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BRRip HD Mariah Carey Sings To Baby! Online download torrent movie torrents free download videos1. Field of the Invention
The present invention relates to a high voltage semiconductor device and more particularly, to a high voltage semiconductor device having a trench gate.
2. Discussion of the Background
A high voltage semiconductor device is used as a power supply for an electronic device or a power converting device. Also, the high voltage semiconductor device is used as a protecting device for protection from electricity. The high voltage semiconductor device having a gate trench has an advantage that it can reduce electric field in a channel region of a semiconductor substrate compared with the high voltage semiconductor device having a planer gate.
FIG. 1 is a sectional view illustrating a high voltage semiconductor device according to the related art.
Referring to FIG. 1, the high voltage semiconductor device 10 includes a semiconductor substrate 11, an N− diffusion region 12, a drift region 13, a P− type well 14, a shallow trench isolation (STI) region 15, a gate trench 16, a gate electrode 17 and source and drain regions 18 and 19.
For convenience of explanation, the N− diffusion region 12, the drift region 13, the P− type well 14, the shallow trench isolation region 15, the gate trench 16, the gate electrode 17 and the source and drain regions 18 and 19 are not formed on the front surface and the rear surface of the semiconductor substrate 11.
As shown in FIG. 1, in the high voltage semiconductor device 10 according to the related art, an electric field is concentrated on the drain region 19 and the depletion region formed between the drain region 19 and the drift region 13 increases with increase of a drain voltage VD. The depletion region includes a depletion layer 20 and an accumulation layer 21, which are formed in the drift region 13 along the wall of the gate trench 16.
The electric field concentration on the drain region 19 causes a breakdown of a junction between the drain region 19 and the drift region 13 and the drain current is likely to increase. The increase of the drain
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The aim of this study was to investigate the bioequivalence of two different infusion regimens of moxifloxacin hydrochloride (MXF) and ciprofloxacin (CIP) in two different infusion regimens in healthy volunteers. A single dose, open label, randomized, two treatment, four period, crossover design was used to determine the bioequivalence of MXF 250 mg infusion over 1 h (test regimen T) vs. the 500 mg infusion over 2 h (reference regimen R), and CIP 300 mg infusion over 1 h (test regimen T2) vs. the 750 mg infusion over 3 h (reference regimen R3). The following secondary endpoints were used: plasma and urine concentrations of MXF and CIP; and area under the concentration-time curve for 6-h duration (AUC(0-6h)) for both MXF and CIP. Forty-eight subjects were recruited. Demographic characteristics and pharmacokinetic parameters of MXF and CIP of the two treatment regimens were found to be comparable. The bioequivalence was established for both moxifloxacin and ciprofloxacin using the criteria of FDA guidelines [80-125% confidence interval (CI)].Q:
Create a Grid or Trellis from Raster Data in QGIS
I have a grid of points as a raster with the values representing the distance from a second raster file.
I need to create a grid out of this and then overlay this grid on a projected map with a buffered polygon overlay.
Is there a way to do this?
This is what I have so far:
You can create a Grid using the Tool “Rasterize” from the Processing Toolbox. Just use a value of 2 or more and you should get a grid. Here is the official documentation for the Tool