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    • 4. 发明申请
    • HALL SENSOR HAVING OFFSET REMOVAL FUNCTION AND OFFSET REMOVING METHOD THEREOF
    • 具有偏移功能的偏移传感器及其移除方法
    • US20120256622A1
    • 2012-10-11
    • US13188247
    • 2011-07-21
    • Sung Tae KIMSang Gyu ParkKyung Uk KimDong Ok HanSeung Chul PyoSoo Woong Lee
    • Sung Tae KIMSang Gyu ParkKyung Uk KimDong Ok HanSeung Chul PyoSoo Woong Lee
    • G01R33/07
    • G01R33/07G01R33/0029
    • There are provided a hall sensor having an offset removal function removing an offset included in a hall voltage, and an offset removing method thereof. The hall sensor includes: a converting unit converting first and second detection voltages detected for each of a plurality of preset detection directions by a hall device detecting a magnetic field as a voltage according to the plurality of preset detection directions into a pulse having a level difference therebetween as a width; a sign determining unit comparing the first and second detection voltages with each other and determining whether the pulse has a positive sign or a negative sign according to the comparison result; a counter counting the width of the pulse from the converting unit with a preset reference time unit; and an operating unit removing an offset voltage included in the first and second detection voltages by performing a minus operation with the numbers counted by the counter according to the sign determined by the sign determining unit.
    • 提供了具有去除包括在霍尔电压中的偏移的偏移消除功能的霍尔传感器及其偏移消除方法。 霍尔传感器包括:转换单元,通过检测作为根据多个预设检测方向的电压的磁场的霍尔器件将针对多个预设检测方向中的每一个检测的第一和第二检测电压转换成具有电平差的脉冲 之间的宽度; 符号确定单元,将第一和第二检测电压彼此进行比较,并根据比较结果确定脉冲是否具有正号或负号; 一个计数器,用一个预设的基准时间单位来计算来自转换单元的脉冲宽度; 以及操作单元,通过根据由所述符号确定单元确定的符号由所述计数器计数的数字执行减号操作来去除包括在所述第一和第二检测电压中的偏移电压。
    • 7. 发明申请
    • Dual-system transmitting and receiving device
    • 双系统发射和接收设备
    • US20080008271A1
    • 2008-01-10
    • US11822842
    • 2007-07-10
    • Kwang Du LeeYu Sin KimSang Gyu ParkChang Soo Yang
    • Kwang Du LeeYu Sin KimSang Gyu ParkChang Soo Yang
    • H03D3/00H04L27/06H03D1/00H03K9/10
    • H04L27/001H04B1/0483H04B1/7163
    • Provided is a dual-system transmitting device comprising a chaos signal generator that generates a chaos signal; a band-pass filter that filters the generated chaos signal into a signal within an information transmission bandwidth preset in a transmission side; an impulse signal generator that generates an impulse signal synchronized with a transmitted signal; a switching element that selectively outputs the chaos signal passing through the band-pass filter and the generated impulse signal; an amplifier that amplifies the signal selected by the switching element; and a signal transmitting unit that transmits the signal amplified by the amplifier through an antenna. When the signal amplified by the amplifier is a chaos signal, the signal transmitting unit modulates the amplified signal through an OOK (on-off keying) scheme such that the signal is transmitted as a carrier of a transmitted signal. When the signal amplified by the amplifier is an impulse signal, the signal transmitting unit passes the signal to transmit.Provided is a dual-system receiving device, which is applied to both a received signal using a chaos signal as a carrier and a received signal using an impulse signal as a carrier, the dual-system receiving device comprising a band-pass filter that filters a received signal into a signal within an information transmission bandwidth preset in a reception side; an amplifier that amplifies the filtered received signal; a first demodulator that, when the amplified received signal is a received signal using a chaos signal as a carrier, demodulates the amplified received signal; a second demodulator that, when the amplified received signal is a received signal using an impulse signal as a carrier, demodulates the amplified received signal; and a switching element that selectively outputs the received signal amplified by the amplifier to the first or second demodulator.
    • 提供了一种双系统发射装置,其包括产生混沌信号的混沌信号发生器; 带通滤波器,其将产生的混沌信号滤波成在发送侧预设的信息传输带宽内的信号; 产生与发送信号同步的脉冲信号的脉冲信号发生器; 选择性地输出通过带通滤波器的紊乱信号和产生的脉冲信号的开关元件; 放大器,放大由开关元件选择的信号; 以及信号发送单元,其通过天线发送由放大器放大的信号。 当由放大器放大的信号是混沌信号时,信号发送单元通过OOK(开关键控)方式来调制放大的信号,使得信号作为发送信号的载波被发送。 当由放大器放大的信号是脉冲信号时,信号发送单元通过信号进行发送。 提供了一种双系统接收装置,其被应用于使用混沌信号作为载波的接收信号和使用脉冲信号作为载波的接收信号,该双系统接收装置包括滤波器 将接收到的信号输入到在接收侧预设的信息传输带宽内的信号中; 放大器,滤波后的接收信号; 第一解调器,当放大的接收信号是使用混沌信号作为载波的接收信号时,解调放大的接收信号; 第二解调器,当放大的接收信号是使用脉冲信号作为载波的接收信号时,解调放大的接收信号; 以及选择性地将由放大器放大的接收信号输出到第一或第二解调器的开关元件。
    • 8. 发明授权
    • Macroblock-based segmentation and background mosaicking method
    • 基于宏块的分割和背景镶嵌方法
    • US06463174B1
    • 2002-10-08
    • US09404716
    • 1999-09-24
    • Young Kwon LimSang Gyu ParkChie Teuk Ahn
    • Young Kwon LimSang Gyu ParkChie Teuk Ahn
    • G06K934
    • G06K9/32G06K9/34G06K2009/2045G06T7/11G06T7/215G06T9/004G06T2207/10016G06T2207/20021
    • There is disclosed a macroblock-based segmentation and background mosaicking method for object-based coding of image sequence having a stationary background. An image comprising a background having rare change and an object having slow change taken from a position and focus fixed camera is segmented into changing regions and stationary regions in units of macroblock of 16×16 pixels that is most widely used as a basic coding unit in a video coding method or apparatus. A background mosaic is constructed with only macroblocks corresponding to the regions having rare temporal change. The background mosaic is newly constructed with respect to an entire image whenever there are any changes in the image sequence, thereby maximizing coding efficiency. Therefore, the present inventions realizes a very low complexity, thus facilitating real time operation and maximizing efficiency in is object shape coding.
    • 公开了一种基于宏块的分割和背景镶嵌方法,用于具有静止背景的图像序列的基于对象的编码。 包括具有罕见变化的背景的图像和从位置和焦点固定的相机拍摄的具有缓慢变化的对象的图像被分割为视频中被广泛用作基本编码单元的16×16像素的宏块的变化区域和静止区域 编码方法或装置。 背景马赛克仅构成与对应于具有罕见的时间变化的区域的宏块。 每当图像序列有任何变化时,背景马赛克相对于整个图像新构建,从而最大化编码效率。 因此,本发明实现了非常低的复杂度,从而促进了实时操作并且最大化了对象形状编码的效率。
    • 10. 发明授权
    • DC offset cancellation circuit and programmable gain amplifier using the same
    • DC偏移消除电路和使用其的可编程增益放大器
    • US07557649B2
    • 2009-07-07
    • US11684783
    • 2007-03-12
    • Sang Gyu ParkChang Soo YangKwang Du Lee
    • Sang Gyu ParkChang Soo YangKwang Du Lee
    • H03F1/02
    • H03G1/0088
    • In a DC offset cancellation circuit, an operational amplifier is provided with an inverse terminal, a non-inverse terminal and an output terminal. A first resistor is connected to the non-inverse terminal. A second resistor connected between the inverse terminal and the output terminal. A DC offset cancellation resistor is connected between the inverse terminal and the non-inverse terminal. Also, in each of first and second DC offset cancellation circuits of the programmable gain amplifier, an operational amplifier is provided with an inverse terminal, a non-inverse terminal and an output terminal. A first resistor is connected to the non-inverse terminal. A second resistor is connected between the inverse terminal and the output terminal. A DC offset cancellation circuit is connected between the inverse terminal and the non-inverse terminal. Here, the first and second DC offset cancellation circuits are connected with each other in series.
    • 在DC偏移消除电路中,运算放大器设置有反向端子,非反向端子和输出端子。 第一电阻器连接到非反相端子。 连接在反向端子和输出端子之间的第二个电阻。 直流偏移消除电阻连接在反向端子和非反向端子之间。 此外,在可编程增益放大器的第一和第二DC偏移消除电路的每一个中,运算放大器设置有反向端子,非反相端子和输出端子。 第一电阻器连接到非反相端子。 反向端子和输出端子之间连接有第二个电阻。 DC偏移消除电路连接在反向终端和非反向终端之间。 这里,第一和第二DC偏移消除电路彼此串联连接。