"$usemunpfunc" 修訂間的差異
出自 DDCC TCAD TOOL Manual
行 29: | 行 29: | ||
$usemunpfunc |
$usemunpfunc |
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− | 11 μe βe μh βh <math> |
+ | 11 μe βe μh βh <math>v_{n,sat}</math> <math>v_{p,sat}</math> |
於 2018年3月26日 (一) 10:20 的修訂
Function for organic material. We usually assume the carrier mobility is depend on electrical field and follow Poole-Frenkel field dependent mobility equation.
Mobility follow this equation
Where
- is the zero-field mobility
- is the factor of mobility increasing
- is the electric field.
Format
$usemunpfunc 1 μe βe μh βh
Parameter Explanation
,
- μe : electron zero-field mobility.
- βe : electron beta.
- μh : hole zero-field mobility.
- βh : hole beta.
$usemunpfunc 11 μe βe μh βh
Parameter Explanation
- μe : electron zero-field mobility.
- βe : electron beta.
- μh : hole zero-field mobility.
- βh : hole beta.
- saturate electron velocity (cm/s)
- saturate hole velocity (cm/s)
,
If 解析失敗 (不明函數 "\v"): \mu_{n,temp} \times E > v_{n,sat}, then {\mu_n} = \frac{1\v_{n,sat}}{E} If 解析失敗 (不明函數 "\v"): \mu_{n,temp} \times E > v_{n,sat}, then {\mu_n} = \frac{1\v_{n,sat}}{E}