B65H2557/51

SPLICING DEVICE AND TAPE DETECTING METHOD USING THE SAME
20180111775 · 2018-04-26 · ·

A splicing device includes a first detection section which detects whether or not the component storage section protrudes downward from the conveyance reference surface; a second detection section which detects the component storage section of the paper tape; a discrimination section which determines whether a tape inserted into the splicing device is the embossed tape or the paper tape based on a detection signal of the first detection section; a first calculating section which calculates a pitch of the component storage section of the embossed tape by using the first detection section in a case where the embossed tape is determined; and a second calculating section which calculates a pitch of the component storage section of the paper tape by using the second detection section in a case where the paper tape is determined.

DEVICE FOR DETERMINING THE QUALITY OF A CORRUGATED BOARD WEB
20180073861 · 2018-03-15 ·

A device for determining the quality of a moving corrugated board web with at least one cover web and at least one corrugated web. A quality determination sensor arrangement, which includes a first quality determination sensor unit facing the corrugated board web, is provided for determining the quality of the corrugated board web on its first side, and a second quality determination sensor unit, facing a second side of the corrugated board web opposite the first side, for determining the quality of the corrugated board web on its second side. The device includes an evaluation unit that is in signal contact with the quality determination sensor arrangement and evaluates signals from the quality determination sensor arrangement related to the quality of the corrugated board web.

ROLLED PRODUCT WINDING SYSTEM AND METHOD

A system for winding a rolled product includes a winder having a winding spool, a spool rotator, a distributor guiding positioning of the rolled product towards the spool at an instantaneous winding point, and a distributor translator. A control and command unit coordinates the rotator and the translator according to a predetermined winding program which is a function of predetermined reference operating parameters and of real time operating parameters. The detector includes a laser triangulation profilometer diametrically opposite to the distributor, and continuously detects the surface profile of the coil of rolled product at every added turn. A processing and calculation unit feedback adjusts translation speed of the distributor to minimize a difference between an actual operating parameter calculated based on the profile of the coil in formation detected by the profilometer and the same operating parameter calculated based on theoretical data related to a predetermined ideal coil winding.

Multi-feed detection apparatus, sheet conveyance apparatus, and image forming apparatus

A multi-feed detection apparatus for detecting multi-feed of a sheet conveyed along a paper path is provided. The apparatus includes a first movement amount sensor disposed on the paper path to face a first surface of the sheet to detect a movement amount of the sheet; a second movement amount sensor disposed, on the paper path, in a position at which the first movement amount sensor is disposed to face a second surface of the sheet to detect a movement amount of the sheet; and a determination portion configured to determine that a conveyance state of the sheet is multi-feed when a difference between the movement amount of the sheet detected by the first movement amount sensor and the movement amount of the sheet detected by the second movement amount sensor is equal to or greater than a threshold.

Manufacturing Method of Electrode Assembly
20250105335 · 2025-03-27 · ·

An electrode assembly is manufactured in a process in which a positive electrode and a negative electrode are alternately stacked and a separator is positioned between the positive electrode and the negative electrode. The positive electrode is disposed above a first separator in a first step. A second separator is disposed above the positive electrode to cover the positive electrode in a second step. A negative electrode is disposed above the second separator in a third step. A third separator is disposed above the negative electrode to cover the negative electrode in a fourth step. In the first step and the third step, a laser beam is irradiated to indicate positions at which the positive electrode and the negative electrode are disposed.