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    • 44. 发明授权
    • Successive approximation analog-to-digital converter
    • 逐次近似模数转换器
    • US08274420B2
    • 2012-09-25
    • US12970861
    • 2010-12-16
    • Hyun Kyu YuSeon Ho HanYoung Hwa KimSeong Hwan Cho
    • Hyun Kyu YuSeon Ho HanYoung Hwa KimSeong Hwan Cho
    • H03M1/38
    • H03M1/46H03M1/827
    • There is provided a successive approximation analog-to-digital converter including only minimal capacitors to perform an analog-to-digital conversion operation, thereby making it possible to have very strong process change resistance characteristics while having reduced capacitance and circuit area. The successive approximation analog-to-digital converter may include a reference current supplying unit that supplies a reference current; a signal storage unit that stores a reference signal generated by charging the reference current and an input signal input from the outside; a comparing unit that compares the reference signal and the input signal; and a controller that controls the reference current supplying unit while generating the digital output signal based on the comparison result of the comparing unit to change the supply amount of the reference current supplied to the signal storage unit in proportion to the binary code.
    • 提供了仅包括最小电容器以执行模数转换操作的逐次逼近模数转换器,从而使得可以具有非常强的工艺变化电阻特性,同时具有减小的电容和电路面积。 逐次逼近模数转换器可以包括提供参考电流的参考电流提供单元; 信号存储单元,存储通过对参考电流进行充电而产生的参考信号和从外部输入的输入信号; 比较单元,其比较所述参考信号和所述输入信号; 以及控制器,其基于所述比较单元的比较结果来控制所述参考电流供给单元,同时根据所述二进制码来改变提供给所述信号存储单元的参考电流的供给量。
    • 46. 发明申请
    • PULSE RADAR RECEIVER
    • 脉冲雷达接收器
    • US20120146852A1
    • 2012-06-14
    • US13316381
    • 2011-12-09
    • Pil Jae ParkSeong Do KimSung Chul WooHyun Kyu Yu
    • Pil Jae ParkSeong Do KimSung Chul WooHyun Kyu Yu
    • G01S7/285
    • G01S7/292
    • A pulse radar receiver includes a power splitter configured to split a transmit (TX) trigger signal for generating a TX pulse, a phase-locked loop (PLL) configured to receive a division ratio and the TX trigger signal split by the power splitter, and generate a sampling frequency, and a sampler configured to sample a reflected wave received through an RX antenna, according to the sampling frequency generated by the PLL. Accordingly, it is possible to provide a high distance resolution by generating a sampling frequency with a difference from a TX pulse to sample a reflected wave received through an RX antenna. Thus, it is possible to overcome a limitation in the distance resolution due to the pulse width and to measure a minute movement at a short distance. Therefore, the pulse radar receiver is applicable to high range resolution radar applications such as a living body measuring radar.
    • 脉冲雷达接收机包括:功率分配器,被配置为分离用于产生TX脉冲的发射(TX)触发信号;配置为接收分频比的锁相环(PLL)和由功率分配器分离的TX触发信号;以及 产生采样频率,并且采样器被配置为根据由PLL产生的采样频率对通过RX天线接收的反射波进行采样。 因此,通过产生与TX脉冲不同的采样频率来采样通过RX天线接收的反射波,可以提供高距离分辨率。 因此,可以克服由于脉冲宽度导致的距离分辨率的限制并且能够在短距离处测量微小的移动。 因此,脉冲雷达接收机适用于诸如生物体测量雷达的高范围分辨率雷达应用。
    • 47. 发明授权
    • Apparatus and method for removing interference signal using selective frequency phase converter
    • 使用选择性频率相位转换器去除干扰信号的装置和方法
    • US08060020B2
    • 2011-11-15
    • US12628684
    • 2009-12-01
    • Seong Do KimJa Yol LeeJae Hoon ShimHyun Kyu Yu
    • Seong Do KimJa Yol LeeJae Hoon ShimHyun Kyu Yu
    • H04B1/00
    • H04B1/123
    • An apparatus and method for removing an interference signal using a selective frequency phase converter are disclosed. The apparatus for removing an interference signal using a selective frequency phase converter includes: a first phase converter configured to convert a phase of a received RF signal to differentially output first and second signals having a phase difference of 180° from each other; a second phase converter configured to receive the first signal and selectively convert the phase of a particular frequency band; a third phase converter configured to receive the second signal and selectively convert the phase of a particular frequency band; a timing controller configured to correct a signal delay time between the output from the second phase converter and that of the third phase converter; and an adder configured to add an output from the second phase converter and an output from the third phase converter, wherein the second and third phase converters phase-convert the first and second signals such that the phases of the signals of the particular frequency bands do not have a phase difference of 180° from each other.
    • 公开了一种使用选择性频率相位变换器去除干扰信号的装置和方法。 使用选择性频率相位变换器去除干扰信号的装置包括:第一相位转换器,被配置为将接收的RF信号的相位转换为差分地输出具有彼此相差180°的第一和第二信号; 第二相转换器,被配置为接收第一信号并选择性地转换特定频带的相位; 配置为接收所述第二信号并选择性地转换特定频带的相位的第三相位转换器; 定时控制器,被配置为校正来自第二相位转换器的输出和第三相位转换器的输出之间的信号延迟时间; 以及加法器,被配置为将来自第二相位转换器的输出和来自第三相位转换器的输出相加,其中第二和第三相位转换器对第一和第二信号进行相位转换,使得特定频带的信号的相位做 彼此之间没有180°的相位差。
    • 49. 发明授权
    • Digital proportional integral loop filter
    • 数字比例积分环路滤波器
    • US07961038B2
    • 2011-06-14
    • US12631637
    • 2009-12-04
    • Mi Jeong ParkByung Hun MinJa Yol LeeHyun Kyu Yu
    • Mi Jeong ParkByung Hun MinJa Yol LeeHyun Kyu Yu
    • H03B1/00
    • G05B1/03
    • A digital proportional integral loop filter is provided. A first proportional amplification unit multiplies a phase error value by a first proportional loop gain, and a first integral amplification unit multiplies a phase error accumulation value by a first integral loop gain. A second proportional amplification unit multiplies the phase error value by a second proportional loop gain, and a second integral amplification unit multiplies the phase error accumulation value by a second integral loop gain. A first offset value generation unit generates a first offset value by subtracting the second proportional loop gain from the first proportional loop gain and multiplying a resulting value by a phase error average value, and a second offset value generation unit generates a second offset value by subtracting the second integral loop gain from the first integral loop gain and multiplying a resulting value by a phase error accumulation average value.
    • 提供了数字比例积分环路滤波器。 第一比例放大单元将相位误差值乘以第一比例环路增益,并且第一积分放大单元将相位误差累积值乘以第一积分环路增益。 第二比例放大单元将相位误差值乘以第二比例环路增益,第二积分放大单元将相位误差累积值乘以第二积分环路增益。 第一偏移值生成单元通过从第一比例环增益中减去第二比例环增益并将结果值乘以相位误差平均值来生成第一偏移值,第二偏移值生成单元通过减去第二偏移值生成单位生成第二偏移值 来自第一积分环路增益的第二积分环路增益,并将得到的值乘以相位误差累积平均值。