, 1a) according to one embodiment includes a washing machine (10, 10a) including a washing machine housing (11, 11a), a tub (20, 20a) provided inside the washing machine housing, and a drainage device (70, 70a) for discharging water from the tub to the outside of the washing machine housing, a filter device (100) disposed outside the washing machine housing and connectable to the drainage device to filter foreign substances from water discharged from the washing machine, and an installation device (200) for mounting the filter device. The installation device includes a support bracket (220) detachably coupled to the filter device, and a supporter (210) detachably mountable to the support bracket and detachably mountable to the filter device. According to this configuration, the clothing treatment device according to one embodiment can facilitate mounting of the filter device. According to this configuration, the clothing treatment device according to one embodiment can improve usability of the filter device.

[0268] The above-described installation device may further include a buffer member (230) attachable to the supporter to absorb vibrations transmitted from the washing machine to the filter device. According to this configuration, the clothing treatment device according to one embodiment can reduce damage to the filter device due to vibrations generated from the washing machine, even when the filter device is installed on the washing machine.

[0269] The above-mentioned buffer member may include a protrusion (232a) formed on a surface intended to come into contact with the washing machine. According to this configuration, the garment treatment device according to one embodiment can easily separate the installation device from the washing machine.

[0270] The supporter may include a supporter mounting portion (213). The filter device may include a coupling portion (102c) detachably connectable to the supporter mounting portion. The support bracket may include a bracket coupling portion (223) detachably connectable to the supporter mounting portion. According to this configuration, the garment treatment device according to one embodiment may mount the filter device in various locations.

[0271] The supporter may have a size larger than the width of the filter device to prevent the filter device from tipping over while mounted on the filter device. According to this configuration, the garment treatment device according to one embodiment can prevent the filter device from tipping over while mounted on the upper surface of the washing machine or the upper surface of a shelf, etc.

[0272] According to the idea of ​​the present disclosure, the garment treatment device includes an installation device capable of mounting the filter device in a relatively simple manner, so that the installability of the filter device can be improved.

[0273] According to the idea of ​​the present disclosure, the clothing treatment device can be installed with a filter device in a position adjacent to the washing machine by an installation device, so that the usability of the filter device can be improved.

[0274] The effects that can be obtained from the present disclosure are not limited to the effects mentioned above, and other effects that are not mentioned can be clearly understood by a person having ordinary skill in the art to which the present disclosure belongs from the description below.

[0275] The above illustrates and describes specific embodiments. However, the invention is not limited to the above-described embodiments, and those skilled in the art will readily appreciate that various modifications and implementations can be made without departing from the spirit and scope of the invention as set forth in the claims below.

Claims

1. Housing; A tub inside the above housing; A drainage device for discharging water from the tub to the outside of the housing; A filter device arranged outside the housing and configured to be connected to the drainage device to receive water discharged by the drainage device and filter foreign substances from the supplied water, the filter device including a coupling portion at the bottom of the filter device; and An installation device for mounting the filter device on a surface, comprising: an installation device including a supporter including a supporter mounting portion; The above installation device, The above supporter can be placed on the above surface, A garment treatment device, wherein the supporter mounting portion is configured to be coupled to the coupling portion while the supporter is secured to the surface and the supporter mounting portion is coupled to the coupling portion so that the filter device is mounted to the surface.

2. In paragraph 1, A clothing treatment device wherein the above-mentioned installation device further includes a buffer member capable of absorbing vibration transmitted from the clothing treatment device to the filter device.

3. In paragraph 2, A garment treatment device wherein the above-mentioned buffer member comprises a material having adhesive properties.

4. In paragraph 2, The above buffer material is, A first side attached to the above installation device; and A garment treatment device comprising a second side configured to be attached to the surface, wherein the second side is configured such that the frictional force between the second side and the surface is smaller than the frictional force between the first side and the installation device.

5. In paragraph 2, A clothing treatment device wherein the above-mentioned buffer member includes a protrusion formed on a side to come into contact with the washing machine.

6. In paragraph 1, The above filter device includes a supporter fixing part at the bottom of the above filter device, A garment treatment device wherein the supporter includes a fixed support portion that can be coupled to the supporter fixing portion so that movement of the supporter with respect to the filter device is limited while the supporter mounting portion is coupled to the joining portion.

7. In paragraph 1, A garment treatment device, wherein the above installation device further includes a support bracket configured to be connectable to the filter device and connectable to the supporter.

8. In paragraph 7, The above support bracket is, an insertion portion insertable into the above joint; and comprising a first fastening hole configured to receive a fastening member; The above filter device, a second fastening hole configured to receive the fastening member; A garment treatment device in which the support bracket is coupled to the filter device as the fastening member is received in the first fastening hole of the support bracket and the second fastening hole of the filter device while the insertion portion is inserted into the joining portion.

9. In paragraph 7, A garment processing device wherein the support bracket includes a bracket coupling portion configured to be coupled to the supporter mounting portion of the supporter.

10. In paragraph 7, The above supporter comprises a support rib extending laterally such that the support bracket can be coupled to the supporter, A garment treatment device wherein the support bracket includes a bracket groove into which the support rib is inserted while the support bracket is coupled to the supporter.

11. In paragraph 10, The above support bracket includes a plurality of bracket ribs arranged symmetrically with respect to the bracket groove, A garment treatment device, wherein the supporter includes a supporter groove into which one of the plurality of bracket ribs is inserted while the supporter rib is inserted into the bracket groove.

12. In paragraph 7, The above support bracket is, A bottom portion for supporting a portion of the bottom of the filter device while the support bracket is coupled to the filter device; and A garment treatment device including a side for covering a portion of the left or right side of the filter device while the support bracket is coupled to the filter device.

13. In paragraph 7, A garment handling device wherein the above support bracket is configured to be joined to the supporter by sliding movement.

14. In paragraph 1, A garment treatment device wherein the supporter is configured to be coupled to the filter device by sliding movement.

15. In paragraph 1, A garment processing device wherein the supporter includes a fastening hole in the supporter mounting portion to accommodate a fastening member.

Citation Information

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