Scalable in-situ fabrication of multimodal electronic skin for intelligent robotics and interactive systems

  • Lim, Hakhyun; 
  • Choi, Jungrak; 
  • Han, Chankyu; 
  • Kim, Dabin; 
  • Jin, Hanbit; 
  • 외 10명
Citations

WEB OF SCIENCE

8
Citations

SCOPUS

9

초록

Tactile sensing is a foundational technology for developing intelligent interactive systems across robotics, wearable devices, and human-machine interfaces. Despite progress in highly sensitive and multifunctional soft sensors, conventional multimodal platforms suffer from limited scalability and customization due to dependencies on complex cleanroom processes and labor-intensive assembly. Therefore, this study proposes a multimodal e-skin platform fabricated through a scalable, in-situ, and cleanroom-free strategy that integrates microporous-dielectric capacitive tactile sensors with UV-laser-patterned flexible circuitry in a single low-profile system. The approach facilitates rapid, application-specific layout design, enabling modular co-location of deformable pressure and bending sensors alongside compact IC modules for thermal and non-contact proximity sensing. In a representative robotic-gripper demonstration, microporous-dielectric pressure and bending sensors are integrated in a task-specific layout to match local contact geometry and functional demands. Additional validation across diverse applications, including robotic grippers, interactive toys, and pressure-mapping arrays, highlights the platform's adaptability and its system-level capacity to integrate seamlessly with tailored multimodal e-skin prototyping for complex real-world tasks.

키워드

SENSOR
제목
Scalable in-situ fabrication of multimodal electronic skin for intelligent robotics and interactive systems
저자
Lim, Hakhyun; Choi, Jungrak; Han, Chankyu; Kim, Dabin; Jin, Hanbit; Kim, Minki; Kim, Yunjeong; Yang, Jinhyeok; Seo, Saerom; Jung, Jaehoon; Ju, Hunpyo; Hong, Chan-Hwa; Lee, Dongyoung; Ahn, Junseong; Kim, Hye Jin
DOI
10.1038/s41528-026-00538-4
발행일
2026-01-29
유형
Article
저널명
npj Flexible Electronics
권
10
호
1