KR102169994B1 - 장치 킥스탠드 - Google Patents
장치 킥스탠드 Download PDFInfo
- Publication number
- KR102169994B1 KR102169994B1 KR1020147024479A KR20147024479A KR102169994B1 KR 102169994 B1 KR102169994 B1 KR 102169994B1 KR 1020147024479 A KR1020147024479 A KR 1020147024479A KR 20147024479 A KR20147024479 A KR 20147024479A KR 102169994 B1 KR102169994 B1 KR 102169994B1
- Authority
- KR
- South Korea
- Prior art keywords
- kickstand
- computing device
- hinge
- chassis
- edge
- Prior art date
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Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H13/00—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
- H01H13/70—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch having a plurality of operating members associated with different sets of contacts, e.g. keyboard
- H01H13/702—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch having a plurality of operating members associated with different sets of contacts, e.g. keyboard with contacts carried by or formed from layers in a multilayer structure, e.g. membrane switches
- H01H13/704—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch having a plurality of operating members associated with different sets of contacts, e.g. keyboard with contacts carried by or formed from layers in a multilayer structure, e.g. membrane switches characterised by the layers, e.g. by their material or structure
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
- G06F3/0414—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means using force sensing means to determine a position
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- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05D—HINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
- E05D11/00—Additional features or accessories of hinges
- E05D11/10—Devices for preventing movement between relatively-movable hinge parts
- E05D11/1028—Devices for preventing movement between relatively-movable hinge parts for maintaining the hinge in two or more positions, e.g. intermediate or fully open
- E05D11/105—Devices for preventing movement between relatively-movable hinge parts for maintaining the hinge in two or more positions, e.g. intermediate or fully open the maintaining means acting perpendicularly to the pivot axis
- E05D11/1064—Devices for preventing movement between relatively-movable hinge parts for maintaining the hinge in two or more positions, e.g. intermediate or fully open the maintaining means acting perpendicularly to the pivot axis with a coil spring perpendicular to the pivot axis
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- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05F—DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
- E05F5/00—Braking devices, e.g. checks; Stops; Buffers
- E05F5/06—Buffers or stops limiting opening of swinging wings, e.g. floor or wall stops
- E05F5/08—Buffers or stops limiting opening of swinging wings, e.g. floor or wall stops with springs
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16M—FRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
- F16M11/00—Stands or trestles as supports for apparatus or articles placed thereon Stands for scientific apparatus such as gravitational force meters
- F16M11/20—Undercarriages with or without wheels
- F16M11/24—Undercarriages with or without wheels changeable in height or length of legs, also for transport only, e.g. by means of tubes screwed into each other
- F16M11/38—Undercarriages with or without wheels changeable in height or length of legs, also for transport only, e.g. by means of tubes screwed into each other by folding, e.g. pivoting or scissors tong mechanisms
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
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- G05B11/01—Automatic controllers electric
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- G—PHYSICS
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- G06F1/1616—Constructional details or arrangements for portable computers with several enclosures having relative motions, each enclosure supporting at least one I/O or computing function with folding flat displays, e.g. laptop computers or notebooks having a clamshell configuration, with body parts pivoting to an open position around an axis parallel to the plane they define in closed position
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- G06F1/1616—Constructional details or arrangements for portable computers with several enclosures having relative motions, each enclosure supporting at least one I/O or computing function with folding flat displays, e.g. laptop computers or notebooks having a clamshell configuration, with body parts pivoting to an open position around an axis parallel to the plane they define in closed position
- G06F1/1618—Constructional details or arrangements for portable computers with several enclosures having relative motions, each enclosure supporting at least one I/O or computing function with folding flat displays, e.g. laptop computers or notebooks having a clamshell configuration, with body parts pivoting to an open position around an axis parallel to the plane they define in closed position the display being foldable up to the back of the other housing with a single degree of freedom, e.g. by 360° rotation over the axis defined by the rear edge of the base enclosure
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- G06F1/1656—Details related to functional adaptations of the enclosure, e.g. to provide protection against EMI, shock, water, or to host detachable peripherals like a mouse or removable expansions units like PCMCIA cards, or to provide access to internal components for maintenance or to removable storage supports like CDs or DVDs, or to mechanically mount accessories
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- G06F1/166—Details related to functional adaptations of the enclosure, e.g. to provide protection against EMI, shock, water, or to host detachable peripherals like a mouse or removable expansions units like PCMCIA cards, or to provide access to internal components for maintenance or to removable storage supports like CDs or DVDs, or to mechanically mount accessories related to integrated arrangements for adjusting the position of the main body with respect to the supporting surface, e.g. legs for adjusting the tilt angle
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- G06F1/1662—Details related to the integrated keyboard
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- G06F1/1681—Details related solely to hinges
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- G06F1/1683—Miscellaneous details related to the relative movement between the different enclosures or enclosure parts for the transmission of signal or power between the different housings, e.g. details of wired or wireless communication, passage of cabling
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Abstract
장치 킥스탠드가 설명된다. 적어도 일부 구현들에서, 킥스탠드는 이동 컴퓨팅 장치에 회전 가능하게 부착된다. 킥스탠드는 컴퓨팅 장치의 상이한 배향들에 대한 지지를 제공하기 위해 다양한 위치들로 회전할 수 있다. 적어도 일부 구현들에서, 힌지들을 사용하여 킥스탠드를 이동 컴퓨팅 장치에 부착한다. 하나의 예시적인 힌지는 킥스탠드가 상이한 사전 설정 위치들에 배치되는 것을 가능하게 하는 사전 설정 힌지 스톱들을 이용한다. 다른 예시적인 힌지는 킥스탠드의 에지에 압력을 가하여, 킥스탠드에 대한 안정성 및 진동 감쇠를 제공한다.
Description
이동 컴퓨팅 장치들은 이동 환경에서 사용자들이 이용할 수 있는 기능을 증진시키도록 개발되어 왔다. 예컨대, 사용자는 이동 전화, 태블릿 컴퓨터 또는 다른 이동 컴퓨팅 장치와 상호작용하여, 이메일을 검사하고, 웹을 서핑하고, 텍스트를 작성하고, 애플리케이션과 상호작용하는 것 등을 행할 수 있다.
그러나, 이동 컴퓨팅 장치들은 이동성을 갖도록 구성되므로, 장치들은 통상적으로 핸드헬드 방식으로 사용되도록 설계된다. 이동 장치들을 다른 용도들(예를 들어, 테이블 또는 기타 표면 상에서의 사용)에 적응시키는 통상적인 방법들은 어색하고 이동 장치들과 관련된 이동 미관(mobile aesthetic)을 손상시키는 경향이 있다.
이 요약은 상세한 설명에서 더 후술되는 개념들의 발췌를 간단한 형태로 소개하기 위해 제공된다. 이 요약은 청구 발명의 중요한 특징들 또는 본질적인 특징들을 식별하는 것을 의도하지 않으며, 청구 발명의 범위를 결정하는 데 있어 보조물로서 사용되는 것도 의도하지 않는다.
장치 킥스탠드가 설명된다. 적어도 일부 구현들에서, 킥스탠드가 이동 컴퓨팅 장치에 회전 가능하게 부착된다. 킥스탠드는 다양한 위치들로 회전하여, 컴퓨팅 장치의 상이한 배향들에 대한 지지를 제공할 수 있다. 예를 들어, 킥스탠드는 컴퓨팅 장치를 타이핑 배향으로 지지하도록 배치될 수 있으며, 따라서 입력이 관련 입력 장치를 통해 제공될 수 있다. 다른 예로서, 킥스탠드는 세로 관찰 배향에서와 같이 컴퓨팅 장치를 보고/보거나 그와 상호작용하는 것을 가능하게 하도록 배치될 수 있다.
적어도 일부 구현들에서, 킥스탠드를 이동 컴퓨팅 장치에 부착하기 위해 힌지들이 사용된다. 하나의 예시적인 힌지는 킥스탠드가 상이한 사전 설정 위치들에 배치되는 것을 가능하게 하는 사전 설정된 힌지 스톱들을 사용한다. 또한, 예시적인 힌지는 킥스탠드 및 컴퓨팅 장치의 인접 에지들 사이의 이음매와 일치하는 회전 중심을 포함한다. 따라서, 킥스탠드는 폐쇄 위치에 있을 때 컴퓨팅 장치의 외형(contour)을 따를 수 있으며, 킥스탠드가 개방될 때 이음매가 유지될 수 있다. 다른 예시적인 힌지는 킥스탠드의 에지에 압력을 가하여, 킥스탠드에 안정성 및 진동 감쇠를 제공한다. 여기서는 예시적인 힌지들이 상세히 설명되지만, 청구되는 실시예들에 따라 컴퓨팅 장치에 킥스탠드를 부착하기 위해 다양한 상이한 기술들이 이용될 수 있다.
상세한 설명은 첨부 도면들을 참조하여 설명된다. 도면들에서, 참조 번호의 가장 좌측의 숫자(들)는 참조 번호가 처음 나오는 도면을 식별한다. 설명 및 도면들에서 상이한 예들에서의 동일 참조 번호들의 사용은 유사하거나 동일한 아이템들을 지시할 수 있다. 도면들 내에 표시되는 엔티티들은 하나 이상의 엔티티를 지시할 수 있으며, 따라서 설명에서 참조는 엔티티들의 단수 또는 복수 형태들에 대하여 교환 가능하게 행해질 수 있다.
도 1은 하나 이상의 실시예에 따른 본 명세서에서 설명되는 기술들을 이용하도록 동작할 수 있는 예시적인 구현에서의 환경의 도시이다.
도 2는 하나 이상의 실시예에 따른 유연한 힌지(flexible hinge)를 더 상세히 나타내는, 도 1의 입력 장치의 예시적인 구현을 도시한다.
도 3은 하나 이상의 실시예에 따른 컴퓨팅 장치의 디스플레이 장치를 커버하는, 컴퓨팅 장치와 대한 입력 장치의 예시적인 배향을 도시한다.
도 4는 하나 이상의 실시예에 따른 타이핑 배향을 취하는 컴퓨팅 장치에 대한 입력 장치의 예시적인 배향을 도시한다.
도 5는 하나 이상의 실시예에 따른 컴퓨팅 장치(102)의 후방 하우징을 커버하고 컴퓨팅 장치의 디스플레이 장치를 노출시키는 컴퓨팅 장치에 대한 입력 장치의 예시적인 배향을 도시한다.
도 6은 하나 이상의 실시예에 따른 컴퓨팅 장치의 후방을 커버하도록 구성된 부분을 포함하는 입력 장치의 예시적인 배향을 도시하며, 이 예에서는 컴퓨팅 장치의 킥스탠드를 지지하는 데 사용된다.
도 7은 하나 이상의 실시예에 따른 도 6의 부분을 포함하는 입력 장치가 컴퓨팅 장치의 전방 및 후방 모두를 커버하는 데 사용되는 예시적인 배향을 도시한다.
도 8은 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향을 도시한다.
도 9는 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향을 도시한다.
도 10은 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향을 도시한다.
도 11은 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향의 배면도를 나타낸다.
도 12는 하나 이상의 실시예에 따른 킥스탠드의 예시적인 내면을 도시한다.
도 13은 하나 이상의 실시예에 따른, 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 분해도를 나타낸다.
도 14는 하나 이상의 실시예에 따른 컴퓨팅 장치의 부분 단면도를 나타낸다.
도 15는 하나 이상의 실시예에 따른 킥스탠드의 이동을 도시하는 컴퓨팅 장치의 부분 단면도를 나타낸다.
도 16은 하나 이상의 실시예에 따른 센터 힌지를 도시하는 컴퓨팅 장치의 부분 단면도를 나타낸다.
도 17은 본 명세서에서 설명되는 기술들의 실시예들을 구현하기 위해 도 1-16을 참조하여 설명되는 임의의 타입의 컴퓨팅 장치로서 구현될 수 있는 예시적인 장치의 다양한 컴포넌트들을 포함하는 예시적인 시스템을 도시한다.
도 1은 하나 이상의 실시예에 따른 본 명세서에서 설명되는 기술들을 이용하도록 동작할 수 있는 예시적인 구현에서의 환경의 도시이다.
도 2는 하나 이상의 실시예에 따른 유연한 힌지(flexible hinge)를 더 상세히 나타내는, 도 1의 입력 장치의 예시적인 구현을 도시한다.
도 3은 하나 이상의 실시예에 따른 컴퓨팅 장치의 디스플레이 장치를 커버하는, 컴퓨팅 장치와 대한 입력 장치의 예시적인 배향을 도시한다.
도 4는 하나 이상의 실시예에 따른 타이핑 배향을 취하는 컴퓨팅 장치에 대한 입력 장치의 예시적인 배향을 도시한다.
도 5는 하나 이상의 실시예에 따른 컴퓨팅 장치(102)의 후방 하우징을 커버하고 컴퓨팅 장치의 디스플레이 장치를 노출시키는 컴퓨팅 장치에 대한 입력 장치의 예시적인 배향을 도시한다.
도 6은 하나 이상의 실시예에 따른 컴퓨팅 장치의 후방을 커버하도록 구성된 부분을 포함하는 입력 장치의 예시적인 배향을 도시하며, 이 예에서는 컴퓨팅 장치의 킥스탠드를 지지하는 데 사용된다.
도 7은 하나 이상의 실시예에 따른 도 6의 부분을 포함하는 입력 장치가 컴퓨팅 장치의 전방 및 후방 모두를 커버하는 데 사용되는 예시적인 배향을 도시한다.
도 8은 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향을 도시한다.
도 9는 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향을 도시한다.
도 10은 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향을 도시한다.
도 11은 하나 이상의 실시예에 따른 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 배향의 배면도를 나타낸다.
도 12는 하나 이상의 실시예에 따른 킥스탠드의 예시적인 내면을 도시한다.
도 13은 하나 이상의 실시예에 따른, 킥스탠드를 갖는 컴퓨팅 장치의 예시적인 분해도를 나타낸다.
도 14는 하나 이상의 실시예에 따른 컴퓨팅 장치의 부분 단면도를 나타낸다.
도 15는 하나 이상의 실시예에 따른 킥스탠드의 이동을 도시하는 컴퓨팅 장치의 부분 단면도를 나타낸다.
도 16은 하나 이상의 실시예에 따른 센터 힌지를 도시하는 컴퓨팅 장치의 부분 단면도를 나타낸다.
도 17은 본 명세서에서 설명되는 기술들의 실시예들을 구현하기 위해 도 1-16을 참조하여 설명되는 임의의 타입의 컴퓨팅 장치로서 구현될 수 있는 예시적인 장치의 다양한 컴포넌트들을 포함하는 예시적인 시스템을 도시한다.
개요
다양한 기능을 제공하기 위해 다양한 상이한 장치들이 이동 컴퓨팅 장치에 물리적으로 부착될 수 있다. 예를 들어, 하나의 장치가 컴퓨팅 장치의 적어도 디스플레이 장치에 대한 커버를 제공하여 디스플레이 장치를 손상으로부터 보호하도록 구성될 수 있다. 컴퓨팅 장치에 입력을 제공하기 위한 입력 장치(예로서, 트랙 패드를 갖는 키보드)와 같은 다른 장치들도 이동 컴퓨팅 장치에 물리적으로 부착될 수 있다. 또한, 이러한 장치들의 기능은 예를 들어 결합된 커버 및 입력 장치를 제공하기 위해 결합될 수 있다.
장치 킥스탠드가 설명된다. 적어도 일부 구현들에서, 킥스탠드가 이동 컴퓨팅 장치에 회전 가능하게 부착된다. 킥스탠드는 다양한 위치들로 회전하여, 컴퓨팅 장치의 상이한 배향들에 대한 지지를 제공할 수 있다. 예를 들어, 킥스탠드는 컴퓨팅 장치를 타이핑 배향으로 지지하도록 배치될 수 있으며, 따라서 입력이 관련 입력 장치를 통해 제공될 수 있다. 다른 예로서, 킥스탠드는 세로 관찰 배향에서와 같이 컴퓨팅 장치를 보고/보거나 그와 상호작용하는 것을 가능하게 하도록 배치될 수 있다.
적어도 일부 구현들에서, 킥스탠드를 이동 컴퓨팅 장치에 부착하기 위해 힌지들이 사용된다. 하나의 예시적인 힌지는 킥스탠드가 상이한 사전 설정 위치들에 배치되는 것을 가능하게 하는 사전 설정된 힌지 스톱들을 사용한다. 또한, 예시적인 힌지는 킥스탠드 및 컴퓨팅 장치의 인접 에지들 사이의 이음매와 일치하는 회전 중심을 포함한다. 따라서, 킥스탠드는 폐쇄 위치에 있을 때 컴퓨팅 장치의 외형(contour)을 따를 수 있으며, 킥스탠드가 개방될 때 이음매가 유지될 수 있다. 다른 예시적인 힌지는 킥스탠드의 에지에 압력을 가하여, 킥스탠드에 안정성 및 진동 감쇠를 제공한다. 여기서는 예시적인 힌지들이 상세히 설명되지만, 청구되는 실시예들에 따라 컴퓨팅 장치에 킥스탠드를 부착하기 위해 다양한 상이한 기술들이 이용될 수 있다.
아래의 설명에서는 본 명세서에서 설명되는 기술들을 이용할 수 있는 예시적인 환경이 먼저 설명된다. 본 명세서에서 설명되는 실시예들은 예시적인 환경으로 한정되지 않으며, 예시적인 환경은 본 명세서에서 설명되는 실시예들로 한정되지 않는다. 이어서, 하나 이상의 실시예에 따른 예시적인 장치 배향들이 설명된다. 이어서, 하나 이상의 실시예에 따른 예시적인 킥스탠드가 설명된다. 이어서, 하나 이상의 실시예에 따른 킥스탠드 부착을 위한 예시적인 힌지들이 설명된다. 마지막으로, 본 명세서에서 설명되는 다양한 기술들을 구현할 수 있는 예시적인 시스템 및 장치가 설명된다. 또한, 본 명세서에서는 입력 장치가 설명되지만, 커버들과 같이 입력 기능을 포함하지 않는 다른 장치들도 고려된다.
예시적인 환경
도 1은 본 명세서에서 설명되는 기술들을 이용하도록 동작할 수 있는 예시적인 구현에서의 환경(100)의 도시이다. 도시된 환경(100)은 유연한 힌지(106)를 통해 입력 장치(104)에 물리적으로 그리고 통신가능하게 결합되는 컴퓨팅 장치(102)의 일례를 포함한다. 컴퓨팅 장치(102)는 다양한 방식으로 구성될 수 있다. 예를 들어, 컴퓨팅 장치(102)는 이동 전화, 도시된 바와 같은 태블릿 컴퓨터 등과 같이 이동 사용을 위해 구성될 수 있다. 따라서, 컴퓨팅 장치(102)는 풍부한 메모리 및 프로세서 자원들을 갖는 충분한 자원의 장치들로부터 제한된 메모리 및/또는 처리 자원들을 갖는 부족한 자원의 장치들의 범위에 걸칠 수 있다. 컴퓨팅 장치(102)는 컴퓨팅 장치(102)로 하여금 하나 이상의 동작을 수행하게 하는 소프트웨어와도 관련될 수 있다.
예를 들어, 컴퓨팅 장치(102)는 입출력 모듈(108)을 포함하는 것으로 도시된다. 입출력 모듈(108)은 컴퓨팅 장치(102)의 입력들 및 렌더링 출력들의 처리와 관련된 기능을 나타낸다. 입력 장치(104)의 키들과, 제스처들을 식별하고, 입력 장치(104) 및/또는 디스플레이 장치(110)의 터치스크린 기능을 통해 인식될 수 있는 제스처들에 대응하는 동작들이 수행되게 하기 위해 디스플레이 장치(110)에 의해 표시되는 가상 키보드의 키들 등에 대응하는 기능들과 관련된 입력들과 같은 다양한 상이한 입력들이 입출력 모듈(108)에 의해 처리될 수 있다. 따라서, 입출력 모듈(108)은 키 프레스, 제스처 등을 포함하는 입력들의 타입들 간의 분할을 인식하고 이용함으로써 다양한 상이한 입력 기술들을 지원할 수 있다.
도시된 예에서, 입력 장치(104)는 키들의 QWERTY 배열 및 트랙 패드를 갖는 키보드를 포함하는 입력부를 갖도록 구성되지만, 키들의 다른 배열들도 고려된다. 또한, 게임 제어기, 악기를 모방하기 위한 구성 등과 같은 다른 통상적이지 않은 구성들도 고려된다. 따라서, 입력 장치(104) 및 입력 장치(104)에 포함된 키들은 다양한 상이한 기능을 지원하기 위한 다양한 상이한 구성들을 가질 수 있다.
전술한 바와 같이, 입력 장치(104)는 이 예에서는 유연한 힌지(106)의 사용을 통해 컴퓨팅 장치(102)에 물리적으로 그리고 통신가능하게 결합된다. 유연한 힌지(106)는 힌지에 의해 지원되는 회전 운동이 핀에 의해 지원되는 바와 같은 기계적 회전이 아니라 힌지를 형성하는 재료의 휨(예를 들어, 구부러짐)에 의해 달성된다는 점에서 유연하지만, 핀에 의해 지원되는 실시예도 고려된다. 또한, 이러한 유연한 회전은 하나 이상의 방향(예를 들어, 도면에서 수직 방향)에서의 운동을 지원하지만, 컴퓨팅 장치(102)에 대한 입력 장치(104)의 측방 운동과 같은 다른 방향들에서의 운동을 제한하도록 구성될 수 있다. 이것은 컴퓨팅 장치(102)에 대한 입력 장치(104)의 일관된 정렬을 지원하기 위해, 예를 들어 전력 상태, 애플리케이션 상태 등을 변경하는 데 사용되는 센서들을 정렬하기 위해 사용될 수 있다.
예를 들어, 유연한 힌지(106)는 하나 이상의 직물(fabric) 층을 이용하여 형성될 수 있으며, 입력 장치(104)를 컴퓨팅 장치(102)에 또는 그 반대로 통신가능하게 결합하기 위해 유연한 트레이스들로서 형성된 도체들을 포함할 수 있다. 이러한 통신은 예를 들어 키 프레스의 결과를 컴퓨팅 장치(102)에 전송하고, 컴퓨팅 장치로부터 전력을 수신하고, 인증을 수행하고, 보조 전력을 컴퓨팅 장치(102)에 제공하는 것 등을 위해 사용될 수 있다. 유연한 힌지(106)는 다양한 방식으로 구성될 수 있으며, 이에 대한 추가 설명은 아래의 도면과 관련하여 발견될 수 있다.
도 2는 유연한 힌지(106)를 더 상세히 나타내는, 도 1의 입력 장치(104)의 예시적인 구현(200)을 도시한다. 이 예에서는, 입력 장치(104)와 컴퓨팅 장치(102) 간의 통신 및 물리적 접속을 제공하도록 구성되는 입력 장치의 접속부(202)가 도시된다. 도시된 바와 같은 접속부(202)는 컴퓨팅 장치(102)의 하우징 내의 채널 내에 수용되도록 구성되는 높이 및 단면을 갖지만, 이러한 배열은 그의 사상 및 범위로부터 벗어나지 않고서 반전될 수도 있다.
접속부(102)는 유연한 힌지(106)의 사용을 통해 키들을 포함하는 입력 장치(104)의 일부에 유연하게 접속된다. 따라서, 접속부(202)가 컴퓨팅 장치에 물리적으로 접속될 때, 접속부(202)와 유연한 힌지(106)의 결합은 책의 힌지와 유사한 컴퓨팅 장치(102)에 대한 입력 장치(104)의 운동을 지원한다.
접속부(102)는 이 예에서 자기 결합 장치들(204, 206), 기계 결합 돌기들(208, 210) 및 통신 접촉부들(212)을 포함하는 것으로 도시된다. 자기 결합 장치들(204, 206)은 하나 이상의 자석의 사용을 통해 컴퓨팅 장치(102)의 상보형 자기 결합 장치들에 자기적으로 결합하도록 구성된다. 이러한 방식으로, 입력 장치(104)는 자기 인력의 사용을 통해 컴퓨팅 장치(102)에 물리적으로 고정될 수 있다.
접속부(202)는 입력 장치(104)와 컴퓨팅 장치(102) 간의 기계 물리 접속을 형성하기 위한 기계 결합 돌기들(208, 210)도 포함한다. 통신 접촉부들(212)은 도시된 바와 같이 장치들 간의 통신 결합을 형성하기 위해 컴퓨팅 장치(102)의 대응하는 통신 접촉부들과 접촉하도록 구성된다.
예시적인 장치 배향들
유연한 힌지(106)의 회전 운동을 통해, 컴퓨팅 장치(102)에 대한 입력 장치(104)의 다양한 상이한 배향들이 지원될 수 있다. 예를 들어, 유연한 힌지(106)에 의해 회전 운동이 지원될 수 있으며, 따라서 입력 장치(104)는 컴퓨팅 장치(102)의 디스플레이 장치(110)를 향해 배치될 수 있고, 따라서 도 3의 예시적인 배향(300)에 나타난 바와 같이 커버로서 작용할 수 있다. 따라서, 입력 장치(104)는 컴퓨팅 장치(102)의 디스플레이 장치(110)를 손상으로부터 보호하도록 작용할 수 있다.
도 4의 예시적인 배향(400)에 도시된 바와 같이, 타이핑 배열이 지원될 수 있다. 이러한 배향에서, 입력 장치(104)는 표면에 대해 편평하게 배치되며, 컴퓨팅 장치(102)는 디스플레이 장치(110)의 관찰을 가능하게 하기 위해, 예를 들어 컴퓨팅 장치(102)의 배면에 배치된 킥스탠드(402)의 사용을 통해 소정 각도로 배치된다.
도 5의 예시적인 배향(500)에서, 입력 장치(104)는 컴퓨팅 장치(102)의 배면을 향해, 예를 들어 컴퓨팅 장치(102)의 디스플레이 장치(110)에 대향 배치된 컴퓨팅 장치(102)의 후방 하우징을 향해 배치되도록 회전될 수도 있다. 이 예에서, 유연한 힌지(106)는 컴퓨팅 장치(102)에 대한 접속부(202)의 배향을 통해, 접속부(202)를 "랩어라운드(wrap around)"하여, 입력 장치(104)를 컴퓨팅 장치(102)의 후방에 배치한다.
이러한 랩핑은 컴퓨팅 장치(102)의 후방의 일부가 여전히 노출되게 한다. 이것은 다양한 기능을 위해, 예를 들어 이 예시적인 배향(500)에서 컴퓨팅 장치(102)의 후방의 상당한 부분이 입력 장치(104)에 의해 커버되는 경우에도 컴퓨팅 장치(102)의 후방에 배치된 카메라가 사용되는 것을 가능하게 하기 위해 이용될 수 있다. 위에서는 어느 한 시점에 컴퓨팅 장치(102)의 단일 면을 커버하기 위한 입력 장치(104)의 구성이 설명되었지만, 다른 구성들도 고려된다.
도 6의 예시적인 배향에서, 입력 장치(104)는 컴퓨팅 장치의 후방을 커버하도록 구성된 부분(602)을 포함하는 것으로 도시된다. 이 부분(602)은 또한 유연한 힌지(604)를 이용하여 접속부(202)에 접속된다.
도 6의 예시적인 배향(600)은 또한 타이핑 배열을 도시하며, 이러한 배열에서는 입력 장치(104)가 표면에 대해 편평하게 배치되고, 컴퓨팅 장치(102)는 디스플레이 장치(110)의 관찰을 가능하게 하기 위해 소정 각도로 배치된다. 이것은 이 예에서 부분(602)과 접촉하도록 컴퓨팅 장치(102)의 배면에 배치된 킥스탠드(402)의 사용을 통해 지원된다.
도 7은 부분(602)을 포함하는 입력 장치(104)가 컴퓨팅 장치(102)의 전방(예로서, 디스플레이 장치(110)) 및 후방(예로서, 디스플레이 장치로부터의 하우징의 대향면) 모두를 커버하는 데 사용되는 예시적인 배향(700)을 도시한다. 하나 이상의 구현에서, 전기 및 기타 커넥터들도 예를 들어 컴퓨팅 장치(102) 및/또는 입력 장치(104)의 면들을 따라 배치되어, 닫힐 때 보조 전력을 제공할 수 있다.
물론, 다양한 다른 배향들도 지원될 수 있다. 예를 들어, 컴퓨팅 장치(102) 및 입력 장치(104)는 도 1에 도시된 바와 같이 이들 양자가 표면에 대해 편평하게 배치되는 배열을 취할 수 있다. 삼각대 배열, 회의 배열, 프레젠테이션 배열 등과 같은 다른 예들도 고려된다.
킥스탠드
설명되는 킥스탠드는 컴퓨팅 장치(102)의 다양한 상이한 배향들을 가능하게 하는 데 사용될 수 있다. 예를 들어, 다양한 실시예들에 따른 킥스탠드의 아래의 구현들을 고려한다.
도 8은 배향(300)을 나타내며, 폐쇄 위치의 킥스탠드(402)를 포함한다. 폐쇄 위치에서, 킥스탠드(402)는 컴퓨팅 장치(102)의 배면(802)의 일부를 형성하며, 따라서 킥스탠드(402)는 컴퓨팅 장치(102)의 표면 외형을 따른다. 예를 들어, 킥스탠드(402)가 폐쇄 위치에 있을 때, 킥스탠드(402)는 컴퓨팅 장치(102) 내에 통합되며, 배면(802)에 의해 형성된 평면으로부터 돌출하지 않는다.
도 9는 킥스탠드(402)가 컴퓨팅 장치(102)의 배면(802)으로부터 떨어져 위치(900)로 회전될 수 있는 것을 도시한다. 예를 들어, 킥스탠드(402)는 힌지 어셈블리를 통해 이음매(902)를 따라 컴퓨팅 장치(102)에 회전 가능하게 부착될 수 있다. 그러한 힌지 어셈블리의 예들이 후술된다.
적어도 일부 구현들에서, 위치(900)는 힌지(402)에 대한 사전 설정 위치에 대응한다. 예를 들어, 사용자가 배면(802)으로부터 떨어지도록 킥스탠드(402)에 압력을 가할 때, 킥스탠드(402)는 위치(900) 내로 스냅핑(snapping)될 수 있다. 후술하는 바와 같이, 킥스탠드(402)를 컴퓨팅 장치(102)에 부착하는 데 사용되는 힌지 어셈블리는 스프링 압력 및 걸쇠 설정들을 이용하여, 킥스탠드(402)에 대한 사전 설정 개방 위치들을 제공할 수 있다. 이 예에서, 위치(900)는 컴퓨팅 장치(102)의 배면과 킥스탠드(402) 간의 각도(904)와 관련된다. 예를 들어, 각도(904)는 20도 내지 30도의 범위에 걸칠 수 있다. 그러나, 임의의 적절한 각도 범위가 사용될 수 있다.
킥스탠드(402)가 위치(900)에 있을 때, 컴퓨팅 장치(102)는 입력 장치(104)로부터 멀어지도록 회전되고, 도 4의 배향(400)에 도시된 바와 같이 킥스탠드(402)에 의해 지지될 수 있다. 따라서, 위치(900)는 디스플레이 장치(110)가 보이게 하고, 입력 장치(104)를 통해 컴퓨팅 장치(102)에 입력이 제공되는 것을 가능하게 할 수 있다.
도 10은 킥스탠드(402)가 컴퓨팅 장치(102)의 배면(802)으로부터 떨어져 위치(1000)로 회전될 수 있는 것을 도시한다. 예를 들어, 킥스탠드(402)는 위치(900)를 지나서 위치(1000)로 더 회전될 수 있다.
적어도 일부 구현들에서, 위치(1000)는 힌지(402)에 대한 사전 설정 위치에 대응한다. 예를 들어, 사용자가 배면(802)으로부터 떨어지도록 킥스탠드(402)에 압력을 가할 때, 킥스탠드(402)는 위치(1000) 내로 스냅핑될 수 있다. 이 예에서, 위치(1000)는 컴퓨팅 장치(102)의 배면과 킥스탠드(402) 간의 각도(1002)와 관련된다. 예를 들어, 각도(1002)는 65도 내지 75도의 범위에 걸칠 수 있다. 그러나, 임의의 적절한 각도 범위가 사용될 수 있다. 또한, 이음매(902)(예를 들어, 이음매의 폭)는 위치(1000)로의 회전 동안 유지될 수 있다.
킥스탠드(402)가 위치(1000)에 있을 때, 컴퓨팅 장치(102)는 측방으로(예를 들어, 세로 관찰 위치로) 회전되고, 킥스탠드(402)를 통해 지지될 수 있다. 예를 들어, 도 11에 도시된 배향(1100)을 고려한다.
도 11은 컴퓨팅 장치(102)가 세로 관찰 위치로, 예를 들어 도 1에 도시된 배향에 대해 90도로 회전되는 것을 나타내는 배향(1100)에서의 컴퓨팅 장치(102)의 배면도를 나타낸다. 또한, 킥스탠드(402)는 위치(1000)에 배치되며, 따라서 컴퓨팅 장치(102)는 뒤로 눕고, 표면(1102) 상에서 킥스탠드(402)에 의해 지지된다. 여기서는 도시되지 않지만, 컴퓨팅 장치(102)를 배향(1100)으로 배치하는 것은 디스플레이 장치(110)의 관찰 배향이 세로 보기로 회전되게 할 수 있다.
도 11에서, 컴퓨팅 장치(102)는 입력 장치(104)를 갖지 않는 것으로 도시된다. 따라서, 적어도 일부 실시예들에서, 입력 장치(104)는 컴퓨팅 장치(102)로부터 분리될 수 있으며, 따라서 컴퓨팅 장치(102)는 입력 장치(104)와 무관한 기능을 갖는다. 예를 들어, 유연한 힌지(106)는 입력 장치(104)를 자기력을 통해 컴퓨팅 장치(102)에 대해 유지하는 자기 부착 메커니즘을 이용할 수 있다. 따라서, 사용자는 컴퓨팅 장치(102) 및 입력 장치(104)를 파지할 수 있으며, 이들 간의 자기 인력을 극복함으로써 이들을 분리할 수 있다.
컴퓨팅 장치(102)는 입력 장치(104)로부터 분리될 때 다양한 기능을 제공할 수 있다. 예를 들어, 사용자는 컴퓨팅 장치(102)를 통해 영화 및/또는 스트리밍 콘텐츠와 같은 콘텐츠를 볼 수 있다. 또한, 사용자는 디스플레이 장치(110)의 터치스크린 기능과 상호작용할 수 있다. 따라서, 킥스탠드(402)를 위치(1000)에 배치하는 것은 사용자가 컴퓨팅 장치를 세로 배향으로 배치하고, 그러한 배향에서 컴퓨팅 장치를 보고/보거나 컴퓨팅 장치와 상호작용하는 것을 가능하게 할 수 있다.
도 11에 더 도시된 바와 같이, 컴퓨팅 장치(102)는 배면(802)과 전면(1106) 사이에 경사 에지(1104)를 포함한다. 경사 에지(1104)는 배면(802)의 폭이 전면(1106)의 폭보다 좁도록 경사진다. 킥스탠드(402)는 배면(802) 내에 통합되며, 배면(802)과 실질적으로 동일한 폭을 갖는다. 따라서, 킥스탠드(402)는 전면(1106)보다 좁은 폭을 갖는다.
따라서, 컴퓨팅 장치가 배향(1100)으로 회전되고, 킥스탠드가 위치(1000)에 배치될 때, 컴퓨팅 장치(102)는 전면(1106)으로부터 멀어져 뒤로 젖혀지며, 킥스탠드(402)의 코너(1108)에 놓인다. 코너(1108)는 소정 형태의 쿠션 재료를 이용하여, 표면(1102) 상에서의 코너(1108)의 슬라이딩을 줄이고, 표면(1102)과 컴퓨팅 장치(102) 사이의 진동의 전달을 줄일 수 있다.
도 12는 하나 이상의 실시예에 따른 킥스탠드(402)의 내면(1200)의 도면을 나타낸다. 이 예에서, 킥스탠드(402)는 컴퓨팅 장치(102)의 테두리와 관련하여 도시된다.
내면(1200)은 킥스탠드(402)가 개방 위치에 있을 때 표면 접촉점들로서 기능하는 표면 접촉부들(1202a, 1202b)을 포함한다. 표면 접촉부들(1202a, 1202b)은 다양한 타입의 미끄럼 방지 재료를 이용하여 형성될 수 있으며, 내면(1200) 내의 노치 내에 배치될 수 있다. 예를 들어, 표면 접촉부들(1202a, 1202b)은 탄성 재료로 형성될 수 있고, 실질적으로 열장이음(dovetail)의 형상을 가질 수 있으며, 따라서 표면 접촉부들은 탄성 압력을 통해 배면(1200) 내의 노치 내에 유지될 수 있다. 추가로 또는 대안으로서, 표면 접촉부들(1202a, 1202b)은 적절한 접착제를 통해 내면(1200)에 부착될 수 있다.
표면 접촉부들(1202a, 1202b)은 킥스탠드(402)의 바닥 에지에 배치되며, 따라서 킥스탠드(402)가 열리고 표면에 놓일 때, 표면 접촉부들(1202a, 1202b)은 킥스탠드(402)와 표면 간의 절연체들로서 사용된다. 예를 들어, 표면 접촉부들(1202a, 1202b)은 킥스탠드(402)와 인접 표면 사이의 진동 전달을 줄일 수 있다. 또한, 표면 접촉부들(1202a, 1202b)은 표면 상에서의 킥스탠드(402)의 미끄러짐을 줄일 수 있다. 예를 들어, 표면 접촉부들(1202a, 1202b)은 다양한 상이한 표면들 상에서의 미끄러짐을 방지하는 고무 재료로 형성될 수 있다. 따라서, 컴퓨팅 장치(102)가 킥스탠드(402)에 의해 (예로서, 전술한 배향(400)으로) 지지될 때, 표면 접촉부들(1202a, 1202b)은 컴퓨팅 장치(102)의 안정화를 돕고, 표면 상에서의 킥스탠드(402)의 진동에 의해 유발될 수 있는 소음을 줄일 수 있다.
내면(1200) 상에는, 내면(1200)의 하부 에지를 따라 배치되고 자장에 끌리는 재료(예로서, 강자성체)로 형성된 안정화기 플레이트(1204a) 및 안정화기 플레이트(1204b)가 더 포함된다. 킥스탠드(402)가 폐쇄 위치에 있을 때, 안정화기 플레이트들(1204a, 1204b)은 컴퓨팅 장치(102)의 인접 에지를 따라 배치된 자석들에 끌린다. 따라서, 폐쇄 위치에서, 자석들에 의해 안정화기 플레이트들(1204a, 1204b) 상에 가해지는 자기력은 컴퓨팅 장치(102)에 대한 킥스탠드(402)의 하부 에지의 유지를 도울 수 있다.
내면(1200)은 킥스탠드(402)를 컴퓨팅 장치(102)에 부착하는 데 사용되는 주변 힌지들에 대한 탑재점들로서 기능하는 주변 힌지 마운트들(1206a, 1206b)을 더 포함한다. 주변 힌지들의 예들이 아래에 설명된다. 킥스탠드(402)와 컴퓨팅 장치(102) 사이에 사용되는 센터 힌지에 대한 슬라이딩 가능 부착물로서 기능하는 센터 힌지 키(1208)도 포함된다. 센터 힌지의 일례가 아래에 설명된다.
감쇠기(1210a) 및 감쇠기(1210b)가 (예로서, 적절한 접착제를 이용하여) 내면(1200)에 고정되고, 킥스탠드(402)의 진동을 억제하도록 기능한다. 예를 들어, 감쇠기들(1210a, 1210b)은 킥스탠드(402)의 진동을 흡수하고/하거나 흩뜨리는 재료로 형성될 수 있다. 그러한 재료들의 예들은 우레탄 폼, 고무, 네오프렌, 규소 수지 등을 포함한다. 따라서, 감쇠기들(1210a, 1210b)은 예를 들어 킥스탠드(402)가 열리거나 닫힐 때 킥스탠드(402)의 진동에 의해 유발되는 소음을 줄일 수 있다.
킥스탠드 부착을 위한 힌지들
다양한 실시예들에 따르면, 다양한 상이한 힌지 어셈블리들을 이용하여 킥스탠드를 컴퓨팅 장치에 부착할 수 있다. 일부 예시적인 힌지들 및 힌지 배열들이 아래에 설명된다.
도 13은 컴퓨팅 장치(102) 및 킥스탠드(402)의 분해 배면도(1300)를 나타낸다. 배면도(1300) 내에는, 킥스탠드(402)를 컴퓨팅 장치(102)에 부착하는 데 사용될 수 있는 주변 힌지들(1302a, 1302b)이 포함된다. 주변 힌지들(1302a, 1302b)은 예를 들어 적절한 부착 방법 및/또는 장치를 통해 컴퓨팅 장치(102) 내부에 설치되도록 구성된다.
킥스탠드(402)는 도 12를 참조하여 전술한 주변 힌지 마운트들(1206a, 1206b)을 통해 주변 힌지들(1302a, 1302b)의 회전부에 부착될 수 있다. 따라서, 주변 힌지들(1302a, 1302b)에 대한 부착은 킥스탠드(402)가 컴퓨팅 장치(102)와 관련된 다양한 위치들 사이에서 회전하는 것을 가능하게 한다.
예를 들어 적절한 부착 방법 및/또는 장치를 통해 컴퓨팅 장치 내부에 설치되도록 또한 구성되는 센터 힌지(1304)가 더 도시된다. 킥스탠드(402)의 센터 힌지 키(1208)는 센터 힌지(1304) 내에 결합될 수 있다. 후술하는 바와 같이, 센터 힌지(1304)는 다양한 위치들 사이의 킥스탠드(402)의 운동의 안정화를 도울 수 있다.
주변 힌지들(1302a, 1302b) 및 센터 힌지(1304)는 컴퓨팅 장치(102) 내에 설치되며, 따라서 킥스탠드(402)가 힌지들 상에서 폐쇄 위치로 회전될 때, 힌지들은 보이지 않고, 킥스탠드(402)는 컴퓨팅 장치(102)의 섀시와 함께 평탄한 외형을 형성한다. 예를 들어, 도 8과 관련하여 도시되고 설명된 폐쇄 위치를 참조한다.
배면도(1300)에는 표면 접촉부들(1202a, 1202b)도 도시된다. 전술한 바와 같이, 표면 접촉부들(1202a, 1202b)은 킥스탠드(402)가 개방 위치에 있고 표면에 놓일 때 킥스탠드(402) 및 컴퓨팅 장치(102)를 안정화할 수 있다. 적어도 일부 실시예들에서, 표면 접촉부들(1202a, 1202b)은 킥스탠드(402)의 내면 내의 그루브 내에 배치되며, 따라서 표면 접촉부들(1202a, 1202b)은 킥스탠드(402)가 폐쇄 위치에 있을 때 밖에서 보이지 않는다.
사용자가 킥스탠드(402)를 폐쇄 위치로부터 개방하는 것을 돕기 위해, 컴퓨팅 장치(102)의 에지에는 노치(1306)가 형성된다. 예를 들어, 노치(1306)는 사용자가 닫힌 킥스탠드(402) 뒤에 손가락의 적은 부분을 삽입하고 압력을 가하여 킥스탠드(402)를 개방 위치로 회전시키는 것을 가능하게 할 수 있다. 추가로 또는 대안으로서, 노치는 킥스탠드(402)의 개방을 돕기 위해 킥스탠드(402)의 에지에 형성될 수 있다.
도 14는 컴퓨팅 장치(102)의 부분 단면도로서, 일반적으로 1400으로 지시된다. 도면(1400)에서, 킥스탠드(402)는 도 9를 참조하여 설명된 위치(900)와 같은 개방 위치에 있다. 도면(1400)은 주변 힌지(1302a)의 단면을 포함한다. 적어도 일부 구현들에서, 주변 힌지(1302b)는 구성, 치수 및/또는 동작 면에서 주변 힌지(1302a)와 동일하다. 따라서, 후술하는 주변 힌지(1302a)의 예시적인 양태들은 주변 힌지(1302b)에 동일하게 적용될 수 있다.
피벗(1402)이 주변 힌지(1302a)의 일부로서 포함되며, 이 피벗에는 킥스탠드(402)가 주변 힌지 마운트(1206b)를 통해 부착된다. 도시된 바와 같이, 주변 힌지 마운트(1206b)는 나사(1404)를 이용하여 피벗(1402)에 부착될 수 있다. 그러나, 청구되는 실시예들에 따르면, 다양한 부착 기술들이 이용될 수 있다.
예를 들어, 적어도 일부 실시예들에서는, 자기력을 이용하여, 주변 힌지 마운트(1206b)를 피벗(1402)에 대해 유지할 수 있다. 주변 힌지 마운트(1206b) 및 피벗(1402)은 예를 들어 자기 재료, 예를 들어 자석, 강자성 재료 등을 포함할 수 있다. 따라서, 그러한 실시예들에서, 주변 힌지 마운트(1206b)가 피벗(1402)과 정렬될 때, 자기력은 주변 힌지 마운트(1206b)를 피벗(1402)에 제거 가능하게 결합할 수 있다. 따라서, 일부 실시예들에서는 자석들을 이용하여, 킥스탠드(402)를 힌지 어셈블리들(예로서, 주변 힌지들 및 센터 힌지)에 부착할 수 있으며, 따라서 킥스탠드(402)는 컴퓨팅 장치(102)로부터 분리될 수 있다. 이것은 컴퓨팅 장치(102)가 다양한 방식으로, 예를 들어 킥스탠드(402)를 상이한 컬러, 상이한 그래픽, 상이한 재료 등의 상이한 킥스탠드로 교체함으로써 맞춤화되는 것을 가능하게 할 수 있다.
피벗(1402)은 채널(1406) 내에서의 슬라이딩을 통해 움직일 수 있으며, 따라서 킥스탠드(402)는 다양한 위치들로 회전될 수 있다. 슬레드 피벗(sled pivot)(1410) 상에 회전 가능하게 배치되는 힌지 슬레드(1408)가 채널(1406)의 하부를 형성한다. 힌지 슬레드(1408)는 피벗(1402) 상에서 채널(1406)의 상부(1412)에 대해 상방 압력을 가하여, 피벗(1402)을 적소에 유지한다. 힌지 슬레드(1408)로부터의 압력은 힌지 슬레드(1408)의 립(lip)에 상방 압력을 가하는 스프링(1414)을 통해 제공된다.
이해를 돕기 위해, 피벗(1402) 및 힌지 슬레드(1408)는 또한 주변 힌지(1302a)의 다른 부분들로부터 분리된, 도 14의 하부에 도시된다. 힌지 슬레드(1408)는 노치(1416)가 힌지 슬레드(1408)의 표면에 포함되도록 형성된다. 또한, 노치(1418)가 힌지 슬레드(1408) 상에 감쇠기(1420)의 배치를 통해 형성된다. 감쇠기(1420)는 고무, 합성 고무, 규소 수지, 연성 플라스틱 등과 같은 탄성 특성을 나타내는 재료로 형성된다. 피벗(1404)이 킥스탠드(402)에 대한 상이한 위치들 상에서 전이할 때 슬라이딩할 수 있는 힌지 슬레드(1408)의 부분들에 대응하는 힌지 슬레드(1408)의 표면 상의 접촉부(1422) 및 접촉부(1424)가 노치들(1416, 1418) 사이에 위치한다.
적어도 일부 구현들에서, 노치들(1416, 1418)은 피벗(1402)에 대한 사전 설정 위치들에 대응한다. 예를 들어, 피벗(1402)이 채널(1406) 내에서 슬라이딩할 때, 피벗(1402) 상의 돌기(1424)가 노치들(1416, 1418) 내에 캐치되어, 피벗(1402), 따라서 킥스탠드(402)가 특정 위치들에 놓이게 할 수 있다. 노치들(1416, 1418)은 예를 들어 킥스탠드(402)에 대한 사전 설정 위치들에 대응할 수 있다.
동작에 있어서, 킥스탠드(402)는 개방 위치로부터 폐쇄 위치로 조종될 수 있으며, 따라서 피벗(1402)은 채널(1406) 내에서 슬라이딩하고, 돌기(1426)가 노치(1416) 내에 캐치될 때까지 돌기(1426)는 접촉부(1424) 위로 슬라이딩한다. 따라서, 노치(1416)는 킥스탠드(402)에 대한 폐쇄 위치에 대응할 수 있다. 사용자는 킥스탠드(402)를 폐쇄 위치로부터 열 수 있으며, 따라서 피벗(1402)은 채널(1406) 내에서 슬라이딩하고, 돌기(1426)가 노치(1418) 내에 캐치될 때까지 돌기(1426)는 접촉부(1422) 위로 슬라이딩한다. 노치(1418)는 도 9의 위치(900)와 관련하여 도시된 바와 같은 개방 위치에 대응할 수 있다.
이 예에서, 접촉부(1422)는 접촉부(1424)보다 돌기(1426)와의 더 작은 접촉각을 갖는다는 점에 유의한다. 따라서, 폐쇄 위치로부터 개방 위치로(예로서, 노치(1416)로부터 노치(1418)로) 전이할 때의 돌기(1426)에 대한 힌지 슬레드(1408)로부터의 저항은 개방 위치로부터 폐쇄 위치로, 예를 들어 노치(1418)로부터 노치(1416)로 전이할 때보다 작을 수 있다. 적어도 일부 실시예들에서, 이것은 사용자가 킥스탠드(402)를 닫을 때보다 킥스탠드(402)를 열 때 더 적은 힘을 사용하는 것을 가능하게 할 수 있다. 이것은 킥스탠드(402)가 개방 위치에 있을 때, 예를 들어 표면 상에서 컴퓨팅 장치(102)를 지지할 때 부주의로 닫히는 것을 방지하는 데에 특히 유용할 수 있다.
킥스탠드(402)는 또한 돌기(1422)가 위치(1428)에 도달할 때까지 피벗(1402)이 채널(1406) 내에서 슬라이딩하도록 조종될 수 있다. 위치(1428)는 도 10과 관련하여 설명된 위치(1000)와 같은 다른 개방 위치에 대응할 수 있다.
따라서, 주변 힌지들의 다양한 수단들이 킥스탠드(402)로 하여금 다양한 사전 설정 위치들에서 멈추도록 회전될 수 있게 하는 걸쇠 메커니즘을 제공할 수 있다.
도 15는 주변 힌지들의 치수들 및 구성이 킥스탠드(402)로 하여금 주변 힌지들 상에서 상이한 개방 위치들로 회전하는 한편, 폐쇄 위치에 있을 때 컴퓨팅 장치(102)의 외형과 조화되는 것을 가능하게 하는 것을 도시한다. 예를 들어, 주변 힌지(1302a)는 도 9와 관련하여 전술한 이음매(902)와 실질적으로 일치하는 회전 중심을 포함한다. 회전 중심은 예를 들어 이음매(902)의 중심축의 10 밀리미터(mm) 내에 있을 수 있다. 이음매(902)는 상면(1500)의 그리고 킥스탠드(402)의 인접 에지들과 컴퓨팅 장치(102)의 배면(802) 간의 공간에 대응한다. 이음매(902), 따라서 주변 힌지(1320a)에 대한 회전 중심은 주변 힌지(1302a) 자체의 밖에 있다. 따라서, 킥스탠드(402)가 폐쇄 위치에 있을 때, 상면(1500) 및 배면(802)은 편평한 평면을 형성한다. 또한, 킥스탠드(402)가 다양한 개방 위치들로 회전될 때, 상면(1500) 및 킥스탠드(402)의 인접 에지들은 인접한 상태로 유지되며, 따라서 이음매(902)는 킥스탠드(402)의 상이한 위치들 사이에서 실질적으로 일정하다. 예를 들어, 이음매의 폭은 킥스탠드의 다양한 위치들로의 이동 동안 5 밀리미터(mm)의 변화 내에서 유지될 수 있다.
도 16은 컴퓨팅 장치(102)의 부분 단면도를 나타내며, 일반적으로 1600으로 표시된다. 도면(1600)은 킥스탠드(402)가 폐쇄 위치에 있을 때의 센터 힌지(1304)의 단면을 포함한다. 센터 힌지(1304)는 슬라이더(1602) 및 슬라이더(1602)의 배면 상에 압력을 가하는 스프링(1604)을 포함한다. 슬라이더(1602) 내의 채널 내에 배치되는 센터 힌지 키(1208)가 더 도시된다.
동작에 있어서, 슬라이더(1602)는 킥스탠드(402)가 상이한 위치들 사이에서 이동될 때 센터 힌지(1304) 내에서 슬라이딩할 수 있다. 예를 들어, 도 16의 하부에 도시된 시나리오를 고려하며, 여기서 킥스탠드(402)는 폐쇄 위치로부터 열린다. 킥스탠드(402)가 열림에 따라, 센터 힌지 키(1028)는 슬라이더(1602)로부터 멀어지게 상방으로 회전한다. 센터 힌지 키(1208)의 회전과 더불어, 스프링(1604)으로부터의 압력은 슬라이더(1602)가 센터 힌지 키(1208)의 이동과 더불어 앞으로 슬라이딩하게 한다. 따라서, 슬라이더(1602)는 킥스탠드가 열릴 때 센터 힌지 키(1208)에 대해 계속 압력을 가한다. 적어도 일부 구현들에서, 센서 힌지 키(1208)에 대한 슬라이더(1602)로부터의 압력은 센터 에지에서 킥스탠드(402)를 안정화하며, 킥스탠드(402)가 상이한 위치들로의 이동 동안 랩핑되는 것을 방지하는 것을 돕는다. 예를 들어, 센터 힌지 키(1208)에 대한 슬라이더(1602)로부터의 압력은 상면(1500) 및 킥스탠드(402)의 인접 에지들을 인접하게 유지하는 것을 도울 수 있으며, 따라서 이음매(902)는 킥스탠드(402)의 이동 동안 실질적으로 일정하다. 이 압력은 또한 예를 들어 킥스탠드(402)의 이동 동안 킥스탠드(402)에 대한 진동 및 진동 관련 소음을 줄인다.
전술한 예시적인 장치 배향들, 킥스탠드 위치들, 힌지 위치들, 힌지 스톱 위치들 등은 예시의 목적을 위해 제공된다는 것을 알아야 한다. 따라서, 본 명세서에서 구체적으로 언급되지 않은 다양한 상이한 장치 배향들, 킥스탠드 위치들, 힌지 위치들 및 힌지 스톱 위치들이 청구되는 실시예들의 사상 및 범위 내에서 구현될 수 있다. 예를 들어, 킥스탠드를 컴퓨팅 장치에 부착하는 데 사용되는 부착 메커니즘(예로서, 전술한 주변 힌지들)은 컴퓨팅 장치의 다양한 배향들을 지원하기 위해 킥스탠드가 다양한 상이한 위치들로 열리는 것을 가능하게 하는 임의 수 및/또는 구성의 적절한 스톱 위치들을 포함할 수 있다. 또한, 예시적인 힌지들은 청구되는 실시예들에 따라 킥스탠드 및/또는 컴퓨팅 장치의 임의의 적절한 위치 및/또는 부분에 부착될 수 있다.
예시적인 시스템 및 장치
도 17은 본 명세서에서 설명되는 다양한 기술들을 구현할 수 있는 하나 이상의 컴퓨팅 시스템 및/또는 장치를 나타내는 예시적인 컴퓨팅 장치(1702)를 포함하는 예시적인 시스템(일반적으로 1700)을 도시한다. 컴퓨팅 장치(1702)는 예를 들어 사용자의 하나 이상의 손에 의해 파지되고 운반될 수 있는 크기로 형성되는 하우징의 사용을 통해 이동 구성을 갖도록 구성될 수 있으며, 그의 도시된 예들은 이동 전화, 이동 게임 및 음악 장치, 및 태블릿 컴퓨터를 포함하지만, 다른 예들도 고려된다.
도시된 바와 같은 예시적인 컴퓨팅 장치(1702)는 서로 통신 결합되는 프로세싱 시스템(1704), 하나 이상의 컴퓨터 판독 가능 매체(1706) 및 하나 이상의 I/O 인터페이스(1708)를 포함한다. 도시되지 않았지만, 컴퓨팅 장치(1702)는 다양한 컴포넌트들을 서로 결합하는 시스템 버스 또는 다른 데이터 및 명령 전송 시스템을 더 포함할 수 있다. 시스템 버스는 임의의 다양한 버스 아키텍처를 이용하는 메모리 버스 또는 메모리 제어기, 주변 장치 버스, 유니버설 직렬 버스 및/또는 프로세서 또는 로컬 버스와 같은 상이한 버스 구조들의 어느 하나 이상의 조합을 포함할 수 있다. 제어 및 데이터 라인들과 같은 다양한 다른 예들도 고려된다.
프로세싱 시스템(1704)은 하드웨어를 이용하여 하나 이상의 동작을 수행하기 위한 기능을 나타낸다. 따라서, 프로세싱 시스템(1704)은 프로세서, 기능 블록 등으로 구성될 수 있는 하드웨어 요소(1710)를 포함하는 것으로 도시된다. 이것은 하나 이상의 반도체를 이용하여 형성된 주문형 집적 회로 또는 다른 논리 장치로서의 하드웨어에서의 구현을 포함한다. 하드웨어 요소들(1710)은 이들을 형성하는 재료들 또는 본 명세서에서 사용되는 처리 메커니즘들에 의해 한정되지 않는다. 예를 들어, 프로세서들은 반도체(들) 및/또는 트랜지스터들(예로서, 전자 집적 회로들(IC들))을 포함할 수 있다. 그러한 상황에서, 프로세서 실행 가능 명령어들은 전자적으로 실행 가능한 명령어들일 수 있다.
컴퓨터 판독 가능 저장 매체(1706)는 메모리/저장 장치(1712)를 포함하는 것으로 도시된다. 메모리/저장 장치(1712)는 하나 이상의 컴퓨터 판독 가능 매체와 관련된 메모리/저장 능력을 나타낸다. 메모리/저장 컴포넌트(1712)는 (랜덤 액세스 메모리(RAM)와 같은) 휘발성 매체 및/또는 (판독 전용 메모리(ROM), 플래시 메모리, 광 디스크, 자기 디스크 등과 같은) 비휘발성 매체를 포함할 수 있다. 메모리/저장 컴포넌트(1712)는 고정식 매체(예로서, RAM, ROM, 고정식 하드 드라이브 등)는 물론, 이동식 매체(예로서, 플래시 메모리, 이동식 하드 드라이브, 광 디스크 등)를 포함할 수 있다. 컴퓨터 판독 가능 매체(1706)는 아래에 더 설명되는 바와 같이 다양한 다른 방식으로 구성될 수 있다.
입출력 인터페이스(들)(1708)는 사용자가 컴퓨팅 장치(1702)에 명령들 및 정보를 입력하는 것을 가능하게 하고, 또한 다양한 입출력 장치들을 이용하여 정보가 사용자 및/또는 다른 컴포넌트들 또는 장치들에 제공되는 것을 가능하게 하기 위한 기능을 나타낸다. 입력 장치들의 예는 키보드, 커서 제어 장치(예로서, 마우스), 마이크, 스캐너, 터치 기능(예로서, 물리적 터치를 검출하도록 구성되는 용량성 또는 기타 센서들), (예를 들어, 가시 또는 비가시 파장들, 예를 들어 적외선 주파수들을 이용하여 터치와 무관한 제스처들과 같은 움직임을 인식할 수 있는) 카메라 등을 포함한다. 출력 장치들의 예는 디스플레이 장치(예로서, 모니터 또는 프로젝터), 스피커, 프린터, 네트워크 카드, 촉각 응답 장치 등을 포함한다. 따라서, 컴퓨팅 장치(1702)는 사용자 상호작용을 지원하도록 다양한 방식으로 구성될 수 있다.
컴퓨팅 장치(1702)는 컴퓨팅 장치(1702)로부터 물리적으로, 통신가능하게 제거 가능한 입력 장치(1714)에 통신가능하게, 물리적으로 결합되는 것으로도 도시된다. 이러한 방식으로, 다양한 기능을 제공하기 위해 다양한 구성들을 갖는 컴퓨팅 장치(1720)에 다양한 상이한 입력 장치들이 결합될 수 있다. 이 예에서, 입력 장치(1714)는 압력 감지 키, 기계적으로 스위칭되는 키 등으로서 구성될 수 있는 하나 이상의 키(1716)를 포함한다.
입력 장치(1714)는 다양한 기능을 지원하도록 구성될 수 있는 하나 이상의 모듈(1718)을 포함하는 것으로도 도시된다. 하나 이상의 모듈(1718)은 예를 들어 키들(1716)로부터 수신된 아날로그 및/또는 디지털 신호들을 처리하여 키스트로크가 의도되었는지를 결정하고, 입력이 휴지 압력(resting pressure)을 지시하는지를 결정하고, 컴퓨팅 장치(1702)와의 동작을 위한 입력 장치(1714)의 인증을 지원하는 것 등을 위해 구성될 수 있다.
본 명세서에서는 다양한 기술들이 소프트웨어, 하드웨어, 요소들 또는 프로그램 모듈들과 일반적으로 관련하여 설명될 수 있다. 일반적으로, 그러한 모듈들은 특정 작업들을 수행하거나 특정 추상 데이터 타입들을 구현하는 루틴, 프로그램, 객체, 요소, 컴포넌트, 데이터 구조 등을 포함한다. 본 명세서에서 사용되는 바와 같은 "모듈", "기능" 및 "컴포넌트"라는 용어들은 일반적으로 소프트웨어, 펌웨어, 하드웨어 또는 이들의 조합을 나타낸다. 본 명세서에서 설명되는 기술들의 특징들은 플랫폼에 무관하며, 이는 기술들이 다양한 프로세서를 갖는 다양한 상용 컴퓨팅 플랫폼들에서 구현될 수 있다는 것을 의미한다.
설명되는 모듈들 및 기술들의 구현은 소정 형태의 컴퓨터 판독 가능 매체에 저장되거나 그를 통해 전송될 수 있다. 컴퓨터 판독 가능 매체는 컴퓨팅 장치(1702)에 의해 액세스될 수 있는 다양한 매체를 포함할 수 있다. 한정이 아니라 예로서, 컴퓨터 판독 가능 매체는 "컴퓨터 판독 가능 저장 매체" 및 "컴퓨터 판독 가능 신호 매체"를 포함할 수 있다.
"컴퓨터 판독 가능 저장 매체"는 단순한 신호 전송, 반송파 또는 신호 자체가 아니라 정보의 영구 및/또는 비일시적 저장을 가능하게 하는 매체 및/또는 장치를 지칭할 수 있다. 따라서, 컴퓨터 판독 가능 저장 매체는 비-신호 보유 매체(non-signal bearing media)를 지칭한다. 컴퓨터 판독 가능 저장 매체는 컴퓨터 판독 가능 명령어, 데이터 구조, 프로그램 모듈, 논리 요소/회로 또는 다른 데이터와 같은 정보의 저장에 적합한 방법 또는 기술로 구현되는 휘발성 및 비휘발성, 이동식 및 비이동식 매체 및/또는 저장 장치와 같은 하드웨어를 포함한다. 컴퓨터 판독 가능 저장 매체의 예는 RAM, ROM, EEPROM, 플래시 메모리 또는 기타 메모리 기술, CD-ROM, 디지털 다기능 디스크(DVD) 또는 기타 광학 저장 장치, 하드 디스크, 자기 카세트, 자기 테이프, 자기 디스크 저장 장치 또는 기타 자기 저장 장치, 유형 매체, 또는 원하는 정보를 저장하기에 적합하고 컴퓨터에 의해 액세스될 수 있는 제조물을 포함할 수 있지만, 이에 한정되지 않는다.
"컴퓨터 판독 가능 신호 매체"는 예를 들어 네트워크를 통해 명령어들을 컴퓨팅 장치(1702)의 하드웨어로 전송하도록 구성되는 신호 보유 매체를 지칭할 수 있다. 신호 매체는 통상적으로 반송파, 데이터 신호 또는 기타 전송 메커니즘과 같은 피변조 데이터 신호 내에 컴퓨터 판독 가능 명령어들, 데이터 구조들, 프로그램 모듈들 또는 다른 데이터를 구현할 수 있다. 신호 매체는 또한 임의의 정보 전달 매체를 포함한다. "피변조 데이터 신호"라는 용어는 신호 내에 정보를 인코딩하는 방식으로 신호의 특성들 중 하나 이상이 설정 또는 변경된 신호를 의미한다. 한정이 아니라 예로서, 통신 매체는 유선 네트워크 또는 직접 유선 접속과 같은 유선 매체, 및 음향, RF, 적외선 및 기타 무선 매체와 같은 무선 매체를 포함한다.
전술한 바와 같이, 하드웨어 요소들(1710) 및 컴퓨터 판독 가능 매체(1706)는 본 명세서에서 설명되는 기술들의 적어도 일부 양태들을 구현하기 위해, 예를 들어 하나 이상의 명령어를 실행하기 위해 일부 실시예들에서 사용될 수 있는 하드웨어 형태로 구현되는 모듈들, 프로그래밍 가능 장치 논리 및/또는 고정식 장치 논리를 나타낸다. 하드웨어는 집적 회로 또는 온칩 시스템, 주문형 집적 회로(ASIC), 필드 프로그래머블 게이트 어레이(FPGA), 복합 프로그래밍 가능 논리 장치(CPLD) 및 실리콘 또는 다른 하드웨어 내의 다른 구현들의 컴포넌트들을 포함할 수 있다. 이와 관련하여, 하드웨어는 명령어들에 의해 정의되는 프로그램 작업들을 수행하는 처리 장치 및/또는 하드웨어에 의해 구현되는 논리는 물론, 실행할 명령어들을 저장하는 데 사용되는 하드웨어, 예를 들어 전술한 컴퓨터 판독 가능 저장 매체로서 동작할 수 있다.
위의 것들의 조합들을 또한 이용하여 본 명세서에서 설명되는 다양한 기술들을 구현할 수 있다. 따라서, 소프트웨어, 하드웨어 또는 실행 가능 모듈들은 하나 이상의 명령어로서 그리고/또는 소정 형태의 컴퓨터 판독 가능 저장 매체 상에 그리고/또는 하나 이상의 하드웨어 요소(1710)에 의해 구현되는 논리로서 구현될 수 있다. 컴퓨팅 장치(1702)는 소프트웨어 및/또는 하드웨어 모듈들에 대응하는 특정 명령어들 및/또는 기능들을 구현하도록 구성될 수 있다. 따라서, 컴퓨팅 장치(1702)에 의해 소프트웨어로서 실행될 수 있는 모듈의 구현은 적어도 부분적으로 하드웨어에서, 예를 들어 컴퓨터 판독 가능 저장 매체 및/또는 프로세싱 시스템(1704)의 하드웨어 요소들(1710)의 사용을 통해 달성될 수 있다. 명령어들 및/또는 기능들은 본 명세서에서 설명되는 기술들, 모듈들 및 예들을 구현하기 위해 하나 이상의 제조물(예로서, 하나 이상의 컴퓨팅 장치(1702) 및/또는 프로세싱 시스템(1704))에 의해 실행/동작될 수 있다.
결론
예시적인 구현들이 구조적 특징들 및/또는 방법적 단계들에 고유한 언어로 설명되었지만, 첨부된 청구항들에서 정의되는 구현들은 설명된 특정 특징들 또는 단계들로 한정될 필요가 없다는 것을 이해해야 한다. 오히려, 특정 특징들 및 단계들은 청구되는 특징들을 구현하는 예시적인 형태들로서 개시된다.
Claims (20)
- 섀시(chassis)와,
상기 섀시의 일부에 회전 가능하게 부착되는 부품과,
상기 섀시의 일부에 상기 부품의 일부를 부착하는 적어도 하나의 힌지를 포함하되, 상기 힌지는 상기 힌지 외부에 회전 중심을 포함하며,
상기 회전 중심은 상기 부품과 상기 섀시의 인접 에지 사이의 이음매(seam)와 일치하는
장치.
- 제1항에 있어서,
상기 힌지는 상기 부품이 상기 섀시를 지지하기 위해 하나 이상의 사전 설정된 위치로 개방되는 것을 가능하게 하는 하나 이상의 스톱 위치(stop position)를 포함하는
장치.
- 제1항에 있어서,
상기 부품은 상기 섀시에 대해 상기 부품의 적어도 하나의 에지를 안정화하는 자기 안정화기를 포함하는
장치.
- 제1항에 있어서,
상기 부품은 상기 섀시가 위치한 표면과 상기 부품 사이에서 진동의 전달을 감소시키도록 구성된 하나 이상의 표면 접촉부를 포함하는
장치.
- 제1항에 있어서,
상기 부품은 상기 부품의 진동을 감소시키도록 구성된 하나 이상의 감쇠기(damper)를 포함하는
장치.
- 제1항에 있어서,
상기 부품은 적어도 하나의 힌지에 제거 가능하게 부착되어 상기 부품이 상기 섀시의 일부로부터 분리될 수 있는
장치.
- 제1항에 있어서,
상기 부품의 폭은 상기 섀시의 전면의 폭보다 좁아서 상기 섀시가 세로 배향(portrait orientation)으로 위치할 때, 상기 섀시가 상기 전면으로부터 멀어져 뒤로 젖혀지며 상기 부품의 적어도 일부 상에 놓이는
장치.
- 제1항에 있어서,
상기 부품은 폐쇄 위치(closed position)에 있을 때 상기 섀시의 외형(contour)과 부합하는
장치.
- 제1항에 있어서,
상기 장치는 컴퓨팅 장치를 포함하고,
상기 컴퓨팅 장치는 상기 컴퓨팅 장치에 대해 다수의 배향으로 배치될 수 있는 입력 장치에 물리적으로 부착되도록 구성되고, 상기 부품은 상기 컴퓨팅 장치를 타이핑 배향으로 지지하도록 구성되어 상기 입력 장치를 통해 입력이 상기 컴퓨팅 장치에 제공될 수 있는
장치.
- 제1항에 있어서,
상기 부품 및 상기 섀시에 부착되고 상기 부품의 움직임 동안 상기 부품의 에지를 안정화하도록 구성되는 다른 힌지를 더 포함하는
장치.
- 킥스탠드를 컴퓨팅 장치에 동작 가능하게 부착하도록 구성된 제 1 힌지―상기 제 1 힌지는 외부에 회전 중심을 갖고 하나 이상의 스톱 위치를 포함하여 상기 킥스탠드가 하나 이상의 사전 설정 위치로 개방될 수 있고, 상기 제 1 힌지는 상기 킥스탠드가 폐쇄 위치일 때 상기 킥스탠드가 상기 컴퓨팅 장치의 표면 외형에 부합하도록 구성됨―와,
상기 킥스탠드 및 상기 컴퓨팅 장치에 부착되고, 상기 제 1 힌지 상에서 상기 킥스탠드의 움직임 동안 상기 킥스탠드의 에지에 압력을 가함으로써 상기 킥스탠드의 에지를 안정화하도록 구성된 제 2 힌지를 포함하는
부착 어셈블리.
- 제11항에 있어서,
상기 킥스탠드의 에지와 상기 컴퓨팅 장치의 인접 에지 사이의 이음매가 상기 킥스탠드의 움직임 동안 유지되는
부착 어셈블리.
- 제12항에 있어서,
상기 회전 중심은 상기 이음매의 중심축과 일치하는
부착 어셈블리.
- 제11항에 있어서,
상기 제 2 힌지는 상기 킥스탠드의 움직임 동안 상기 킥스탠드의 에지에 대한 압력을 유지하는 적어도 슬라이딩 메커니즘을 통해 상기 킥스탠드의 에지를 안정화하도록 구성되는
부착 어셈블리.
- 제11항에 있어서,
상기 컴퓨팅 장치에 대해 다수의 배향으로 위치될 수 있는 입력 장치에 물리적으로 부착되도록 상기 컴퓨팅 장치가 구성되고,
상기 스톱 위치 중 적어도 하나는 상기 킥스탠드가 상기 컴퓨팅 장치를 타이핑 배향으로 지지하게 할 수 있도록 하는 상기 킥스탠드에 대한 사전 설정 위치에 대응하여 상기 입력 장치를 통해 입력이 상기 컴퓨팅 장치에 제공될 수 있는
부착 어셈블리.
- 입력 장치에 통신 가능하게 연결되도록 구성되는 하우징과,
상기 하우징의 배면에 동작 가능하게 부착되고 컴퓨팅 장치의 다수의 배향을 지지하기 위해 다수의 개방 위치로 개방되도록 구성되는 킥스탠드를 포함하되,
상기 킥스탠드는 외부 회전 중심을 갖는 적어도 하나의 힌지를 통해 상기 하우징의 배면에 부착되는
컴퓨팅 장치.
- 제 16 항에 있어서,
상기 힌지가 상기 개방 위치 중 하나 이상으로 회전될 때, 상기 킥스탠드와 상기 하우징의 배면의 인접 에지 사이의 이음매의 폭이 유지되는
컴퓨팅 장치.
- 제17항에 있어서,
상기 킥스탠드는 상기 킥스탠드의 회전 동안 상기 킥스탠드의 에지를 안정화하기 위해 상기 킥스탠드의 에지에 대해 압력을 가하는 적어도 하나의 다른 힌지를 통해 상기 하우징의 배면에 부착되는
컴퓨팅 장치.
- 제16항에 있어서,
상기 킥스탠드가 폐쇄 위치에 있을 때 상기 컴퓨팅 장치의 배면에 대해 상기 킥스탠드의 에지를 안정화하는 자기 안정화기 메커니즘을 더 포함하는
컴퓨팅 장치.
- 제16항에 있어서,
상기 킥스탠드는 폐쇄 위치에 있을 때 상기 컴퓨팅 장치의 배면의 다수의 외부 에지의 외형에 부합하도록 구성되는
컴퓨팅 장치.
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US13/471,030 US9134808B2 (en) | 2012-03-02 | 2012-05-14 | Device kickstand |
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KR1020147024559A KR102015684B1 (ko) | 2012-03-02 | 2013-03-01 | 사용자 입력 의도 분류 기법 |
KR1020147024555A KR102171048B1 (ko) | 2012-03-02 | 2013-03-01 | 키 형성 기법 |
KR1020147024487A KR102104141B1 (ko) | 2012-03-02 | 2013-03-01 | 플럭스 분수 |
KR1020147024503A KR20140140023A (ko) | 2012-03-02 | 2013-03-01 | 센서 퓨전 알고리즘 |
KR1020147024568A KR101988070B1 (ko) | 2012-03-02 | 2013-03-02 | 힘 집중기를 포함하는 압력 감지 키 및 키보드 |
KR1020147024552A KR102113357B1 (ko) | 2012-03-02 | 2013-03-02 | 입력 디바이스 어셈블리 |
KR1020147024479A KR102169994B1 (ko) | 2012-03-02 | 2013-03-02 | 장치 킥스탠드 |
KR1020147024500A KR102104142B1 (ko) | 2012-03-02 | 2013-03-02 | 유연한 경첩 및 제거 가능한 부착물 |
KR1020147024564A KR102123705B1 (ko) | 2012-03-02 | 2013-03-02 | 압력 감지 키 정규화가 적용된 입력 디바이스 및 키보드 |
KR1020147024561A KR20140134281A (ko) | 2012-03-02 | 2013-03-02 | 압력 감지 키 |
KR1020207016522A KR102202341B1 (ko) | 2012-03-02 | 2013-03-02 | 압력 감지 키 정규화가 적용된 입력 디바이스 및 키보드 |
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KR1020147024559A KR102015684B1 (ko) | 2012-03-02 | 2013-03-01 | 사용자 입력 의도 분류 기법 |
KR1020147024555A KR102171048B1 (ko) | 2012-03-02 | 2013-03-01 | 키 형성 기법 |
KR1020147024487A KR102104141B1 (ko) | 2012-03-02 | 2013-03-01 | 플럭스 분수 |
KR1020147024503A KR20140140023A (ko) | 2012-03-02 | 2013-03-01 | 센서 퓨전 알고리즘 |
KR1020147024568A KR101988070B1 (ko) | 2012-03-02 | 2013-03-02 | 힘 집중기를 포함하는 압력 감지 키 및 키보드 |
KR1020147024552A KR102113357B1 (ko) | 2012-03-02 | 2013-03-02 | 입력 디바이스 어셈블리 |
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KR1020147024564A KR102123705B1 (ko) | 2012-03-02 | 2013-03-02 | 압력 감지 키 정규화가 적용된 입력 디바이스 및 키보드 |
KR1020147024561A KR20140134281A (ko) | 2012-03-02 | 2013-03-02 | 압력 감지 키 |
KR1020207016522A KR102202341B1 (ko) | 2012-03-02 | 2013-03-02 | 압력 감지 키 정규화가 적용된 입력 디바이스 및 키보드 |
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JP (15) | JP6253204B2 (ko) |
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CN (24) | CN103440058B (ko) |
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CA (2) | CA2862621A1 (ko) |
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