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使用TCAL6408和PIC18F4455扩展项目中的输入/输出引脚数量

带有中断、复位和灵活I/O的8位I/O扩展器

Expand 17 Click with EasyPIC v8

已发布 10月 17, 2024

点击板

Expand 17 Click

开发板

EasyPIC v8

编译器

NECTO Studio

微控制器单元

PIC18F4455

为您的项目增加更多输入和输出引脚,以增强功能

A

A

硬件概览

它是如何工作的?

Expand 17 Click基于Texas Instruments的TCAL6408,这是一个通过I2C协议提供输入/输出扩展的8位I/O扩展器。该Click板™是当处理开关、传感器、按钮、LED、风扇和其他外围设备时,添加更多I/O的理想解决方案。TCAL6408 IC具有灵活的I/O配置寄存器,提供可编程的输出驱动强度、锁存输入、可屏蔽中断、可编程的上拉/下拉电阻以及配置开漏或推挽输出的能力。这些高级功能确保了增强的I/O性能,提供了更高的速度、功耗优化以及降低的电磁干

扰(EMI)。TCAL6408支持独立的逻辑电源和主电源。逻辑电压通过3.3V的mikroBUS™电源轨供电,而主电源可以从mikroBUS™的3.3V供电或通过VIN端子提供的外部电源供电,范围为1.08V至3.6V。主电源选择通过VCCP SEL跳线进行管理,允许用户根据其应用的需求设置适当的电源。Expand 17 Click通过标准的2线I2C接口与主MCU通信,支持高达1MHz的时钟频率。I2C地址可以通过板上的ADDR SEL跳线轻松配置。此外,该板还使用了一个低电平有效的复位

(RST)引脚,用于初始化设备,以及一个开漏低电平有效中断(INT)引脚,用于通知输入状态的变化,确保高效处理外部事件和输入。该Click板™只能在3.3V逻辑电平下运行。在使用不同逻辑电平的MCU之前,必须进行适当的逻辑电平转换。此外,该Click板™还配备了包含易于使用的函数和示例代码的库,供进一步开发参考。

Expand 17 Click hardware overview image

功能概述

开发板

EasyPIC v8 是一款专为快速开发嵌入式应用的需求而特别设计的开发板。它支持许多高引脚计数的8位PIC微控制器,来自Microchip,无论它们的引脚数量如何,并且具有一系列独特功能,例如首次集成的调试器/程序员。开发板布局合理,设计周到,使得最终用户可以在一个地方找到所有必要的元素,如开关、按钮、指示灯、连接器等。得益于创新的制造技术,EasyPIC v8 提供了流畅而沉浸式的工作体验,允许在任何情况下、任何地方、任何时候都能访问。

EasyPIC v8 开发板的每个部分都包含了使同一板块运行最高效的必要组件。除了先进的集成CODEGRIP程 序/调试模块,该模块提供许多有价值的编程/调试选项和与Mikroe软件环境的无缝集成外,该板还包括一个干净且调节过的开发板电源供应模块。它可以使用广泛的外部电源,包括电池、外部12V电源供应和通过USB Type-C(USB-C)连接器的电源。通信选项如USB-UART、USB DEVICE和CAN也包括在内,包括 广受好评的mikroBUS™标准、两种显示选项(图形和

基于字符的LCD)和几种不同的DIP插座。这些插座覆盖了从最小的只有八个至四十个引脚的8位PIC MCU的广泛范围。EasyPIC v8 是Mikroe快速开发生态系统的一个组成部分。它由Mikroe软件工具原生支持,得益于大量不同的Click板™(超过一千块板),其数量每天都在增长,它涵盖了原型制作和开发的许多方面。

EasyPIC v8 horizontal image

微控制器概述 

MCU卡片 / MCU

PIC18F4455

建筑

PIC

MCU 内存 (KB)

24

硅供应商

Microchip

引脚数

40

RAM (字节)

2048

使用的MCU引脚

mikroBUS™映射器

NC
NC
AN
Reset
RE1
RST
ID COMM
RE0
CS
NC
NC
SCK
NC
NC
MISO
NC
NC
MOSI
Power Supply
3.3V
3.3V
Ground
GND
GND
NC
NC
PWM
Interrupt
RB0
INT
NC
NC
TX
NC
NC
RX
I2C Clock
RC3
SCL
I2C Data
RC4
SDA
NC
NC
5V
Ground
GND
GND
1

“仔细看看!”

Click board™ 原理图

Expand 17 Click Schematic schematic

一步一步来

项目组装

EasyPIC v8 front image hardware assembly

从选择您的开发板和Click板™开始。以EasyPIC v8作为您的开发板开始。

EasyPIC v8 front image hardware assembly
GNSS2 Click front image hardware assembly
MCU DIP 40 hardware assembly
GNSS2 Click complete accessories setup image hardware assembly
EasyPIC v8 Access DIPMB 1 - upright/background hardware assembly
Necto image step 2 hardware assembly
Necto image step 3 hardware assembly
Necto image step 4 hardware assembly
NECTO Compiler Selection Step Image hardware assembly
NECTO Output Selection Step Image hardware assembly
Necto image step 6 hardware assembly
Necto DIP image step 7 hardware assembly
Necto image step 8 hardware assembly
Necto image step 9 hardware assembly
Necto image step 10 hardware assembly
Necto PreFlash Image hardware assembly

软件支持

库描述

该库包含 Expand 17 Click 驱动程序的 API。

关键功能:

  • expand17_set_io_dir - 此函数用于设置引脚的输入或输出方向。

  • expand17_set_output_state - 此函数用于设置引脚的输出状态。

  • expand17_get_input_state - 此函数用于获取引脚的输入状态。

开源

代码示例

完整的应用程序代码和一个现成的项目可以通过NECTO Studio包管理器直接安装到NECTO Studio 应用程序代码也可以在MIKROE的GitHub账户中找到。

/*!
 * @file main.c
 * @brief Expand 17 Click example
 *
 * # Description
 * This example demonstrates the use of Expand 17 Click board by setting and reading 
 * the ports state.
 *
 * The demo application is composed of two sections :
 *
 * ## Application Init
 * Initializes the driver and performs the Click default configuration which sets 
 * half of pins as output ( IO5, IO6, IO7 and IO8 ) and the 
 * half of the pins as inputs ( IO1, IO2, IO3 and IO4 ).
 *
 * ## Application Task
 * Sets the state of the output pins and then reads the status of the input pins
 * and displays the results on the USB UART approximately every 2 seconds.
 *
 * @note
 * In order for this example to work as intended it is necessary to connect the input and output pins 
 * eg. IO1 and IO5, IO2 and IO6 etc. Floating input pins will be shown as a high state.
 *
 * @author Stefan Ilic
 *
 */

#include "board.h"
#include "log.h"
#include "expand17.h"

static expand17_t expand17;
static log_t logger;

void application_init ( void ) 
{
    log_cfg_t log_cfg;  /**< Logger config object. */
    expand17_cfg_t expand17_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.
    expand17_cfg_setup( &expand17_cfg );
    EXPAND17_MAP_MIKROBUS( expand17_cfg, MIKROBUS_1 );
    if ( I2C_MASTER_ERROR == expand17_init( &expand17, &expand17_cfg ) ) 
    {
        log_error( &logger, " Communication init." );
        for ( ; ; );
    }
    
    if ( EXPAND17_ERROR == expand17_default_cfg ( &expand17 ) )
    {
        log_error( &logger, " Default configuration." );
        for ( ; ; );
    }
    
    log_info( &logger, " Application Task " );
}

void application_task ( void ) 
{
    uint8_t input_state = 0;

    log_printf( &logger, " Setting output pins state: HIGH \r\n" );
    log_printf( &logger, " = = = = = = = = = = = = = = = = = \r\n" );
    expand17_set_output_state( &expand17, EXPAND17_NO_IO_PIN_MASK, EXPAND17_IO_5_PIN_MASK | 
                                          EXPAND17_IO_6_PIN_MASK | EXPAND17_IO_7_PIN_MASK | 
                                          EXPAND17_IO_8_PIN_MASK );

    log_printf( &logger, " State of input pins: \r\n" );
    log_printf( &logger, " = = = = = = = = = = = = = = = = = \r\n" );
    expand17_get_input_state( &expand17, &input_state );
    if ( input_state & EXPAND17_IO_1_PIN_MASK )
    {
        log_printf( &logger, " IO1 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO1 - LOW \r\n" );
    }
    if ( input_state & EXPAND17_IO_2_PIN_MASK )
    {
        log_printf( &logger, " IO2 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO2 - LOW \r\n" );
    }
    if ( input_state & EXPAND17_IO_3_PIN_MASK )
    {
        log_printf( &logger, " IO3 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO3 - LOW \r\n" );
    }
    if ( input_state & EXPAND17_IO_4_PIN_MASK )
    {
        log_printf( &logger, " IO4 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO4 - LOW \r\n" );
    }
    log_printf( &logger, " = = = = = = = = = = = = = = = = = \r\n" );
    Delay_ms ( 1000 );
    Delay_ms ( 1000 );
    
    log_printf( &logger, " Setting output pins state: LOW \r\n" );
    log_printf( &logger, " = = = = = = = = = = = = = = = = = \r\n" );
    expand17_set_output_state( &expand17, EXPAND17_IO_5_PIN_MASK | EXPAND17_IO_6_PIN_MASK | 
                                          EXPAND17_IO_7_PIN_MASK | EXPAND17_IO_8_PIN_MASK, 
                                          EXPAND17_NO_IO_PIN_MASK );

    log_printf( &logger, " State of input pins: \r\n" );
    log_printf( &logger, " = = = = = = = = = = = = = = = = = \r\n" );
    expand17_get_input_state( &expand17, &input_state );
    if ( input_state & EXPAND17_IO_1_PIN_MASK )
    {
        log_printf( &logger, " IO1 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO1 - LOW \r\n" );
    }
    if ( input_state & EXPAND17_IO_2_PIN_MASK )
    {
        log_printf( &logger, " IO2 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO2 - LOW \r\n" );
    }
    if ( input_state & EXPAND17_IO_3_PIN_MASK )
    {
        log_printf( &logger, " IO3 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO3 - LOW \r\n" );
    }
    if ( input_state & EXPAND17_IO_4_PIN_MASK )
    {
        log_printf( &logger, " IO4 - HIGH \r\n" );
    }
    else
    {
        log_printf( &logger, " IO4 - LOW \r\n" );
    }
    log_printf( &logger, " = = = = = = = = = = = = = = = = = \r\n" );
    Delay_ms ( 1000 );
    Delay_ms ( 1000 );
}

int main ( void ) 
{
    /* Do not remove this line or clock might not be set correctly. */
    #ifdef PREINIT_SUPPORTED
    preinit();
    #endif
    
    application_init( );
    
    for ( ; ; ) 
    {
        application_task( );
    }

    return 0;
}

// ------------------------------------------------------------------------ END

额外支持

资源

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