Datasheet Texas Instruments MSP430FR5992 — Даташит
Производитель | Texas Instruments |
Серия | MSP430FR5992 |

Микроконтроллер со сверхнизким энергопотреблением, тактовая частота 16 МГц, 128 КБ FRAM, 8 КБ SRAM, низкоэнергетический векторный математический ускоритель
Datasheets
MSP430FR599x, MSP430FR596x Mixed-Signal Microcontrollers datasheet
PDF, 2.3 Мб, Версия: B, Файл опубликован: 31 янв 2017
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Цены
![]() 33 предложений от 14 поставщиков Микроконтроллер MSP430, MSP430 Family MSP430FRxx Series Microcontrollers, MSP430, 16бит, 16 МГц | |||
MSP430FR5992IRGZR Texas Instruments | от 196 ₽ | ||
MSP430FR5992IRGZR Texas Instruments | 306 ₽ | ||
MSP430FR5992IPNR Texas Instruments | 370 ₽ | ||
MSP430FR5992IRGZR Texas Instruments | 604 ₽ |
Статус
MSP430FR5992IPMR | MSP430FR5992IPNR | MSP430FR5992IRGZR | MSP430FR5992IZVWR | |
---|---|---|---|---|
Статус продукта | В производстве | В производстве | В производстве | В производстве |
Доступность образцов у производителя | Нет | Нет | Нет | Нет |
Корпус / Упаковка / Маркировка
MSP430FR5992IPMR | MSP430FR5992IPNR | MSP430FR5992IRGZR | MSP430FR5992IZVWR | |
---|---|---|---|---|
N | 1 | 2 | 3 | 4 |
Pin | 64 | 80 | 48 | 87 |
Package Type | PM | PN | RGZ | ZVW |
Industry STD Term | LQFP | LQFP | VQFN | NFBGA |
JEDEC Code | S-PQFP-G | S-PQFP-G | S-PQFP-N | S-PBGA-N |
Package QTY | 1000 | 1000 | 2500 | 1000 |
Маркировка | FR5992 | FR5992 | FR5992 | FR5992 |
Width (мм) | 10 | 12 | 7 | 6 |
Length (мм) | 10 | 12 | 7 | 6 |
Thickness (мм) | 1.4 | 1.4 | .9 | .64 |
Pitch (мм) | .5 | .5 | .5 | .5 |
Max Height (мм) | 1.6 | 1.6 | 1 | 1 |
Mechanical Data | Скачать | Скачать | Скачать | Скачать |
Carrier | LARGE T&R |
Параметры
Parameters / Models | MSP430FR5992IPMR![]() | MSP430FR5992IPNR![]() | MSP430FR5992IRGZR![]() | MSP430FR5992IZVWR![]() |
---|---|---|---|---|
ADC | ADC12 - 20ch | ADC12 - 20ch | ADC12 - 20ch | ADC12 - 20ch |
AES | AES256 | AES256 | AES256 | AES256 |
Active Power, uA/MHz | 120 | 120 | 120 | 120 |
Additional Features | LEA,Real-Time Clock,Watchdog,Temp Sensor,Brown Out Reset,IrDA | LEA,Real-Time Clock,Watchdog,Temp Sensor,Brown Out Reset,IrDA | LEA,Real-Time Clock,Watchdog,Temp Sensor,Brown Out Reset,IrDA | LEA,Real-Time Clock,Watchdog,Temp Sensor,Brown Out Reset,IrDA |
BSL | UART | UART | UART | UART |
CPU | MSP430 | MSP430 | MSP430 | MSP430 |
Comparators | 16 | 16 | 16 | 16 |
DMA | 6 | 6 | 6 | 6 |
Featured | fr5 | fr5 | fr5 | fr5 |
Тактовая частота, МГц | 16 | 16 | 16 | 16 |
GPIO Pins | 68 | 68 | 68 | 68 |
I2C | 4 | 4 | 4 | 4 |
Max VCC | 3.6 | 3.6 | 3.6 | 3.6 |
Min VCC | 1.8 | 1.8 | 1.8 | 1.8 |
Multiplier | 32x32 | 32x32 | 32x32 | 32x32 |
Non-volatile Memory, KB | 128 | 128 | 128 | 128 |
Рабочий диапазон температур, C | от -40 до 85 | от -40 до 85 | от -40 до 85 | от -40 до 85 |
Package Group | LQFP | LQFP | VQFN | NFBGA |
Package Size: mm2:W x L, PKG | 64LQFP: 144 mm2: 12 x 12(LQFP) | 64LQFP: 144 mm2: 12 x 12(LQFP) | 48VQFN: 49 mm2: 7 x 7(VQFN) | 87NFBGA: 36 mm2: 6 x 6(NFBGA) |
RAM, KB | 8 | 8 | 8 | 8 |
Rating | Catalog | Catalog | Catalog | Catalog |
SPI | 8 | 8 | 8 | 8 |
Security Enabler | Cryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protection | Cryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protection | Cryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protection | Cryptographic acceleration,Debug security,Physical security,Secure FW and SW update,Software IP protection |
Special I/O | N/A | N/A | N/A | N/A |
Standby Power, LPM3-uA | 0.7 | 0.7 | 0.7 | 0.7 |
Timers - 16-bit | 6 | 6 | 6 | 6 |
UART | 4 | 4 | 4 | 4 |
Wakeup Time, us | 7 | 7 | 7 | 7 |
Экологический статус
MSP430FR5992IPMR | MSP430FR5992IPNR | MSP430FR5992IRGZR | MSP430FR5992IZVWR | |
---|---|---|---|---|
RoHS | Совместим | Совместим | Совместим | Совместим |
Application Notes
- Benchmarking the Signal Processing Capabilities of the Low-Energy Accelerator (Rev. B)PDF, 922 Кб, Версия: B, Файл опубликован: 1 ноя 2016
This application report covers the performance of the low-energy accelerator (LEA) in advanced signal processing while maintaining the ultra-low-power consumption on a 16-bit MSP430в„ў FRAM microcontroller (MCU). The LEA module is compared against the performance of optimized software-enabled signal processing code running on both the 16-bit MSP430 MCUs and a competitor ARMВ® CortexВ®-M0+ based MCU. T - Low-Energy Accelerator (LEA) Frequently Asked Questions (FAQ)PDF, 282 Кб, Файл опубликован: 1 ноя 2016
This document answers common questions about the low-energy accelerator (LEA) module built for signal processing on the MSP430 FRAM MCUs. It describes how to get started with devices that support the LEA module and use it to perform efficient signal processing, matrix multiplication, and other operations. - Random Number Generation Using MSP430FR59xx and MSP430FR69xx MicrocontrollersPDF, 113 Кб, Файл опубликован: 18 янв 2017
Random number generation has a role in a variety of applications, such as cryptography and tamper detection.In digital systems, it becomes difficult to introduce the concept of true randomness as a machine executes code in the sequence it is programed. This introduces the notion of true random number generators (TRNGs) and pseudorandom number generators (PRNGs), also known as deterministic rando
Модельный ряд
Серия: MSP430FR5992 (4)
Классификация производителя
- Semiconductors> Microcontrollers (MCU)> MSP430 ultra-low-power MCUs> MSP430FRxx FRAM