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MSP430FR2433: MSP430FR2433内部存储器FRAM

Part Number: MSP430FR2433

为什么我从FRAM存储器的地址读取值一直读取不到,麻烦可以提供一下FRAM读取操作的正确代码吗

void FRAMRead_str (char index)
{
    char *Fram_ptr = ((char *)FRAM_TEST_START) + index;
    return *Fram_ptr;
}

  • 您是否有参考例程?

    https://dev.ti.com/tirex/explore/node?node=ADEFKoeyVMLgIZuOHPzCvQ__IOGqZri__LATEST 

    /* --COPYRIGHT--,BSD_EX
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     * EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     *
     *******************************************************************************
     *
     *                       MSP430 CODE EXAMPLE DISCLAIMER
     *
     * MSP430 code examples are self-contained low-level programs that typically
     * demonstrate a single peripheral function or device feature in a highly
     * concise manner. For this the code may rely on the device's power-on default
     * register values and settings such as the clock configuration and care must
     * be taken when combining code from several examples to avoid potential side
     * effects. Also see www.ti.com/grace for a GUI- and www.ti.com/msp430ware
     * for an API functional library-approach to peripheral configuration.
     *
     * --/COPYRIGHT--*/
    //******************************************************************************
    //   MSP430FR243x Demo - Long word writes to FRAM
    //
    //   Description: Use long word write to write to 512 byte blocks of FRAM.
    //   Toggle LED after every 100 writes.
    //   ACLK = REFO, MCLK = SMCLK = default DCODIV = ~1MHz
    //
    //   It is recommended to disable interrupt while code is writing to main FRAM,
    //   because it is dangerous for running the interrupt services routine with 
    //   PFWP disabled.
    //   This code examples is using DFWP which wouldn't have dangerous. But it is 
    //   recommended to disable interrupt if user is using PFWP.
    //
    //           MSP430FR2433
    //         ---------------
    //     /|\|               |
    //      | |               |
    //      --|RST            |
    //        |               |
    //        |          P1.0 |---> LED
    //
    //   Ling Zhu
    //   Texas Instruments Inc.
    //   Feb 2015
    //   Built with IAR Embedded Workbench v6.20 & Code Composer Studio v6.0.1
    //******************************************************************************
    #include <msp430.h>
    
    void FRAMWrite(void);
    
    unsigned char count = 0;
    unsigned long *FRAM_write_ptr;
    unsigned long data;
    
    #define FRAM_TEST_START 0x1800
    
    
    int main(void)
    {
        WDTCTL = WDTPW | WDTHOLD;               // Stop watchdog timer
    
        P1OUT &= ~BIT0;                         // Clear P1.0 output latch for a defined power-on state
        P1DIR |= BIT0;                          // Set P1.0 to output directionOUT
    
        PM5CTL0 &= ~LOCKLPM5;                   // Disable the GPIO power-on default high-impedance mode
                                                // to activate previously configured port settings
        data = 0x11111111;                      // Initialize dummy data
    
        while(1)
        {
            data += 0x00010001;
            FRAM_write_ptr = (unsigned long *)FRAM_TEST_START;
            FRAMWrite();
            count++;
            if (count > 100)
            {
                P1OUT ^= 0x01;                  // Toggle LED to show 512 bytes
                count = 0;                      // have been written
                data = 0x11111111;
            }
        }
    }
    
    void FRAMWrite (void)
    {
        unsigned int i=0;
    
        SYSCFG0 = FRWPPW | PFWP;
        for (i = 0; i < 128; i++)
        {
            *FRAM_write_ptr++ = data;
        }
        SYSCFG0 = FRWPPW | PFWP | DFWP;
    }