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SBLCDA2_Specification.pdf
0.028" / 0.71mm x48 1.100" / 27.94mm 0.0787" / 2.00mm 1 2 3 4 5 SBLCDA2 Circuit Examples D D Sample MSP430F449 Interconnect Sample MSP430 Bias Circuit VCC_MSP 3.0v to 3.6v LCD1 C5 1 48 C1 0.1uF, 16v S37 2 1D_1C_1B_1A COM4 47 COM3 VR33 S36 3 1N_1M_1K_1J COM3 46 COM2 R33 S35 1DP_2E_2F_2COL COM2 COM1 S34 4
in „MSP430FG439 mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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SBLCDA2_Specification.pdf
0.028" / 0.71mm x48 1.100" / 27.94mm 0.0787" / 2.00mm 1 2 3 4 5 SBLCDA2 Circuit Examples D D Sample MSP430F449 Interconnect Sample MSP430 Bias Circuit VCC_MSP 3.0v to 3.6v LCD1 C5 1 48 C1 0.1uF, 16v S37 2 1D_1C_1B_1A COM4 47 COM3 VR33 S36 3 1N_1M_1K_1J COM3 46 COM2 R33 S35 1DP_2E_2F_2COL COM2 COM1 S34 4
in „MSP430 LCD Controller“ · Mikrocontroller und Digitale Elektronik ·
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JTAG.pdf
Reset circuit with reset switch and JTAG connection +3V Vcc Cch Rrst Battery RST/NMI MSP430 Reset Cch Switch Vss 0V JTAG Connector TDO/TDI Test data output port. TDO/TDI data output or programming data input terminal TDI Test data input. TDI is used as a data input port. The device protection
in „MSP430-- Wie mit JTAG von Olimex programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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main.c
//****************************************************************************** // MSP430F20x2/3 Demo - SPI full-Duplex 3-wire Master // // Description: SPI Master communicates with SPI Slave RFM12 868MHz // using 3-wire mode. // Master will pulse slave reset for synch start. // ACLK = n/a, MCLK = SMCLK = Default DCO // // Slave Master // RFM12 Transceiver MSP430F2013 // ----------------- ----------------- // | | /|\| XIN|- // | | | | | // | | --|RST XOUT|- // VCC->|VDD | | | // VCC-10K ->|FSK/DATA | | | // GND ->|GND (7&10) | | | // | | | P1.0|-> LED // |
in „RFM12 + MSP2013“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x22x4_lpm3_vlo.c
//****************************************************************************** // MSP430F22x4 Demo - Basic Clock, LPM3 Using WDT ISR, VLO ACLK // // Description: This program operates MSP430 normally in LPM3, pulsing P1.0 // ~ 6 second intervals. WDT ISR used to wake-up system. All I/O
in „MSP430F2274 LPM3 Clock ohne externen Oszi“ · Mikrocontroller und Digitale Elektronik ·
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msp430x22x4_lpm3_vlo.c
//****************************************************************************** // MSP430F22x4 Demo - Basic Clock, LPM3 Using WDT ISR, VLO ACLK // // Description: This program operates MSP430 normally in LPM3, pulsing P1.0 // ~ 6 second intervals. WDT ISR used to wake-up system. All I/O
in „MSP430F2274 LPM3 Clock ohne externen Oszi“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x20x2_adc10_14_Beispiel_von_TI_.cpp
//****************************************************************************** // MSP430F20x2 Demo - ADC10, DTC Sample A1-0 16x, AVcc, Repeat Seq, DCO // // Description: Use DTC to sample A1/A0 repeat sequence 16x(32 total samples) // with reference to AVcc. Software sets ADC10SC to trigger sample burst. // In Mainloop MSP430 waits in LPM0 to save power until ADC10 conversion // complete, ADC10_ISR will force exit from any LPMx in Mainloop on reti. // ADC10 internal oscillator times sample period (16x) and conversion (13x
in „MSP430 Leistungsmessung 230V“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fet120_adc10_09.c
reference to internal 1.5v. // Vref Software writes to ADC10SC to trigger sample burst. In Mainloop MSP430 // waits in LPM0 to save power until ADC10 conversion complete, ADC10_ISR(DTC) // will force exit from any LPMx in Mainloop on reti. (ADC10OSC/4)/64 // determines sample time which needs to be greater
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msp430x20x2_adc10_10.c
//****************************************************************************** // MSP430F20x2 Demo - ADC10, DTC Sample A2-0, AVcc, Single Sequence, DCO // // Description: Sample A3/A2/A1 as single sequence with reference to AVcc. // Software sets ADC10SC to trigger sample sequence. In Mainloop MSP430 waits // in LPM0 to save power until ADC10 conversion complete, ADC10_ISR(DTC) will // force exit from any LPMx in Mainloop on reti. ADC10_ISR will force any LPMx // exit. ADC10 internal oscillator
in „MSP430 ADC10: Zwei Kanäle hintereinander abfragen“ · Mikrocontroller und Digitale Elektronik ·
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msp430x22x4_adc10_10.txt
//****************************************************************************** // MSP430F22x4 Demo - ADC10, DTC Sample A2-0, AVcc, Single Sequence, DCO // // Description: Sample A2/A1/A0 as single sequence with reference to AVcc. // Software sets ADC10SC to trigger sample sequence. In Mainloop MSP430 waits // in LPM0 to save power until ADC10 conversion complete, ADC10_ISR(DTC) will // force exit from any LPMx in Mainloop on reti. ADC10_ISR will force LPM0 // exit. ADC10 internal oscillator times
in „MSP430 ADC10 mehrere Kanäle“ · Mikrocontroller und Digitale Elektronik ·
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slau056e.pdf
individual peripheral modules. The block diagram of the FLL+ clock module is shown in Figure 4−1 for the MSP430x44x and MSP430x43x. The block diagram of the FLL+ clock module is shown in Figure 4−2 for the MSP430x42x and MSP430x41x. 4-2 FLL+ Clock Module Figure 4−1.MSP430x44x and MSP430x43x Frequency-Locked
in „MSP430 LCD Controller“ · Mikrocontroller und Digitale Elektronik ·
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slau056e.pdf
individual peripheral modules. The block diagram of the FLL+ clock module is shown in Figure 4−1 for the MSP430x44x and MSP430x43x. The block diagram of the FLL+ clock module is shown in Figure 4−2 for the MSP430x42x and MSP430x41x. 4-2 FLL+ Clock Module Figure 4−1.MSP430x44x and MSP430x43x Frequency-Locked
in „MSP430FG439 mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code.c
//****************************************************************************** // MSP430F22x4 Demo - ADC10, Sample A0, 1.5V Ref, Set P1.0 if A0 > 0.2V // // Description: A single sample is made on A0 with reference to internal // 1.5V Vref. Software sets ADC10SC to start sample and conversion
in „MSP430 LPM-Handling, verstehe Code nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fet140_dma_09.c
transfer only for demonstration purposes. // ACLK = n/a, MCLK = SMCLK = default DCO ~ 800k // //* MSP430F169 Device Required *// // // MSP430F169 // ----------------- // /|\| XIN|- // | | | // --|RST XOUT|- // | | // |A10 P1.0|-->LED // // M. Buccini // Texas Instruments Inc. // Feb 2005 // Built with
in „MSP430: ADC12 soll DMA triggern“ · Mikrocontroller und Digitale Elektronik ·
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SBLCDA4_Specifications.pdf
Road Suite 604 Awww.softbaugh.com05 SBLCDA4 Overview Our advanced SBLCDA4 is compatible with all MSP430s featuring LCD drive. The SBLCDA4 offers the following features: • 2.7v to 3.6v operation directly connected to the MSP430 LCD drive • 4-mux operation • 7.1 seven-segment with minus symbology allows
in „MSP430 Experimentierboard - LCD (SBLCDA4)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430f66xx_adc_10.c
//****************************************************************************** // MSP430F66xx Demo - ADC12, Sample A10 Temp and Convert to oC and oF // // Description: A single sample is made on A10 with reference to internal // 1.5V Vref. Software sets ADC12SC to start sample and conversion
in „Brauche Hilfe beim abändern eines Examples von TI.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
//****************************************************************************** // MSP430G2x21/G2x31 Demo - I2C Master Transmitter / Reciever, multiple bytes // // Description: I2C Master communicates with I2C Slave using // the USI. Master data should increment from 0x55 with each transmitted
in „MSP430G2231 - I2C TI-Code funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430SoftUartShort.c
/* ---- msp430f2013, g2231, Half Duplex Software UART ---------------- #### (c) B. Nollmeyer 11/2010 #### ---- */ /* */ /* Simple Bi-Directional Half Duplex Software UART. Der originale TI sample Code verwendet hier
in „MSP430 launchpad TimerA_UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
list01.txt
trivial name suffix(gcc,iar) msp430-objcopy: "IAR" ------------------------------------------------------------ elf32-msp430 ,d43 elf32-little Debug info ,dbg elf32-big ubrof5(force) text txt, txt srec msp430-txt symbolsrec tekhex binary
in „List der wichtigsten MSP430-Dateiformate“ · Mikrocontroller und Digitale Elektronik ·
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slau533d-26.pdf
Hardware www.ti.com BoosterPack Software-Configurable PinoutStandard MSP430F5529 Pin Functions F5529 LaunchPad (!) Denotes an interrupt-capable I/O Software-Configurable BoosterPack MSP430F5529 Pin Functions PinoutStandard F5529 LaunchPad Power Analog SPI I2C General I/O Unused
in „MSP430 F5529 Wobbel-Generator“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TI_USCI_I2C_master.h
#ifndef USCI_LIB #define USCI_LIB #include <msp430g2231.h> //#include <legacymsp430.h> #define SDA_PIN BIT7 // msp430x261x UCB0SDA pin #define SCL_PIN BIT6 // msp430x261x UCB0SCL pin void TI_USCI_I2C_receiveinit(unsigned char slave_address, unsigned
in „MSP430 Aufkündigung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x2xxTemperatur.c
/* ---- msp430g2231 ADC10 TestCode ----------------------------------- #### (c) B. Nollmeyer 10/2010 #### ---- */ /* */ /* ADC Oversampling 12 BIT, Gain, Offset Error Kompensation mittels "Fixed-point Arithmetik"
in „MSP430 C-Programmierung, Programmgröße reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
VirtualWire.cpp
Exp mikem $ #if defined(ARDUINO) #if (ARDUINO < 100) #include "WProgram.h" #endif #elif defined(__MSP430G2452__) || defined(__MSP430G2553__) // LaunchPad specific #include "legacymsp430.h" #include "Energia.h" #else // error #error Platform not defined #endif #include "VirtualWire.h" #include <util/crc16
in „Korrigierte "VirtualWire" Library für Attiny84 / 85“ · Projekte & Code ·
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Datei
10k_Array_mit_MSPF1611.txt
wird in "http://focus.ti.com/lit/an/slaa294/slaa294.pdf" behandelt. so: #include <msp430x16x.h> __no_init unsigned char array[10000]; //Vor-Initialisieren des Array (10000Bytes) void main() { WDTCTL=WDTPW+WDTHOLD; //Ausschalten des Watchdog array[0]=255; //dem 1. Element des Array wird der Wert 255 zugewiesen } statt so: #include <msp430x16x.h> unsigned char array[10000]; //Vor-Initialisieren des Array (10000Bytes) void main() { WDTCTL=WDTPW+WDTHOLD; //Ausschalten des Watchdog array[0]=255; //dem 1. Element des Array wird der Wert
in „mit MSP430 5kB in RAM + Flash - ROM speichern?“ · Mikrocontroller und Digitale Elektronik ·
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MSP430_Low_Power_Modes.pdf
Operating Modes www.ti.com 2.3 Operating Modes The MSP430 family is designed for ultralow-power applications and uses different operating modes shown in Figure 2-9. The operating modes take into account three different needs: • Ultralow-power • Speed and data throughput • Minimization of individual peripheral current consumption The MSP430 typical current consumption is shown in Figure 2-8. 300 315 z 270 H 200 1 225 V = 3 V a 180 CC A 135 VCC = 2.2 V C I 90 55 45 32 17 11 0.9 0.7 0.1 0.1 0 AM LPM0 LPM2 LPM3 LPM4 Operating Modes Figure
in „Sparsamer uC mit Timer Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
blink.c
//*************************************************************************************** // MSP430 Blink the LED Demo - Software Toggle P1.0 // // Description; Toggle P1.0 by xor'ing P1.0 inside of a software loop. // ACLK = n/a, MCLK = SMCLK = default DCO // // MSP430x5xx // ----------------- /
in „MSP430 Timer Uhr sekundentakt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MSP430TimerExample.c
void main(void) { WDTCTL = WDTPW + WDTHOLD; // stop watchdog timer P1DIR = BIT0; // P1.0 output TACTL = TASSEL0+TACLR; // TASSEL1 = SMCLK, TASSEL0 = ACLK(32,7..kHz), clear TAR CCTL0 = CCIE; // CCR0 interrupt enabled, CCTLx=Compare/Capture register CCR0 = 0xFFFF; // every 1/32768*FFFFh = 1,9999...s TACTL = MC0|TAIE; // start Timer_A in up mode, enable Timer_A interrupt _EINT(); // enable global interrupts P1OUT = BIT0; // turn LED off while(1) // main loop -> wait for interrupt ; } interrupt[TIMERA0_VECTOR] void Timer_A (void) { unsigned int i; P1OUT ^= BIT0; // toggle LED TACTL &= ~TAIFG; // reset
in „MSP 430 Wie Timer in C programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MSP430TimerExample.c
void main(void) { WDTCTL = WDTPW + WDTHOLD; // stop watchdog timer P1DIR = BIT0; // P1.0 output TACTL = TASSEL0+TACLR; // TASSEL1 = SMCLK, TASSEL0 = ACLK(32,7..kHz), clear TAR CCTL0 = CCIE; // CCR0 interrupt enabled, CCTLx=Compare/Capture register CCR0 = 0xFFFF; // every 1/32768*FFFFh = 1,9999...s TACTL = MC0|TAIE; // start Timer_A in up mode, enable Timer_A interrupt _EINT(); // enable global interrupts P1OUT = BIT0; // turn LED off while(1) // main loop -> wait for interrupt ; } interrupt[TIMERA0_VECTOR] void Timer_A (void) { unsigned int i; P1OUT ^= BIT0; // toggle LED TACTL &= ~TAIFG; // reset
in „MSP430: TIMER_A einstellen“ · Mikrocontroller und Digitale Elektronik ·
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Layout-Schema-MSP430.pdf
Pegelwandler für RS232 Komparatorschaltung-x Komparatorschaltung-y Komparatorschaltung-Taster VCC2 VCC1 VCC1 C21 k 8 6,4µF k 6 6,4µF1 k 4 6,4µF2 100n C12 0 R + 0 1 + 0 2 + 1 D 1 R D 1 R D C14 100n GAIN C6 N GAIN C1 N C3 N 100n C13 U$3G$1 100n G U$4G$1 100n G U$5G$1 100n G 100n t + Vcc t + Vcc 2 + Vcc 8I7 6 5 4 3 2 1 r k 3 PIN37 r k 1 PIN39 t PIN41 R 2 V C 2 C V 1 p 1 R - OUT A p 1 R - OUT A s - OUT A T C C o LM393 VCC3 o LM393 VCC3 T 23 0 LM393 VCC3 2 2 1 1 R 1 N c > 100kGND > 100kGND R 1 100kGND 9 0 1 2 3 4T5 6V x R1 10k y 0 1 R9 10k I R17 10k 1 1 2 3 1 1 1 F 0 7 R2 t 1 R R10 t A 1 R18 t I I µ
in „MSP430 läuft nicht !“ · Mikrocontroller und Digitale Elektronik ·
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msp430x1232.txt
/* Default linker script, for normal executables and my sections*/ OUTPUT_FORMAT("elf32-msp430","elf32-msp430","elf32-msp430") OUTPUT_ARCH(msp:12) MEMORY { section_bootloader_init (rx) : ORIGIN = 0xE000, LENGTH = 0x0010 section_bootloader_check (rx) : ORIGIN = 0xE010, LENGTH = 0x0010 section_crc_check
in „MSP430 LinkerFile, Variablen- und DebugInformations-problem“ · Mikrocontroller und Digitale Elektronik ·
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MSP430F2013.pdf
▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯
in „MSP430F2013 per JTAG programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Zeitdiagramm einer UART-Synchronisation
i 0 1 2 t_ideal t0 t1 t2 BRCLK 1 2 3 4 5 6 7 8 9 10 11 12 13 14 2 3 4 5 6 7 1 2 3 4 5 6 7 UCAxRXD ST D0 D1 RXD synch. ST D0 D1 t_actual Synchronization Error ± 0.5x BRCLK Sample RXD synch. Majority Vote Taken Majority Vote Taken Majority Vote Taken
in „UART: Verschliffene Flanken - wann werden die Datenbits gesampelt?“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder
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PDF
MSP430F449____________-__________-__-_.pdf
www.WayEngineer.com 数码管控制电路: 晶振电路: (C7,C8 可省略) JTAG 接口电路: 其他的插针由引脚直接引出,用眼睛看实物就能直接看出电路, 来因此不再画出电路,敬请谅解。
in „LCD Anzeige spinnt“ · Mikrocontroller und Digitale Elektronik ·
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MSP430g2231_UART_backup.c
the example code provided by TI with the LaunchPad. * This code was originally created for "NJC's MSP430 * LaunchPad Blog". * * Author: Nicholas J. Conn - http://msp430launchpad.com * Email: webmaster at msp430launchpad.com * Date: 08-17-10 ******************************************************************************/ #include "msp430g2231.h" #include "stdbool.h" #define bit_get(p,m) ((p) & (m)) #define bit_setzen(p,m) ((p) |= (m)) #define bit_loeschen(p,m) ((p) &= ~(m)) #define bit_flip(p,m) ((p) ^= (m)) #define bit_write(c,p,m
in „MSP430G2231 - UART 26 Bit übertragen/empfangen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430xG46x_tb_05.c
//****************************************************************************** // MSP430xG46x Demo - Timer_B, Toggle P5.1, TBCCR0 Up Mode ISR, 32kHz ACLK // // ACLK = LFXT1 = 32768Hz, MCLK = SMCLK = default DCO = 32 x ACLK = 1048576Hz // //* An external watch crystal between XIN & XOUT is required for ACLK *// // // MSP430xG46x // ----------------- // /|\| XIN|- // | | | 32kHz // --|RST XOUT|- // | | // | P5.1|-->LED // // Texas Instruments Inc. // October 2006 // Built with CCE Version: 3.2.0 and IAR Embedded Workbench
in „MSP430xG46x TimerB Capture Compare Register Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x23x0_tb_06.c
//****************************************************************************** // MSP430F23x0 Demo - Timer_B, Toggle P1.0, TBCCR1 Cont. Mode ISR, DCO SMCLK // // Description: Toggle P1.0 using software and TB_1 ISR. Toggles every // 50000 SMCLK cycles. SMCLK provides clock source for TBCLK
in „MSP430xG46x TimerB Capture Compare Register Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x20x3_P1_02.c
//****************************************************************************** // MSP430F20xx Demo - Software Port Interrupt Service on P1.4 from LPM4 // // Description: A hi/low transition on P1.4 will trigger P1_ISR which, // toggles P1.0. Normal mode is LPM4 ~ 0.1uA. LPM4 current can
in „MSP Interruptroutine“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x20x3_usi_05.c
//****************************************************************************** // MSP430F20x2/3 Demo - USI SPI Interface to TLC549 8-bit ADC // // Description: This program demonstrates the USI in SPI mode interface to a // TLC549 8-bit ADC. If AIN > 0.5(REF+ - REF-), P1.0 set, else reset
in „MSP430 MSP430F2013 SPI Kommunikation mit D/A-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TS_5435_0118-adc12_03.c
// Versuch --ADW mit MSP430F5435-- #include <msp430.h> #include "msp430x54x.h" #include <TS_5435-LC7981.h> // für FK-Anzeige #include <stdio.h> // für sprintf void programmversion(void); long zahl; unsigned int zahla,akku; float
in „Bedeutung?: Error: cannot load from …..“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
//****************************************************************************** // MSP430FG4618 HALLSIGNAL with TimerB & Register // // Description: // // MSP430xG461x // ----------------------- // /|\| | // | | | // --|RST | // | | // | P5.1|-->LED4 red & Square waveform // SW1-->|P1.0
in „MSP430xG46x TimerB Capture Compare Register Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
//---------------------------------------------------------------------------- // MSP430xG46x Quelle: http://www.mikrocontroller.net/articles/MSP430_Codebeispiele // ----------- // DESCRIPTION: Erzeugt ein PWM Signal an P1.2 // ------------ Als Timerclock wird der SMCLK 1048576 Cycles
in „PWM Verständnis über CCR Register“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bsp-interrupt.c
/******************************************************************************* / Title : MSP430 Test-i2c-430F123x / Author: / Software: IAR Worbench / Target: MSP430f123x / Comments: / last modified / file-name: *******************************************************************************/ #include "msp430x12x.h" #include <In430.h> #define int_Offset 0xffe0 #define sel_eingang P2SEL // Selection IO/Periphals #define dir_eingang P2DIR // Direction I/O #define ie_eingang P2IE // Interrupt Enable #define
in „MSP430: TIMER_A einstellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bsp-interrupt.c
/******************************************************************************* / Title : MSP430 Test-i2c-430F123x / Author: / Software: IAR Worbench / Target: MSP430f123x / Comments: / last modified / file-name: *******************************************************************************/ #include "msp430x12x.h" #include <In430.h> #define int_Offset 0xffe0 #define sel_eingang P2SEL // Selection IO/Periphals #define dir_eingang P2DIR // Direction I/O #define ie_eingang P2IE // Interrupt Enable #define
in „MSP430: Interrupt von PIN Port 1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
//****************************************************************************** // MSP430FG4618 HALLSIGNAL with TimerB & Register // // Description: // // MSP430xG461x // ----------------------- // /|\| | // | | | // --|RST | // | | // | P5.1|-->LED4 red & Square waveform // SW1-->|P1.0
in „MSP430xG46x TimerB Capture Compare Register Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430xG46x_usart1_uart_9600.c
//****************************************************************************** // MSP430xG46x Demo - USART1, Ultra-Low Pwr UART 9600 Echo ISR, 32kHz ACLK // // Description: Echo a received character, RX ISR used. Normal mode is LPM3, // USART1 RX interrupt triggers TX Echo. // ACLK = UCLK1
in „RS232 mit MSP430FG4618“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
transfer. DAC12_0 uses internal Vref. // ACLK= n/a, MCLK= SMCLK= TACLK= default DCO ~ 800kHz // //* MSP430F169 Device Required *// // // MSP430F169 // ----------------- // /|\| XIN|- // | | | // --|RST XOUT|- // | | // | DAC0/P6.6|--> ~ 1kHz sine wave output // // // M. Buccini // Texas Instruments Inc.
in „Bitte, bitte helft mir: MSP430 DMA Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
----------------------------------------------------------- controls a EA DOGM162x-x LCD by a TI MSP430x12x2, MSP430x22x2 or MSP430x22x4 ---------------------------------------------------------------------------- connect the LCD in seriell (SPI) or parallel (4bit or 8bit) mode an select the right option
in „DOGM162 an MSP430F1232 betreiben“ · Mikrocontroller und Digitale Elektronik ·
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main.c
19200 = 186 (00BAh) // //* An external 8Mhz XTAL on X2IN X2OUT is required for ACLK *// // // // MSP430F169 // ----------------- // /|\| X2IN|- // | | | 8MHz mit 2*15pF // --|RST X2OUT|- // | | // -|AVcc P3.6|------------> // -|P6.2 | 115200 - 8N1 // -|Veref P3.7|<------------ // // // M. Buccini //
in „MSP430F169 AD rauscht zuviel“ · Mikrocontroller und Digitale Elektronik ·
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msp430x54x_UCS_8.c
//****************************************************************************** // MSP430F54x Demo - XT2 sources MCLK & SMCLK // // Description: This program demonstrates using XT2 to source MCLK. XT1 is not // connected in this case. // // By default, LFXT1 is requested by the following
in „MSP430F543x Quarz Problem und Probleme mit dem Debuggen“ · Mikrocontroller und Digitale Elektronik ·