2019Unpublished venueOpen access

Motor Accessibility of Smartwatch Touch and Bezel Input

Meethu Malu, Pramod Chundury, Leah Findlater

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Abstract

Smartwatches present inherent input difficulties due to the small touchscreen. In a controlled experiment with 14 participants with upper body motor impairments, we compared smartwatch touchscreen input to input on the bezel of the watch, the latter of which should at least theoretically stabilize user input due to its hard edge. Results demonstrate a speed-accuracy tradeoff whereby the touchscreen is faster but the bezel is more accurate.

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What this paper is about

Smartwatches present inherent input difficulties due to the small touchscreen. In a controlled experiment with 14 participants with upper body motor impairments, we compared smartwatch touchscreen input to input on the bezel of the watch, the latter of which should at least theoretically stabilize user input due to its hard edge. Results demonstrate a speed-accuracy tradeoff whereby the touchscreen is faster but the bezel is more accurate.

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Available abstract

Smartwatches present inherent input difficulties due to the small touchscreen. In a controlled experiment with 14 participants with upper body motor impairments, we compared smartwatch touchscreen input to input on the bezel of the watch, the latter of which should at least theoretically stabilize user input due to its hard edge. Results demonstrate a speed-accuracy tradeoff whereby the touchscreen is faster but the bezel is more accurate.

Key concepts: Touchscreen, Smartwatch, Computer science, Human–computer interaction, Text entry, Embedded system, Wearable computer

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