Datasheet Texas Instruments MSP430FR5738IRGET — Даташит
Производитель | Texas Instruments |
Серия | MSP430FR5738 |
Модель | MSP430FR5738IRGET |
MSP430FR5738 Микроконтроллер ULP, 24 МГц, 16 КБ FRAM, 1 КБ SRAM, 21 ввод-вывод, 10-разрядный АЦП и компаратор 24-VQFN от -40 до 85
Datasheets
MSP430FR573x Mixed-Signal Microcontrollers datasheet
PDF, 2.3 Мб, Версия: K, Файл опубликован: 25 апр 2016
Выписка из документа
Цены
Купить MSP430FR5738IRGET на РадиоЛоцман.Цены — от 137 до 1 059 ₽ 32 предложений от 15 поставщиков MSP430FR5738 24MHz ULP microcontroller with 16KB FRAM, 1KB SRAM, 21 IO, 10Bit ADC and comparator 24-VQFN -40℃ to 85℃_x0000__x0000_ | |||
MSP430FR5738IRGET Texas Instruments | 137 ₽ | ||
MSP430FR5738IRGET Texas Instruments | 156 ₽ | ||
MSP430FR5738IRGET Texas Instruments | по запросу | ||
MSP430FR5738IRGET Texas Instruments | по запросу |
Статус
Статус продукта | В производстве (Рекомендуется для новых разработок) |
Доступность образцов у производителя | Нет |
Корпус / Упаковка / Маркировка
Pin | 24 | 24 |
Package Type | RGE | RGE |
Industry STD Term | VQFN | VQFN |
JEDEC Code | S-PQFP-N | S-PQFP-N |
Package QTY | 250 | 250 |
Carrier | SMALL T&R | SMALL T&R |
Маркировка | 430FR | 5738 |
Width (мм) | 4 | 4 |
Length (мм) | 4 | 4 |
Thickness (мм) | .88 | .88 |
Pitch (мм) | .5 | .5 |
Max Height (мм) | 1 | 1 |
Mechanical Data | Скачать | Скачать |
Параметры
ADC | ADC10 - 8ch |
AES | N/A |
Active Power | 91.667 uA/MHz |
Additional Features | Real-Time Clock,Watchdog,Temp Sensor,Brown Out Reset,IrDA |
BSL | UART |
CPU | MSP430 |
Comparators | 12 |
DMA | 3 |
Featured | fr5 |
Тактовая частота | 24 МГц |
GPIO Pins | 21 |
I2C | 1 |
Max VCC | 3.6 |
Min VCC | 2 |
Multiplier | 32x32 |
Non-volatile Memory | 16 KB |
Рабочий диапазон температур | от -40 до 85 C |
Package Group | VQFN |
Package Size: mm2:W x L | 24VQFN: 16 mm2: 4 x 4(VQFN) PKG |
RAM | 1 KB |
Rating | Catalog |
SPI | 2 |
Security Enabler | Cryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protection |
Special I/O | N/A |
Standby Power | 6.4 LPM3-uA |
Timers - 16-bit | 3 |
UART | 1 |
Wakeup Time | 78 us |
Экологический статус
RoHS | Совместим |
Комплекты разработчика и оценочные наборы
- Evaluation Modules & Boards: MSP-TS430RHA40A
MSP-TS430RHA40A- 40-pin Target Development Board for MSP430FRxx FRAM MCUs
Статус продукта: В производстве (Рекомендуется для новых разработок) - Evaluation Modules & Boards: MSP-FET430U40A
40-pin Target Development Board and MSP-FET Programmer Bundle for MSP430F5x 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
- MSP430 Firmware Updates over I2C using LinuxPDF, 1.8 Мб, Файл опубликован: 7 дек 2015
- Software I2C on MSP430 MCUsPDF, 126 Кб, Файл опубликован: 18 май 2016
Hardware and layout limitations often require smaller package sizes that could potentially create a tradeoff for the number of serial peripherals available to the user. With the I2C protocol, special software can be created to use a pair of simple GPIO ports to emulate an I2C master device. This allows programmers to be flexible with pin assignments and enables smaller package devices to overcome - Over-the-Air (OTA) Update With the MSP430FR57xx (Rev. A)PDF, 3.5 Мб, Версия: A, Файл опубликован: 2 мар 2015
- MSP430 System-Level ESD ConsiderationsPDF, 1.5 Мб, Файл опубликован: 29 мар 2012
System-Level ESD has become increasingly demanding with silicon technology scaling towards lower voltages and the need for designing cost-effective and ultra-low power components. This application report addresses three different ESD topics to help board designers and OEMs understand and design robust system-level designs:(1) Component-level ESD testing and system-level ESD testing, their differ - Maximizing Write Speed on the MSP430в„ў FRAM (Rev. B)PDF, 103 Кб, Версия: B, Файл опубликован: 4 фев 2015
Nonvolatile low-power ferroelectric RAM (FRAM) is capable of extremely high-speed write accesses. This application report discusses how to maximize FRAM write speeds specifically in the MSP430FRxx family using simple techniques. The document uses examples from bench tests performed on the MSP430FR5739 device, which can be extended to all MSP430в„ў FRAM-based devices, and discusses tradeoffs such as - MSP430 FRAM Technology – How To and Best PracticesPDF, 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 USCI Module to the eUSCI Module (Rev. A)PDF, 41 Кб, Версия: A, Файл опубликован: 13 сен 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 the MSP430F2xx Family to the MSP430FR57xx Family (Rev. A)PDF, 154 Кб, Версия: A, Файл опубликован: 16 фев 2012
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 (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 OversamplМодельный ряд
Серия: MSP430FR5738 (6)- MSP430FR5738IPW MSP430FR5738IPWR MSP430FR5738IRGER MSP430FR5738IRGET MSP430FR5738IYQDR MSP430FR5738IYQDT
Классификация производителя
- Semiconductors > Microcontrollers (MCU) > MSP430 ultra-low-power MCUs > MSP430FRxx FRAM
На английском языке: Datasheet Texas Instruments MSP430FR5738IRGET