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    • 3. 发明申请
    • Method for Functionalising Fluid Lines Contained in a Micromechanical Device, Micromechanical Device Including Functionalised Lines, and Method for Manufacturing Same
    • 包含在机械装置中的流体线的功能化方法,包括功能化线的微机械装置及其制造方法
    • US20130149196A1
    • 2013-06-13
    • US13805491
    • 2011-06-29
    • Vincent AgacheAntoine HoangFrancoise Vinet
    • Vincent AgacheAntoine HoangFrancoise Vinet
    • G03F7/24
    • G03F7/24B81B2201/0214B81B2201/058B81B2201/06B81C1/00206B81C2201/0154F04B19/006
    • The present invention relates to a method for functionalising fluid lines (1b) in a micromechanical device, the walls of which include an opaque layer. For this purpose, the invention provides a method for functionalising a micromechanical device provided with a fluid line including a peripheral wall (5) having a surface (2) outside the line and an inner surface (3) defining a space (1b) in which a fluid can circulate, the peripheral wall at least partially including a silicon layer (5a). The method includes the following steps: a) providing a device, the peripheral wall (5) of which at least partially includes a silicon layer (5a) having, at least locally, a thickness (e) of more than 100 nm and less than 200 nm, advantageously of 160 to 180 nm; c) silanising at least the inner surface of the fluid line; d) the localised, selective photo-deprotection on at least the inner surface of the silanised device by exposing the peripheral wall (5) at the point at which said wall has a thickness (e) of more than 100 nm and less than 200 nm, advantageously of 160 to 180 nm.
    • 本发明涉及一种在微机械装置中功能化流体管线(1b)的方法,其中壁部包括不透明层。 为此,本发明提供了一种功能化微机械装置的方法,该微机械装置具有流体管线,该流体管线包括具有在管线外部的表面(2)的周壁(5)和限定空间(1b)的内表面(3),其中 流体可以循环,周壁至少部分地包括硅层(5a)。 该方法包括以下步骤:a)提供一种器件,其外围壁(5)至少部分地包括硅层(5a),该硅层至少局部地具有大于100nm的厚度(e)并且小于 200nm,有利地为160〜180nm; c)至少对流体管线的内表面进行硅烷化; d)通过在所述壁的厚度(e)大于100nm且小于200nm的点处暴露周壁(5),至少在硅烷化装置的内表面上进行局部选择性光 - 去保护 ,有利地为160至180nm。
    • 4. 发明授权
    • Method for detection of a contactless receiver
    • 非接触式接收机检测方法
    • US08699949B2
    • 2014-04-15
    • US13446296
    • 2012-04-13
    • Pierre-Henri ThevenonOlivier Savry
    • Pierre-Henri ThevenonOlivier Savry
    • H04B5/00
    • G06K7/0008G06K7/10128
    • A method for detecting a contactless receiver in a field of an antenna of a contactless reader includes during a first ramp interval, exciting the antenna by applying a potential difference comprising a ramp between first and second values of the potential difference, and during a first plateau interval following the first ramp interval, maintaining the potential difference at the second value of the potential difference, while maintaining the potential difference at the plateau, measuring a response of the antenna, comparing the measured response and a reference response, and determining presence of a contactless receiver in the field of the antenna based at least in part on a result of the comparison.
    • 一种用于检测非接触读取器的天线领域中的非接触式接收机的方法,包括在第一斜坡间隔期间,通过施加包括电位差的第一和第二值之间的斜坡的电位差,以及在第一平台期间激励天线 间隔跟随第一斜坡间隔,在电位差的第二值处保持电位差,同时保持平台上的电位差,测量天线的响应,比较测量的响应和参考响应,并确定 至少部分地基于比较的结果,在天线领域中的非接触式接收器。
    • 5. 发明申请
    • METHOD FOR MANUFACTURING A HYDROGEN TANK WITH METAL HYDRIDES
    • 用金属氢化物制造氢气罐的方法
    • US20110138748A1
    • 2011-06-16
    • US12992570
    • 2009-05-12
    • Gillia OlivierMaxime BotzungMichel Latroche
    • Gillia OlivierMaxime BotzungMichel Latroche
    • B65B63/00
    • C01B3/0084C01B3/0005C01B3/0026C01B3/0036C01B3/0042C01B3/0047C01B3/0068F17C11/005Y02E60/321Y02E60/327
    • A method for manufacturing a tank for storing hydrogen in metal hydride powder comprising a closed enclosure divided into closed elementary cells (1) defined by walls (2, 3, 4, 5), each of the cells (1) containing metal hydride powder (6), characterized in that each of the cells (1) is manufactured successively by carrying out the following steps: certain of the walls defining it are assembled in order to form an open cavity or alveolar cell, and then one or more massive pieces (7) of a material capable of forming a metal hydride are placed in said cavity, and then the last walls of the cell (1) are assembled in order to close the latter; the aforementioned steps are repeated for manufacturing all the cells (1) of the enclosure, and then the enclosure is closed, hydrogen is introduced into the enclosure for transforming the massive piece(s) (7) into the metal hydride powder (6).
    • 一种制造用于在金属氢化物粉末中储存氢的罐的方法,其包括被分为由壁(2,3,4,5)限定的封闭元件电池(1)的封闭外壳,每个电池(1)包含金属氢化物粉末 其特征在于,通过执行以下步骤来连续制造每个电池(1):限定它们的某些壁被组装以形成开放空腔或肺泡电池,然后形成一个或多个巨块( 将能够形成金属氢化物的材料7放置在所述空腔中,然后组装电池(1)的最后壁以关闭电池; 为了制造外壳的所有电池(1),重复上述步骤,然后关闭外壳,将氢气引入外壳中,以将大块(7)转换成金属氢化物粉末(6)。