DocumentCode
2695502
Title
Wearable tactile keypad with stretchable artificial skin
Author
Kramer, Rebecca K. ; Majidi, Carmel ; Wood, Robert J.
Author_Institution
Sch. of Eng. & Appl. Sci., Harvard Univ., Cambridge, MA, USA
fYear
2011
fDate
9-13 May 2011
Firstpage
1103
Lastpage
1107
Abstract
A hyperelastic, thin, transparent pressure sensitive keypad is fabricated by embedding a silicone rubber film with conductive liquid-filled microchannels. Applying pressure to the surface of the elastomer deforms the cross-section of underlying microchannels and changes the electrical resistance across the affected channels. Perpendicular conductive channels form a quasi-planar network within an elastomeric matrix that registers the location, intensity and duration of applied pressure. Pressing channel intersections of the keypad triggers one of twelve keys, allowing the user to write any combination of alphabetic letters. A 5% change in channel output voltage must be achieved to trigger a key. It is found that approximately 100 kPa of pressure is necessary to produce a 5% change in voltage across a conductive microchannel that is 20 microns in height and 200 microns in width. Sensitivity of the keypad is tunable via channel geometry and choice of elastomeric material.
Keywords
deformation; haptic interfaces; keyboards; pressure; silicone rubber; wearable computers; channel intersection; conductive channel; conductive liquid-filled microchannel; deformation; elastomeric material; elastomeric matrix; electrical resistance; hyperelastic keypad; quasiplanar network; silicone rubber film; stretchable artificial skin; thin keypad; transparent pressure sensitive keypad; wearable tactile keypad; Microchannel; Resistance; Robot sensing systems; Silicon;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation (ICRA), 2011 IEEE International Conference on
Conference_Location
Shanghai
ISSN
1050-4729
Print_ISBN
978-1-61284-386-5
Type
conf
DOI
10.1109/ICRA.2011.5980082
Filename
5980082
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