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Fully flexible large-area MEMS-based triaxial force sensor compatible with flat panel display manufacturing

 
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cris.virtual.orcid0000-0002-3050-5347
cris.virtual.orcid0000-0002-4019-5979
cris.virtual.orcid0000-0002-2733-1366
cris.virtual.orcid0000-0002-0512-1659
cris.virtual.orcid0000-0001-9680-5724
cris.virtualsource.department891dc7da-3ebb-4c37-92e3-867d69c9fdb0
cris.virtualsource.department73187a2f-4799-45d3-9ae1-7cd599fe36b8
cris.virtualsource.departmente9440138-0c07-4a44-85d4-fb8acd42c10b
cris.virtualsource.department9400dd30-171f-49f8-b319-19cedb0e9ba1
cris.virtualsource.department48c5c9e1-8758-436d-bfb9-70a2f1fe3ada
cris.virtualsource.orcid891dc7da-3ebb-4c37-92e3-867d69c9fdb0
cris.virtualsource.orcid73187a2f-4799-45d3-9ae1-7cd599fe36b8
cris.virtualsource.orcide9440138-0c07-4a44-85d4-fb8acd42c10b
cris.virtualsource.orcid9400dd30-171f-49f8-b319-19cedb0e9ba1
cris.virtualsource.orcid48c5c9e1-8758-436d-bfb9-70a2f1fe3ada
dc.contributor.authorMassimino, Gianluca
dc.contributor.authorHouri, Samer
dc.contributor.authorPodkovskiy, Alexey
dc.contributor.authorRochus, Veronique
dc.contributor.authorGenoe, Jan
dc.date.accessioned2026-09-07T14:34:19Z
dc.date.available2026-09-07T14:34:19Z
dc.date.createdwos2026
dc.date.issued2026
dc.description.abstractThis work describes a fully flexible capacitive Micro-Electro-Mechanical-Systems (MEMS) based Large-Area (LA) triaxial force sensor, compatible with the Flat Panel Display (FPD) production. Thus, it is obtained by means of standard surface micromachining, unlike the reported other flexible sensor technologies, which are based on ad-hoc fabrication processes, that limit their large-scale manufacturing, area covering feature and flexibility. The triaxial force sensor is referred to as pixel. Its response is characterized in the mechanical and electrical domains. The effects of the fabrication-induced residual stresses as well as the applied external pressure and shear load are measured. The 3D Finite Element Method (FEM) model correctly captures the initial deflection due to the residual stresses. It properly simulates the pressure and shear behavior taking into account the contact between the embedded MEMS and the substrate. It represents a valuable tool to provide design guidelines for the MEMS optimization. The pixel normalized pressure sensitivity is equal to 0.0013 kPa−1. While the shear one is 2.6 × 10−3 kPa−1. The sensitivity values of the presented device are higher than those reported for state-of-the-art capacitive triaxial force sensors. Potential sensing capability and scalability of the array design are preliminary proved. Referring to a 29 × 29 array with 1 cm2 footprint, the predicted initial capacitance of each independent capacitor element is equal to 640 pF. The related pressure and differential shear sensitivities are 0.841 pF/kPa and 2.859 pF/kPa, respectively. The presented work describes a novel technology for highly sensitive flexible triaxial force sensors compatible with LA FPD cost-effective batch production.
dc.identifier.doi10.1038/s41378-026-01256-7
dc.identifier.issn2055-7434
dc.identifier.pmidMEDLINE:42350390
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/60239
dc.language.isoeng
dc.provenance.editstepusergreet.vanhoof@imec.be
dc.publisherSPRINGERNATURE
dc.source.beginpage248
dc.source.issue1
dc.source.journalMICROSYSTEMS & NANOENGINEERING
dc.source.numberofpages20
dc.source.volume12
dc.subject.keywordsHUMAN TACTILE PERCEPTION
dc.subject.keywordsTHIN-FILM
dc.subject.keywordsFABRICATION
dc.subject.keywordsSTRESS
dc.subject.keywordsMICROSTRUCTURES
dc.title

Fully flexible large-area MEMS-based triaxial force sensor compatible with flat panel display manufacturing

dc.typeJournal article
dspace.entity.typePublication
imec.internal.crawledAt2026-07-14
imec.internal.sourcecrawler
imec.internal.wosCreatedAt2026-07-14
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