LightLink: Enhancing Smartwatch Sensing and Actuation Through Visible Light Communication

Haptic WearablesSmartwatches & Fitness BandsBiosensors & Physiological MonitoringSoftware Engineers & DevelopersProduct DesignersHCI Researchers

Smartwatches are equipped with fixed sensors (e.g., ECG, IMUs) or actuators designed for a broad audience. However, some users need specialized smartwatch functionality, creating a demand for add-on devices that extend a smartwatch's capabilities. Our work explores the design of add-on devices that communicate with the smartwatch using visible light. To demonstrate the feasibility of our approach, we conduct a series of characterization experiments to assess the ability of the smartwatch's ambient light sensor and screen as a light-based receiver and transmitter, respectively, and develop strategies for establishing a reliable communication link. Our approach is low-cost, has minimal instrumentation of a smartwatch, and supports the addition of input and output capabilities. To validate our approach, we design and test a suite of add-ons that expand the sensing (e.g. buttons, body temperature, etc.) and output (visual feedback and haptic wristband) capabilities of the smartwatch. We also contribute a toolkit framework comprising our hardware designs and a software library that enables designers and developers to quickly create applications that integrate add-ons with smartwatches using our approach.

Quick Actions

Share

Share this page

ios_share

https://hci.top/en/papers/uist/206884/2025

AdRecommended

Learn AI Coding at CodeNow

open_in_newOpen DOI Link
DOI: https://doi.org/10.1145/3746059.3747623
At a Glance

Paper Snapshot

fact_check
dataset
Source
UIST
calendar_month
Year
2025
emoji_events
Award
No award tagged
group
Authors
2 authors
sell
Subtopics
Haptic Wearables, Smartwatches & Fitness Bands, Biosensors & Physiological Monitoring
work
Professions
Software Engineers & Developers, Product Designers, HCI Researchers
article
Content Status
Abstract only
hub
Related Papers
0 related papers