FLEXIBLE CIRCUIT BOARD BASED FORCE SENSOR
    2.
    发明申请
    FLEXIBLE CIRCUIT BOARD BASED FORCE SENSOR 有权
    基于灵活电路板的力传感器

    公开(公告)号:US20160147318A1

    公开(公告)日:2016-05-26

    申请号:US14550230

    申请日:2014-11-21

    Applicant: UNEO INC.

    CPC classification number: G06F3/03545 G06F3/03546 G06F3/0383

    Abstract: A flexible circuit board based force sensor is disclosed. A flexible circuit having a first metal pad and a second metal pad, the flexible circuit board is folded so that the first metal pad functioning as a top metal pad and the bottom metal pad functioning as a bottom metal pad. A force sensing material is configured in between the top metal pad and the bottom metal pad to form a force sensor. An electronic drawing system adopts the flexible circuit board based force sensor in an electronic pen for sensing pressures applied against the pen tip of the electronic pen.

    Abstract translation: 公开了一种基于柔性电路板的力传感器。 具有第一金属焊盘和第二金属焊盘的柔性电路,柔性电路板被折叠,使得第一金属焊盘用作顶部金属焊盘,底部金属焊盘用作底部金属焊盘。 力感测材料构造在顶部金属垫和底部金属垫之间以形成力传感器。 电子绘图系统在电子笔中采用基于柔性电路板的力传感器,用于感测施加在电子笔的笔尖上的压力。

    SENSOR MODULE WITH CALIBRATION INFORMATION

    公开(公告)号:US20250155310A1

    公开(公告)日:2025-05-15

    申请号:US18506329

    申请日:2023-11-10

    Applicant: UNEO INC.

    Abstract: The present invention incorporates memory within a sensor module, with the memory storing calibration information, production information, or client information. When the memory contains calibration information, it forms a calibrated sensor module. If the memory stores production information or client information, the system will automatically connect to a remote server through internet to obtain a corresponding calibration information for the sensor module when the client first uses it. Therefore, when the client's sensor module malfunctions, they can purchase a new one from the manufacturer, replace it themselves, and continue using the sensor module without having to send it back to the original manufacturer for repairs or replacement. This can save labor, resources, costs, and time.

    CANTILEVER FORCE SENSOR
    4.
    发明申请

    公开(公告)号:US20220228931A1

    公开(公告)日:2022-07-21

    申请号:US17152668

    申请日:2021-01-19

    Applicant: UNEO INC.

    Abstract: A cantilever force sensor with relatively lower On-Force is disclosed, which comprises a top stack, a bottom stack, and a spacer. The first spacer is configured between the top stack and the bottom stack and configured in a first side of the force sensor. A second side, opposite to the first side, of the top stack, is cantilevered from the bottom stack. When the force sensor is depressed from the top side, the second side of the top stack moves down using the first spacer as a fulcrum. Since the cantilevered side can be easily depressed down so that the On-Force for the force sensor is reduced and hence a force sensor with a relatively higher sensitivity is created.

    EMBEDDED BUTTON FOR AN ELECTRONIC DEVICE
    5.
    发明申请
    EMBEDDED BUTTON FOR AN ELECTRONIC DEVICE 有权
    用于电子设备的嵌入式按钮

    公开(公告)号:US20160225568A1

    公开(公告)日:2016-08-04

    申请号:US14611307

    申请日:2015-02-02

    Applicant: UNEO Inc.

    CPC classification number: H03K17/964 H01H2221/09

    Abstract: An embedded button without having gap is disclosed according to the present invention. The button area just bends to operate instead of moving back and forth to operate within a through hole so that no water, vapor, or dust shall enter into the device. One of the embodiment comprises an inner bump configured on an inner side of an outer frame; a pressure switch is configured under the inner bump and touches the bottom surface of the bump; and an activating electrical signal is triggered when the button area is pressed by user with a force exceeding a threshold force level from outside surface of the outer frame of the electronic device.

    Abstract translation: 根据本发明公开了一种没有间隙的嵌入按钮。 按钮区域只是弯曲而不是来回移动以在通孔内操作,使得水,蒸气或灰尘不能进入设备。 实施例中的一个包括构造在外框架的内侧上的内凸块; 压力开关构造在内凸块下方并碰到凸块的底面; 并且当用户以超过电子设备的外框架的外表面的力超过阈值力水平的力按下按钮区域时,触发启动电信号。

    SURFACE MOUNT FORCE SENSING MODULE
    8.
    发明申请
    SURFACE MOUNT FORCE SENSING MODULE 有权
    表面安装感应模块

    公开(公告)号:US20170045405A1

    公开(公告)日:2017-02-16

    申请号:US14823142

    申请日:2015-08-11

    Applicant: UNEO INC.

    Inventor: Chih-Sheng HOU

    CPC classification number: G01L1/16

    Abstract: A surface mount force sensing module is disclosed. A first embodiment shows that the surface mount force sensing module has a bottom electrode designed to be mounted on a circuit board. A second, third, and fourth embodiments show that the sensing module has a pair of bottom electrodes amenable for mounting onto a circuit board.

    Abstract translation: 公开了表面安装力感测模块。 第一实施例示出了表面安装力感测模块具有设计成安装在电路板上的底部电极。 第二,第三和第四实施例示出了感测模块具有适于安装到电路板上的一对底部电极。

    FORCE SENSING MODULE
    9.
    发明申请
    FORCE SENSING MODULE 有权
    力传感模块

    公开(公告)号:US20160313839A1

    公开(公告)日:2016-10-27

    申请号:US14693567

    申请日:2015-04-22

    Applicant: UNEO Inc.

    CPC classification number: G06F3/03545 G01L1/16 G01L1/18 G06F3/0383

    Abstract: A force sensing module is disclosed. One of the embodiments disclosed a first force sensor, and a second force sensor stacked on a top surface of the first force sensor; a signal processing circuit electrically coupled to the first signal force sensor and the second force sensor; when a force is applied on a top surface of the stack, a corresponding force signal is generated; wherein a strength of the force signal is related to an amount of the force applied against the stack.

    Abstract translation: 公开了力传感模块。 其中一个实施例公开了第一力传感器和堆叠在第一力传感器的顶表面上的第二力传感器; 电耦合到第一信号力传感器和第二力传感器的信号处理电路; 当施加在堆叠的顶表面上的力时,产生相应的力信号; 其中所述力信号的强度与对所述堆叠施加的力的量相关。

    CANTILEVER FORCE SENSOR
    10.
    发明公开

    公开(公告)号:US20230168138A1

    公开(公告)日:2023-06-01

    申请号:US18162719

    申请日:2023-02-01

    Applicant: UNEO INC.

    CPC classification number: G01L1/16

    Abstract: A cantilever force sensor with relatively lower On-Force is disclosed, which comprises a top stack, a bottom stack, and a spacer. The first spacer is configured between the top stack and the bottom stack and configured in a first side of the force sensor. A second side, opposite to the first side, of the top stack, is cantilevered from the bottom stack. When the force sensor is depressed from the top side, the second side of the top stack moves down using the first spacer as a fulcrum. Since the cantilevered side can be easily depressed down so that the On-Force for the force sensor is reduced and hence a force sensor with a relatively higher sensitivity is created.

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