Datasheet Texas Instruments MSP430FR4132 — Datenblatt

HerstellerTexas Instruments
SerieMSP430FR4132
Datasheet Texas Instruments MSP430FR4132

16 MHz Ultra-Low-Power-Mikrocontroller mit 8 KB FRAM, 1 KB SRAM, 60 IO, 10-Kanal-ADC10, LCD, IR-Logik

Datenblätter

MSP430FR413x Mixed-Signal Microcontrollers datasheet
PDF, 1.8 Mb, Revision: B, Datei veröffentlicht: Aug 14, 2015
Auszug aus dem Dokument

Preise

Status

MSP430FR4132IG48MSP430FR4132IG48RMSP430FR4132IG56MSP430FR4132IG56RMSP430FR4132IPMR
Lifecycle StatusActive (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)
Manufacture's Sample AvailabilityNoNoNoNoNo

Verpackung

MSP430FR4132IG48MSP430FR4132IG48RMSP430FR4132IG56MSP430FR4132IG56RMSP430FR4132IPMR
N12345
Pin4848565664
Package TypeDGGDGGDGGDGGPM
Industry STD TermTSSOPTSSOPTSSOPTSSOPLQFP
JEDEC CodeR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GS-PQFP-G
Package QTY4020003520001000
CarrierTUBELARGE T&RTUBELARGE T&RLARGE T&R
Device MarkingFR4132FR4132FR4132FR4132FR4132
Width (mm)6.16.16.16.110
Length (mm)12.512.5141410
Thickness (mm)1.151.151.151.151.4
Pitch (mm).5.5.5.5.5
Max Height (mm)1.21.21.21.21.6
Mechanical DataHerunterladenHerunterladenHerunterladenHerunterladenHerunterladen

Parameter

Parameters / ModelsMSP430FR4132IG48
MSP430FR4132IG48
MSP430FR4132IG48R
MSP430FR4132IG48R
MSP430FR4132IG56
MSP430FR4132IG56
MSP430FR4132IG56R
MSP430FR4132IG56R
MSP430FR4132IPMR
MSP430FR4132IPMR
ADCADC10 - 10chADC10 - 10chADC10 - 10chADC10 - 10chADC10 - 10ch
AESN/AN/AN/AN/AN/A
Active Power, uA/MHz126126126126126
Additional FeaturesLCD,Real-Time Clock,Watchdog,Temp Sensor,Brown Out ResetLCD,Real-Time Clock,Watchdog,Temp Sensor,Brown Out ResetLCD,Real-Time Clock,Watchdog,Temp Sensor,Brown Out ResetLCD,Real-Time Clock,Watchdog,Temp Sensor,Brown Out ResetLCD,Real-Time Clock,Watchdog,Temp Sensor,Brown Out Reset
BSLUARTUARTUARTUARTUART
CPUMSP430MSP430MSP430MSP430MSP430
Featuredfr4fr4fr4fr4fr4
Frequency, MHz1616161616
GPIO Pins6060606060
I2C11111
Max VCC3.63.63.63.63.6
Min VCC1.81.81.81.81.8
MultiplierN/AN/AN/AN/AN/A
Non-volatile Memory, KB88888
Operating Temperature Range, C-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85
Package GroupTSSOPTSSOPTSSOPTSSOPLQFP
Package Size: mm2:W x L, PKG48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)64LQFP: 144 mm2: 12 x 12(LQFP)
RAM, KB11111
RatingCatalogCatalogCatalogCatalogCatalog
SPI22222
Security EnablerCryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protectionCryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protectionCryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protectionCryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protectionCryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protection
Special I/ON/AN/AN/AN/AN/A
Standby Power, LPM3-uA1.311.311.311.311.31
Timers - 16-bit22222
UART11111
Wakeup Time, us1010101010

Öko-Plan

MSP430FR4132IG48MSP430FR4132IG48RMSP430FR4132IG56MSP430FR4132IG56RMSP430FR4132IPMR
RoHSCompliantCompliantCompliantCompliantCompliant

Anwendungshinweise

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    PDF, 194 Kb, Datei veröffentlicht: Oct 3, 2014
    This application report enables easy migration from MSP430F4xx flash-based MCUs to the MSP430FR4xx/FR2xx family of FRAM-based MCUs. It covers programming, system, and peripheral considerations when migrating firmware. The intent is to highlight key differences between the two families. For more information on the use of the MSP430FR4xx/FR2xx devices, see the MSP430FR4xx and MSP430FR2xx Family User
  • Infrared Remote Control Implementation With MSP430FR4xx (Rev. B)
    PDF, 329 Kb, Revision: B, Datei veröffentlicht: Jun 30, 2015
    This application report provides an insight into several of the most frequently used infrared protocols and especially their flexible implementation using the TI MSP430FR4xx series of low-power microcontrollers.The MSP430FR4xx microcontrollers are primarily targeted at remote control application that are equipped with infrared modulation function and an LCD display. The infrared modulation combi
  • VLO Calibration on the MSP430FR4xx and MSP430FR2xx Family (Rev. A)
    PDF, 78 Kb, Revision: A, Datei veröffentlicht: Feb 19, 2016
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  • MSP430 FRAM Technology – How To and Best Practices
    PDF, 326 Kb, Datei veröffentlicht: Jun 23, 2014
    FRAM is a non-volatile memory technology that behaves similar to SRAM while enabling a whole host of new applications, but also changing the way firmware should be designed. This application report outlines the how to and best practices of using FRAM technology in MSP430 from an embedded software development perspective. It discusses how to implement a memory layout according to application-specif
  • MSP430 FRAM Quality and Reliability (Rev. A)
    PDF, 295 Kb, Revision: A, Datei veröffentlicht: May 1, 2014
    FRAM is a nonvolatile embedded memory technology and is known for its ability to be ultra-low power while being the most flexible and easy-to-use universal memory solution available today. This application report is intended to give new FRAM users and those migrating from flash-based applications knowledge on how FRAM meets key quality and reliability requirements such as data retention and endura
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    PDF, 596 Kb, Datei veröffentlicht: May 16, 2012
    This document is a specification for the ELF-based Embedded Application Binary Interface (EABI) for the MSP430 family of processors from Texas Instruments. The EABI defines the low-level interface between programs, program components, and the execution environment, including the operating system if one is present. Components of the EABI include calling conventions, data layout and addressing conve
  • Migrating From MSP430 F2xx and G2xx Families to MSP430 FR4xx and FR2xx Family (Rev. E)
    PDF, 237 Kb, Revision: E, Datei veröffentlicht: May 4, 2018
    This application report helps to ease the migration from MSP430F2xx flash-based MCUs to the MSP430FR4xx and MSP430FR2xx family of FRAM-based MCUs. It discusses programming system hardware core architecture and peripheral considerations. The intent is to highlight key differences between the two families. For more information on the use of the MSP430FR4xx and MSP430FR2xx devices see the MSP430
  • Designing With MSP430 and Segment LCDs (Rev. A)
    PDF, 2.1 Mb, Revision: A, Datei veröffentlicht: Jul 20, 2015
    Segment liquid crystal displays (LCDs) are needed to provide information to users in a wide variety of applications from smart meters to electronic shelf labels (ESL) to medical equipment. Several MSP430в„ў microcontroller families include built-in low-power LCD driver circuitry that allows the MSP430 MCU to directly control the segmented LCD glass. This application note helps explain how segmented
  • General Oversampling of MSP ADCs for Higher Resolution (Rev. A)
    PDF, 551 Kb, Revision: A, Datei veröffentlicht: Apr 1, 2016
    Multiple MSP ultra-low-power microcontrollers offer analog-to-digital converters (ADCs) to convert physical quantities into digital numbers, a function that is widely used across numerous applications. There are times, however, when a customer design demands a higher resolution than the ADC of the selected MSP can offer. This application report, which is based on the previously-published Oversampl

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Herstellerklassifikation

  • Semiconductors> Microcontrollers (MCU)> MSP430 ultra-low-power MCUs> MSP430FRxx FRAM