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    • 6. 发明申请
    • VEHICULAR INPUT DEVICE AND VEHICULAR INPUT METHOD
    • 车辆输入装置和车辆输入方法
    • US20130090807A1
    • 2013-04-11
    • US13703652
    • 2012-04-19
    • Yoshihiro KojimaNobuyuki NakanoMasaki Tada
    • Yoshihiro KojimaNobuyuki NakanoMasaki Tada
    • G06F17/00
    • G06F17/00B60K35/00B60K37/06B60K2350/1012B60K2350/925B60K2350/928G06F3/041
    • An object of the present invention is to provide a vehicular input device which is capable of improving accuracy for detecting a contactless input from a driver. A vehicular input device includes a contactless operation detecting unit for detecting a contactless operation on a center display, distance detecting units, distance information storing units in which distance information items obtained from the distance detecting units are stored for each of the distance detecting units, a proximity object determining unit for determining whether or not an object is in proximity of any of predetermined specific positions in a vehicle based on the stored distance information items, and a detecting operation controlling unit for limiting the detection by the contactless operation detecting unit when the object is determined to be in the proximity of any of the specific positions.
    • 本发明的目的是提供一种车辆输入装置,其能够提高用于检测来自驾驶员的非接触式输入的精度。 一种车载输入装置,包括用于检测中心显示器上的非接触操作的无接触操作检测单元,距离检测单元,距离检测单元存储距离检测单元获得的距离信息项目的距离信息存储单元, 接近对象确定单元,用于基于所存储的距离信息项来确定对象是否处于车辆中的任何预定特定位置附近;以及检测操作控制单元,用于当所述对象 确定在任何特定位置附近。
    • 8. 发明申请
    • OPTICAL REFLECTION ELEMENT
    • 光学反射元件
    • US20120113492A1
    • 2012-05-10
    • US13265139
    • 2010-04-16
    • Shinsuke NakazonoSoichiro HiraokaJirou TeradaShigeo FurukawaKiyomi FurukawaToshiaki HorieKazuki KomakiMasaki TadaYuta Yamamoto
    • Shinsuke NakazonoSoichiro HiraokaJirou TeradaShigeo FurukawaKiyomi FurukawaToshiaki HorieKazuki KomakiMasaki TadaYuta Yamamoto
    • G02B26/08
    • G02B26/0858
    • An optical reflecting element includes a mirror, and a pair of high-frequency vibrators and a pair of low-frequency vibrators for vibrating the mirror. The high-frequency vibrators include a substrate, a bottom electrode layer formed on the substrate, a piezoelectric layer, and a drive electrode and a first monitor electrode as the top electrode layer. One end of the low-frequency vibrator has the substrate shared with the high-frequency vibrator, a bottom electrode layer, a piezoelectric layer, a drive electrode, and a second monitor electrode as the top electrode layer. The other end of the low-frequency vibrator has the substrate shared with the high-frequency vibrator, a bottom electrode layer, a piezoelectric layer, a drive electrode, a first monitor electrode, and an insulator layer as a dead zone for preventing a piezoelectric effect due to the piezoelectric layer from reaching the first monitor electrode. The first monitor electrode provided on the low-frequency vibrator is connected from the top of the vibrator to an extraction electrode.
    • 光反射元件包括反射镜,一对高频振动器和用于振动反射镜的一对低频振动器。 高频振动器包括基板,形成在基板上的底部电极层,压电层和驱动电极以及作为顶部电极层的第一监视电极。 低频振动器的一端具有与高频振动器共用的基板,底部电极层,压电层,驱动电极和作为顶部电极层的第二监视电极。 低频振动器的另一端具有与高频振子共用的基板,底电极层,压电层,驱动电极,第一监视电极和绝缘体层,作为防止压电的死区 由于压电层到达第一监视电极的作用。 设置在低频振动器上的第一监视电极从振动器的顶部连接到提取电极。
    • 9. 发明申请
    • Gas Sensor
    • 气体传感器
    • US20090133472A1
    • 2009-05-28
    • US11578106
    • 2006-03-07
    • Masaki TadaRihito Shoji
    • Masaki TadaRihito Shoji
    • G01N7/00
    • G01N27/18G01N33/005G01N33/006
    • There is provided a highly accurate gas sensor by improving an S/N ratio of a circuit. One ends (1a), (2a), of heat generating element (1) and reference resistor (2) brought into contact with a detected gas are commonly connected, and respective contacts of first switch (3) are respectively connected to respective sides of other terminals (1b), (2b). First switch (3) is connected with power source apparatus (4) for supplying a current to heat generating element (1) or reference resistor (2). Voltage measuring portion (5) for measuring a voltage across both ends generated across both ends of heat generating element (1) or reference resistor (2) is connected in parallel with heat generating element (1) or reference resistor (2) when first switch (3) is switched. Operating portion (6) switches first switch (3) to a side of reference resistor (2) and switches first switch (3) to the side of heat generating element (1) by a predetermined timing by determining a condition of controlling power source apparatus (4) for supplying at least 3 stages of step-like currents to heat generating element (1) from the voltage across both ends generated at reference resistor (2). Heat generating element (1) is continuously supplied with successively at least 3 stages of step-like currents to carry out operation of inputting the voltage across both ends of heat generating element (1) in correspondence with magnitudes of the respective currents to operating portion (6) by way of voltage measuring portion (5) and calculating and outputting a concentration of a detected gas by making the current off.
    • 通过提高电路的S / N比,提供了高精度的气体传感器。 与检测到的气体接触的发热元件(1)和参考电阻(2)的一端(1a),(2a​​)共同连接,第一开关(3)的各个触点分别连接到 其他端子(1b),(2b)。 第一开关(3)与用于向发热元件(1)或参考电阻(2)提供电流的电源装置(4)连接。 用于测量在发热元件(1)或参考电阻器(2)的两端产生的两端的电压的电压测量部分(5)在第一开关时与发热元件(1)或参考电阻器(2)并联连接 (3)被切换。 操作部分(6)将第一开关(3)切换到参考电阻(2)的一侧,并通过确定控制电源装置的状态将预定定时将第一开关(3)切换到发热元件(1)侧 (4),用于从在参考电阻器(2)处产生的两端的电压向发热元件(1)提供至少3级的阶梯状电流。 发热元件(1)依次连续地供给至少三级的阶梯状电流,以对应于各个电流对操作部分的大小进行输入(发热元件(1)的两端的电压)的操作 6),并通过电压测量部分(5)计算并输出检测气体的浓度。