TOP Contributors

  1. MIKROE (2663 codes)
  2. Alcides Ramos (358 codes)
  3. Shawon Shahryiar (307 codes)
  4. jm_palomino (112 codes)
  5. Chisanga Mumba (90 codes)
  6. S P (73 codes)
  7. dany (71 codes)
  8. MikroBUS.NET Team (35 codes)
  9. NART SCHINACKOW (34 codes)
  10. Armstrong Subero (27 codes)

Most Downloaded

  1. Timer Calculator (137081 times)
  2. FAT32 Library (70223 times)
  3. Network Ethernet Library (56095 times)
  4. USB Device Library (46414 times)
  5. Network WiFi Library (42032 times)
  6. FT800 Library (41378 times)
  7. GSM click (29109 times)
  8. mikroSDK (26557 times)
  9. PID Library (26487 times)
  10. microSD click (25486 times)
Libstock prefers package manager

Package Manager

We strongly encourage users to use Package manager for sharing their code on Libstock website, because it boosts your efficiency and leaves the end user with no room for error. [more info]

< Back
mikroSDK Library

Servo click

Rating:

0

Author: MIKROE

Last Updated: 2024-04-03

Package Version: 2.1.0.11

mikroSDK Library: 2.0.0.0

Category: Servo

Downloaded: 174 times

Not followed.

License: MIT license  

Servo click is a 16-channel PWM servo driver with the voltage sensing circuitry. It can be used to simultaneously control 16 servo motors, each with its own programmable PWM signal.

No Abuse Reported

Do you want to subscribe in order to receive notifications regarding "Servo click" changes.

Do you want to unsubscribe in order to stop receiving notifications regarding "Servo click" changes.

Do you want to report abuse regarding "Servo click".

  • mikroSDK Library 1.0.0.0
  • Comments (0)

mikroSDK Library Blog


Servo click

Servo click is a 16-channel PWM servo driver with the voltage sensing circuitry. It can be used to simultaneously control 16 servo motors, each with its own programmable PWM signal.

servo_click.png

click Product page


Click library

  • Author : MikroE Team
  • Date : Jan 2020.
  • Type : I2C type

Software Support

We provide a library for the Servo 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 Servo Click driver.

Standard key functions :

  • Config Object Initialization function.

    void servo_cfg_setup ( servo_cfg_t *cfg );

  • Initialization function.

    SERVO_RETVAL servo_init ( servo_t ctx, servo_cfg_t cfg );

  • Click Default Configuration function.

    void servo_default_cfg ( servo_t *ctx );

Example key functions :

  • This function settings Vref of Servo Clicks.

    void servo_set_vref ( servo_t *ctx, uint16_t v_ref );

  • This function sets position.

    void servo_set_position ( servo_t *ctx, uint8_t motor, uint8_t position );

  • This function reads the current value of Servo Click witch motor spends.

    uint16_t setvo_get_current ( servo_t *ctx, uint8_t channel );

Examples Description

This app shows how the servo motor can be controled by the click board.

The demo application is composed of two sections :

Application Init

Initializes device.


void application_init ( void )
{
    log_cfg_t log_cfg;
    servo_cfg_t cfg;

    /** 
     * 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.

    servo_cfg_setup( &cfg );
    SERVO_MAP_MIKROBUS( cfg, MIKROBUS_1 );
    servo_init( &servo, &cfg );

    servo_default_cfg( &servo );
}

Application Task

The servo motor at CH1 rotate in clockwise and counter clockwise directions.


void application_task ( void )
{
    log_printf( &logger, "<<< Counter clockwise >>>\r\n" );
    Delay_1sec( );

    for ( cnt = servo.min_pos; cnt <= servo.max_pos; cnt++ )
    {
        servo_set_position( &servo, SERVO_MOTOR_1, cnt );
        log_printf( &logger, "Position : %u \r\n", ( uint16_t ) cnt );
        Delay_10ms( );
    }

    log_printf( &logger, "-----------------------------\r\n" );

    log_printf( &logger, "<<< Clockwise >>>\r\n" );
    Delay_1sec( );

    for ( cnt = servo.max_pos; cnt >= servo.min_pos; cnt-- )
    {
        servo_set_position( &servo, SERVO_MOTOR_1, cnt );
        log_printf( &logger, "Position : %u \r\n", ( uint16_t ) cnt );
        Delay_10ms( );
    }
} 

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.Servo

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.


ALSO FROM THIS AUTHOR

10x10 RGB click

0

10x10 RGB Click is a matrix of 100 intelligent RGB elements, forming a 10x10 display screen. These LED elements feature internal logic, which allows them to communicate directly with the MCU.

[Learn More]

Altitude 3 click

0

Altitude 3 click allows high-resolution barometric pressure measurement, by utilizing the ICP-10100, an integrated barometric pressure and temperature sensor.

[Learn More]

Wireless Stepper Motor Control

6

This is a simple demonstration of using nRF and Stepper click boards for wirelessly controlling the stepper motor. Master module sends command to the slave (ON, OFF, DIRECTION, 1 step, 1/2 step, 1/4 step and 1/8 step). Upon reception, slave processes this command and drives stepper motor.

[Learn More]