WO2010005441A1 - Dust-proof computer mouse - Google Patents
Dust-proof computer mouse Download PDFInfo
- Publication number
- WO2010005441A1 WO2010005441A1 PCT/US2008/069735 US2008069735W WO2010005441A1 WO 2010005441 A1 WO2010005441 A1 WO 2010005441A1 US 2008069735 W US2008069735 W US 2008069735W WO 2010005441 A1 WO2010005441 A1 WO 2010005441A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- computer mouse
- cover layer
- housing
- mouse
- depressible button
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; 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
- G06F3/033—Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
- G06F3/0354—Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of two-dimensional [2D] relative movements between the device, or an operating part thereof, and a plane or surface, e.g. 2D mice, trackballs, pens or pucks
- G06F3/03543—Mice or pucks
Definitions
- the present invention generally relates to computer peripheral devices and, more particularly, to a sealed computer mouse for operation in a dusty environment.
- a full-featured computer mouse 100 typically includes a housing 10 that is small enough to be grasped and operated in a single hand.
- the housing 10 has a upper surface 12 and a lower surface 14.
- the upper surface 12 is usually a curved surface with at least one, typically two, and sometimes more than two finger depressible selection buttons 20.
- the two buttons 20 shown in FIG IA commonly referred to as the left button and the right button, allow a user to perform the "left click" and "right click” action, respectively, to send commands to the computer.
- the housing 10 may also contain a scroller 30 on the upper surface 12.
- the scroller 30 can be a scrolling wheel or a trackball that allows a user to move a pointer or a cursor on the computer screen.
- the lower surface 14 of the housing 10 is a flat surface that allows the mouse 100 to be moved on top of a mouse pad or other flat supporting surface.
- a transparent sensor dimple 16 at the lower surface 14 allows an optical sensor inside the housing 10 to detect movement of the mouse 100 relative to the mouse pad or the flat supporting surface, and to convert the mouse movement to cursor movement on the computer screen.
- Inside the housing 10 are electronic circuits and components that process the motion and button information, and transmit the control signals to the computer.
- the housing 10 is typically assembled from two or more pieces of molded plastic material.
- the depressible buttons 20 and scroller 30 on the upper surface 12 of the housing 10 are exposed to the environment. Because the buttons 20 and scroller 30 are separated from the non-movable portion of the housing 10 by spaces 11, dust may enter the housing 10 through the spaces 11. The dust accumulates in the mouse 100 and in the spaces between the buttons 20, preventing the button clicks.
- the dust also accumulates on the outer surface of the mouse 100, clogging the space in front of the optical sensor.
- the accumulated dust may also absorb moisture from the ambient air and form unwanted conductive paths that lead to short circuits and malfunction. Therefore, the computer mouse needs to be opened and cleaned periodically.
- the cleaning process exposes the electronic components to potential mechanical damage and/or electrostatic discharge (ESD) damage.
- a dust-proof computer mouse with scroll function contains a housing having an upper surface and a lower surface, at least one depressible button on the upper surface, a scrolling area on the upper surface, an optical sensor dimple on the lower surface, and a cover layer.
- the housing and the depressible button define spaces around the depressible button.
- the cover layer covers the spaces around the depressible button , therefore prevents dust from entering the interior of the housing through the spaces.
- FIGS. IA and IB are top and bottom views, respectively, of a prior art computer mouse.
- FIGS. 2A-2C are top, side and bottom views, respectively, of a dust-proof mouse.
- FIGS. 3A and 3B are side and bottom views, respectively, of another embodiment of a dust-proof mouse.
- FIG. 4 is a schematic showing another embodiment of a dust-proof mouse. DETAIL DESCRIPTION OF PREFERRED EMBODIMENT
- FIGS. 2A-2C depict a dust-proof mouse 200 that contains a housing 10 with a upper surface 12 and a lower surface 14, a scrolling area 40, and a cover layer 18.
- the upper surface 12 is a curved surface with at least one, typically two, and sometimes more than two finger depressible selection buttons 20.
- the lower surface 14 is a flat surface with a transparent sensor dimple 16.
- the cover layer 18 is a thin, elastic layer that wraps around the mouse 200 to prevent dust from entering the mouse 200 from spaces around the buttons 20. A user can click the buttons 20 through the cover layer 18.
- the scrolling area 40 serves the same function as the scroller 30 in the prior art computer mouse 100, i.e., allowing a user to move a pointer or a cursor on the computer screen.
- the scrolling area 40 can be, for example, a touchpad strip or an optical finger navigator.
- Touchpads have been widely used in laptop computers and computer mice.
- a touchpads controls the movement of the cursor by detecting motions of a user's finger on the touchpad.
- Traditional touchpads operate in one of a few different ways, all of which entail sensing the capacitance of a finger, or the capacitance between sensors.
- a touchpad may be designed to sense the capacitance of finger even if it is covered with a thin layer of rubber or plastic (e.g., the cover layer 18). The operation of such a touchpad, however, may not be ideal.
- New models of touchpads often have more functions because they are pressure-sensitive.
- Many new touchpads have the function of tapping, which imitates the left-click button on a mouse. The user can choose and change the function of certain finger movements. For example, the normal function for tapping on the touchpad is the left-click on the mouse. The user can change it in the settings section to the right- click of the mouse.
- the optical finger navigator utilizes a high quality image system to track the motion of a finger placed on a sensor pad. Motion is tracked and processed to create two dimensional direction vectors, which are then used by the display system on the host to control the motion of an on screen cursor.
- the optical finger navigator will still be highly operable even if the sensor pad is covered with a thin layer of transparent material .
- the cover layer 18 is attached to all sides of the scrolling area 40 to form a dust-proof seal. In one embodiment, the cover layer 18 is glued around the touchpad strip or the optical finger navigator cover.
- the cover layer 18 may cover the entire surface of mouse 200 including the scrolling area 40. If the scrolling area 40 contains a touchpad, the cover layer 18 may be a thin layer of elastic material that will not interfere with the operation of the touch pad. If the scrolling area 40 contains an optical finger navigator, the cover layer 18 may be a thin, transparent layer that allow for normal operation of the optical finger navigator. As shown in FIG. 2C, the cover layer 18 also covers the lower surface 14 of the mouse 200 with a transparent window 15 on top of the sensor dimple 16 to prevent dust from clogging in the sensor dimple 16.
- only the upper surface 12 of the housing 10 is covered by the cover layer 18.
- the upper surface 12 of mouse 300 is covered by the cover layer 18 that forms a dust-proof seal around the scrolling area 40.
- the lower surface 14 of the housing 10 is not covered by the cover layer 18.
- the sensor dimple 16, however, is covered with a transparent window 17 that is flush with the lower surface 14 to prevent dust from clogging the sensor dimple 16 (FIG. 3B).
- the cover layer 18 only a portion of the upper surface 12 is covered by the cover layer 18.
- the upper surface 12 of mouse 400 is molded with a recessed area 13 around the buttons 20.
- the cover layer 18 is attached to the recessed area 13 to form a dust-proof seal around the buttons 20.
- the depth of the recessed area 13 matches the thickness of the cover layer 18 so that the top side of the cover layer 18 is flush with the upper surface 12 of the housing 10.
- the cover layer 18 forms a dust-proof seal around the scrolling area 40 and the sensor dimple 16 on the lower surface 14 is covered with a transparent window (not shown).
- An embodiment of the cover layer 18 is made of an elastic material with a high resistance to wear and tear.
- the elastic material include, but are not limited to, natural rubber, synthetic rubber, synthetic resin having rubber elasticity.
- synthetic rubbers include, but are not limited to, nitrile, diene, and acrylic rubbers, as well as thermoplastic ploymers such as polyolefins, polyesters and fluorine-containing polymers.
- synthetic resins having rubber elasticity include, but are not limited to, ethylene/vinyl acetate copolymers, polyurethanes, polybutadiene, and flexible polyvinyl chloride). Even polymers which are intrinsically rigid, such as poly (vinyl chloride), can be made to have rubber elasticity by incorporating a plasticizer, softener, or the like.
- the cover layer 18 is made of a high-strength, stretchable plastic.
- high-strength, stretchable plastics include, but are not limited to, polyethylene terephthalate (PET), polyester obtained by replacing the principal acid component or principal glycol component of PET (PET copolymer), a mixture of the preceding polymers, polyamide (12-nylon, 11 -nylon, and MXD 6-nylon), and polyarylenesulfide such as PPS (polyphenylenesulfide).
- acids that can be used to replace the principal acid component of PET include, but are not limited to, isophthalic acid, orthophthalic acid, naphthalenedicarboxylic acid, paraphenylenedicarboxylic acid, cyclohexanedicarboxylic acid, succinic acid, glutaric acid, adipic acid, suberic acid, azelaic acid, sebacic acid, dodecanedione acid, trimellitic acid, pyromellitic acid, sulfoisophthalic acid, and their salts.
- glycols that can be used to replace the principal glycol component of
- PET include, but are not limited to, propylene glycol, butanediol, pentanediol, hexanediol, neopentyl glycol, diethylene glycol, triethylene glycol, polyethylene glycol, polytetramethylene glycol, cyclohexanedimethanol, ethylene oxide-added bisphenol A, trimethylolpropane, and pentaerythritol.
- the cover layer 18 is made of a transparent material so that no window is needed for the optical sensor at the lower surface 14.
- the cover layer 18 comprises multiple sublayers.
- a multilayered structure takes advantage of different properties exhibited by the various sublayers in the structure. Typical of multilayered structures are multilayered films in which different layers have specific characteristics.
- a multilayered structure may contain one or more polyester or polyolefin sublayers to provide mechanical strength and a fluoropolymer sublayer to provide an excellent moisture barrier property.
- the cover layer 18 is glued to the housing 10.
- the cover layer 18 comprises a heat adhesive sublayer on its inner side and is attached to the housing 10 by heat press.
- the heat adhesive sublayer typically comprises a thermoplastic resin with a melting point at 60 0 C -14O 0 C.
- the cover layer 18 may have a thickness ranging from 0.1-2 mm. In another embodiment, the cover layer 18 may have a thickness ranging from 0.2-1 mm. A thicker cover layer 18 provides better resistance to wear and tear. However, the cover layer 18 needs to be thin enough so that a user may depress the buttons 20 through the cover layer 18 and feel the "click" of the buttons 20.
- the dust-proof layer 18 is thicker in areas that are subject to more wear and tear, such as the griping areas on both sides of the mouse 200 or 300 (i.e., the areas where the griping fingers hold the mouse), the areas above the buttons 20 where a finger click the buttons 20 through the cover layer 18, and the bottom surface of the mouse 200 or 300, where the cover layer 18 is constantly rubbed against a mouse pad or a hard surface.
- cover layer 18 may be reinforced at locations that are subject to more wear and tear with an additional layer or layers of high mechanical strength material, such as carbon fiber and nylon fiber (e.g., Kevlar®).
- high mechanical strength material such as carbon fiber and nylon fiber (e.g., Kevlar®).
Landscapes
- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Theoretical Computer Science (AREA)
- Human Computer Interaction (AREA)
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Position Input By Displaying (AREA)
Abstract
Description
Claims
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/US2008/069735 WO2010005441A1 (en) | 2008-07-11 | 2008-07-11 | Dust-proof computer mouse |
| BRPI0822546-0A BRPI0822546A2 (en) | 2008-07-11 | 2008-07-11 | Dustproof Computer Mouse with Scroll Function |
| US12/993,576 US20110074684A1 (en) | 2008-07-11 | 2008-07-11 | Dust-proof computer mouse |
| CN2008801294819A CN102037430A (en) | 2008-07-11 | 2008-07-11 | Dust-proof computer mouse |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/US2008/069735 WO2010005441A1 (en) | 2008-07-11 | 2008-07-11 | Dust-proof computer mouse |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2010005441A1 true WO2010005441A1 (en) | 2010-01-14 |
Family
ID=41507335
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2008/069735 Ceased WO2010005441A1 (en) | 2008-07-11 | 2008-07-11 | Dust-proof computer mouse |
Country Status (4)
| Country | Link |
|---|---|
| US (1) | US20110074684A1 (en) |
| CN (1) | CN102037430A (en) |
| BR (1) | BRPI0822546A2 (en) |
| WO (1) | WO2010005441A1 (en) |
Families Citing this family (19)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20120013532A1 (en) * | 2009-10-29 | 2012-01-19 | Pixart Imaging Inc. | Hybrid pointing device |
| US8648836B2 (en) | 2010-04-30 | 2014-02-11 | Pixart Imaging Inc. | Hybrid pointing device |
| US10112556B2 (en) | 2011-11-03 | 2018-10-30 | Ford Global Technologies, Llc | Proximity switch having wrong touch adaptive learning and method |
| US9831870B2 (en) | 2012-04-11 | 2017-11-28 | Ford Global Technologies, Llc | Proximity switch assembly and method of tuning same |
| US9531379B2 (en) * | 2012-04-11 | 2016-12-27 | Ford Global Technologies, Llc | Proximity switch assembly having groove between adjacent proximity sensors |
| US9568527B2 (en) | 2012-04-11 | 2017-02-14 | Ford Global Technologies, Llc | Proximity switch assembly and activation method having virtual button mode |
| US9660644B2 (en) | 2012-04-11 | 2017-05-23 | Ford Global Technologies, Llc | Proximity switch assembly and activation method |
| US9559688B2 (en) * | 2012-04-11 | 2017-01-31 | Ford Global Technologies, Llc | Proximity switch assembly having pliable surface and depression |
| US9520875B2 (en) * | 2012-04-11 | 2016-12-13 | Ford Global Technologies, Llc | Pliable proximity switch assembly and activation method |
| US9944237B2 (en) | 2012-04-11 | 2018-04-17 | Ford Global Technologies, Llc | Proximity switch assembly with signal drift rejection and method |
| CN103376920A (en) * | 2012-04-18 | 2013-10-30 | 宝德科技股份有限公司 | Optical dustproof mouse |
| US8922340B2 (en) | 2012-09-11 | 2014-12-30 | Ford Global Technologies, Llc | Proximity switch based door latch release |
| CN104345910B (en) * | 2013-07-25 | 2018-10-12 | 富泰华工业(深圳)有限公司 | Mouse |
| US10038443B2 (en) | 2014-10-20 | 2018-07-31 | Ford Global Technologies, Llc | Directional proximity switch assembly |
| US9654103B2 (en) | 2015-03-18 | 2017-05-16 | Ford Global Technologies, Llc | Proximity switch assembly having haptic feedback and method |
| US9548733B2 (en) | 2015-05-20 | 2017-01-17 | Ford Global Technologies, Llc | Proximity sensor assembly having interleaved electrode configuration |
| KR102385610B1 (en) | 2017-03-30 | 2022-04-12 | 엘지전자 주식회사 | Electronic device |
| SG11201910040QA (en) | 2017-05-03 | 2019-11-28 | Razer Asia Pacific Pte Ltd | Computer mouse |
| CN111552391A (en) * | 2020-04-29 | 2020-08-18 | 重庆工程职业技术学院 | A computer-cleaning input device |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN1105761A (en) * | 1994-01-20 | 1995-07-26 | 杨立志 | Operating control keyboard dust-proof protective film for computer |
| KR19980035103A (en) * | 1996-11-12 | 1998-08-05 | 박일우 | Keyboard cover |
| KR19990038030U (en) * | 1998-03-18 | 1999-10-15 | 맹인호 | Computer mouse cover |
| KR20020001895A (en) * | 2000-03-09 | 2002-01-09 | 최승현 | A construction of Mouse using an optical sensor and an operation method therefore |
Family Cites Families (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7166831B2 (en) * | 2004-09-01 | 2007-01-23 | Avago Technologies Ecbu Ip (Singapore) Pte. Ltd. | Optical mouse with replaceable contaminant barrier |
| US7732752B2 (en) * | 2004-09-30 | 2010-06-08 | Logitech Europe S.A. | Continuous base beneath optical sensor and optical homodyning system |
| US20060227108A1 (en) * | 2005-03-31 | 2006-10-12 | Ikey, Ltd. | Computer mouse for harsh environments and method of fabrication |
| WO2007067441A2 (en) * | 2005-12-08 | 2007-06-14 | Stephen Fong | Movable hand/wrist support for use with a computer mouse |
| US8643599B2 (en) * | 2006-06-27 | 2014-02-04 | Microsoft Corporation | Washable mouse |
| US20080284735A1 (en) * | 2007-05-18 | 2008-11-20 | Shim Theodore I | Multi-Purpose Optical Mouse |
| USD581416S1 (en) * | 2007-09-18 | 2008-11-25 | Belkin International, Inc. | Computer mouse |
-
2008
- 2008-07-11 US US12/993,576 patent/US20110074684A1/en not_active Abandoned
- 2008-07-11 WO PCT/US2008/069735 patent/WO2010005441A1/en not_active Ceased
- 2008-07-11 BR BRPI0822546-0A patent/BRPI0822546A2/en not_active IP Right Cessation
- 2008-07-11 CN CN2008801294819A patent/CN102037430A/en active Pending
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN1105761A (en) * | 1994-01-20 | 1995-07-26 | 杨立志 | Operating control keyboard dust-proof protective film for computer |
| KR19980035103A (en) * | 1996-11-12 | 1998-08-05 | 박일우 | Keyboard cover |
| KR19990038030U (en) * | 1998-03-18 | 1999-10-15 | 맹인호 | Computer mouse cover |
| KR20020001895A (en) * | 2000-03-09 | 2002-01-09 | 최승현 | A construction of Mouse using an optical sensor and an operation method therefore |
Also Published As
| Publication number | Publication date |
|---|---|
| US20110074684A1 (en) | 2011-03-31 |
| BRPI0822546A2 (en) | 2015-06-23 |
| CN102037430A (en) | 2011-04-27 |
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