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公开(公告)号:US20140137365A1
公开(公告)日:2014-05-22
申请号:US14165159
申请日:2014-01-27
Applicant: Dyson Technology Limited
Inventor: James DYSON , Peter David GAMMACK , Stephen Benjamin COURTNEY , David Christopher James NEWTON , Michael Sean JOYNT , Samuel James CZERPAK
IPC: A47L5/28
Abstract: An upright vacuum cleaning appliance includes a main body having a user operable handle, separating apparatus for separating dirt from a dirt-bearing air flow and a casing housing a fan unit for drawing the air flow through the separating apparatus. A support assembly is connected to the main body for allowing the appliance to be rolled along a surface using the handle. The support assembly includes a pair of domed-shaped wheels which each have a substantially circular rim. The overall size of the appliance is reduced by locating the casing between the wheels, and providing an air duct which extends between the rims of the wheels to convey the air flow from the separating apparatus to the casing.
Abstract translation: 立式真空清洁器具包括具有用户可操作的手柄的主体,用于从污物轴承的空气流分离污物的分离装置和容纳用于抽吸通过分离装置的空气流的风扇单元的壳体。 支撑组件连接到主体,以便使用手柄沿着表面滚动器具。 支撑组件包括一对圆顶形轮,每个轮具有大致圆形的边缘。 通过将壳体定位在车轮之间并且提供在轮的轮缘之间延伸的空气管道以将空气流从分离装置传送到壳体来减小器具的总体尺寸。
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公开(公告)号:US20230397786A1
公开(公告)日:2023-12-14
申请号:US18035377
申请日:2021-10-20
Applicant: Dyson Technology Limited
Inventor: David Stuart COLE , Frederick Jack WHITTEN , David Christopher James NEWTON , Samuel Finistair da Conceicao FOSS
CPC classification number: A47L9/165 , A47L9/0018 , A47L9/009 , A47L9/248 , A47L9/2884 , B25J11/0085
Abstract: A vacuum cleaning system including a robotic unit including a main body, a traction arrangement defining a ground plane, and an articulated arm. The articulated arm includes an upper arm section and a lower arm section, wherein the upper arm section is attached to the main body at a shoulder joint, and wherein the lower arm section is attached to the upper arm section at an elbow joint, and wherein an end effector is defined at a distal end of the lower arm section. The articulated arm is configured such that the end effector is movable angularly about a first axis with respect to the elbow joint and is movable linearly along a second axis with respect to the elbow joint. The vacuum cleaning system equipped with a robotic arm that is able to bend and flex due to the pivotable upper and lower arm portions, but also extend and rotate through the lower arm or ‘forearm’ portion, providing improved dexterity for the machine.
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公开(公告)号:US20230404340A1
公开(公告)日:2023-12-21
申请号:US18035098
申请日:2021-10-20
Applicant: Dyson Technology Limited
Inventor: Andrew James SHAW , David Christopher James NEWTON , David Stuart COLE
CPC classification number: A47L5/225 , A47L5/24 , A47L9/009 , A47L9/16 , A47L9/2884 , A47L9/2857 , A47L9/242 , A47L9/02 , A47L9/248 , A47L2201/04 , A47L2201/06
Abstract: A vacuum cleaning system including a robotic unit including a traction arrangement, a docking interface and an articulated arm defining an end effector. The end effector includes a suction tool. The robotic unit defines a suction flow path which extends from the suction tool to the docking interface. The system further includes a handheld vacuum cleaner configured to be docked with the docking interface, the handheld vacuum cleaner including a vacuum motor for drawing air through the suction flow path when docked with the docking interface.
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公开(公告)号:US20230404339A1
公开(公告)日:2023-12-21
申请号:US18035092
申请日:2021-10-20
Applicant: Dyson Technology Limited
Inventor: Andrew James SHAW , David Stuart COLE , David Christopher James NEWTON
CPC classification number: A47L5/225 , A47L5/24 , A47L9/009 , A47L9/248 , A47L9/322 , A47L9/2884 , A47L9/242 , A47L2201/00
Abstract: A vacuum cleaning system including a robotic unit including a traction arrangement, a docking interface and an articulated arm defining an end effector. The end effector includes a suction tool. The robotic unit defines a suction flow path which extends from the suction tool to the docking interface. The system further includes a handheld vacuum cleaner configured to be docked with the docking interface, the handheld vacuum cleaner including a vacuum motor for drawing air through the suction flow path when docked with the docking interface.
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公开(公告)号:US20170055790A1
公开(公告)日:2017-03-02
申请号:US15246169
申请日:2016-08-24
Applicant: Dyson Technology Limited
Inventor: James DYSON , David Christopher James NEWTON , Stephen Robert DIMBYLOW , Peter David GAMMACK , Ian John BROUGH , Adam David LAMBERT , Simon Brian MCNAMEE
CPC classification number: A47L5/28 , A47L5/225 , A47L9/0036 , A47L9/0045 , A47L9/1625 , A47L9/1641 , A47L9/165 , A47L9/1683 , A47L9/325
Abstract: An upright vacuum cleaner comprising a vac-motor for drawing dirty air in through a floor-engaging cleaner head on the vacuum cleaner, a separating apparatus for separating dirt from the dirty air, an elongate air duct for carrying air to or from the separating apparatus, and a suction wand which is stored on the vacuum cleaner and which can be connected to the separating apparatus via a hose as required to clean above the floor. The external surface of the air duct defines an elongate recess for receiving the stored suction wand such that the air duct partly surrounds the stored wand. This provides a compact configuration.
Abstract translation: 一种立式真空吸尘器,包括用于通过真空吸尘器上的地板接合清洁器头抽吸脏空气的真空马达,用于从脏空气中分离污物的分离装置,用于将空气携带到分离装置或从分离装置 以及吸入棒,其被存储在真空吸尘器上并且可以经由需要清洁在地板上方的软管连接到分离装置。 空气管道的外表面限定用于接收存储的吸入棒的细长凹部,使得空气管道部分地围绕存储的棒。 这提供了紧凑的配置。
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公开(公告)号:US20170290484A1
公开(公告)日:2017-10-12
申请号:US15479602
申请日:2017-04-05
Applicant: Dyson Technology Limited
CPC classification number: A47L9/244 , A47L5/225 , A47L5/32 , A47L9/0045 , A47L9/246 , A47L9/248 , A47L9/325 , A47L9/327
Abstract: A wand and hose assembly for a vacuum cleaner includes a suction wand fluidly connected to the end of a suction hose by a duct and the duct incorporates an articulating joint for allowing articulated movement of the suction wand relative to the end of the suction hose. The wand and the duct are arranged for telescopic sliding movement relative to one another, and the articulating joint is moveable into a position in which the wand can slide telescopically through the duct for retraction into the suction hose.
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公开(公告)号:US20150320273A1
公开(公告)日:2015-11-12
申请号:US14409884
申请日:2013-06-20
Applicant: Dyson Technology Limited
Inventor: Stephen Robert DIMBYLOW , Peter David GAMMACK , Patrick Joseph William MOLONEY , David Christopher James NEWTON , James WHITE , Adam James BATES
CPC classification number: A47L5/362 , A47L9/009 , A47L9/106 , A47L9/122 , A47L9/1625 , A47L9/1641 , A47L9/1691 , A47L9/22 , A47L9/242 , A47L9/327
Abstract: A cleaning appliance of the cylinder type comprises a separating apparatus for separating dirt from a dirt-bearing fluid flow, and a floor-engaging rolling assembly. The separating apparatus comprises a first cyclonic separation unit having a low efficiency cyclone and a second cyclonic separation unit having a plurality of second cyclones. The rolling assembly comprises a main body having a recess in which the separating apparatus is received, and a plurality of floor-engaging wheels rotatably connected to the main body. The recess in the main body comprises a plurality of shaped recesses, each of which corresponds to the shape of at least a portion of a second cyclone. When the separating apparatus is received in the recess, a second cyclone is located at least partially in each shaped recess.
Abstract translation: 气缸型的清洁器具包括用于从污物流体流分离污物的分离装置和地板接合滚动组件。 分离装置包括具有低效率旋风分离器的第一旋风分离单元和具有多个第二旋风分离器的第二旋风分离单元。 滚动组件包括主体,其具有容纳分离装置的凹部,以及可旋转地连接到主体的多个地板接合轮。 主体中的凹部包括多个成形的凹槽,每个凹槽对应于第二旋风分离器的至少一部分的形状。 当分离装置被容纳在凹部中时,第二旋风器至少部分地位于每个成形凹部中。
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公开(公告)号:US20150320271A1
公开(公告)日:2015-11-12
申请号:US14409656
申请日:2013-06-20
Applicant: Dyson Technology Limited
Inventor: Stephen Robert DIMBYLOW , Peter David GAMMACK , Patrick Joseph William MOLONEY , David Christopher James NEWTON , James WHITE
CPC classification number: A47L5/362 , A47L5/365 , A47L9/009 , A47L9/1625 , A47L9/1641 , A47L9/1691 , A47L9/242
Abstract: A cleaning appliance of the cylinder type comprises a separating apparatus for separating dirt from a dirt-bearing fluid flow, and a floor-engaging rolling assembly comprising a main body and a pair of floor-engaging wheels. The most rearward point of the separating apparatus is arranged in line with or rearward of the centre point of the wheels.
Abstract translation: 圆筒型的清洁器具包括用于从污物流体流分离污物的分离装置,以及包括主体和一对地板接合轮的地板接合滚动组件。 分离装置的最靠后点布置成与车轮的中心点一致或向后。
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公开(公告)号:US20250160589A1
公开(公告)日:2025-05-22
申请号:US18872466
申请日:2023-06-14
Applicant: Dyson Technology Limited
Abstract: A dirt separator for a vacuum cleaner is provided and includes a filter assembly to separate dirt from an airflow moving therethrough, a bin to collect dirt separated from the airflow, and a valve movable between a closed position and an open position in which an opening of the bin is, respectively, obstructed and unobstructed by the valve. The bin is moveable between a first position and a second position. In a first stage of an emptying sequence, the valve is moved to the open position, and the bin is moved to the second position such that dirt within the bin can move past the valve. In a second stage of the emptying sequence, the valve is moved to the closed position, and the bin is moved to the first position such that the dirt can be pushed out of the opening by the valve.
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公开(公告)号:US20240000276A1
公开(公告)日:2024-01-04
申请号:US18035096
申请日:2021-10-20
Applicant: Dyson Technology Limited
Abstract: A vacuum cleaning system including a robotic unit including a traction arrangement that defines a ground plane, and a docking interface for receiving a handheld vacuum cleaner. The docking interface defines a suction port, an electrical port, and a predefined interface geometry. The docking interface is reconfigurable from a first configuration for engaging with a first handheld vacuum cleaner, and a second configuration for engaging with a second handheld vacuum cleaner which is different to the first handheld vacuum cleaner. Conveniently, the system includes a robotic unit or module that is dockable or engageable with multiple handheld vacuum cleaners, thus allowing some flexibility with the type of machine that they are able to use with the robotic unit. This provides a cost effective solution for the user, because if the user upgrades their handheld vacuum cleaner that new handheld vacuum cleaner can still be used with the robotic unit.
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