会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 61. 发明授权
    • Portable electronic device with radiofrequency signal receiver and method for determining the position of the same
    • 具有射频信号接收器的便携式电子设备和用于确定其位置的方法
    • US07414921B2
    • 2008-08-19
    • US11419132
    • 2006-05-18
    • Darryl GautheyAnne Montheard
    • Darryl GautheyAnne Montheard
    • G04B47/00
    • G01S19/28G01S19/35
    • The portable electronic device, preferably a wristwatch, includes a radiofrequency signal receiver for receiving, in particular, GPS signals via an antenna, a magnetic compass, a microprocessor data processing unit for processing data provided by the receiver and the compass, and storage means in which almanac and ephemeredes data relating to satellites is stored. The compass is arranged for provide an orientation signal to the data processing device. In this manner, the unit can control means for indicating a direction to indicate a preferred orientation for searching for satellites visible to the user in a reading position of the watch. These indicating means can be formed by the time indicating hands moved above a watch dial. The preferred orientation is calculated by the processing unit on the basis of the almanac and ephemeredes data, time data and the orientation signal.
    • 便携式电子设备,优选地是手表,包括:射频信号接收器,特别是经由天线接收GPS信号,磁罗盘,用于处理由接收机和指南针提供的数据的微处理器数据处理单元,以及存储装置 存储与卫星有关的历书和数字化数据。 罗盘布置成向数据处理装置提供取向信号。 以这种方式,该单元可以控制用于指示方向以指示用于在手表的阅读位置搜索用户可见的卫星的优选方向的装置。 这些指示装置可以由指示手移动到手表表盘上方的时间形成。 优选的取向由处理单元基于历书和数字数据,时间数据和取向信号计算。
    • 62. 发明申请
    • SUBSTRATE WITH TRANSPARENT ELECTRODES AND DEVICES INCORPORATING IT
    • 具有透明电极的基板和并入其的器件
    • US20080145959A1
    • 2008-06-19
    • US12019083
    • 2008-01-24
    • Joachim GruppGian-Carlo PoliPierre-Yves BaroniEstelle WagnerPatrik Hoffmann
    • Joachim GruppGian-Carlo PoliPierre-Yves BaroniEstelle WagnerPatrik Hoffmann
    • H01L21/02
    • G06F3/041
    • The substrate with electrodes is formed of a transparent material onto which is deposited a film (1) of a transparent conductive material of thickness e1 and of refractive index n1, said film being structured to form a set of electrodes (1a) whose contours (8) delimit insulating spaces (3), wherein the insulating spaces (3) are filled with a transparent dielectric material of thickness e2 and of refractive index n2 so that the respective thicknesses of the conductive material and the dielectric material are inversely proportional to the values of the refractive indices of said materials and said dielectric material forms neither depressions nor beads at the contour (8) of the electrodes. A hardcoating layer (7) may be disposed between the substrate (5) and the electrodes and a protective film (9) added.The substrate with electrodes is obtained by UV irradiation through a single mask.
    • 具有电极的基板由透明材料形成,在该透明材料上沉积厚度为1< 1>且具有折射率n 1的透明导电材料的膜(1),所述透明导电材料的膜 膜被构造成形成一组电极(1a),其轮廓(8)限定绝缘空间(3),其中绝缘空间(3)填充有厚度为e 2的透明电介质材料, 和折射率n 2 2,使得导电材料和介电材料的各自的厚度与所述材料的折射率的值成反比,并且所述介电材料既不形成凹陷也不形成珠 电极的轮廓(8)。 可以在基板(5)和电极之间设置硬涂层(7),并且添加保护膜(9)。 具有电极的基板通过单个掩模的UV照射获得。
    • 63. 发明授权
    • Method of input of a security code by means of a touch screen for access to a function, an apparatus or a given location, and device for implementing the same
    • 通过用于访问功能的触摸屏输入安全代码的方法,设备或给定位置,以及用于实现该功能的设备
    • US07286063B2
    • 2007-10-23
    • US10721341
    • 2003-11-26
    • Darryl GautheyPierre-Andre Farine
    • Darryl GautheyPierre-Andre Farine
    • H03K17/94H03M11/00
    • G06F21/36G06F21/83
    • The method relates to the input of a security code by means of a touch screen of an electronic device such as a watch for access to a specific function, an apparatus or a given location. This touch screen comprises control keys, which can be activated by a manual action of a user using a finger or a stylus. Each key is linked to a microprocessor unit of the electronic device. The method comprises steps which consist of placing a finger or stylus on a key of the touch screen, which represents a first reference of the code to be entered, moving the finger or stylus from the first reference to a key of a second reference over a specific trajectory through the microprocessor unit, keeping the finger on the second reference for a given period of time or detecting a change in trajectory of the finger in the area of the key of the second reference to be input, moving the finger from the key of the second reference to a key of a third reference over a specific trajectory, and removing the finger or stylus from the touch screen to validate the entered code and access to the function, apparatus or given location.
    • 该方法涉及通过诸如用于访问特定功能的手表的电子设备的触摸屏,设备或给定位置来输入安全代码。 该触摸屏包括控制键,其可以通过使用手指或触控笔的用户的手动操作来激活。 每个键都连接到电子设备的微处理器单元。 该方法包括以下步骤:将手指或触控笔放置在触摸屏的键上,其代表要输入的代码的第一参考,将手指或触笔从第一参考移动到第二参考的键 通过微处理器单元的特定轨迹,将手指保持在第二参考值一段给定的时间段,或者检测手指在要输入的第二参考的键区域中的轨迹的变化,从手指的键 通过特定轨迹对第三参考的键的第二个引用,以及从触摸屏上移除手指或触控笔以验证输入的代码并访问功能,装置或给定位置。
    • 64. 发明授权
    • Wireless data communication device and communication system including such a device
    • 无线数据通信设备和包括这种设备的通信系统
    • US07130581B2
    • 2006-10-31
    • US10705890
    • 2003-11-13
    • Yves Oesch
    • Yves Oesch
    • H04B5/00H04B7/00H04B1/38
    • H01Q1/273G04R20/16G04R20/22G04R20/28H04B1/3805
    • The wireless data communication device (1) is mounted in a portable object, such as a wristwatch. The device includes an oscillator circuit (6), which produces high frequency signals (SH), and a signal processing unit (7), connected to the oscillator circuit. The connection structure of one part of the oscillator circuit (14, 15), which produces the high frequency signals, is arranged to act as antenna for the transmission of data by means of stray signals (SP) transmitted by the connection structure. The processing unit provides a control signal (CC) to the oscillator circuit depending upon the data to be transmitted by means of the stray signals by the connection structure. An amplitude modulation or a frequency modulation can be used for the transmission of data by means of the stray signals.
    • 无线数据通信装置(1)安装在诸如手表的便携式物体中。 该装置包括产生高频信号的振荡器电路(6)和连接到振荡器电路的信号处理单元(7)。 产生高频信号的振荡器电路(14,15)的一部分的连接结构被设置为用于通过杂散信号(S SUB P P)传输数据的天线, 由连接结构传输。 处理单元根据通过连接结构的杂散信号要发送的数据向振荡器电路提供控制信号(C SUB)。 振幅调制或频率调制可以用于通过杂散信号传输数据。
    • 65. 发明授权
    • Radiofrequency signal receiver with means for correcting the effects of multipath signals, and method for activating the receiver
    • 具有用于校正多径信号的影响的装置的射频信号接收机以及用于激活接收机的方法
    • US07085309B2
    • 2006-08-01
    • US10162938
    • 2002-06-04
    • Yves OeschAnne MonthéardPierre-André Farine
    • Yves OeschAnne MonthéardPierre-André Farine
    • H04B1/707
    • H04B1/1081G01S19/14G01S19/22G01S19/30G01S19/34G01S19/37
    • The receiver (1) for radio-frequency signals (SV1, SV2, SV3, SV4), modulated by specific codes of transmitting sources, such as satellites (S1, S2, S3, 54), includes receiving and shaping means with frequency conversion for the radio-frequency signals for generating intermediate signals, a correlation stage formed of several correlation channels for receiving the intermediate signals and microprocessor means connected to the correlation stage in order to process the extracted data after correlation. Each channel includes a correlator in which the intermediate signals are correlated with at least two early and late replicas of the specific code of a visible transmitting source to be searched and tracked. The correlator further includes integrator counters for the correlated signals to provide a first amplitude value of the auto-correlation function of the early signals and a second amplitude value for the late signals. When multipath signals (SV1′, SV3′) are detected in the first operating channel, at least a second unused channel is configured, via the microprocessor means, and connected in parallel to the first channel. The second channel has the task of searching the maximum amplitude value between the two amplitude values of the first operating channel. The receiver, in particular of the GPS type, can be mounted in the case of a watch and powered by the energy accumulator or battery of the watch.
    • 包括诸如卫星(S 1,S 2,S 3,5 4)等发射源的特定码调制的用于射频信号(SV 1,SV 2,SV 3,SV 4)的接收机(1)包括 用于产生中间信号的射频信号的频率转换的接收和整形装置,由用于接收中间信号的几个相关信道形成的相关级和连接到相关级的微处理器装置,以便在相关之后处理所提取的数据。 每个通道包括相关器,其中中间信号与要搜索和跟踪的可见发射源的特定码的至少两个早期和晚期副本相关联。 相关器还包括用于相关信号的积分器计数器,以提供早期信号的自相关函数的第一幅度值和延迟信号的第二幅度值。 当在第一操作信道中检测到多径信号(SV 1',SV 3')时,经由微处理器装置配置至少第二未使用信道并并联连接到第一信道。 第二通道具有搜索第一操作通道的两个振幅值之间的最大振幅值的任务。 接收机,特别是GPS型的接收机,可以安装在手表的情况下,并由手表的蓄能器或电池供电。
    • 66. 发明授权
    • Method of determining the position of a radio-frequency signal receiver without knowledge of the initial approximate position, and receiver for implementing the same
    • 在不知道初始近似位置的情况下确定射频信号接收机的位置的方法,以及用于实现其的接收机
    • US07079076B2
    • 2006-07-18
    • US11206169
    • 2005-08-18
    • Anne MonthéardFanel PicciniEmil Zellweger
    • Anne MonthéardFanel PicciniEmil Zellweger
    • G01S5/14
    • G01S19/28G01S19/34
    • The method of determining the position of a radio-frequency signal receiver consists first of all in dividing the Earth's surface into N geographical regions as a function of the N channels available in the correlation stage of the receiver. At least one satellite in projection onto the Earth's surface has to be located in each of the N defined regions. The N channels of the correlation stage are each configured and switched on to search for a visible satellite in one of the N respective regions. Radio-frequency signal reception and shaping means pick up said radio-frequency signals and frequency convert them to provide intermediate signals to the correlation stage. Once one of the channels has detected a visible satellite in one of the N regions, the operation of all the other channels is interrupted by a stop block located in each of the other channels. Subsequently, certain other channels are configured and switched on for searching and tracking visible satellites in proximity to the first detected visible satellite. This allows precise position and time calculations to be made in the microprocessor means of the receiver. An approximate position is calculated as soon as at least four satellites are tracked by a direct method, before calculating the precise position of the receiver by a conventional iterative method.
    • 确定射频信号接收机的位置的方法首先将地球表面划分为N个地理区域,作为接收机相关阶段中可用的N个信道的函数。 在地球表面投影的至少一颗卫星必须位于N个限定区域的每一个中。 相关级的N个通道被配置和接通,以搜索N个相应区域之一中的可见卫星。 射频信号接收和整形意味着拾取所述射频信号并进行频率转换,以向相关级提供中间信号。 一旦其中一个信道已经在N个区域之一中检测到可见的卫星,则所有其他信道的操作被位于每个其它信道中的停止块中断。 随后,配置和接通某些其他信道,以搜索和跟踪第一检测到的可见卫星附近的可见卫星。 这允许在接收器的微处理器装置中进行精确的位置和时间计算。 在通过常规迭代方法计算接收机的精确位置之前,通过直接方法跟踪至少四颗卫星,计算近似位置。
    • 67. 发明授权
    • Method and device for recognizing manually traced characters on an input zone
    • 在输入区域识别手动跟踪的字符的方法和设备
    • US07042809B2
    • 2006-05-09
    • US10451534
    • 2002-11-14
    • Jean-Pierre Mignot
    • Jean-Pierre Mignot
    • G06K9/00
    • G06K9/22
    • The invention concerns a method and an electronic device for recognizing characters traced manually on an input zone (10) comprising a plurality of sensors (15) each capable of being activated by a finger or a tracing instrument (13). The method consists in comparing the manual trace of a character (100) produced on the input zone with a group of characters of a predetermined set of characters. The invention is characterised in that each character of the set of characters is represented by at least one predetermined model representative of a way in which the character can be traced, and in that a model representative of the way in which the manual trace of the character (100) has been performed on the input zone is elaborated. The models comprise at least topological parameters representative of the topology of the character, namely, in particular: the number of strokes (A, B, C, D) used for tracing the character; the one- or two-dimensional nature of each of said strokes (A, B, C, D); and the composition of each stroke of two-dimensional nature, namely the number of segments (A1, A2, B1, B2) composing the stroke and the rectilinear or curved nature of each segment. The models further comprise, where appropriate, geometrical parameters (φ, φ1, φ2, α) representative of the evolution of the angular orientation of the trace of the segment and geometrical parameters (P0, P1, P2) representative of the position of the stroke on the input zone.
    • 本发明涉及用于识别在输入区(10)上手动跟踪的人物的方法和电子设备,包括多个传感器(15),每个传感器能够被手指或跟踪仪器(13)激活。 该方法包括将输入区域上产生的字符(100)的手动轨迹与预定字符集的一组字符进行比较。 本发明的特征在于,该组字符的每个字符由至少一个表示可以跟踪字符的方式的预定模型表示,并且表示代表字符的手动轨迹的方式的模型 (100)已经在输入区进行了详细阐述。 这些模型至少包括表示角色拓扑的拓扑参数,特别是:用于跟踪角色的笔画数(A,B,C,D); 每个所述笔画(A,B,C,D)的一维或二维性质; 以及二维性质的每一行程的组成,即组成行程的段(A 1,A 2,B 1,B 2)的数量以及每段的直线或弯曲性质。 这些模型在适当的情况下还包括代表该段的迹线的角取向的演变的几何参数(phi,phi,phi,2),以及 表示输入区域上的笔划的位置的几何参数(P 0> 0,P 1,P 2 2)。
    • 68. 发明授权
    • Timepiece with touch-type reading and control of time data
    • 手表具有触摸式读取和控制时间数据
    • US07031228B2
    • 2006-04-18
    • US10652503
    • 2003-09-02
    • Jean-Jacques BornErik Jan Frenkel
    • Jean-Jacques BornErik Jan Frenkel
    • G04C13/00
    • G04G21/08
    • The timepiece, which is preferably a wristwatch, includes for each time position a capacitive sensor (C1 to C12), on a fixed bezel, including only four markings (R3, R6, R9, R12) at 3 o'clock, 6 o'clock, 9 o'clock and 12 o'clock, and a single crown-push-button (9). The case contains, in particular, a non-acoustic vibration generator (20) and an electronic interpretation and coding circuit (15), associated with a time-keeper circuit (10), with the sensors and with the crown to control the vibration device, said circuit (15) being designed to identify the manipulations on the crown (brief, long application of pressure or pull) and on the sensors (positioning or movement).
    • 优选地是手表的钟表包括在固定表圈上的每个时间位置处仅在3°处包括四个标记(R 3,R 6,R 9,R 12)的电容式传感器(C 1至C 12) 时钟,6点钟,9点钟和12点钟,以及一个单按钮(9)。 该情况特别地包括与时间保持器电路(10)相关联的非声学振动发生器(20)和电子解释和编码电路(15),传感器和表冠用于控制振动装置 所述电路(15)被设计用于识别表冠上的操作(短时间,长时间施加压力或拉力)和传感器(定位或移动)。
    • 69. 发明授权
    • Timepiece having a mechanical movement associated with an electronic regulator
    • 具有与电子调节器相关联的机械运动的时计
    • US07016265B2
    • 2006-03-21
    • US10953451
    • 2004-09-30
    • Jean-Jacques BornPierre-André Farine
    • Jean-Jacques BornPierre-André Farine
    • G04F5/00
    • G04C3/066
    • There is disclosed a timepiece having a mechanical clockwork-movement (10) driven by a barrel spring (14) and provided with a mechanical regulator, with a balance and a balance spring, which is associated, via electromagnetic coupling, with an electronic regulator driven by a quartz resonator. The rim of the balance (13) balance is provided with at least one pair of permanent magnets (38, 39). The electronic regulator includes a fixed coil (12) arranged for cooperating with said magnets via electromagnetic coupling, a rectifier (58) provided with at least one capacitor, and a circuit for enslaving the frequency of the mechanical regulator to the oscillator frequency by braking obtained by briefly short-circuiting the coil. In order to use a mechanical movement of a common type, in which only the balance is altered, the coil (12) is located on the side of the balance-cock (23) with respect to the balance rim. The pair of magnets (38, 39) is covered by a plate of magnetic material in order to close field lines on the side of the plate. Apart from the coil, all of the rest of the electronic module (11) is located outside the mechanical movement.
    • 公开了一种具有由筒形弹簧(14)驱动并具有机械调节器的机械发条机构(10)的钟表,其具有通过电磁耦合与电子调节器驱动的平衡和平衡弹簧 通过石英谐振器。 平衡(13)平衡的边缘设置有至少一对永磁体(38,39)。 所述电子调节器包括:固定线圈(12),其被布置成通过电磁耦合与所述磁体配合;设置有至少一个电容器的整流器(58);以及用于通过所获得的制动将所述机械调节器的频率固定为所述振荡器频率的电路 通过短路短路线圈。 为了使用只有平衡改变的普通型的机械运动,线圈(12)相对于平衡轮缘位于平衡旋塞(23)的侧面上。 一对磁体(38,39)由磁性材料板覆盖,以便封闭板侧面的场线。 除了线圈之外,电子模块(11)的所有其余部分位于机械运动之外。
    • 70. 发明授权
    • Device and method of fitted variable gain analog-digital conversion for an image sensor
    • 用于图像传感器的拟合可变增益模数转换的装置和方法
    • US06999018B2
    • 2006-02-14
    • US10853113
    • 2004-05-26
    • Fabien AebyLaurent Genilloud
    • Fabien AebyLaurent Genilloud
    • H03M1/12
    • H04N5/235H03M1/187H04N5/335
    • The variable gain analog-to-digital conversion device (1) for an image sensor comprises at least one N-bit non-linear coarse first converter (21) receiving a pixel voltage signal (Vpix) and at least one M-bit linear fine second converter (22) connected to the first converter (21) in order for the device to supply a binary word of N+M bits relating to the voltage level of the pixel. The first converter (21) comprises comparison means (33) for comparing the voltage level of the pixel with one or more voltage thresholds (V0 to V4) delimiting voltage ranges within the voltage dynamic range of the sensor. The successive voltage ranges represent areas of illumination of the pixel ranging from a weakly lit area to a strongly lit area. The first comparator supplies an N-bit binary word relating to the area of illumination determined for the pixel. The second converter comprises conversion adaptation means for converting the voltage pixel signal to a number of bits less than or equal to M, depending on the N-bit binary word from the first converter.
    • 用于图像传感器的可变增益模数转换装置(1)包括至少一个接收像素电压信号(Vpix)的N位非线性粗略第一转换器(21)和至少一个M位线性精细 第二转换器(22),连接到第一转换器(21),以便器件提供与像素的电压电平相关的N + M位的二进制字。 第一转换器(21)包括用于将像素的电压电平与限定传感器的电压动态范围内的电压范围的一个或多个电压阈值(V 0至V 4)进行比较的比较装置(33)。 连续的电压范围表示从弱光区域到强光区域的像素的照明区域。 第一比较器提供与为像素确定的照明面积相关的N位二进制字。 第二转换器包括转换适配装置,用于根据来自第一转换器的N位二进制字将电压像素信号转换成小于或等于M的位数。