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    • 2. 发明授权
    • Electrochemical memory device
    • 电化学存储器件
    • US07652907B2
    • 2010-01-26
    • US11842250
    • 2007-08-21
    • Didier BlochFrederic Le Cras
    • Didier BlochFrederic Le Cras
    • G11C13/02H01M4/00H01M8/10
    • G11C13/02G11C2213/13G11C2213/55
    • A memory device including a stack of layers. At least one first active layer is based on a crystalline ionic and electronic conducting material capable of releasing and/or accepting at least one ionic species. At least one second active layer is based on a crystalline ionic and electronic conducting material capable of releasing and/or accepting the ionic species. The first active layer and the second active layer are based on a material that has a high potential variation for a low variation in the concentration of the ionic species. At least one layer forms an electrolyte between the first active layer and the second active layer, and is based on at least one ionic conducting and electronic insulating material. A measurement instrument is provided for measuring the electrochemical potential difference between the first active layer and the second active layer.
    • 包括层叠层的存储器件。 至少一个第一活性层基于能够释放和/或接受至少一种离子物质的结晶离子和电子导电材料。 至少一个第二活性层基于能够释放和/或接受离子物质的结晶离子和电子导电材料。 第一有源层和第二有源层基于对于离子物质的浓度的低变化具有高电位变化的材料。 至少一层在第一有源层和第二有源层之间形成电解质,并且基于至少一种离子导电和电子绝缘材料。 提供了一种用于测量第一有源层和第二有源层之间的电化学电势差的测量仪器。
    • 6. 发明申请
    • ELECTROCHEMICAL MEMORY DEVICE
    • 电化学记忆装置
    • US20080043515A1
    • 2008-02-21
    • US11842250
    • 2007-08-21
    • Didier Bloch
    • Didier Bloch
    • G11C11/00
    • G11C13/02G11C2213/13G11C2213/55
    • The invention relates to a memory device (100) comprising a stack of layers including: at least one first active layer (102) based on a crystalline ionic and electronic conducting material capable of releasing and/or accepting at least one ionic species, at least one second active layer (104) based on a crystalline ionic and electronic conducting material capable of releasing and/or accepting said ionic species, the first active layer and the second active layer being based on a material that have a high potential variation for a low variation in the concentration of said ionic species; at least one layer forming an electrolyte (106) between the first active layer and the second active layer, and based on at least one ionic conducting and electronic insulating material; measurement means (114) for measuring the electrochemical potential difference between said first active layer and said second active layer.
    • 本发明涉及包括一叠层的存储器件(100),其包括:至少一个第一有源层(102),其基于能够释放和/或接受至少一种离子物质的结晶离子和电子导电材料,至少 基于能够释放和/或接受所述离子物质的结晶离子和电子导电材料的第二有源层(104),所述第一有源层和所述第二有源层基于对于低电位具有高电位变化的材料 所述离子种类的浓度变化; 至少一层在第一有源层和第二有源层之间形成电解质(106),并且基于至少一种离子导电和电子绝缘材料; 用于测量所述第一有源层和所述第二有源层之间的电化学电势差的测量装置(114)。
    • 10. 发明授权
    • Secure electronic device
    • 安全电子设备
    • US06926204B2
    • 2005-08-09
    • US10477640
    • 2003-03-11
    • François VacherandGilles DelapierreDidier Bloch
    • François VacherandGilles DelapierreDidier Bloch
    • B42D15/10G06F21/06G06K19/073G06K19/077G06K19/06G06K5/00
    • G06K19/0716G06K19/073G06K19/07372G06K19/07381H01L23/576H01L2924/0002H01L2924/00
    • This invention relates to a secure electronic device comprising: at least an electronic circuit (10) containing information to be protected, an energy source (11); at least one sensor (12, 13, 14) capable of measuring a determined physical magnitude and outputting a value representative of this magnitude, means (15, 16, 17) of comparing each value with at least one predefined threshold (ref1, ref2, ref3) outputting result signals, a device (20) for protection of information comprising means for triggering destruction of at least part of the circuit using pyrotechnic means (27), a decision-making logical device (21) capable of activating the protection device after seeing the result signals, firing means (31) capable of priming a local or global pyrotechnic micro-charge (30) using electrical energy permanently stored in the energy source.
    • 本发明涉及一种安全电子设备,包括:至少包含要保护的信息的电子电路(10),能源(11); 至少一个传感器(12,13,14),其能够测量所确定的物理量值并输出代表该幅度的值,所述装置(15,16,17)将每个值与至少一个预定阈值进行比较(参考文献1,参考文献 2,ref 3)输出结果信号的装置(20),用于保护信息的装置(20),包括用于触发使用烟火装置(27)破坏所述电路的至少一部分的装置;能够激活所述电路的决策逻辑装置 保护装置在看到结果信号之后,能够使用永久存储在能源中的电能来启动局部或全球烟火微电荷(30)的点火装置(31)。