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MSP430FR5964 Datasheet Preview

MSP430FR5964 Datasheet

Mixed-Signal Microcontrollers

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MSP430FR5994, MSP430FR59941, MSP430FR5992, MSP430FR5964, MSP430FR5962
SLASE54C – MARCH 2016 – REVISED AUGUST 2018
MSP430FR599x, MSP430FR596x Mixed-Signal Microcontrollers
1 Device Overview
1.1 Features
1
• Embedded Microcontroller
– 16-Bit RISC Architecture up to 16MHz Clock
– Up to 256KB of Ferroelectric Random Access
Memory (FRAM)
– Ultra-Low-Power Writes
– Fast Write at 125 ns Per Word (64KB in
4 ms)
– Flexible Allocation of Data and Application
Code in Memory
– 1015 Write Cycle Endurance
– Radiation Resistant and Nonmagnetic
– Wide Supply Voltage Range From 3.6 V Down
to 1.8 V (Minimum Supply Voltage is Restricted
by SVS Levels, See the SVS Specifications)
• Optimized Ultra-Low-Power Modes
– Active Mode: 118 µA/MHz
– Standby With VLO (LPM3): 500 nA
– Standby With Real-Time Clock (RTC) (LPM3.5):
350 nA (1)
– Shutdown (LPM4.5): 45 nA
• Low-Energy Accelerator (LEA) for Signal
Processing (MSP430FR599x Only)
– Operation Independent of CPU
– 4KB of RAM Shared With CPU
– Efficient 256-Point Complex FFT:
Up to 40x Faster Than Arm® Cortex®-M0+ Core
• Intelligent Digital Peripherals
– 32-Bit Hardware Multiplier (MPY)
– 6-Channel Internal DMA
– RTC With Calendar and Alarm Functions
– Six 16-Bit Timers With up to Seven
Capture/Compare Registers Each
– 32- and 16-Bit Cyclic Redundancy Check (CRC)
• High-Performance Analog
– 16-Channel Analog Comparator
– 12-Bit Analog-to-Digital Converter (ADC)
Featuring Window Comparator, Internal
Reference and Sample-and-Hold, up to 20
External Input Channels
(1) The RTC is clocked by a 3.7-pF crystal.
• Multifunction Input/Output Ports
– All Pins Support Capacitive-Touch Capability
With No Need for External Components
– Accessible Bit-, Byte-, and Word-Wise (in Pairs)
– Edge-Selectable Wake From LPM on All Ports
– Programmable Pullup and Pulldown on All Ports
• Code Security and Encryption
– 128- or 256-Bit AES Security Encryption and
Decryption Coprocessor
– Random Number Seed for Random Number
Generation Algorithms
– IP Encapsulation Protects Memory From
External Access
• Enhanced Serial Communication
– Up to Four eUSCI_A Serial Communication
Ports
– UART With Automatic Baud-Rate Detection
– IrDA Encode and Decode
– Up to Four eUSCI_B Serial Communication
Ports
– I2C With Multiple-Slave Addressing
– Hardware UART or I2C Bootloader (BSL)
• Flexible Clock System
– Fixed-Frequency DCO With 10 Selectable
Factory-Trimmed Frequencies
– Low-Power Low-Frequency Internal Clock
Source (VLO)
– 32-kHz Crystals (LFXT)
– High-Frequency Crystals (HFXT)
• Development Tools and Software (Also See Tools
and Software)
– Development Kits (MSP-EXP430FR5994
LaunchPad™ Development Kit and
MSPTS430PN80B Target Socket Board)
MSP430Ware™ Software for MSP430™
Microcontrollers
Device Comparison Summarizes the Available
Device Variants and Package Options
• For Complete Module Descriptions, See the
MSP430FR58xx, MSP430FR59xx, and
MSP430FR6xx Family User's Guide
1
An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications,
intellectual property matters and other important disclaimers. PRODUCTION DATA.




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MSP430FR5964 Datasheet Preview

MSP430FR5964 Datasheet

Mixed-Signal Microcontrollers

No Preview Available !

MSP430FR5994, MSP430FR59941, MSP430FR5992, MSP430FR5964, MSP430FR5962
SLASE54C – MARCH 2016 – REVISED AUGUST 2018
www.ti.com
1.2 Applications
• Grid Infrastructure
• Factory Automation and Control
• Building Automation
• Portable Health and Fitness
• Wearable Electronics
1.3 Description
The MSP430FR599x microcontrollers (MCUs) take low power and performance to the next level with the
unique Low-Energy Accelerator (LEA) for digital signal processing. This accelerator delivers 40x the
performance of Arm® Cortex®-M0+ MCUs to help developers efficiently process data using complex
functions such as FFT, FIR, and matrix multiplication. Implementation requires no DSP expertise with a
free optimized DSP Library available. Additionally, with up to 256KB of unified memory with FRAM, these
devices offer more space for advanced applications and flexibility for effortless implementation of over-the-
air firmware updates.
The MSP ultra-low-power (ULP) FRAM microcontroller platform combines uniquely embedded FRAM and
a holistic ultra-low-power system architecture, allowing system designers to increase performance while
lowering energy consumption. FRAM technology combines the low-energy fast writes, flexibility, and
endurance of RAM with the nonvolatile behavior of flash.
MSP430FR599x MCUs are supported by an extensive hardware and software ecosystem with reference
designs and code examples to get your design started quickly. Development kits for the MSP430FR599x
include the MSP-EXP430FR5994 LaunchPad™ development kit and the MSP-TS430PN80B 80-pin target
development board. TI also provides free MSP430Ware™ software, which is available as a component of
Code Composer Studio™ IDE desktop and cloud versions within TI Resource Explorer.
PART NUMBER
Device Information(1)(2)
PACKAGE
BODY SIZE(3)
MSP430FR5994IZVW
NFBGA (87)
6 mm × 6 mm
MSP430FR5994IPN
LQFP (80)
12 mm × 12 mm
MSP430FR5994IPM
LQFP (64)
10 mm × 10 mm
MSP430FR5994IRGZ
VQFN (48)
7 mm × 7 mm
(1) For the most current part, package, and ordering information for all available devices, see the Package
Option Addendum in Section 9, or see the TI website at www.ti.com.
(2) For a comparison of all available device variants, see Section 3.
(3) The sizes shown here are approximations. For the package dimensions with tolerances, see the
Mechanical Data in Section 9.
2 Device Overview
Copyright © 2016–2018, Texas Instruments Incorporated
Submit Documentation Feedback
Product Folder Links: MSP430FR5994 MSP430FR59941 MSP430FR5992 MSP430FR5964 MSP430FR5962


Part Number MSP430FR5964
Description Mixed-Signal Microcontrollers
Maker etcTI
Total Page 30 Pages
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