Page 17 - Spring Summer 2026
P. 17

Industry News                                                                                Industry News














 BACTERIAL CELLULOSE

 FOR SUSTAINABLE   MACHINES NOW HAVE

 CIRCUIT BOARDS  SENSE OF TOUCH












          Researchers from imec/Hasselt University and          and specially designed interconnections that can
          Vrije Universiteit Brussel have developed an          expand and contract under strain. This enables it to
          integration technology that embeds liquid metal       be applied in areas where traditional rigid electronics
 Visit our   conductors inside a soft, stretchable encapsulant,   would be unsuitable.
          allowing circuits and sensors to deform, twist and
                                                                Reference: ‘Researchers demonstrate artificial Skin for Machines’,
          recover from damage without losing functionality.     New Electronics, Vol. 59 Issue 5, June/July 2026, p.47
 website!  Combining flexible electronics with advanced
          sensing capabilities, this pioneering development
          effectively provides machines with an artificial ‘skin’
          that gives them a sense of touch.
 Why not head down to our
          The technology involves ultra-thin electronic layers
 website and read more news in
          being embedded in a soft, elastic material, allowing
 our blog section?  it to conform closely to surfaces like robotic arms.
          Within the structure are dense networks of micro-
 A project in Germany is investigating the potential   sensors that detect pressure, temperature and
 Updated daily with hand-picked
 application of environmentally friendly alternatives   motion. These can be converted into electrical signals
 articles from around the web...  to conventional electronic materials through the use   that are subsequently interpreted by processing
 of bacterial cellulose in printed circuit boards.  systems.
 Wurthe Electronic Circuit Board Technology, The   The ability to stretch and bend without losing
 Institute for Materials Science at the University of   functionality is provided by rubber-like substrates
 Stuttgart, and the Hahn-Schickard-Gesellschaft fur
 angewandte Forcshung are together developing
 bio-based circuit carriers using bacterial cellulose.
 Through controlled microbial processes this raw
 material is transformed into durable, sheet-like
 substrates that could potentially replace the   Visit our website!
 petroleum-based components used in electronics.
 By using digital printing techniques, conductive
 pathways are applied directly onto the cellulose   Why not head down to our website and
 substrates with inkjet printing using copper and silver
            read more news in our blog section?
 links allowing for precise placement of conductive
 traces. Greater flexibility in circuit design is thereby
 enabled.
            Updated daily with hand-picked articles
 institutionofelectronics.ac.uk  A demonstrator is currently being constructed to   from around the web...
 showcase multilayer PCBs being produced using a
 combination of bacterial cellulose and digital printing
 techniques.  institutionofelectronics.ac.uk
 Reference: Tyler, N., ‘Project explores Bacterial Cellulose for
 Sustainable Circuit Boards’, New Electronics, 2nd. June

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