ThermalBracelet: Exploring Thermal Haptic Feedback Around the Wrist
Authors
Smartwatches enable the wrist to be used as an ideal location to provide always-available haptic notifications as they are constantly worn with direct contact with the skin. With the wrist straps, the haptic feedback can be extended to the full space around the wrist to provide more spatial and enriched feedback. With ThermalBracelet, we investigate thermal feedback as a haptic feedback modality around the wrist. We present three studies that lead to the development of a smartwatch-integratable thermal bracelet that stimulates six locations around the wrist. Our initial evaluation reports on the selection of the thermal module configurations. Secondly, with the selected six-module configuration, we explore its usability in a real-world scenarios such as walking and reading. Thirdly, we investigate its capability of providing spatio temporal feedback while engaged in distracting tasks. Finally we present application scenarios that demonstrates its usability.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 67%
EchoBreath: Continuous Respiratory Behavior Recognition in the Wild via Acoustic Sensing on Smart Glasses
CHI '25· Biosensors & Physiological Monitoring +1
- 67%
Contextra: Detecting Object Grasps With Low-Power Cameras and Sensor Fusion On the Wrist
MobileHCI '25· Foot & Wrist Interaction +1
- 67%
Single Packet, Single Channel, Switched Antenna Array for RF Localization
UbiComp '23· Biosensors & Physiological Monitoring +1
- 67%
BMAR: Barometric and Motion-based Alignment and Refinement for Offline Signal Synchronization across Devices
UbiComp '23· Biosensors & Physiological Monitoring +1
- 67%
LiquImager: Fine-grained Liquid Identification and Container Imaging System with COTS WiFi Devices
UbiComp '24· Biosensors & Physiological Monitoring +1
- 67%
WiFi-CSI Difference Paradigm: Achieving Efficient Doppler Speed Estimation for Passive Tracking
UbiComp '24· Biosensors & Physiological Monitoring +1
- 67%
Acustico: Surface Tap Detection and Localization using Wrist-based Acoustic TDOA Sensing
UIST '20· Foot & Wrist Interaction +1
- 67%
ShadowTouch: Enabling Free-Form Touch-Based Hand-to-Surface Interaction with Wrist-Mounted Illuminant by Shadow Projection
UIST '23· Foot & Wrist Interaction +1
Based on Jaccard similarity of research subtopics & professions (≥60%)