【简介】
MSPM0L1306 的 ADC 为 12 位逐次逼近型,支持 8/10/12 位分辨率,最大 100kSPS 速率,8 单端输入通道复用。参考电压可选内外置,支持软件 / 定时器 / 外部触发,配 2 级 FIFO 缓冲。具上电校准和低功耗模式,结果左对齐存于 16 位寄存器。对应的功能框图及ADC feather如下:


从开发手册的以下ADC采样的流程的时序图

从上述时序图可以看出,ADC 的采样通过SW /EVENT 触发采样,然后SAMPLE 拉高在设置的采样时间内进行采样,采样结束后会配置EOC信号,之后软件去读取MEMRESX来读取转换结果数据。上述时许图的CONVCLK 时钟频率的配置通过内置的分频器进行配置,对应的时钟转换如下

【ADC参数配置】
开发板的PA15引脚连接到芯片的ADC channel9 的引脚

我们使用TI System Configuration Tool 工具来配置ADC参数
采样时钟配置

采样触发方式配置

参考电压配置及采样周期配置


pinmux 配置

中断配置

生成代码如下
/*
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* All rights reserved.
*
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* modification, are permitted provided that the following conditions
* are met:
*
* * Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
*
* * Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* * Neither the name of Texas Instruments Incorporated nor the names of
* its contributors may be used to endorse or promote products derived
* from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
* EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
/*
* ============ ti_msp_dl_config.c =============
* Configured MSPM0 DriverLib module definitions
*
* DO NOT EDIT - This file is generated for the LP_MSPM0L1306
* by the SysConfig tool.
*/
#include "ti_msp_dl_config.h"
/*
* ======== SYSCFG_DL_init ========
* Perform any initialization needed before using any board APIs
*/
SYSCONFIG_WEAK void SYSCFG_DL_init(void)
{
SYSCFG_DL_initPower();
SYSCFG_DL_GPIO_init();
/* Module-Specific Initializations*/
SYSCFG_DL_SYSCTL_init();
SYSCFG_DL_UART_0_init();
SYSCFG_DL_ADC12_0_init();
}
SYSCONFIG_WEAK void SYSCFG_DL_initPower(void)
{
DL_GPIO_reset(GPIOA);
DL_UART_Main_reset(UART_0_INST);
DL_ADC12_reset(ADC12_0_INST);
DL_GPIO_enablePower(GPIOA);
DL_UART_Main_enablePower(UART_0_INST);
DL_ADC12_enablePower(ADC12_0_INST);
delay_cycles(POWER_STARTUP_DELAY);
}
SYSCONFIG_WEAK void SYSCFG_DL_GPIO_init(void)
{
DL_GPIO_initPeripheralOutputFunction(
GPIO_UART_0_IOMUX_TX, GPIO_UART_0_IOMUX_TX_FUNC);
DL_GPIO_initPeripheralInputFunction(
GPIO_UART_0_IOMUX_RX, GPIO_UART_0_IOMUX_RX_FUNC);
}
SYSCONFIG_WEAK void SYSCFG_DL_SYSCTL_init(void)
{
//Low Power Mode is configured to be SLEEP0
DL_SYSCTL_setBORThreshold(DL_SYSCTL_BOR_THRESHOLD_LEVEL_0);
DL_SYSCTL_setSYSOSCFreq(DL_SYSCTL_SYSOSC_FREQ_BASE);
DL_SYSCTL_setMCLKDivider(DL_SYSCTL_MCLK_DIVIDER_DISABLE);
}
static const DL_UART_Main_ClockConfig gUART_0ClockConfig = {
.clockSel = DL_UART_MAIN_CLOCK_BUSCLK,
.divideRatio = DL_UART_MAIN_CLOCK_DIVIDE_RATIO_1
};
static const DL_UART_Main_Config gUART_0Config = {
.mode = DL_UART_MAIN_MODE_NORMAL,
.direction = DL_UART_MAIN_DIRECTION_TX_RX,
.flowControl = DL_UART_MAIN_FLOW_CONTROL_NONE,
.parity = DL_UART_MAIN_PARITY_NONE,
.wordLength = DL_UART_MAIN_WORD_LENGTH_8_BITS,
.stopBits = DL_UART_MAIN_STOP_BITS_ONE
};
SYSCONFIG_WEAK void SYSCFG_DL_UART_0_init(void)
{
DL_UART_Main_setClockConfig(UART_0_INST, (DL_UART_Main_ClockConfig *) &gUART_0ClockConfig);
DL_UART_Main_init(UART_0_INST, (DL_UART_Main_Config *) &gUART_0Config);
/*
* Configure baud rate by setting oversampling and baud rate divisors.
* Target baud rate: 115200
* Actual baud rate: 115211.52
*/
DL_UART_Main_setOversampling(UART_0_INST, DL_UART_OVERSAMPLING_RATE_16X);
DL_UART_Main_setBaudRateDivisor(UART_0_INST, UART_0_IBRD_32_MHZ_115200_BAUD, UART_0_FBRD_32_MHZ_115200_BAUD);
/* Configure Interrupts */
DL_UART_Main_enableInterrupt(UART_0_INST,
DL_UART_MAIN_INTERRUPT_RX);
/* Setting the Interrupt Priority */
NVIC_SetPriority(UART_0_INST_INT_IRQN, 1);
DL_UART_Main_enable(UART_0_INST);
}
/* ADC12_0 Initialization */
static const DL_ADC12_ClockConfig gADC12_0ClockConfig = {
.clockSel = DL_ADC12_CLOCK_SYSOSC,
.divideRatio = DL_ADC12_CLOCK_DIVIDE_8,
.freqRange = DL_ADC12_CLOCK_FREQ_RANGE_24_TO_32,
};
SYSCONFIG_WEAK void SYSCFG_DL_ADC12_0_init(void)
{
DL_ADC12_setClockConfig(ADC12_0_INST, (DL_ADC12_ClockConfig *) &gADC12_0ClockConfig);
DL_ADC12_configConversionMem(ADC12_0_INST, ADC12_0_ADCMEM_0,
DL_ADC12_INPUT_CHAN_9, DL_ADC12_REFERENCE_VOLTAGE_VDDA, DL_ADC12_SAMPLE_TIMER_SOURCE_SCOMP0, DL_ADC12_AVERAGING_MODE_DISABLED,
DL_ADC12_BURN_OUT_SOURCE_DISABLED, DL_ADC12_TRIGGER_MODE_AUTO_NEXT, DL_ADC12_WINDOWS_COMP_MODE_DISABLED);
DL_ADC12_setSampleTime0(ADC12_0_INST,400);
/* Enable ADC12 interrupt */
DL_ADC12_clearInterruptStatus(ADC12_0_INST,(DL_ADC12_INTERRUPT_MEM0_RESULT_LOADED));
DL_ADC12_enableInterrupt(ADC12_0_INST,(DL_ADC12_INTERRUPT_MEM0_RESULT_LOADED));
NVIC_SetPriority(ADC12_0_INST_INT_IRQN, 1);
DL_ADC12_enableConversions(ADC12_0_INST);
}【代码验证】
参数配置完成后,将工具生成的代码加入工程编译,并在main 函数内启动中断,在中断函数内添加adc 采样数值打印。
int main(void)
{
SYSCFG_DL_init();
NVIC_ClearPendingIRQ(ADC12_0_INST_INT_IRQN);
NVIC_EnableIRQ(ADC12_0_INST_INT_IRQN);
DL_ADC12_startConversion(ADC12_0_INST);
}
void ADC12_0_INST_IRQHandler(void)
{
switch (DL_ADC12_getPendingInterrupt(ADC12_0_INST)) {
case DL_ADC12_IIDX_MEM0_RESULT_LOADED:
printf("adc value %d \r\n",DL_ADC12_getMemResult(ADC12_0_INST, DL_ADC12_MEM_IDX_0));
break;
default:
break;
}
}运行后已经按照预期的采集到ADC数据

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