Datasheet Texas Instruments MSP430F6436 — Datenblatt

HerstellerTexas Instruments
SerieMSP430F6436
Datasheet Texas Instruments MSP430F6436

MSP430F643x Mixed-Signal-Mikrocontroller

Datenblätter

MSP430F643x Mixed-Signal Microcontrollers datasheet
PDF, 1.8 Mb, Revision: D, Datei veröffentlicht: Dec 8, 2015
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Preise

Status

MSP430F6436IPZMSP430F6436IPZRMSP430F6436IZQWR
Lifecycle StatusActive (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)
Manufacture's Sample AvailabilityNoNoNo

Verpackung

MSP430F6436IPZMSP430F6436IPZRMSP430F6436IZQWR
N123
Pin100100113
Package TypePZPZZQW
Industry STD TermLQFPLQFPBGA MICROSTAR JUNIOR
JEDEC CodeS-PQFP-GS-PQFP-GS-PBGA-N
Package QTY9010002500
CarrierJEDEC TRAY (10+1)LARGE T&RLARGE T&R
Device MarkingM430F6436M430F6436M430F6436
Width (mm)14147
Length (mm)14147
Thickness (mm)1.41.4.74
Pitch (mm).5.5.5
Max Height (mm)1.61.61
Mechanical DataHerunterladenHerunterladenHerunterladen

Parameter

Parameters / ModelsMSP430F6436IPZ
MSP430F6436IPZ
MSP430F6436IPZR
MSP430F6436IPZR
MSP430F6436IZQWR
MSP430F6436IZQWR
ADCADC12 - 12chADC12 - 12chADC12 - 12ch
AESN/AN/AN/A
Active Power, uA/MHz330330330
Additional FeaturesLCD,Real-Time Clock,Watchdog,DAC,Temp Sensor,Brown Out Reset,IrDALCD,Real-Time Clock,Watchdog,DAC,Temp Sensor,Brown Out Reset,IrDALCD,Real-Time Clock,Watchdog,DAC,Temp Sensor,Brown Out Reset,IrDA
BSLUARTUARTUART
CPUMSP430MSP430MSP430
Comparators121212
DMA666
Featuredf6f6f6
Frequency, MHz202020
GPIO Pins747474
I2C222
Max VCC3.63.63.6
Min VCC1.81.81.8
Multiplier32x3232x3232x32
Non-volatile Memory, KB128128128
Operating Temperature Range, C-40 to 85-40 to 85-40 to 85
Package GroupLQFPLQFPBGA MICROSTAR JUNIOR
Package Size: mm2:W x L, PKG100LQFP: 256 mm2: 16 x 16(LQFP)100LQFP: 256 mm2: 16 x 16(LQFP)113BGA MICROSTAR JUNIOR: 49 mm2: 7 x 7(BGA MICROSTAR JUNIOR)
RAM, KB181818
RatingCatalogCatalogCatalog
SPI444
Special I/ON/AN/AN/A
Standby Power, LPM3-uA2.22.22.2
Timers - 16-bit444
UART222
Wakeup Time, us333

Öko-Plan

MSP430F6436IPZMSP430F6436IPZRMSP430F6436IZQWR
RoHSCompliantCompliantCompliant

Anwendungshinweise

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    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
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    This application report helps enable easy migration from MSP430F5xx and MSP430F6xx flash-based MCUs to the MSP430FR58xx/FR59xx/68xx/69xx FRAM-based MCUs. For the migration guide to MSP430FR57xx, see Migrating From the MSP430F2xx Family to the MSP430FR57xx Family. It covers programming, system, and peripheral considerations when migrating firmware. The intent is to highlight differences between the
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    The first part of the Application Report describes the generation of DTMF signals using the Microcontroller MSP430. Following an explanation of the most important specifications which are involved, the theoretical and mathematical processes will be discussed with which sinusoidal waveforms can be derived from square-wave signals, by making use of appropriate analog filters. Tested examples of soft
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    PDF, 110 Kb, Datei veröffentlicht: Dec 14, 1998
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    PDF, 44 Kb, Datei veröffentlicht: Nov 16, 2000
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    PDF, 475 Kb, Datei veröffentlicht: Mar 27, 2008
    The MSP430 family of microcontrollers, as part of its broad portfolio, offers both read-only memory (ROM)-based and flash-based devices. Understanding the MSP430 flash is extremely important for efficient, robust, and reliable system design. Data retention is one of the key aspects to flash reliability. In this application report, data retention for the MSP430 flash is discussed in detail and the
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    PDF, 64 Kb, Datei veröffentlicht: Dec 31, 2005
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    Digital Fan Control with Tachometer using MSP430 Application Report
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    PDF, 426 Kb, Revision: D, Datei veröffentlicht: Jul 18, 2017
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    The MSP430 series of microcontrollers are ideal in applications where battery life is critical. These microcontollers require only 0.1?A of current in low-power RAM retention mode; In this mode the microcontroller must have power to retain volatile memory. In some systems with charge pumps, the TPS3619 can be used to shut down the charge pump, saving system power consumption.
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    PDF, 837 Kb, Revision: F, Datei veröffentlicht: Sep 6, 2016
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    PDF, 475 Kb, Datei veröffentlicht: Oct 5, 2012
    LCDs are a growing commodity in todays market with products as diverse as children's toys to medical devices. Modern LCDs, along with the graphics displayed on them, are growing in complexity. A graphics library can simplify and accelerate development while creating the desired user experience. TI provides the MSP430 Graphics Library for use in developing products with the MSP430в„ў MCU. This
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    PDF, 520 Kb, Datei veröffentlicht: Dec 7, 2015
    This document explains the maximum ESD diode current specified for GPIO on MSP microcontrollers. Sometimes signals on specific pins exceed the supply of the MSP MCU. In such a case, the device can handle this overvoltage condition through the ESD diodes, but the ESD diode specification must be considered during application design. The items to be considered are described in this document.
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    PDF, 752 Kb, Datei veröffentlicht: Dec 7, 2015
    MSP microcontrollers (MCUs) offer a number of features to help control code accessibility in the device, to add different layers of code access management and protection strategies. These include features that can lock or password protect the JTAG/SBW access, IP Encapsulation (IPE) to isolate sensitive code with different permissions than the rest of the program, and bootloader (BSL) access featur

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  • Semiconductors> Microcontrollers (MCU)> MSP430 ultra-low-power MCUs> MSP430F5x/6x