IP Library › Granted Patent US 11,612,090
Granted Patent B2
US 11,612,090 · App. 16/314,924 · Granted Mar 21, 2023

Component management system, component mounting device, and component management method for predicting component exhaustion

Inventor: Koji Shimizu (Kouta-cho, JP)
Assignee: FUJI CORPORATION
H05K13/086G05B13/042G05B13/048G05B19/41865H05K13/0061H05K13/085H05K13/0882G05B2219/45031
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Quick Facts
Patent No.
US 11,612,090
App. No.
16/314,924
Granted
Mar 21, 2023
Kind
B2
Abstract

It is an object of the present invention to provide a component management system or the like that can accurately predict component exhaustion in a component mounting device that performs work at a line. Specifying section updates the time table based on the arrival time point or the unloading time point in each of component mounting devices. Arrival predicting section predicts the arrival time point in each component mounting device based on the time table and updates a prediction table. Since component-exhaustion predicting section acquires the arrival time point of a circuit board for which a component will be exhausted from the prediction table and calculates a component exhaustion time point, it is possible to predict the component exhaustion time point with high accuracy. An operator can perform a replenishment work based on the component exhaustion time point.

Claims (21)

1. A component management method for managing component mounting on a board in a component mounting line in which multiple work devices, including at least one component mounting device, are arranged in a line, the method comprising:

specifying a location of each board at the component mounting line;

predicting an arrival time point of each board in a target device, which is one of the component mounting devices, based on the location specified by the specifying;

calculating a mountable number of boards based on the number of components remaining and the number of components to be mounted per board in the target device;

calculating an arrival time point of a next board to be mounted after the mountable number of boards are mounted in the target device;

calculating a component exhaustion time point, at which the component is exhausted in the target device, by subtracting a current time point from the arrival time point of the next board to be mounted after the mountable number of boards are mounted in the target device;

calculating a component replenishment time point, which is a start time limit of component replenishment, by subtracting a replenishment time period required for the component replenishment from the component exhaustion time point;

reporting the component exhaustion time point and the component replenishment time point, and reporting a delay of the component exhaustion time point when mounting of the upstream device is interrupted based on a change in the arrival time point of the next board; and

performing replenishment work in the at least one component mounting device based on at least one of the component exhaustion time point or the component replenishment time,

wherein the method further comprises

specifying the location by acquiring the arrival time point or an unloading time point of the board at each of the working devices,

predicting the arrival time point based on the unloading time point, a work time period of each of upstream devices located upstream of the target device, and a conveyance time period required for the board to be conveyed from the upstream device to the target device,

determining an interruption of mounting work for each of the upstream devices located upstream of the target device,

when the mounting work of at least one of the upstream devices is interrupted,

calculating an updated arrival time point of a board to the target device after the board already unloaded from the interrupted device based on the current time point, the work time of the interrupted device, the work time of each of the upstream devices on the component mounting line from the interrupted device to the target device, and the conveyance time from the interrupted device to the target device,

calculating an updated component exhaustion time point based on the updated arrival time point, and

calculating an updated component replenishment time point based on the updated component exhaustion time point.

2. The component management method according to claim 1 , further comprising

reporting an elapsed time period from the interruption when mounting of the upstream device is interrupted.

3. The component management method according to claim 1 , wherein

when the component mounting device in the component mounting line includes multiple component mounting devices, the method further comprises reporting the component exhaustion time point in an order of earlier time point based on the arrival time point predicted for each of the component mounting devices.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2019
From: SHIMIZU, KOJI
To: FUJI CORPORATION
Reel/Frame 047888/0548 →
Continuity (1)
Related Publication 20190313558A1 · Oct 10, 2019
Cited By (1)
US 12,298,747