leddriver6 2.0.0.0
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LED driver 6 click

LED driver 6 Click is a high brightness LED or LED strip driver, designed to be used in tunable Smart Connected Lighting (SCL) applications. It is based on the AL1781, a single-channel PWM dimmable linear LED driver.

click Product page


Click library

  • Author : Nikola Peric
  • Date : Feb 2022.
  • Type : PWM type

Software Support

We provide a library for the Leddriver6 Click as well as a demo application (example), developed using MikroElektronika compilers. The demo can run on all the main MikroElektronika development boards.

Package can be downloaded/installed directly form compilers IDE(recommended way), or downloaded from our LibStock, or found on mikroE github account.

Library Description

‍This library contains API for Leddriver6 Click driver.

Standard key functions :

Example key functions :

  • Generic sets PWM duty cycle.

    ‍void leddriver6_set_duty_cycle ( leddriver6_t *ctx, pwm_data_t duty_cycle );

    - Stop PWM module.

    ‍void leddriver6_pwm_stop ( leddriver6_t *ctx );

  • Start PWM module.

    ‍void leddriver6_pwm_start ( leddriver6_t *ctx );

    Examples Description

‍This application designed to be used in tunable Smart Connected Lighting applications.

The demo application is composed of two sections :

Application Init

‍Initialization driver init and pwm init for LED.

void application_init ( void )
{
log_cfg_t log_cfg;
LOG_MAP_USB_UART( log_cfg );
log_init( &logger, &log_cfg );
log_info( &logger, "---- Application Init... ----" );
leddriver6_cfg_t leddriver6_cfg;
// Click initialization.
leddriver6_cfg_setup( &leddriver6_cfg );
LEDDRIVER6_MAP_MIKROBUS( leddriver6_cfg, MIKROBUS_1 );
if ( leddriver6_init( &leddriver6, &leddriver6_cfg ) == LEDDRIVER6_INIT_ERROR )
{
log_info( &logger, "---- Application Init Error. ----" );
log_info( &logger, "---- Please, run program again... ----" );
for ( ; ; );
}
log_info( &logger, "---- Application Init Done. ----" );
leddriver6_set_duty_cycle ( &leddriver6, 0.0 );
{
log_info( &logger, "---- PWM can't be started. ----" );
log_info( &logger, "---- Please, run program again... ----" );
for ( ; ; );
}
log_info( &logger, "---- PWM is started. ----" );
log_info( &logger, "---- Application Task ----" );
Delay_ms ( 500 );
}
#define LEDDRIVER6_INIT_ERROR
Definition leddriver6.h:78
#define LEDDRIVER6_MAP_MIKROBUS(cfg, mikrobus)
Definition leddriver6.h:66
void leddriver6_cfg_setup(leddriver6_cfg_t *cfg)
Config Object Initialization function.
err_t leddriver6_set_duty_cycle(leddriver6_t *ctx, float duty_cycle)
Sets PWM duty cycle.
err_t leddriver6_pwm_start(leddriver6_t *ctx)
Start PWM module.
err_t leddriver6_init(leddriver6_t *ctx, leddriver6_cfg_t *cfg)
Initialization function.
void application_init(void)
Definition main.c:30
Click configuration structure definition.
Definition leddriver6.h:121

Application Task

‍ This is an example that demonstrates the use of the LED Driver 6 Click board. This example shows the automatic control LED light intensity, the first intensity of light is rising and then the intensity of light is falling. Results are being sent to the Usart Terminal where you can track their changes.

void application_task ( void )
{
static int8_t duty_cnt = 1;
static int8_t duty_inc = 1;
float duty = duty_cnt / 10.0;
leddriver6_set_duty_cycle ( &leddriver6, duty );
log_printf( &logger, "Duty: %d%%\r\n", ( uint16_t )( duty_cnt * 10 ) );
Delay_ms ( 500 );
if ( 10 == duty_cnt )
{
duty_inc = -1;
}
else if ( 0 == duty_cnt )
{
duty_inc = 1;
}
duty_cnt += duty_inc;
}
void application_task(void)
Definition main.c:78

The full application code, and ready to use projects can be installed directly form compilers IDE(recommneded) or found on LibStock page or mikroE GitHub accaunt.

Other mikroE Libraries used in the example:

  • MikroSDK.Board
  • MikroSDK.Log
  • Click.Leddriver6

Additional notes and informations

Depending on the development board you are using, you may need USB UART click, USB UART 2 Click or RS232 Click to connect to your PC, for development systems with no UART to USB interface available on the board. The terminal available in all Mikroelektronika compilers, or any other terminal application of your choice, can be used to read the message.