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Showing posts with the label SOS CMOS Process and Drawbacks

Density based traffic signal system using image processing

Contact Me for Project Prize Mail Id:  tamilblogelectronic@gmail.com Measure Traffic density and ambulance detection in Realtime project. What We Do in This Project: (Both Software & Hardware Project Available) ( i) Traffic Density Measure - Realtime (Means using Traffic Camera or Traffic Video) First,  we do Vehicle Detection in Video/Camera using Image Processing. Second, we Count the Vehicle We Detected in Video/Camera using Image Processing. Third, We Compare Two lane Vehicle Density in Video/Camera , if lane detect more no. of vehicle will be Prioritized first.   (ii) Ambulance Detection in Single Lane  - Realtime (Means using Traffic Camera or Traffic Video) : First, We Collect the Images of Ambulance. Second, we train our Image model using sample ambulance image. using Yolo image Model, we able to Detect the Ambulance in Video/ Camera. (iii) Ambulance Detection in Multiple Lane  - Realtime (Means using Traffic Camera or Traffic Vid...

Silicon-on-Sapphire (SOS) CMOS Process and Drawbacks

 The silicon-on-sapphire (SOS) CMOS structure is a heteroepitaxial CMOS structure in which a thin (~1 μm) single crystal silicon epitaxial layer is deposited on a highly polished single-crystal sapphire substrate.  The silicon film is doped n+ and p+ by phosphorus and boron ion implantation, followed by an annealing or drive-in diffusion step, as required. The thin silicon film is then etched into many separate NMOS and PMOS devices and interconnected by the metallization pattern.  The (SOS) CMOS structure is an example of a dielectrically isolated IC, and the use of the insulating substrate results in a greatly reduced parasitic capacitance. This leads to a very high-speed device performance and very low power dissipation.  These features are especially useful for very high-speed, high-density ICs.  The Steps in the SOS CMOS process   i) The starting wafer is sapphire (aluminium oxide, Al203) on which silicon, whose crystal lattice is compatible with ...

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