accel28 2.1.0.0
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Accel 28 click

‍Accel 28 Click is a compact add-on board that contains an acceleration sensor. This board features the LIS2HH12TR, an ultra-low-power high-performance three-axis accelerometer from STMicroelectronics. It allows selectable full-scale acceleration measurements in ranges of ±2g, ±4g, and ±8g in three axes with a configurable host interface that supports both SPI and I2C serial communication.

click Product page


Click library

  • Author : Stefan Ilic
  • Date : May 2023.
  • Type : I2C/SPI type

Software Support

We provide a library for the Accel 28 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 from NECTO Studio Package Manager(recommended way), downloaded from our LibStock™ or found on Mikroe github account.

Library Description

‍This library contains API for Accel 28 Click driver.

Standard key functions :

Example key functions :

Example Description

‍This example demonstrates the use of Accel 28 click board by reading and displaying the accelerometer data (X, Y, and Z axis).

The demo application is composed of two sections :

Application Init

‍Initializes the driver, performs the click default configuration.

void application_init ( void )
{
log_cfg_t log_cfg;
accel28_cfg_t accel28_cfg;
LOG_MAP_USB_UART( log_cfg );
log_init( &logger, &log_cfg );
log_info( &logger, " Application Init " );
// Click initialization.
accel28_cfg_setup( &accel28_cfg );
ACCEL28_MAP_MIKROBUS( accel28_cfg, MIKROBUS_1 );
err_t init_flag = accel28_init( &accel28, &accel28_cfg );
if ( ( I2C_MASTER_ERROR == init_flag ) || ( SPI_MASTER_ERROR == init_flag ) )
{
log_error( &logger, " Communication init." );
for ( ; ; );
}
uint8_t id_data = 0;
accel28_generic_read( &accel28, ACCEL28_REG_WHO_AM_I, &id_data, 1 );
if ( ACCEL28_WHO_AM_I_VALUE != id_data )
{
log_error( &logger, " Communication error." );
for ( ; ; );
}
if ( ACCEL28_ERROR == accel28_default_cfg ( &accel28 ) )
{
log_error( &logger, " Default configuration." );
for ( ; ; );
}
log_info( &logger, " Application Task " );
}
@ ACCEL28_ERROR
Definition accel28.h:390
#define ACCEL28_MAP_MIKROBUS(cfg, mikrobus)
MikroBUS pin mapping.
Definition accel28.h:297
#define ACCEL28_REG_WHO_AM_I
Definition accel28.h:77
#define ACCEL28_WHO_AM_I_VALUE
Accel 28 description setting.
Definition accel28.h:129
err_t accel28_generic_read(accel28_t *ctx, uint8_t reg, uint8_t *data_out, uint8_t len)
Accel 28 data reading function.
void application_init(void)
Definition main.c:30

Application Task

‍Reads and displays on the USB UART the accelerometer data (X, Y, and Z axis) when it is available.

void application_task ( void )
{
err_t error_flag = ACCEL28_OK;
{
uint8_t tmp_data;
error_flag = accel28_read_reg( &accel28, ACCEL28_REG_STATUS, &tmp_data );
if ( ( tmp_data & ACCEL28_STATUS_ZYX_DATA_AVL ) && ( ACCEL28_OK == error_flag ) )
{
error_flag = accel28_get_data( &accel28, &accel_data );
if ( ACCEL28_OK == error_flag )
{
log_printf( &logger, " X-axis %.2f mg\r\n", accel_data.x_data );
log_printf( &logger, " Y-axis %.2f mg\r\n", accel_data.y_data );
log_printf( &logger, " Z-axis %.2f mg\r\n", accel_data.z_data );
log_printf( &logger, " = = = = = = = = = = = = = =\r\n" );
}
}
}
}
@ ACCEL28_OK
Definition accel28.h:389
#define ACCEL28_REG_STATUS
Definition accel28.h:87
#define ACCEL28_PIN_STATE_HIGH
Accel 28 pin state setting.
Definition accel28.h:259
#define ACCEL28_STATUS_ZYX_DATA_AVL
Definition accel28.h:239
uint8_t accel28_get_int_state(accel28_t *ctx)
Accel 28 interrupt reading function.
err_t accel28_read_reg(accel28_t *ctx, uint8_t reg, uint8_t *data_out)
Accel 28 register data reading function.
accel28_data_t accel_data
Definition main.c:28
void application_task(void)
Definition main.c:75
float y_data
Definition accel28.h:378
float z_data
Definition accel28.h:379
float x_data
Definition accel28.h:377

The full application code, and ready to use projects can be installed directly from NECTO Studio Package Manager(recommended way), downloaded from our LibStock™ or found on Mikroe github account.

Other Mikroe Libraries used in the example:

  • MikroSDK.Board
  • MikroSDK.Log
  • Click.Accel28

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. UART terminal is available in all MikroElektronika compilers.