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
    • 2. 发明申请
    • DEVICE AND SYSTEM FOR PROTECTING A PERSON FROM RF RADIATION
    • 用于保护射频辐射的设备和系统
    • US20160247390A1
    • 2016-08-25
    • US15051250
    • 2016-02-23
    • Martin WeinbergNorman R. Sorensen
    • Martin WeinbergNorman R. Sorensen
    • G08C17/02
    • G08C17/02G01R29/0857H04B1/3838H04M2250/10
    • A radiofrequency (“RF”) radiation protection device (“RFPD”) and method of determining electromagnetic radiation associated with a mobile communications device is provided. The device includes a mobile communications device having an RF signal receiver, an RF signal emitter, and a processor. The processor is in communication with a non-transitory memory storing instructions. The instructions when executed cause the processor to control the RF signal emitter to enter an activated state for a duration of time, in which activated state the RF signal emitter is controlled by the processor to selectively emit outgoing RF signals, which outgoing RF signals create electromagnetic radiation exposure. The instructions when executed further cause the processor to determine a duration electromagnetic radiation exposure value representative of a total of the electromagnetic radiation exposure created by the outgoing RF signals emitted during the activated state duration.
    • 提供射频(“RF”)辐射防护装置(“RFPD”)和确定与移动通信装置相关联的电磁辐射的方法。 该设备包括具有RF信号接收器,RF信号发射器和处理器的移动通信设备。 处理器与存储指令的非暂存存储器通信。 执行时的指令导致处理器控制RF信号发射器进入激活状态持续时间,其中激活状态,RF信号发射器由处理器控制以选择性地发射出射RF信号,该输出RF信号产生电磁 辐射照射。 执行时的指令进一步导致处理器确定表示在激活状态持续时间期间发射的输出RF信号产生的电磁辐射曝光的总和的持续时间电磁辐射暴露值。
    • 4. 发明申请
    • Efficient Whole-Body SAR Estimation
    • 有效的全身SAR估计
    • US20150105031A1
    • 2015-04-16
    • US14395238
    • 2012-04-19
    • Davide ColombiJonas FridénBjörn Thors
    • Davide ColombiJonas FridénBjörn Thors
    • H04B1/38H04B17/00
    • H04B1/3838G01R29/0857H04B17/102
    • A method for estimating a whole-body Specific Absorption Rate (SAR) caused in a body by electromagnetic fields emitted by a wireless communication device (40), where the body is represented by a phantom (30) and the wireless communication device (40) is positioned in the proximity of the phantom (30), comprises determining a complex electric field in a plurality of points distributed substantially in a single planar or curved surface (31) within the phantom (30), based on measurements of the magnitude of the electric field components in these points, and based on an assumption of constant phase of the electric field components. The method further comprises estimating a whole-body SAR in the phantom (30) based on the determined complex electric field in the plurality of points, and based on propagation of the complex electric field from the plurality of points into the volume of the phantom (30).
    • 一种用于通过无线通信装置(40)发射的电磁场估计在身体中造成的全身比吸收率(SAR)的方法,其中身体由幻影(30)和无线通信装置(40)表示, 位于模体(30)附近,包括基于在模型(30)内基本上分布在单个平面或弯曲表面(31)中的多个点来确定复数电场,基于 这些点中的电场分量,并且基于电场分量的恒定相位的假设。 该方法还包括:基于多个点中所确定的复电场,并基于从多个点的复电场到体模的体积的传播来估计体模(30)中的全身SAR( 30)。
    • 5. 发明授权
    • Finger voltage sensor
    • 手指电压传感器
    • US08994361B2
    • 2015-03-31
    • US13673173
    • 2012-11-09
    • John Nuzzo
    • John Nuzzo
    • G01R19/00G01R19/155G01R29/08
    • G01R19/155G01R19/0084G01R19/0092G01R29/0857
    • The present invention is a finger voltage sensor that includes a base finger ring worn by a user that works near an electrical source, an electricity sensor disposed on the base finger ring, the electricity sensor detects one or more electrical fields associated with the electrical source and a warning light disposed on the base finger ring, the warning light emits a constant light when the electricity sensor is activated and is in communication with the electricity sensor. The finger voltage sensor can also include a beeper instead of a warning light and a base finger ring that includes a hook and loop fastener that is releasably attached to a user's finger.
    • 本发明是一种手指电压传感器,其包括在电源附近工作的用户佩戴的基指环,设置在基指环上的电传感器,电传感器检测与电源相关联的一个或多个电场, 设置在基指环上的警告灯,当电传感器被激活并且与电传感器通信时,警告灯发出恒定的光。 手指电压传感器还可以包括蜂鸣器而不是警告灯和基指环,其包括可释放地附接到用户手指的钩环紧固件。
    • 9. 发明申请
    • Sensing apparatus for electromagnetic wave intensity
    • 电磁波强度检测装置
    • US20090027217A1
    • 2009-01-29
    • US11878340
    • 2007-07-24
    • Li-Kuang Chen
    • Li-Kuang Chen
    • G08B21/00
    • G08B21/182G01R29/0857
    • The present invention relates to a sensing apparatus for electromagnetic (EM) wave intensity, which comprises a receiving unit, a conversion unit, and an alarm unit. The receiving unit receives an EM wave, and produces a corresponding current signal to the conversion unit. The conversion unit converts the current signal to a voltage signal, and transmits the voltage signal to the alarm unit, which produces a corresponding output signal according to the voltage signal with different intensities for notifying users that the EM wave intensity surrounding the users has reached a harmful level for human bodies. When the sensing apparatus according to the present invention senses that the EM wave intensity surrounding the users has reached a harmful level for human bodies, it will drive the alarm unit to warn the users. Thereby, human bodies can avoid exposing to harmful EM wave intensities.
    • 本发明涉及一种用于电磁(EM)波强度的感测装置,其包括接收单元,转换单元和报警单元。 接收单元接收EM波,并向转换单元产生相应的当前信号。 转换单元将电流信号转换为电压信号,并将电压信号发送到报警单元,该报警单元根据不同强度的电压信号产生相应的输出信号,以通知用户周围的电磁波强度达到 对人体有害的水平。 当根据本发明的感测装置感测到用户周围的EM波强度已经达到人体的有害水平时,它将驱动警报单元警告用户。 因此,人体可以避免暴露于有害的EM波强度。
    • 10. 发明申请
    • SPECIFIC ABSORPTION RATE MEASUREMENT SYSTEM AND METHOD
    • 具体的吸收率测量系统和方法
    • US20080265902A1
    • 2008-10-30
    • US11873934
    • 2007-10-17
    • Katsuki KIMINAMITakahiro IyamaTeruo Onishi
    • Katsuki KIMINAMITakahiro IyamaTeruo Onishi
    • G01R29/08G01R29/12
    • G01R29/0857G01R29/0871G01R29/0885
    • A disclosed specific absorption rate measurement system according to an embodiment of the present invention measures a specific absorption rate of electromagnetic waves from a radiating source absorbed in a dielectric medium. The system includes a measurement portion that measures a first electric field vector on an observation surface which is a two-dimensional surface in the dielectric medium; an electric field calculation portion that calculates a second electric field vector in a point excluded from the observation surface in accordance with electric field components of the first electric field vector measured on the observation surface, the electric field components being parallel to the observation surface; and a calculation portion that calculates the specific absorption rate from the calculated second electric field vector.
    • 根据本发明的实施例的公开的具体的吸收率测量系统测量从吸收在电介质中的辐射源的电磁波的比吸收率。 该系统包括测量部分,其测量作为电介质中的二维表面的观察表面上的第一电场矢量; 电场计算部,其根据在观察面上测量的第一电场矢量的电场分量,电场分量与观察面平行地计算从观察面排除的点的第二电场矢量; 以及从计算出的第二电场矢量计算比吸收率的计算部。