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A DSL for Composing IoT Systems

We believe that enabling services to collaborate, even if they were not designed to work together, will be important for the success of the Internet of Things (IoT). To support this we have designed a domain specific language (DSL) for service composition with the focus on mobile and IoT systems. We demonstrate this DSL by building an example system that helps a birdwatcher spy on the birds in her

A 4.3-mW mm-Wave Divide-by-Two Circuit with 30% Locking Range in 28-nm FD-SOI CMOS

A mm-wave divide-by-two circuit with high injection efficiency, implemented in a 28-nm fully-depleted silicon-on-insulator (FD-SOI) CMOS process is demonstrated stand-alone, as well as using an on-chip voltage controlled oscillator (VCO) as the input signal source. Measurements show that the divider has a 30.1 % tuning range centered at an output frequency of 24 GHz, at an input signal power of -1A mm-wave divide-by-two circuit with high injection efficiency, implemented in a 28-nm fully-depleted silicon-on-insulator (FD-SOI) CMOS process is demonstrated stand-alone, as well as using an on-chip voltage controlled oscillator (VCO) as the input signal source. Measurements show that the divider has a 30.1 % tuning range centered at an output frequency of 24 GHz, at an input signal power of -1