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adc_18xx_43xx.c
Go to the documentation of this file.
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/*
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* @brief LPC18xx/43xx A/D conversion driver
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*
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* @note
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* Copyright(C) NXP Semiconductors, 2012
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* All rights reserved.
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*
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* @par
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* Software that is described herein is for illustrative purposes only
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* which provides customers with programming information regarding the
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* LPC products. This software is supplied "AS IS" without any warranties of
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* any kind, and NXP Semiconductors and its licensor disclaim any and
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* all warranties, express or implied, including all implied warranties of
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* merchantability, fitness for a particular purpose and non-infringement of
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* intellectual property rights. NXP Semiconductors assumes no responsibility
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* or liability for the use of the software, conveys no license or rights under any
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* patent, copyright, mask work right, or any other intellectual property rights in
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* or to any products. NXP Semiconductors reserves the right to make changes
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* in the software without notification. NXP Semiconductors also makes no
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* representation or warranty that such application will be suitable for the
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* specified use without further testing or modification.
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*
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* @par
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* Permission to use, copy, modify, and distribute this software and its
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* documentation is hereby granted, under NXP Semiconductors' and its
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* licensor's relevant copyrights in the software, without fee, provided that it
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* is used in conjunction with NXP Semiconductors microcontrollers. This
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* copyright, permission, and disclaimer notice must appear in all copies of
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* this code.
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*/
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#include "
chip.h
"
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/*****************************************************************************
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* Private types/enumerations/variables
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****************************************************************************/
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/*****************************************************************************
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* Public types/enumerations/variables
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****************************************************************************/
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/*****************************************************************************
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* Private functions
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****************************************************************************/
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/* Returns the clock for the selected ADC */
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STATIC
CHIP_CCU_CLK_T
Chip_ADC_GetClk
(
LPC_ADC_T
*pADC)
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{
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CHIP_CCU_CLK_T
adcclk;
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if
(pADC ==
LPC_ADC0
) {
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adcclk =
CLK_APB3_ADC0
;
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}
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else
{
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adcclk =
CLK_APB3_ADC1
;
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}
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return
adcclk;
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}
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/* Get divider value */
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STATIC
uint8_t
getAdcClkDiv
(
LPC_ADC_T
*pADC,
bool
burstMode,
uint32_t
adcRate,uint8_t clks)
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{
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uint32_t
adcBlockFreq;
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uint32_t
fullAdcRate;
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uint8_t div;
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/* The APB clock (PCLK_ADC0) is divided by (CLKDIV+1) to produce the clock for
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A/D converter, which should be less than or equal to 4.5MHz.
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A fully conversion requires (bits_accuracy+1) of these clocks.
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ADC Clock = PCLK_ADC0 / (CLKDIV + 1);
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ADC rate = ADC clock / (the number of clocks required for each conversion);
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*/
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adcBlockFreq =
Chip_Clock_GetRate
(
Chip_ADC_GetClk
(pADC));
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if
(burstMode)
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fullAdcRate = adcRate * clks;
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else
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fullAdcRate = adcRate * 11;
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/* Get the round value by fomular: (2*A + B)/(2*B) */
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div = ((adcBlockFreq * 2 + fullAdcRate) / (fullAdcRate * 2)) - 1;
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return
div;
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}
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/*****************************************************************************
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* Public functions
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****************************************************************************/
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/* Shutdown ADC */
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void
Chip_ADC_DeInit
(
LPC_ADC_T
*pADC)
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{
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IP_ADC_DeInit
(pADC);
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Chip_Clock_Disable
(
Chip_ADC_GetClk
(pADC));
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}
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/* Initialize the ADC peripheral and the ADC setup structure to default value */
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void
Chip_ADC_Init
(
LPC_ADC_T
*pADC,
ADC_Clock_Setup_T
*
ADCSetup
)
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{
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uint8_t div;
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CHIP_CCU_CLK_T
adcclk =
Chip_ADC_GetClk
(pADC);
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/* Enable ADC clocking */
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Chip_Clock_EnableOpts
(adcclk,
true
,
true
, 1);
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ADCSetup->
adcRate
= 400000;
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ADCSetup->
bitsAccuracy
=
ADC_10BITS
;
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ADCSetup->
burstMode
=
false
;
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div =
getAdcClkDiv
(pADC,
false
, 400000, 11);
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IP_ADC_Init
(pADC, div,
ADC_10BITS
,
ADC_CR_PDN
);
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}
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/* Select the mode starting the AD conversion */
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void
Chip_ADC_Set_StartMode
(
LPC_ADC_T
*pADC,
CHIP_ADC_START_MODE_T
mode,
CHIP_ADC_EDGE_CFG_T
EdgeOption)
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{
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if
((mode !=
ADC_START_NOW
) && (mode !=
ADC_NO_START
)) {
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IP_ADC_EdgeStartConfig
(pADC, (uint8_t) EdgeOption);
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}
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IP_ADC_SetStartMode
(pADC, (uint8_t) mode);
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}
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/* Set the ADC Sample rate */
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void
Chip_ADC_Set_SampleRate
(
LPC_ADC_T
*pADC,
ADC_Clock_Setup_T
*
ADCSetup
,
uint32_t
rate)
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{
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uint8_t div;
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ADCSetup->
adcRate
= rate;
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div =
getAdcClkDiv
(pADC, ADCSetup->
burstMode
, rate, (11- ADCSetup->
bitsAccuracy
));
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IP_ADC_Init
(pADC, div, ADCSetup->
bitsAccuracy
,
ADC_CR_PDN
);
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}
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/* Set the ADC accuracy bits */
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void
Chip_ADC_Set_Resolution
(
LPC_ADC_T
*pADC,
ADC_Clock_Setup_T
*
ADCSetup
,
CHIP_ADC_RESOLUTION_T
resolution)
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{
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ADCSetup->
bitsAccuracy
= resolution;
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Chip_ADC_Set_SampleRate
(pADC, ADCSetup,ADCSetup->
adcRate
);
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}
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/* Enable or disable the ADC channel on ADC peripheral */
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void
Chip_ADC_Channel_Enable_Cmd
(
LPC_ADC_T
*pADC,
CHIP_ADC_CHANNEL_T
channel,
FunctionalState
NewState)
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{
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IP_ADC_SetChannelNumber
(pADC, channel, NewState);
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}
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/* Enable burst mode */
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void
Chip_ADC_Burst_Cmd
(
LPC_ADC_T
*pADC,
FunctionalState
NewState)
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{
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IP_ADC_SetStartMode
(pADC,
ADC_NO_START
);
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IP_ADC_SetBurstMode
(pADC, NewState);
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}
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/* Read the ADC value and convert it to 8bits value */
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Status
Chip_ADC_Read_Byte
(
LPC_ADC_T
*pADC,
CHIP_ADC_CHANNEL_T
channel, uint8_t *data)
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{
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uint16_t temp;
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Status
rt;
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rt =
IP_ADC_Get_Val
(pADC, channel, &temp);
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*data = (uint8_t) temp;
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return
rt;
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}
software
lpc_core
lpc_chip
chip_18xx_43xx
adc_18xx_43xx.c
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1.8.2