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    • 7. 发明申请
    • SENSOR DEVICE
    • 传感器设备
    • US20140167781A1
    • 2014-06-19
    • US14235933
    • 2011-08-03
    • Satoshi AsanoMasahiro MatsumotoHIroshi NakanoKeiji Hanzawa
    • Satoshi AsanoMasahiro MatsumotoHIroshi NakanoKeiji Hanzawa
    • G01R1/18G01D7/00
    • G01R1/18B81B3/0086G01D7/00
    • An objective of the present invention is to provide a sensor device with an increased accuracy. In order to achieve the objective, provided is a sensor device includes: an external terminal 2 to which an external device is connected; a ground terminal 3 connected to the ground; an internal circuit 4 that generates a sensor output signal; and a protection circuit 5 having a resistive element 6 and a capacitative element 7 between the external terminal and the internal circuit, in which the capacitative element is formed of a pair of electrodes having different conductivities from each other and a lower-conductive electrode 7a of the electrodes which has a smaller conductivity is connected to the external terminal and the internal circuit.
    • 本发明的目的是提供一种具有更高精度的传感器装置。 为了实现该目的,提供了一种传感器装置,包括:连接有外部装置的外部端子2; 连接到地面的接地端子3; 产生传感器输出信号的内部电路4; 以及保护电路5,其在外部端子和内部电路之间具有电阻元件6和电容元件7,其中电容元件由彼此具有不同电导率的一对电极形成,并且电容元件7的下导电电极7a 具有较小导电性的电极连接到外部端子和内部电路。
    • 8. 发明申请
    • Thermal Flow Meter
    • 热流量计
    • US20130199280A1
    • 2013-08-08
    • US13813094
    • 2011-07-28
    • Hiroshi NakanoMasahiro MatsumotoSatoshi AsanoKeiji Hanzawa
    • Hiroshi NakanoMasahiro MatsumotoSatoshi AsanoKeiji Hanzawa
    • G01F1/692
    • G01F1/692G01F1/6842G01F1/699
    • An object of the present invention is to provide a thermal type flow rate sensor that offers high sensitivity and improved reliability. A sensor element according to the present invention includes a semiconductor substrate, a cavity portion formed on the semiconductor substrate, a heating resistor formed on the cavity portion via an electrically insulating film, a heating temperature sensor for detecting heating temperature of the heating resistor, and a driving circuit for controlling the heating temperature of the heating resistor using the temperature detected by the heating temperature sensor. The heating temperature sensor comprises temperature-sensitive resistors having resistance values varying according to temperature and disposed upstream and downstream of a direction of flow of a fluid to be measured relative to the heating resistor and on upper and lower sides in a direction perpendicular to the direction of flow of the fluid to be measured relative to the heating resistor.
    • 本发明的目的是提供一种提供高灵敏度和改善的可靠性的热式流量传感器。 根据本发明的传感器元件包括半导体衬底,形成在半导体衬底上的空腔部分,通过电绝缘膜形成在空腔部分上的发热电阻器,用于检测加热电阻器的加热温度的加热温度传感器,以及 使用由加热温度传感器检测到的温度来控制加热电阻器的加热温度的驱动电路。 加热温度传感器包括具有根据温度变化的电阻值的温度敏感电阻器,并且设置在相对于加热电阻器的被测量流体的流动方向的上游和下游以及垂直于该方向的方向上下侧 要测量的流体相对于加热电阻器的流动。
    • 10. 发明申请
    • Method for concentration of gold in copper sulfide minerals
    • 硫化铜矿物中金的浓度测定方法
    • US20100242681A1
    • 2010-09-30
    • US12659832
    • 2010-03-23
    • Noriyuki NagaseSatoshi AsanoMasatoshi TakanoKenji TakedaShinichi HeguriAtsushi Idegami
    • Noriyuki NagaseSatoshi AsanoMasatoshi TakanoKenji TakedaShinichi HeguriAtsushi Idegami
    • C22B11/00C22B15/00C25C1/12
    • C22B15/0071C22B3/08C22B3/20C22B11/042Y02P10/214Y02P10/234Y02P10/236
    • Disclosed herein is a method for concentrating gold contained in a leach residue obtained in a copper hydrometallurgical process for recovering copper from a copper sulfide mineral to efficiently separate and recover gold from the leach residue. According to the method, a gold-bearing copper sulfide mineral is subjected to pressure leaching with sulfuric acid at a temperature higher than 102° C. and 112° C. or lower to obtain a leach residue, and the leach residue is subjected to flotation to separate it into a float fraction and a sink fraction. The float fraction obtained by flotation is desulfurized by heating at a temperature of 250 to 800° C. under an inert atmosphere to obtain a desulfurized product. The desulfurized product is subjected to oxidative roasting by heating at a temperature of 600 to 800° C. under an atmosphere of flowing oxygen or air to obtain an oxidatively-roasted product. The oxidatively-roasted product is dissolved in a sulfuric acid solution to obtain a copper solution, and a gold-bearing residue is separated and recovered from the copper solution.
    • 本文公开了一种用于浓缩在铜湿法冶金方法中获得的浸出残渣中所含的金的方法,用于从硫化铜矿物中回收铜以有效地从浸出残渣中分离和回收金。 根据该方法,将含金硫化铜矿物在高于102℃和112℃或更低的温度下用硫酸进行压力浸出以获得浸出残渣,并将浸出残渣进行浮选 将其分离成浮球分数和水槽分数。 通过浮选获得的浮选级分在惰性气氛下在250〜800℃的温度下加热脱硫,得到脱硫产物。 通过在氧气或空气流动的气氛中,在600〜800℃的温度下加热,对脱硫物进行氧化焙烧,得到氧化焙烧物。 将氧化焙烧物溶解在硫酸溶液中,得到铜溶液,从铜溶液中分离回收含金残留物。