Datasheet
MSP430F532x
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SLAS678D –AUGUST 2010–REVISED FEBRUARY 2013
PMM, SVS High Side
over recommended ranges of supply voltage and operating free-air temperature (unless otherwise noted)
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
SVSHE = 0, DV
CC
= 3.6 V 0 nA
I
(SVSH)
SVS current consumption SVSHE = 1, DV
CC
= 3.6 V, SVSHFP = 0 200 nA
SVSHE = 1, DV
CC
= 3.6 V, SVSHFP = 1 1.5 µA
SVSHE = 1, SVSHRVL = 0 1.57 1.68 1.78
SVSHE = 1, SVSHRVL = 1 1.79 1.88 1.98
V
(SVSH_IT–)
SVS
H
on voltage level
(1)
V
SVSHE = 1, SVSHRVL = 2 1.98 2.08 2.21
SVSHE = 1, SVSHRVL = 3 2.10 2.18 2.31
SVSHE = 1, SVSMHRRL = 0 1.62 1.74 1.85
SVSHE = 1, SVSMHRRL = 1 1.88 1.94 2.07
SVSHE = 1, SVSMHRRL = 2 2.07 2.14 2.28
SVSHE = 1, SVSMHRRL = 3 2.20 2.30 2.42
V
(SVSH_IT+)
SVS
H
off voltage level
(1)
V
SVSHE = 1, SVSMHRRL = 4 2.32 2.40 2.55
SVSHE = 1, SVSMHRRL = 5 2.52 2.70 2.88
SVSHE = 1, SVSMHRRL = 6 2.90 3.10 3.23
SVSHE = 1, SVSMHRRL = 7 2.90 3.10 3.23
SVSHE = 1, dV
DVCC
/dt = 10 mV/µs,
2.5
SVSHFP = 1
t
pd(SVSH)
SVS
H
propagation delay µs
SVSHE = 1, dV
DVCC
/dt = 1 mV/µs,
20
SVSHFP = 0
SVSHE = 0 → 1, dV
DVCC
/dt = 10 mV/µs,
12.5
SVSHFP = 1
t
(SVSH)
SVS
H
on or off delay time µs
SVSHE = 0 → 1, dV
DVCC
/dt = 1 mV/µs,
100
SVSHFP = 0
dV
DVCC
/dt DV
CC
rise time 0 1000 V/s
(1) The SVS
H
settings available depend on the VCORE (PMMCOREVx) setting. See the Power Management Module and Supply Voltage
Supervisor chapter in the MSP430x5xx and MSP430x6xx Family User's Guide (SLAU208) on recommended settings and usage.
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