Long-term packaging of miniaturized, flexible implantable medical devices is essential for the next generation of medical devices. Polymer materials that are biocompatible and flexible have attracted extensive interest for the packaging of implantable medical devices, however realizing these devices with long-term hermeticity up to several years remains a great challenge. Here, polyimide (PI) based hermetic encapsulation was greatly improved by atomic layer deposition (ALD) of a nanoscale-thin, biocompatible sandwich stack of HfO2/Al2O3/HfO2 (ALD-3) between two polyimide layers. A thin copper film covered with a PI/ALD-3/PI barrier maintained excellent electrochemical performance over 1028 days (2.8 years) during acceleration tests at 60 °C...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
This study addresses in stability issue of flexible polymer light-emitting diode (PLED) devices with...
Implantable and direct contact electronic devices for underpinning complex tissue functions as well ...
Long-term packaging of miniaturized, flexible implantable medical devices is essential for the next ...
The use of electronic microsystems as medical implants gains interests due to the combination of sup...
Several requirements exist for medical devices for long term implantation. Firstly, the foreign body...
Within our internal FITEP technology platform (FITEP: Flexible Implantable Thin Electronic Package),...
In this work, we investigate the insulating performance of an atomic layer deposited (ALD) HfO2 - po...
Liquid crystal polymer (LCP) has gained wide interest in the electronics industry largely due to its...
Biomedical implants that incorporate active electronics and offer the ability to operate in a safe, ...
dissertationBiomedical implantable devices have been developed for both research and clinical applic...
Stainless steel- and Ti-based alloys are one of the most commonly used materials for production of b...
pre-printWe present a novel coating method that combines atomic layer deposited Al2O3 and Parylene C...
© Author(s) 2014. Implantable MEMS sensors are an enabling technology for diagnostic analysis and t...
AbstractTo mature toward real-world applications biomedical sensors should maintain long-term functi...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
This study addresses in stability issue of flexible polymer light-emitting diode (PLED) devices with...
Implantable and direct contact electronic devices for underpinning complex tissue functions as well ...
Long-term packaging of miniaturized, flexible implantable medical devices is essential for the next ...
The use of electronic microsystems as medical implants gains interests due to the combination of sup...
Several requirements exist for medical devices for long term implantation. Firstly, the foreign body...
Within our internal FITEP technology platform (FITEP: Flexible Implantable Thin Electronic Package),...
In this work, we investigate the insulating performance of an atomic layer deposited (ALD) HfO2 - po...
Liquid crystal polymer (LCP) has gained wide interest in the electronics industry largely due to its...
Biomedical implants that incorporate active electronics and offer the ability to operate in a safe, ...
dissertationBiomedical implantable devices have been developed for both research and clinical applic...
Stainless steel- and Ti-based alloys are one of the most commonly used materials for production of b...
pre-printWe present a novel coating method that combines atomic layer deposited Al2O3 and Parylene C...
© Author(s) 2014. Implantable MEMS sensors are an enabling technology for diagnostic analysis and t...
AbstractTo mature toward real-world applications biomedical sensors should maintain long-term functi...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
This study addresses in stability issue of flexible polymer light-emitting diode (PLED) devices with...
Implantable and direct contact electronic devices for underpinning complex tissue functions as well ...