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    • 5. 发明授权
    • Method and apparatus for optically enabling a circuit component in a large scale integrated circuit
    • 用于光学实现大规模集成电路中的电路部件的方法和装置
    • US06903325B2
    • 2005-06-07
    • US10671155
    • 2003-09-25
    • Siegfried FleischerDean Samara-Rubio
    • Siegfried FleischerDean Samara-Rubio
    • G01J1/32H01J40/14H01L31/00H04B10/12
    • H04B10/25
    • According to the invention, systems, apparatus and methods are disclosed for optically enabling a circuit component in a large scale integrated circuit. In one embodiment, the invention is a circuit comprising a light sensing device for producing a signal in response to sensing light, an optic function subcircuit, and a switch connected to the light sensing device and to the optic function subcircuit for activating the optic function subcircuit when light is sensed. The light sensing device is preferably a phototransistor and a light sensing circuit is preferably placed between the light sensing device and the switch for amplifying and conditioning the light sensing signal. The optic function subcircuit can be an optical modulator, an optical receiver or any other device that is to be operated and powered only when incident light is present. The switch can be a logic gate or a transistor switch coupled to the light sensing device and to an input to the optic function subcircuit, such as a power supply or a clock input, for alternately enabling and disabling the input to the optic function subcircuit.
    • 根据本发明,公开了用于光学实现大规模集成电路中的电路部件的系统,装置和方法。 在一个实施例中,本发明是一种电路,包括用于响应于感测光产生信号的光感测装置,光学功能子电路和连接到光感测装置的开关和用于激活光功能子电路的光功能子电路 当感光时。 光感测装置优选是光电晶体管,并且光感测电路优选地放置在光感测装置和开关之间,用于放大和调理光感测信号。 光功能分支电路可以是光调制器,光接收器或任何其它仅在存在入射光时被操作和供电的装置。 开关可以是耦合到光感测装置的逻辑门或晶体管开关,以及耦合到诸如电源或时钟输入的光功能子电路的输入,用于交替地启用和禁用光功能子电路的输入。
    • 6. 发明授权
    • Method and apparatus for optically enabling a circuit component in a large scale integrated circuit
    • 用于光学实现大规模集成电路中的电路部件的方法和装置
    • US06649898B1
    • 2003-11-18
    • US09608732
    • 2000-06-30
    • Siegfried FleischerDean Samara-Rubio
    • Siegfried FleischerDean Samara-Rubio
    • H01L3100
    • H04B10/25
    • According to the invention, systems, apparatus and methods are disclosed for optically enabling a circuit component in a large scale integrated circuit. In one embodiment, the invention is a circuit comprising a light sensing device for producing a signal in response to sensing light, an optic function subcircuit, and a switch connected to the light sensing device and to the optic function subcircuit for activating the optic function subcircuit when light is sensed. The light sensing device is preferably a phototransistor and a light sensing circuit is preferably placed between the light sensing device and the switch for amplifying and conditioning the light sensing signal. The optic function subcircuit can be an optical modulator, an optical receiver or any other device that is to be operated and powered only when incident light is present. The switch can be a logic gate or a transistor switch coupled to the light sensing device and to an input to the optic function subcircuit, such as a power supply or a clock input, for alternately enabling and disabling the input to the optic function subcircuit.
    • 根据本发明,公开了用于光学实现大规模集成电路中的电路部件的系统,装置和方法。 在一个实施例中,本发明是一种电路,包括用于响应于感测光产生信号的光感测装置,光学功能子电路和连接到光感测装置的开关和用于激活光功能子电路的光功能子电路 当感光时。 光感测装置优选是光电晶体管,并且光感测电路优选地放置在光感测装置和开关之间,用于放大和调理光感测信号。 光功能分支电路可以是光调制器,光接收器或任何其它仅在存在入射光时被操作和供电的装置。 开关可以是耦合到光感测装置的逻辑门或晶体管开关,以及耦合到诸如电源或时钟输入的光功能子电路的输入,用于交替地启用和禁用光功能子电路的输入。
    • 7. 发明授权
    • Apparatus and method for testing integrated circuits
    • 集成电路测试装置和方法
    • US06636056B1
    • 2003-10-21
    • US09693339
    • 2000-10-20
    • Siegfried Fleischer
    • Siegfried Fleischer
    • G01R31308
    • G01R31/311
    • A method and apparatus for testing the operability of a signal source formed on a die are described. A pair of modulators are formed on the die and coupled to the signal source. An optical unit is optically coupled to the pair of modulators, which are capable of modulating an optical beam in response to a signal provided by the signal source. The optical unit is capable of detecting modulation of the optical beam. To test the signal source, the signal source is set to generate a signal. If modulation of the optical beam is detected at the optical unit, then the signal source is operable. If modulation of the optical beam is not detected at the optical unit, then the signal source is not operable.
    • 描述了用于测试在模具上形成的信号源的可操作性的方法和装置。 在芯片上形成一对调制器并耦合到信号源。 光学单元光学耦合到该对调制器,其能够响应于由信号源提供的信号调制光束。 光学单元能够检测光束的调制。 为了测试信号源,信号源被设置为产生信号。 如果在光学单元处检测到光束的调制,则信号源是可操作的。 如果在光学单元处未检测到光束的调制,则信号源不可操作。