Abstract:
PROBLEM TO BE SOLVED: To reduce collision between a pedometer function and functions except the pedometer function. SOLUTION: An inertial device that is integratable in a portable electronic device includes: an inertial sensor (11) for generating at least one raw acceleration signal (S X , S Y , S Z ) in response to acceleration caused by movement of walking and running of a user of a pedometer; and a processing unit (12), associated to the inertial sensor (11) for counting the number of steps (N T ) of the user of the pedometer on the basis of the raw acceleration signal (S X , S Y , S Z ). The inertial sensor (11) and the processing unit (12) are both encapsulated within a single package for integrated circuits (13), which can be coupled to a circuit board (9) of an electronic device (1) and is provided with at least one connection terminal (13a) for making the number of steps (N T ) available to the outside world. COPYRIGHT: (C)2007,JPO&INPIT
Abstract translation:要解决的问题:减少计步器功能与计步器功能以外的功能之间的碰撞。 解决方案:在便携式电子设备中可积分的惯性装置包括:惯性传感器(11),用于产生至少一个原始加速度信号(S X SB>,S Y < SB>,S Z SB>),以响应由计步器的使用者的行走和跑步的运动引起的加速度; 以及与所述惯性传感器相关联的处理单元,所述惯性传感器用于根据所述原始加速度信号计数所述计步器的用户的步数(N T SB>), SB> X SB>,S Y SB>,S Z SB>)。 惯性传感器(11)和处理单元(12)都被封装在用于集成电路(13)的单个封装内,其可以耦合到电子设备(1)的电路板(9)并且设置在 至少一个用于使外部世界可用的步骤数(N T SB>)的连接端子(13a)。 版权所有(C)2007,JPO&INPIT
Abstract:
A device for stabilizing images acquired by a digital-image sensor (5) includes a motion- sensing device (15, 16, 17, 18), for detecting quantities (?f P , a Y , ?f Y ) correlated to pitch and yaw movements of the digital-image sensor (5), and a processing unit (14), connectable to the digital-image sensor (5) for receiving a first image signal (IMG) and configured for extracting a second image signal (IMG') from the first image signal (IMG) on the basis of the quantities (?f P , a Y , ?f Y ) detected by the motion-sensing device (15, 16, 17, 18). The motion-sensing device (15, 16, 17, 18) includes a first accelerometer (15) and a second accelerometer (16).
Abstract translation:一种用于稳定由数字图像传感器(5)获取的图像的装置包括运动感测装置(15,16,17,18),用于检测数量(Δf> P SUB> 与数字图像传感器(5)的俯仰和偏航运动相关的Y / Y,Y,Y,以及可连接到数字图像传感器(5)的处理单元(14) ),用于接收第一图像信号(IMG),并且被配置为基于所述数量(Δf
Abstract:
In a device (2) for determining the position (P 1 (x, y) ) of a touch on a contact surface (1a), a plurality of vibration sensors (4) are configured to detect mechanical vibrations (9) generated by the touch on the contact surface (1a) and to generate corresponding vibration signals, and a processing circuit (6) is connected to the vibration sensors (4) and is configured to determine the touch position (P 1 (x, y) ) via a time-of-f light algorithm, based on differences between times of detection (t 1 , t 2 , t 3 ) of the mechanical vibrations (9) by the vibration sensors (4).
Abstract:
A device for stabilizing images acquired by a digital-image sensor (5) includes a motion- sensing device (15, 16, 17, 18), for detecting quantities (P, Y, Y) correlated to pitch and yaw movements of the digital-image sensor (5), and a processing unit (14), connectable to the 5 digital-image sensor (5) for receiving a first image signal (IMG) and configured for extracting a second image signal (IMG') from the first image signal (IMG) on the basis of the quantities (P, Y, Y) detected by the motion-sensing device (15, 16, 17, 18). The motion-sensing device (15, 16, 17, 18) includes a first accelerometer (15) and a second accelerometer (16).
Abstract:
In a device (2) for determining the position (P 1 (X, y) ) of a touch on a contact surface (Ia) , a plurality of vibration sensors (4) are configured to detect mechanical vibrations (9) generated by the touch on the contact surface (1a) and to generate corresponding vibration signals, and a processing circuit (6) is connected to the vibration sensors (4) and is configured to determine the touch position (P 1 (x, y) ) via a time-of-f light algorithm, based on differences between times of detection (t 1 , t 2 , t 3 ) of the mechanical vibrations (9) by the vibration sensors (4) .
Abstract:
In a pedometer device (1), for detecting and counting steps of a user on foot, an accelerometer sensor (2) detects a vertical acceleration generated during the step. A processing unit (3) is connected to the accelerometer sensor (2), processes an acceleration signal (CalAcc) relating to the acceleration (A) in order to detect the occurrence of a step, and in particular compares the acceleration signal (CalAcc) with a first reference threshold (S + ). The processing unit (3) automatically adapts the first reference threshold (S + ) as a function of the acceleration signal (CalAcc). In particular, the processing unit (3) modifies the first reference threshold (S + ) as a function of an envelope (Env + ) of the amplitude of the acceleration signal.