「Solvetimestep2D」:修訂間差異

出自DDCC TCAD TOOL Manual
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第34行: 第34行:
  Steptype  = 5:  <br>
  Steptype  = 5:  <br>
  <math>\delta t,~~ t_{total},~~ vg_0 ,~~ \omega ,~~ c_{0}</math><br>
  <math>\delta t,~~ t_{total},~~ vg_0 ,~~ \omega ,~~ c_{0}</math><br>
  vg=vg_end for t<0, for t>0, vg=<math> vg_0  </math> , generation = gen(system)*<math> ( cos (\omega * t + c_{0})) </math> <br>  
  vg=vg_end for t<0, for t>0, vg=<math> vg_0  </math> , generation = gen(system)*<math> (0.5+0.5*cos (\omega * t + c_{0})) </math> <br>
 
Steptype  = 5:  <br>
<math>\delta t,~~ t_{total},~~ vg_0 ,~~ \omega ,~~ c_{0}</math><br>
vg=vg_end for t<0, for t>0, vg=<math> vg_0  </math> , generation = gen(system)*<math> Int(0.5+0.5*cos (\omega * t + c_{0})) </math> <br>  





於 2018年7月9日 (一) 07:26 的修訂

$solvetimestep2D is a command for solving the transient behavior of the device. The format is

$solvetimestep2D
number_of_different_steps(Nt)
steptype contact_type δtttotal par1 par2 par3 par4 ....    
steptype contact_type δtttotal par1 par2 par3 par4 ....    
...
steptype contact_type δtttotal par1 par2 par3 par4 ....    repeat Nt times


The number of parameters depeding on step type. Now we have 3 step types

Steptype  = 1:  
δt,ttotal,vg0
vg=vg_end for t<0, for t>0, vg=vg0
Steptype  = 2:  
δt,ttotal,vg0,A0,ω,c0
vg=vg0+A0×sin(2πωt+c0)
Steptype  = 3:  
δt,ttotal,vg0,A0,ω,c0
vg=vg0+int(A0×sin(2πωt+c0))

contact_type

2: gate
3: source
4: drain
Steptype  = 4:  
δt,ttotal,vg0
vg=vg_end for t<0, for t>0, vg=vg0 , generation = system generation at t<0 and generation =0 for t> 0
Steptype  = 5:  
δt,ttotal,vg0,ω,c0
vg=vg_end for t<0, for t>0, vg=vg0 , generation = gen(system)*(0.5+0.5*cos(ω*t+c0))
Steptype  = 5:  
δt,ttotal,vg0,ω,c0
vg=vg_end for t<0, for t>0, vg=vg0 , generation = gen(system)*Int(0.5+0.5*cos(ω*t+c0))


For example:

$solvetimestep2D
2
2 2 1.0e-10 1.0e-6 3.00 0.1 1.0e6 0.0 
2 4 1.0e-10 1.0e-6 3.00 0.1 1.0e6 0.0 
 vg=3.0+0.1×sin(2π×106t)
vd=3.0+0.1×sin(2π×106t)


related:
$savetimestep2D