Exact(2)
A new Deep Trench Isolation (DTI) structure with high-voltage capability (BV > 150 V) and latch-up suppression (log Ic/Ie) < −2 in adjacent pockets) is experimentally demonstrated in this work.
We carry out analytical modeling and two-dimensional (2D) finite-element simulations for a GaAs/AlGaAs based superjunction lateral optically controlled power transistor that has been fabricated and successfully tested for high-voltage capability.
Similar(58)
Technologies being investigated include a "3D sensor" for the Pixel layers, and an "n-in-p sensor" with high-voltage operation capability for the SCT.
Additionally, the asymmetrical high-voltage ride-through capability and the controllability criteria of the RECS are analyzed based on eliminating the fluctuations.
This new device has several advantages: flexible, portable, high voltage capacity (up to 1.8 V), lightweight, environmental friendly and expanded indoor-use capabilities.
This innovative architecture demonstrates excellent capability for high-voltage protection while maintaining a latch-up free behavior.
Here, a novel designed concept and facile method were firstly used to fabricate (PO4 3− polyanions doped layered LiNi1/3Co1/3Mn1/3O2 (LNMC- PO4) 0.015-O1.94) structure, which couLNMC- PO4more structuregh-voltage cycling performance and high rate capability.
Nowadays, a large number of power conversion applications is commonly based on DC/DC converters with high voltage boost capability.
A glass polyimide electrical insulation, impregnated with epoxy resin, is giving a high voltage operating capability, tested up to 29 kV.
It is simple and convenient to implement the control scheme for voltage regulation; Negative control effects shown in Fig. 2 can be avoided by using the proposed scheme; The scheme provides a higher voltage regulation capability within the same operating range.
The advantages of the proposed control scheme are: 1) It is simple and convenient to implement the control scheme for voltage regulation; 2) Negative control effects shown in Fig. 2 can be avoided by using the proposed scheme; 3) The scheme provides a higher voltage regulation capability within the same operating range. .
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