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    • 92. 发明专利
    • Mounting structure for touch input device equipped with pressure sensitive sensor
    • 配有压力敏感传感器的触摸输入装置的安装结构
    • JP2011076172A
    • 2011-04-14
    • JP2009224066
    • 2009-09-29
    • Nissha Printing Co Ltd日本写真印刷株式会社
    • ENDO HIROKOTAKAI YUICHIROKAI YOSHIHIROSUZUKI TAKAHIRO
    • G06F3/033G01L1/20G06F3/041
    • G01L1/205G06F3/041G06F3/044G06F2203/04105
    • PROBLEM TO BE SOLVED: To provide a mounting structure of a touch input device of excellent water-proof and dust-proof properties, which can restrain deterioration of visibility of a display part of a display device even when mounting a pressure sensitive sensor, and includes the pressure sensitive sensor which easily detects pressure with high measuring precision. SOLUTION: The mounting structure for the touch input device includes the touch input device 4 equipped with a touch panel 10 and the pressure sensitive sensor 20 bonded onto an under face of the touch panel 10, and a casing 2 formed recessedly to have a step difference allowing engagement-in from an outside of the touch input device 4, and having, on a bottom face thereof, a frame-like support part 2b for supporting a recess or an opening part for the display device, and a reverse face peripheral edge part of the touch input device 4, the pressure sensitive sensor 20 includes a pressure concentration member 26 lamination-arranged distributedly to support a pressure sensitive ink member on a reverse face, a frame-like gasket 40 is bonded between the pressure sensitive sensor 20 and the support part 2b of the casing 2, and the gasket 40 is non-overlapped with the pressure concentration member 26. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供具有优异的防水和防尘特性的触摸输入装置的安装结构,即使在安装压敏传感器时也能够抑制显示装置的显示部分的可见性的劣化 并且包括能够以高测量精度容易地检测压力的压敏传感器。 解决方案:触摸输入装置的安装结构包括配备有触摸面板10的触摸输入装置4和粘合到触摸面板10的下表面上的压敏传感器20以及凹陷地形成的壳体2, 允许从触摸输入装置4的外部接合的阶梯差,并且在其底面上具有用于支撑用于显示装置的凹部或开口部的框状支撑部2b,以及反面 触摸输入装置4的外围边缘部分,压敏传感器20包括分层布置的压力聚集构件26,以在背面上支撑压敏墨水构件,框状垫圈40接合在压敏传感器 20和壳体2的支撑部分2b,并且垫圈40与压力集中构件26不重叠。版权所有(C)2011,JPO&INPIT
    • 93. 发明专利
    • Pressure detection unit
    • 压力检测单元
    • JP2011047893A
    • 2011-03-10
    • JP2009198705
    • 2009-08-28
    • Nissha Printing Co Ltd日本写真印刷株式会社
    • SUZUKI TAKAHIROENDO HIROKOKAI YOSHIHIROTAKAI YUICHIRO
    • G01L1/20
    • G01L1/20G06F3/041
    • PROBLEM TO BE SOLVED: To provide a pressure detection unit equipped with a load transmission member which functions stably over a long period. SOLUTION: The pressure detection unit 20 includes first and second substrates 21, 22 disposed facing in the pressure detection unit, and receiving a load from the outside; a pressure detection section 23, having a pair of electrodes 21a, 22a disposed in between the electrodes 21, 22 as well as, aranged between/on the first and second substrates 21, 22, and conductive pressure-sensitive ink members 23a, 23b disposed across a pair of the electrodes 21a, 22a, and having an electrical characteristic changed by the load; and the load transmission member 24, disposed at least between the first substrate 21 and the pressure detection section 23 or between the second substrate 22 and the pressure detection section 23, and concentrating and transmitting the load to the pressure detection section 23. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种配备有长时间稳定运转的载荷传递部件的压力检测单元。 解决方案:压力检测单元20包括面对压力检测单元设置并从外部接收负载的第一和第二基板21,22; 压力检测部23,其具有设置在电极21,22之间的一对电极21a,22a,以及设置在第一和第二基板21,22之间/之间的导电压敏墨液部件23a,23b 横跨一对电极21a,22a,具有由负载变化的电特性; 以及至少设置在第一基板21和压力检测部23之间或者设置在第二基板22和压力检测部23之间的负载传递部件24,并且将负载集中并传递到压力检测部23。 版权所有(C)2011,JPO&INPIT
    • 94. 发明专利
    • Contact detector and robot
    • 联系人检测器和机器人
    • JP2011007654A
    • 2011-01-13
    • JP2009151974
    • 2009-06-26
    • Denso CorpFujikura LtdToyota Motor Corpトヨタ自動車株式会社株式会社デンソー株式会社フジクラ
    • SATO FUMIOKONDO HIROSHISASAKI NOBUYUKIKAMEYAMA DAISUKE
    • G01L1/20B25J19/02
    • PROBLEM TO BE SOLVED: To improve durability of a contact sensor against a force applied from the outside than before.SOLUTION: This contact detector for detecting contact of an object to a robot includes a base layer 51, a resistance layer 52 that is stacked on the base layer 51 and at least partially has a rough surface, a resistance layer 54 that is stacked on the resistance layer 52 and has a rough surface corresponding to the rough surface of the resistance layer 52, and a spacer layer 53 that is stacked on the base layer 51 and forms an inter-layer space between the resistance layers 52 and 54. The interval between the resistance layers 52 and 54 is set so that friction occurs between the rough surface of the resistance layer 52 and the rough surface of the resistance layer 54 when at least one of the resistance layers 52 and 54 deforms. By employing this constitution, the durability of the contact sensor against the force applied from the outside can be improved than before.
    • 要解决的问题:提高接触传感器相对于从外部施加的力的耐久性。解决方案:用于检测物体与机器人的接触的接触检测器包括:基底层51,堆叠在其上的电阻层52 基底层51并且至少部分地具有粗糙表面,电阻层54层叠在电阻层52上并且具有对应于电阻层52的粗糙表面的粗糙表面以及层叠在其上的间隔层53 基底层51形成电阻层52和54之间的层间空间。电阻层52和54之间的间隔被设定为在电阻层52的粗糙表面和电阻的粗糙表面之间产生摩擦 当电阻层52和54中的至少一个变形时,层54。 通过采用这种结构,接触传感器抵抗从外部施加的力的耐久性可以比以前更好。
    • 95. 发明专利
    • Sitting sensor
    • 定位传感器
    • JP2010260468A
    • 2010-11-18
    • JP2009113403
    • 2009-05-08
    • Denso Corp株式会社デンソー
    • SAITO YUKIHIROITO HIROYUKI
    • B60N2/90G01L1/20
    • B60N2/002B60R21/01516G01G19/4142
    • PROBLEM TO BE SOLVED: To provide a sitting sensor capable of preventing erroneous detection of a baggage placement in the one end-hitting state while detecting an occupant without reducing detection property of the occupant even if the occupant sits in the front sitting state. SOLUTION: A sitting sensor 10 in which four sensor cells 11-14 are arranged on a linear line is arranged on a vehicle seat 30, and a first parallel circuit 23 with first and third sensor cells 11, 13 and a second parallel circuit 24 with second fourth sensor cells 12, 14 are connected in series. Thereby, even if the occupant sits on the vehicle seat 30 in the front sitting state, since the first and second sensor cells 11, 12 are conducted, the sitting in the front sitting state can be detected. Further, when the baggage is in the one end-hitting state, the sensor cells 11-14 are arranged such that they straddles an area of load of the baggage or the load is only concentrated to one of the sensor cells 11-14. Therefore, the sensor cells 11-14 adjacent to each other are not conducted and erroneous detection of baggage placement in the one end-hitting state can be prevented. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够在不降低乘员检测属性的同时检测乘员时能够防止一次终点状态下的行李放置的错误检测的座位传感器,即使乘坐者处于前坐姿态 。 解决方案:其中四个传感器单元11-14布置在线性线上的座位传感器10布置在车辆座椅30上,第一并联电路23具有第一和第三传感器单元11,13和第二平行 具有第二第四传感器单元12,14的电路24串联连接。 因此,即使乘坐者在前坐姿态下坐在车辆座椅30上,由于第一和第二传感器单元11,12被导通,因此可以检测坐在前坐姿状态。 此外,当行李处于一个终止状态时,传感器单元11-14被布置成使得它们跨越行李的负载区域,或者负载仅集中在传感器单元11-14中的一个。 因此,彼此相邻的传感器单元11-14不被传导,并且可以防止在一个终止状态下的行李放置的错误检测。 版权所有(C)2011,JPO&INPIT
    • 97. 发明专利
    • Seating detection device
    • 座位检测装置
    • JP2010175312A
    • 2010-08-12
    • JP2009016409
    • 2009-01-28
    • Aisin Seiki Co Ltdアイシン精機株式会社
    • KAWABATA HIDEKINAKAYAMA KOICHITAKUMA SETSU
    • G01L1/20H01H13/16H01H13/712
    • PROBLEM TO BE SOLVED: To provide an inexpensive seating detection device having a planar structure and a wide detection range.
      SOLUTION: A film members 10 for switch and a film member 20 for connector are formed each into a strip, respectively, and are arranged so that a pair of the film members for switch and one film member for connector are formed into Y shape, for example, and each switch wiring 13, 14 and connector wiring 21, 22 are electrically connected in each end parts of the film members. The arranged each end part of the film members is electrically and mechanically bonded with a conductive adhesive B, and covered with a flexible seat member 30. Accordingly, the seating detection device 1 having a planar structure with no protruding parts and a wide detection range is achieved. An occupant seated on a vehicle seat hardly has unpleasant feeling caused by the sense of a foreign matter, and arrangement flexibility for a vehicle seat is thereby enhanced. An increase in costs or an increase in weight due to an increase in the number of components is suppressed. Because the bonded each end part of the film members are covered with the seat member, the mechanical strength of the part is improved.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种具有平面结构和宽检测范围的便宜的座位检测装置。 解决方案:用于开关的膜构件10和用于连接器的膜构件20分别形成为条,并且被布置成使得一对用于开关的膜构件和用于连接器的一个膜构件形成为Y 形状,并且每个开关布线13,14和连接器布线21,22电连接在膜构件的每个端部中。 膜构件的每个端部的布置被导电粘合剂B电气和机械地接合,并且被柔性的座椅构件30覆盖。因此,具有没有突出部分的平面结构和宽的检测范围的着座检测装置1是 实现。 坐在车辆座椅上的乘客几乎不会因异物感而引起不愉快的感觉,从而提高了车辆座椅的布置灵活性。 由于部件数量的增加,成本的增加或重量增加被抑制。 由于膜部件的粘接的每个端部被座椅部件覆盖,所以部件的机械强度提高。 版权所有(C)2010,JPO&INPIT
    • 98. 发明专利
    • Sensor-actuator and vehicle using this
    • 传感器执行器和车辆使用此
    • JP2010096629A
    • 2010-04-30
    • JP2008267561
    • 2008-10-16
    • Nissan Motor Co Ltd日産自動車株式会社
    • HONDA TAKASHIOKADA JUNMIURA HIROAKINAMIKI MITSUHARU
    • G01L1/20
    • PROBLEM TO BE SOLVED: To provide a sensor-actuator which makes a pressure sensor function and an actuator function compatible as one device.
      SOLUTION: The sensor-actuator includes a first electro-conductive body 11 and a second electro-conductive body 12 which are disposed with a space 19 of a distance enabling mutual contact and separation left between. The second electro-conductive body 12 consists of an electro-conductive polymer. The sensor-actuator is made to function as a pressure sensor by measuring by an ammeter 14 a change in the resistance between the first electro-conductive body 11 and the second electro-conductive body 12 arising from the mutual contact, and it is made to function as an actuator by a shrinking action of the electro-conductive polymer caused by electrification of the second electro-conductive body 12.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种使压力传感器功能和致动器功能作为一个装置兼容的传感器致动器。 解决方案:传感器致动器包括第一导电体11和第二导电体12,第一导电体11和第二导电体12间隔开间隔一段距离的空间19。 第二导电体12由导电聚合物组成。 通过由电流表14测量第一导电体11和第二导电体12之间由相互接触引起的电阻的变化,将传感器致动器用作压力传感器,并且使其成为 通过第二导电体12的带电引起的导电聚合物的收缩作用,作为致动器。(C)2010年,JPO和INPIT
    • 99. 发明专利
    • Pressure-sensitive sensor
    • 压敏传感器
    • JP2010071870A
    • 2010-04-02
    • JP2008241111
    • 2008-09-19
    • Nissha Printing Co Ltd日本写真印刷株式会社
    • HOSHINO HIROYUKITAKAI YUICHIROKAI YOSHIHIRO
    • G01L1/20
    • G01L1/20G01L1/2287G06F3/041
    • PROBLEM TO BE SOLVED: To provide a pressure-sensitive sensor capable of layering pressure-sensitive ink layers and electrodes with satisfactory productivity, facilitating control over the contact between the pressure-sensitive ink layers and the electrodes by a load, satisfactorily reproducing resistance values between the pressure-sensitive ink layers and the electrodes by the load, and highly accurately measuring pressure.
      SOLUTION: The pressure-sensitive sensor 40 includes a substrate film 31 formed by connecting trapezoidal shapes to a rectangular shape each from its four sides with their lower bottoms as connection lines in a plan-view shape; a pair of the electrodes 16a and 16b formed in a ring shape in the part of the rectangular shape of the substrate film 31 along its circumferential edge; and the pressure-sensitive ink layers 30 formed in the parts of the trapezoidal shapes of the substrate film 31 in such a way as to be in parallel with the pair of electrodes 16a and 16b. The pressure-sensitive ink layers 30 are layers of which electric characteristics change when pressed. With folding lines 50 indicated by the two-dot chain lines of (1) in Fig. 2 as axes, the parts of the trapezoidal shapes are folded to the inside in such a way that the pair of electrodes 16a ad 16b may come into contact with the pressure-sensitive ink layers 30.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供能够以令人满意的生产率分层压敏油墨层和电极的压敏传感器,有利于通过负载控制压敏油墨层和电极之间的接触,令人满意地再现 压力敏感油墨层与电极之间的负载下的电阻值,高精度地测量压力。 解决方案:压敏传感器40包括:基板膜31,其通过将梯形形状连接成四边形的矩形形状而形成,其下部底部为平面形状的连接线; 一对电极16a和16b沿着其周缘形成在基片薄膜31的矩形部分的一部分中的环形形状; 以及形成在基板膜31的梯形形状的部分中的压敏墨层30以与该对电极16a和16b平行的方式。 压敏墨层30是按压时电特性变化的层。 由图1中的(1)的双点划线表示的折线50。 2作为轴,梯形形状的部分以这样的方式折叠到内部,使得一对电极16a和16b可以与压敏油墨层30接触。版权所有(C)2010, JPO&INPIT