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RS232 3 Click

RS232 3 Click demo application is developed using the NECTO Studio, ensuring compatibility with mikroSDK's open-source libraries and tools. Designed for plug-and-play implementation and testing, the demo is fully compatible with all development, starter, and mikromedia boards featuring a mikroBUS™ socket.


Click Library

  • Author : Stefan Filipovic
  • Date : Apr 2022.
  • Type : UART type

Software Support

Example Description

This example demonstrates the use of an RS232 3 Click board by showing the communication between the two Click board configured as a receiver and transmitter.

Example Libraries

  • MikroSDK.Board
  • MikroSDK.Log
  • Click.RS2323

Example Key Functions

  • rs2323_cfg_setup Config Object Initialization function.
void rs2323_cfg_setup ( rs2323_cfg_t *cfg );
  • rs2323_init Initialization function.
err_t rs2323_init ( rs2323_t *ctx, rs2323_cfg_t *cfg );
  • rs2323_generic_write This function writes a desired number of data bytes by using UART serial interface.
err_t rs2323_generic_write ( rs2323_t *ctx, char *data_buf, uint16_t len );
  • rs2323_generic_read This function reads a desired number of data bytes by using UART serial interface.
err_t rs2323_generic_read ( rs2323_t *ctx, char *data_buf, uint16_t max_len );

Application Init

Initializes the driver and logger and displays the selected application mode.

void application_init ( void )
{
    log_cfg_t log_cfg;  /**< Logger config object. */
    rs2323_cfg_t rs2323_cfg;  /**< Click config object. */

    /** 
     * Logger initialization.
     * Default baud rate: 115200
     * Default log level: LOG_LEVEL_DEBUG
     * @note If USB_UART_RX and USB_UART_TX 
     * are defined as HAL_PIN_NC, you will 
     * need to define them manually for log to work. 
     * See @b LOG_MAP_USB_UART macro definition for detailed explanation.
     */
    LOG_MAP_USB_UART( log_cfg );
    log_init( &logger, &log_cfg );
    log_info( &logger, " Application Init " );

    // Click initialization.
    rs2323_cfg_setup( &rs2323_cfg );
    RS2323_MAP_MIKROBUS( rs2323_cfg, MIKROBUS_1 );
    if ( UART_ERROR == rs2323_init( &rs2323, &rs2323_cfg ) ) 
    {
        log_error( &logger, " Communication init." );
        for ( ; ; );
    }
#ifdef DEMO_APP_TRANSMITTER
    log_printf( &logger, " Application Mode: Transmitter\r\n" );
#else
    log_printf( &logger, " Application Mode: Receiver\r\n" );
#endif   
    log_info( &logger, " Application Task " );
}

Application Task

Depending on the selected mode, it reads all the received data or sends the desired message every 3 seconds.

void application_task ( void )
{
#ifdef DEMO_APP_TRANSMITTER
    rs2323_generic_write( &rs2323, DEMO_TEXT_MESSAGE, strlen( DEMO_TEXT_MESSAGE ) );
    log_printf( &logger, "%s", ( char * ) DEMO_TEXT_MESSAGE );
    Delay_ms ( 1000 );
    Delay_ms ( 1000 );
    Delay_ms ( 1000 ); 
#else
    uint8_t rx_data;
    if ( rs2323_generic_read( &rs2323, &rx_data, 1 ) > 0 )
    {
        log_printf( &logger, "%c", rx_data );
    }
#endif
}

Application Output

This Click board can be interfaced and monitored in two ways:

  • Application Output - Use the "Application Output" window in Debug mode for real-time data monitoring. Set it up properly by following this tutorial.
  • UART Terminal - Monitor data via the UART Terminal using a USB to UART converter. For detailed instructions, check out this tutorial.

Additional Notes and Information

The complete application code and a ready-to-use project are available through the NECTO Studio Package Manager for direct installation in the NECTO Studio. The application code can also be found on the MIKROE GitHub account.