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    • 1. 发明申请
    • Standard voltage generation circuit
    • 标准电压发生电路
    • US20060132225A1
    • 2006-06-22
    • US11317173
    • 2005-12-27
    • Junichi NakaMichiko TokumaruYoichi OkamotoKoji Oka
    • Junichi NakaMichiko TokumaruYoichi OkamotoKoji Oka
    • G05F1/10
    • G05F3/262G05F3/242
    • A standard voltage generation circuit is provided with a function of automatically stopping charging when a standard voltage reaches a stable voltage point by rapidly charging a standard voltage stabilization capacitor during transition from a standby state to a normal operation state. The standard voltage generation circuit is also provided with a function of precharging an output terminal of the circuit to a voltage close to the stable voltage by a potential division effect of the capacitor during transition from the standby state to the normal operation state. Thereby, it is possible to prevent an increase in the amount of time that is required until the standard voltage reaches the stable voltage when the state of an analog circuit included in the standard voltage generation circuit changes from its off state to its on state.
    • 标准电压产生电路具有当标准电压达到稳定电压点时自动停止充电的功能,通过在从待机状态转换到正常工作状态的过程中快速充电标准稳压电容器。 标准电压产生电路还具有通过在从待机状态转换到正常工作状态期间电容器的分压效应将电路的输出端子预充电到接近稳定电压的功能。 因此,当包括在标准电压发生电路中的模拟电路的状态从其断开状态变为其接通状态时,可以防止在标准电压达到稳定电压之前所需的时间量的增加。
    • 2. 发明申请
    • STANDARD VOLTAGE GENERATION CIRCUIT
    • 标准电压发生电路
    • US20100109763A1
    • 2010-05-06
    • US12686494
    • 2010-01-13
    • Junichi NakaMichiko TokumaruYoichi OkamotoKoji Oka
    • Junichi NakaMichiko TokumaruYoichi OkamotoKoji Oka
    • G05F1/10
    • G05F3/262G05F3/242
    • A standard voltage generation circuit is provided with a function of automatically stopping charging when a standard voltage reaches a stable voltage point by rapidly charging a standard voltage stabilization capacitor during transition from a standby state to a normal operation state. The standard voltage generation circuit is also provided with a function of precharging an output terminal of the circuit to a voltage close to the stable voltage by a potential division effect of the capacitor during transition from the standby state to the normal operation state. Thereby, it is possible to prevent an increase in the amount of time that is required until the standard voltage reaches the stable voltage when the state of an analog circuit included in the standard voltage generation circuit changes from its off state to its on state.
    • 标准电压产生电路具有当标准电压达到稳定电压点时自动停止充电的功能,通过在从待机状态转换到正常工作状态的过程中快速充电标准稳压电容器。 标准电压产生电路还具有通过在从待机状态转换到正常工作状态期间电容器的分压效应将电路的输出端子预充电到接近稳定电压的功能。 因此,当包括在标准电压发生电路中的模拟电路的状态从其断开状态变为其接通状态时,可以防止在标准电压达到稳定电压之前所需的时间量的增加。
    • 3. 发明申请
    • STANDARD VOLTAGE GENERATION CIRCUIT
    • 标准电压发生电路
    • US20080157861A1
    • 2008-07-03
    • US12039227
    • 2008-02-28
    • Junichi NAKAMichiko TokumaruYoichi OkamotoKoji Oka
    • Junichi NAKAMichiko TokumaruYoichi OkamotoKoji Oka
    • G05F3/16H02J7/00
    • G05F3/262G05F3/242
    • A standard voltage generation circuit is provided with a function of automatically stopping charging when a standard voltage reaches a stable voltage point by rapidly charging a standard voltage stabilization capacitor during transition from a standby state to a normal operation state. The standard voltage generation circuit is also provided with a function of precharging an output terminal of the circuit to a voltage close to the stable voltage by a potential division effect of the capacitor during transition from the standby state to the normal operation state. Thereby, it is possible to prevent an increase in the amount of time that is required until the standard voltage reaches the stable voltage when the state of an analog circuit included in the standard voltage generation circuit changes from its off state to its on state.
    • 标准电压产生电路具有当标准电压达到稳定电压点时自动停止充电的功能,通过在从待机状态转换到正常工作状态的过程中快速充电标准稳压电容器。 标准电压产生电路还具有通过在从待机状态转换到正常工作状态期间电容器的分压效应将电路的输出端子预充电到接近稳定电压的功能。 因此,当包括在标准电压发生电路中的模拟电路的状态从其断开状态变为其接通状态时,可以防止在标准电压达到稳定电压之前所需的时间量的增加。
    • 4. 发明授权
    • Current steering DAC
    • 电流转向DAC
    • US07701373B2
    • 2010-04-20
    • US12089699
    • 2006-03-13
    • Michiko TokumaruHeiji Ikoma
    • Michiko TokumaruHeiji Ikoma
    • H03M1/66
    • H03M1/002H03M1/662H03M1/745H03M1/747
    • A multi-channel current steering DAC (Digital-to-Analog Converter), for example, a 2-channel current steering DAC, includes a plurality of current sources I1, I2, . . . corresponding to the number of bits of a digital input signal DS in each of channels A, B. Each of the plurality of current sources I1, I2, . . . is formed by two small-current sources (I11, I12), (I21, I22), . . . . In the case where a full-scale current is limited to a small value in any of the channels, one of the two divided current sources is turned off by switches Sa1, Sa2. Accordingly, a full-scale current of each channel can be adjusted with a common bias circuit without degrading the resolution.
    • 多通道电流转向DAC(数模转换器),例如2通道电流转向DAC,包括多个电流源I1,I2。 。 。 对应于每个通道A,B中的数字输入信号DS的位数。多个电流源I1,I2,...中的每一个。 。 。 由两个小电流源(I11,I12),(I21,I22)形成。 。 。 。 在任何通道中将满量程电流限制为小值的情况下,两个分压电流源中的一个被开关Sa1,Sa2截止。 因此,可以利用公共偏置电路来调节每个通道的满量程电流,而不会降低分辨率。
    • 5. 发明申请
    • RAPID RECOVERY CIRCUIT
    • 快速恢复电路
    • US20100007536A1
    • 2010-01-14
    • US12513776
    • 2008-06-04
    • Michiko TokumaruHeiji Ikoma
    • Michiko TokumaruHeiji Ikoma
    • H03M1/00G05F3/02
    • H03K17/223H03K17/30H03K17/6871
    • When a semiconductor circuit, in which a stabilizing capacitor 2 for stabilizing a reference voltage Vbias is connected to a reference voltage terminal RT, recovers from a power down state to an operational state, a current mirror circuit 40 provides current mirroring of a current Ia of a first current path Ph1, which generates an OFF threshold voltage ref1 of a hysteresis comparator 1, to generate a current Ib of a second current path Ph2, which generates the reference voltage Vbias. The reference voltage Vbias is input to the comparator 1 as an input voltage vin. When the reference voltage Vbias becomes equal to the OFF threshold voltage ref1, the comparator 1 immediately stops the charging of the stabilizing capacitor 2 by a current source I1.
    • 当将用于稳定参考电压Vbias的稳定电容器2连接到参考电压端子RT的半导体电路从功率下降状态恢复到操作状态时,电流镜像电路40提供电流镜像电路 生成滞后比较器1的OFF阈值电压ref1的第一电流通路Ph1,以产生第二电流通路Ph2的电流Ib,产生参考电压Vbias。 参考电压Vbias作为输入电压vin输入到比较器1。 当参考电压Vbias变为等于OFF阈值电压ref1时,比较器1立即通过电流源I1停止对稳定电容器2的充电。
    • 7. 发明授权
    • Rapid recovery circuit
    • 快速恢复电路
    • US07924188B2
    • 2011-04-12
    • US12513776
    • 2008-06-04
    • Michiko TokumaruHeiji Ikoma
    • Michiko TokumaruHeiji Ikoma
    • H03M1/00
    • H03K17/223H03K17/30H03K17/6871
    • When a semiconductor circuit, in which a stabilizing capacitor 2 for stabilizing a reference voltage Vbias is connected to a reference voltage terminal RT, recovers from a power down state to an operational state, a current mirror circuit 40 provides current mirroring of a current Ia of a first current path Ph1, which generates an OFF threshold voltage ref1 of a hysteresis comparator 1, to generate a current Ib of a second current path Ph2, which generates the reference voltage Vbias. The reference voltage Vbias is input to the comparator 1 as an input voltage vin. When the reference voltage Vbias becomes equal to the OFF threshold voltage ref1, the comparator 1 immediately stops the charging of the stabilizing capacitor 2 by a current source I1.
    • 当将用于稳定参考电压Vbias的稳定电容器2连接到参考电压端子RT的半导体电路从功率下降状态恢复到操作状态时,电流镜像电路40提供电流镜像电路 生成滞后比较器1的OFF阈值电压ref1的第一电流通路Ph1,以产生第二电流通路Ph2的电流Ib,产生参考电压Vbias。 参考电压Vbias作为输入电压vin输入到比较器1。 当参考电压Vbias变为等于OFF阈值电压ref1时,比较器1立即通过电流源I1停止对稳定电容器2的充电。
    • 8. 发明授权
    • Current steering DAC
    • 电流转向DAC
    • US07764211B2
    • 2010-07-27
    • US12373213
    • 2007-03-13
    • Michiko TokumaruHeiji Ikoma
    • Michiko TokumaruHeiji Ikoma
    • H03M1/66
    • H03M1/002H03M1/742
    • In a multi-channel current steering DA converter, e.g., a two-channel current steering DA converter, reference current sources Irefa and Irefb that can serve as current mirror sources for current sources Ia and Ib are provided in current source matrices 2a and 2b of the channels, respectively. During an operation, the reference current source Irefa or Irefb that is provided in the current source matrix of a channel that is not powered down is selected and used in accordance with control signals 6a and 6b. Therefore, even when one channel is powered down, the full-scale current of the other channel can be maintained at a constant value, i.e., unchanged.
    • 在多通道电流转向DA转换器中,例如双通道电流转向DA转换器,可以用作电流源Ia和Ib的电流镜源的参考电流源Irefa和Irefb在电流源矩阵2a和2b的电流源矩阵2a和2b中 渠道。 在操作期间,根据控制信号6a和6b选择并使用在未断电的信道的电流源矩阵中提供的参考电流源Irefa或Irefb。 因此,即使一个通道断电,另一个通道的满量程电流可以保持在一个恒定的值,即不变。
    • 9. 发明申请
    • CURRENT STEERING DAC
    • 电流转向DAC
    • US20090045993A1
    • 2009-02-19
    • US12089699
    • 2006-03-13
    • Michiko TokumaruHeiji Ikoma
    • Michiko TokumaruHeiji Ikoma
    • H03M1/12H03M1/00
    • H03M1/002H03M1/662H03M1/745H03M1/747
    • A multi-channel current steering DAC (Digital-to-Analog Converter), for example, a 2-channel current steering DAC, includes a plurality of current sources I1, I2, . . . corresponding to the number of bits of a digital input signal DS in each of channels A, B. Each of the plurality of current sources I1, I2, . . . is formed by two small-current sources (I11, I12), (I21, I22), . . . . In the case where a full-scale current is limited to a small value in any of the channels, one of the two divided current sources is turned off by switches Sa1, Sa2. Accordingly, a full-scale current of each channel can be adjusted with a common bias circuit without degrading the resolution.
    • 多通道电流转向DAC(数模转换器),例如2通道电流转向DAC,包括多个电流源I1,I2。 。 。 对应于每个通道A,B中的数字输入信号DS的位数。多个电流源I1,I2,...中的每一个。 。 。 由两个小电流源(I11,I12),(I21,I22)形成。 。 。 。 在任何通道中将满量程电流限制为小值的情况下,两个分压电流源中的一个被开关Sa1,Sa2截止。 因此,可以利用公共偏置电路来调节每个通道的满量程电流,而不会降低分辨率。
    • 10. 发明授权
    • Current steering DAC
    • 电流转向DAC
    • US07924199B2
    • 2011-04-12
    • US12819606
    • 2010-06-21
    • Michiko TokumaruHeiji Ikoma
    • Michiko TokumaruHeiji Ikoma
    • H03M1/66
    • H03M1/002H03M1/742
    • In a multi-channel current steering DA converter, e.g., a two-channel current steering DA converter, reference current sources Irefa and Irefb that can serve as current mirror sources for current sources Ia and Ib are provided in current source matrices 2a and 2b of the channels, respectively. During an operation, the reference current source Irefa or Irefb that is provided in the current source matrix of a channel that is not powered down is selected and used in accordance with control signals 6a and 6b. Therefore, even when one channel is powered down, the full-scale current of the other channel can be maintained at a constant value, i.e., unchanged.
    • 在多通道电流转向DA转换器中,例如双通道电流转向DA转换器,可以用作电流源Ia和Ib的电流镜源的参考电流源Irefa和Irefb在电流源矩阵2a和2b的电流源矩阵2a和2b中 渠道。 在操作期间,根据控制信号6a和6b选择并使用在未断电的信道的电流源矩阵中提供的参考电流源Irefa或Irefb。 因此,即使一个通道断电,另一个通道的满量程电流可以保持在一个恒定的值,即不变。