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    • 52. 发明申请
    • Electronic clinical thermometer
    • 电子体温计
    • US20040114668A1
    • 2004-06-17
    • US10728972
    • 2003-12-08
    • Chih-Wei Hsieh
    • G01K007/00G01K001/00
    • G01K13/002
    • An electronic thermometer is constructed to include a casing, an electronic thermometer module mounted in the casing, a metal probe electrically connected to the electronic thermometer module for sensing the body temperature, an integrally formed flexible covering covered on the casing, and a hard stem connecting the metal probe to the distal end of the tapered front portion of the flexible covering, whereby the stress produced at the time when the measuring end is bent for measuring body temperature will be concentrated at a root portion with a larger inner diameter thereby preventing the measuring end from breaking and ensuring safety in operation. Furthermore, the flexible covering appropriately encloses the casing and has a tapered front portion protruded over the front side of the casing to a distance and has an integrally formed push button, locating flange, and embossed portions for waterproof, decoration and holding convenience thereby reducing manufacturing process and lowering the cost.
    • 一种电子体温计的结构包括壳体,安装在壳体中的电子温度计模块,电连接到用于感测体温的电子温度计模块的金属探针,覆盖在壳体上的整体形成的柔性覆盖物和连接 金属探针到柔性覆盖物的锥形前部的远端,由此在测量端弯曲以测量体温时产生的应力将集中在具有较大内径的根部处,从而防止测量 从破坏到确保运行安全。 此外,柔性覆盖物适当地包围壳体,并且具有在壳体的前侧上突出一段距离的锥形前部,并且具有整体形成的按钮,定位凸缘和压花部分,用于防水,装饰和保持便利性,从而减少制造 处理和降低成本。
    • 55. 发明申请
    • Temperature sensor circuit, semiconductor integrated circuit, and method of adjusting the temperature sensor circuit
    • 温度传感器电路,半导体集成电路及温度传感器电路调整方法
    • US20040095986A1
    • 2004-05-20
    • US10636310
    • 2003-08-06
    • SEIKO EPSON CORPORATION
    • Masahiko Tsuchiya
    • G01K007/00
    • G01K7/01G01K2219/00
    • A temperature sensor circuit which includes: an adjustment circuit which generates a first divided voltage obtained by dividing a reference voltage; a current generation circuit which has a transistor element and generates a current corresponding to a gate voltage of the transistor element, the first divided voltage being supplied to a gate terminal of the transistor element; a voltage generation circuit which includes a diode element to which the current is supplied, an analog voltage being generated between both ends of the diode element; and an analog/digital (A/D) conversion circuit which compares a second divided voltage obtained by dividing the reference voltage with the analog voltage and converts the analog voltage into a digital value.
    • 一种温度传感器电路,包括:调整电路,其生成通过划分参考电压而获得的第一分压; 电流产生电路,其具有晶体管元件并产生与晶体管元件的栅极电压相对应的电流,第一分压被提供给晶体管元件的栅极端子; 电压产生电路,其包括供给所述电流的二极管元件,在所述二极管元件的两端之间产生模拟电压; 以及模拟/数字(A / D)转换电路,其将通过将参考电压除以所获得的第二分压与模拟电压进行比较,并将模拟电压转换为数字值。
    • 56. 发明申请
    • DEVICE FOR MEASURING TEMPERATURE OF SEMICONDUCTOR INTEGRATED CIRCUIT
    • 用于测量半导体集成电路温度的器件
    • US20040081224A1
    • 2004-04-29
    • US10391592
    • 2003-03-20
    • Mitsubishi Denki Kabushiki Kaisha
    • Takehiko UmeyamaKazuyuki Ohmi
    • G01K007/00
    • G01K7/01
    • Includes first and second current mirror circuits, an N channel transistor connected to an output terminal of the second current mirror circuit, an npn transistor connected to an output terminal of the first current mirror circuit and the N channel transistor, and an operational transistor connected to a node between the second current circuit and the N channel transistor. Current that flow from the second current mirror circuit to the N channel transistor and from the N channel transistor to the npn transistor have different temperature coefficients. The operational amplifier corrects the difference in the temperature coefficients of these currents to output a voltage of ground electric potential standard.
    • 包括第一和第二电流镜电路,连接到第二电流镜电路的输出端的N沟道晶体管,连接到第一电流镜电路和N沟道晶体管的输出端的npn晶体管,以及连接到 第二电流电路和N沟道晶体管之间的节点。 从第二电流镜电路流向N沟道晶体管,从N沟道晶体管流向npn晶体管的电流具有不同的温度系数。 运算放大器校正这些电流的温度系数的差异,以输出地电位标准电压。
    • 57. 发明申请
    • Temperature probe and thermometer having the same
    • 温度探头和温度计相同
    • US20040071190A1
    • 2004-04-15
    • US10274220
    • 2002-10-18
    • Hsiao-Yi Chang
    • G01K007/00
    • G01K13/002
    • A temperature probe for use in a medical thermometer. The temperature probe includes a probe body and a hollow tip member secured to the probe body. The hollow tip member further has a thermal contact surface. The thermal sensor is mounted on the inside of the thermal contact surface so as to sense the temperature of the thermal contact surface and produce a temperature signal. Wires are connected to the thermal sensor to pass the temperature signal. Specifically, each of the wires have at least a portion bonded to the inside of the thermal contact surface, thereby allowing the wires to reach thermal equilibrium quickly.
    • 用于医用温度计的温度探头。 温度探头包括探针体和固定到探针体的中空尖端部件。 中空尖端构件还具有热接触表面。 热传感器安装在热接触表面的内侧,以便感测热接触表面的温度并产生温度信号。 电线连接到热传感器以传递温度信号。 具体地说,每个电线具有至少一部分结合到热接触表面的内部,从而允许电线快速达到热平衡。
    • 59. 发明申请
    • Microwave power sensor and method for manufacturing the same
    • 微波功率传感器及其制造方法
    • US20040057495A1
    • 2004-03-25
    • US10287585
    • 2002-11-05
    • KOREA ELECTONICS TECHNOLOGY INSTITUTE
    • Dae Sung LeeKyung Il LeeHak In Hwang
    • G01K007/00
    • G01R21/04G01K11/006
    • The present invention relates to a microwave power sensor and a method for manufacturing the same. The microwave power sensor comprises a semiconductor substrate with a nitride or oxide film formed thereon; a membrane which is a portion of the nitride or oxide film floated by removing a portion of the semiconductor substrate; first and second thermocouple groups formed to be symmetrically spaced apart from each other on the membrane; an RF input end formed on the nitride or oxide film; a heating resistor formed on the membrane to be connected with the RF input end; first and second ground plates formed on the nitride or oxide film at both sides of the RF input end; a third ground plate formed on the nitride or oxide film to be connected with the heating resistor and electrically connected with the first and second ground plates; and first and second output terminals formed on the semiconductor substrate to be connected with the first and second thermocouple groups, respectively. According to the present invention, the heating resistor is connected with the input end and the thermocouples are formed to be bilaterally symmetrical with respect to the heating resistor, so that it is easy to match impedance, an amount of reflection loss due to any parasitic components is small, and the linear output voltage proportional to the input electric power is obtained. Further, since the ground plates capable of radiating heat are formed to be spaced apart from and around the heating resistor, its thermal impedance becomes higher. Thus, there is an advantage in that the sensitivity of the sensor can be enhanced.
    • 本发明涉及一种微波功率传感器及其制造方法。 微波功率传感器包括其上形成有氮化物或氧化物膜的半导体衬底; 膜,其是通过去除半导体衬底的一部分而漂浮的氮化物或氧化物膜的一部分; 形成为在膜上彼此对称地间隔开的第一和第二热电偶组; 形成在氮化物或氧化物膜上的RF输入端; 形成在所述膜上以与所述RF输入端连接的加热电阻器; 形成在RF输入端两侧的氮化物或氧化物膜上的第一和第二接地板; 形成在所述氮化物或氧化物膜上以与所述加热电阻器连接并与所述第一和第二接地板电连接的第三接地板; 以及分别形成在半导体衬底上以与第一和第二热电偶组连接的第一和第二输出端子。 根据本发明,加热电阻器与输入端连接,并且热电偶相对于加热电阻器形成为双向对称的,使得容易匹配阻抗,由于任何寄生元件引起的反射损耗量 小,并且获得与输入电力成比例的线性输出电压。 此外,由于能够散热的接地板形成为与加热电阻体隔开并且在其周围,其热阻抗变高。 因此,存在可以提高传感器的灵敏度的优点。