Heating Cooking Device
    3.
    发明申请
    Heating Cooking Device 审中-公开
    加热烹饪装置

    公开(公告)号:US20140360380A1

    公开(公告)日:2014-12-11

    申请号:US14365684

    申请日:2012-09-05

    IPC分类号: H05B6/80 H05B6/64

    摘要: A heating cooking device 1 includes: a heating unit 5 which heats an object to be heated C; an electromagnetic wave generation unit 15 which radiates electromagnetic waves E having a frequency of 100 GHz to 120 THz towards the object to be heated C for determining a cooking state of the object to be heated C; an electromagnetic wave detection unit 16 which detects the electromagnetic waves E radiated by the electromagnetic wave generation unit 15; and a CPU 13 which determines a cooking state of the object to be heated C based on a signal output by the electromagnetic wave detection unit 16 which detects the electromagnetic waves E. The heating cooking device 1 detects the electromagnetic waves E, an intensity of which is changed by striking the object to be heated C and determine the cooking state of the object to be heated C.

    摘要翻译: 加热烹饪器具1包括:加热被加热物C的加热单元5; 电磁波产生单元15,其向被加热物C辐射具有100GHz至120Hz的频率的电磁波E,以确定被加热物C的烹饪状态; 电磁波检测单元16,检测由电磁波产生单元15辐射的电磁波; 以及CPU13,其基于检测电磁波E的电磁波检测单元16输出的信号来决定被加热物C的烹调状态。加热烹调器1检测电磁波E的强度, 通过冲击被加热物C而改变,并确定被加热物C的烹调状态。

    Magnetic sensor device having near field light generation section employing a dielectric layer between a protruding metal layer and magnetic layer
    5.
    发明授权
    Magnetic sensor device having near field light generation section employing a dielectric layer between a protruding metal layer and magnetic layer 有权
    具有近场光产生部分的磁传感器装置,其采用突出的金属层和磁性层之间的电介质层

    公开(公告)号:US08208214B2

    公开(公告)日:2012-06-26

    申请号:US12225901

    申请日:2007-03-27

    IPC分类号: G11B5/02

    摘要: A magnetic sensing section is constituted by a magneto-resistive device in which a fixed magnetization layer, a non-magnetic layer, and a magnetization-free layer are deposited in that order on a first buffer layer that is deposited on a magnetic layer. A second buffer layer sandwiches the magnetic sensing section, and a biasing layer which covers right and left sides of the magnetic sensing section. The second buffer layer is deposited on the magnetic layer with a nonconductor layer interposed therebetween. A near field light generation section constituted by a second magnetic layer, a dielectric layer, and a metal layer is formed on a surface of the second buffer layer not adjacent to the nonconductor layer. The resultant magnetic sensor device can efficiently perform photo-assisted reproduction of information from a magnetic recording medium using a magnetic reproduction head or a magnetic reproducer.

    摘要翻译: 磁感测部分由磁阻装置构成,其中在沉积在磁性层上的第一缓冲层上依次沉积固定磁化层,非磁性层和无磁化层。 第二缓冲层夹着磁感测部,以及覆盖磁感应部的右侧和左侧的偏置层。 第二缓冲层沉积在磁性层上,其间插入非导体层。 在不与非导体层相邻的第二缓冲层的表面上形成由第二磁性层,电介质层和金属层构成的近场光产生部。 所得到的磁传感器装置可以使用磁再现头或磁再现器有效地执行来自磁记录介质的信息的光辅助再现。

    Method for forming fine particles, method for forming concavities and convexities, and device for forming fine particles
    6.
    发明授权
    Method for forming fine particles, method for forming concavities and convexities, and device for forming fine particles 失效
    形成细颗粒的方法,形成凹凸的方法和用于形成细颗粒的装置

    公开(公告)号:US08152972B2

    公开(公告)日:2012-04-10

    申请号:US12291817

    申请日:2008-11-13

    IPC分类号: C23C14/00

    摘要: A method of the present invention for forming fine particles includes forming fine particles on a substrate by supplying, in the presence of inert gas, to the substrate, atoms or molecules of a supply material capable of being combined with a material constituting a surface of the substrate to produce a compound, the atoms or the molecules being supplied from a supply source. The supply source is positioned in such a manner as not to be directly connected by a line with the surface of the substrate where the fine particles are to be formed, and a high-frequency voltage varying positively and negatively, ranging from 100 kHz to 100 MHz, is applied to at least one of the substrate and a substrate supporter for supporting the substrate. This realizes a method for forming fine particles that allows forming highly uniformed magnetic fine particles with a periodic pattern through a simple process at a time.

    摘要翻译: 本发明的形成微粒子的方法包括:在惰性气体存在下,向衬底,能够与构成表面的材料组合的供给材料的原子或分子, 底物以产生化合物,原子或分子从供应源供应。 供给源的定位方式不是通过与要形成细颗粒的基板的表面的线直接连接,并且从100kHz到100的范围内正向和负的变化的高频电压 MHz,被施加到用于支撑衬底的衬底和衬底支撑体中的至少一个。 这实现了形成细颗粒的方法,其允许通过简单的工艺一次形成具有周期性图案的高度均匀的磁性细颗粒。

    Optical storage medium, optical read/write apparatus, and optical read/write method
    9.
    发明申请
    Optical storage medium, optical read/write apparatus, and optical read/write method 有权
    光存储介质,光读/写装置和光读/写方式

    公开(公告)号:US20100262981A1

    公开(公告)日:2010-10-14

    申请号:US12798333

    申请日:2010-03-31

    IPC分类号: G11B17/028 G11B7/26

    摘要: An optical read/write apparatus causes a read/write light beam from illuminating means to strike only one side of an optical storage medium including stacked data storage layers each of which is readable/writeable separately from the other layers. In this case, the optical read/write apparatus operates so that data is read/written from/into a second data storage layer after fully recording a recordable area of a first data storage layer. Thus, light can be shone with uniform intensity across the substantially entire recordable area of the second data storage layer without using a complex read/write system even under such conditions that the transmittance to light of the first data storage layer in the recordable area may vary depending on whether any data is recorded in the recordable area.

    摘要翻译: 光学读/写装置使得来自照明装置的读/写光束仅对包括堆叠的数据存储层的光存储介质的一侧进行打印,每个存储层与其它层分开地可读/写。 在这种情况下,光学读/写装置的操作使得在完全记录第一数据存储层的可记录区域之后,数据从/向第二数据存储层进行读/写。 因此,即使在可记录区域中的第一数据存储层的透光率可以变化的条件下,也可以在第二数据存储层的大致整个可记录区域上照射光,而不使用复杂的读/写系统 取决于任何数据是否记录在可记录区域。