This paper presents an embedded chip integration technology that incorporates silicon housings and flexible Parylene-based microelectromechanical systems (MEMS) devices. Accelerated-lifetime soak testing is performed in saline at elevated temperatures to study the packaging performance of Parylene C thin films. Experimental results show that the silicon chip under test is well protected by Parylene, and the lifetime of Parylenecoated metal at body temperature (37°C) is more than 60 years, indicating that Parylene C is an excellent structural and packaging material for biomedical applications. To demonstrate the proposed packaging technology, a flexible MEMS radio-frequency (RF) coil has been integrated with an RF identification (...
The recent trend in implantable medical devices, toward being small, lightweight, flexible, and wire...
2018-05-09Implantable medical devices make possible the treatment of chronic conditions by providing...
This paper describes parylene as an emerging bioMEMS material. Parylene has the unique feature of ro...
This paper presents an embedded chip integration technology that incorporates silicon housings and ...
In this paper, we present an embedded chip integration technology that utilizes silicon housings an...
We present a flexible and fully-implantable coil designed for use as a power and data transfer compo...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
The degeneration of the outer retina usually causes blindness by affecting the photoreceptor cells. ...
MEMS technology has been used more and more in biomedical application for neural prosthetic implanta...
The problems of outer retinal degeneration and spinal cord injury affect millions of people worldwid...
A micro-fabricated parylene-packaged flexible pentacene thin film transistor is presented. Different...
A micro-fabricated parylene-packaged flexible pentacene thin film transistor is presented. Different...
Active implantable medical devices have been developed for diagnosis, monitoring and treatment of la...
We present the design, fabrication and characterization of parylene-packaged flexible pentacene thin...
This paper presents the design, fabrication, and functional testing of a fully implantable, flexible...
The recent trend in implantable medical devices, toward being small, lightweight, flexible, and wire...
2018-05-09Implantable medical devices make possible the treatment of chronic conditions by providing...
This paper describes parylene as an emerging bioMEMS material. Parylene has the unique feature of ro...
This paper presents an embedded chip integration technology that incorporates silicon housings and ...
In this paper, we present an embedded chip integration technology that utilizes silicon housings an...
We present a flexible and fully-implantable coil designed for use as a power and data transfer compo...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
The degeneration of the outer retina usually causes blindness by affecting the photoreceptor cells. ...
MEMS technology has been used more and more in biomedical application for neural prosthetic implanta...
The problems of outer retinal degeneration and spinal cord injury affect millions of people worldwid...
A micro-fabricated parylene-packaged flexible pentacene thin film transistor is presented. Different...
A micro-fabricated parylene-packaged flexible pentacene thin film transistor is presented. Different...
Active implantable medical devices have been developed for diagnosis, monitoring and treatment of la...
We present the design, fabrication and characterization of parylene-packaged flexible pentacene thin...
This paper presents the design, fabrication, and functional testing of a fully implantable, flexible...
The recent trend in implantable medical devices, toward being small, lightweight, flexible, and wire...
2018-05-09Implantable medical devices make possible the treatment of chronic conditions by providing...
This paper describes parylene as an emerging bioMEMS material. Parylene has the unique feature of ro...