Datasheet

MSP430BT5190
SLAS703A APRIL 2010REVISED AUGUST 2013
www.ti.com
Three-Channel Internal DMA APPLICATIONS
Basic Timer With Real-Time Clock Feature
Remote Controls
Family Members are Summarized in Table 1
Thermostats
For Complete Module Descriptions, See the
Smart Metering
MSP430x5xx and MSP430x6xx Family User's
Blood Glucose Meters
Guide (SLAU208)
Pulseoximeters
DESCRIPTION
The Texas Instruments MSP430™ family of ultralow-power microcontrollers consists of several devices featuring
different sets of peripherals targeted for various applications. The architecture, combined with extensive low-
power modes, is optimized to achieve extended battery life in portable measurement applications. The device
features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code
efficiency. The digitally controlled oscillator (DCO) allows the device to wake up from low-power modes to active
mode in less than 5 µs.
MSP430BT5190 is a microcontroller configuration with three 16-bit timers, a high-performance 12-bit analog-to-
digital converter (ADC), four universal serial communication interfaces (USCIs), a hardware multiplier, DMA, a
real-time clock module with alarm capabilities, and 87 I/O pins.
The MSP430BT5190 microcontroller is designed for commercial use with TI’s CC2560 based Bluetooth solutions
in conjunction with Mindtree’s Ethermind Bluetooth stack and Serial Port Profile (SPP). This
MSP430BT5190+CC2560 Bluetooth platform is ideal for applications that need a wireless serial link for cable
replacement, such as remote controls, thermostats, smart metering, blood glucose meters, pulseoximeters, and
many others.
Table 1 summarizes the available family members.
Table 1. Family Members
(1)(2)
USCI
Flash SRAM ADC12_A Package
Channel A: Channel B:
Device Timer_A
(3)
Timer_B
(4)
I/O
(KB) (KB) (Ch) Type
UART, IrDA,
SPI, I
2
C
SPI
100 PZ,
MSP430BT5190 256 16 5, 3 7 4 4 14 ext, 2 int 87
113 ZQW
(1) For the most current package and ordering information, see the Package Option Addendum at the end of this document, or see the TI
web site at www.ti.com.
(2) Package drawings, thermal data, and symbolization are available at www.ti.com/packaging.
(3) Each number in the sequence represents an instantiation of Timer_A with its associated number of capture compare registers and PWM
output generators available. For example, a number sequence of 3, 5 would represent two instantiations of Timer_A, the first
instantiation having 3 and the second instantiation having 5 capture compare registers and PWM output generators, respectively.
(4) Each number in the sequence represents an instantiation of Timer_B with its associated number of capture compare registers and PWM
output generators available. For example, a number sequence of 3, 5 would represent two instantiations of Timer_B, the first
instantiation having 3 and the second instantiation having 5 capture compare registers and PWM output generators, respectively.
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