//* (C) Copyright Efficient Power Conversion Corporation. All rights reserved. //***************************************************************************** //* Version History: //* 1.00: 05/21/2015 - Initial Model Creation //* 1.01: 05/31/2015 - Updated the Model Parameters //* 1.02: 04/07/2016 - Updated the Model from the Preliminary Version //* 1.03: 05/28/2019 - Fixed a typo simulator lang=spectre subckt EPC2032 (gatein drainin sourcein) parameters aWg=2267 A1=86.5701 k2=2.2735 k3=0.15 rpara=0.0023407 rpara_s_factor=0.24 + aITc=0.003528 arTc=-0.0072 k2Tc=0.0009 x0_0=1.5734 x0_1=0 x0_1_TC=0 + dgs1=4.3e-07 dgs2=2.6e-13 dgs3=0.8 dgs4=0.23 + ags1=1.2587e-09 ags2=6.1396e-10 ags3=1.9659 ags4=0.15395 + ags5=-3.0481e-14 ags6=-9.0808 ags7=1.0954 + agd1=4.8796e-15 agd2=3.7509e-11 agd3=-0.09643 agd4=66.42 + agd5=2.5403e-10 agd6=-3.6436 agd7=2.5221 + agd8=2.7741e-12 agd9=-89.742 agd10=31.602 + asd1=5.5619e-10 asd2=9.3829e-10 asd3=-19.814 asd4=4.7172 + asd5=9.9459e-10 asd6=-0.53539 asd7=39.857 rg_value=0.4 rd (drainin drain) resistor r=((1-rpara_s_factor)*rpara*(1-arTc*(temp-25))) rs (sourcein source) resistor r=(rpara_s_factor*rpara*(1-arTc*(temp-25))) rg (gatein gate) resistor r=(rg_value) rcsdconv (drain source) resistor r=(1E9/aWg) rcgsconv (gate source) resistor r=(1E9/aWg) rcgdconv (gate drain) resistor r=(1E9/aWg) gswitch drain source bsource i=( (v(drain,source)>0) ? + (A1*(1-aITc*(temp-25))*log(1.0+exp((v(gate,source)-(k2*(1-k2Tc*(temp-25))))/k3))* + v(drain,source)/(1 + x0_0*v(drain,source)) ) : + (-A1*(1-aITc*(temp-25))*log(1.0+exp((v(gate,drain)-(k2*(1-k2Tc*(temp-25))))/k3))* + v(source,drain)/(1 + x0_0*v(source,drain)) ) ) ggsdiode gate source bsource i=( (v(gate,source)>10) ? + (0.125*aWg/1077*(dgs1*(exp((10.0)/dgs3)-1)+dgs2*(exp((10.0)/dgs4)-1))) : + (0.125*aWg/1077*(dgs1*(exp((v(gate,source))/dgs3)-1)+dgs2*(exp((v(gate,source))/dgs4)-1))) ) ggddiode gate drain bsource i=( (v(gate,drain)>10) ? + (0.125*aWg/1077*(dgs1*(exp((10.0)/dgs3)-1)+dgs2*(exp((10.0)/dgs4)-1))) : + (0.125*aWg/1077*(dgs1*(exp((v(gate,drain))/dgs3)-1)+dgs2*(exp((v(gate,drain))/dgs4)-1))) ) C_GS (gate source) bsource c=(ags1) G_CGS1 (gate source) bsource q=(0.5*ags2*ags4*log(1+exp((v(gate,source)-ags3)/ags4))+ + ags5*ags7*log(1+exp((v(source,drain)-ags6)/ags7)) ) C_GD (gate drain) bsource c=(agd1) G_CGD1 (gate drain) bsource q=(0.5*ags2*ags4*log(1+exp((v(gate,drain)-ags3)/ags4))+ + agd2*agd4*log(1+exp((v(gate,drain)-agd3)/agd4))+ + agd5*agd7*log(1+exp((v(gate,drain)-agd6)/agd7))+ + agd8*agd10*log(1+exp((v(gate,drain)-agd9)/agd10)) ) C_SD (source drain) bsource c=(asd1) G_CSD1 (source drain) bsource q=(asd2*asd4*log(1+exp((v(source,drain)-asd3)/asd4))+ + asd5*asd7*log(1+exp((v(source,drain)-asd6)/asd7)) ) ends EPC2032