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    • 4. 发明授权
    • Optical signal storage
    • 光信号存储
    • US06819817B2
    • 2004-11-16
    • US10173060
    • 2002-06-17
    • Yasuhisa KanekoYou Kondoh
    • Yasuhisa KanekoYou Kondoh
    • G02F1295
    • G11C13/04G11C21/00
    • Optical signal storage devices are described. In one aspect, an optical signal storage device includes an optical memory loop and a substrate. The substrate carries an input optical port, an output optical port, an optical signal path that is coupled between the input and output optical ports, an optical memory path that is coupled to complete the optical memory loop, and an optical read/write controller that is coupled between the optical signal path and the optical memory path. The optical read/write controller is operable to selectively transmit light between the optical signal path and the optical memory path based on received control light. In another aspect, the optical read/write controller comprises at least one saturable absorber optical switch having a transmittance that varies nonlinearly with received light intensity so that light is selectively transmittable between the optical memory loop and the input and output optical ports based on received control light.
    • 描述光信号存储装置。 一方面,光信号存储装置包括光学存储器环路和基板。 衬底承载输入光学端口,输出光学端口,耦合在输入和输出光学端口之间的光学信号路径,耦合以完成光学存储器环路的光学存储器路径以及光学读取/写入控制器 耦合在光信号路径和光存储器路径之间。 光学读/写控制器可操作以基于接收的控制光选择性地在光信号路径和光存储器路径之间传输光。 在另一方面,光学读/写控制器包括至少一个可饱和吸收器光开关,其具有随接收光强度非线性变化的透射率,使得基于接收的控制在光存储器环路和输入和输出光端口之间选择性地透射光 光。
    • 5. 发明授权
    • Multi-substrate liquid metal high-frequency switching device
    • 多基板液态金属高频开关装置
    • US06927350B2
    • 2005-08-09
    • US10738539
    • 2003-12-16
    • You KondohTsutomu Takenaka
    • You KondohTsutomu Takenaka
    • H01H11/02H01H1/00H01H29/02H01H29/28H01H29/30H01H61/01H01H61/02H01H29/00
    • H01H29/28H01H1/0036H01H61/02H01H2029/008H01H2061/006
    • A device and manufacturing method are provided that comprises forming first and second substrates joined together and comprising a main channel provided in at least one of the substrates and a connecting channel provided in at least one of the substrates, the connecting channel connected to the main channel, and the main channel having spaced apart electrodes and at least partially filled with liquid metal. The method further comprises forming a heater substrate comprising a suspended heater element in fluid communication with the connecting channel, the suspended heater element operable to cause a fluid non-conductor to separate the liquid metal and selectively interconnect the electrodes, and providing a high-frequency signal loss reduction structure between the main channel and the heater substrate.
    • 提供了一种装置和制造方法,包括:形成连接在一起的第一和第二基板,并且包括设置在至少一个基板中的主通道和设置在至少一个基板中的连接通道,连接通道连接到主通道 ,并且主通道具有间隔开的电极并且至少部分地填充有液态金属。 该方法还包括形成加热器基板,该加热器基板包括与连接通道流体连通的悬置加热器元件,该悬挂加热器元件可操作以使流体非导体分离液态金属并选择性地互连电极,并提供高频 主通道和加热器基板之间的信号损失减小结构。
    • 7. 发明授权
    • Multi-pole conductive liquid-based switch device
    • 多极导电液体开关装置
    • US06756552B2
    • 2004-06-29
    • US10080648
    • 2002-02-21
    • Tsutomu TakenakaYou Kondoh
    • Tsutomu TakenakaYou Kondoh
    • H01H2922
    • H01H1/0036H01H29/28H01H2029/008
    • The multi-pole, conductive liquid-based switch device includes an elongate passage, a first cavity, a second cavity, at least four electrodes disposed along the length of the passage, channels that extend from the passage, non-conductive fluid located the cavities and conductive liquid located in the passage. The channels are one fewer in number than the electrodes and are interleaved with the electrodes along the length of the passage. The channels are numbered in order from one end of the passage. Odd-numbered ones of the channels extend to the first cavity while even-numbered ones of the channels extend to the second cavity.
    • 多极导电液体开关装置包括细长通道,第一空腔,第二空腔,沿着通道长度设置的至少四个电极,从通道延伸的通道,位于空腔内的非导电流体 和位于通道中的导电液体。 通道数量比电极少一个,并且沿着通道的长度与电极交错。 通道从通道的一端开始按顺序编号。 通道中的奇数通道延伸到第一腔,而偶数通道延伸到第二腔。
    • 8. 发明授权
    • Surface joined multi-substrate liquid metal switching device
    • 表面接合多基板液态金属开关装置
    • US06872903B2
    • 2005-03-29
    • US10738665
    • 2003-12-16
    • Tsutomu TakenakaYou Kondoh
    • Tsutomu TakenakaYou Kondoh
    • H01H61/01H01H1/08H01H29/28H01H29/30H01H61/013H01H29/00
    • H01H29/28H01H2029/008
    • A device and manufacturing method are provided comprising first and second substrates comprising a main channel provided in at least one of the substrates and a first connecting channel provided in at least one of the substrates and in fluid communication with the main channel. The main channel comprising spaced apart electrodes and filling the main channel at least partially with liquid metal. The method further comprising a first heater substrate comprising a first suspended heater element in fluid communication with the first connecting channel with the first suspended heater element operable to cause a fluid non-conductor to separate the liquid metal and selectively interconnect the electrodes and surface joining the first, second, and first heater substrates.
    • 提供了一种装置和制造方法,包括第一和第二基板,其包括设置在至少一个基板中的主通道和设置在至少一个基板中并与主通道流体连通的第一连接通道。 主通道包括间隔开的电极并且至少部分地用液体金属填充主通道。 该方法还包括第一加热器基板,其包括与第一连接通道流体连通的第一悬挂加热器元件,其中第一悬挂加热器元件可操作以使流体非导体分离液态金属并选择性地将电极和表面连接 第一,第二和第一加热器基板。