"$calculatekp" 修訂間的差異
出自 DDCC TCAD TOOL Manual
(已建立頁面,內容為 "$calculatekp $calculatekp all <math> \theta </math> <math> \phi </math> kx_nmax ky_nmax dk A1 A2 A3 A4 A5 A6 A7 A1 A2 A3 A4 A5 A6 A7 A1 A2 A3 A4 A5 A6...") |
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行 12: | 行 12: | ||
A1 A2 A3 A4 A5 A6 A7 |
A1 A2 A3 A4 A5 A6 A7 |
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..... (n layers) |
..... (n layers) |
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+ | Weighting <math>\Delta_1</math> <math>\Delta_2</math> <math>\Delta_3</math> a c <math>c_{11}</math> <math>c_{12}</math> <math>c_{13}</math> <math>c_{33}</math> <math>c_{44}</math> <math>c_{66}</math> |
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+ | Weighting <math>\Delta_1</math> <math>\Delta_2</math> <math>\Delta_3</math> a c <math>c_{11}</math> <math>c_{12}</math> <math>c_{13}</math> <math>c_{33}</math> <math>c_{44}</math> <math>c_{66}</math> |
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+ | Weighting <math>\Delta_1</math> <math>\Delta_2</math> <math>\Delta_3</math> a c <math>c_{11}</math> <math>c_{12}</math> <math>c_{13}</math> <math>c_{33}</math> <math>c_{44}</math> <math>c_{66}</math> |
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Incom D1 D2 D3 a c <math>c_{11}</math> <math>c_{12}</math> <math>c_{13}</math> <math>c_{33}</math> <math>c_{44}</math> <math>c_{66}</math> |
Incom D1 D2 D3 a c <math>c_{11}</math> <math>c_{12}</math> <math>c_{13}</math> <math>c_{33}</math> <math>c_{44}</math> <math>c_{66}</math> |
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+ | ..... (n layers) |
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+ | <math>D_1</math> <math>D_2</math> <math>D_3</math> <math>D_4</math> <math>D_5</math> <math>D_6</math> |
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+ | <math>D_1</math> <math>D_2</math> <math>D_3</math> <math>D_4</math> <math>D_5</math> <math>D_6</math> |
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+ | <math>D_1</math> <math>D_2</math> <math>D_3</math> <math>D_4</math> <math>D_5</math> <math>D_6</math> |
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+ | <math>D_1</math> <math>D_2</math> <math>D_3</math> <math>D_4</math> <math>D_5</math> <math>D_6</math> |
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+ | .....(n layers) |
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+ | |||
+ | Weighting is usually defined as 1 if each layer's parameters are calculated by user or GUI program. <br> |
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+ | However, if it is not equal to 1, all parameters such as <math>\Delta_1</math> <math>\Delta_2</math> <math>\Delta_3</math> a c <math>c_{11}</math> <math>c_{12}</math> <math>c_{13}</math> <math>c_{33}</math> <math>c_{44}</math> <math>c_{66}</math> <math>D_1</math> <math>D_2</math> <math>D_3</math> <math>D_4</math> <math>D_5</math> <math>D_6</math> will be weighted by <br> |
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+ | |||
+ | n_layer_parameters = Weighting(n_layer_parameters) + (1-Weighting)*last_layer_parameters <br> |
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+ | For example, if we have 5 layers, and weighting of the second layer is 0.5, then <br> |
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+ | <math>\Delta_{1} (2)</math> =<math>\Delta_{1} (2) * Weighting_2 + \Delta_{1} (5) * (1-Weighting_2)</math> |
於 2017年8月29日 (二) 23:02 的修訂
$calculatekp
$calculatekp all![]()
kx_nmax ky_nmax dk A1 A2 A3 A4 A5 A6 A7 A1 A2 A3 A4 A5 A6 A7 A1 A2 A3 A4 A5 A6 A7 A1 A2 A3 A4 A5 A6 A7 ..... (n layers) Weighting
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a c
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Weighting
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a c
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Weighting
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a c
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Incom D1 D2 D3 a c
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..... (n layers)
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.....(n layers)
Weighting is usually defined as 1 if each layer's parameters are calculated by user or GUI program.
However, if it is not equal to 1, all parameters such as
a c
will be weighted by
n_layer_parameters = Weighting(n_layer_parameters) + (1-Weighting)*last_layer_parameters
For example, if we have 5 layers, and weighting of the second layer is 0.5, then
=
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