TY - GEN
T1 - CapSenseBand: Sustaining Cross-Disciplinary Creativity When Stitches Must Meet Signals
AU - Xing, Sark Pangrui
AU - Hu, Hongci
AU - Wei, Lai
AU - Fang, Le
AU - Bai, Ziqian
AU - Jiang, Shou-xiang Kinor
AU - Wang, Stephen Jia
N1 - Publisher Copyright:
© 2026 Copyright held by the owner/author(s).
PY - 2026/7/13
Y1 - 2026/7/13
N2 - Wearable sensing systems increasingly depend on textiles that are both materially wearable and electronically functional. Their design requires collaboration between textile designers, who reason through stitches, yarn behavior, and machine constraints, and interaction designers, who reason through electrodes, signal paths, and insulation. However, these forms of expertise do not easily translate across disciplinary boundaries. This poster presents CapSenseBand, a knitted capacitive-sensing wristband developed through a research-through-design process organized around Analysis, Synthesis, and Detailing. We document an artifact chain spanning material swatches, a rapid wearable prototype, Paper Models as shared negotiation surfaces, a double-layer knitted structure, and an insulated Swept Frequency Capacitive Sensing breakout board. We show how Paper Models functioned as boundary objects, helping collaborators externalize intent, negotiate spatial and technical constraints, and preserve disciplinary expertise while converging on a shared design. We contribute a reusable swatch-to-sleeve pattern for material-centered HCI: keep discipline-specific probes open early, then converge through artifacts that make material, spatial, and electronic decisions legible before fabrication locks them in.
AB - Wearable sensing systems increasingly depend on textiles that are both materially wearable and electronically functional. Their design requires collaboration between textile designers, who reason through stitches, yarn behavior, and machine constraints, and interaction designers, who reason through electrodes, signal paths, and insulation. However, these forms of expertise do not easily translate across disciplinary boundaries. This poster presents CapSenseBand, a knitted capacitive-sensing wristband developed through a research-through-design process organized around Analysis, Synthesis, and Detailing. We document an artifact chain spanning material swatches, a rapid wearable prototype, Paper Models as shared negotiation surfaces, a double-layer knitted structure, and an insulated Swept Frequency Capacitive Sensing breakout board. We show how Paper Models functioned as boundary objects, helping collaborators externalize intent, negotiate spatial and technical constraints, and preserve disciplinary expertise while converging on a shared design. We contribute a reusable swatch-to-sleeve pattern for material-centered HCI: keep discipline-specific probes open early, then converge through artifacts that make material, spatial, and electronic decisions legible before fabrication locks them in.
KW - e-textiles
KW - capacitive sensing
KW - research through design
KW - machine knitting
KW - interdisciplinary design
UR - https://www.scopus.com/pages/publications/105045835705
U2 - 10.1145/3803784.3816847
DO - 10.1145/3803784.3816847
M3 - Conference article published in proceeding or book
T3 - C and C 2026 - Proceedings of the 2026 Conference on Creativity and Cognition
SP - 1547
EP - 1555
BT - C and C 2026 - Proceedings of the 2026 Conference on Creativity and Cognition
PB - Association for Computing Machinery (ACM)
T2 - The 18th ACM Creativity and Cognition Conference
Y2 - 13 July 2026 through 16 July 2026
ER -