Abstract:
A system for determining a degree of contamination of production units of a production line for the printing, equipping and reflow soldering of printed circuit boards, and evaluation unit.
Abstract:
An apparatus for performing an operation on a circuit substrate, the apparatus including a plurality of operating devices which are provided in a space that is closed and opened by a safety cover and one of which performs the operation on the circuit substrate, a safety-cover switch which is switchable to an ON state thereof corresponding to a closed state of the safety cover, and to an OFF state thereof corresponding to an opened state of the safety cover, a maintenance-related control device which keeps, in a maintenance mode, at least one of the operating devices to a state thereof in which the one operating device is operable, and a maintenance-mode setting switch which cooperates with the safety-cover switch to provide a parallel circuit, and which is selectively operable to an ON state thereof in which the maintenance-mode setting switch allows setting of the maintenance mode, and to an OFF state thereof in which the maintenance-mode setting switch does not allow the setting of the maintenance mode.
Abstract:
A mounting head is configured to be detachably attached to a mounting device main body. This mounting head includes a storage section having multiple storage areas, and a storage control section configured to acquire multiple operation data relating to an operation of the mounting head individually at different timings and store the multiple operation data individually in the multiple storage areas in such a state that the mounting head is attached to the mounting device main body.
Abstract:
A maintenance management device comprises: an inspection device configured to inspect an exchangeable element in a component mounting machine configured to mount a component on a circuit board; and an information management section configured to store statistical information in which results of multiple inspections with the inspection device are linked to identification information for each of multiple exchangeable elements targeted for inspection.
Abstract:
An object of the invention is to provide an electronic component mounting device and a work method of the electronic component mounting device, capable of ensuring safety of an operator who accesses a work line through a door portion, and avoiding reduction of workability. A space defined by a base (11) and a cover member (14) is partitioned by a partition member (15) to define a plurality of work line storing spaces (SP1). A plurality of work lines (12) are stored in the respective work line storing spaces (SP1) individually. When any of a plurality of door portions (14a) provided in the cover member (14) so as to allow an access to an inside of the respective work line storing spaces (SP1) is opened, an operation of a work line (12) stored in a work line storing space (SP1) accessible through the opened door portion (14a) is stopped.
Abstract:
A management method is provided for a removable device attached to an apparatus and to be removed for maintenance. Maintenance data for each removable device is stored in a data management unit. An identification code is given to each removable device. The identification code of the removable device is read and input and output together with information required for maintenance, via a mobile terminal. The maintenance data is sent and received between the mobile terminal and the data management unit via a personal handphone system radio relay device. Since the management method enables maintenance of the removable device to be performed via the mobile terminal, it is possible to easily manage the location and history of the removable device requiring maintenance.
Abstract:
Provided is a maintenance method which makes it possible to collectively and quantitatively detect maintenance timings of parts included in respective devices in a component mounter. A management apparatus determines a position of an equipped device using a RF-tag reader/writer (S1001). Then, from the RF tag, the RF-tag reader/writer obtains maintenance information regarding parts in the device (S1002). Then, the determination unit determines a maintenance timing of each of the parts, by comparing maintenance information recorded in a maintenance reference information storage unit to the maintenance information of each part which has been obtained at S1002 (S1003). Next, if it is not yet the maintenance timing (NO at S1003), then the determination unit (608) ends the determining processing. On the other hand, if it is the maintenance timing (YES at S1003), then the determination unit (608) instructs a warning unit to provide warning (S1004) and stops driving of the component mounter.
Abstract:
A virtual preventive inspection system for a mounter and a method for controlling the mounter are disclosed. The system performs animations and simulations for maintenance and repair procedures of assemblies included in a mounter, through virtual models, and for a maintenance procedure for a certain part of the mounter, such that it can protect users from danger and the real mounter from damage when the mounter is maintained. Therefore, the present invention can allow anyone to perform preventive maintenance and repair of the mounter.
Abstract:
A feeder maintenance device manages history information including at least one of a usage count of a consumable part or a measurement value of the consumable part used in a cleaning section, and displays information on a usage state of the consumable part as a consumable parts screen based on history information. With feeder maintenance device, information related to the consumable part can be reported to an operator. Also, with feeder maintenance device, because an operator can replace or replenish a consumable part, it is possible to perform maintenance processing of feeder more reliably.
Abstract:
A manufacturing system according to the present disclosure includes one or more manufacturing apparatuses, a carrier, and a control system. Each of the one or more manufacturing apparatuses performs predetermined work on a board. The carrier carries a burden. The control system controls carrying work by the carrier. The burden includes a plurality of functional modules. Each of the plurality of functional modules provides a predetermined function for the one or more manufacturing apparatuses. The carrier includes a coupling portion to be coupled to any of the plurality of functional modules. The control system has at least one functional module, selected from the plurality of functional modules and coupled to the coupling portion, carried by the carrier.