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    • 4. 发明申请
    • DISPLAY DEVICE WITH ACOUSTIC NOISE SUPPRESSION
    • 具有声音噪声抑制的显示设备
    • WO2007065068A3
    • 2007-12-13
    • PCT/US2006061139
    • 2006-11-21
    • MOTOROLA INCKAEHLER JOHN WYANG SENZHUANG ZHIMINGCHEN SHAOHAI
    • KAEHLER JOHN WYANG SENZHUANG ZHIMINGCHEN SHAOHAI
    • G02F1/1335
    • G02F1/133308G02F1/13338G02F1/133608G02F2201/503G02F2201/505H04R2499/11H04R2499/15
    • Disclosed herein are a plurality of displays for an electronic device including a display layer, a light guide layer, and a damping material layer coupled between the light guide layer and the display layer. The display layer in one embodiment is a liquid crystal display layer, but other types of display layers may be used. The light guide layer may serve as a back light for the display layer, and may be between approximately 0.05 mm and 2 mm in thickness. Devices described herein include at least one interposed layer of acoustic and/or mechanical energy absorbing material, also referred to herein as damping material, between the display layer susceptible to vibration, and a hard layer near the display layer. The damping material as described herein may reduce the audio noise. The energy absorbing layer may take the form of an audio energy absorbing sheet interposed between layers of the display.
    • 这里公开了一种用于电子设备的多个显示器,包括显示层,导光层和耦合在导光层和显示层之间的阻尼材料层。 一个实施例中的显示层是液晶显示层,但也可以使用其他类型的显示层。 导光层可以用作显示层的背光,并且可以在约0.05mm和2mm之间的厚度。 本文描述的装置包括在易受振动的显示层和显示层附近的硬层之间的至少一个介入的声学和/或机械能量吸收材料的层(在本文中也称为阻尼材料)。 如本文所述的阻尼材料可以减少音频噪声。 能量吸收层可以呈现介于显示器的层之间的音频能量吸收片的形式。
    • 5. 发明申请
    • DISPLAY DEVICE WITH ACOUSTIC NOISE SUPPRESSION
    • 具有声音噪声抑制的显示设备
    • WO2007065068A8
    • 2008-06-26
    • PCT/US2006061139
    • 2006-11-21
    • MOTOROLA INCKAEHLER JOHN WYANG SENZHUANG ZHIMINGCHEN SHAOHAI
    • KAEHLER JOHN WYANG SENZHUANG ZHIMINGCHEN SHAOHAI
    • G02F1/1335
    • G02F1/133308G02F1/13338G02F1/133608G02F2201/503G02F2201/505H04R2499/11H04R2499/15
    • Disclosed herein are a plurality of displays for an electronic device including a display layer, a light guide layer, and a damping material layer coupled between the light guide layer and the display layer. The display layer in one embodiment is a liquid crystal display layer, but other types of display layers may be used. The light guide layer may serve as a back light for the display layer, and may be between approximately 0.05 mm and 2 mm in thickness. Devices described herein include at least one interposed layer of acoustic and/or mechanical energy absorbing material, also referred to herein as damping material, between the display layer susceptible to vibration, and a hard layer near the display layer. The damping material as described herein may reduce the audio noise. The energy absorbing layer may take the form of an audio energy absorbing sheet interposed between layers of the display.
    • 这里公开了一种用于电子设备的多个显示器,包括显示层,导光层和耦合在导光层和显示层之间的阻尼材料层。 一个实施例中的显示层是液晶显示层,但也可以使用其他类型的显示层。 导光层可以用作显示层的背光,并且可以在约0.05mm和2mm之间的厚度。 本文描述的装置包括在易受振动的显示层和显示层附近的硬层之间的至少一个介入的声学和/或机械能量吸收材料的层(在本文中也称为阻尼材料)。 如本文所述的阻尼材料可以减少音频噪声。 能量吸收层可以呈现介于显示器的层之间的音频能量吸收片的形式。
    • 7. 发明申请
    • INTEGRATED CAPACITIVE SENSING DEVICES AND METHODS
    • 综合电容式感应装置及方法
    • WO2009042422A3
    • 2009-06-04
    • PCT/US2008076137
    • 2008-09-12
    • MOTOROLA INCKAEHLER JOHN WFOO KEN KZHUANG ZHIMING
    • KAEHLER JOHN WFOO KEN KZHUANG ZHIMING
    • G06F3/041
    • G06F3/044
    • Disclosed are touch screen devices and methods of sensing an object near the surface of a touch screen device. A capacitive sensor is integrated into display electronics by flipping the traditional thin film transistor liquid crystal display (TFT) stack-up which has a bottom gate structure so that it is an inverted bottom gate structure. Accordingly, the gate structure is near the top of the display and the gate drive lines are re-used as excitation lines in addition to their function as display lines. The excitation lines therefore drive excitation to generate an induced electric field at the surface of the display device. Additionally, other lines are used as sensor lines so that sensor signals are input to the device controller to determine the position of an object at the surface of the display device. Accordingly, the excitation lines are scanned to detect the presence of a finger or other object.
    • 公开了触摸屏设备和感测触摸屏设备表面附近的物体的方法。 电容传感器通过翻转传统的具有底栅结构的薄膜晶体管液晶显示器(TFT)叠层而集成到显示器电子器件中,使得它是反向底栅结构。 因此,除了作为显示线的功能之外,栅极结构靠近显示器的顶部,并且栅极驱动线被重新用作激励线。 因此,激励线驱动激励,以在显示装置的表面产生感应电场。 此外,其他线路被用作传感器线路,以便将传感器信号输入到设备控制器以确定物体在显示装置表面的位置。 因此,激发线被扫描以检测手指或其他物体的存在。