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释放UG95和PIC32MZ2048EFM100为北美企业带来的UTMS力量

连接社区,一次一个频段!

3G-AA Click (for United States) with Curiosity PIC32 MZ EF

已发布 6月 24, 2024

点击板

3G-AA Click (for United States)

开发板

Curiosity PIC32 MZ EF

编译器

NECTO Studio

微控制器单元

PIC32MZ2048EFM100

我们的尖端蜂窝网络解决方案确保在北美地区所有UTMS频段上实现不间断的通信,确保您在最关键的时刻保持连接。

A

A

硬件概览

它是如何工作的?

3G-AA Click基于Quectel的UG95-A,这是一款具有高速无线连接功能的超小型UMTS/HSPA模块。该模块是Click板的主要组件,由几个内部模块或部分组成,如天线切换部分、射频收发器部分、存储器、电源管理,最重要的是 - 蜂窝基带处理器。该部分包含了管理其他部分所需的逻辑,并为主机MCU提供接口。Click板背面的Micro SIM卡槽用于安装Micro SIM卡。没有有效的SIM卡,该设备无法使用,SIM卡允许连接到蜂窝网络。支持1.8V和3V SIM卡类型。Quectel UG95提供了用于数字音频的PCM接口。来自Analog Devices的16位单声道音频语音CODEC IC MAX9860为3G-AA Click提供了语音通信功能。MAX9860 IC使用

PCM和I2C接口与Quectel UG95模块通信。 该IC为连接耳机提供了清晰而可听的模拟接口,具有一个音频输出通道和一个麦克风输入通道。耳机可以通过板载的3.5mm音频插孔连接。3G-AA Click还配备了一个micro-USB连接器。它允许模块通过个人电脑 (PC)供电和配置。Quectel提供了一套软件套件,可与3G-AA Click板一起使用。3G-AA Click使用标准的2线UART接口与主机MCU通信,常用的UART RX和TX。UART接口支持300、1200、2400、4800、9600、19200、38400、57600、115200、230400、460800和921600bps的波特率,缺省设置为自动波特率检测,介于4800和115200之间。UART接口可用于数据传输、

AT通信或固件升级。3G-AA Click通过UART RTS和CTS引脚提供完整的硬件流控制。由 于UG95内部由1.8V供电,因此3G-AA Click使用来自德州仪器的6位双向电平转换和电压转换器TXB0106。此外,3G-AA Click具有一个RI指示器和PWK作为电源键,在上电序列期间使用。STA是用于信号设备状态的状态引脚,除了STAT LED。另一个LED是TXD,表示网络状态。该Click板可以通过IO SEL跳线选择3.3V或5V逻辑电压电平运行。这样,既支持3.3V又支持5V的MCU可以正确使用通信线路。此外,该Click板配备有包含易于使用的函数和示例代码的库,可用作进一步开发的参考。

3G-AA Click (for United States) hardware overview image

功能概述

开发板

Curiosity PIC32 MZ EF 开发板是一个完全集成的 32 位开发平台,特点是高性能的 PIC32MZ EF 系列(PIC32MZ2048EFM),该系列具有 2MB Flash、512KB RAM、集成的浮点单元(FPU)、加密加速器和出色的连接选项。它包括一个集成的程序员和调试器,无需额外硬件。用户可以通过 MIKROE 

mikroBUS™ Click™ 适配器板扩展功能,通过 Microchip PHY 女儿板添加以太网连接功能,使用 Microchip 扩展板添加 WiFi 连接能力,并通过 Microchip 音频女儿板添加音频输入和输出功能。这些板完全集成到 PIC32 强大的软件框架 MPLAB Harmony 中,该框架提供了一个灵活且模块化的接口

来应用开发、一套丰富的互操作软件堆栈(TCP-IP、USB)和易于使用的功能。Curiosity PIC32 MZ EF 开发板提供了扩展能力,使其成为连接性、物联网和通用应用中快速原型设计的绝佳选择。

Curiosity PIC32MZ EF double side image

微控制器概述 

MCU卡片 / MCU

default

建筑

PIC32

MCU 内存 (KB)

2048

硅供应商

Microchip

引脚数

100

RAM (字节)

524288

你完善了我!

配件

Rubber Antenna GSM/GPRS Right Angle是我们广泛产品线中所有 GSM Click 板的理想伴侣。这款专业天线设计旨在优化您的无线连接,并具有出色的特点。它具有广泛的频率范围,涵盖了824-894/1710-1990MHz或890-960/1710-1890MHz,可以处理各种频段,确保无缝可靠的连接。该天线阻抗为50欧姆,增益为2dB,增强了信号接收和传输。其70/180MHz的带宽为各种应用提供了灵活性。垂直极化进一步提高了性能。这款天线最大输入功率容量为50W,即使在苛刻条件下也能保证稳健的通信。尺寸紧凑,长度为50mm,并配有 SMA 阴性连接器,是您无线通信需求的多功能紧凑解决方案。

3G-AA Click accessories image

使用的MCU引脚

mikroBUS™映射器

Module Status
RPB4
AN
Power-Up module
RA9
RST
UART RTS
RPD4
CS
NC
NC
SCK
NC
NC
MISO
NC
NC
MOSI
Power Supply
3.3V
3.3V
Ground
GND
GND
UART RI
RPE8
PWM
UART CTS
RF13
INT
UART TX
RPD10
TX
UART RX
RPD15
RX
NC
NC
SCL
NC
NC
SDA
Power Supply
5V
5V
Ground
GND
GND
1

“仔细看看!”

Click board™ 原理图

3G-AA Click (for United States) Schematic schematic

一步一步来

项目组装

Curiosity PIC32MZ EF front image hardware assembly

从选择您的开发板和Click板™开始。以Curiosity PIC32 MZ EF作为您的开发板开始。

Curiosity PIC32MZ EF front image hardware assembly
GNSS2 Click front image hardware assembly
Prog-cut hardware assembly
GNSS2 Click complete accessories setup image hardware assembly
Curiosity PIC32 MZ EF MB 1 Access - upright/background hardware assembly
Necto image step 2 hardware assembly
Necto image step 3 hardware assembly
Necto image step 4 hardware assembly
Necto image step 5 hardware assembly
Necto image step 6 hardware assembly
Curiosity PIC32 MZ EF MCU Step hardware assembly
Necto No Display image step 8 hardware assembly
Necto image step 9 hardware assembly
Necto image step 10 hardware assembly
Debug Image Necto Step hardware assembly

实时跟踪您的结果

应用程序输出

1. 应用程序输出 - 在调试模式下,“应用程序输出”窗口支持实时数据监控,直接提供执行结果的可视化。请按照提供的教程正确配置环境,以确保数据正确显示。

2. UART 终端 - 使用UART Terminal通过USB to UART converter监视数据传输,实现Click board™与开发系统之间的直接通信。请根据项目需求配置波特率和其他串行设置,以确保正常运行。有关分步设置说明,请参考提供的教程

3. Plot 输出 - Plot功能提供了一种强大的方式来可视化实时传感器数据,使趋势分析、调试和多个数据点的对比变得更加直观。要正确设置,请按照提供的教程,其中包含使用Plot功能显示Click board™读数的分步示例。在代码中使用Plot功能时,请使用以下函数:plot(insert_graph_name, variable_name);。这是一个通用格式,用户需要将“insert_graph_name”替换为实际图表名称,并将“variable_name”替换为要显示的参数。

软件支持

库描述

这个库包含3G-AA Click驱动程序的API。

关键函数:

  • c3gea_set_sim_apn - 设置SIM卡的APN。

  • c3gea_send_sms_text - 向手机号码发送文本消息。

  • c3gea_send_sms_pdu - 以PDU模式向手机号码发送文本消息。

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 3G-AA Click Example.
 *
 * # Description
 * Application example shows device capability of connecting to the network and
 * sending SMS or TCP/UDP messages using standard "AT" commands.
 *
 * The demo application is composed of two sections :
 *
 * ## Application Init
 * Initializes the driver, tests the communication by sending "AT" command, and after that restarts the device.
 *
 * ## Application Task
 * Application task is split in few stages:
 *  - C3GAA_CONFIGURE_FOR_NETWORK:
 * Sets configuration to device to be able to connect to the network.
 *
 *  - C3GAA_WAIT_FOR_CONNECTION:
 * Waits for the network registration indicated via CREG URC event and then checks
 * the connection status.
 *
 *  - C3GAA_CONFIGURE_FOR_EXAMPLE:
 * Sets the device configuration for sending SMS or TCP/UDP messages depending on the selected demo example.
 *
 *  - C3GAA_EXAMPLE:
 * Depending on the selected demo example, it sends an SMS message (in PDU or TXT mode) or TCP/UDP message.
 *
 * By default, the TCP/UDP example is selected.
 *
 * ## Additional Function
 * - static void c3gaa_clear_app_buf ( void )
 * - static err_t c3gaa_process ( void )
 * - static void c3gaa_error_check( err_t error_flag )
 * - static void c3gaa_log_app_buf ( void )
 * - static err_t c3gaa_rsp_check ( uint8_t *rsp )
 * - static err_t c3gaa_configure_for_connection( void )
 * - static err_t c3gaa_check_connection( void )
 * - static err_t c3gaa_configure_for_messages( void )
 * - static err_t c3gaa_send_message( void )
 *
 * @note
 * In order for the examples to work, user needs to set the APN and SMSC (SMS PDU mode only)
 * of entered SIM card as well as the phone number (SMS mode only) to which he wants to send an SMS.
 * Enter valid values for the following macros: SIM_APN, SIM_SMSC and PHONE_NUMBER_TO_MESSAGE.
 * Example:
    SIM_APN "internet"
    SIM_SMSC "+381610401"
    PHONE_NUMBER_TO_MESSAGE "+381659999999"
 *
 * @author Stefan Filipovic
 *
 */

#include "board.h"
#include "log.h"
#include "c3gaa.h"
#include "conversions.h"

// Example selection macros
#define EXAMPLE_TCP_UDP                     0               // Example of sending messages to a TCP/UDP echo server
#define EXAMPLE_SMS                         1               // Example of sending SMS to a phone number
#define DEMO_EXAMPLE                        EXAMPLE_TCP_UDP // Example selection macro

// SIM APN config
#define SIM_APN                             ""              // Set valid SIM APN

// SMS example parameters
#define SIM_SMSC                            ""              // Set valid SMS Service Center Address - only in SMS PDU mode
#define PHONE_NUMBER_TO_MESSAGE             ""              // Set Phone number to message
#define SMS_MODE                            "1"             // SMS mode: "0" - PDU, "1" - TXT

// TCP/UDP example parameters
#define REMOTE_IP                           "77.46.162.162" // TCP/UDP echo server IP address
#define REMOTE_PORT                         "51111"         // TCP/UDP echo server port

// Message content
#define MESSAGE_CONTENT                     "3G-AA click board - demo example."

// Application buffer size
#define APP_BUFFER_SIZE                     256
#define PROCESS_BUFFER_SIZE                 256

/**
 * @brief Example states.
 * @details Predefined enum values for application example state.
 */
typedef enum
{
    C3GAA_CONFIGURE_FOR_NETWORK = 1,
    C3GAA_WAIT_FOR_CONNECTION,
    C3GAA_CONFIGURE_FOR_EXAMPLE,
    C3GAA_EXAMPLE

} c3gaa_example_state_t;

static c3gaa_t c3gaa;
static log_t logger;

/**
 * @brief Application example variables.
 * @details Variables used in application example.
 */
static uint8_t app_buf[ APP_BUFFER_SIZE ] = { 0 };
static int32_t app_buf_len = 0;
static err_t error_flag;
static c3gaa_example_state_t example_state;

/**
 * @brief Clearing application buffer.
 * @details This function clears memory of application
 * buffer and reset its length and counter.
 */
static void c3gaa_clear_app_buf ( void );

/**
 * @brief Data reading function.
 * @details This function reads data from device and
 * appends it to the application buffer.
 * @return @li @c  0 - Some data is read.
 *         @li @c -1 - Nothing is read.
 * See #err_t definition for detailed explanation.
 */
static err_t c3gaa_process ( void );

/**
 * @brief Check for errors.
 * @details This function checks for different types of
 * errors and logs them on UART or logs the response if no errors occured.
 * @param[in] error_flag  Error flag to check.
 */
static void c3gaa_error_check ( err_t error_flag );

/**
 * @brief Logs application buffer.
 * @details This function logs data from application buffer.
 */
static void c3gaa_log_app_buf ( void );

/**
 * @brief Response check.
 * @details This function checks for response and
 * returns the status of response.
 * @param[in] rsp  Expected response.
 * @return @li @c  0 - OK response.
 *         @li @c -2 - Timeout error.
 *         @li @c -3 - Command error.
 *         @li @c -4 - Unknown error.
 * See #err_t definition for detailed explanation.
 */
static err_t c3gaa_rsp_check ( uint8_t *rsp );

/**
 * @brief Configure device for connection to the network.
 * @details Sends commands to configure and enable
 * connection to the specified network.
 * @return @li @c  0 - OK response.
 *         @li @c -2 - Timeout error.
 *         @li @c -3 - Command error.
 *         @li @c -4 - Unknown error.
 * See #err_t definition for detailed explanation.
 */
static err_t c3gaa_configure_for_network ( void );

/**
 * @brief Wait for connection signal.
 * @details Wait for connection signal from CREG URC.
 * @return @li @c  0 - OK response.
 *         @li @c -2 - Timeout error.
 *         @li @c -3 - Command error.
 *         @li @c -4 - Unknown error.
 * See #err_t definition for detailed explanation.
 */
static err_t c3gaa_check_connection ( void );

/**
 * @brief Configure device for example.
 * @details Configure device for the specified example.
 * @return @li @c  0 - OK response.
 *         @li @c -2 - Timeout error.
 *         @li @c -3 - Command error.
 *         @li @c -4 - Unknown error.
 * See #err_t definition for detailed explanation.
 */
static err_t c3gaa_configure_for_example ( void );

/**
 * @brief Execute example.
 * @details This function executes SMS or TCP/UDP example depending on the DEMO_EXAMPLE macro.
 * @return @li @c  0 - OK response.
 *         @li @c -2 - Timeout error.
 *         @li @c -3 - Command error.
 *         @li @c -4 - Unknown error.
 * See #err_t definition for detailed explanation.
 */
static err_t c3gaa_example ( void );

void application_init ( void ) 
{
    log_cfg_t log_cfg;  /**< Logger config object. */
    c3gaa_cfg_t c3gaa_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.
    c3gaa_cfg_setup( &c3gaa_cfg );
    C3GAA_MAP_MIKROBUS( c3gaa_cfg, MIKROBUS_1 );
    if ( UART_ERROR == c3gaa_init( &c3gaa, &c3gaa_cfg ) )
    {
        log_error( &logger, " Application Init Error. " );
        log_info( &logger, " Please, run program again... " );
        for ( ; ; );
    }
    
    c3gaa_process( );
    c3gaa_clear_app_buf( );

    // Check communication
    c3gaa_send_cmd( &c3gaa, C3GAA_CMD_AT );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    c3gaa_error_check( error_flag );
    
    // Restart device
    #define RESTART_DEVICE "1,1"
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_CFUN, RESTART_DEVICE );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    c3gaa_error_check( error_flag );
    
    log_info( &logger, " Application Task " );
    example_state = C3GAA_CONFIGURE_FOR_NETWORK;
}

void application_task ( void )
{
    switch ( example_state )
    {
        case C3GAA_CONFIGURE_FOR_NETWORK:
        {
            if ( C3GAA_OK == c3gaa_configure_for_network( ) )
            {
                example_state = C3GAA_WAIT_FOR_CONNECTION;
            }
            break;
        }
        case C3GAA_WAIT_FOR_CONNECTION:
        {
            if ( C3GAA_OK == c3gaa_check_connection( ) )
            {
                example_state = C3GAA_CONFIGURE_FOR_EXAMPLE;
            }
            break;
        }
        case C3GAA_CONFIGURE_FOR_EXAMPLE:
        {
            if ( C3GAA_OK == c3gaa_configure_for_example( ) )
            {
                example_state = C3GAA_EXAMPLE;
            }
            break;
        }
        case C3GAA_EXAMPLE:
        {
            c3gaa_example( );
            break;
        }
        default:
        {
            log_error( &logger, " Example state." );
            break;
        }
    }
}

int main ( void ) 
{
    application_init( );
    
    for ( ; ; ) 
    {
        application_task( );
    }

    return 0;
}

static void c3gaa_clear_app_buf ( void )
{
    memset( app_buf, 0, app_buf_len );
    app_buf_len = 0;
}

static err_t c3gaa_process ( void )
{
    uint8_t rx_buf[ PROCESS_BUFFER_SIZE ] = { 0 };
    int32_t rx_size = 0;
    rx_size = c3gaa_generic_read( &c3gaa, rx_buf, PROCESS_BUFFER_SIZE );
    if ( rx_size > 0 ) 
    {
        int32_t buf_cnt = app_buf_len;
        if ( ( ( app_buf_len + rx_size ) > APP_BUFFER_SIZE ) && ( app_buf_len > 0 ) ) 
        {
            buf_cnt = APP_BUFFER_SIZE - ( ( app_buf_len + rx_size ) - APP_BUFFER_SIZE );
            memmove ( app_buf, &app_buf[ APP_BUFFER_SIZE - buf_cnt ], buf_cnt );
        }
        for ( int32_t rx_cnt = 0; rx_cnt < rx_size; rx_cnt++ ) 
        {
            if ( rx_buf[ rx_cnt ] ) 
            {
                app_buf[ buf_cnt++ ] = rx_buf[ rx_cnt ];
                if ( app_buf_len < APP_BUFFER_SIZE )
                {
                    app_buf_len++;
                }
            }
        }
        return C3GAA_OK;
    }
    return C3GAA_ERROR;
}

static err_t c3gaa_rsp_check ( uint8_t *rsp )
{
    uint32_t timeout_cnt = 0;
    uint32_t timeout = 120000;
    c3gaa_clear_app_buf( );
    c3gaa_process( );
    while ( ( 0 == strstr( app_buf, rsp ) ) &&
            ( 0 == strstr( app_buf, C3GAA_RSP_ERROR ) ) )
    {
        c3gaa_process( );
        if ( timeout_cnt++ > timeout )
        {
            c3gaa_clear_app_buf( );
            return C3GAA_ERROR_TIMEOUT;
        }
        Delay_ms( 1 );
    }
    Delay_ms( 100 );
    c3gaa_process( );
    if ( strstr( app_buf, rsp ) )
    {
        return C3GAA_OK;
    }
    else if ( strstr( app_buf, C3GAA_RSP_ERROR ) )
    {
        return C3GAA_ERROR_CMD;
    }
    else
    {
        return C3GAA_ERROR_UNKNOWN;
    }
}

static void c3gaa_error_check ( err_t error_flag )
{
    switch ( error_flag )
    {
        case C3GAA_OK:
        {
            c3gaa_log_app_buf( );
            break;
        }
        case C3GAA_ERROR:
        {
            log_error( &logger, " Overflow!" );
            break;
        }
        case C3GAA_ERROR_TIMEOUT:
        {
            log_error( &logger, " Timeout!" );
            break;
        }
        case C3GAA_ERROR_CMD:
        {
            log_error( &logger, " CMD!" );
            break;
        }
        case C3GAA_ERROR_UNKNOWN:
        default:
        {
            log_error( &logger, " Unknown!" );
            break;
        }
    }
    Delay_ms( 500 );
}

static void c3gaa_log_app_buf ( void )
{
    for ( int32_t buf_cnt = 0; buf_cnt < app_buf_len; buf_cnt++ )
    {
        log_printf( &logger, "%c", app_buf[ buf_cnt ] );
    }
}

static err_t c3gaa_configure_for_network ( void )
{
    err_t func_error = C3GAA_OK;
#if ( ( DEMO_EXAMPLE == EXAMPLE_TCP_UDP ) || ( DEMO_EXAMPLE == EXAMPLE_SMS ) )
    Delay_ms ( 5000 );
    // Deregister from network
    #define DEREGISTER_FROM_NETWORK "2"
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_COPS, DEREGISTER_FROM_NETWORK );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    
    // Set SIM APN
    c3gaa_set_sim_apn( &c3gaa, SIM_APN );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );

    // Enable full functionality
    #define FULL_FUNCTIONALITY "1"
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_CFUN, FULL_FUNCTIONALITY );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );

    // Enable network registartion
    #define ENABLE_REG "2"
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_CREG, ENABLE_REG );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    
    // Automatic registration
    #define AUTOMATIC_REGISTRATION "0"
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_COPS, AUTOMATIC_REGISTRATION );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
#endif
    return func_error;
}

static err_t c3gaa_check_connection ( void )
{
#if ( ( DEMO_EXAMPLE == EXAMPLE_TCP_UDP ) || ( DEMO_EXAMPLE == EXAMPLE_SMS ) )
    #define CONNECTED "+CREG: 2,1"
    c3gaa_send_cmd_check ( &c3gaa, C3GAA_CMD_CREG );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    c3gaa_error_check( error_flag );
    if ( strstr( app_buf, CONNECTED ) )
    {
        Delay_ms( 100 );
        c3gaa_process( );
        c3gaa_log_app_buf( );
        log_printf( &logger, "\r\n" );
        c3gaa_clear_app_buf( );
        // Check signal quality
        c3gaa_send_cmd( &c3gaa, C3GAA_CMD_CSQ );
        error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
        c3gaa_error_check( error_flag );
        return error_flag;
    }
    Delay_ms ( 1000 );
    return C3GAA_ERROR;
#endif
    return C3GAA_OK;
}

static err_t c3gaa_configure_for_example ( void )
{
    err_t func_error = C3GAA_OK;
#if ( DEMO_EXAMPLE == EXAMPLE_TCP_UDP )
    #define ACTIVATE_PDP_CONTEXT "1"
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QIACT, ACTIVATE_PDP_CONTEXT );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
#elif ( DEMO_EXAMPLE == EXAMPLE_SMS )
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_CMGF, SMS_MODE );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
#else
    #error "No demo example selected"
#endif
    return func_error;
}

static err_t c3gaa_example ( void )
{
    err_t func_error = C3GAA_OK;
#if ( DEMO_EXAMPLE == EXAMPLE_TCP_UDP )
    uint8_t cmd_buf[ 100 ] = { 0 };
    uint8_t tcp_socket_num[ 2 ] = { '0', 0 };
    uint8_t udp_socket_num[ 2 ] = { '1', 0 };
    #define CONTEXT_ID "1,"

    // Open TCP socket.
    #define TCP_SERVICE_TYPE ",\"TCP\","
    strcpy( cmd_buf, CONTEXT_ID );
    strcat( cmd_buf, tcp_socket_num );
    strcat( cmd_buf, TCP_SERVICE_TYPE );
    strcat( cmd_buf, "\"" );
    strcat( cmd_buf, REMOTE_IP );
    strcat( cmd_buf, "\"" );
    strcat( cmd_buf, "," );
    strcat( cmd_buf, REMOTE_PORT );
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QIOPEN, cmd_buf );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    
    // Open UDP socket.
    #define UDP_SERVICE_TYPE ",\"UDP\","
    strcpy( cmd_buf, CONTEXT_ID );
    strcat( cmd_buf, udp_socket_num );
    strcat( cmd_buf, UDP_SERVICE_TYPE );
    strcat( cmd_buf, "\"" );
    strcat( cmd_buf, REMOTE_IP );
    strcat( cmd_buf, "\"" );
    strcat( cmd_buf, "," );
    strcat( cmd_buf, REMOTE_PORT );
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QIOPEN, cmd_buf );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );

    // Get message length
    uint8_t message_len_buf[ 10 ] = { 0 };
    uint16_t message_len = strlen( MESSAGE_CONTENT );
    uint16_to_str( message_len, message_len_buf );
    l_trim( message_len_buf );
    r_trim( message_len_buf );

    // Write message to TCP socket and read response
    strcpy( cmd_buf, tcp_socket_num );
    strcat( cmd_buf, "," );
    strcat( cmd_buf, message_len_buf );
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QISEND, cmd_buf );
    Delay_ms ( 100 );
    c3gaa_generic_write ( &c3gaa, MESSAGE_CONTENT, message_len );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    Delay_ms ( 1000 );
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QIRD, cmd_buf );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );

    // Write message to UDP socket and read response
    strcpy( cmd_buf, udp_socket_num );
    strcat( cmd_buf, "," );
    strcat( cmd_buf, message_len_buf );
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QISEND, cmd_buf );
    Delay_ms ( 100 );
    c3gaa_generic_write ( &c3gaa, MESSAGE_CONTENT, message_len );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    Delay_ms ( 1000 );
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QIRD, cmd_buf );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    
    // Close TCP socket
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QICLOSE, tcp_socket_num );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    
    // Close UDP socket
    c3gaa_send_cmd_with_par( &c3gaa, C3GAA_CMD_QICLOSE, udp_socket_num );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    Delay_ms( 5000 );
#elif ( DEMO_EXAMPLE == EXAMPLE_SMS )
    // Check SMS mode
    #define CMGF_PDU "+CMGF: 0"
    #define CMGF_TXT "+CMGF: 1"
    c3gaa_send_cmd_check( &c3gaa, C3GAA_CMD_CMGF );
    error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
    func_error |= error_flag;
    c3gaa_error_check( error_flag );
    if ( strstr( app_buf, CMGF_PDU ) )
    {
        // Send SMS in PDU mode
        c3gaa_send_sms_pdu( &c3gaa, SIM_SMSC, PHONE_NUMBER_TO_MESSAGE, MESSAGE_CONTENT );
        error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
        func_error |= error_flag;
        c3gaa_error_check( error_flag );
    }
    else if ( strstr( app_buf, CMGF_TXT ) )
    {
        // Send SMS in TXT mode
        c3gaa_send_sms_text ( &c3gaa, PHONE_NUMBER_TO_MESSAGE, MESSAGE_CONTENT );
        error_flag = c3gaa_rsp_check( C3GAA_RSP_OK );
        func_error |= error_flag;
        c3gaa_error_check( error_flag );
    }
    Delay_ms( 10000 );
    Delay_ms( 10000 );
    Delay_ms( 10000 );
#else
    #error "No demo example selected"
#endif
    return func_error;
}

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

额外支持

资源

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