The MAX30105 is an integrated particle-sensing module.It includes internal LEDs, photodetectors, optical elements and low-noise electronics with ambient light rejection. The MAX30105 provides a complete system solution to ease the design-in process of smoke detection applications including fire alarms. Due to its extremely small size, the MAX30105 can also be used as a smoke detection sensor for mobile and wearable devices.The MAX30105 operates on a single 1.8V power supply and a separate 5.0V power supply for the internal LEDs.It communicates through a standard I2C-compatible interface.The module can be shut down through software with zero standby current, allowing the power rails to remain powered at all times.It can be used in fire alarms, smoke detectors for building automation, smoke detectors for mobile devices, smoke detectors for wearable devices and so on.
LibDriver MAX30105 is the full function driver of MAX30105 launched by LibDriver. It provides fifo reading, id reading and other functions.
/src includes LibDriver MAX30105 source files.
/interface includes LibDriver MAX30105 IIC platform independent template。
/test includes LibDriver MAX30105 driver test code and this code can test the chip necessary function simply。
/example includes LibDriver MAX30105 sample code.
/doc includes LibDriver MAX30105 offline document.
/datasheet includes MAX30105 datasheet。
/project includes the common Linux and MCU development board sample code. All projects use the shell script to debug the driver and the detail instruction can be found in each project's README.md.
Reference /interface IIC platform independent template and finish your platform IIC driver.
Add /src, /interface and /example to your project.
volatile uint8_t res;
volatile uint32_t timeout;
volatile uint32_t cnt, times;
uint8_t max30105_receive_callback(uint8_t type)
{
switch (type)
{
case MAX30105_INTERRUPT_STATUS_FIFO_FULL :
{
volatile uint8_t res;
volatile uint8_t len;
/* read data */
len = 32;
res = max30105_fifo_read((uint32_t *)gs_raw_red, (uint32_t *)gs_raw_ir, (uint32_t *)gs_raw_green, (uint8_t *)&len);
if (res)
{
max30105_interface_debug_print("max30105: read failed.\n");
}
max30105_interface_debug_print("max30105: irq fifo full with %d.\n", len);
gs_flag = 1;
break;
}
case MAX30105_INTERRUPT_STATUS_DATA_RDY :
{
max30105_interface_debug_print("max30105: irq data rdy.\n");
break;
}
case MAX30105_INTERRUPT_STATUS_ALC_OVF :
{
max30105_interface_debug_print("max30105: irq alc ovf.\n");
break;
}
case MAX30105_INTERRUPT_STATUS_PROX_INT :
{
max30105_interface_debug_print("max30105: irq prox int.\n");
break;
}
case MAX30105_INTERRUPT_STATUS_PWR_RDY :
{
max30105_interface_debug_print("max30105: irq pwr rdy.\n");
break;
}
case MAX30105_INTERRUPT_STATUS_DIE_TEMP_RDY :
{
max30105_interface_debug_print("max30105: irq die temp rdy.\n");
break;
}
default :
{
break;
}
}
return 0;
}
...
/* get times */
times = 3;
cnt = times;
/* set gpio */
g_gpio_irq = max30105_fifo_irq_handler;
res = gpio_interrupt_init();
if (res)
{
g_gpio_irq = NULL;
return 1;
}
/* fifo init */
res = max30105_fifo_init(max30105_receive_callback);
if (res)
{
gpio_interrupt_deinit();
g_gpio_irq = NULL;
return 1;
}
...
/* read data */
gs_flag = 0;
timeout = 5000;
while (timeout)
{
if (gs_flag)
{
max30105_interface_debug_print("max30105: %d/%d.\n", cnt - times + 1, cnt);
/* clear config */
gs_flag = 0;
timeout = 5000;
times--;
if (times == 0)
{
break;
}
}
max30105_interface_delay_ms(1);
timeout--;
}
/* check timeout */
if (timeout == 0)
{
max30105_interface_debug_print("max30105: read timeout failed.\n");
max30105_fifo_deinit();
gpio_interrupt_deinit();
g_gpio_irq = NULL;
return 1;
}
...
max30105_fifo_deinit();
gpio_interrupt_deinit();
g_gpio_irq = NULL;
return 0;
Online documents: https://www.libdriver.com/docs/max30105/index.html
Offline documents: /doc/html/index.html
Please sent an e-mail to lishifenging@outlook.com
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