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    • 1. 发明授权
    • Crystal-oscillator circuit
    • 晶振电路
    • US08228131B2
    • 2012-07-24
    • US13005176
    • 2011-01-12
    • Kei NagatomoHisato TakeuchiShuuji Shibuya
    • Kei NagatomoHisato TakeuchiShuuji Shibuya
    • H03B5/32
    • H03L3/00H03L1/022
    • In a crystal-oscillator circuit having a quartz crystal unit, further stabilization of output frequency change at a time of startup of the power supply is achieved. A crystal-oscillator circuit having a quartz crystal unit includes a first variable-capacitance element, which forms an oscillation loop with the quartz crystal unit, and a temperature compensation circuit which provides a first control signal for the first variable-capacitance element to compensate for a temperature characteristic of the quartz crystal unit. In addition, the crystal-oscillator circuit includes a second variable-capacitance element group, and a time constant circuit which provides a time constant signal, which changes with a predetermined time constant, for the second variable-capacitance element group as a second control signal.
    • 在具有石英晶体单元的晶体振荡器电路中,实现了在电源启动时输出频率变化的进一步稳定。 具有石英晶体单元的晶体振荡器电路包括与石英晶体单元形成振荡环路的第一可变电容元件和温度补偿电路,该电路为第一可变电容元件提供第一控制信号以补偿 石英晶体单元的温度特性。 此外,晶体振荡器电路包括第二可变电容元件组和时间常数电路,其将作为第二控制信号的第二可变电容元件组提供以预定时间常数变化的时间常数信号 。
    • 2. 发明授权
    • Output circuit for oscillator
    • 振荡器输出电路
    • US07579917B2
    • 2009-08-25
    • US11727096
    • 2007-03-23
    • Motoki SakaiHisato TakeuchiKeigo ShinguKei Nagatomo
    • Motoki SakaiHisato TakeuchiKeigo ShinguKei Nagatomo
    • H03B5/36H03L5/00
    • H03K5/06H03K2005/00156
    • The object of the present invention is to provide a crystal oscillator with one IC capable of effectively responding to specifications or a frequency of an installed set, an output terminal of the oscillator 1 is connected to an input terminal of the inverter 2, an output terminal of which is connected to the first resistor 7 and one terminal of the second resistor 8, the other terminal of the first resistor 7 is connected to one terminal of the first capacitor 9 and an input terminal of the first transistor 3, the other terminal of the first capacitor 9 is connected to one terminal of the first switch 11, and the other terminal of the first switch 11 is grounded, the other terminal of the second resistor 8 is connected to one terminal of the second capacitor 10 and an input terminal of the second transistor 4, the other terminal of the second capacitor 10 is connected to one terminal of the second switch 12, and the other terminal of the second switch 12 is grounded, an output terminal of the first transistor 3 and an output terminal of the second transistor 4 are connected to the oscillation output terminal 5, and the first switch 11 and the second switch 12 are controlled by the storage device 13.
    • 本发明的目的是提供一种具有能够有效响应安装组件的规格或频率的一个IC的晶体振荡器,振荡器1的输出端子连接到逆变器2的输入端子,输出端子 其连接到第一电阻器7和第二电阻器8的一个端子,第一电阻器7的另一个端子连接到第一电容器9的一个端子和第一晶体管3的输入端子,另一个端子 第一电容器9连接到第一开关11的一个端子,第一开关11的另一个端子接地,第二电阻器8的另一个端子连接到第二电容器10的一个端子, 第二晶体管4,第二电容器10的另一个端子连接到第二开关12的一个端子,而第二开关12的另一个端子接地,输出端子 第一晶体管3的输出端子和第二晶体管4的输出端子连接到振荡输出端子5,并且第一开关11和第二开关12由存储装置13控制。
    • 3. 发明申请
    • Function generation circuit
    • 函数生成电路
    • US20080007363A1
    • 2008-01-10
    • US11806300
    • 2007-05-31
    • Kei NagatomoHisato TakeuchiKeigo Shingu
    • Kei NagatomoHisato TakeuchiKeigo Shingu
    • H03L1/02
    • H03L1/022
    • A first order function generation circuit receives a signal from a temperature sensor circuit, and generates a fist order function control signal V1 that is affected by the ambient temperature. A fourth order and fifth order approximation function generation circuit receives signals from the temperature sensor circuit and from the third order approximation function generation circuit, and generates a fourth and fifth order approximation function control signal V45 that is affected by the ambient temperature. A peak change point adjustment circuit outputs a signal to adjust the value of a peak change point temperature Ti for the third order approximation function generation circuit, the first order generation function circuit and the fourth order and fifth order approximation function generation circuit. A temperature compensation circuit adds together control signals V0, V1, V3 and V5, and outputs the resultant signal Vc.
    • 第一阶函数发生电路接收来自温度传感器电路的信号,并产生受环境温度影响的第一阶函数控制信号V 1。 第四级和五阶近似函数发生电路从温度传感器电路和三阶近似函数产生电路接收信号,并产生受环境温度影响的第四和五阶近似函数控制信号V 45。 峰值变化点调整电路输出用于三阶近似函数发生电路,第一阶函数电路和第四阶和五阶近似函数产生电路的峰值变化点温度Ti的值的信号。 温度补偿电路将控制信号V 0,V 1,V 3和V 5相加,并输出结果信号Vc。
    • 4. 发明申请
    • Output circuit for oscillator
    • 振荡器输出电路
    • US20070236302A1
    • 2007-10-11
    • US11727096
    • 2007-03-23
    • Motoki SakaiHisato TakeuchiKeigo ShinguKei Nagatomo
    • Motoki SakaiHisato TakeuchiKeigo ShinguKei Nagatomo
    • H03B5/32
    • H03K5/06H03K2005/00156
    • The object of the present invention is to provide a crystal oscillator with one IC capable of effectively responding to specifications or a frequency of an installed set, an output terminal of the oscillator 1 is connected to an input terminal of the inverter 2, an output terminal of which is connected to the first resistor 7 and one terminal of the second resistor 8, the other terminal of the first resistor 7 is connected to one terminal of the first capacitor 9 and an input terminal of the first transistor 3, the other terminal of the first capacitor 9 is connected to one terminal of the first switch 11, and the other terminal of the first switch 11 is grounded, the other terminal of the second resistor 8 is connected to one terminal of the second capacitor 10 and an input terminal of the second transistor 4, the other terminal of the second capacitor 10 is connected to one terminal of the second switch 12, and the other terminal of the second switch 12 is grounded, an output terminal of the first transistor 3 and an output terminal of the second transistor 4 are connected to the oscillation output terminal 5, and the first switch 11 and the second switch 12 are controlled by the storage device 13.
    • 本发明的目的是提供一种具有能够有效响应安装组件的规格或频率的一个IC的晶体振荡器,振荡器1的输出端子连接到逆变器2的输入端子,输出端子 其连接到第一电阻器7和第二电阻器8的一个端子,第一电阻器7的另一个端子连接到第一电容器9的一个端子和第一晶体管3的输入端子,另一个端子 第一电容器9连接到第一开关11的一个端子,第一开关11的另一个端子接地,第二电阻器8的另一个端子连接到第二电容器10的一个端子, 第二晶体管4,第二电容器10的另一个端子连接到第二开关12的一个端子,而第二开关12的另一个端子接地,输出端子 第一晶体管3的输出端子和第二晶体管4的输出端子连接到振荡输出端子5,并且第一开关11和第二开关12由存储装置13控制。
    • 5. 发明申请
    • Oscillator starting control circuit
    • 振荡器启动控制电路
    • US20060071730A1
    • 2006-04-06
    • US11238145
    • 2005-09-29
    • Kei NagatomoKeigo ShinguHisato Takeuchi
    • Kei NagatomoKeigo ShinguHisato Takeuchi
    • H03B5/32
    • H03L3/00H03B5/06H03B5/36
    • It is an object to provide an oscillator starting control circuit capable of shortening a starting time and stably controlling the starting time, and furthermore, stabilizing an oscillating frequency after starting an oscillating circuit. [Means for Resolution] An oscillating circuit (1) is a crystal oscillating circuit in which an input and an output of an inverter (14) are connected to both ends of a crystal oscillator (15) and both ends of a resistor (16), the input is connected to a drain of an MOS variable capacity (10), the output is connected to a drain of an MOS variable capacity (11), a source of the MOS variable capacity (10) is connected to a fixed capacity (12), a source of the MOS variable capacity (11) is connected to a fixed capacity (13), and the other ends of the fixed capacities (12, 13) are connected to a GND. Furthermore, a resistor (18) and a switch (7) are connected to a gate of the MOS variable capacity (10), a resistor (19) and a switch (8) are connected to a gate of the MOS variable capacity (11), and the other ends of the resistors (18, 19) are connected to each other, and furthermore, to a voltage control circuit (3).
    • 本发明的目的是提供一种能够缩短启动时间并稳定地控制启动时间的振荡器起动控制电路,此外,在启动振荡电路之后稳定振荡频率。 [解决方法]振荡电路(1)是其中反相器(14)的输入和输出连接到晶体振荡器(15)的两端并且电阻器(16)的两端连接的晶体振荡电路, 输入连接到MOS可变容量(10)的漏极,输出端连接到MOS可变容量(11)的漏极,MOS可变容量(10)的源极连接到固定容量( 如图12所示,MOS可变容量(11)的源极连接到固定容量(13),固定容量(12,13)的另一端连接到GND。 此外,电阻器(18)和开关(7)连接到MOS可变容量(10)的栅极,电阻器(19)和开关(8)连接到MOS可变容量(11 ),并且电阻器(18,19)的另一端彼此连接,此外连接到电压控制电路(3)。
    • 7. 发明授权
    • Oscillator starting control circuit
    • 振荡器启动控制电路
    • US07492231B2
    • 2009-02-17
    • US11238145
    • 2005-09-29
    • Kei NagatomoKeigo ShinguHisato Takeuchi
    • Kei NagatomoKeigo ShinguHisato Takeuchi
    • H03B5/32
    • H03L3/00H03B5/06H03B5/36
    • An oscillator starting control circuit capable of shortening a starting time and stably controlling the starting time, and furthermore, stabilizing an oscillating frequency after starting an oscillating circuit. An oscillating circuit (1) is a crystal oscillating circuit in which an input and an output of an inverter (14) are connected to both ends of a crystal oscillator (15) and both ends of a resistor (16), the input is connected to a drain of an MOS variable capacity (10), the output is connected to a drain of an MOS variable capacity (11), a source of the MOS variable capacity (10) is connected to a fixed capacity (12), a source of the MOS variable capacity (11) is connected to a fixed capacity (13), and the other ends of the fixed capacities (12, 13) are connected to a GND.
    • 一种振荡器启动控制电路,其能够缩短启动时间并稳定地控制启动时间,此外,在启动振荡电路之后稳定振荡频率。 振荡电路(1)是晶体振荡电路,其中反相器(14)的输入和输出连接到晶体振荡器(15)的两端和电阻器(16)的两端,输入端连接 到达可变容量(10)的漏极,输出与MOS可变容量(11)的漏极连接,MOS可变容量(10)的源极连接到固定容量(12),源极 的MOS可变容量(11)连接到固定容量(13),固定容量(12,13)的另一端连接到GND。
    • 9. 发明申请
    • CRYSTAL-OSCILLATOR CIRCUIT
    • 水晶振荡器电路
    • US20110227655A1
    • 2011-09-22
    • US13005176
    • 2011-01-12
    • Kei NAGATOMOHisato TakeuchiShuuji Shibuya
    • Kei NAGATOMOHisato TakeuchiShuuji Shibuya
    • H03L7/00
    • H03L3/00H03L1/022
    • In a crystal-oscillator circuit having a quartz crystal unit, further stabilization of output frequency change at a time of startup of the power supply is achieved. A crystal-oscillator circuit having a quartz crystal unit includes a first variable-capacitance element, which forms an oscillation loop with the quartz crystal unit, and a temperature compensation circuit which provides a first control signal for the first variable-capacitance element to compensate for a temperature characteristic of the quartz crystal unit. In addition, the crystal-oscillator circuit includes a second variable-capacitance element group, and a time constant circuit which provides a time constant signal, which changes with a predetermined time constant, for the second variable-capacitance element group as a second control signal.
    • 在具有石英晶体单元的晶体振荡器电路中,实现了在电源启动时输出频率变化的进一步稳定。 具有石英晶体单元的晶体振荡器电路包括与石英晶体单元形成振荡环路的第一可变电容元件和温度补偿电路,该电路为第一可变电容元件提供第一控制信号以补偿 石英晶体单元的温度特性。 此外,晶体振荡器电路包括第二可变电容元件组和时间常数电路,其将作为第二控制信号的第二可变电容元件组提供以预定时间常数变化的时间常数信号 。
    • 10. 发明授权
    • Function generation circuit
    • 函数生成电路
    • US07633350B2
    • 2009-12-15
    • US11806300
    • 2007-05-31
    • Kei NagatomoHisato TakeuchiKeigo Shingu
    • Kei NagatomoHisato TakeuchiKeigo Shingu
    • H03L1/00
    • H03L1/022
    • A first order function generation circuit receives a signal from a temperature sensor circuit, and generates a first order function control signal V1 that is affected by the ambient temperature. A fourth order and fifth order approximation function generation circuit receives signals from the temperature sensor circuit and from the third order approximation function generation circuit, and generates a fourth and fifth order approximation function control signal V45 that is affected by the ambient temperature. A peak change point adjustment circuit outputs a signal to adjust the value of a peak change point temperature Ti for the third order approximation function generation circuit, the first order generation function circuit and the fourth order and fifth order approximation function generation circuit. A temperature compensation circuit adds together control signals V0, V1, V3 and V5, and outputs the resultant signal Vc.
    • 第一阶函数发生电路接收来自温度传感器电路的信号,并产生受环境温度影响的一阶函数控制信号V1。 第四阶和五阶近似函数产生电路接收来自温度传感器电路和三阶近似函数产生电路的信号,并产生受环境温度影响的第四和第五阶近似函数控制信号V45。 峰值变化点调整电路输出用于三阶近似函数发生电路,第一阶函数电路和第四阶和五阶近似函数产生电路的峰值变化点温度Ti的值的信号。 温度补偿电路将控制信号V0,V1,V3和V5相加,并输出结果信号Vc。