Integrated full-wave rectifier circuit
    1.
    发明授权
    Integrated full-wave rectifier circuit 失效
    集成全波整流电路

    公开(公告)号:US4777580A

    公开(公告)日:1988-10-11

    申请号:US920891

    申请日:1986-10-16

    申请人: David Bingham

    发明人: David Bingham

    IPC分类号: H01L27/08 H02M7/219 H02M7/217

    摘要: A full-wave rectifier circuit is disclosed having two AC input terminals each having connected to it the anode end of a diode equivalent device. The cathode ends of each of the diode equivalent devices are connected together to a positive DC output terminal. Each AC input terminal also has connected to it one end of a switching device. The other ends of each of the switching devices are connected together to a negative DC output terminal. The control means of the switching devices are connected such that only one conducts during any AC half cycle to provide a return path from the negative DC output terminal to the proper one of the two AC input terminals.

    摘要翻译: 公开了一种全波整流电路,其具有两个AC输入端子,每个交流输入端子连接到二极管等效装置的阳极端。 每个二极管等效器件的阴极端子连接在一起为正直流输出端子。 每个交流输入端子也连接到开关器件的一端。 每个开关装置的另一端连接在一起成负的直流输出端子。 连接开关装置的控制装置,使得在任何AC半周期期间只有一个导通以提供从负DC输出端子到两个AC输入端子中适当的一个的返回路径。

    Integrated dual charge pump power supply and RS-232 transmitter/receiver

    公开(公告)号:US4679134A

    公开(公告)日:1987-07-07

    申请号:US878233

    申请日:1986-06-25

    IPC分类号: H01L27/092 H02M3/07 H02M3/18

    摘要: A monolithic integrated circuit containing an inverting/non-inverting voltage doubler charge pump circuit is disclosed for converting a unipolar supply voltage to a bipolar supply voltage of a greater magnitude. The unipolar input voltage is placed across a first external transfer capacitor by a first set of MOS switches during a first time period. The unipolar input voltage source is placed in series with the first transfer capacitor and this series combination of voltages is placed across a first external reservoir capacitor by a second set of MOS switches during a second time period. The voltage appearing across the first external reservoir capacitor is placed on a second transfer capacitor during the first time period by a third set of MOS switches. The voltage across the second transfer capacitor is placed into a second external reservoir capacitor with its polarity inverted by a fourth set of MOS switches during the second time period. A dual-collector lateral junction transistor, formed during the conventional CMOS processing steps used to fabricate the MOS switches, is connected as a voltage clamp between a ground potential and the two bipolar DC output lines of the power supply circuit to assure correct start-up conditions for the circuit. Gain reduction devices are placed in the semiconductor substrate to collect minority carriers which would otherwise be injected into inherent parasitic four layer PNPN junction devices created as a result of the architecture of the circuit, to prevent latch-up of the four layer devices. In a preferred embodiment, an RS-232 receiver and transmitter are contained on the same monolithic integrated circuit as the dual charge pump power supply.

    Integrated dual charge pump power supply and RS-232 transmitter/receiver

    公开(公告)号:US4636930A

    公开(公告)日:1987-01-13

    申请号:US782953

    申请日:1985-10-01

    IPC分类号: H01L27/092 H02M3/07 H02M7/25

    摘要: A monolithic integrated circuit containing an inverting/non-inverting voltage doubler charge pump circuit is disclosed for converting a unipolar supply voltage to a bipolar supply voltage of a greater magnitude. The unipolar input voltage is placed across a first external transfer capacitor by a first set of MOS switches during a first time period. The unipolar input voltage source is placed in series with the first transfer capacitor and this series combination of voltages is placed across a first external reservoir capacitor by a second set of MOS switches during a second time period. The voltage appearing across the first external reservoir capacitor is placed on a second transfer capacitor during the first time period by a third set of MOS switches. The voltage across the second transfer capacitor is placed into a second external reservoir capacitor with its polarity inverted by a fourth set of MOS switches during the second time period. A dual-collector lateral junction transistor, formed during the conventional CMOS processing steps used to fabricate the MOS switches, is connected as a voltage clamp between a ground potential and the two bipolar DC output lines of the power supply circuit to assure correct start-up conditions for the circuit. Gain reduction devices are placed in the semiconductor substrate to collect minority carriers which would otherwise be injected into inherent parasitic four layer PNPN junction devices created as a result of the architecture of the circuit, to prevent latch-up of the four layer devices. In a preferred embodiment, an RS-232 receiver and transmitter are contained on the same monolithic integrated circuit as the dual charge pump power supply.

    MULTISIDED SHARING OF DYNAMIC DATA IN A WIRELESS TEST ENVIRONMENT
    4.
    发明申请
    MULTISIDED SHARING OF DYNAMIC DATA IN A WIRELESS TEST ENVIRONMENT 有权
    动态数据在无线测试环境中的多重共享

    公开(公告)号:US20070032991A1

    公开(公告)日:2007-02-08

    申请号:US11195979

    申请日:2005-08-03

    IPC分类号: G06F15/00

    CPC分类号: H04L67/06 H04L43/50

    摘要: Methods, devices and systems for sharing or transferring dynamically-generated data between or among multi-sided test components in a wireless environment are described. Multiple flows are initiated substantially simultaneously. Dynamically generated data are shared between or among agents using dynamic data content servlets that employ open communication standards or protocols, such as HTTP or HTTPS.

    摘要翻译: 描述了用于在无线环境中在多方面测试组件之间或之间共享或传送动态生成的数据的方法,设备和系统。 基本上同时启动多个流。 动态生成的数据在使用动态数据内容小服务器的代理之间或之间共享,这些servlet采用开放通信标准或协议,如HTTP或HTTPS。

    Sequential coordination of test execution and dynamic data
    5.
    发明申请
    Sequential coordination of test execution and dynamic data 有权
    测试执行和动态数据的顺序协调

    公开(公告)号:US20050137842A1

    公开(公告)日:2005-06-23

    申请号:US10736835

    申请日:2003-12-17

    申请人: David Bingham

    发明人: David Bingham

    IPC分类号: G06F9/44 G06F11/273 G06F13/10

    CPC分类号: G06F11/2294

    摘要: An apparatus having: an agent; and a first test session servlet running on the agent, receiving a test description in a predetermined format from a caller, threading a first test session that invokes the agent to run the at least one subtest. The test description has at least one predefined subtest, dynamic data, and predefined test parameters. The first test session servlet receives test results from the first test session, and sends the subtest results from the at least one subtest and the dynamic data back to the caller.

    摘要翻译: 具有:代理人的装置; 以及在所述代理上运行的第一测试会话小服务器,从呼叫者接收预定格式的测试描述,穿过调用所述代理运行所述至少一个子测试的第一测试会话。 测试描述具有至少一个预定义的子测验,动态数据和预定义的测试参数。 第一个测试会话servlet从第一个测试会话接收测试结果,并将来自至少一个子测试的子测试结果和动态数据发回给调用者。

    Single output transistor output stage for interface applications
    6.
    发明授权
    Single output transistor output stage for interface applications 失效
    用于接口应用的单输出晶体管输出级

    公开(公告)号:US5988819A

    公开(公告)日:1999-11-23

    申请号:US24859

    申请日:1998-02-17

    IPC分类号: H03K19/003 G05F1/10

    CPC分类号: H03K19/00315

    摘要: An interface output stage includes a pull-up circuit and a pull-down circuit connected to a positive power supply signal line having a first voltage, an output signal line having an output voltage and a negative power supply signal line having a second voltage. The pull-up circuit includes a single output transistor and a body snatcher circuit, both interconnected between the positive power supply signal line and the output signal line. The body snatcher circuit ties the bodies of the output transistor and the transistors forming the body snatcher circuit to either the first voltage or the output voltage. The pull-down circuit is designed generally similar to the pull-up circuit to tie bodies of its transistors to either the output voltage or the second voltage.

    摘要翻译: 接口输出级包括上拉电路和连接到具有第一电压的正电源信号线,具有输出电压的输出信号线和具有第二电压的负电源信号线的下拉电路。 上拉电路包括在正电源信号线和输出信号线之间互连的单个输出晶体管和主体捕获电路。 身体拾取器电路将输出晶体管的主体和形成主体捕获电路的晶体管连接到第一电压或输出电压。 下拉电路的设计大体类似于将其晶体管的主体连接到输出电压或第二电压的上拉电路。

    Reverse current prevention method and apparatus and reverse current
guarded low dropout circuits
    7.
    发明授权
    Reverse current prevention method and apparatus and reverse current guarded low dropout circuits 失效
    反向电流预防方法和装置以及反向电流保护的低压差电路

    公开(公告)号:US5594381A

    公开(公告)日:1997-01-14

    申请号:US235688

    申请日:1994-04-29

    申请人: David Bingham

    发明人: David Bingham

    IPC分类号: G01R19/165 H03K3/01

    摘要: A reverse current limited circuit configured to provide a reverse current limited low dropout voltage output. The reverse current limited circuit, coupled between a pair of terminals, comprises (i) a MOS pass transistor coupled in series between the first and second terminals, (ii) connection circuitry to connect the substrate of the MOS pass transistor to either one of the pair of terminals based on the relative magnitudes of the voltages measured on the pair of terminals, (iii) activation circuitry for turning on and off the MOS pass transistor based on the relative magnitudes of the voltages measured on the pair of terminals and (iv) comparison circuitry used to compare the voltages of the pair of terminals and to control the activation circuitry and the connection circuitry in response to the comparison made.

    摘要翻译: 反向电流限制电路,被配置为提供反向电流限制的低压差电压输出。 耦合在一对端子之间的反向电流限制电路包括:(i)串联耦合在第一和第二端子之间的MOS通过晶体管,(ii)连接电路,用于将MOS通过晶体管的衬底连接到 基于在所述一对端子上测量的电压的相对大小的一对端子,(iii)基于在所述一对端子上测量的电压的相对幅度来导通和关断所述MOS通过晶体管的激活电路,以及(iv) 比较电路用于比较一对终端的电压,并响应于进行比较来控制激活电路和连接电路。

    Integrated dual charge pump power supply and RS-232 transmitter/receiver
    8.
    发明授权
    Integrated dual charge pump power supply and RS-232 transmitter/receiver 失效
    集成双电荷泵电源和RS-232发射器/接收器

    公开(公告)号:US4777577A

    公开(公告)日:1988-10-11

    申请号:US117992

    申请日:1987-11-09

    IPC分类号: H01L27/092 H02M3/07 H02M7/25

    摘要: A monolithic integrated circuit containing an inverting/non-inverting voltage doubler charge pump circuit is disclosed for converting a unipolar supply voltage to a bipolar supply voltage of a greater magnitude. The unipolar input voltage is placed across a first external transfer capacitor by a first set of MOS switches during a first time period. The unipolar input voltage source is placed in series with the first transfer capacitor and this series combination of voltages is placed across a first external reservoir capacitor by a second set of MOS switches during a second time period. The voltage appearing across the first external reservoir capacitor is placed on a second transfer capacitor during the first time period by a third set of MOS switches. The voltage across the second transfer capacitor is placed into a second external reservoir capacitor with its polarity inverted by a fourth set of MOS switches during the second time period. A dual-collector lateral junction transistor, formed during the conventional CMOS processing steps used to fabricate the MOS switches, is connected as voltage clamp between a ground potential and the two bipolar DC output lines of the power supply circuit to assure correct start-up conditions for the conduit. Gain reduction devices are placed in the semiconductor substrate to collect minority carriers which would otherwise be injected into inherent parasitic four layer PNPN junction devices created as a result of the architecture of the circuit, to prevent latch-up of the four layer devices. In a preferred embodiment, an RS-232 receiver and transmitter are contained on the same monolithic integrated circuit as the dual charge pump power supply.

    摘要翻译: 公开了一种包含反相/非反相倍压器电荷泵电路的单片集成电路,用于将单极电源电压转换为更大幅度的双极电源电压。 在第一时间段期间,单极输入电压由第一组MOS开关置于第一外部转移电容器之间。 单极输入电压源与第一传输电容器串联布置,并且在第二时间段期间,第二组MOS开关将该串联组合的电压放置在第一外部存储器电容器之间。 跨越第一外部储存电容器出现的电压在第一时间周期期间被第三组MOS开关置于第二转移电容器上。 在第二时间段期间,第二转移电容器两端的电压被放置在第二外部储存电容器中,其极性被第四组MOS开关反转。 在用于制造MOS开关的常规CMOS处理步骤期间形成的双集电极横向结结晶体管作为电压钳位在电源电路的地电位和两个双极直流输出线之间连接,以确保正确的启动条件 为管道。 增益减小装置放置在半导体衬底中以收集少数载流子,否则这些载流子将被注入到作为电路架构的结果而产生的固有寄生四层PNPN结器件中,以防止四层器件的锁存。 在优选实施例中,RS-232接收器和发射器包含在与双电荷泵电源相同的单片集成电路上。

    Home energy management system incorporating a pool pump
    9.
    发明授权
    Home energy management system incorporating a pool pump 有权
    家庭能源管理系统,包括一个泳池泵

    公开(公告)号:US08467908B2

    公开(公告)日:2013-06-18

    申请号:US12985438

    申请日:2011-01-06

    IPC分类号: G05D11/00

    摘要: An energy management system for a home network comprising a plurality of power consuming devices including a pool pump is provided. The system comprises a central controller operatively connected to the power consuming devices and configured to receive and process a signal indicative of the current state of an associated utility, including at least a peak demand state and an off-peak demand state, and a display device. The central controller further includes a scheduling algorithm configured to enable a user to program a schedule for the pool pump.

    摘要翻译: 提供了一种用于家庭网络的能量管理系统,其包括包括游泳池泵的多个功率消耗装置。 该系统包括可操作地连接到功率消耗设备并被配置为接收和处理指示相关公用事业的当前状态的信号的中央控制器,包括至少峰值需求状态和非高峰需求状态,以及显示设备 。 中央控制器还包括调度算法,其被配置为使得用户能够编制池泵的调度。

    Time and data synchronization between network devices
    10.
    发明申请
    Time and data synchronization between network devices 有权
    网络设备之间的时间和数据同步

    公开(公告)号:US20050135429A1

    公开(公告)日:2005-06-23

    申请号:US10991995

    申请日:2004-11-19

    IPC分类号: G06F13/42 H04J3/06 H04L29/08

    摘要: To synchronize time between network devices equally capable of accurately maintaining an indication of current time, one of the network devices is deemed to be a reference for time and the other network devices synchronize their indications of current time to the reference. To synchronize copies of data at multiple network devices, each network device maintains a counter representative of the passage of time but not necessarily of current time. The counter at each device is periodically synchronized with the counters of other network devices. When data is changed at a network device, the value of the counter at the time of changing is stored in association with the changed data. Stored counter values are used to determine whether a local copy or a remote copy of the data is likely more recent and therefore preferable. A further test may be applied if a counter value comparison is inconclusive.

    摘要翻译: 为了同步能够精确地保持当前时间的指示的网络设备之间的时间,网络设备中的一个被认为是时间的参考,并且其他网络设备使其当前时间的指示与参考同步。 为了在多个网络设备上同步数据副本,每个网络设备维护代表时间流逝而不是当前时间的计数器。 每个设备上的计数器与其他网络设备的计数器周期性地同步。 当在网络设备上改变数据时,与更改的数据相关联地存储改变时的计数器的值。 存储的计数器值用于确定数据的本地副本或远程副本是否可能更新,因此更为可取。 如果计数器值比较不确定,则可以应用另外的测试。