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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
41 JPS6314764B2 - JP13045880 1980-09-19 JPS6314764B2 1988-04-01 NISHIKAWA AKIRA; NISHAMA YOSHIHISA; SAKAKIBARA MITSUTAKA; KITAGAWA TOORU
42 JPS6050845B2 - JP12686977 1977-10-24 JPS6050845B2 1985-11-11 KAARU HAINTSU SHUTSU
43 JPS5831844B2 - JP4262676 1976-04-16 JPS5831844B2 1983-07-08 HOORU TERAYON
44 JPS549507B1 - JP6069171 1971-08-12 JPS549507B1 1979-04-25
1330236 Weighing apparatus ROLAMITE Inc 30 July 1971 [13 Aug 1970] 35929/71 Heading G1W A platform balance comprises two cylindrical members 6, 14, one secured to a base 2 and the other secured to a weighing platform 18, kept in spaced-apart parallel relationship for arcuate movement of the platform without rotation, by a thin flexible band 24 wrapped round the members, 6, 14 and including a loop 24b between them, a roller 30 held in the loop having a diameter larger than the smallest distance between the member 6, 14, and a spring, pendulum weight 42, or horizontal beam with a sliding weight acting on the roller 30 to progressively resist rotation thereof in response to relative motion between the members 6, 14. The roller 30 carries a pointer 46 which moves over a scale 50 on a plate 48. A key 32 prevents rotation of the roller 30 relative to the loop 24b. As shown, the weight 42 extends through the member 6 and is supported on two arms 36 extending from the ends of the roller 30. Different counterweights 42 can be substituted to charge the load range of the balance. In the spring balance alternatives, a torsion spring may act on the roller 30 or a spring may act linearly on the arm 36.
45 Weighing machine JP4262676 1976-04-16 JPS51141664A 1976-12-06 POORU TERAYOSHI
46 計量装置、計量システム、計量方法、プログラム及び記録媒体 JP2013192890 2013-09-18 JP6142320B2 2017-06-07 酒井 良雄; 井上 和磨; 久米川 功壮
47 個別物品用計量装置 JP2015507553 2013-04-26 JP2015519551A 2015-07-09 ヨアヒム・ゲンプ
本発明は計量装置と、個別物品に対して計量装置を使用する方法とに関し、計量装置はベルトコンベヤと、少なくとも1つの計量用はかりと、を含み、計量用はかりは前記ベルトコンベヤの下に配置されかつ計量される物品用の支持部を有する。前記計量用はかりは剛性の構成を有し、前記ベルトコンベヤは少なくとも2つのコンベヤベルトを含み、計量される物品用の支持部には少なくとも1つの支持延長部が設けられ、支持延長部はベルトコンベヤのコンベヤベルトの間を通して案内することができ、およびベルトコンベヤのコンベヤベルトは、支持延長部がそれ自体を移動させることなくコンベヤベルトの間を通して案内されるように計量用はかりに向かって移動させることができ、およびコンベヤベルト上を移動される個別物品は、支持延長部の上に配置し、計量用はかりで計量することができる。計量用はかりの上に配置されたベルトコンベヤユニットは、全体的に、前記計量用はかりに向かって移動させることができ、ベルトコンベヤの移動の端部位置は減衰され、ベルトコンベヤは単一アクチュエータによって移動され、異なる計量領域を有する少なくとも2つの計量用はかりが使用される。本発明は、自動車排気ガス触媒の担体用のコーティング装置にも関し、この装置は対応する計量装置を含む。
48 Biometric measurement device JP2012139724 2012-06-21 JP2014006057A 2014-01-16 SUZUKI SHUN
PROBLEM TO BE SOLVED: To provide a highly usable biometric measurement device capable of controlling an operation state according to a determination result as to whether a user is near the device and suppressing power consumption.SOLUTION: A biometric measurement device for measuring the bio-information of a user includes a bio-information measurement unit for measuring the bio-information, a sensor for outputting a sensor signal according to approaching of the user to the biometric measurement device, and a control unit for determining the approaching of the user to the biometric measurement device based on the sensor signal and controlling the operation state of the biometric measurement device based on the determination result.
49 Weighing system comprising a plurality of weighing cells JP2008514001 2006-05-30 JP4959688B2 2012-06-27 エルベン,デートレフ; クールマン,オットー; ハイネ,アウグスト; ラウケ,ヨルゲン; ラウプスタイン,ミヒャエル
50 Force transmission device equipped with incorporable/releasable spindle for calibration JP2010280180 2010-12-16 JP2011128155A 2011-06-30 BURKHARD HANS-RUDOLF; SCHNEIDER FERDINAND; GENOUD DOMINIQUE
<P>PROBLEM TO BE SOLVED: To provide a force transmission device for weight measurement which blocks an effect on a measuring transducer from the geometry displacement of an acting force of a spindle for calibration. <P>SOLUTION: The force transmission device of the measuring transducer has a fixed part and a load receiving part. The load receiving part is linked with the measuring transducer placed on the fixed part directly or through at least one connecting element and at least one lever so as to transmit a force. The force transmission device further includes a calibration lever which has a fulcrum based on the fixed part, the first calibration lever arm firmly-connected with the spindle for calibration, and also the second calibration lever arm connected with the load receiving part or at least one connecting element or the other lever arm of at least one lever through a unidirectional connecting element. The unidirectional connecting element is divided into the first connecting element and the second connecting element, and thereby the divided design may limit the force which may be transmitted through the unidirectional connecting element to a tensile force or a compression force. <P>COPYRIGHT: (C)2011,JPO&INPIT
51 Weighing system comprising a plurality of weighing cells JP2008514001 2006-05-30 JP2008542730A 2008-11-27 エルベン,デートレフ; クールマン,オットー; ハイネ,アウグスト; ラウケ,ヨルゲン; ラウプスタイン,ミヒャエル
複数の物品を別々に秤量するための、複数の秤量セルを備える秤量システム(1)であって、秤量セルは、本質的に同一の設計によりなり、2次元配列内で交換可能に配置され、支持要素(6)上に解除可能に機械的に固定するための手段を有し、電気接触手段を有する。
52 Moisture-proof technology for the electromechanical transducer JP2004523814 2003-07-22 JP2005534020A 2005-11-10 ツィーバールト,フォルカー; テレンバッハ,ジャン−モーリス
計測セルの変形可能な本体(1)上に取り付けることができる歪みゲージ(13、13')のための湿気の浸透に対する保護コーティングとして、多層コーティング(16)が提案されている。 歪みゲージ(13、13')は、歪み感知電気抵抗体導電路(14)と、支持基板(15)上に配列された抵抗体導電路(14)に接触するためのコネクタ電極(17)とを有し、多層コーティング(16)は、湿気の浸透に対する保護コーティングとして、支持基板(15)及び/又は抵抗体導電路(14)及び/又はコネクタ電極(17)の少なくとも一部分を覆っている。 多層コーティング(16)は、ポリマー層(19)とバリア層(20)との交互の連続体によって構成され且つ少なくとも3つの薄い個々の層によって構成されている。 多層コーティング(16)が力計測セルの変形可能な本体上に既に取り付けられた歪みゲージ(13、13')に適用される場合には、多層コーティング(16)は、更に、変形可能な本体(1)の一部分をも覆うことができる。
53 JPH0566529B2 - JP17305084 1984-08-20 JPH0566529B2 1993-09-22 SUZUKI SEIJI; NISHAMA YOSHIHISA; KITAGAWA TOORU
54 Automatic weight sampling apparatus JP1308187 1987-01-22 JPS63180832A 1988-07-25 TERAKADO SHIGERU; HATANAKA TERUO; ABE KATSUO
PURPOSE: To achieve a higher working efficiency or the like along with a higher sampling accuracy, by arranging a robot arm remotely controlled with a CPU, a sampling device, a diluting device, an electronic balance scale and the like in a glove box to sample and weigh a specimen to be analyzed based on a command from the CPU. CONSTITUTION: A robot arm 10, a sampling device 12, a diluting device, an electronic balance scale 11 for measuring the weight of a specimen to be analyzed, container and the like are arranged in a glove box 22. The robot arm 10 is remotely controlled by a CPU 1 outside the glove box 22 to sample the specimen to be analyzed and measure the weight thereof. The measuring data thus obtained is transferred to the CPU 1 to process to allow the sampling of the specimen being analyzed with an automatic remote control as well as on a weight basis. This reduces errors due to sampling to the level about one- tenth as compared with that on a capacity basis while achieving a higher processing capacity of sampling thereby enabling decrease in work load. COPYRIGHT: (C)1988,JPO&Japio
55 Multirange load cell balance JP17305084 1984-08-20 JPS6151524A 1986-03-14 SUZUKI SEIJI; NISHIYAMA YOSHIHISA; KITAGAWA TORU
PURPOSE: To reduce the cost and to take high-precision measurment over a high range by using one-terminal sides of a high- and a low-balancing-quantity load cell, provided successively and horizontally, as coupling parts, and other-terminal sides as a fixed part and a load receiving part for counter pan fixation. CONSTITUTION: Coupling parts of one-terminal sides of the high- and low-balancing-quantity load cells 2 and 3 in a case 1 are coupled stepwise with a coupling frame 6 through a coupling spacer 8, the coupling part of the cell 2 and fixed part of the other end part are fixed to the base 9 of the case 1 through a spacer 8, and the counter pan 12 consisting of inside and outside frames 11 and a pan plate 10 in the case 1 in one body is fixed to the load receiving part 13 at the end part opposite to the coupling part of the cell 3. Then, a display surface 17 formed on one side of the case 17 is connected to the cells 2 and 3 and their electric signals are supplied to a microcomputer; and a body to be measured is placed on the counter pan 12 and signals from the cells 2 and 3 are compared and processed by the microcomputer to select one of them, which is displayed on the display surface 17. COPYRIGHT: (C)1986,JPO&Japio
56 Weight measuring machine JP13652281 1981-08-31 JPS5838820A 1983-03-07 KURODA GIICHI; ARAKI KAZUHIRO
PURPOSE:To perform the selection and changing of springs smoothly, when the single coil spring is selected among a plurality of coil springs having different spring constants and measuring operation is performed, by disengaging the engagement of a pan receiving fitting and all the coils. CONSTITUTION:By the rotation of a selecting shaft 16, the peripheral part of the selecting cam 19 compresses the side part of the coil spring 13 and the lower end part of the spring 13 is disengaged from an engaging groove 8 of the pan receiving fitting 2, and the spring 13 is evacuated. Since the selecting cam 18 is separated from the coil spring 12, and the lower end part of the spring 12 is engaged with the engaging groove 8, the displacement of the pan receiving fitting is transmitted to the coil spring 12 for measuring the specified weight. When the selecting shaft 16 is rotated by 90 deg., the cams 18 and 19 are separated from the springs 12 and 13 a locking cam 17 pushes up a pan 1 through a locking piece 22 at the same time, and the lower end parts of the coil springs 12 and 13 are disengaged from the engaging groove 8. When the rotary shaft is further rotated by 90 deg., the fitting 2 is lowered, the spring 12 is evacuated, and the spring 13 is used for the measuring operation. Therefore, the selection and changing of the springs 12 and 13 are performed smoothly.
57 Load cell scales JP13045880 1980-09-19 JPS5754816A 1982-04-01 NISHIKAWA AKIRA; NISHIYAMA YOSHIHISA; SAKAKIBARA MITSUTAKA; KITAGAWA TOORU
PURPOSE:To eliminate saucer-supporting frame and to improve precision and sensitivity, by a method wherein a securing part of a beam is hung down from a cover for fastening, and the bottom of the cover is formed in an open state. CONSTITUTION:In case a saucer 23 is coupled to a moving part 17, a stay 26 is first inserted through a performation 6 and an aperture 12, a boss part 25 is inserted through a hole 7 in a manner that a convexity 24 is positioned facing and opposite to a projection 8, and a semicircular concavity 22 mates a semicircular convexity 27. Thus, the saucer 23 is positioned during the engagement of the components, which results in facilitating coupling of the components. Additionally, a securing part 16 of a beam 14 is hung down from a fitting frame 10 for fastening thereat. The lower part of the beam 14 is open and the bottom of the cover 2 is also open, whereby a moving part 17 is coupled to the stay 26 from below by means of a screw 28, and the saucer 23 is coupled to the moving part 17 without the need for the use of a saucer-supporting frame.
58 JPS5511208B1 - JP9350571 1971-11-20 JPS5511208B1 1980-03-24
Platform scale having a simple lever system utilizing flexure plates and flexible cables to transmit forces from the platform to a hydraulic load cell to produce a hydraulic output signal having a pressure corresponding to the weight of an object placed on the platform.
59 Electronic scale including a fault-detecting electronic display module US735423 1996-10-22 US5767454A 1998-06-16 John C. Goodwin, III
An electronic scale including a fault-detecting electronic display module which can detect a crack in a display, a separation in a cable connected to the display, and a separation between the cable and a connector on a printed circuit board. The fault-detecting electronic display module includes the display, which displays a weight of an object, the cable, and a fault-detecting line extending around at least a portion of the perimeter of the electronic display and through the cable. The electronic scale also includes a load cell for sensing the weight of the object, and a controller coupled to the load cell and to the fault-detecting display module.
60 Fastening device for the attaching of an electric transmitter US179720 1988-04-11 US4928531A 1990-05-29 Klaus Schult; Horst Kister; Michael Quenzer
By the fastening device, two electric transmitters are to be arranged on a supporting structural part from which two extensions (11) protrude spaced from each other. For this purpose, one bored attachment end (15, 16) each of the two transmitters are arranged each on one side (13, 14) of one of the two extensions (11) on a threaded bolt (1, 2). The threaded bolt is screwed, with one collar (5, 6) each lying on both sides against the extension (11), directly to the latter. The attachment ends each have such a large recess (20 22) that they rest only on the extension without resting on the collars (5, 6). The threaded bolt (1, 2) is provided on the outside on both ends with a threaded section (9, 10). Nuts (25, 26) which are screwed on the respective threaded sections press in each case one of the two attachment ends (15, 16) against the extension (11).
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