Publication | Open Access
Development of a Novel Transparent Flexible Capacitive Micromachined Ultrasonic Transducer
49
Citations
26
References
2017
Year
EngineeringElectronic SkinMechanical EngineeringMicroelectromechanical SystemsBiomedical EngineeringFlexible SensorTransparent Flexible CmutMicromachinesPower UltrasoundMaterials FabricationBiomedical DevicesMaterials ScienceNanowire Transparent ElectrodeWearable ElectronicsAcoustic PropagationUltrasoundUltrasonic TransducerBiomedical SensorsFlexible SensorsMicrofabricationFlexible ElectronicsBiomedical DiagnosticsTransducer PrincipleAcoustic TweezerMicromachined Ultrasonic Transducer
This paper presents the world's first transparent flexible capacitive micromachined ultrasonic transducer (CMUT) that was fabricated through a roll-lamination technique. This polymer-based CMUT has advantages of transparency, flexibility, and non-contacting detection which provide unique functions in display panel applications. Comprising an indium tin oxide-polyethylene terephthalate (ITO-PET) substrate, SU-8 sidewall and vibrating membranes, and silver nanowire transparent electrode, the transducer has visible-light transmittance exceeding 80% and can operate on curved surfaces with a 40 mm radius of curvature. Unlike the traditional silicon-based high temperature process, the CMUT can be fabricated on a flexible substrate at a temperature below 100 °C to reduce residual stress introduced at high temperature. The CMUT on the curved surfaces can detect a flat target and finger at distances up to 50 mm and 40 mm, respectively. The transparent flexible CMUT provides a better human-machine interface than existing touch panels because it can be integrated with a display panel for non-contacting control in a health conscious environment and the flexible feature is critical for curved display and wearable electronics.
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