Datasheet Texas Instruments MSP430F2418TZQW — Datenblatt

HerstellerTexas Instruments
SerieMSP430F2418
ArtikelnummerMSP430F2418TZQW
Datasheet Texas Instruments MSP430F2418TZQW

16-Bit-Mikrocontroller mit extrem geringem Stromverbrauch, 116 KB Flash, 8 KB RAM, 12 Bit ADC, 2 USCIs, HW-Multiplikator 113-BGA MICROSTAR JUNIOR -40 bis 105

Datenblätter

MSP430F241x, MSP430F261x Mixed Signal Microcontroller datasheet
PDF, 1.9 Mb, Revision: K, Datei veröffentlicht: Nov 8, 2012
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Preise

Status

Lifecycle StatusActive (Recommended for new designs)
Manufacture's Sample AvailabilityNo

Verpackung

Pin113
Package TypeZQW
Industry STD TermBGA MICROSTAR JUNIOR
JEDEC CodeS-PBGA-N
Package QTY250
CarrierJEDEC TRAY (10+1)
Device MarkingM430F2418T
Width (mm)7
Length (mm)7
Thickness (mm).74
Pitch (mm).5
Max Height (mm)1
Mechanical DataHerunterladen

Parameter

ADCADC12 - 8ch
AESN/A
Active Power365 uA/MHz
Additional FeaturesWatchdog,Temp Sensor,Brown Out Reset
BSLUART
CPUMSP430
ComparatorsYes
Frequency16 MHz
GPIO Pins48
I2C2
Max VCC3.6
Min VCC1.8
Multiplier16x16
Non-volatile Memory116 KB
Operating Temperature Range-40 to 105 C
Package GroupBGA MICROSTAR JUNIOR
Package Size: mm2:W x L113BGA MICROSTAR JUNIOR: 49 mm2: 7 x 7(BGA MICROSTAR JUNIOR) PKG
RAM8 KB
RatingCatalog
SPI2
Special I/ON/A
Standby Power0.5 LPM3-uA
Timers - 16-bit2
UART2
Wakeup Time1 us

Öko-Plan

RoHSCompliant

Design Kits und Evaluierungsmodule

  • Evaluation Modules & Boards: MSP-FET430U80
    80-pin Target Development Board and MSP-FET Programmer Bundle for MSP430F2x and MSP430F4x MCUs
    Lifecycle Status: Active (Recommended for new designs)
  • Evaluation Modules & Boards: MSP-TS430PN80
    MSP-TS430PN80 - 80-pin Target Development Board for MSP430F2x and MSP430F4x MCUs
    Lifecycle Status: Active (Recommended for new designs)
  • Evaluation Modules & Boards: MSP-FET430U64
    64-pin Target Development Board and MSP-FET Programmer Bundle - MSP430F1x, MSP430F2x, MSP430F4x MCUs
    Lifecycle Status: Active (Recommended for new designs)
  • Evaluation Modules & Boards: MSP-TS430PM64
    MSP-TS430PM64 - 64-pin Target Development Board for MSP430F1x, MSP430F2x and MSP430F4x MCUs
    Lifecycle Status: Active (Recommended for new designs)
  • JTAG Emulators/ Analyzers: ENERGYTRACE
    MSP EnergyTrace Technology
    Lifecycle Status: Active (Recommended for new designs)

Anwendungshinweise

  • Extended Memory Access Using IAR v3.42A and CCE v2
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    This application report describes how to access the extended memory in devices with memory greater than 64 KB using the large code/small data model supported by the IAR C/C++ compiler v3.42A and Code Composer Essentials (CCE) v2. The purpose of this application report is to provide an understanding of the extended features of the MSP430X CPU, customizing the linker command file to fit the target s
  • Migrating from the MSP430F2xx Family to the MSP430FR57xx Family (Rev. A)
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    This application report enables easy migration from MSP430F2xx Flash-based MCUs to the MSP430FR57xx family FRAM-based MCU. It covers programming, system, and peripheral considerations when migrating firmware. The purpose is to highlight differences between the two families. For more information on the usage of the MSP430FR57xx features, see the MSP430FR57xx Family User's Guide (
  • Migrating from the USCI Module to the eUSCI Module (Rev. A)
    PDF, 41 Kb, Revision: A, Datei veröffentlicht: Sep 13, 2012
    The purpose of this application report is to enable easy migration for designs based on the USCI_A and USCI_B modules to the eUSCI_A and the eUSCI_B modules. The document highlights the new features in the eUSCI module and the main differences between the USCI and the eUSCI modules.
  • 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
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    This application report enables easy migration from MSP430F2xx flash-based MCUs to the MSP430FR58xx/FR59xx/68xx/69xx family of 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 key differences between the two f
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    While spread-spectrum clocking has long since been used in processor and memory clock trees, there are many other clocked systems, such as power supplies or switch-mode amplifiers, that continue to use a single-frequency clock. This can, in turn, generate significant EMI and can make meeting governmental regulations for EMI challenging. These regulations typically set a limit on peak energy within
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    This application report describes how to build an isolated FET interface for the MSP430 Flash Emulation Tool (FET). When developing and debugging line-powered MSP430applications such as motor control, electricity energy meters, power monitoring systems etc. it is important to have electrical isolation for the development tool such that the personnel involved and the connected electronic equipmen
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    PDF, 233 Kb, Datei veröffentlicht: Oct 1, 1997
    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, 91 Kb, Datei veröffentlicht: Oct 12, 1999
    This application report describes voltage and current measurement methods using the MSP430 universal timer/port module. The report explains the two measurement methods (charge and discharge) and shows how to measure voltage and current. The equations for the calculations are also given. Further sections show additional applications such as the measurement of two voltage inputs, bridge arrangem
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    PDF, 63 Kb, Datei veröffentlicht: Jan 30, 2001
    This application report demonstrates a digital technique to compensate and calibrate the phase shift of a current (or voltage) transformer used in electric power of energy measurement. Traditional analog compensation is replaced by a digital finite impulse response (FIR) filter. A technique emulating a non-unity power factor (non-UPF) load makes the calibration fully automatic. The calibration tim
  • Choosing an Ultra Low-Power MCU
    PDF, 306 Kb, Datei veröffentlicht: Jun 30, 2004
    This application report describes how to compare ultralow-power MCUs. It discusses the key differences between popular low-power MCUs and how to interpret features and specifications and apply them to application requirements.
  • MSP430 LFXT1 Oscillator Accuracy
    PDF, 184 Kb, Datei veröffentlicht: Nov 15, 2004
    This report details the factors that influence achievable accuracy of the low frequency oscillator, specifically for real-time clock (RTC) applications. The intent of this application report is to provide an understanding of MSP430-specific factors influencing real-world achievable RTC accuracy using the LFXT1 oscillator with a standard 32.768 kHz watch crystal and present measurement data support
  • Simple 1.5 V Boost Converter for MSP430
    PDF, 49 Kb, Datei veröffentlicht: Oct 18, 2000
    A simple, efficient, low-cost, boost converter to take 1.5 V from a single type-AA alkaline battery to the operating voltage required by the MSP430 family of ultralow-power microcontrollers is described. Expected battery life is up to 1000 hours.
  • MSP430 Family Mixed-Signal Microcontroller Application Reports
    PDF, 5.5 Mb, Datei veröffentlicht: Jan 21, 2000
    MSP430 Metering Application Report
  • FSK Modulation and Demodulation With the Microcontroller MSP430
    PDF, 110 Kb, Datei veröffentlicht: Dec 14, 1998
    This application report describes a software program for performing V.23 FSK modem transceiver functions using an MSP430 microcontroller. It makes use of novel filter architecture to perform DSP functions on a processor with only shift and add capabilities.
  • Wave Digital Filtering Using the MSP430
    PDF, 220 Kb, Datei veröffentlicht: Sep 13, 2006
    Digital filtering is an integral part of many digital signal processing algorithms. Digital filters are characterized as either recursive [infinite impulse response (IIR)] or non-recursive [finite impulse response (FIR)] filters. IIR filters require a smaller order for the same set of specifications compared to FIR filters, while FIR filters provide a linear phase property. However, IIR filters, i
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    PDF, 168 Kb, Datei veröffentlicht: Feb 28, 2002
    This application note describes how C and assembler code can be used together within an MSP430 application. The combination of C and assembler benefits the designer by providing the power of a high-level language as well as the speed, efficiency, and low-level control of assembler.
  • CRC Implementation with MSP430
    PDF, 125 Kb, Datei veröffentlicht: Nov 4, 2004
    Cyclic Redundancy Code (CRC) is commonly used to determine the correctness of a data transmission or storage. This application note presents a solution to compute 16-bit and 32-bit CRCs on the ultra low-power TI MSP430 microcontroller for the bitwise algorithm (low memory, low cost) and the table-based algorithm (low MIPS, low power). Both algorithms are presented in C and MSP430 assembly. Test co
  • Random Number Generation Using the MSP430
    PDF, 39 Kb, Datei veröffentlicht: Oct 13, 2006
    Many applications require the generation of random numbers. These random numbers are useful for applications such as communication protocols, cryptography, and device individualization.Generating random numbers often requires the use of expensive dedicated hardware. Using the two independent clocks available on the MSP430F2xx family of devices, it is possible to generate random numbers without s
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    PDF, 104 Kb, Datei veröffentlicht: Aug 3, 2006
  • Interfacing the MSP430 and TLC549/1549 A/D Converters
    PDF, 44 Kb, Datei veröffentlicht: Nov 16, 2000
    This application report describes how to interface an MSP430 mixed-signal microcontroller with the TLC549 and TLV1549 3-volt A/D converters. This report is written for the MSP430x11x(1) family, but can be adapted to any MSP430 derivative.
  • Interfacing TMS320C5000 DSP to MSP430 Mixed Signal Microcontroller (Rev. A)
    PDF, 82 Kb, Revision: A, Datei veröffentlicht: Oct 13, 2000
    The TMS320C5000в„ў family of digital signal processors (DSPs) features Host Port Interface Controllers (HPI) and Direct Memory Access Controllers (DMAC) for efficient data movement without any CPU involvement. The HPI enables the DSP to interface to host processors (typically microcontrollers) bidirectionally with minimal or no external interface logic. This application report presents a hardw
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    PDF, 770 Kb, Datei veröffentlicht: Jan 16, 2008
    This application report discusses the design of RC-type capacitive single-touch sensors using the MSP430 microcontroller. The MSP430 has some unique features that make it suitable for interfacing with capacitive-touch sensors. The RC-type method does not need special peripherals and can be implemented with all devices in the MSP430 product family. This method is also inherently low power and can
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    PDF, 19 Kb, Revision: H, Datei veröffentlicht: Jul 14, 2010
    This application report has been superseded by the document shown below. Information previously contained in this application report can be found by clicking on the following links.- MSP430 Programming Via the JTAG Interface User's Guide Download MSP430 Programming Via the JTAG Interface (PDF) Download
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    PDF, 171 Kb, Revision: A, Datei veröffentlicht: Apr 14, 2008
    Flash memory is a widely used, reliable, and flexible nonvolatile memory to store software code and data in a microcontroller. Failing to handle the flash according to data-sheet specifications may result in unreliable operation of the application. This application report explains the physics behind these specifications and also gives recommendations for correct MSP430 flash handling. All examples
  • MSP430 Software Coding Techniques (Rev. A)
    PDF, 62 Kb, Revision: A, Datei veröffentlicht: Jul 17, 2006
    This application report covers software techniques and topics of interest to all MSP430 programmers. The first part of the document discusses the MSP430 standard interrupt-based code flow model, recommended for the vast majority of applications. The next part discusses a handful of techniques that should be considered by any developer that sets out to develop an MSP430 application. Using these met
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    PDF, 128 Kb, Datei veröffentlicht: Sep 29, 1999
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  • Tiny DCDC Converter Reference Design (Rev. A)
    PDF, 458 Kb, Revision: A, Datei veröffentlicht: Jun 14, 2010
    This reference design is presented to help application designers and others who are trying to use the MSP430 in a system with an input voltage in the range of 3.6 V to 6 V with the primary design objective to minimize solution size as well as to maintain high efficiency and long battery life.
  • Understanding MSP430 Flash Data Retention
    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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  • Boost DC/DC with Ultra-Low Shutdown Current (Rev. A)
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    This reference design is presented to help application designers and others who are trying to use the MSP430 in a system that requires a very low input voltage range while also maintaining high efficiency. Battery life is extended as well as a result of the low quiescent current (5 mA) and ultra-low shutdown current (5 nA) of the TPS61097-33. This particular design allows for an input voltage betw
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  • Semiconductors > Microcontrollers (MCU) > MSP430 ultra-low-power MCUs > MSP430F2x/4x