序号 | 专利名 | 申请号 | 申请日 | 公开(公告)号 | 公开(公告)日 | 发明人 |
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81 | Certified and process optimization has been to ensure the use of the method and apparatus of the semi-finished product material in the production facilities | JP2003560827 | 2003-01-09 | JP2005531825A | 2005-10-20 | ハンズ ジョアチム レウニング |
【課題】
製造のためにリリースされない半成品材料等が、生産設備内で気付かれないで加工されないようにすることにある。 【解決手段】 生産設備での製品製造用半成品材料の認定されおよびプロセス最適化された使用を確保する方法において、加工すべき半成品材料に合わせて生産設備を較正するキャリブレーションデータを読み出し、かつ半成品材料が供給される外部記憶媒体から、製造すべき製品の所定最大数(最大数)に関するデータを読み出す段階と、供給される半成品材料のキャリブレーションデータに従って、生産設備を較正する段階と、可能な限り最良のキャリブレーションを用いて、生産設備を、可能な最大生産数にプログラミングする段階と、認定されたスタート時間から製造された製品数と、最大数とを比較する段階と、実際数が最大数を超えるとメッセージを出力する段階とを有することを特徴とする方法。 |
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82 | Automatic bus sensing with portable diagnostic communication device | JP2003577063 | 2003-03-05 | JP2005522069A | 2005-07-21 | デラクルツ,モイゼス,エー.; ボルゲソン,デイル,ダブリュー. |
【目的】 改良された携帯式通信・診断装置を提供する。
【構成】 携帯式診断・通信装置(22)は、処理制御ループ(18)への接続を自動的に検知し、同様に、そのループ(18)上のメッセージ通信動作を基本的に妨害することなく、装置が接続されたループ(18)のタイプを自動的に検出できる。 装置(22)により、それが接続されループ(18)のタイプが判定されると、そのタイプに適応した診断や通信が行われる。 |
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83 | System and method for controlling floating actuator | JP2004131185 | 2004-04-27 | JP2004332931A | 2004-11-25 | HILL MICHAEL L |
<P>PROBLEM TO BE SOLVED: To lower the excessive mechanical wear of an actuator. <P>SOLUTION: In these system and method for controlling a floating actuator, input command signals are received from an actuator controller and effectively collected, and only when the controller sufficiently requests the movement of the actuator, the actuator can be actually operated. At this time point, these systems and method drive the actuator to an instructed position. As a result, the actuator is not driven by the small movement and swing of the command signals, and the excessive mechanical wear of the actuator resulting therefrom can be lowered or eliminated. <P>COPYRIGHT: (C)2005,JPO&NCIPI | ||||||
84 | Feedback type processing conditions correcting device | JP10259895 | 1995-04-26 | JP3311896B2 | 2002-08-05 | 千智 加藤; 芳彦 山川 |
85 | Printing equipment | JP23261499 | 1999-08-19 | JP2001058458A | 2001-03-06 | YASHIMA SHIGERU |
PROBLEM TO BE SOLVED: To provide a printing equipment, by which the total number of printing sheets necessary for printing and the number of exchanging plate used for printing the above sheets can be easily found and the plate exchanging action can be executed automatically. SOLUTION: When printing is performed under the condition that the total number of printing sheets exceeds the predetermined number of sheets of plate wear of a master, the CPU 101 of a main controlling device 100 controls the displayer of the number of printed sheets so as to display the total number of sheets by subtraction at every printing of one sheet onto a printing paper S on the basis of data signal on the number of printed sheet sent from the counting sensor 85 of the number of printed sheet. At the same time, the CPU controls the displayer of the number of plate sheets displaying the number of plates to be processed and the displayer of the number of printed sheet per one plate displaying the number of printed sheet per one plate on the basis of data signal concerning the predetermined plate wear of the master paper sent from a ROM 102 and of data signal concerning the total number of printing sheets, which are inputted and set with ten-keys. COPYRIGHT: (C)2001,JPO | ||||||
86 | Plant piping structure soundness evaluating device | JP24850197 | 1997-09-12 | JPH1182898A | 1999-03-26 | HOJO KIMINOBU; KOYAMA KOJI; SHIMIZU SHUNSUKE |
PROBLEM TO BE SOLVED: To provide a plant piping structure soundness evaluating device that can prevent unstable breaking of plant piping. SOLUTION: This plant piping structure soundness evaluating device is provided with a temperature sensor 11 installed in a cracking defect generating place of plant piping P, an arithmetic part 12 for obtaining a linear fracture mechanics parameter Kr and plastic fracture mechanics parameter Sr of a cracking defect generated to the plant piping P from the temperature data T obtained by the temperature sensor 11 and the material properties, piping shape and crack shape of the plant piping P, a judging part 13 for comparing the linear fracture mechanics parameter Kr and plastic fracture mechanics parameter Sr obtained by the arithmetic part 12, with preset fracture evaluation curve data so as to judge and evaluate the cracking stability of the plant piping, and an output part 14 for outputting the judged result of the judging part 13. | ||||||
87 | Process controller | JP337096 | 1996-01-11 | JPH09190201A | 1997-07-22 | ASHIHARA MUTSUROU |
PROBLEM TO BE SOLVED: To switch a manual mode to an automatic mode without suddenly changing process quantity and without giving disturbance to control ber by setting a tracking signal by calculating back from process quantity. SOLUTION: At the time of switching the manual mode to the automatic mode, the tracking signal ST decided by a tracking signal setting unit 21 based on a total flow rate signal SFT namely, a total manipulated variable STMV is outputted from an integrator 5. The total manipulated variable STMV is distributed by manipulated variable distributors 11a and 11b and it becomes automatic manipulated variables SMVA and SMVB and the opening degrees of operation terminals IA and IB are adjusted to them. A total flow rate at that time is matched with an actual total flow rate SFLT. At the time of switching to the automatic mode, manipulated variables MVA and MVB outputted from switches 6a and 6b change but the total flow rate SFLT does not change and a process value PV does not change. Thus, the automatic mode can be switched to the automatic mode without giving disturbance to controller. COPYRIGHT: (C)1997,JPO | ||||||
88 | System reconstructing method and device therefor | JP28748895 | 1995-11-06 | JPH09128021A | 1997-05-16 | MURAKAMI HIRONORI; NAKAJIMA YUJI; SATO KENICHI; NOGUCHI MASAHIRO; KUBO MASAYA |
PROBLEM TO BE SOLVED: To reconstruct a system by automatically generating a prototype task, correcting the task and preparing the program which can be operated on a new system based on program data. SOLUTION: A file table and an external input/output specification preparation 16 edits an external input/output specification based on the information of the input/output data memory 15 corresponding to plural programs. A program processing flow chart preparation 18 edits a processing flow chart based on the information of a procedure data memory 17. An intra-task module structural diagram preparation 20 edits an intra-task module structural diagram based on the information of an intra-task module structural data memory 19. An inter-task starting transition diagram preparation 22 edits an inter-task starting transition diagram based on the information of an inter-task starting transition data memory 21. Thus, the reconstruction of a system becomes possible by adding a function addition and a correction to the automatically generated prototype task as necessary. COPYRIGHT: (C)1997,JPO | ||||||
89 | Operation method for plant monitor controller | JP6831791 | 1991-04-01 | JPH04304799A | 1992-10-28 | NARIHARA KOSHU |
PURPOSE:To prevent misoperation by displaying an operation inhibit state display overlappingly on a symbol of an operated device in the operation inhibit skate and disabling the operation of the operated device in the operation inhibit state. CONSTITUTION:A symbol 5 of each operated device such as valves V1, V2 and a pump Pl, being components of a plant is displayed on a monitor screen 4. The operator operates and controls each controlled device while observing the screen of the plant monitor controller. Thus, an operation inhibit state display 6 is displayed overlappingly onto a specific device brought into the operation inhibit in the symbol 5 indicating the operated device. When all the operated devices on the monitor screen 4 are available, any symbol 5 of the device is selected and the control state of the selection device is displayed on an operation window by the selection and the operator has only to operate while observing the operation window. Thus, misoperation of the operator is prevented. | ||||||
90 | JPH023119U - | JP15808688 | 1988-12-06 | JPH023119U | 1990-01-10 | |
91 | JPS6211702Y2 - | JP472482 | 1982-01-18 | JPS6211702Y2 | 1987-03-20 | |
92 | JPS5838643B2 - | JP7615874 | 1974-07-03 | JPS5838643B2 | 1983-08-24 | HARA YOSHIAKI |
93 | JPS58107934U - | JP472482 | 1982-01-18 | JPS58107934U | 1983-07-22 | |
94 | JPS565601Y2 - | JP8264076 | 1976-06-23 | JPS565601Y2 | 1981-02-06 | |
95 | JPS562642B2 - | JP7737774 | 1974-07-08 | JPS562642B2 | 1981-01-21 | |
96 | Input/output test device for process controller | JP3995278 | 1978-04-05 | JPS54131848A | 1979-10-13 | SAKURAI SUSUMU; IWABUCHI OSAMU |
PURPOSE: To reduce the number of manpower for the test as well as to perform the test from the remote place in a simple way by applying such contrivance to the circuit constitution that the fixed input/output device of the process controller is used for the input/output purpose of the test data. CONSTITUTION: Devices AI1WAI16 of block A at input part 3B of process controller 3 are used for the input/output purpose of the test data; while devices AO1W A016 of block A at output part 3C are used for the decision result output for the test respectively. The test contents results in a certain decision in case the signal of limit switch 1 at point A is supplied to device B15 of block B at part 3B. In this case, the signal is delivered from device E09 of block E at part 3C. And in the case of the contents which makes lamp 4 glow at point B, the data designating B15 is first set to digital switch 61 of operator console 6 and then selection switch 62 is switched toward the input test. And push-button switch 63 is pushed to supply the set data to input controller 56. COPYRIGHT: (C)1979,JPO&Japio | ||||||
97 | JPS5423210B1 - | JP1930472 | 1972-02-24 | JPS5423210B1 | 1979-08-11 | |
98 | JPS5499225U - | JP17430577 | 1977-12-23 | JPS5499225U | 1979-07-13 | |
99 | JPS5490152U - | JP16368177 | 1977-12-05 | JPS5490152U | 1979-06-26 | |
100 | JPS5415440Y2 - | JP12039376 | 1976-09-06 | JPS5415440Y2 | 1979-06-21 | |