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130 lines
4.1 KiB
130 lines
4.1 KiB
6 years ago
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* POWERSECTION -> plot v(pwrbtn_pulse),v(shutdown_pulse),v(wake_pulse),v(p3v3),v(ftdi_nsleep),v(pwren)
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* Simulation of power network
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* POWER ON: USB plugged in, POWER button, RTC alarm, FTDI_nSLEEP
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* POWER OFF: SHUTDOWN signal
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* FTDI_nSLEEP has priority over SHUTDOWN signal (not yet simulated)
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* Simulate 5V USB plugging in every 10 seconds
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* start rise fall duration period
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VUSB5V hard_5V 0 PULSE(0V 5V 0.1s 10ms 10ms 9s 10s DC=0V)
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* internal resistor provides "soft" USB 5V
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Rusb hard_5V USB5V 0.1
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* shutdown pulse every 1 second, start after 0.4s
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* start rise fall duration period
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VSHUT shutdown_pulse 0 PULSE(0V 3.3V 0.4s 10ms 10ms 100ms 1s DC=0V)
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* convergence friendly resistor
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RSHUT shutdown_pulse SHUTDOWN 220
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* power up button pulse every 10 seconds, start after 0.7s
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* start rise fall duration period
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VPWRBTN pwrbtn_pulse 0 PULSE(0V 3.3V 0.9s 10ms 10ms 100ms 10s DC=0V)
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* RTC internal wakeup pulse every 10 seconds, start after 1.7s
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* start rise fall duration period
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VWAKEUP wake_pulse 0 PULSE(0V 3.3V 1.9s 10ms 10ms 100ms 10s DC=0V)
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* convergence friendly internal resistor
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Rwk wake_pulse wake_base 1k
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* FTDI_nSLEEP signal every 10 seconds, start after 2.3s
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* start rise fall duration period
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VFTDI FTDI_nSLEEP 0 PULSE(0V 2.5V 2.2s 10ms 10ms 0.5s 10s DC=0V)
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* RTC internal NPN transisfor for open collector output
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Qwk WAKEUPn wake_base 0 BC847
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* hard 3.3V voltage
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Vhard3V3 hard_3V3 0 3.3V
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* internal resistor provides delayed rise of 3.3V
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Rsmps hard_3V3 PWR3V3 10
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* base resistor
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R6 WAKEUPn WKn 1.2k
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* PNP transistor
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Q1 WKUP WKn USB5V BC857
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* Slow down capacitor, initially discharged
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C13 USB5V WKUP 2.2uF IC=0
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* diode to discharge C13 at shutdown
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D13 0 WKUP N4148
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* diode to activate onboard switching regulator
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D10 WKUP WAKE N4148
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* "OR" resistors
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R1 WAKE PWREN 4.7k
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R4 PWREN HOLD 4.7k
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* "OR" diode to 3.3V from switching regulator
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D11 P3V3 HOLD LED_GREEN
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* 2.5V from FTDI also supplies P3V3 line so it never falls to 0V
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VFTDI2V5 hard_2V5 0 2.8V
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* FTDI internal resistance for soft 2.5V to P3V3 line
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RFTDI hard_2V5 P3V3 10
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* switching regulator, default off, starts by hysteresis
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SW3V3 PWR3V3 P3V3 PWREN 0 SWITCH OFF
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* pull down resistor
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R2 PWREN 0 18k
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* small mosfet
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M1 drain SHUT 0 0 N7002
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* drain resistor
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R8 drain PWREN 1.2k
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* mosfet gate slowdown resistor
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C14 SHUT 0 220nF
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* mosfet gate discharge (default OFF) resistor
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R5 SHUT 0 2.2MEG
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* diode to discharge gate at shutdown
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D14 SHUT P3V3 N4148
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* diode for shutdown to only pull down, never up
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D15 SHUTDOWN SHUT BAT54W
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* Pull down resistor
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R13 SHUTDOWN 0 15k
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* power button
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R3 USB5V pwrbtn 4.7k
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D16 WAKEUPn pwrbtn N4148
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SPWR pwrbtn 0 pwrbtn_pulse 0 SWITCH OFF
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* ftdi no-sleep network
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R10 FTDI_nSLEEP FTDI_nSUSPEND 130
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D12 FTDI_nSUSPEND PWREN BAT54W
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* The load (slow)
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RL P3V3 0 100
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CL P3V3 0 1000uF
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.TRAN 1ms 3.3s
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.OPTIONS METHOD=GEAR, RELTOL=1E-3, itl1=500, itl4=500
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*.OPTIONS gmin=1e-11 reltol=4e-4 itl1=500 itl4=500
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*.OPTIONS gmin = 1E-12, reltol = 1E-3, itl1 = 500, itl4 = 500
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.MODEL SWITCH SW (VT=1V, VH=0.5V, RON=0.01, ROFF=100MEG)
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.MODEL N4148 D (CJO=0.2pF)
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.MODEL BAT54W D (
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+IS=1.4092e-08 RS=0.78137 N=0.960292 EG=0.706829
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+XTI=0.5 BV=30 IBV=0.00001 CJO=1.28873e-11
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+VJ=0.604739 M=0.445477 FC=0.5 TT=0
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+KF=0 AF=1)
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*Typ RED GaAs LED: Vf=1.7V Vr=4V If=40mA trr=3uS
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.MODEL LED_RED D (IS=93.2P RS=42M N=3.73 BV=4 IBV=10U
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+ CJO=2.97P VJ=.75 M=.333 TT=4.32U)
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*Typ RED,GREEN,YELLOW,AMBER GaAs LED: Vf=2.1V Vr=4V If=40mA trr=3uS
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.MODEL LED_GREEN D (IS=93.1P RS=42M N=4.61 BV=4 IBV=10U
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+ CJO=2.97P VJ=.75 M=.333 TT=4.32U)
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*Typ BLUE SiC LED: Vf=3.4V Vr=5V If=40mA trr=3uS
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.MODEL LED_BLUE D (IS=93.1P RS=42M N=7.47 BV=5 IBV=30U
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+ CJO=2.97P VJ=.75 M=.333 TT=4.32U)
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.MODEL BC847 NPN (BF=150)
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.MODEL BC857 PNP (BF=150)
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.MODEL N7002 NMOS (LEVEL=1, VTO=2.5, KP=40, RS=0.033, RD=0.034)
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* todo
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* [x] delay: switch power 3.3V doesn't start immediately simulated with Rsmps=10 ohm
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* [ ] control signals should be derived from P3V3 line
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