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    • 2. 发明授权
    • Aerialift warning system and method
    • 空中报警系统和方法
    • US06297744B1
    • 2001-10-02
    • US09347471
    • 1999-07-02
    • Paul D. BaillargeonGabor L. SzakacsKevin M. Klughart
    • Paul D. BaillargeonGabor L. SzakacsKevin M. Klughart
    • G08B2100
    • B66F17/006
    • An aerialift warning system and method for use on aerialift equipment to warn the aerialift operator to fasten his/her safety lanyard and to warn persons within the zone of danger below the aerialift boom/basket of the impending danger posed by the descending boom/basket. The system includes a warning module and a speaker. The warning module includes a driver circuit for receiving a boom movement input signal and for asserting an up motion or down motion signal, and a processing circuit for receiving the up motion and down motion signal. The processing circuit contains an execution program to assert one or more warning messages contained in an audio warning circuit. The asserted one or more messages from the audio warning circuit are sent to a speaker.
    • 一个空中提升警告系统和方法,用于空运设备,用于警告空中操作人员固定他/她的安全系绳,并向危险区域内的危险区域内的人员提供下降臂/篮子即将发生的危险。 该系统包括警告模块和扬声器。 警告模块包括用于接收吊杆移动输入信号并且用于断言向上运动或向下运动信号的驱动器电路,以及用于接收向上运动和向下运动信号的处理电路。 处理电路包含用于断言包含在音频警告电路中的一个或多个警告消息的执行程序。 来自音频警告电路的断言的一个或多个消息被发送到扬声器。
    • 3. 发明授权
    • Parallel processor cell computer system
    • 并行处理器单元计算机系统
    • US5418952A
    • 1995-05-23
    • US897361
    • 1992-06-11
    • Richard E. MorleyDouglas H. Currie, Jr.Gabor L. Szakacs
    • Richard E. MorleyDouglas H. Currie, Jr.Gabor L. Szakacs
    • G06F15/16G06F9/44G06F15/167G06F15/80G06N5/04G06F13/362
    • G06F15/167G06F15/8015
    • A computer system especially for solution of real time inference problems is disclosed. The system includes a systolic cellular processor which provides predictable and responsive real time operation and fine grain programmability. The system comprises a plurality of separate processor cells each having its own local memory, the cells running simultaneously and operative to execute their respective program instructions. A global memory is coupled via a global bus to the processor cells and provides data to the cells and stores data from the cells. The bus provides effectively simultaneous access of all cells to the global memory. A further feature of the system is a novel parallel programming language using English syntax and which provides synchronous and predictable binding of code to each cell. A graphic work station is provided as a user interface to provide visual access to each cell or to cell groups for ease of control. The system can also function to emulate large scale integrated circuit processors by reason of the fine grain programmed operation of the system.
    • 公开了一种特别用于解决实时推理问题的计算机系统。 该系统包括收缩细胞处理器,其提供可预测和响应的实时操作和细粒度可编程性。 该系统包括多个单独的处理器单元,每个单独的处理器单元具有其自己的本地存储器,该单元同时运行并且可操作以执行它们各自的程 全局存储器通过全局总线耦合到处理器单元,并向单元提供数据并存储来自单元的数据。 总线有效地同时访问所有单元到全局存储器。 该系统的另一个特征是使用英语语法的新颖的并行编程语言,并且提供了代码到每个单元的同步和可预测的绑定。 提供图形工作站作为用户界面,以提供对每个单元或单元组的可视访问以便于控制。 该系统还可以通过系统的细粒度编程操作来模拟大规模集成电路处理器。
    • 4. 发明授权
    • Electrolyte analyzer
    • 电解质分析仪
    • US4705668A
    • 1987-11-10
    • US900784
    • 1986-10-14
    • Karl W. KaltenbachStephen RettewJohn O. RudyGabor L. Szakacs
    • Karl W. KaltenbachStephen RettewJohn O. RudyGabor L. Szakacs
    • G01N1/00G01N33/483G01N35/08G01N27/26
    • G01N35/1097Y10T436/118339
    • An analyzer for measuring the ionic values of electrolytes in a sample solution having a fluid flow-through air segment detector (300) and a plurality of fluid flow-through ion selective electrodes (97,98) for measuring the ionic values of electrolytes and a fluid flow-through reference membrane assembly (96) connected in series. There is also a reference electrode (95). There is a reservoir (77) containing an internal filling solution. The reference membrane assembly and the reference electrode are located in the reservoir and exposed to the internal filling solution.A tubular fluid sampling probe (70) having a sampling port (63) aspirates air, sample and liquid reagents through the system.The probe cooperates with a slide valve (64) having a passageway (53) through which the probe reciprocates. The passageway contains a plurality of chamber ports (46, 47, 48) each of which is sealed from the other ports by the tube sampling probe when its sampling port is positioned within a chamber port,A reagent pouch having a plurality of chambers communicating with a separate chamber port in the slide valve (20, 21) contains liquid reagents and a wash solution. One chamber in the reagent pouch receives waste and is in fluid communication with the flow-through reference membrane assembly.Means (50) are employed for pumping an electrolyte sample in series through the probe, the air segment detector, the ion selective electrodes, the reference membrane, and then to the waste disposal chamber. There are electronic means for measuring the voltage signal generated between the selective electrode and the reference electrodes for calculating the ionic value of the electrolyte being measured.
    • 一种用于测量具有流体流通空气段检测器(300)和用于测量电解质的离子值的多个流体流通离子选择电极(97,98)的样品溶液中的电解质的离子值的分析器, 流体通过参考膜组件(96)串联连接。 还有参考电极(95)。 有一个含有内部填充溶液的储存器(77)。 参考膜组件和参考电极位于储存器中并暴露于内部填充溶液中。 具有采样口(63)的管状液体取样探针(70)通过该系统抽吸空气,样品和液体试剂。 探针与具有通道(53)的滑阀(64)配合,探头通过该通道往复运动。 所述通道包含多个腔室端口(46,47,48),每个所述腔室端口(46,47,48)当其采样口位于腔室端口内时,所述腔室端口与所述另外的端口密封,所述试剂袋具有多个腔室 滑阀(20,21)中的单独的室端口包含液体试剂和洗涤溶液。 试剂袋中的一个室容纳废物并且与流过的参考膜组件流体连通。 方法(50)用于通过探针,空气段检测器,离子选择性电极,参考膜,然后到废物处理室串联泵送电解质样品。 存在用于测量在选择性电极和参考电极之间产生的电压信号的电子装置,用于计算被测电解质的离子值。
    • 5. 发明授权
    • Navigational plotting system
    • US4468743A
    • 1984-08-28
    • US488674
    • 1983-04-26
    • Thomas J. DunnDonald G. Yuniskis, Jr.Gabor L. SzakacsNghia V. Nguyen
    • Thomas J. DunnDonald G. Yuniskis, Jr.Gabor L. SzakacsNghia V. Nguyen
    • G01C21/22G06F15/20
    • G01C21/22
    • An improved navigational plotting system having convenient initialization and the ability to compute and superimpose hyperbolic time difference lines on a chart includes an X-Y plotter for plotting the position and course of a vessel on a navigational chart or a plain piece of paper, dictated by the reception of hyperbolic navigation signals. Ambiguity-free conversion to latitude and longitude is done automatically without the necessity of manually entering the initial latitude and longitude of the vessel. Remote initialization is established by placing the pen of the plotter on a known point or position on the chart and entering the latitude and longitude of this known position or its hyperbolic navigation coordinates, with all subsequent plot locations being referenced to this point on the chart. A set of default pre-stored conditions are utilized in the initialization procedure in which preset scale size and hyperbolic line parameters are assumed, with convenient override sequences being provided. The plotter includes a high accuracy rapid hyperbolic line drawing system utilizing a specialized approximation sequence for those charts which are not provided with hyperbolic navigation TD lines. A base line extension zone where hyperbolic position ambiguity is difficult to resolve (danger zone) is indicated by the preventing of the drawing of hyperbolic lines in this zone, thereby to give the navigator adequate indication that hyperbolic navigation readings may be ambiguous. A system is provided for rapid counter setting for the counters which drive the pen and also indicate vessel location or destination. This system utilizes differing rates for clocking the counters depending on whether the vessel or destination is on-chart or off-chart. As a further feature, velocity filtering prevents wild pen movement as a result of system transients. Additional auxiliary readout functions such as destination, range, velocity, time of arrival, heading, etc. are also provided.
    • 6. 发明授权
    • Realtime systolic, multiple-instruction, single-data parallel computer
system
    • 实时收缩,多指令,单数据并行计算机系统
    • US5136717A
    • 1992-08-04
    • US276413
    • 1988-11-23
    • Richard E. MorleyDouglas H. Currie, Jr.Gabor L. Szakacs
    • Richard E. MorleyDouglas H. Currie, Jr.Gabor L. Szakacs
    • G06F15/16G06F9/44G06F15/167G06F15/80G06N5/04
    • G06F15/167G06F15/8015
    • A computer system especially for solution of real time inference problems is disclosed. The system includes a systolic cellular processor which provides predictable and responsive real time operation and fine grain programmability. The system comprises a plurality of separate processor cells each having its own local memory, the cells running simultaneously and operative to execute their respective program instructions. A global memory is coupled via a global bus to the processor cells and provides data to the cells and stores data from the cells. The bus provides effectively simultaneous access of all cells to the global memory. A further feature of the system is a novel parallel programming language using English syntax and which provides synchronous and predictable binding of code to each cell. A graphic work station is provided as a user interface to provide visual access to each cell or to cell groups for ease of control. The system can also function to emulate large scale integrated circuit processors by reason of the fine grain programmed operation of the system.
    • 公开了一种特别用于解决实时推理问题的计算机系统。 该系统包括收缩细胞处理器,其提供可预测和响应的实时操作和细粒度可编程性。 该系统包括多个单独的处理器单元,每个单独的处理器单元具有其自己的本地存储器,该单元同时运行并且可操作以执行它们各自的程 全局存储器通过全局总线耦合到处理器单元,并向单元提供数据并存储来自单元的数据。 总线有效地同时访问所有单元到全局存储器。 该系统的另一个特征是使用英语语法的新颖的并行编程语言,并且提供了代码到每个单元的同步和可预测的绑定。 提供图形工作站作为用户界面,以提供对每个单元或单元组的可视访问以便于控制。 该系统还可以通过系统的细粒度编程操作来模拟大规模集成电路处理器。
    • 8. 发明授权
    • Navigational plotting system
    • US4393448A
    • 1983-07-12
    • US121651
    • 1980-02-15
    • Thomas J. DunnDonald G. Yuniskis, Jr.Gabor L. SzakacsNghia V. Nguyen
    • Thomas J. DunnDonald G. Yuniskis, Jr.Gabor L. SzakacsNghia V. Nguyen
    • G01C21/22G06F15/50G01S5/14
    • G01C21/22
    • An improved navigational plotting system having convenient initialization and the ability to compute and superimpose hyperbolic time difference lines on a chart includes an X-Y plotter for plotting the position and course of a vessel on a navigational chart or a plain piece of paper, dictated by the reception of hyperbolic navigation signals. Ambiguity-free conversion to latitude and longitude is done automatically without the necessity of manually entering the initial latitude and longitude of the vessel. Remote initialization is established by placing the pen of the plotter on a known point or position on the chart and entering the latitude and longitude of this known position or its hyperbolic navigation coordinates, with all subsequent plot locations being referenced to this point on the chart. A set of default pre-stored conditions are utilized in the initialization procedure in which preset scale size and hyperbolic line parameters are assumed, with convenient override sequences being provided. The plotter includes a high accuracy rapid hyperbolic line drawing system utilizing a specialized approximation sequence for those charts which are not provided with hyperbolic navigation TD lines. A base line extension zone where hyperbolic position ambiguity is difficult to resolve (danger zone) is indicated by the preventing of the drawing of hyperbolic lines in this zone, thereby to give the navigator adequate indication that hyperbolic navigation readings may be ambiguous. A system is provided for rapid counter setting for the counters which drive the pen and also indicate vessel location or destination. This system utilizes differing rates of clocking the counters depending on whether the vessel or destination is on-chart or off-chart. As a further feature, velocity filtering prevents wild pen movement as a result of system transients. Additional auxiliary readout functions such as destination, range, velocity, time of arrival, heading, etc. are also provided.