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MSP432P411VIPZ Datenblatt(PDF) 49 Page - Texas Instruments

Teilenummer MSP432P411VIPZ
Bauteilbeschribung  SimpleLink Mixed-Signal Microcontrollers
PDF  212 Pages
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Hersteller  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

MSP432P411VIPZ Datenblatt(HTML) 49 Page - Texas Instruments

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MSP432P4111, MSP432P4011, MSP432P411Y
MSP432P401Y, MSP432P411V, MSP432P401V
www.ti.com
SLASEA0A – DECEMBER 2017 – REVISED FEBRUARY 2018
Submit Documentation Feedback
Product Folder Links: MSP432P4111 MSP432P4011 MSP432P411Y MSP432P401Y MSP432P411V MSP432P401V
Specifications
Copyright © 2017–2018, Texas Instruments Incorporated
Table 5-6 lists the latencies required to change between different active modes and LPM3 or LPM4
modes.
(1)
This is the latency from WFI instruction execution by CPU to LPM3 or LPM4 entry.
(2)
This is the latency from I/O wake-up event to MCLK clock start at device pin.
Table 5-6. LPM3, LPM4 Mode Transition Latencies
over recommended ranges of supply voltage and operating free-air temperature (unless otherwise noted)
PARAMETER
ORIGINAL
OPERATING MODE
FINAL OPERATING
MODE
TEST CONDITIONS
TYP
MAX
UNIT
tAMLDO0_LPMx0
(1)
AM_LDO_VCORE0
LPM3_LPM4_VCORE0
Transition from
AM_LDO_VCORE0 to
LPM3 or LPM4 at VCORE0
SELM = 3.
DCO frequency =
24 MHz
18
60
µs
tLPMx0_AMLDO0_NORIO
(2)
LPM3_LPM4_VCORE0
AM_LDO_VCORE0
Transition from LPM3 or
LPM4 at VCORE0 to
AM_LDO_VCORE0 through
wake-up event from
nonglitch-filter type I/O
SELM = 3.
DCO frequency =
24 MHz
8
9
µs
tLPMx0_AMLDO0_GFLTIO
(2)
LPM3_LPM4_VCORE0
AM_LDO_VCORE0
Transition from LPM3 or
LPM4 at VCORE0 to
AM_LDO_VCORE0 through
wake-up event from glitch-
filter type I/O, GLTFLT_EN
= 1
SELM = 3.
DCO frequency =
24 MHz
9
10
µs
tAMLDO1_LPMx1
(1)
AM_LDO_VCORE1
LPM3_LPM4_VCORE1
Transition from
AM_LDO_VCORE1 to
LPM3 or LPM4 at VCORE1
SELM = 3.
DCO frequency =
48 MHz
17
60
µs
tLPMx1_AMLDO1_NORIO
(2)
LPM3_LPM4_VCORE1
AM_LDO_VCORE1
Transition from LPM3 or
LPM4 at VCORE1 to
AM_LDO_VCORE1 through
wake-up event from
nonglitch-filter type I/O
SELM = 3.
DCO frequency =
48 MHz
7.5
8
µs
tLPMx1_AMLDO1_GFLTIO
(2)
LPM3_LPM4_VCORE1
AM_LDO_VCORE1
Transition from LPM3 or
LPM4 at VCORE1 to
AM_LDO_VCORE1 through
wake-up event from glitch-
filter type I/O, GLTFLT_EN
= 1
SELM = 3.
DCO frequency =
48 MHz
8
9
µs
tAMLFx_LPMx_128k
(1)
AM_LF_VCOREx
LPM3_LPM4_VCOREx
Transition from
AM_LF_VCORE0 or
AM_LF_VCORE1 to LPM3
or LPM4 at VCORE0 or
VCORE1
SELM = 2. REFO
frequency =
128 kHz
255
290
µs
tAMLFx_LPMx_32k
(1)
AM_LF_VCOREx
LPM3_LPM4_VCOREx
Transition from
AM_LF_VCORE0 or
AM_LF_VCORE1 to LPM3
or LPM4 at VCORE0 or
VCORE1
SELM = 0. LFXT
frequency =
32.768 kHz
980
1025
µs
tLPMx_AMLFx_NORIO_128k
(2)
LPM3_LPM4_VCOREx
AM_LF_VCOREx
Transition from LPM3 or
LPM4 at VCORE0 or
VCORE1 to
AM_LF_VCORE0 or
AM_LF_VCORE1 through
wake-up event from
nonglitch-filter type I/O
SELM = 2. REFO
frequency =
128 kHz
45
50
µs
tLPMx_AMLFx_NORIO_32k
(2)
LPM3_LPM4_VCOREx
AM_LF_VCOREx
Transition from LPM3 or
LPM4 at VCORE0 or
VCORE1 to
AM_LF_VCORE0 or
AM_LF_VCORE1 through
wake-up event from
nonglitch-filter type I/O
SELM = 0. LFXT
frequency =
32.768 kHz
150
170
µs



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