会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 42. 发明授权
    • Vibration driven motor
    • 振动驱动电机
    • US5187406A
    • 1993-02-16
    • US750329
    • 1991-08-27
    • Hiroyuki Seki
    • Hiroyuki Seki
    • H01L41/09H02N2/00H02N2/16
    • H02N2/163
    • A vibration member for a vibration driven motor having a contact member contacting the vibration member, wherein the vibration member generates a vibration in response to an applied electrical signal to create relative movement between the vibration member and the contact member. The vibration member is formed of a sintering material, such as a sintering alloy, having a porosity of 20% or less. The porous vibration member further may include a metal or high molecular compound having a low vibration absorbing property added to the pores of the member by a method of impregnation or infiltration.
    • 一种用于振动驱动电动机的振动部件,其具有接触所述振动部件的接触部件,其中所述振动部件响应于所施加的电信号产生振动,以产生所述振动部件和所述接触部件之间的相对运动。 振动部件由孔隙率为20%以下的烧结合金等烧结材料形成。 多孔振动部件还可以包括通过浸渍或渗透的方法将具有低振动吸收特性的金属或高分子化合物添加到部件的孔中。
    • 45. 发明授权
    • Method of generating key
    • 生成密钥的方法
    • US09209970B2
    • 2015-12-08
    • US13976573
    • 2011-12-27
    • Jun NodaHiroyuki SekiYoshitaka Nakamura
    • Jun NodaHiroyuki SekiYoshitaka Nakamura
    • H04L9/00H04L9/08H04M1/725
    • H04L9/0861H04M1/7253H04M2250/12H04M2250/64
    • According to a method of generating a key of the present invention, a first device and a second device are first brought into contact with one vibrator. In this state, the vibrator generates vibration. A first acceleration sensor provided in the first device and a second acceleration sensor provided in the second device detect the vibration. Subsequently, the first device notifies the second device of a first feature value based upon the detection result of the first acceleration sensor. The second device notifies the first device of a second feature value based upon the detection result of the second acceleration sensor. Then the first device compares the notified second feature value with the first feature value and generates a key based upon the comparison result. The second device compares the notified first feature value with the second feature value and generates a key based upon the comparison result.
    • 根据本发明的产生钥匙的方法,首先使第一装置和第二装置与一个振动器接触。 在这种状态下,振动器产生振动。 设置在第一装置中的第一加速度传感器和设置在第二装置中的第二加速度传感器检测振动。 随后,第一装置基于第一加速度传感器的检测结果向第二装置通知第一特征值。 第二装置基于第二加速度传感器的检测结果向第一装置通知第二特征值。 然后,第一设备将通知的第二特征值与第一特征值进行比较,并且基于比较结果生成密钥。 第二设备将通知的第一特征值与第二特征值进行比较,并且基于比较结果生成密钥。
    • 47. 发明授权
    • Hydrotreating catalyst, process for producing same, and process for hydrotreating hydrocarbon oil
    • 加氢处理催化剂,其制备方法以及加氢处理烃油的方法
    • US08962514B2
    • 2015-02-24
    • US13138774
    • 2010-03-18
    • Hiroyuki SekiYoshiaki FukuiMasanori Yoshida
    • Hiroyuki SekiYoshiaki FukuiMasanori Yoshida
    • B01J23/882B01J23/883C10G45/08B01J21/12B01J35/00B01J37/02B01J37/20B01J27/18B01J37/00B01J37/03
    • B01J23/883B01J21/12B01J23/882B01J27/18B01J35/002B01J37/0009B01J37/0045B01J37/0203B01J37/031B01J37/20C10G45/08C10G2300/207
    • A hydrotreating catalyst that exhibits excellent levels of both desulfurization activity and denitrification activity. The hydrotreating catalyst is prepared by supporting molybdenum, cobalt and nickel on a carrier comprising aluminum, silicon, phosphorus and boron, and then performing a presulfiding treatment, and has an average stacking number for molybdenum sulfide slab that is greater than 1.0 but not more than 1.9. Also, a process for producing a hydrotreating catalyst that enables a hydrotreating catalyst having excellent levels of both desulfurization activity and denitrification activity to be produced with comparative ease. The process includes a first step of mixing an acidic aluminum salt aqueous solution and a basic aluminum salt aqueous solution in the presence of phosphate ions and silicate ions to achieve a pH of 6.5 to 9.5, thereby obtaining a hydrate, a second step of adding boron to the hydrate to prepare a carrier-forming material, a third step of molding and calcining the carrier-forming material to obtain a carrier, a fourth step of supporting molybdenum, cobalt and nickel on the carrier to obtain a catalyst precursor, and a fifth step of performing a presulfiding treatment by bringing the catalyst precursor into contact with a mixed gas containing hydrogen and hydrogen sulfide under conditions including a pressure of not less than 2.0 MPa and a maximum temperature of 240 to 380° C.
    • 表现出优异的脱硫活性和脱氮活性水平的加氢处理催化剂。 加氢处理催化剂是通过在包含铝,硅,磷和硼的载体上负载钼,钴和镍,然后进行预硫化处理制备的,并且具有大于1.0但不大于 1.9。 另外,制造能够比较容易地制造具有优异的脱硫活性和脱氮活性水平的加氢精制催化剂的加氢精制催化剂的方法。 该方法包括在磷酸根离子和硅酸盐离子的存在下将酸性铝盐水溶液和碱性铝盐水溶液混合以达到6.5至9.5的pH,从而获得水合物的第一步骤,添加硼 水合物以制备载体形成材料,第三步骤:将载体形成材料模塑和煅烧以获得载体;第四步,在载体上负载钼,钴和镍以获得催化剂前体,第五步是将第五步 在不低于2.0MPa的压力和240〜380℃的最高温度的条件下,使催化剂前体与含有氢和硫化氢的混合气体接触进行预硫化处理的工序。