LOW FREQUENCY VIBRATING ACTUATOR DEVICE

    公开(公告)号:US20210126182A1

    公开(公告)日:2021-04-29

    申请号:US17023730

    申请日:2020-09-17

    Abstract: Provided is a low frequency vibrating actuator device. The low frequency vibrating actuator device includes a substrate including a pair of connection electrodes, an actuator provided on the pair of connection electrodes to generate vibration, a support provided on the actuator, a vibration membrane provided on the support to vibrate according to the actuator, and a vibrating mass provided on the vibration membrane to vibrate according to the vibration membrane. The actuator includes a plurality of laminated insulating layers and internal electrodes that are alternately laminated between the insulating layers adjacent to each other, and a top surface of the support, which contacts the vibration membrane, has an area that is equal to or less than that of a bottom surface of the support, which contacts the actuator.

    Thin film transistor and method for manufacturing the same
    2.
    发明授权
    Thin film transistor and method for manufacturing the same 有权
    薄膜晶体管及其制造方法

    公开(公告)号:US09153651B2

    公开(公告)日:2015-10-06

    申请号:US13757699

    申请日:2013-02-01

    Abstract: Provided are a thin film transistor and a method for manufacturing the same. The thin film transistor manufacturing method includes forming a gate electrode on a substrate, forming an active layer that is adjacent to the gate electrode and includes an oxide semiconductor, forming an oxygen providing layer on the active layer, forming a gate dielectric between the gate electrode and the active layer, forming source and drain electrodes coupled to the active layer, forming a planarizing layer covering the gate electrode and the gate dielectric, forming a hole exposing the active layer, and performing a heat treatment process onto the planarizing layer in an atmosphere of oxygen.

    Abstract translation: 提供一种薄膜晶体管及其制造方法。 薄膜晶体管的制造方法包括在基板上形成栅电极,形成与栅电极相邻的有源层,并具有氧化物半导体,在有源层上形成氧供给层,在栅极电极 有源层,形成耦合到有源层的源电极和漏电极,形成覆盖栅电极和栅电介质的平坦化层,形成暴露有源层的孔,并在气氛中对平坦化层进行热处理工艺 的氧气。

    Method of fabricating display apparatus and display apparatus fabricated thereby
    9.
    发明授权
    Method of fabricating display apparatus and display apparatus fabricated thereby 有权
    制造显示装置和显示装置的方法

    公开(公告)号:US09110347B2

    公开(公告)日:2015-08-18

    申请号:US14031304

    申请日:2013-09-19

    CPC classification number: G02F1/167 G02F1/1341 G02F2001/1672 Y10T29/49155

    Abstract: A method of fabricating a display apparatus includes forming a lower electrode on a lower substrate, forming a partition structure and an ink-injection tube connected to one end of the partition structure, the partition structure including first partitions, and second partitions, and cell regions defined by the first and second partitions, covering the partition structure with an upper electrode, and injecting an electronic ink through the ink-injection tube to fill the cell regions of the partition structure.

    Abstract translation: 一种制造显示装置的方法,包括在下基板上形成下电极,形成分隔结构和连接到分隔结构的一端的喷墨管,所述分隔结构包括第一分区,第二分区和单元区域 由所述第一和第二隔板限定,用上电极覆盖所述分隔结构,并且通过所述喷墨管注入电子墨水以填充所述分隔结构的单元区域。

    Stretchable display device
    10.
    发明授权

    公开(公告)号:US11706946B2

    公开(公告)日:2023-07-18

    申请号:US17191276

    申请日:2021-03-03

    Abstract: Provided is a stretchable display device. The stretchable display device includes a substrate and a base pattern on the substrate, wherein the base pattern comprises a first portion, a second portion, and a connection portion configured to connect the first portion to the second portion. The stretchable display device includes a lower electrode on the first portion of the base pattern; an upper electrode on the lower electrode, a light emitting structure between the lower electrode and the upper electrode, and a protective layer configured to cover top and side surfaces of the upper electrode, side surfaces of the light emitting structure, a side surface of the lower electrode, and a portion of a side surface of the base pattern. The upper electrode extends to a top surface of the connection portion and a top surface of the second portion of the base pattern, and the first portion and the second portion of the base pattern extend in a first direction parallel to a top surface of the substrate. The first portion and the second portion are parallel to the top surface of the substrate and are spaced apart from each other in a second direction crossing the first direction. The connection portion extends in the second direction. A level of the lowermost surface of the protective layer is disposed between a bottom surface of the lower electrode and a bottom surface of the base pattern.

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