WO2010055574A1 - Procédé d'inspection de câble, dispositif d'inspection de câble, procédé d'inspection de dispositif de gabarit et support d'enregistrement lisible par ordinateur - Google Patents
Procédé d'inspection de câble, dispositif d'inspection de câble, procédé d'inspection de dispositif de gabarit et support d'enregistrement lisible par ordinateur Download PDFInfo
- Publication number
- WO2010055574A1 WO2010055574A1 PCT/JP2008/070745 JP2008070745W WO2010055574A1 WO 2010055574 A1 WO2010055574 A1 WO 2010055574A1 JP 2008070745 W JP2008070745 W JP 2008070745W WO 2010055574 A1 WO2010055574 A1 WO 2010055574A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- cable
- connector
- pin
- reference information
- information
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Images
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/50—Testing of electric apparatus, lines, cables or components for short-circuits, continuity, leakage current or incorrect line connections
- G01R31/58—Testing of lines, cables or conductors
Definitions
- the present invention relates to a cable inspection method, a cable inspection device, an inspection method for a jig device to which a cable is connected, and a computer-readable recording medium on which a program for executing the cable inspection method is recorded.
- the present invention relates to a cable inspection method and a cable inspection apparatus for inspecting a connection state of each pin of a first connector and a second connector coupled to each other to inspect a disconnection, short circuit or connection of a cable.
- automated process equipment including various equipment such as semiconductor equipment is controlled by a computer, and for this purpose, a cable is used as a means for transmitting a signal between the equipment and the computer.
- the type and function of the cable differ, and the thickness and shape of the cable differ. Different connectors are used.
- Such a cable is composed of many lines of signal lines and is formed in one harness shape, if an abnormality such as disconnection, short circuit, or connection occurs, the presence or absence of the abnormality is confirmed. It was not easy to distinguish between inspection and abnormal signal lines.
- a probe connected to the tester or the like is inspected by using a tester or a digital voltmeter (DVM).
- DVM digital voltmeter
- an object of the present invention is to provide a cable inspection device and an inspection method thereof that can quickly and accurately inspect for the presence or absence of a connection failure between a cable and a connector connected to the cable. It is to provide.
- a method for inspecting a cable the step of storing reference information serving as a reference for determining the connection state of the cable in a reference information storage unit, and a cable to be inspected are selected.
- the selection of the cable is performed by, for example, an operator), searching for reference information corresponding to the selected cable from the reference information storage unit, and based on the searched reference information of the cable
- a cable inspection method comprising: displaying connection error information for each pin; Provided.
- the reference information includes, for example, cable information and connector information as will be described later.
- connection error information is one of a disconnection error, a short-circuit error, and a connection error
- connection error information may be displayed by being divided into different hues.
- the disconnection means a case where the pin signal line is not connected among the pins in which the pin assignment information (connected pin information) exists.
- a short circuit refers to a case where pins that are not assigned according to the setting of the pin assignment information and are not connected among pins having pin assignment information are connected.
- the connection means a case where there is a connected pin among pins without pin assignment information.
- Inspecting the connection state of each pin of the first connector and the second connector of the cable includes outputting a test signal to each pin of the first connector, and a second connector coupled to the first connector.
- the step of inputting a test result signal from each of the pins, the pin number of the first connector from which the test signal is output and the pin number of the second connector from which the test result signal is input And a step of determining a connection state of each pin of the first connector and the second connector based on a result of the comparison.
- the pin number of the first connector to which the test signal is output and the pin number of the second connector to which the test result signal is input are included in the reference information of the cable. If it does not match the included pin assignment information, it can be determined that a short circuit error has occurred in the pin numbers of the first connector and the second connector.
- the pin number of the first connector to which the test signal is output and the pin number of the second connector to which the test result signal is input are pin numbers that do not exist in the pin assignment information of the cable. It can be determined that a connection error has occurred in the pin numbers of the first connector and the second connector. Further, when there is no test result signal input from the second connector, the pin number of the first connector from which the test signal is output and the pin number of the second connector from which the test result signal is input It can be determined that a disconnection error has occurred.
- the cable inspection method wherein the reference information includes at least one of a cable name, a connector name, a connector pin count, and pin assignment information, and visually identifies the cable and the connector connected to the cable.
- the reference information includes at least one of a cable name, a connector name, a connector pin count, and pin assignment information, and visually identifies the cable and the connector connected to the cable.
- One or more images of a cable image and a connector image may be further included.
- the step of retrieving the reference information of the cable is performed by reading the unique identification number of the cable stored in an RFID (Radio Frequency IDentification) tag attached to the cable or a barcode with an RFID reader or a barcode scanner.
- Reference information corresponding to the unique identification number can be retrieved from the reference information storage unit.
- the cable inspection method includes a step of displaying an error information screen that displays whether or not the cable is defective, a pin number of the first connector and the second connector of the cable where the connection error information exists, and the connection error information. Displaying a detailed error screen for displaying the type. The detailed error screen is displayed in response to a request from an operator, for example.
- the cable inspection method may further include a step of storing the inspection result of the cable.
- a device for inspecting a cable wherein the reference information storage unit stores reference information serving as a criterion for determining the connection state of the cable, and each pin of the first connector of the cable.
- a test signal output unit for outputting a test signal a test signal input unit for inputting a test result signal from each pin of the second connector connected to each pin of the first connector, a first connector of the cable, and
- a connection state determination unit that determines a connection state of each pin of the second connector, a display unit that displays connection error information of each pin of the first connector and the second connector of the cable, and the test signal that is output
- the reference information includes the pin number of the first connector and the pin number of the second connector to which the test result signal is input.
- connection state determination unit is controlled so as to determine the connection state of each pin of the first connector and the second connector of the cable compared with the assignment information, and based on the determination result of the connection state determination unit, the cable And a control unit that controls the display unit so as to display connection error information of each pin of the first connector and the second connector.
- connection error information is one of a disconnection error, a short-circuit error, and a connection error
- control unit displays the connection error information in a different hue from each other.
- the display unit can be controlled.
- the cable inspection apparatus further includes an inspection information storage unit that stores inspection result information of the cable, and the control unit retrieves and displays the inspection result information previously performed on the cable from the inspection information storage unit.
- the display unit can be controlled.
- the cable inspection apparatus may further include a user input unit that receives reference information of the cable.
- the reference information is input by, for example, an operator.
- control unit may control the test signal output unit to sequentially output the test signal corresponding to the number of pins of the first connector and the second connector of the cable. it can.
- the control unit displays an error information screen that displays the presence / absence of a defect in the cable, a pin number of the first connector and the second connector of the cable where the connection error information exists, and details of the type of the connection error information
- the display unit can be controlled to display an error screen.
- control unit searches the reference information storage unit for reference information corresponding to the type of cable input from the user input unit, or a unique identification number of an RFID tag or barcode attached to the cable. Can be input from the RFID reader or the barcode scanner, and the reference information corresponding to the input unique identification number can be retrieved from the reference information storage unit.
- a method for inspecting a jig apparatus to which a cable to be inspected is connected wherein reference information serving as a reference for determining the connection state of the cable is stored in a reference information storage unit.
- a step of selecting a cable connected to the jig device, a step of retrieving reference information corresponding to the selected cable from the reference information storage unit, and testing each pin of the first connector of the cable A step of sequentially outputting signals, a step of inputting a test result signal from each pin of the second connector connected to the first connector, and the output test signal and the input test result signal Determining a connection state of each circuit line of the jig device, and based on the determination result, Provided by the step of displaying the connection state information of each time line, the inspection method of the jig apparatus including a.
- a computer-readable recording medium on which a program for executing the cable inspection method is recorded.
- connection state of the pin connector coupled to the cable can be inspected, and the disconnection, short circuit or connection of the cable can be automatically inspected quickly and accurately.
- cable connection error information can be displayed by being classified into hues different from each other depending on the type thereof, so that the operator can easily visually confirm the connection error information.
- FIG. 1 is an explanatory diagram showing an outline of a configuration of a cable inspection system provided with a cable inspection device according to an embodiment of the present invention.
- the cable inspection system 100 includes a cable inspection device 110, a first interface device 120, a second interface device 130, and a jig device 140.
- the cable inspection apparatus 110 includes a notebook, a desktop, a laptop, and the like, and displays a window-based (Microsoft product) graphic user interface (GUI) through a monitor.
- GUI graphic user interface
- the cable inspection device 110 is connected to the jig device 140 through the first interface device 120 and the second interface device 130, and inspects the connection state of the cable connected to the jig device 140.
- the cable inspection device 110 outputs a test signal for inspecting the cable to the jig device 140.
- the output test signal is input as a test result signal from the jig device 140 to the cable inspection device 110 through the pins of the first connector and the second connector at both ends of the inspection cable connected to the jig device 140.
- the cable inspection device 110 determines the connection state of the cable based on the test result signal.
- the first and second interface devices 120 and 130 are connected to the cable inspection device 110 and the jig device 140, respectively, and transmit and receive test signals and test result signals output from the cable inspection device 110 and the jig device 140.
- the jig device 140 is connected to the cable inspection device 110 through the second interface device 130 and the first interface device 120.
- the jig device 140 includes a first connector connecting portion 141 and a second connector connecting portion 142 to which a first connector and a second connector connected to both ends of a cable to be inspected are respectively connected.
- the jig device 140 further includes a connector expansion connection part 143 for receiving and connecting connectors configured in various forms in addition to the first connector connection part 141 and the second connector connection part 142.
- the jig device 140 applies the test signal input from the cable inspection device 110 through the first interface 120 and the second interface device 130 to the first connector connecting portion 141 electrically connected to the first connector of the cable.
- the test signal applied to the first connector connecting portion 141 is input to each pin of the first connector of the cable, and a test result signal is output from each pin of the second connector connected to each pin of the first connector by a signal line. Is output as The jig device 140 transmits the test result signal output from each pin of the second connector through the second connector connection portion 142, the second interface device 130, and the first interface 120 electrically connected to the second connector of the cable. Output to the cable inspection device 110.
- FIG. 2 is an explanatory diagram showing an outline of the configuration of the cable inspection apparatus according to an embodiment of the present invention.
- the cable inspection device 110 includes a user input unit 111, a reference information storage unit 112, a test signal output unit 113, a test signal input unit 114, a connection state determination unit 115, and a display unit 116. And an inspection information storage unit 117 and a control unit 118.
- reference information serving as a reference for determining the connection state of the inspection cable is input by the operator.
- the reference information includes information on the cable, information on the connector, information on various equipment in which the cable is used, and the like.
- the reference information storage unit 112 stores the reference information input by the operator, classified by cable, connector, and equipment.
- the test signal output unit 113 outputs a test signal for inspecting the connection state of the cable to the jig device 140 through the first interface device 120 and the second interface device 130.
- test result signal output from the jig device 140 is input to the test signal input unit 114 through the first connector and the second connector of the cable.
- connection state determination unit 115 analyzes the input test result signal, and the connection state of each pin of the first connector and the second connector of the cable, that is, any one abnormality among the short circuit, disconnection, and connection of the inspection pin Determine the presence or absence.
- the disconnection refers to the case where the pin signal line is not connected among the pins having the pin assignment information described later.
- a short circuit refers to a case where pins that are not assigned according to the setting of the pin assignment information and are not connected among pins having pin assignment information are connected.
- the connection means a case where there is a connected pin among pins without pin assignment information.
- the display unit 116 displays information on the connection state of each pin of the first connector and the second connector of the cable, such as connection error information of each pin, on the screen.
- the inspection information storage unit 117 stores the inspection result information of the cables that have been inspected for each cable.
- the control unit 118 controls the operation of the entire cable inspection device 110, inspects the connection state for each pin of the first connector and the second connector of the cable, and displays the connection state information on the screen.
- control unit 118 searches the reference information of the cable connected to the jig device 140, and causes the test signal output unit 113 to sequentially output the test signal to all the pins of the connector connected to the corresponding cable. Control.
- the output test signal is output as a test result signal from the jig device 140 via the first connector and the second connector of the cable
- the test result signal is input through the test signal input unit 114, and
- the connection state determination unit 115 is controlled so as to determine the connection state of the pins of the first connector and the second connector.
- control unit 118 controls the display unit 116 so that connection state information for all the pins of the first connector and the second connector determined by the connection state determination unit 115 is displayed on the screen.
- FIG. 3 is a flowchart for explaining a method of inputting cable reference information according to an embodiment of the present invention.
- the cable reference information is input to the user input unit 111 of the cable inspection apparatus 110 as described above.
- step S11 information on various connectors related to connectors connected to both ends of the cable, for example, connector names, connector images, the number of pins, etc., are input to the cable inspection device 110 by the operator. And stored in the reference information storage unit 112. At this time, the operator can input connector information through a “connector management” screen provided by the cable inspection device 110.
- FIG. 4 is a diagram showing an example of such a connector management screen. As shown in FIG. 4, the connector management screen 200 displays a connector list area 210 and information on the connector selected in the connector list area 210, or a connector information display and input area for inputting connector information. 220, and an add / change / delete button area 230 for adding, changing, and deleting connector management information.
- the cable inspection device 110 receives information on cables related to various cables, for example, the name of the cable, the image of the cable, the type of connector connected to the cable, and the like, It is stored in the reference information storage unit 112. At this time, the operator can input cable information through a “cable management” screen provided by the cable inspection device 110.
- FIG. 5 is an example of such a cable management screen.
- the cable management screen 300 includes a cable list area 310, a cable information display and input area 320 for inputting cable information, which displays or adds information on the cable selected in the cable list area 310.
- a connector list area 330 for displaying information on connectors connected to the corresponding cable
- an add / change / delete button area 340 for adding, changing, and deleting cable information.
- the pin assignment information of the cable that is, the pin information of the second connector B connected to the first connector A and the second The pin information of the first connector A connected to the connector B is displayed on the cable management screen 300.
- the connector information input step S11 is performed before the cable information input step S12, the present invention is not necessarily limited to this, and in the cable information input step S12, both ends of the corresponding cable are connected. Information on connectors to be connected can be added.
- step S 13 equipment information relating to various equipment for which the cable is used, such as equipment name and equipment type, is input to the cable inspection device 110 and stored in the reference information storage unit 112. Thereafter, in step S14, cable link information obtained by linking the cable information used for each equipment with the equipment information input in step S13 is stored in the reference information storage unit 112.
- FIG. 6 is a diagram showing an example of a cable inspection screen as an error information screen according to an embodiment of the present invention. This cable inspection screen is displayed on the display unit 116 of the cable inspection device 110.
- the cable inspection screen 400 includes a project name / operator selection area 410, an equipment name / equipment type selection area 420, an inspection cable combo box 430, a cable information area 440, and a cable image. 450, a pin assignment information area 460, a cable inspection result display area 470, and a button selection area 480.
- the project name and worker selection area 410 is an area for selecting a project name and an operator who performs cable inspection used when performing cable inspection.
- the inspection cable combo box 430 a list of cables is displayed.
- information on the selected cable is displayed in a cable information area 440, a cable image area 450, and a pin assignment information area 460, respectively.
- the cable information area 440 displays the names of the first connector and the second connector connected to the cable selected in the inspection cable combo box 430 and the number of pins of each connector.
- the cable image area 450 displays the image of the cable selected in the inspection cable combo box 430 and the image of the connector connected to the cable.
- the pin assignment information area 460 displays the pin assignment information of the cable selected in the inspection cable combo box 430.
- Pin information connected to the second connector B is displayed in the row of the first connector A
- pin information connected to the first connector A is displayed in the row of the second connector B.
- connection error information of each pin of the first connector A and the second connector B is displayed by being divided into different hues. For example, a disconnection error can be displayed in red, a short circuit error can be displayed in green, and a connection error can be displayed in blue. Thereby, the operator can visually identify the connection error information of the connector and can easily grasp the inspection result.
- the cable inspection result area 470 displays the cable inspection result, that is, the presence or absence of a cable defect. If it is determined that there is no abnormality in the cable inspection result, for example, “OK” is displayed in the cable inspection result area 470. If it is determined that the cable inspection result is abnormal, the cable inspection result area 470 is displayed. For example, “NG” is displayed.
- connection error screen 500 of “connection error information” displays the pin numbers and error types of the first connector A and the second connector B in which an error has occurred. For example, if “disconnection error: connector A (1) -connector B (1)” is displayed on the detailed error screen 500 of “connection error information”, the first pin of the first connector A and the first pin of the second connector B Indicates that a disconnection error has occurred where the pin lines are not connected.
- the button selection area 480 includes a “ ⁇ ” button for moving to a previously registered cable, a “>>” button for moving to the next registered cable, and the selected cable.
- “Inspect” button for performing inspection "Detail print” button for outputting the inspection result of the selected cable, "Overall information” button for displaying a screen showing all the cables inspected in the selected project, A “setting” button for displaying a setting screen for inputting reference information and an “end” button for ending the cable inspection are included.
- FIG. 8 is a flowchart for explaining a cable inspection method according to an embodiment of the present invention.
- the above-described cable inspection system 100 is used.
- step S21 the cable to be inspected by the operator is selected for the cable inspection device 110.
- step S22 the cable inspection device 110 searches the reference information storage unit 112 for the reference information of the cable selected by the operator. Thereafter, the process proceeds to step S23, where the reference information of the searched cable, for example, the name of the cable, the image of the cable, the type of the connector connected to the cable, etc. is displayed on the screen. At this time, the cable inspection apparatus 110 may display information on the final inspection result together when there is information on the inspection result previously performed on the cable.
- step S22 of the cable reference information search is performed by using a radio frequency identification (RFID) tag or a barcode-attached cable as an RFID tag or a barcode scanner using an RFID reader or barcode scanner.
- RFID radio frequency identification
- a barcode-attached cable as an RFID tag or a barcode scanner using an RFID reader or barcode scanner.
- step S24 the cable inspection device 110 sequentially applies a test signal to each pin of the first connector and the second connector of the cable to inspect the connection state of each pin (inspection process of the connection state of each pin of the connector). Will be described later with reference to FIG.
- step S25 the cable inspection device 110 compares the energization result for each pin of the inspection target cable with the reference information of the inspection target cable, and connection error information is obtained for each pin of the first connector and the second connector. Determine if it exists.
- step S25 If the result of determination in step S25 is that connection error information does not exist, processing proceeds to step S26, and the cable inspection result is stored in the inspection information storage unit 117. On the other hand, if connection error information exists, the process proceeds to step S27, and the connection error information is displayed on the screen. At this time, the cable inspection device 110 displays the connection error information of each pin of the cable in a different hue so that the operator can easily visually confirm.
- FIG. 9 is a flowchart for explaining a connection state inspection method of each pin of the connector according to the embodiment of the present invention.
- the inspection of the connection state of each pin of the connector is an inspection performed in step S24 of FIG.
- step S31 the cable inspection apparatus 110 sequentially outputs a test signal to each pin of the first connector of the cable, and then the test result signal output from the jig apparatus 140 is input to the cable inspection apparatus 110.
- the test signal output in step S31 is input to the jig device 140 via the first interface device 120 and the second interface device 130.
- the test signal input to the jig apparatus 140 is applied to each pin of the first connector of the cable connected to the first connector connection portion 141 of the jig apparatus 140.
- the test signal applied to each pin of the first connector is output as a test result signal via each pin of the second connector connected to each pin of the first connector by pin assignment information.
- the test result signal output from each pin of the second connector is input from the second connector connection portion 142 of the jig device 140 to the cable inspection device 110 via the second interface device 130 and the first interface device 120.
- step S32 the cable inspection device 110 confirms the pin number of the first connector and the pin number of the second connector to which the input test result signal is applied.
- step S33 the cable inspection apparatus 110 compares whether the confirmed pin numbers of the first connector and the second connector match the pin assignment information of the cable. Thereafter, the process proceeds to step S34, and the cable inspection device 110 determines the connection state with respect to the respective pins of the first connector and the second connector, that is, the presence / absence of any one abnormality among disconnection, short circuit, and connection. .
- connection state of each pin is determined to be normal when the pin numbers of the first connector and the second connector confirmed in step S32 match the pin assignment information of the cable. .
- the pin numbers of the first connector and the second connector confirmed in step S32 do not match the pin assignment information of the cable, it is determined that a short-circuit error has occurred in the corresponding pin number.
- pin numbers of the first connector and the second connector confirmed in step S32 are pin numbers that do not exist in the pin assignment information of the cable, it is determined that a connection error has occurred in the corresponding pin number.
- step S31 if there is no test signal input to the cable inspection device 110 in step S31, it is determined that a disconnection error has occurred in the corresponding pin numbers of the first connector and the second connector to which the test signal is applied.
- step S35 the cable inspection device 110 determines whether the connection state inspection for all the pins of the first connector and the second connector of the cable has been completed. If the inspection for all pins has not been completed, steps S31 to S35 are repeated until the inspection for all pins is completed. On the other hand, when the inspection for all the pins is completed, the process proceeds to step S36, and the output of the test signal is stopped.
- the presence or absence of a failure of the jig device 140 can also be confirmed.
- FIG. 10 is a flowchart for explaining a method of inspecting a jig apparatus according to an embodiment of the present invention.
- step S41 the type of the cable connected to the first connector connecting portion 141 and the second connector connecting portion 142 of the jig device 140 is selected by the operator for the cable inspection device 110.
- the cable connected to the jig device 140 is a cable that has been confirmed to have no connection error information in order to check whether the jig device 140 is defective.
- step S42 the cable inspection device 140 retrieves the reference information of the selected cable from the reference information storage unit 112 and displays it on the screen.
- step S43 the cable inspection device 140 sequentially outputs a test signal to each pin of the first connector of the cable, and then proceeds to step S44 where the test result signal output from the jig device 140 is the cable inspection device 110. Is input.
- the test signal output in step S43 and input to the jig apparatus 140 passes through each circuit line of the jig apparatus 140, passes through each pin of the first connector and the second connector of the cable, and is a cable inspection apparatus as a test result signal. 110 is input again.
- step S45 the cable inspection device 140 determines the connection state of each circuit line of the jig device 140 based on the input test result signal. That is, the presence / absence of abnormality of each circuit line of the jig device 140 connected to each pin can be confirmed by the connection state of each pin of the first connector and the second connector of the cable.
- step S46 the cable inspection device 110 determines whether or not the inspection has been completed for all the pins of the first connector and the second connector of the cable. If the inspection has not been completed, steps S43 to S46 are repeated. Do it.
- step S46 when the inspection for all the pins of the first connector and the second connector of the cable is completed, the process proceeds to step S47 and the output of the test signal is stopped. Thereafter, the process proceeds to step S48, and information on the circuit line of the jig apparatus 140 in which the error has occurred is displayed on the screen.
- Computer readable media can be any available media that can be accessed by a computer and includes all volatile and nonvolatile media, separated and non-separated media. Also, computer readable media can include all computer storage media and communication media. Computer storage media can be volatile and non-volatile, separable and non-volatile implemented in any method or technique for storing information such as computer readable instructions, information structures, program modules or other information. Includes all separation media. Communication media typically includes computer-readable instructions, information structures, program modules, or other information in a modulated information signal such as a carrier wave, or other transmission mechanism, including any information delivery media .
- the present invention is useful when inspecting a cable.
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Testing Of Short-Circuits, Discontinuities, Leakage, Or Incorrect Line Connections (AREA)
- Manufacturing Of Electrical Connectors (AREA)
Abstract
L'invention porte sur un procédé d'inspection de câble, qui comprend une étape consistant à stocker des informations de référence qui sont une référence pour estimer un état de connexion d'un câble dans une unité de stockage d'informations de référence, une étape consistant à choisir un câble devant être inspecté, une étape consistant à rechercher les informations de référence correspondant au câble choisi à partir de l'unité de stockage d'informations de référence, une étape consistant à inspecter l'état de connexion de chaque broche d'un premier connecteur et d'un second connecteur qui sont connectés aux deux extrémités du câble, et une étape consistant à afficher des informations d'erreur de connexion vis-à-vis de chaque broche des premier et second connecteurs du câble en fonction du résultat d'inspection.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2008/070745 WO2010055574A1 (fr) | 2008-11-14 | 2008-11-14 | Procédé d'inspection de câble, dispositif d'inspection de câble, procédé d'inspection de dispositif de gabarit et support d'enregistrement lisible par ordinateur |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2008/070745 WO2010055574A1 (fr) | 2008-11-14 | 2008-11-14 | Procédé d'inspection de câble, dispositif d'inspection de câble, procédé d'inspection de dispositif de gabarit et support d'enregistrement lisible par ordinateur |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2010055574A1 true WO2010055574A1 (fr) | 2010-05-20 |
Family
ID=42169723
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2008/070745 Ceased WO2010055574A1 (fr) | 2008-11-14 | 2008-11-14 | Procédé d'inspection de câble, dispositif d'inspection de câble, procédé d'inspection de dispositif de gabarit et support d'enregistrement lisible par ordinateur |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2010055574A1 (fr) |
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112965408A (zh) * | 2021-02-01 | 2021-06-15 | 广东智能调试科技有限公司 | 一种电力控制保护回路智能安措系统 |
| CN113733146A (zh) * | 2021-08-11 | 2021-12-03 | 埃华路(芜湖)机器人工程有限公司 | 一种机器人换枪盘的工具号检测方法 |
| CN114441871A (zh) * | 2022-01-21 | 2022-05-06 | 广州超视计生物科技有限公司 | 一种线缆线序检测装置和方法 |
| CN115201720A (zh) * | 2021-04-08 | 2022-10-18 | 格科微电子(上海)有限公司 | 晶圆测试设备的接线检查方法及装置、晶圆测试设备及系统 |
| CN115508741A (zh) * | 2022-08-23 | 2022-12-23 | 重庆编福科技有限公司 | 一种电气连接线缆检测系统及方法 |
| CN119936741A (zh) * | 2024-12-20 | 2025-05-06 | 中国科学院微小卫星创新研究院 | 一种线缆通断快速测试装置 |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2002014133A (ja) * | 2000-06-29 | 2002-01-18 | Yazaki Corp | 多品番切替装置 |
| JP2007298346A (ja) * | 2006-04-28 | 2007-11-15 | Mitsubishi Cable Ind Ltd | ワイヤハーネス検査システム |
-
2008
- 2008-11-14 WO PCT/JP2008/070745 patent/WO2010055574A1/fr not_active Ceased
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2002014133A (ja) * | 2000-06-29 | 2002-01-18 | Yazaki Corp | 多品番切替装置 |
| JP2007298346A (ja) * | 2006-04-28 | 2007-11-15 | Mitsubishi Cable Ind Ltd | ワイヤハーネス検査システム |
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112965408A (zh) * | 2021-02-01 | 2021-06-15 | 广东智能调试科技有限公司 | 一种电力控制保护回路智能安措系统 |
| CN115201720A (zh) * | 2021-04-08 | 2022-10-18 | 格科微电子(上海)有限公司 | 晶圆测试设备的接线检查方法及装置、晶圆测试设备及系统 |
| CN113733146A (zh) * | 2021-08-11 | 2021-12-03 | 埃华路(芜湖)机器人工程有限公司 | 一种机器人换枪盘的工具号检测方法 |
| CN113733146B (zh) * | 2021-08-11 | 2024-02-27 | 埃华路(芜湖)机器人工程有限公司 | 一种机器人换枪盘的工具号检测方法 |
| CN114441871A (zh) * | 2022-01-21 | 2022-05-06 | 广州超视计生物科技有限公司 | 一种线缆线序检测装置和方法 |
| CN115508741A (zh) * | 2022-08-23 | 2022-12-23 | 重庆编福科技有限公司 | 一种电气连接线缆检测系统及方法 |
| CN115508741B (zh) * | 2022-08-23 | 2024-02-13 | 重庆编福科技股份有限公司 | 一种电气连接线缆检测系统及方法 |
| WO2024040848A1 (fr) * | 2022-08-23 | 2024-02-29 | 重庆编福科技有限公司 | Système et procédé de test de câble de connexion électrique |
| CN119936741A (zh) * | 2024-12-20 | 2025-05-06 | 中国科学院微小卫星创新研究院 | 一种线缆通断快速测试装置 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN110579479B (zh) | 一种基于假点缺陷检测的pcb检修系统及检修方法 | |
| US11449980B2 (en) | System and method for combined automatic and manual inspection | |
| US8547108B2 (en) | Universal mate-in cable interface system | |
| WO2010055574A1 (fr) | Procédé d'inspection de câble, dispositif d'inspection de câble, procédé d'inspection de dispositif de gabarit et support d'enregistrement lisible par ordinateur | |
| KR102181524B1 (ko) | 컬러강화 이미지와 판정범위 기준값의 다중 적용을 이용하는 와이어 하네스 스마트 비전 검사 시스템 및 방법 | |
| KR101782289B1 (ko) | 와이어 하네스 복합 검사시스템 | |
| CN106708736B (zh) | 用于通信设备的生产自动化测试方法及系统 | |
| KR101705347B1 (ko) | 무기 시스템 점검 장치 및 방법 | |
| JP2018170418A5 (fr) | ||
| JP2018170418A (ja) | 検査システム、ウエハマップ表示器、ウエハマップ表示方法、およびコンピュータプログラム | |
| JP2017044480A (ja) | 検査装置、及び検査方法 | |
| CN108595296A (zh) | 一种高低温测试方法和待测终端 | |
| US20150199831A1 (en) | Test support apparatus, test support method, and test support program for plant monitoring system | |
| US20150130849A1 (en) | Apparatus for image manipulation and analysis on paired images in fiber optic test | |
| KR101123931B1 (ko) | 사이트 자동 맵핑 방법 및 그 장치 | |
| KR101239804B1 (ko) | 제어봉제어계통 고장진단 장치 및 그 방법 | |
| CN100538655C (zh) | 电子装置的测试装置与测试方法 | |
| KR102863816B1 (ko) | Erp 시스템과 연계된 와이어 하네스 검사공정 통합 관리 방법 | |
| JP2007265263A (ja) | ソフトウェアの自動試験プログラム、ソフトウェアの自動試験装置、およびソフトウェアの自動試験方法 | |
| KR102101317B1 (ko) | 전투차량용 케이블조립체 테스트장치 및 테스트방법 | |
| JP2023170622A (ja) | 検査支援システム | |
| JP3659007B2 (ja) | 試験治具の検査方法 | |
| KR101939844B1 (ko) | 기판의 검사 장치 및 방법 | |
| JP2907249B2 (ja) | ワイヤハーネス試験装置 | |
| KR20210013952A (ko) | 하네스 제조 공정의 비전검사 자동화와 스마트 운용관리를 위한 시스템 및 방법 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 08878120 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| NENP | Non-entry into the national phase |
Ref country code: JP |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 08878120 Country of ref document: EP Kind code of ref document: A1 |