Design of the NEPTUNE power system
The NEPTUNE power system is required to make available at each location the largest amount of power possible, using conventional submarine telecommunications cable.
Engineering topics
Publications and source records attributed to Vorperian, V..
The NEPTUNE power system is required to make available at each location the largest amount of power possible, using conventional submarine telecommunications cable.
This paper reports on the development of a silicon bulk micromachined vibratory gyroscope designed for a micro inertial reference system for microspacecraft applications.
In this paper, we present recent work on the design, fabrication, and packaging of a silicon MIcro-Electro-Mechanical System (MEMS) microgyroscope designed for space applications. A hermetically sealed package that houses the microgyroscope and most of its control electronics has been built and tested.
This paper reports on design, modeling, fabrication, and characterization of a novel silicon bulk micromachined vibratory rate gyroscope designed for microspacecraft applications. The new microgyroscope consists of a silicon four leaf cloverstructure with a post attached to the center.
This paper examines the implementaion of MOSFETs as synchronous rectifiers which results in a substantial improvement in power processing efficency and therefore may result in significant reduction of spacecraft mass and volum for the same payload.