fix LPC812 PWM

Dependents:   IR_LED_Send

Fork of mbed-dev by mbed official

Committer:
nameless129
Date:
Mon May 16 16:50:30 2016 +0000
Revision:
129:2e517c56bcfb
Parent:
0:9b334a45a8ff
PWM Fix:Duty 0%??H???????????????

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 0:9b334a45a8ff 1 /**
bogdanm 0:9b334a45a8ff 2 ******************************************************************************
bogdanm 0:9b334a45a8ff 3 * @file stm32l1xx_hal_opamp.h
bogdanm 0:9b334a45a8ff 4 * @author MCD Application Team
bogdanm 0:9b334a45a8ff 5 * @version V1.0.0
bogdanm 0:9b334a45a8ff 6 * @date 5-September-2014
bogdanm 0:9b334a45a8ff 7 * @brief Header file of OPAMP HAL module.
bogdanm 0:9b334a45a8ff 8 ******************************************************************************
bogdanm 0:9b334a45a8ff 9 * @attention
bogdanm 0:9b334a45a8ff 10 *
bogdanm 0:9b334a45a8ff 11 * <h2><center>&copy; COPYRIGHT(c) 2014 STMicroelectronics</center></h2>
bogdanm 0:9b334a45a8ff 12 *
bogdanm 0:9b334a45a8ff 13 * Redistribution and use in source and binary forms, with or without modification,
bogdanm 0:9b334a45a8ff 14 * are permitted provided that the following conditions are met:
bogdanm 0:9b334a45a8ff 15 * 1. Redistributions of source code must retain the above copyright notice,
bogdanm 0:9b334a45a8ff 16 * this list of conditions and the following disclaimer.
bogdanm 0:9b334a45a8ff 17 * 2. Redistributions in binary form must reproduce the above copyright notice,
bogdanm 0:9b334a45a8ff 18 * this list of conditions and the following disclaimer in the documentation
bogdanm 0:9b334a45a8ff 19 * and/or other materials provided with the distribution.
bogdanm 0:9b334a45a8ff 20 * 3. Neither the name of STMicroelectronics nor the names of its contributors
bogdanm 0:9b334a45a8ff 21 * may be used to endorse or promote products derived from this software
bogdanm 0:9b334a45a8ff 22 * without specific prior written permission.
bogdanm 0:9b334a45a8ff 23 *
bogdanm 0:9b334a45a8ff 24 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
bogdanm 0:9b334a45a8ff 25 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
bogdanm 0:9b334a45a8ff 26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
bogdanm 0:9b334a45a8ff 27 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
bogdanm 0:9b334a45a8ff 28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
bogdanm 0:9b334a45a8ff 29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
bogdanm 0:9b334a45a8ff 30 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
bogdanm 0:9b334a45a8ff 31 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
bogdanm 0:9b334a45a8ff 32 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
bogdanm 0:9b334a45a8ff 33 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
bogdanm 0:9b334a45a8ff 34 *
bogdanm 0:9b334a45a8ff 35 ******************************************************************************
bogdanm 0:9b334a45a8ff 36 */
bogdanm 0:9b334a45a8ff 37
bogdanm 0:9b334a45a8ff 38 /* Define to prevent recursive inclusion -------------------------------------*/
bogdanm 0:9b334a45a8ff 39 #ifndef __STM32L1xx_HAL_OPAMP_H
bogdanm 0:9b334a45a8ff 40 #define __STM32L1xx_HAL_OPAMP_H
bogdanm 0:9b334a45a8ff 41
bogdanm 0:9b334a45a8ff 42 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 43 extern "C" {
bogdanm 0:9b334a45a8ff 44 #endif
bogdanm 0:9b334a45a8ff 45
bogdanm 0:9b334a45a8ff 46 #if defined (STM32L151xCA) || defined (STM32L151xD) || defined (STM32L152xCA) || defined (STM32L152xD) || defined (STM32L162xCA) || defined (STM32L162xD) || defined (STM32L151xE) || defined (STM32L152xE) || defined (STM32L162xE) || defined (STM32L162xC) || defined (STM32L152xC) || defined (STM32L151xC)
bogdanm 0:9b334a45a8ff 47
bogdanm 0:9b334a45a8ff 48 /* Includes ------------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 49 #include "stm32l1xx_hal_def.h"
bogdanm 0:9b334a45a8ff 50
bogdanm 0:9b334a45a8ff 51 /** @addtogroup STM32L1xx_HAL_Driver
bogdanm 0:9b334a45a8ff 52 * @{
bogdanm 0:9b334a45a8ff 53 */
bogdanm 0:9b334a45a8ff 54
bogdanm 0:9b334a45a8ff 55 /** @addtogroup OPAMP
bogdanm 0:9b334a45a8ff 56 * @{
bogdanm 0:9b334a45a8ff 57 */
bogdanm 0:9b334a45a8ff 58
bogdanm 0:9b334a45a8ff 59 /* Exported types ------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 60
bogdanm 0:9b334a45a8ff 61 /** @defgroup OPAMP_Exported_Types OPAMP Exported Types
bogdanm 0:9b334a45a8ff 62 * @{
bogdanm 0:9b334a45a8ff 63 */
bogdanm 0:9b334a45a8ff 64 /**
bogdanm 0:9b334a45a8ff 65 * @brief OPAMP Init structure definition
bogdanm 0:9b334a45a8ff 66 */
bogdanm 0:9b334a45a8ff 67
bogdanm 0:9b334a45a8ff 68 typedef struct
bogdanm 0:9b334a45a8ff 69 {
bogdanm 0:9b334a45a8ff 70 uint32_t PowerSupplyRange; /*!< Specifies the power supply range: above or under 2.4V.
bogdanm 0:9b334a45a8ff 71 This parameter must be a value of @ref OPAMP_PowerSupplyRange
bogdanm 0:9b334a45a8ff 72 Caution: This parameter is common to all OPAMP instances: a modification of this parameter for the selected OPAMP impacts the other OPAMP instances. */
bogdanm 0:9b334a45a8ff 73
bogdanm 0:9b334a45a8ff 74 uint32_t UserTrimming; /*!< Specifies the trimming mode
bogdanm 0:9b334a45a8ff 75 This parameter must be a value of @ref OPAMP_UserTrimming
bogdanm 0:9b334a45a8ff 76 UserTrimming is either factory or user trimming.
bogdanm 0:9b334a45a8ff 77 Caution: This parameter is common to all OPAMP instances: a modification of this parameter for the selected OPAMP impacts the other OPAMP instances. */
bogdanm 0:9b334a45a8ff 78
bogdanm 0:9b334a45a8ff 79 uint32_t Mode; /*!< Specifies the OPAMP mode
bogdanm 0:9b334a45a8ff 80 This parameter must be a value of @ref OPAMP_Mode
bogdanm 0:9b334a45a8ff 81 mode is either Standalone or Follower */
bogdanm 0:9b334a45a8ff 82
bogdanm 0:9b334a45a8ff 83 uint32_t InvertingInput; /*!< Specifies the inverting input in Standalone mode
bogdanm 0:9b334a45a8ff 84 - In Standalone mode: i.e when mode is OPAMP_STANDALONE_MODE
bogdanm 0:9b334a45a8ff 85 This parameter must be a value of @ref OPAMP_InvertingInput
bogdanm 0:9b334a45a8ff 86 InvertingInput is either VM0 or VM1
bogdanm 0:9b334a45a8ff 87 - In Follower mode: i.e when mode is OPAMP_FOLLOWER_MODE
bogdanm 0:9b334a45a8ff 88 This parameter is Not Applicable */
bogdanm 0:9b334a45a8ff 89
bogdanm 0:9b334a45a8ff 90 uint32_t NonInvertingInput; /*!< Specifies the non inverting input of the opamp:
bogdanm 0:9b334a45a8ff 91 This parameter must be a value of @ref OPAMP_NonInvertingInput
bogdanm 0:9b334a45a8ff 92 NonInvertingInput is either VP0, VP1 or VP2 */
bogdanm 0:9b334a45a8ff 93
bogdanm 0:9b334a45a8ff 94 uint32_t PowerMode; /*!< Specifies the power mode Normal or Low-Power.
bogdanm 0:9b334a45a8ff 95 This parameter must be a value of @ref OPAMP_PowerMode */
bogdanm 0:9b334a45a8ff 96
bogdanm 0:9b334a45a8ff 97 uint32_t TrimmingValueP; /*!< Specifies the offset trimming value (PMOS)
bogdanm 0:9b334a45a8ff 98 i.e. when UserTrimming is OPAMP_TRIMMING_USER.
bogdanm 0:9b334a45a8ff 99 This parameter must be a number between Min_Data = 0 and Max_Data = 30 (Trimming value 31 is forbidden) */
bogdanm 0:9b334a45a8ff 100
bogdanm 0:9b334a45a8ff 101 uint32_t TrimmingValueN; /*!< Specifies the offset trimming value (NMOS)
bogdanm 0:9b334a45a8ff 102 i.e. when UserTrimming is OPAMP_TRIMMING_USER.
bogdanm 0:9b334a45a8ff 103 This parameter must be a number between Min_Data = 0 and Max_Data = 30 (Trimming value 31 is forbidden) */
bogdanm 0:9b334a45a8ff 104
bogdanm 0:9b334a45a8ff 105 uint32_t TrimmingValuePLowPower; /*!< Specifies the offset trimming value (PMOS)
bogdanm 0:9b334a45a8ff 106 i.e. when UserTrimming is OPAMP_TRIMMING_USER.
bogdanm 0:9b334a45a8ff 107 This parameter must be a number between Min_Data = 0 and Max_Data = 30 (Trimming value 31 is forbidden) */
bogdanm 0:9b334a45a8ff 108
bogdanm 0:9b334a45a8ff 109 uint32_t TrimmingValueNLowPower; /*!< Specifies the offset trimming value (NMOS)
bogdanm 0:9b334a45a8ff 110 i.e. when UserTrimming is OPAMP_TRIMMING_USER.
bogdanm 0:9b334a45a8ff 111 This parameter must be a number between Min_Data = 0 and Max_Data = 30 (Trimming value 31 is forbidden) */
bogdanm 0:9b334a45a8ff 112
bogdanm 0:9b334a45a8ff 113 }OPAMP_InitTypeDef;
bogdanm 0:9b334a45a8ff 114
bogdanm 0:9b334a45a8ff 115 /**
bogdanm 0:9b334a45a8ff 116 * @brief HAL State structures definition
bogdanm 0:9b334a45a8ff 117 */
bogdanm 0:9b334a45a8ff 118
bogdanm 0:9b334a45a8ff 119 typedef enum
bogdanm 0:9b334a45a8ff 120 {
bogdanm 0:9b334a45a8ff 121 HAL_OPAMP_STATE_RESET = 0x00000000, /*!< OPMAP is not yet Initialized */
bogdanm 0:9b334a45a8ff 122
bogdanm 0:9b334a45a8ff 123 HAL_OPAMP_STATE_READY = 0x00000001, /*!< OPAMP is initialized and ready for use */
bogdanm 0:9b334a45a8ff 124 HAL_OPAMP_STATE_CALIBBUSY = 0x00000002, /*!< OPAMP is enabled in auto calibration mode */
bogdanm 0:9b334a45a8ff 125
bogdanm 0:9b334a45a8ff 126 HAL_OPAMP_STATE_BUSY = 0x00000004, /*!< OPAMP is enabled and running in normal mode */
bogdanm 0:9b334a45a8ff 127 HAL_OPAMP_STATE_BUSYLOCKED = 0x00000005, /*!< OPAMP is locked
bogdanm 0:9b334a45a8ff 128 only system reset allows reconfiguring the opamp. */
bogdanm 0:9b334a45a8ff 129
bogdanm 0:9b334a45a8ff 130 }HAL_OPAMP_StateTypeDef;
bogdanm 0:9b334a45a8ff 131
bogdanm 0:9b334a45a8ff 132 /**
bogdanm 0:9b334a45a8ff 133 * @brief OPAMP Handle Structure definition
bogdanm 0:9b334a45a8ff 134 */
bogdanm 0:9b334a45a8ff 135 typedef struct
bogdanm 0:9b334a45a8ff 136 {
bogdanm 0:9b334a45a8ff 137 OPAMP_TypeDef *Instance; /*!< OPAMP instance's registers base address */
bogdanm 0:9b334a45a8ff 138 OPAMP_InitTypeDef Init; /*!< OPAMP required parameters */
bogdanm 0:9b334a45a8ff 139 HAL_StatusTypeDef Status; /*!< OPAMP peripheral status */
bogdanm 0:9b334a45a8ff 140 HAL_LockTypeDef Lock; /*!< Locking object */
bogdanm 0:9b334a45a8ff 141 __IO HAL_OPAMP_StateTypeDef State; /*!< OPAMP communication state */
bogdanm 0:9b334a45a8ff 142
bogdanm 0:9b334a45a8ff 143 } OPAMP_HandleTypeDef;
bogdanm 0:9b334a45a8ff 144
bogdanm 0:9b334a45a8ff 145 /**
bogdanm 0:9b334a45a8ff 146 * @brief OPAMP_TrimmingValueTypeDef @brief definition
bogdanm 0:9b334a45a8ff 147 */
bogdanm 0:9b334a45a8ff 148
bogdanm 0:9b334a45a8ff 149 typedef uint32_t OPAMP_TrimmingValueTypeDef;
bogdanm 0:9b334a45a8ff 150
bogdanm 0:9b334a45a8ff 151 /**
bogdanm 0:9b334a45a8ff 152 * @}
bogdanm 0:9b334a45a8ff 153 */
bogdanm 0:9b334a45a8ff 154
bogdanm 0:9b334a45a8ff 155 /* Exported constants --------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 156 /** @defgroup OPAMP_Exported_Constants OPAMP Exported Constants
bogdanm 0:9b334a45a8ff 157 * @{
bogdanm 0:9b334a45a8ff 158 */
bogdanm 0:9b334a45a8ff 159
bogdanm 0:9b334a45a8ff 160 /**
bogdanm 0:9b334a45a8ff 161 * OTR register Mask
bogdanm 0:9b334a45a8ff 162 */
bogdanm 0:9b334a45a8ff 163 #define OPAMP_TRIM_VALUE_MASK OPAMP_OTR_AO1_OPT_OFFSET_TRIM_LOW
bogdanm 0:9b334a45a8ff 164
bogdanm 0:9b334a45a8ff 165 /**
bogdanm 0:9b334a45a8ff 166 * CSR register Mask
bogdanm 0:9b334a45a8ff 167 */
bogdanm 0:9b334a45a8ff 168 #define OPAMP_CSR_INSTANCE_OFFSET ((uint32_t) 8) /* Offset of each OPAMP instance into register CSR */
bogdanm 0:9b334a45a8ff 169 #define OPAMP_OTR_INSTANCE_OFFSET ((uint32_t) 10) /* Offset of each OPAMP instance into register OTR */
bogdanm 0:9b334a45a8ff 170
bogdanm 0:9b334a45a8ff 171
bogdanm 0:9b334a45a8ff 172 /** @defgroup OPAMP_Mode OPAMP Mode
bogdanm 0:9b334a45a8ff 173 * @{
bogdanm 0:9b334a45a8ff 174 */
bogdanm 0:9b334a45a8ff 175 #define OPAMP_STANDALONE_MODE ((uint32_t)0x00000000) /*!< OPAMP standalone mode */
bogdanm 0:9b334a45a8ff 176 #define OPAMP_FOLLOWER_MODE ((uint32_t)0x00000001) /*!< OPAMP follower mode */
bogdanm 0:9b334a45a8ff 177
bogdanm 0:9b334a45a8ff 178 #define IS_OPAMP_FUNCTIONAL_NORMALMODE(INPUT) (((INPUT) == OPAMP_STANDALONE_MODE) || \
bogdanm 0:9b334a45a8ff 179 ((INPUT) == OPAMP_FOLLOWER_MODE))
bogdanm 0:9b334a45a8ff 180 /**
bogdanm 0:9b334a45a8ff 181 * @}
bogdanm 0:9b334a45a8ff 182 */
bogdanm 0:9b334a45a8ff 183
bogdanm 0:9b334a45a8ff 184 /** @defgroup OPAMP_NonInvertingInput OPAMP NonInvertingInput
bogdanm 0:9b334a45a8ff 185 * @{
bogdanm 0:9b334a45a8ff 186 */
bogdanm 0:9b334a45a8ff 187 #define OPAMP_NONINVERTINGINPUT_VP0 ((uint32_t)0x00000000) /*!< Comparator non-inverting input connected to dedicated IO pin low-leakage */
bogdanm 0:9b334a45a8ff 188 #define OPAMP_NONINVERTINGINPUT_DAC_CH1 ((uint32_t)0x00000001) /*!< Comparator non-inverting input connected internally to DAC channel 1 */
bogdanm 0:9b334a45a8ff 189 #define OPAMP_NONINVERTINGINPUT_DAC_CH2 ((uint32_t)0x00000002) /*!< Comparator non-inverting input connected internally to DAC channel 2. Available on OPAMP2 only. */
bogdanm 0:9b334a45a8ff 190
bogdanm 0:9b334a45a8ff 191 #define IS_OPAMP_NONINVERTING_INPUT(INPUT) (((INPUT) == OPAMP_NONINVERTINGINPUT_VP0) || \
bogdanm 0:9b334a45a8ff 192 ((INPUT) == OPAMP_NONINVERTINGINPUT_DAC_CH1) || \
bogdanm 0:9b334a45a8ff 193 ((INPUT) == OPAMP_NONINVERTINGINPUT_DAC_CH2) )
bogdanm 0:9b334a45a8ff 194 /**
bogdanm 0:9b334a45a8ff 195 * @}
bogdanm 0:9b334a45a8ff 196 */
bogdanm 0:9b334a45a8ff 197
bogdanm 0:9b334a45a8ff 198 /** @defgroup OPAMP_InvertingInput OPAMP InvertingInput
bogdanm 0:9b334a45a8ff 199 * @{
bogdanm 0:9b334a45a8ff 200 */
bogdanm 0:9b334a45a8ff 201 #define OPAMP_INVERTINGINPUT_VM0 ((uint32_t)0x00000000) /*!< Comparator inverting input connected to dedicated IO pin low-leakage */
bogdanm 0:9b334a45a8ff 202 #define OPAMP_INVERTINGINPUT_VM1 ((uint32_t)0x00000001) /*!< Comparator inverting input connected to alternative IO pin available on some device packages */
bogdanm 0:9b334a45a8ff 203
bogdanm 0:9b334a45a8ff 204 #define OPAMP_INVERTINGINPUT_VINM OPAMP_INVERTINGINPUT_VM1 /*!< Alternate name for comparator inverting input connected to alternative IO pin available on some device packages */
bogdanm 0:9b334a45a8ff 205
bogdanm 0:9b334a45a8ff 206 #define IOPAMP_INVERTINGINPUT_VM0 OPAMP_INVERTINGINPUT_VM0 /* For compatibility with other STM32 devices */
bogdanm 0:9b334a45a8ff 207 #define IOPAMP_INVERTINGINPUT_VM1 OPAMP_INVERTINGINPUT_VM1 /* For compatibility with other STM32 devices */
bogdanm 0:9b334a45a8ff 208
bogdanm 0:9b334a45a8ff 209 #define IS_OPAMP_INVERTING_INPUT(INPUT) (((INPUT) == OPAMP_INVERTINGINPUT_VM0) || \
bogdanm 0:9b334a45a8ff 210 ((INPUT) == OPAMP_INVERTINGINPUT_VM1) )
bogdanm 0:9b334a45a8ff 211 /**
bogdanm 0:9b334a45a8ff 212 * @}
bogdanm 0:9b334a45a8ff 213 */
bogdanm 0:9b334a45a8ff 214
bogdanm 0:9b334a45a8ff 215 /** @defgroup OPAMP_PowerMode OPAMP PowerMode
bogdanm 0:9b334a45a8ff 216 * @{
bogdanm 0:9b334a45a8ff 217 */
bogdanm 0:9b334a45a8ff 218 #define OPAMP_POWERMODE_NORMAL ((uint32_t)0x00000000)
bogdanm 0:9b334a45a8ff 219 #define OPAMP_POWERMODE_LOWPOWER ((uint32_t)0x00000001)
bogdanm 0:9b334a45a8ff 220
bogdanm 0:9b334a45a8ff 221 #define IS_OPAMP_POWERMODE(TRIMMING) (((TRIMMING) == OPAMP_POWERMODE_NORMAL) || \
bogdanm 0:9b334a45a8ff 222 ((TRIMMING) == OPAMP_POWERMODE_LOWPOWER) )
bogdanm 0:9b334a45a8ff 223 /**
bogdanm 0:9b334a45a8ff 224 * @}
bogdanm 0:9b334a45a8ff 225 */
bogdanm 0:9b334a45a8ff 226
bogdanm 0:9b334a45a8ff 227 /** @defgroup OPAMP_PowerSupplyRange OPAMP PowerSupplyRange
bogdanm 0:9b334a45a8ff 228 * @{
bogdanm 0:9b334a45a8ff 229 */
bogdanm 0:9b334a45a8ff 230 #define OPAMP_POWERSUPPLY_LOW ((uint32_t)0x00000000) /*!< Power supply range low (VDDA lower than 2.4V) */
bogdanm 0:9b334a45a8ff 231 #define OPAMP_POWERSUPPLY_HIGH OPAMP_CSR_AOP_RANGE /*!< Power supply range high (VDDA higher than 2.4V) */
bogdanm 0:9b334a45a8ff 232
bogdanm 0:9b334a45a8ff 233 #define IS_OPAMP_POWER_SUPPLY_RANGE(RANGE) (((RANGE) == OPAMP_POWERSUPPLY_LOW) || \
bogdanm 0:9b334a45a8ff 234 ((RANGE) == OPAMP_POWERSUPPLY_HIGH) )
bogdanm 0:9b334a45a8ff 235 /**
bogdanm 0:9b334a45a8ff 236 * @}
bogdanm 0:9b334a45a8ff 237 */
bogdanm 0:9b334a45a8ff 238
bogdanm 0:9b334a45a8ff 239 /** @defgroup OPAMP_UserTrimming OPAMP UserTrimming
bogdanm 0:9b334a45a8ff 240 * @{
bogdanm 0:9b334a45a8ff 241 */
bogdanm 0:9b334a45a8ff 242 #define OPAMP_TRIMMING_FACTORY ((uint32_t)0x00000000) /*!< Factory trimming */
bogdanm 0:9b334a45a8ff 243 #define OPAMP_TRIMMING_USER OPAMP_OTR_OT_USER /*!< User trimming */
bogdanm 0:9b334a45a8ff 244
bogdanm 0:9b334a45a8ff 245 #define IS_OPAMP_TRIMMING(TRIMMING) (((TRIMMING) == OPAMP_TRIMMING_FACTORY) || \
bogdanm 0:9b334a45a8ff 246 ((TRIMMING) == OPAMP_TRIMMING_USER))
bogdanm 0:9b334a45a8ff 247 /**
bogdanm 0:9b334a45a8ff 248 * @}
bogdanm 0:9b334a45a8ff 249 */
bogdanm 0:9b334a45a8ff 250
bogdanm 0:9b334a45a8ff 251 /** @defgroup OPAMP_FactoryTrimming OPAMP FactoryTrimming
bogdanm 0:9b334a45a8ff 252 * @{
bogdanm 0:9b334a45a8ff 253 */
bogdanm 0:9b334a45a8ff 254 #define OPAMP_FACTORYTRIMMING_DUMMY ((uint32_t)0xFFFFFFFF) /*!< Dummy value if trimming value could not be retrieved */
bogdanm 0:9b334a45a8ff 255
bogdanm 0:9b334a45a8ff 256 #define OPAMP_FACTORYTRIMMING_P ((uint32_t)0x00000000) /*!< Offset trimming P */
bogdanm 0:9b334a45a8ff 257 #define OPAMP_FACTORYTRIMMING_N POSITION_VAL(OPAMP_OTR_AO1_OPT_OFFSET_TRIM_HIGH) /*!< Offset trimming N */
bogdanm 0:9b334a45a8ff 258
bogdanm 0:9b334a45a8ff 259 #define IS_OPAMP_FACTORYTRIMMING(TRIMMING) (((TRIMMING) == OPAMP_FACTORYTRIMMING_N) || \
bogdanm 0:9b334a45a8ff 260 ((TRIMMING) == OPAMP_FACTORYTRIMMING_P) )
bogdanm 0:9b334a45a8ff 261 /**
bogdanm 0:9b334a45a8ff 262 * @}
bogdanm 0:9b334a45a8ff 263 */
bogdanm 0:9b334a45a8ff 264
bogdanm 0:9b334a45a8ff 265 /**
bogdanm 0:9b334a45a8ff 266 * @}
bogdanm 0:9b334a45a8ff 267 */
bogdanm 0:9b334a45a8ff 268
bogdanm 0:9b334a45a8ff 269 /* Private constants ---------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 270 /** @defgroup OPAMP_Private_Constants OPAMP Private Constants
bogdanm 0:9b334a45a8ff 271 * @{
bogdanm 0:9b334a45a8ff 272 */
bogdanm 0:9b334a45a8ff 273
bogdanm 0:9b334a45a8ff 274 /* Offset trimming time: during calibration, minimum time needed between two */
bogdanm 0:9b334a45a8ff 275 /* steps to have 1 mV accuracy. */
bogdanm 0:9b334a45a8ff 276 /* Refer to datasheet, electrical characteristics: parameter tOFFTRIM Typ=1ms.*/
bogdanm 0:9b334a45a8ff 277 /* Unit: ms. */
bogdanm 0:9b334a45a8ff 278 #define OPAMP_TRIMMING_DELAY ((uint32_t) 1)
bogdanm 0:9b334a45a8ff 279
bogdanm 0:9b334a45a8ff 280 /**
bogdanm 0:9b334a45a8ff 281 * @}
bogdanm 0:9b334a45a8ff 282 */
bogdanm 0:9b334a45a8ff 283
bogdanm 0:9b334a45a8ff 284
bogdanm 0:9b334a45a8ff 285 /* Exported macros -----------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 286
bogdanm 0:9b334a45a8ff 287 /** @defgroup OPAMP_Private_Macro OPAMP Private Macro
bogdanm 0:9b334a45a8ff 288 * @{
bogdanm 0:9b334a45a8ff 289 */
bogdanm 0:9b334a45a8ff 290
bogdanm 0:9b334a45a8ff 291 /** @brief Reset OPAMP handle state
bogdanm 0:9b334a45a8ff 292 * @param __HANDLE__: OPAMP handle.
bogdanm 0:9b334a45a8ff 293 * @retval None
bogdanm 0:9b334a45a8ff 294 */
bogdanm 0:9b334a45a8ff 295 #define __HAL_OPAMP_RESET_HANDLE_STATE(__HANDLE__) ((__HANDLE__)->State = HAL_OPAMP_STATE_RESET)
bogdanm 0:9b334a45a8ff 296
bogdanm 0:9b334a45a8ff 297 /**
bogdanm 0:9b334a45a8ff 298 * @}
bogdanm 0:9b334a45a8ff 299 */
bogdanm 0:9b334a45a8ff 300
bogdanm 0:9b334a45a8ff 301
bogdanm 0:9b334a45a8ff 302 /* Private macro -------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 303
bogdanm 0:9b334a45a8ff 304 /** @defgroup OPAMP_Private_Macro OPAMP Private Macro
bogdanm 0:9b334a45a8ff 305 * @{
bogdanm 0:9b334a45a8ff 306 */
bogdanm 0:9b334a45a8ff 307
bogdanm 0:9b334a45a8ff 308 /**
bogdanm 0:9b334a45a8ff 309 * @brief Select the OPAMP bit OPAxPD (power-down) corresponding to the
bogdanm 0:9b334a45a8ff 310 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 311 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 312 * @retval None
bogdanm 0:9b334a45a8ff 313 */
bogdanm 0:9b334a45a8ff 314 #define __OPAMP_CSR_OPAXPD(__HANDLE__) \
bogdanm 0:9b334a45a8ff 315 (OPAMP_CSR_OPA1PD << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 316
bogdanm 0:9b334a45a8ff 317 /**
bogdanm 0:9b334a45a8ff 318 * @brief Select the OPAMP bit S3SELx (switch 3) corresponding to the
bogdanm 0:9b334a45a8ff 319 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 320 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 321 * @retval None
bogdanm 0:9b334a45a8ff 322 */
bogdanm 0:9b334a45a8ff 323 #define __OPAMP_CSR_S3SELX(__HANDLE__) \
bogdanm 0:9b334a45a8ff 324 (OPAMP_CSR_S3SEL1 << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 325
bogdanm 0:9b334a45a8ff 326 /**
bogdanm 0:9b334a45a8ff 327 * @brief Select the OPAMP bit S4SELx (switch 4) corresponding to the
bogdanm 0:9b334a45a8ff 328 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 329 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 330 * @retval None
bogdanm 0:9b334a45a8ff 331 */
bogdanm 0:9b334a45a8ff 332 #define __OPAMP_CSR_S4SELX(__HANDLE__) \
bogdanm 0:9b334a45a8ff 333 (OPAMP_CSR_S4SEL1 << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 334
bogdanm 0:9b334a45a8ff 335 /**
bogdanm 0:9b334a45a8ff 336 * @brief Select the OPAMP bit S5SELx (switch 5) corresponding to the
bogdanm 0:9b334a45a8ff 337 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 338 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 339 * @retval None
bogdanm 0:9b334a45a8ff 340 */
bogdanm 0:9b334a45a8ff 341 #define __OPAMP_CSR_S5SELX(__HANDLE__) \
bogdanm 0:9b334a45a8ff 342 (OPAMP_CSR_S5SEL1 << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 343
bogdanm 0:9b334a45a8ff 344 /**
bogdanm 0:9b334a45a8ff 345 * @brief Select the OPAMP bit S3SELx (switch 6) corresponding to the
bogdanm 0:9b334a45a8ff 346 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 347 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 348 * @retval None
bogdanm 0:9b334a45a8ff 349 */
bogdanm 0:9b334a45a8ff 350 #define __OPAMP_CSR_S6SELX(__HANDLE__) \
bogdanm 0:9b334a45a8ff 351 (OPAMP_CSR_S6SEL1 << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 352
bogdanm 0:9b334a45a8ff 353 /**
bogdanm 0:9b334a45a8ff 354 * @brief Select the OPAMP bit OPAxCAL_L (offset calibration for differential
bogdanm 0:9b334a45a8ff 355 * pair P) corresponding to the selected OPAMP instance.
bogdanm 0:9b334a45a8ff 356 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 357 * @retval None
bogdanm 0:9b334a45a8ff 358 */
bogdanm 0:9b334a45a8ff 359 #define __OPAMP_CSR_OPAXCAL_L(__HANDLE__) \
bogdanm 0:9b334a45a8ff 360 (OPAMP_CSR_OPA1CAL_L << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 361
bogdanm 0:9b334a45a8ff 362 /**
bogdanm 0:9b334a45a8ff 363 * @brief Select the OPAMP bit OPAxCAL_H (offset calibration for differential
bogdanm 0:9b334a45a8ff 364 * pair N) corresponding to the selected OPAMP instance.
bogdanm 0:9b334a45a8ff 365 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 366 * @retval None
bogdanm 0:9b334a45a8ff 367 */
bogdanm 0:9b334a45a8ff 368 #define __OPAMP_CSR_OPAXCAL_H(__HANDLE__) \
bogdanm 0:9b334a45a8ff 369 (OPAMP_CSR_OPA1CAL_H << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 370
bogdanm 0:9b334a45a8ff 371 /**
bogdanm 0:9b334a45a8ff 372 * @brief Select the OPAMP bit OPAxLPM (low power mode) corresponding to the
bogdanm 0:9b334a45a8ff 373 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 374 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 375 * @retval None
bogdanm 0:9b334a45a8ff 376 */
bogdanm 0:9b334a45a8ff 377 #define __OPAMP_CSR_OPAXLPM(__HANDLE__) \
bogdanm 0:9b334a45a8ff 378 (OPAMP_CSR_OPA1LPM << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET))
bogdanm 0:9b334a45a8ff 379
bogdanm 0:9b334a45a8ff 380 /**
bogdanm 0:9b334a45a8ff 381 * @brief Select the OPAMP bits of all switches corresponding to the
bogdanm 0:9b334a45a8ff 382 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 383 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 384 * @retval None
bogdanm 0:9b334a45a8ff 385 */
bogdanm 0:9b334a45a8ff 386 #define __OPAMP_CSR_ALL_SWITCHES(__HANDLE__) \
bogdanm 0:9b334a45a8ff 387 ( ( ((__HANDLE__)->Instance != OPAMP2) \
bogdanm 0:9b334a45a8ff 388 )? \
bogdanm 0:9b334a45a8ff 389 ( \
bogdanm 0:9b334a45a8ff 390 ((OPAMP_CSR_S3SEL1 | OPAMP_CSR_S4SEL1 | OPAMP_CSR_S5SEL1 | OPAMP_CSR_S6SEL1) << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET)) \
bogdanm 0:9b334a45a8ff 391 | \
bogdanm 0:9b334a45a8ff 392 (OPAMP_CSR_ANAWSEL1 << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__))) \
bogdanm 0:9b334a45a8ff 393 ) \
bogdanm 0:9b334a45a8ff 394 : \
bogdanm 0:9b334a45a8ff 395 ( \
bogdanm 0:9b334a45a8ff 396 ((OPAMP_CSR_S3SEL1 | OPAMP_CSR_S4SEL1 | OPAMP_CSR_S5SEL1 | OPAMP_CSR_S6SEL1) << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__) * OPAMP_CSR_INSTANCE_OFFSET)) \
bogdanm 0:9b334a45a8ff 397 | \
bogdanm 0:9b334a45a8ff 398 (OPAMP_CSR_ANAWSEL1 << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__))) \
bogdanm 0:9b334a45a8ff 399 | \
bogdanm 0:9b334a45a8ff 400 (OPAMP_CSR_S7SEL2) \
bogdanm 0:9b334a45a8ff 401 ) \
bogdanm 0:9b334a45a8ff 402 )
bogdanm 0:9b334a45a8ff 403
bogdanm 0:9b334a45a8ff 404 /**
bogdanm 0:9b334a45a8ff 405 * @brief Select the OPAMP bit ANAWSELx (switch SanA) corresponding to the
bogdanm 0:9b334a45a8ff 406 * selected OPAMP instance.
bogdanm 0:9b334a45a8ff 407 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 408 * @retval None
bogdanm 0:9b334a45a8ff 409 */
bogdanm 0:9b334a45a8ff 410 #define __OPAMP_CSR_ANAWSELX(__HANDLE__) \
bogdanm 0:9b334a45a8ff 411 (OPAMP_CSR_ANAWSEL1 << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__)))
bogdanm 0:9b334a45a8ff 412
bogdanm 0:9b334a45a8ff 413 /**
bogdanm 0:9b334a45a8ff 414 * @brief Select the OPAMP bit OPAxCALOUT in function of the selected
bogdanm 0:9b334a45a8ff 415 * OPAMP instance.
bogdanm 0:9b334a45a8ff 416 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 417 * @retval None
bogdanm 0:9b334a45a8ff 418 */
bogdanm 0:9b334a45a8ff 419 #define __OPAMP_CSR_OPAXCALOUT(__HANDLE__) \
bogdanm 0:9b334a45a8ff 420 (OPAMP_CSR_OPA1CALOUT << (__OPAMP_INSTANCE_DECIMAL__(__HANDLE__)))
bogdanm 0:9b334a45a8ff 421
bogdanm 0:9b334a45a8ff 422 /**
bogdanm 0:9b334a45a8ff 423 * @brief Select the OPAMP trimming bits position value (position of LSB)
bogdanm 0:9b334a45a8ff 424 * in register OPAMP_OTR or register OPAMP_LPOTR in function of the selected
bogdanm 0:9b334a45a8ff 425 * OPAMP instance and the transistors differential pair high (PMOS) or
bogdanm 0:9b334a45a8ff 426 * low (NMOS).
bogdanm 0:9b334a45a8ff 427 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 428 * @param __TRIM_HIGH_LOW__: transistors differential pair high or low.
bogdanm 0:9b334a45a8ff 429 * Must be a value of @ref OPAMP_FactoryTrimming.
bogdanm 0:9b334a45a8ff 430 * @retval None
bogdanm 0:9b334a45a8ff 431 */
bogdanm 0:9b334a45a8ff 432 #define __OPAMP_OFFSET_TRIM_BITSPOSITION(__HANDLE__, __TRIM_HIGH_LOW__) \
bogdanm 0:9b334a45a8ff 433 ((__OPAMP_INSTANCE_DECIMAL__((__HANDLE__)) * OPAMP_OTR_INSTANCE_OFFSET) + (__TRIM_HIGH_LOW__))
bogdanm 0:9b334a45a8ff 434
bogdanm 0:9b334a45a8ff 435 /**
bogdanm 0:9b334a45a8ff 436 * @brief Shift the OPAMP trimming bits to register OPAMP_OTR or register
bogdanm 0:9b334a45a8ff 437 * OPAMP_LPOTR in function of the selected OPAMP instance and the transistors
bogdanm 0:9b334a45a8ff 438 * differential pair high (PMOS) or low (NMOS).
bogdanm 0:9b334a45a8ff 439 * @param __HANDLE__: OPAMP handle
bogdanm 0:9b334a45a8ff 440 * @param __TRIM_HIGH_LOW__: transistors differential pair high or low.
bogdanm 0:9b334a45a8ff 441 * Must be a value of @ref OPAMP_FactoryTrimming.
bogdanm 0:9b334a45a8ff 442 * @param __TRIMMING_VALUE__: Trimming value
bogdanm 0:9b334a45a8ff 443 * @retval None
bogdanm 0:9b334a45a8ff 444 */
bogdanm 0:9b334a45a8ff 445 #define __OPAMP_OFFSET_TRIM_SET(__HANDLE__, __TRIM_HIGH_LOW__, __TRIMMING_VALUE__) \
bogdanm 0:9b334a45a8ff 446 ((__TRIMMING_VALUE__) << (__OPAMP_OFFSET_TRIM_BITSPOSITION((__HANDLE__), (__TRIM_HIGH_LOW__))))
bogdanm 0:9b334a45a8ff 447
bogdanm 0:9b334a45a8ff 448 /**
bogdanm 0:9b334a45a8ff 449 * @brief Check that trimming value is within correct range
bogdanm 0:9b334a45a8ff 450 * @param TRIMMINGVALUE: OPAMP trimming value
bogdanm 0:9b334a45a8ff 451 * @retval None
bogdanm 0:9b334a45a8ff 452 */
bogdanm 0:9b334a45a8ff 453 #define IS_OPAMP_TRIMMINGVALUE(TRIMMINGVALUE) ((TRIMMINGVALUE) <= 0x1E)
bogdanm 0:9b334a45a8ff 454
bogdanm 0:9b334a45a8ff 455 /**
bogdanm 0:9b334a45a8ff 456 * @}
bogdanm 0:9b334a45a8ff 457 */
bogdanm 0:9b334a45a8ff 458
bogdanm 0:9b334a45a8ff 459
bogdanm 0:9b334a45a8ff 460 /* Include OPAMP HAL Extension module */
bogdanm 0:9b334a45a8ff 461 #include "stm32l1xx_hal_opamp_ex.h"
bogdanm 0:9b334a45a8ff 462
bogdanm 0:9b334a45a8ff 463 /* Exported functions --------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 464
bogdanm 0:9b334a45a8ff 465 /** @addtogroup OPAMP_Exported_Functions
bogdanm 0:9b334a45a8ff 466 * @{
bogdanm 0:9b334a45a8ff 467 */
bogdanm 0:9b334a45a8ff 468
bogdanm 0:9b334a45a8ff 469 /** @addtogroup OPAMP_Exported_Functions_Group1
bogdanm 0:9b334a45a8ff 470 * @{
bogdanm 0:9b334a45a8ff 471 */
bogdanm 0:9b334a45a8ff 472 /* Initialization/de-initialization functions **********************************/
bogdanm 0:9b334a45a8ff 473 HAL_StatusTypeDef HAL_OPAMP_Init(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 474 HAL_StatusTypeDef HAL_OPAMP_DeInit (OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 475 void HAL_OPAMP_MspInit(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 476 void HAL_OPAMP_MspDeInit(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 477 /**
bogdanm 0:9b334a45a8ff 478 * @}
bogdanm 0:9b334a45a8ff 479 */
bogdanm 0:9b334a45a8ff 480
bogdanm 0:9b334a45a8ff 481 /** @addtogroup OPAMP_Exported_Functions_Group2
bogdanm 0:9b334a45a8ff 482 * @{
bogdanm 0:9b334a45a8ff 483 */
bogdanm 0:9b334a45a8ff 484 /* I/O operation functions *****************************************************/
bogdanm 0:9b334a45a8ff 485 HAL_StatusTypeDef HAL_OPAMP_Start(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 486 HAL_StatusTypeDef HAL_OPAMP_Stop(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 487 HAL_StatusTypeDef HAL_OPAMP_SelfCalibrate(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 488 OPAMP_TrimmingValueTypeDef HAL_OPAMP_GetTrimOffset (OPAMP_HandleTypeDef *hopamp, uint32_t trimmingoffset);
bogdanm 0:9b334a45a8ff 489 /**
bogdanm 0:9b334a45a8ff 490 * @}
bogdanm 0:9b334a45a8ff 491 */
bogdanm 0:9b334a45a8ff 492
bogdanm 0:9b334a45a8ff 493 /** @addtogroup OPAMP_Exported_Functions_Group3
bogdanm 0:9b334a45a8ff 494 * @{
bogdanm 0:9b334a45a8ff 495 */
bogdanm 0:9b334a45a8ff 496 /* Peripheral Control functions ************************************************/
bogdanm 0:9b334a45a8ff 497 HAL_StatusTypeDef HAL_OPAMP_Lock(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 498 /**
bogdanm 0:9b334a45a8ff 499 * @}
bogdanm 0:9b334a45a8ff 500 */
bogdanm 0:9b334a45a8ff 501
bogdanm 0:9b334a45a8ff 502 /** @addtogroup OPAMP_Exported_Functions_Group4
bogdanm 0:9b334a45a8ff 503 * @{
bogdanm 0:9b334a45a8ff 504 */
bogdanm 0:9b334a45a8ff 505 /* Peripheral State functions **************************************************/
bogdanm 0:9b334a45a8ff 506 HAL_OPAMP_StateTypeDef HAL_OPAMP_GetState(OPAMP_HandleTypeDef *hopamp);
bogdanm 0:9b334a45a8ff 507 /**
bogdanm 0:9b334a45a8ff 508 * @}
bogdanm 0:9b334a45a8ff 509 */
bogdanm 0:9b334a45a8ff 510
bogdanm 0:9b334a45a8ff 511 /**
bogdanm 0:9b334a45a8ff 512 * @}
bogdanm 0:9b334a45a8ff 513 */
bogdanm 0:9b334a45a8ff 514
bogdanm 0:9b334a45a8ff 515
bogdanm 0:9b334a45a8ff 516
bogdanm 0:9b334a45a8ff 517
bogdanm 0:9b334a45a8ff 518 /**
bogdanm 0:9b334a45a8ff 519 * @}
bogdanm 0:9b334a45a8ff 520 */
bogdanm 0:9b334a45a8ff 521
bogdanm 0:9b334a45a8ff 522 /**
bogdanm 0:9b334a45a8ff 523 * @}
bogdanm 0:9b334a45a8ff 524 */
bogdanm 0:9b334a45a8ff 525
bogdanm 0:9b334a45a8ff 526 #endif /* STM32L151xCA || STM32L151xD || STM32L152xCA || STM32L152xD || STM32L162xCA || STM32L162xD || STM32L151xE || STM32L152xE || STM32L162xE || STM32L162xC || STM32L152xC || STM32L151xC */
bogdanm 0:9b334a45a8ff 527 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 528 }
bogdanm 0:9b334a45a8ff 529 #endif
bogdanm 0:9b334a45a8ff 530
bogdanm 0:9b334a45a8ff 531 #endif /* __STM32L1xx_HAL_OPAMP_H */
bogdanm 0:9b334a45a8ff 532
bogdanm 0:9b334a45a8ff 533 /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/