序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 安置在行走件上的滚轮的控制设备 CN201480062792.3 2014-10-24 CN105764462A 2016-07-13 G.海因
发明涉及一种控制安置在行走件、例如病床(1)上的滚轮(2)的控制设备和方法,其中,一个、多个或所有滚轮(2)具有制动装置,所述制动装置能够置于制动位置和释放位置中,进一步优选地还能置于方向定位置中,其中,能够电动地操作所有滚轮(2)并且能够附加地手动操作一个或多个或所有滚轮(2),并且其中,还设有附加滚轮(3),所述附加滚轮(3)具有具备行走驱动器的轮子,所述附加滚轮(3)优选能够在下降位置和上升位置之间移动。为了提供一种有利于控制滚轮与附加滚轮的组合的控制设备以及一种有利于控制它们的方法,建议的是,仅在所述滚轮(2)处于释放位置或方向锁定位置中时,能够激活所述行走驱动器。
2 移動設備に装着されたローラのコントローラ及び移動設備に装着されたローラの制御方法 JP2016529918 2014-10-24 JP2016538041A 2016-12-08 ハイン、ゲオルグ
例えば病院ベッド(1)等の移動設備上に装着されたローラ(2)を制御するためのコントローラ及び方法に関し、1個、複数個又は全てのローラ(2)が、ブレーキ位置と開放位置に、さらに好適には方向ロック位置にも設定可能なブレーキ装置を有し、さらに全てのローラ(2)が電気駆動可能でありかつ1個、複数個又は全てのローラ(2)が手動でも駆動可能であり、かつさらに走行駆動モータを具備する車輪を設けた補助ローラ(3)が設けられ、補助ローラ(3)は好適には降下位置と上昇位置の間で可動である。補助ローラと組み合わせてローラを好適に制御しかつこの目的のための好適な制御方法を実現するために、ローラ(2)が開放位置又は方向ロック位置にあるときにのみ走行駆動モータが起動可能であることが提示される。
3 Load ground transportation for the flight control system JP2006537549 2004-10-26 JP2007511400A 2007-05-10 ジムバリスタ、ドフ; ジムバリスタ、ラン
地上で積載物を運搬する操縦装置で、特に病院で患者を運搬するためのベッドおよび空港等で患者あるいは旅客を運搬するための車椅子に好適である。 本装置は複数のキャスタを備えたベースに取り付けられた、運搬する積載物を支持するためのプラットフォームを有する。 上記ベースに対する少なくとも1個あるいは複数の軸の周りに回転するために1個あるいは複数の補助車輪が取り付けられている。 装置を操するための運転ユニットを備えており、この運転ユニットは補助車輪とは独立に動作する。
【選択図】図1
4 이동가능한 부품 상에 장착되는 롤러들의 제어부 및 이동가능한 부품 상에 장착된 롤러들을 제어하기 위한 방법 KR1020167016339 2014-10-24 KR1020160088401A 2016-07-25 하인,게오르그
본발명은, 예를들어병원침대(1)와같은이동가능한부품(2) 상에장착된롤러들을제어하기위한제어부및 방법에관한것이며, 하나, 수개의또는모든롤러들(2)은브레이크포지션및 해제포지션, 더바람직하게는또한방향-세팅포지션에세팅될수 있는브레이크기구를가지며, 여기서게다가, 모든롤러들(2)이전기로액추에이팅될수 있으며, 그리고여기서하나또는수 개의또는모든롤러들(2)은또한수동으로액추에이팅될수 있으며, 그리고여기서, 게다가, 운행가동부를가지는휠을갖는추가롤러(3)가제공되며, 여기서추가롤러(3)는, 바람직하게는, 하강포지션과상승포지션사이에서이동가능하다. 추가롤러와조합하여롤러의유리한제어부를획득하기위해, 그리고또한이러한목적을위한유리한제어방법을제공하기위해, 운행드라이브가, 단지롤러들(2)이해제포지션또는방향-세팅포지션내에위치될때, 활성화될수 있는것이제안된다
5 PATIENT SUPPORT APPARATUSES WITH DRIVE CONTROLS EP16175940.2 2016-06-23 EP3108865A1 2016-12-28 Trepanier, Jerald; St. John, Connor; Brubaker, Michael; Gentile, Christopher; Bartley, Gary

A person support apparatus includes a base, wheels, a drive system, a support surface, a lift system, and a control. The control controls the drive system in response to forward/reverse forces applied thereto, and also controls the lift system in response to upward or downward forces applied thereto. In some embodiments, a controller compares a magnitude of the forward/reverse force to a magnitude of the upward/downward force and commands the drive system to drive the wheels if the magnitude of the forward/reverse force exceeds the magnitude of the upward/downward force. The control may include a user-engageable portion that is constructed to not move with respect to a force sensor when forward or reverse forces are applied to the user-engageable portion. The controller controls the drive system in response to the forward or reverse forces applied to the user-engageable portion.

6 Powered transport system and control methods EP10176290.4 2010-09-10 EP2295015A3 2015-03-25 Bhai, Aziz A.; Hamberg, Stephen R.; Reinke, Christian H.; McCaig, Steven V.

A powered transport device for a person support apparatus includes a floor contacting driver, a prime mover, a power source and a controller. The prime mover is coupled to the driver and an output of the prime mover provides input to the driver. The power source provides power to the prime mover. The controller senses a performance characteristic of the powered transport device and varies the operation of the powered transport device based solely on the performance characteristic.

7 Push handle with rotatable user interface EP09250210.3 2009-01-27 EP2085063B1 2012-02-22 Zerhusen, Robert Mark; Hamberg, Stephen R.; Reinke, Christian H.
8 Powered transport system and control methods EP10176290.4 2010-09-10 EP2295015A2 2011-03-16 Bhai, Aziz A.; Hamberg, Stephen R.; Reinke, Christian H.; McCaig, Steven V.

A powered transport device for a person support apparatus includes a floor contacting driver, a prime mover, a power source and a controller. The prime mover is coupled to the driver and an output of the prime mover provides input to the driver. The power source provides power to the prime mover. The controller senses a performance characteristic of the powered transport device and varies the operation of the powered transport device based solely on the performance characteristic.

9 Push handle with rotatable user interface EP09250210.3 2009-01-27 EP2085063A2 2009-08-05 Zerhusen, Robert Mark; Hamberg, Stephen R.; Reinke, Christian H.

A patient support apparatus includes a frame, a patient support coupled to the frame, a push handle coupled to the frame and having a handle post, and a user interface coupled to the handle post and having at least one user input. The user interface is rotatable about an axis defined by the handle post between a first position presenting the at least one user input to a caregiver standing at an end of the frame and a second position presenting the at least one user input to a caregiver standing alongside the frame.

10 Push handle with pivotable handle post EP09250209.5 2009-01-27 EP2085062A2 2009-08-05 Zerhusen, Robert Mark; McCaig, Steven V.

A patient support apparatus comprises a frame, a patient support coupled to the frame, a push handle coupled to the frame and having a handle post, and at least one user input coupled to the handle post. The handle post is movable between a first position presenting the at least one user input to a caregiver standing at an end of the frame and a second position presenting the at least one user input to a caregiver standing alongside the frame.

11 Systems And Methods For Facilitating Movement Of A Patient Transport Apparatus US15910502 2018-03-02 US20180250178A1 2018-09-06 Anish Paul; William D. Childs; Kevin M. Patmore
Systems and methods for facilitating movement of a patient transport apparatus. The patient transport apparatus has a support structure comprising a patient support surface. A wheel assembly comprises a base wheel having an outer periphery rotatably coupled to the support structure about a base rotational axis. The wheel assembly also comprises a plurality of peripheral wheels disposed about the outer periphery to rotate about a plurality of peripheral rotational axes. The wheel assembly comprises a motion control device configured to selectively control rotation of the peripheral wheels independent of rotation of the base wheel about the base rotational axis.
12 CONTROL OF ROLLERS MOUNTED ON A MOVABLE PART US15035858 2014-10-24 US20160297242A1 2016-10-13 Georg HEIN
The invention relates to a control and to a method for controling rollers (2) mounted on a movable part such as, for example, a hospital bed (1), wherein one, several or all of the rollers (2) have a brake mechanism which can be set to a brake position and a release position, further preferably also to a direction-setting position, wherein, farther, all the rollers (2) can be actuated electrically and one or several or all of the rollers (2) can in addition be actuated manually, and Wherein, furthermore, an additional roller (3) with a wheel having a travel drive is provided, which additional roller (3) is preferably movable between a lowered position and a raised position. In order to obtain an advantageous control of the rollers in combination with the additional roller and also to provide an advantageous control method for this purpose, it is proposed that the travel drive can be activated only when the rollers (2) are located or the direction-setting position.
13 Automated systems, devices, and methods for transporting and supporting patients US14936991 2015-11-10 US09465389B2 2016-10-11 Roderick A. Hyde; Stephen L. Malaska
Systems, devices, and methods are described for moving a patient to and from various locations, care units, etc., within a care facility. For example a transport and support vehicle includes a body structure including a plurality of rotatable members operable to frictionally interface the vehicle to a travel path and to move the vehicle along the travel path, and a surface structured and dimensioned to support an individual subject. A transport and support vehicle can include, for example, an imager operably coupled to one or more of a power source, a steering assembly, one or more of the plurality of rotatable members, etc., and having one or more modules operable to control the power source, steering assembly, one or more of the plurality of rotatable members, etc., so as to maintain an authorized operator in the image zone.
14 Automated systems, devices, and methods for transporting and supporting patients US14525417 2014-10-28 US09241858B2 2016-01-26 Roderick A. Hyde; Stephen L. Malaska
Systems, devices, and methods are described for moving a patient to and from various locations, care units, etc., within a care facility. For example a transport and support vehicle includes a body structure including a plurality of rotatable members operable to frictionally interface the vehicle to a travel path and to move the vehicle along the travel path, and a surface structured and dimensioned to support an individual subject. A transport and support vehicle can include, for example, an imager operably coupled to one or more of a power source, a steering assembly, one or more of the plurality of rotatable members, etc., and having one or more modules operable to control the power source, steering assembly, one or more of the plurality of rotatable members, etc., so as to maintain an authorized operator in the image zone.
15 Automated systems, devices, and methods for transporting and supporting patients US13630087 2012-09-28 US09125779B2 2015-09-08 Roderick A. Hyde; Stephen L. Malaska
Systems, devices, and methods are described for moving a patient to and from various locations, care units, etc., within a care facility. For example a transport and support vehicle includes a body structure including a plurality of rotatable members operable to frictionally interface the vehicle to a travel path and to move the vehicle along the travel path, and a surface structured and dimensioned to support an individual subject. A transport and support vehicle can include, for example, an imager operably coupled to one or more of a power source, a steering assembly, one or more of the plurality of rotatable members, etc., and having one or more modules operable to control the power source, steering assembly, one or more of the plurality of rotatable members, etc., so as to maintain an authorized operator in the image zone.
16 Collapsible wheeled stretcher US13258524 2010-04-27 US08770615B2 2014-07-08 Ilan Bar Noy; Hava Bar Noy
The present invention discloses a foldable collapsible wheeled stretcher on wheels, having handles for pulling and steering. The device is provided with dependent suspensions allowing mobility in rough and bumpy terrain while maintaining the stability of stretcher surface, reducing tilt and vibration that reach the wounded person being transported upon the stretcher. It is provided with folding or telescopic means allowing it to be carried upon the back or stowed in a small volume. The device enables rescue of injured people in an improved manner from (for example) regions which are not passable by vehicles, and may be pulled by a single rescuer instead of being carried by two to four. The device may be further used to transport material.
17 AUTOMATED SYSTEMS, DEVICES, AND METHODS FOR TRANSPORTING AND SUPPORTING PATIENTS US13630087 2012-09-28 US20140090171A1 2014-04-03 Roderick A. Hyde; Stephen L. Malaska
Systems, devices, and methods are described for moving a patient to and from various locations, care units, etc., within a care facility. For example a transport and support vehicle includes a body structure including a plurality of rotatable members operable to frictionally interface the vehicle to a travel path and to move the vehicle along the travel path, and a surface structured and dimensioned to support an individual subject. A transport and support vehicle can include, for example, an imager operably coupled to one or more of a power source, a steering assembly, one or more of the plurality of rotatable members, etc., and having one or more modules operable to control the power source, steering assembly, one or more of the plurality of rotatable members, etc., so as to maintain an authorized operator in the image zone.
18 Automated systems, devices, and methods for transporting and supporting patients US13630551 2012-09-28 US08634981B1 2014-01-21 Roderick A. Hyde; Stephen L. Malaska
Systems, devices, and methods are described for moving a patient to and from various locations, care units, etc., within a care facility. For example a transport and support vehicle includes a body structure including a plurality of rotatable members operable to frictionally interface the vehicle to a travel path and to move the vehicle along the travel path, and a surface structured and dimensioned to support an individual subject. A transport and support vehicle can include, for example, an imager operably coupled to one or more of a power source, a steering assembly, one or more of the plurality of rotatable members, etc., and having one or more modules operable to control the power source, steering assembly, one or more of the plurality of rotatable members, etc., so as to maintain an authorized operator in the image zone.
19 Push handle with rotatable user interface US12021346 2008-01-29 US07886377B2 2011-02-15 Stephen R. Hamberg; Robert M. Zerhusen; Christian H. Reinke
A patient support apparatus includes a frame, a patient support coupled to the frame, a push handle coupled to the frame and having a handle post, and a user interface coupled to the handle post and having at least one user input. The user interface is rotatable about an axis defined by the handle post between a first position presenting the at least one user input to a caregiver standing at an end of the frame and a second position presenting the at least one user input to a caregiver standing alongside the frame.
20 Towable collapsible patient supporting carrier US11378848 2006-03-16 US07549661B2 2009-06-23 Mark A. Jackson; Marc H. Segal
A collapsible patient supporting carrier configured as either a backboard or a stretcher for being pulled or towed behind a person, animal or vehicle, such as a bicycle, motorcycle, snow mobile or jet ski. The carrier comprises a plurality of support sections interconnected by connecting mechanisms that are configured to selectively place the carrier in a collapsed condition having a support surface for carrying medical supplies or an extended condition for transporting an injured person. Each support section is made up of a frame and one or more support members, such as a rigid plate or a somewhat flexible material, attached to the frame. The forward end of the carrier has a tow connector member to connect to a tow member for towing. Transport members, such as wheels, skis or a floatation member, are operatively connected near the second end of the carrier to facilitate movement over a surface.
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