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    • 11. 发明授权
    • Bulk transport system
    • 批量运输系统
    • US07438461B2
    • 2008-10-21
    • US11012031
    • 2004-12-14
    • Kirk Matthew SchallJames David AllisonMark Alan JonesMalcom Lindsay FelminghamGary Robert Maxwell
    • Kirk Matthew SchallJames David AllisonMark Alan JonesMalcom Lindsay FelminghamGary Robert Maxwell
    • B01F15/02B65D6/12B65D6/16B67D5/60
    • B65D90/046B65D88/56
    • A flexible bulk container capable of transporting a first material and introducing a second material for mixing therewithin is disclosed wherein 1) said container can comprise a component of a bulk transport system further comprising a container assembly, and 2) said container includes a body defining a cavity, at least one opening, at least one vent, and a material delivery system assembly wherein a) the body is flexible and capable of positioning within the container assembly, b) the opening provides communication with the cavity, and c) the material delivery system assembly comprises at least one manifold, a portion of which is positioned within the cavity of the flexible bulk container, and said manifold includes a shell, an interior region, an inlet accessible from outside of the cavity of the flexible bulk container and at least one passageway extending from the internal region, through the shell, to, in turn, place the interior of the manifold in communication with the cavity.
    • 公开了能够输送第一材料并引入用于混合的第二材料的柔性散装容器,其中1)所述容器可以包括大体积输送系统的组件,还包括容器组件,以及2)所述容器包括限定一个 空腔,至少一个开口,至少一个通气口和材料输送系统组件,其中a)主体是柔性的并能够定位在容器组件内,b)开口提供与空腔的连通,以及c)材料输送 系统组件包括至少一个歧管,其一部分位于柔性散装容器的空腔内,并且所述歧管包括壳体,内部区域,可从柔性散装容器的空腔的外部接近的入口,并且至少 一个通道从内部区域延伸穿过外壳,从而使歧管的内部与空腔连通。
    • 13. 发明授权
    • Biasing circuit for degenerated differential pair
    • 退化差分对的偏置电路
    • US06853838B2
    • 2005-02-08
    • US09854737
    • 2001-05-14
    • Mark Alan Jones
    • Mark Alan Jones
    • H03F3/45H04B1/06
    • H03F3/45085H03F3/45183H03F2200/294H03F2200/372H03F2203/45386H03F2203/45544H03F2203/45702
    • An improved single-ended input differential pair amplifier stage comprises: 1) a first p-n-p transistor having a base terminal coupled to an input voltage; 2) a first load impedance having a first terminal coupled to a ground reference and a second terminal coupled to a collector of the first p-n-p transistor; 3) a second p-n-p transistor having a base terminal coupled to the ground reference; 4) a second load impedance having a first terminal coupled to a ground reference and a second terminal coupled to a collector of the second p-n-p transistor; 5) an inductor having a first terminal coupled to an emitter of the first p-n-p transistor and a second terminal coupled to an emitter of the second p-n-p transistor; and 6) a constant current source coupled to the emitter of the second p-n-p transistor.
    • 改进的单端输入差分对放大器级包括:1)具有耦合到输入电压的基极端子的第一p-n-p晶体管; 2)具有耦合到接地基准的第一端子和耦合到第一p-n-p晶体管的集电极的第二端子的第一负载阻抗; 3)第二p-n-p晶体管,其具有耦合到所述接地参考的基极端子; 4)具有耦合到接地基准的第一端子和耦合到所述第二p-n-p晶体管的集电极的第二端子的第二负载阻抗; 5)电感器,其具有耦合到第一p-n-p晶体管的发射极的第一端子和耦合到第二p-n-p晶体管的发射极的第二端子; 和6)耦合到第二p-n-p晶体管的发射极的恒流源。
    • 14. 发明授权
    • Filter circuitry for voltage controlled oscillator
    • 压控振荡器的滤波电路
    • US06724273B1
    • 2004-04-20
    • US10015119
    • 2001-10-26
    • Mark Alan Jones
    • Mark Alan Jones
    • H03B100
    • H03B5/04H03B5/1215H03B5/1228H03B5/1253
    • The controlling circuit element of a voltage controlled oscillator (VCO) for use in a phase lock loop (PLL) is a varactor connected between the terminals used to convey the power supply voltage and the frequency control voltage. The loop filter, implemented in a shunt configuration at the input of the VCO, is also connected between the power supply and frequency control voltage terminals. As a result, any variations in the power supply voltage appear at both terminals of the varactor due to the voltage coupling effect of the loop filter between the shared power supply and frequency control voltage terminals.
    • 用于锁相环(PLL)的压控振荡器(VCO)的控制电路元件是连接在用于传送电源电压和频率控制电压的端子之间的变容二极管。 在VCO的输入端以并联配置实现的环路滤波器也连接在电源和频率控制电压端子之间。 结果,由于共享电源和频率控制电压端子之间的环路滤波器的电压耦合效应,在变容二极管的两端出现电源电压的任何变化。
    • 18. 发明申请
    • BULK TRANSPORT SYSTEM
    • 大容量运输系统
    • US20090010098A1
    • 2009-01-08
    • US12206777
    • 2008-09-09
    • Kirk Matthew SchallJames David AllisonMark Alan JonesMalcolm Lindsay FelminghamGary Robert Maxwell
    • Kirk Matthew SchallJames David AllisonMark Alan JonesMalcolm Lindsay FelminghamGary Robert Maxwell
    • B01F1/00B01F3/12B01F5/04B01F15/02B65D47/00B65D88/22B65D88/54
    • B65D90/046B65D88/56
    • A flexible bulk container capable of transporting a first material and introducing a second material for mixing therewithin is disclosed wherein 1) said container can comprise a component of a bulk transport system further comprising a container assembly, and 2) said container includes a body defining a cavity, at least one opening, at least one vent, and a material delivery system assembly wherein a) the body is flexible and capable of positioning within the container assembly, b) the opening provides communication with the cavity, and c) the material delivery system assembly comprises at least one manifold, a portion of which is positioned within the cavity of the flexible bulk container, and said manifold includes a shell, an interior region, an inlet accessible from outside of the cavity of the flexible bulk container and at least one passageway extending from the internal region, through the shell, to, in turn, place the interior of the manifold in communication with the cavity.
    • 公开了能够输送第一材料并引入用于混合的第二材料的柔性散装容器,其中1)所述容器可以包括大体积输送系统的组件,还包括容器组件,以及2)所述容器包括限定一个 空腔,至少一个开口,至少一个通气口和材料输送系统组件,其中a)主体是柔性的并能够定位在容器组件内,b)开口提供与空腔的连通,以及c)材料输送 系统组件包括至少一个歧管,其一部分位于柔性散装容器的空腔内,并且所述歧管包括壳体,内部区域,可从柔性散装容器的空腔的外部接近的入口,并且至少 一个通道从内部区域延伸穿过外壳,从而使歧管的内部与空腔连通。
    • 20. 发明授权
    • Differential conversion circuit with a larger coupling capacitor than resonator capacitor
    • 差分转换电路具有比谐振电容器更大的耦合电容
    • US06437657B1
    • 2002-08-20
    • US09668963
    • 2000-09-25
    • Mark Alan Jones
    • Mark Alan Jones
    • H03H742
    • H03H7/42
    • A differential conversion circuit for converting an unbalanced signal to a balanced signal is provided. The differential conversion circuit is arranged with primarily passive components, and so avoids introducing noise or other disturbances to the signal. The differential conversion circuit has a terminal input for receiving an unbalanced signal that is related to a communication input signal. An inductor and a resonating capacitor connect to the terminal input, and a coupling capacitor connects to the inductor. One differential output line is provided by the resonating capacitor, while the other differential output line is provided by the coupling capacitor. The output from the capacitors is thereby a pair of lines that provide a balanced differential signal which is deliverable to a balanced load.
    • 提供了用于将不平衡信号转换为平衡信号的差分转换电路。 差分转换电路主要配置为无源元件,因此避免了对信号引入噪声或其他干扰。 差分转换电路具有用于接收与通信输入信号相关的不平衡信号的终端输入。 电感和谐振电容连接到端子输入,耦合电容连接到电感。 一个差分输出线由谐振电容器提供,而另一个差分输出线由耦合电容器提供。 因此,来自电容器的输出是一对线路,其提供可平衡负载的平衡差分信号。