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//******************************************************************************
// MSP430F23x0 Demo - USCI_A0, UART 9600 Full-Duplex Transceiver, 32kHz ACLK
//
// Description: USCI_A0 communicates continously as fast as possible full-
// duplex with another device. Normal mode is LPM3, with activity only during
// RX and TX ISR's. The TX ISR indicates the USCI_A0 is ready to send another
// character. The RX ISR indicates the USCI_A0 has received a character. At
// 9600 baud, a full character is tranceived ~1ms.
// The levels on P1.4/5 are TX'ed. RX'ed value is displayed on P1.0/1.
// ACLK = BRCLK = LFXT1 = 32768Hz, MCLK = SMCLK = DCO ~1.2MHz
// Baud rate divider with 32768Hz XTAL @9600 = 32768Hz/9600 = 3.41
// //* An external watch crystal is required on XIN XOUT for ACLK *//
//
// MSP430F23x0 MSP430F23x0
// ----------------- -----------------
// | XIN|- /|\| XIN|-
// | | 32kHz | | | 32kHz
// | XOUT|- --|RST XOUT|-
// | | /|\ | |
// | RST|--- | |
// | | | |
// ->|P1.4 | | P1.0|-> LED
// ->|P1.5 | | P1.1|-> LED
// LED <-|P1.0 | | P1.4|<-
// LED <-|P1.1 | | P1.5|<-
// | UCA0TXD/P3.4|--------->|P3.5 |
// | | 9600 | |
// | UCA0RXD/P3.5|<---------|P3.4 |
//
//
// A. Dannenberg
// Texas Instruments Inc.
// January 2007
// Built with CCE Version: 3.2.0 and IAR Embedded Workbench Version: 3.41A
//******************************************************************************
#include "msp430x23x0.h"
void main(void)
{
WDTCTL = WDTPW + WDTHOLD; // Stop watchdog timer
P1OUT = 0x00; // P1.0/1 setup for LED output
P1DIR = 0x03;
P3SEL = 0x30; // P3.4,5 = USCI_A0 TXD/RXD
UCA0CTL1 |= UCSSEL_1; // CLK = ACLK
UCA0BR0 = 0x03; // 32kHz/9600 = 3.41
UCA0BR1 = 0x00;
UCA0MCTL = UCBRS1 + UCBRS0; // Modulation UCBRSx = 3
UCA0CTL1 &= ~UCSWRST; // **Initialize USCI state machine**
IE2 |= UCA0RXIE + UCA0TXIE; // Enable USCI_A0 TX/RX interrupt
__bis_SR_register(LPM3_bits + GIE); // Enter LPM3 w/ interrupts enabled
}
// USCI A0/B0 Transmit ISR
#pragma vector=USCIAB0TX_VECTOR
__interrupt void USCI0TX_ISR(void)
{
UCA0TXBUF = (P1IN >> 4) & 0x03; // Read, justify, and transmit
}
// USCI A0/B0 Receive ISR
#pragma vector=USCIAB0RX_VECTOR
__interrupt void USCI0RX_ISR(void)
{
P1OUT = UCA0RXBUF; // Display RX'ed charater
}
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