US 12,459,747 B2
Bulk feeder
Yusuke Yamazaki, Chiryu (JP); Hideyuki Hasegawa, Nagoya (JP); and Yuji Kawasaki, Nagoya (JP)
Assigned to FUJI CORPORATION, Chiryu (JP)
Appl. No. 18/261,774
Filed by FUJI CORPORATION, Chiryu (JP)
PCT Filed Jan. 29, 2021, PCT No. PCT/JP2021/003421
§ 371(c)(1), (2) Date Jul. 17, 2023,
PCT Pub. No. WO2022/162916, PCT Pub. Date Aug. 4, 2022.
Prior Publication US 2024/0076133 A1, Mar. 7, 2024
Int. Cl. H05K 13/02 (2006.01); B65G 27/04 (2006.01); B65G 27/16 (2006.01); B65G 47/16 (2006.01); B65G 47/18 (2006.01); B65G 47/20 (2006.01); B65G 65/44 (2006.01)
CPC B65G 27/16 (2013.01) [B65G 27/04 (2013.01); B65G 47/16 (2013.01); B65G 2201/04 (2013.01)] 8 Claims
OG exemplary drawing
 
1. A bulk feeder comprising:
a feeder main body;
a receiving member provided on the feeder main body and formed with a receiving region configured to receive a component discharged from a component case accommodating multiple components;
a track member provided to be vibratable with respect to the feeder main body and formed with a conveyance path through which the multiple components are conveyed and a supply region that communicates with the conveyance path and opens upward to collect the multiple components;
an excitation device configured to apply vibration to the track member so that the multiple components are conveyed along the conveyance path;
a connection member having flexibility and configured to connect between the receiving region and the conveyance path, the connecting member having a tubular shape in which the multiple components flows through;
an air supply device configured to supply positive pressure air to flow the multiple components from the receiving member to the track member via the connection member; and
a controller including a processor configured to control the excitation device and the air supply device such that when the excitation device is operating, the air supply device is stopped, and when the air supply device is operating, the excitation device is stopped.