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Flexible Electronics
Flexible electronics, also known as flex circuits, is a technology for assembling electronic circuits by mounting electronic devices on flexible plastic substrates. Flexible electronic assemblies may be manufactured using identical components used for rigid printed circuit boards, allowing the board to conform to a desired shape, or to flex during its use.
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Glass Quartz
Quartz glass is colorless glass made of almost pure silica. When silicon dioxide SiO2 is cooled rapidly enough, it does not crystallize but solidifies as a glass.The glass transition temperature of pure SiO2 is about 1600 K. Like most of the crystalline polymorphs the local atomic structure in pure silica glass is regular tetrahedra of oxygen atoms around silicon atoms.
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Semiconductor Devices
Semiconductor devices are electronic components that exploit the electronic properties of semiconductor materials, principally silicon, germanium, and gallium arsenide, as well as organic semiconductors. Semiconductor devices have replaced thermionic devices (vacuum tubes) in most applications. They use electronic conduction in the solid state as opposed to the gaseous state or thermionic emission in a high vacuum.
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Semiconductor Wafer
A wafer is a thin slice of semiconductor material, such as a silicon crystal, used in the fabrication of integrated circuits and other microdevices. The wafer serves as the substrate for microelectronic devices built in and over the wafer and undergoes many microfabrication process steps such as doping or ion implantation, etching, deposition of various materials, and photolithographic patterning.
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Silicon Oxide
Silicon oxide may refer to silicon dioxide, SiO2 or silicon monoxide SiO. The chemical compound silicon dioxide, also known as silica is most commonly found in nature as sand or quartz, as well as in the cell walls of diatoms.
Silicon monoxide has been detected in stellar objects and it has been described as the most common oxide of silicon in the universe.
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Silicon Semiconductor Technology
By far, silicon (Si) is the most widely used material in semiconductor devices. Its combination of low raw material cost, relatively simple processing, and a useful temperature range make it currently the best compromise among the various competing materials. Silicon used in semiconductor device manufacturing is currently fabricated into boules that are large enough in diameter to allow the production of 300 mm (12 in.) wafers.
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Space Based Power
Space-based solar power (SBSP) (or historically space solar power- SSP) is a system for the collection of solar power in space, for use on Earth. SBSP differs from the usual method of solar power collection in that the solar panels used to collect the energy would reside on a satellite in orbit, often referred to as a solar power satellite (SPS), rather than on Earth's surface.
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Space Power Stations
Space-based solar power (SBSP) (or historically space solar power- SSP) is a system for the collection of solar power in space, for use on Earth. SBSP differs from the usual method of solar power collection in that the solar panels used to collect the energy would reside on a satellite in orbit, often referred to as a solar power satellite (SPS), rather than on Earth's surface.
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Solar Cell Wafer
A solar cell is a device that converts the energy of sunlight directly into electricity by the photovoltaic effect. Solar cells are often electrically connected and encapsulated as a module. Photovoltaic modules often have a sheet of glass on the front (sun up) side, allowing light to pass while protecting the semiconductor wafers from the elements (rain, hail, etc.).
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PDMS Microfluidics
PDMS stamps are pieces of Polydimethylsiloxane (PDMS) that have been patterned usually against a master to form a relief pattern used in soft lithography. This PDMS stamp can be used in either its current form as a relief surface for techniques such as Micro Contact Printing or can also be attached to an external source by tubing so that liquid may be past through channels on its surface. It is possible to pattern PDMS to micrometre scale. These kinds of devices are often referred to as microfluidic devices.
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