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Datasheet Texas Instruments MSP430FR5858IRHAT — Даташит

ПроизводительTexas Instruments
СерияMSP430FR5858
МодельMSP430FR5858IRHAT
Datasheet Texas Instruments MSP430FR5858IRHAT

MSP430FR5858 Микроконтроллер со сверхнизким энергопотреблением, частота 16 МГц, 48 КБ FRAM, 2 КБ SRAM, 33 ввода-вывода 40-VQFN от -40 до 85

Datasheets

MSP430FR58xx Mixed-Signal Microcontrollers datasheet
PDF, 2.6 Мб, Версия: D, Файл опубликован: 9 мар 2017
Выписка из документа

Цены

15 предложений от 8 поставщиков
MSP430 CPUXV2 MSP430TMFRAM Microcontroller IC 16-Bit 16MHz 48KB (48K x 8) FRAM 40-VQFN (6x6)
EIS Components
Весь мир
MSP430FR5858IRHAT
Texas Instruments
186 ₽
T-electron
Россия и страны СНГ
MSP430FR5858IRHAT
Texas Instruments
200 ₽
ChipWorker
Весь мир
MSP430FR5858IRHAT
Texas Instruments
602 ₽
ЭИК
Россия
MSP430FR5858IRHAT
Texas Instruments
от 876 ₽
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Статус

Статус продуктаВ производстве (Рекомендуется для новых разработок)
Доступность образцов у производителяНет

Корпус / Упаковка / Маркировка

Pin40
Package TypeRHA
Industry STD TermVQFN
JEDEC CodeS-PQFP-N
Package QTY250
CarrierSMALL T&R
МаркировкаFR5858
Width (мм)6
Length (мм)6
Thickness (мм).9
Pitch (мм).5
Max Height (мм)1
Mechanical DataСкачать

Параметры

ADCADC12 - 14ch
AESN/A
Active Power101.25 uA/MHz
Additional FeaturesReal-Time Clock,Watchdog,Temp Sensor,Brown Out Reset,IrDA
BSLUART
CPUMSP430
Comparators16
DMA3
Featuredfr5
Тактовая частота16 МГц
GPIO Pins33
I2C1
Max VCC3.6
Min VCC1.8
Multiplier32x32
Non-volatile Memory48 KB
Рабочий диапазон температурот -40 до 85 C
Package GroupVQFN
Package Size: mm2:W x L40VQFN: 36 mm2: 6 x 6(VQFN) PKG
RAM2 KB
RatingCatalog
SPI3
Security EnablerCryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protection
Special I/ON/A
Standby Power0.5 LPM3-uA
Timers - 16-bit5
UART2
Wakeup Time7 us

Экологический статус

RoHSСовместим

Комплекты разработчика и оценочные наборы

  • Evaluation Modules & Boards: MSP-BNDL-FR5969LCD
    MSP430FR5969 LaunchPad Development Kit with Sharp В® Memory LCD BoosterPack Bundle
    Статус продукта: В производстве (Рекомендуется для новых разработок)
  • Evaluation Modules & Boards: 430BOOST-SHARP96
    Sharp В® Memory LCD BoosterPack
    Статус продукта: В производстве (Рекомендуется для новых разработок)
  • Development Kits: MSP-FET430U48C
    48-pin Target Development Board and MSP-FET Programmer Bundle for MSP430FRxx FRAM MCUs
    Статус продукта: Снят с производства (Производитель прекратил производство прибора)
  • Evaluation Modules & Boards: MSP-TS430RGZ48C
    MSP-TS430RGZ48C - 48-pin Target Development Board for MSP430FRxx FRAM MCUs
    Статус продукта: В производстве (Рекомендуется для новых разработок)
  • JTAG Emulators/ Analyzers: ENERGYTRACE
    MSP EnergyTrace Technology
    Статус продукта: В производстве (Рекомендуется для новых разработок)

Application Notes

  • Migrating From MSP430F4xx Family to MSP430FR58xx/FR59xx/FR68xx/FR69xx Family (Rev. B)
    PDF, 183 Кб, Версия: B, Файл опубликован: 3 ноя 2016
    This application report enables easy migration from MSP430F4xx flash-based MCUs to the MSP430FR58xx/59xx/68xx/69xx family of FRAM-based MCUs. The intent is to highlight key differences between the two families. For more information on the use of the MSP430FR58xx/FR59xx/68xx/69xx devices, see the MSP430FR58xx, MSP430FR59xx, MSP430FR68xx, and MSP430FR69xx Family User's Guide.
  • Getting Started With EEMBC ULPBench on MSP-EXP430FR5969 (Rev. A)
    PDF, 381 Кб, Версия: A, Файл опубликован: 29 янв 2015
    This is a getting started guide for obtaining the ULPMarkв„ў-CP score using the Embedded Microprocessor Benchmark Consortium (EEMBC) ULPBench and EnergyMonitor with the MSP430FR5969 microcontroller (MCU). This document uses the MSP-EXP430FR5969 LaunchPad development kit as the target evaluation module (EVM) for performing the benchmark.
  • MSP430 Advanced Power Optimizations: ULP Advisor SW and EnergyTrace Technology
    PDF, 4.0 Мб, Файл опубликован: 9 июн 2014
    MSP430 microcontrollers are designed specifically for ultra-low-power applications. Features such as multiple low-power modes, instant wakeup, intelligent autonomous peripherals, and much more to enable such ultra-low-power capabilities. Texas Instruments provides valuable tools to help the programmer fully use these benefits and optimize power consumption of the target application. This app
  • Designing With the MSP430FR58xx, FR59xx, FR68xx, and FR69xx ADC (Rev. A)
    PDF, 137 Кб, Версия: A, Файл опубликован: 30 мар 2016
    Designing an application with the analog-to-digital converter (ADC) requires several considerations to optimize for power and performance. This application report discusses the basics of how you would analyze a data sheet and user's guide to design your application. It goes into the fundamentals of how to optimize your design based on the external requirements and available ADC configurations. The
  • MSP430 FRAM Technology – How To and Best Practices
    PDF, 326 Кб, Файл опубликован: 23 июн 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 Кб, Версия: A, Файл опубликован: 1 май 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
  • Migrating from the MSP430F5xx,F6xx Family to the MSP430FR58xx/FR59xx/68xx Family (Rev. D)
    PDF, 151 Кб, Версия: D, Файл опубликован: 3 ноя 2016
    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
  • Migrating from the MSP430F2xx,G2xx Family to the MSP430FR58xx/FR59xx/68xx/69xx (Rev. E)
    PDF, 179 Кб, Версия: E, Файл опубликован: 3 ноя 2016
    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
  • General Oversampling of MSP ADCs for Higher Resolution (Rev. A)
    PDF, 551 Кб, Версия: A, Файл опубликован: 1 апр 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

Модельный ряд

Классификация производителя

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

На английском языке: Datasheet Texas Instruments MSP430FR5858IRHAT

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