System and method for improving the electrical connection of a hard drive relay flexible circuit assembly to an HGA flexure cable
A system and method are disclosed for improving the electrical connection of a hard drive relay flexible circuit assembly to a head-gimbal assembly (HGA) flexure cable. In one embodiment, a flexible circuit assembly is attached to a hard drive coil carriage via a U-shaped connector and is electrically coupled to the HGA flexure cable by a bonding agent, such as an Anisotropic Conductive Film (ACF).
The present invention relates to hard disk drives. More specifically, the invention relates to a system and method for improving the electrical connection of a hard drive relay flexible circuit assembly to a head-gimbal assembly (HGA) flexure cable.
In typical hard disk drives, electrical control signals are communicated to the voice coil 7 by a relay flexible circuit 9. Typically, the relay flexible circuit 9 also communicates read/write data to the slider/head(s) 3. A printed circuit board (PCB) 11 operates to control the position of the arm(s) 5 with head/slider(s) 3 (also known as the head stack assembly (HSA)).
Because this design requires the electrical bonds 15 to be placed on the inside corners formed by the extended plates 18 of the HGA flexure cable (not shown) and the circuit board 14, it is difficult to create the bonds. It is a very limited space in which to operate. The alignment of the pads 16,18 and their electrical coupling is a great challenge. The quality and efficiency of the process is adversely affected by this challenge. The tooling and equipment costs can be great because of this. In addition, a problem with soldering the electrical connection 15 between the pads 16,18 is that the bonds must be cleaned immediately after soldering. Soldering flux, which is necessary for effective soldering, must be removed. Removing the flux can be difficult and costly. Solder, which consists primarily of tin, can cause component contamination. During soldering, tin may splash out, causing damage to surrounding electrical components and/or disk media.
It is therefore desirable to have a system and method for improving the electrical connection of a hard drive relay flexible circuit assembly to a head-gimbal assembly (HGA) flexure cable that avoids the above-mentioned problems, as well as having additional benefits.
BRIEF DESCRIPTION OF THE DRAWINGS
Although several embodiments are specifically illustrated and described herein, it will be appreciated that modifications and variations of the present invention are covered by the above teachings and within the purview of the appended claims without departing from the spirit and intended scope of the invention.
Claims
1-13. (canceled)
14. A method for manufacturing a hard disk drive arm comprising:
- coupling, by a U-shaped connector, a relay flexible cable to a voice coil carriage assembly, said U-shaped connector including a plurality of generally parallel plates and said parallel plates including at least one bonding pad to electrically couple said relay flexible cable to a head gimbal assembly (HGA) flexure cable.
15. The method of claim 14, wherein said parallel plates include a plurality of opposing tabs.
16. The method of claim 15, wherein said voice coil carriage assembly has a plurality of grooves, said grooves being located on opposite sides of the voice coil carriage assembly.
17. The method of claim 16, wherein said grooves are shaped and located to accept said tabs.
18. The method of claim 14, wherein said U-shaped connector includes at least one alignment hole and said voice coil carriage assembly includes at least one alignment pin, said alignment hole shaped and located to accept said alignment pin.
19. The method of claim 14, wherein said bonding pad is to be coupled to at least one connecting pad on said HGA flexure cable by a conductive bonding agent.
20. The method of claim 19, wherein said bonding agent includes a plurality of electrically conductive particles.
21. The method of claim 20, wherein said bonding agent is to be compressed between said bonding pad and said connector pad, a number of said particles to form an electrical path between said bonding pad and said connector pad.
22. The method of claim 21, wherein said bonding agent is Anisotropic Conductive Film (ACF).
23. The method of claim 14, wherein said voice coil carriage assembly is molded polymer resin.
24. The method of claim 14, wherein said voice coil carriage assembly is stamped aluminum.
25. The method of claim 14, wherein said U-shaped connector has four bonding pads and said HGA flexure cable has four connecting pads.
26. The method of claim 25, wherein said bonding pads and said connecting pads are gold coated.
27-30. (canceled)
Type: Application
Filed: Apr 4, 2006
Publication Date: Aug 3, 2006
Inventors: Liu Jun Zhang (Dongguan City), Guo Hong Lu (Dongguan City), Can Hua Chen (Dongguan City), Yiu Sing Ho (Shatin), Jeffery Wang (Tai PO)
Application Number: 11/397,162
International Classification: G11B 5/127 (20060101); B23P 19/00 (20060101);