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Wafer scale millimeter-wave integrated circuits based on epitaxial graphene in high data rate communication.


ABSTRACT: In recent years, the demand for high data rate wireless communications has increased dramatically, which requires larger bandwidth to sustain multi-user accessibility and quality of services. This can be achieved at millimeter wave frequencies. Graphene is a promising material for the development of millimeter-wave electronics because of its outstanding electron transport properties. Up to now, due to the lack of high quality material and process technology, the operating frequency of demonstrated circuits has been far below the potential of graphene. Here, we present monolithic integrated circuits based on epitaxial graphene operating at unprecedented high frequencies (80-100?GHz). The demonstrated circuits are capable of encoding/decoding of multi-gigabit-per-second information into/from the amplitude or phase of the carrier signal. The developed fabrication process is scalable to large wafer sizes.

SUBMITTER: Habibpour O 

PROVIDER: S-EPMC5286424 | biostudies-other | 2017 Feb

REPOSITORIES: biostudies-other

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Wafer scale millimeter-wave integrated circuits based on epitaxial graphene in high data rate communication.

Habibpour Omid O   He Zhongxia Simon ZS   Strupinski Wlodek W   Rorsman Niklas N   Zirath Herbert H  

Scientific reports 20170201


In recent years, the demand for high data rate wireless communications has increased dramatically, which requires larger bandwidth to sustain multi-user accessibility and quality of services. This can be achieved at millimeter wave frequencies. Graphene is a promising material for the development of millimeter-wave electronics because of its outstanding electron transport properties. Up to now, due to the lack of high quality material and process technology, the operating frequency of demonstrat  ...[more]

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