Title :
A study of static-dissipative tweezers for handling giant magneto-resistive recording heads
Author_Institution :
Read-Rite Corp., Fremont, CA, USA
Abstract :
The goal of this paper is to share information on the study of static-dissipative tweezers for use in giant magneto-resistive recording heads. There are two tests, one to measure the amount of energy of transient currents discharged from tweezers and the other to determine the voltage of a head gimbal assembly (HGA) at which a pair of grounded tweezers can damage the GMR head when in contact. These experiments are important because the energy of transient current discharged from tweezers directly affects the magnetic performance of the GMR head. The results of the two tests correlate relatively well. Most dissipative ceramic tweezers performed very well. Black polymer tweezers with 1.3% carbon, and metal impregnated ceramic tweezers, also performed very well. One type of dissipative copolymer tweezers was found to behave like a conductor. Some carbon-loaded polymer tweezers and stainless steel tweezers have the worst ESD performances.
Keywords :
electronic equipment testing; electrostatic discharge; giant magnetoresistance; magnetic heads; magnetic recording; magnetoresistive devices; materials handling; reliability; ESD performance; GMR head; GMR head damage; black polymer tweezers; carbon content; carbon-loaded polymer tweezers; conductor behaviour; dissipative ceramic tweezers; dissipative copolymer tweezers; giant magneto-resistive recording heads; grounded tweezers; handling; head gimbal assembly; magnetic performance; metal impregnated ceramic tweezers; stainless steel tweezers; static-dissipative tweezers; tests; transient current discharge energy; Assembly; Ceramics; Conductors; Current measurement; Energy measurement; Magnetic heads; Polymers; Steel; Testing; Voltage;
Conference_Titel :
Electrical Overstress/Electrostatic Discharge Symposium Proceedings 2000
Conference_Location :
Anaheim, CA, USA
Print_ISBN :
1-58537-018-5
DOI :
10.1109/EOSESD.2000.890124