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    • 3. 发明授权
    • Radio apparatus capable of detecting field intensity
    • 能够检测场强的无线电装置
    • US5689813A
    • 1997-11-18
    • US447346
    • 1995-05-23
    • Kenji Seki
    • Kenji Seki
    • H04B7/26H04Q7/38H04W24/00H04W88/02H04B17/00
    • H04B17/327
    • A radio apparatus has a detector for detecting the electric field intensity of a test signal received from the other radio apparatus. The detector produces a mean value of the field intensity detected at a predetermined interval and outputs the resulting latest field intensity level signal to a memory circuit. Further, the detector sequentially compares the latest field intensity level signal with a plurality of intensity level signals stored in the memory circuit and thereby delivers a decision signal to a display. In response, the display displays a detailed positional relation between the two radio apparatuses.
    • 无线电设备具有用于检测从另一个无线电设备接收的测试信号的电场强度的检测器。 检测器产生以预定间隔检测的场强的平均值,并将所得最新的场强度电平信号输出到存储电路。 此外,检测器顺序地将最近的场强度电平信号与存储在存储器电路中的多个强度电平信号相比较,从而将判定信号传送到显示器。 作为响应,显示器显示两个无线电设备之间的详细位置关系。
    • 7. 发明授权
    • Method of manufacturing heat storage material, heat storage material, and heat storage adsorbent material and canister
    • 制备储热材料,储热材料和储热吸附剂材料罐的方法
    • US08323450B2
    • 2012-12-04
    • US12516223
    • 2009-04-22
    • Kenji Seki
    • Kenji Seki
    • B01D53/02B01J20/28C09J161/10C09K5/06F02M33/02B32B3/26
    • C09K5/063F02M25/0854Y10T428/249997
    • The invention relates to a method of manufacturing a heat storage material that contains heat storage capsules. The heat storage capsules include a phase change material that absorbs and/or discharges latent heat in response to a change in temperature. The phase change material resides within outer shells of the heat storage capsules. The method involves binding abutting peripheral portions of a plurality of heat storage capsules with a molding binder, so as to form an intermediate granular molded heat storage material. An outer peripheral surface portion of the granular molded heat storage material is coated with a coating binder. The coated granular molded heat storage material is then subjected to a treatment that causes the coating binder of the coating layer to polymerize. The invention also relates to heat storage adsorbent materials, and articles (e.g., canisters) that include such heat storage adsorbent materials.
    • 本发明涉及一种制造包含蓄热胶囊的蓄热材料的方法。 蓄热胶囊包括响应于温度变化而吸收和/或排出潜热的相变材料。 相变材料位于储热胶囊的外壳内。 该方法包括用成型粘合剂粘合多个储热胶囊的邻接周边部分,以便形成中间颗粒状模制蓄热材料。 颗粒状模制储热材料的外周表面部分涂覆有涂料粘合剂。 然后对涂覆的颗粒状模制储热材料进行使涂层的涂层粘合剂聚合的处理。 本发明还涉及储热吸附剂材料和包括这种储热吸附材料的制品(例如罐)。
    • 9. 发明授权
    • Canister
    • US07543574B2
    • 2009-06-09
    • US11896693
    • 2007-09-05
    • Koji YamazakiTakashi HasumiKenji Seki
    • Koji YamazakiTakashi HasumiKenji Seki
    • F02M33/02F02M33/04
    • F02M25/0854B01D53/0415B01D53/0438B01D2259/4516F02M2025/0881
    • A canister includes a casing having a gas passage which extends from a first passage end formed with a charge port to let in fuel vapor and a purge port to let out the fuel vapor, to a second passage end formed with an atmospheric air port to let in air, and which includes a heat storing and adsorbing chamber in which a granular adsorbing material and a granular heat storing material are held. The granular heat storing material contains capsules each including a phase-change material enclosed in a multilayer outer shell which includes an inner layer of a hydrophobic resin and an outer layer of a hydrophilic resin covering the inner layer.
    • 一种罐包括一个壳体,该壳体具有从形成有充气口的第一通道端延伸以使燃料蒸气和吹扫口排出燃料蒸气的气体通道,形成为形成有大气空气口的第二通道,以使 在空气中,包括储存和吸附室,其中保持颗粒状吸附材料和颗粒状蓄热材料。 颗粒状储热材料包含胶囊,每个胶囊均包含封闭在多层外壳中的相变材料,该多层外壳包括疏水性树脂的内层和覆盖内层的亲水性树脂的外层。