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    • 1. 发明授权
    • Speculum cover, method of manufacturing same and cover accommodating case
    • 套管盖,制造方法和覆盖容纳盒
    • US5609564A
    • 1997-03-11
    • US343440
    • 1994-09-30
    • Shigeru MakitaYoshihiko SanoHiroyuki OtaYasushi Nakamura
    • Shigeru MakitaYoshihiko SanoHiroyuki OtaYasushi Nakamura
    • A61B1/00A61B1/32A61B5/01A61B17/00A61B19/00A61B19/08G01J5/02G01K1/08A61B1/26
    • G01J5/02A61B1/00142A61B1/32A61B46/10G01J5/021A61B2017/00057A61B2017/00084A61B2017/00907
    • A sensor probe cover (20) is composed of two substantially square transparent films (21) and (22) and a ring (23) having a hole (23a) suitable for being mated with a sensor probe (12). The center of the first film (21) is provided with a hole (21a), and the ring (23) is fused to the inner periphery of the hole (21a) on the inner surface of the first film (21). The ring (23) is made of a material harder than that of the films. The first film (21) and the second film (22) are thermally fused together at the four corners of these films. The thermally fused locations are indicated at (20a). When used in the cover of the probe of an infrared thermometer, the second film (22) is made of a material transparent to infrared radiation. When the tip of the probe (12) is pressed into the ring (23) from above the second film (22), the probe (12) is covered while the second film (22) is folded back. The fitting on of the cover is completed when the ring (23) fits into an annular groove (12a) of the probe (12).
    • PCT No.PCT / JP93 / 00406 Sec。 371日期1994年9月30日 102(e)1994年9月30日PCT PCT 1993年3月31日PCT公布。 公开号WO93 / 19662 日期:1993年10月14日传感器探针盖(20)由两个基本上为方形的透明膜(21)和(22)和一个具有适于与传感器探头(12)配合的孔(23a)的环(23)组成, 。 第一膜(21)的中心设置有孔(21a),并且环(23)在第一膜(21)的内表面上与孔(21a)的内周熔融。 环(23)由比薄膜更硬的材料制成。 第一膜(21)和第二膜(22)在这些膜的四个角处热熔合在一起。 热熔接位置用(20a)表示。 当用于红外线温度计的探针的盖时,第二膜(22)由对红外辐射透明的材料制成。 当探针(12)的尖端从第二膜(22)的上方压入环(23)时,在第二膜(22)折回的同时覆盖探针(12)。 当环(23)装配到探针(12)的环形槽(12a)中时,盖子的装配完成。
    • 4. 发明授权
    • Radiant-energy clinical thermometer
    • 辐射能量体温计
    • US5340215A
    • 1994-08-23
    • US078320
    • 1993-06-28
    • Shigeru MakitaYoshihiko SanoHiroyuki OtaYasushi Nakamura
    • Shigeru MakitaYoshihiko SanoHiroyuki OtaYasushi Nakamura
    • A61B5/01G01J5/00G01J5/04G01J5/10G01K13/00G01K1/08A61B5/00G01J5/02G01K1/14
    • G01J5/02G01J5/021G01J5/04G01J5/049
    • An upper portion of a case body (1) of a radiant-temperature clinical thermometer is integrally formed to include a supporting frame (11) to which a supporting cylinder (2) is secured horizontally. The tip of the supporting cylinder (2) projects outwardly and a radiant-temperature sensor (3) for sensing heat rays from the external ear is secured to the end face of the tip. A cylindrical probe (4) is supported on the supporting cylinder (2) so as to be free to slide, and the cylindrical probe (4) is biased by a coil spring (42) in a direction that thrusts the probe outwardly. A flange (41) on the base end of the cylindrical probe (4) abuts against a stopper (12) of the supporting frame (11), whereby the extended position of the cylindrical probe (4) is determined. A cover ( 9 ) is attached to the tip portion of the cylindrical probe (4). When the tip portion of the cylindrical probe (4) is inserted slightly into the orifice of the ear and pressed, the cylindrical probe (4) retracts and a lever (51) of a microswitch (5), which is attached to the supporting frame (11), is pressed by the flange (41) of the cylindrical probe (4). The switch (5) produces an ON signal as a result. The ON signal is applied as a measurement-start trigger signal to a temperature measuring circuit provided within the case body (1). Thus, the timing at which temperature measurement starts is always fixed so as to reduce a variance in measured temperature.
    • PCT No.PCT / JP91 / 01775 Sec。 371日期:1993年6月28日 102(e)日期1993年6月28日PCT 1991年12月26日PCT PCT。 第WO92 / 11800号公报 日期:1992年7月23日。辐射温度体温计的壳体(1)的上部整体形成为包括支撑框架(11),水平地固定有支撑筒(2)。 支撑筒(2)的顶端向外突出,用于感测来自外耳的热射线的辐射温度传感器(3)固定在尖端的端面。 圆柱形探针(4)被支撑在支撑圆筒(2)上以便自由滑动,并且圆柱形探针(4)在向外推动探针的方向上被螺旋弹簧(42)偏压。 圆柱形探针(4)的基端上的凸缘(41)与支撑框架(11)的止动件(12)抵接,从而确定圆柱形探头(4)的延伸位置。 盖(9)附接到圆柱形探针(4)的尖端部分。 当圆柱形探针(4)的尖端部分稍微插入耳朵的孔口并被按压时,圆柱形探头(4)缩回,并且微型开关(5)的杆(51)附接到支撑框架 (11)被圆柱形探头(4)的凸缘(41)按压。 因此,开关(5)产生ON信号。 将ON信号作为测量开始触发信号施加到设置在壳体(1)内的温度测量电路。 因此,开始温度测量的定时总是固定的,以便减少测量温度的变化。
    • 6. 发明授权
    • Test sample color comparison device
    • 测试样品颜色比较装置
    • US4989983A
    • 1991-02-05
    • US461530
    • 1990-01-05
    • Takao TeradaHiroyuki OtaShigeru Makita
    • Takao TeradaHiroyuki OtaShigeru Makita
    • G01J3/52G01N21/01G01N21/29G01N21/86
    • G01N21/293G01N21/8483G01J3/522G01N2021/0181
    • A test sample color comparison device is disclosed which has a casing unit with an insertion slot for inserting a color test sample therein, and a display section for displaying the color test sample adjacent at least one of a plurality of reference color shades, as the reference color shades are successively moved into position adjacent the color test sample by a manipulation wheel. When an operator determines that a reference color shade adjacent the test sample corresponds in color to the color of the test sample, he pushes a switch to cause a readout of stored information corresponding to the reference color shade then adjacent the test sample. Readout of the stored information is based on a bit pattern set by a plurality of converter switches which are turened on and off in different patterns which correspond to the different color shades as the reference color shades are moved into position by the manipulation wheel. An uneven pattern code section moves in association with the manipulatable wheel and actuates the converter switches. A preferred uneven pattern code section is arranged so that all of the converter switches are actuated roughly equally during a full rotation of the manipulatable wheel, and so that only one of the converter switches is switched on or off during incremental movement of the manipulable wheel.
    • 10. 发明申请
    • MECHANICAL QUANTITY MEASURING DEVICE, SEMICONDUCTOR DEVICE, EXFOLIATION DETECTING DEVICE, AND MODULE
    • 机械量子测量装置,半导体器件,检测装置和模块
    • US20140042566A1
    • 2014-02-13
    • US14112626
    • 2011-04-21
    • Hiroyuki OtaKisho AshidaKentaro Miyajima
    • Hiroyuki OtaKisho AshidaKentaro Miyajima
    • H01L41/04
    • H01L41/04G01B7/18G01L1/2206G01L1/2293G01M5/0033G01M5/0083
    • A mechanical quantity measuring device (100) includes a semiconductor substrate (1) attached to a measured object so as to indirectly measure the mechanical quantity acting on the measured object; a measuring portion (7) capable of measuring a mechanical quantity acting on the semiconductor substrate (1) at a central part (1c) of the semiconductor substrate (1); and plural impurity diffused resistors (3a, 3b, 4a, 4b) forming a group (5) gathering closely to each other in at least one place, on an outer peripheral part (1e) outside the central part (1c) of the semiconductor substrate (1). The plural impurity diffused resistors (3a, 3b, 4a, 4b) forming one of the group (5) are connected to each other to form a Wheatstone bridge (2a, 2b). Thus, the mechanical quantity measuring device (100) can securely detect its own exfoliation.
    • 机械量测量装置(100)包括安装在测量对象上的半导体衬底(1),以间接地测量作用在测量对象上的机械量; 能够测量在半导体衬底(1)的中心部分(1c)处作用在半导体衬底(1)上的机械量的测量部分(7); 以及在半导体基板的中心部分(1c)的外侧的外周部(1e)上形成形成在至少一个位置上彼此紧密聚集的组(5)的多个杂质扩散电阻器(3a,3b,4a,4b) (1)。 形成组(5)中的一个的多个杂质扩散电阻器(3a,3b,4a,4b)彼此连接以形成惠斯通电桥(2a,2b)。 因此,机械量测量装置(100)可以安全地检测其自身的剥离。