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The effects of container design and stair climbing on maximal acceptable lift weight, wrist posture, psychophysical, and physiological responses in wafer-handling tasks
Journal article   Peer reviewed

The effects of container design and stair climbing on maximal acceptable lift weight, wrist posture, psychophysical, and physiological responses in wafer-handling tasks

Hsiu-Chen Chung and MAO-JIUN WANG
Applied Ergonomics, Vol.32(6), pp.593-598
2001

Abstract

Psychophysical responses Stair climbing Wafer containers
Despite the high level of automation in semiconductor manufacturing processes, many manual operations are still involved in the workplace. Due to inadequate human-machine interface design, stairs are frequently used to help operators perform wafer-handling tasks. This study was designed to evaluate the effects of climbing stairs and carrying wafer containers (pods) on psychophysical responses (maximal acceptable weight of lift-MAWL, and ratings of perceived exertion-RPE), physiological responses (oxygen consumption-VO <sub>2</sub> , and heart rate-HR), and wrist posture (ulnar and radial deviations). Each of 12 subjects (six males and six females) performed six sessions (3 climbing stairs×2 pods types). The results indicate that climbing stairs had a significant influence on MAWL and VO <sub>2</sub> (p<0.01). The type of pod effect on wrist posture was significant (p<0.01). Gender effect differences on MAWL, VO <sub>2</sub> and wrist posture were also significant (p<0.05). Job design implications are discussed. © 2001 Elsevier Science Ltd.

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