US 11,749,302 B1
Method of manufacturing head gimbal assembly, head gimbal assembly and hard disk drive
Ka Yip Wong, Hong Kong (HK); Chi Hung Yuen, Hong Kong (HK); Ryo Hosoi, Hong Kong (HK); and Seiichi Takayama, Hong Kong (HK)
Assigned to SAE Magnetics (H.K.) Ltd., Hong Kong (HK)
Filed by SAE Magnetics (H.K.) Ltd., Hong Kong (HK)
Filed on May 12, 2022, as Appl. No. 17/743,443.
Int. Cl. G11B 5/48 (2006.01); G11B 5/00 (2006.01)
CPC G11B 5/4826 (2013.01) [G11B 5/484 (2013.01); G11B 2005/0021 (2013.01)] 6 Claims
OG exemplary drawing
 
1. A method of manufacturing a head gimbal assembly having a thermally assisted magnetic head and a suspension comprising:
a head connecting step which the thermally assisted magnetic head is connected to the suspension;
wherein the thermally assisted magnetic head comprises a structure which a light-source unit, having a laser diode, is joined to a slider in which an electromagnetic element is formed;
wherein the suspension comprises an opening part which penetrates from a slider arrangement surface, which the slider is arranged, to a light-source unit surface, which the light-source unit is arranged, and a flexure which forms the slider arrangement surface;
wherein the head connecting step comprises a solder ball arrangement step which only one solder ball is arranged so that the laser diode is connected to the flexure, in an assembly structure which the light-source unit is inserted into the opening part from the slider arrangement surface of the suspension and the light-source unit is protruded from the light-source unit surface and the slider is adhered to the slider arrangement surface of the suspension;
wherein the solder ball arrangement step is performed using a connecting ball, as the solder ball, having a size larger than a wiring gap between an electrode surface of the laser diode and a wiring end part, of the flexure, which is closest to the electrode surface and being in unmelted-solid condition, and the solder ball arrangement step is performed so that the connecting ball is in contact with the electrode surface and the wiring end part of the flexure;
wherein the head connecting step comprises a heat step which the electrode surface is heated and a connecting ball attaching step which the connecting ball is attached to the electrode surface and the wiring end part of the flexure, after the connecting ball is in contact with the electrode surface and the wiring end part of the flexure;
wherein the connecting ball attaching step is performed so that the whole of the connecting ball is arranged in the position which is near the electrode surface and above a gap line which connects an electrode end part, of the electrode surface, being nearest to the wiring end part with the wiring end part.