Abstract:
PROBLEM TO BE SOLVED: To avoid a fall of performance and degradation of agility in event identification. SOLUTION: This sensor device is provided with a sensing mechanism for generating a first detection signal A x , and a dedicated integrated circuit 6 connected to the sensing mechanism to detect a first event related to an electronic device according to the first detection signal A x and generating a first interrupt signal when detecting the first event. The dedicated integrated circuit 6 detects the first event as a function of a temporal evolution of the first detection signal A x , and in particular as a function of values assumed by the first detection signal A x within one or more successive time windows T S1 -T S3 and of a relationship between these values. COPYRIGHT: (C)2008,JPO&INPIT
Abstract translation:要解决的问题:避免事件识别中的性能下降和敏捷性下降。
解决方案:该传感器装置设置有用于产生第一检测信号A x 的感测机构和连接到感测机构的专用集成电路6,以检测与电子 设备根据第一检测信号A x SB>,并且当检测到第一事件时产生第一中断信号。 专用集成电路6根据第一检测信号A x SB>的时间演变来检测第一事件,特别是根据第一检测信号A x 在一个或多个连续时间窗口T S1 SB> S3 SB>中的这些值之间的关系。 版权所有(C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a MOS device resistant to ionizing radiation. SOLUTION: A MOS device resistant to ionizing-radiation has a surface semiconductor layer 3 having a first type of conductivity, a gate structure 8 formed above the surface semiconductor layer 3 and constituted by a dielectric gate region 9 and a gate electrode region 11 located on the dielectric gate region 9, and a plurality of body regions 6 which is formed laterally and partially under the gate structure 8 within the surface semiconductor layer 3, and each of which has a second type of conductivity. In particular, the dielectric gate region 9 has a central region 9b having a first thickness, and a plurality of side regions 9a having a second thickness thinner than the first thickness. The central region 9b is located on an intercell region 10 of the surface semiconductor layer 3 arranged between the plurality of body regions 6. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing method which overcomes a stationary restriction having an adverse effect upon conventional techniques. SOLUTION: Firstly, the color information of an image relating to an examinee is extracted by an image extracting apparatus. A visually associated region is then detected. The gray scale of the extracted image is then normalized on the basis of the visually associated region to correct the exposure of the extracted image. A region corresponding to the skin of the photographed examinee is also identified, and the region is used as a visually concerned region in a step of exposure correction. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an inertial sensor having failure threshold. SOLUTION: The inertial sensor having failure threshold is provided with a first body 2 and a second body 18, which can move relatively with respect to one another and are constrained by a plurality of elastic elements, and at least one sample element 6, connected between the first body 2 and the second body 18 and shaped so as to be subjected to a stress, when the second body 18 goes outside of the relative resting position with respect to the first body 2. The sample element 6 has at least one weakened region 9, 10. COPYRIGHT: (C)2004,JPO&NCIPI
Abstract:
A driving mass (3) of an integrated microelectromechanical structure (1) is moved with a rotary motion about an axis of rotation (z), and a first sensing mass (16a) is connected to the driving mass (3) via elastic supporting elements (20) so as to perform a first detection movement in the presence or a first external stress. The driving mass (3) is anchored to an anchorage (7) arranged along the axis of rotation by elastic anchorage elements (8); an opening (9a) is provided within the driving mass, and the first sensing mass (16a) is arranged within the opening. The elastic supporting and anchorage elements render the first sensing mass (16a) fixed to the driving mass (3) in the rotary driving motion, and substantially decoupled from the driving mass in the detection movement.