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    • 1. 发明申请
    • Ultra-low power limiter
    • 超低功率限幅器
    • US20060198197A1
    • 2006-09-07
    • US11360615
    • 2006-02-24
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • G11C11/34G11C16/06
    • H03K19/00315H03K17/08128
    • An over-voltage protection circuit (i.e., a limiter), includes: a first switching block having a plurality of semiconductor elements, serially connected to each other and turned on in sequence according to the magnitude of an input voltage; and a plurality of second switching blocks, in which each of the second switching blocks includes a pair of serially connected semiconductor elements having different current properties. The second switching blocks are connected in parallel to the first switching block. By minimizing a leakage current when an input voltage is below a reference voltage and by maximizing a leakage current when the input voltage is above the reference voltage, the limiter prevents excessive current from flowing into the RF tag circuit when the input voltage is below the reference voltage, and ensures that a sufficient amount of current is supplied to a regulator when the input voltage is below the reference voltage.
    • 过电压保护电路(即限幅器)包括:具有多个半导体元件的第一开关块,它们彼此串联连接并根据输入电压的大小依次导通; 以及多个第二切换块,其中每个第二切换块包括具有不同电流特性的一对串联连接的半导体元件。 第二切换块与第一切换块并联连接。 当输入电压低于参考电压时,通过使漏电流最小化,并且当输入电压高于参考电压时使漏电流最大化,当输入电压低于参考电压时,限幅器可防止过大的电流流入RF标签电路 电压,并且确保当输入电压低于参考电压时,足够量的电流被提供给调节器。
    • 3. 发明申请
    • Ultra-low-power voltage transform circuit
    • 超低功耗变压电路
    • US20060186943A1
    • 2006-08-24
    • US11358029
    • 2006-02-22
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • H03L5/00
    • H03K19/01855
    • A voltage transform circuit transforms a transferred voltage to a desired magnitude of voltage. The voltage transform circuit includes: a first power supply unit for providing a digital voltage (Vdd-1) of a first magnitude; a second power supply unit for providing an analog voltage (Vaa-2) of a second magnitude; and a voltage transform unit formed with a plurality of MOS transistors, wherein the MOS transistors operate to transfer the digital voltage (Vdd-1) from the first power supply unit, and output a digital voltage (Vdd-3) of a third magnitude corresponding to the analog voltage (Vaa-2) transferred from the second power supply unit. By using an analog voltage (Vaa-2) that is higher than the digital voltage (Vdd-1), it becomes possible to increase the magnitude of the output digital voltage (Vdd-3). By supplying this high digital voltage (Vdd-3) to a charge pump, the level of the charge pump is lowered.
    • 电压变换电路将传送的电压转换成期望的电压大小。 电压变换电路包括:用于提供第一量值的数字电压(Vdd-1)的第一电源单元; 第二电源单元,用于提供第二大小的模拟电压(Vaa- 2); 以及形成有多个MOS晶体管的电压变换单元,其中所述MOS晶体管操作以从所述第一电源单元传送所述数字电压(Vdd-1),并输出对应于第三电压的数字电压(Vdd-3) 到从第二电源单元传送的模拟电压(Vaa- 2)。 通过使用高于数字电压(Vdd-1)的模拟电压(Vaa- 2),可以增加输出数字电压(Vdd-3)的幅度。 通过将这种高数字电压(Vdd-3)提供给电荷泵,电荷泵的电平降低。
    • 4. 发明授权
    • Ultra-low power limiter
    • 超低功率限幅器
    • US07688561B2
    • 2010-03-30
    • US11360615
    • 2006-02-24
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • H02H3/20H02H9/04
    • H03K19/00315H03K17/08128
    • An over-voltage protection circuit (i.e., a limiter), includes: a first switching block having a plurality of semiconductor elements, serially connected to each other and turned on in sequence according to the magnitude of an input voltage; and a plurality of second switching blocks, in which each of the second switching blocks includes a pair of serially connected semiconductor elements having different current properties. The second switching blocks are connected in parallel to the first switching block. By minimizing a leakage current when an input voltage is below a reference voltage and by maximizing a leakage current when the input voltage is above the reference voltage, the limiter prevents excessive current from flowing into the RF tag circuit when the input voltage is below the reference voltage, and ensures that a sufficient amount of current is supplied to a regulator when the input voltage is below the reference voltage.
    • 过压保护电路(即限幅器)包括:具有多个半导体元件的第一开关块,它们相互串联并根据输入电压的大小依次导通; 以及多个第二切换块,其中每个第二切换块包括具有不同电流特性的一对串联连接的半导体元件。 第二切换块与第一切换块并联连接。 当输入电压低于参考电压时,通过使漏电流最小化,并且当输入电压高于参考电压时使泄漏电流达到最大值,当输入电压低于参考电压时,限幅器可防止过大的电流流入RF标签电路 电压,并且确保当输入电压低于参考电压时,足够量的电流被提供给调节器。
    • 5. 发明授权
    • Reference voltage generating circuit with ultra-low power consumption
    • 具有超低功耗的参考电压发生电路
    • US07309978B2
    • 2007-12-18
    • US11359505
    • 2006-02-23
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • G05F3/16G05F1/10H03H3/08
    • G05F3/30H03F1/301H03F3/505H03F2200/153H03F2200/447H03F2200/78H03F2203/5018
    • A reference voltage generating circuit with ultra-low power consumption, which includes: a constant current circuit part generating a first constant current from a supply voltage; a current mirror circuit part mirroring the constant current and supplying a second constant current; a voltage control circuit part receiving the second constant current and generating a first reference voltage by using substrate transistors driven by a PTAT (Proportional To Absolute Temperature) voltage and MOS transistors driven by a CTAT (Complementary To Absolute Temperature) voltage; and an output circuit part amplifying an output voltage from the voltage control circuit part to generate second to fourth reference voltages, and feeding back at least one of the second to fourth reference voltages to the voltage control circuit part so that the magnitude of an output voltage is adjusted. The reference voltage generating circuit is able to stably output four reference voltages, independently of changes in supply voltage, process, temperature, and other factors.
    • 一种具有超低功耗的参考电压产生电路,包括:恒定电流电路部分,从电源电压产生第一恒定电流; 反射恒定电流并提供第二恒定电流的电流镜电路部分; 电压控制电路部分,通过使用由PTAT(比例绝对温度)电压驱动的基板晶体和由CTAT(互补绝对温度)电压驱动的MOS晶体管,接收第二恒定电流并产生第一参考电压; 以及输出电路部分,放大来自电压控制电路部分的输出电压以产生第二至第四参考电压,并将第二至第四参考电压中的至少一个反馈到电压控制电路部分,使得输出电压的幅度 被调整。 参考电压发生电路能够稳定地输出四个参考电压,独立于电源电压,工艺,温度等因素的变化。
    • 6. 发明申请
    • Reference voltage generating circuit with ultra-low power consumption
    • 具有超低功耗的参考电压发生电路
    • US20060192609A1
    • 2006-08-31
    • US11359505
    • 2006-02-23
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • Ja-nam KuChung-woul KimYoung-hoon MinIl-jong SongDong-hyun Lee
    • G05F1/10
    • G05F3/30H03F1/301H03F3/505H03F2200/153H03F2200/447H03F2200/78H03F2203/5018
    • A reference voltage generating circuit with ultra-low power consumption, which includes: a constant current circuit part generating a first constant current from a supply voltage; a current mirror circuit part mirroring the constant current and supplying a second constant current; a voltage control circuit part receiving the second constant current and generating a first reference voltage by using substrate transistors driven by a PTAT (Proportional To Absolute Temperature) voltage and MOS transistors driven by a CTAT (Complementary To Absolute Temperature) voltage; and an output circuit part amplifying an output voltage from the voltage control circuit part to generate second to fourth reference voltages, and feeding back at least one of the second to fourth reference voltages to the voltage control circuit part so that the magnitude of an output voltage is adjusted. The reference voltage generating circuit is able to stably output four reference voltages, independently of changes in supply voltage, process, temperature, and other factors.
    • 一种具有超低功耗的参考电压产生电路,包括:恒定电流电路部分,从电源电压产生第一恒定电流; 反射恒定电流并提供第二恒定电流的电流镜电路部分; 电压控制电路部分,通过使用由PTAT(比例绝对温度)电压驱动的基板晶体和由CTAT(互补绝对温度)电压驱动的MOS晶体管,接收第二恒定电流并产生第一参考电压; 以及输出电路部分,放大来自电压控制电路部分的输出电压以产生第二至第四参考电压,并将第二至第四参考电压中的至少一个反馈到电压控制电路部分,使得输出电压的幅度 被调整。 参考电压发生电路能够稳定地输出四个参考电压,独立于电源电压,工艺,温度等因素的变化。
    • 7. 发明申请
    • Rectifier for supplying double voltage and RFID tag thereof
    • 用于提供双电压的整流器和RFID标签
    • US20060187062A1
    • 2006-08-24
    • US11356023
    • 2006-02-17
    • Ja-nam KuYoung-hoon MinIl-jong SongDong-hyun Lee
    • Ja-nam KuYoung-hoon MinIl-jong SongDong-hyun Lee
    • G08B13/14G08B23/00
    • G06K19/0723G06K19/0713
    • Disclosed is a rectifier for supplying double voltage and an RFID tag thereof. The rectifier includes a charging part for charging an input voltage induced to input ends by a received radio frequency (RF) signal; a power provider for charging a sum voltage corresponding to the sum of the input voltage induced to the input end and the voltage charged in the charging part as a power voltage, and discharging the charged power voltage to provide a direct current (DC) power; and a switching part for switching to supply the input voltage induced at the input ends to the charging part during a first interval and switching to supply the sum voltage to the power provider during a second interval. Accordingly, double voltage can be supplied to other electric elements formed in the RFID tag and overcurrent caused by overvoltage can be prevented from flowing into the elements.
    • 公开了一种用于提供双电压的整流器及其RFID标签。 整流器包括用于通过接收的射频(RF)信号对感应到输入端的输入电压进行充电的充电部分; 电源提供器,用于对与所述输入端感应的输入电压和所述充电部中充电的电压的和相对应的和电压作为电源电压进行充电,并且对所述充电电力电压进行放电以提供直流(DC)电力; 以及切换部,用于切换以在第一间隔期间将在输入端感应的输入电压提供给充电部分,并且在第二间隔期间切换以将和电压提供给电力供应商。 因此,可以向形成在RFID标签中的其他电气元件提供双电压,并且可以防止由过电压引起的过电流流入元件。
    • 10. 发明授权
    • Rectifier for supplying double voltage and RFID tag thereof
    • 用于提供双电压的整流器和RFID标签
    • US07339485B2
    • 2008-03-04
    • US11356023
    • 2006-02-17
    • Ja-nam KuYoung-hoon MinIl-jong SongDong-hyun Lee
    • Ja-nam KuYoung-hoon MinIl-jong SongDong-hyun Lee
    • G08B21/00H04Q13/14H04Q7/00
    • G06K19/0723G06K19/0713
    • Disclosed is a rectifier for supplying double voltage and an RFID tag thereof. The rectifier includes a charging part for charging an input voltage induced to input ends by a received radio frequency (RF) signal; a power provider for charging a sum voltage corresponding to the sum of the input voltage induced to the input end and the voltage charged in the charging part as a power voltage, and discharging the charged power voltage to provide a direct current (DC) power; and a switching part for switching to supply the input voltage induced at the input ends to the charging part during a first interval and switching to supply the sum voltage to the power provider during a second interval. Accordingly, double voltage can be supplied to other electric elements formed in the RFID tag and overcurrent caused by overvoltage can be prevented from flowing into the elements.
    • 公开了一种用于提供双电压的整流器及其RFID标签。 整流器包括用于通过接收的射频(RF)信号对感应到输入端的输入电压进行充电的充电部分; 电源提供器,用于对与所述输入端感应的输入电压和所述充电部中充电的电压的和相对应的和电压作为电源电压进行充电,并且对所述充电电力电压进行放电以提供直流(DC)电力; 以及切换部,用于切换以在第一间隔期间将在输入端感应的输入电压提供给充电部分,并且在第二间隔期间切换以将和电压提供给电力供应商。 因此,可以向形成在RFID标签中的其他电气元件提供双电压,并且可以防止由过电压引起的过电流流入元件。