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202 lines
7.3 KiB
C++
202 lines
7.3 KiB
C++
/*!
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* @file Adafruit_OPT4048.h
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*
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* Arduino library for the OPT4048 High Speed High Precision Tristimulus XYZ
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* Color Sensor.
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*
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* This is a library for the Adafruit OPT4048 breakout
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* ----> https://www.adafruit.com/products/6334
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*
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* Adafruit invests time and resources providing this open source code,
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* please support Adafruit and open-source hardware by purchasing
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* products from Adafruit!
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*
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* Written by Limor Fried/Ladyada for Adafruit Industries.
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*
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* MIT license, all text here must be included in any redistribution.
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*
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*/
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#ifndef ADAFRUIT_OPT4048_H
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#define ADAFRUIT_OPT4048_H
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#include <Adafruit_BusIO_Register.h>
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#include <Adafruit_I2CDevice.h>
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#include <Wire.h>
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#include "Arduino.h"
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#define OPT4048_DEFAULT_ADDR \
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0x44 //!< Default I2C address (ADDR pin connected to GND)
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/**
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* @brief Available range settings for the OPT4048 sensor
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*
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* Full-scale light level ranges as described in datasheet page 29.
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*/
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typedef enum {
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OPT4048_RANGE_2K_LUX = 0, ///< 2.2 klux
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OPT4048_RANGE_4K_LUX = 1, ///< 4.5 klux
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OPT4048_RANGE_9K_LUX = 2, ///< 9 klux
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OPT4048_RANGE_18K_LUX = 3, ///< 18 klux
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OPT4048_RANGE_36K_LUX = 4, ///< 36 klux
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OPT4048_RANGE_72K_LUX = 5, ///< 72 klux
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OPT4048_RANGE_144K_LUX = 6, ///< 144 klux
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OPT4048_RANGE_AUTO = 12 ///< Auto-range
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} opt4048_range_t;
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/**
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* @brief Available conversion time settings for the OPT4048 sensor
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*
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* These control the device conversion time per channel as described in
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* datasheet page 29.
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*/
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typedef enum {
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OPT4048_CONVERSION_TIME_600US = 0, ///< 600 microseconds
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OPT4048_CONVERSION_TIME_1MS = 1, ///< 1 millisecond
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OPT4048_CONVERSION_TIME_1_8MS = 2, ///< 1.8 milliseconds
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OPT4048_CONVERSION_TIME_3_4MS = 3, ///< 3.4 milliseconds
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OPT4048_CONVERSION_TIME_6_5MS = 4, ///< 6.5 milliseconds
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OPT4048_CONVERSION_TIME_12_7MS = 5, ///< 12.7 milliseconds
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OPT4048_CONVERSION_TIME_25MS = 6, ///< 25 milliseconds
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OPT4048_CONVERSION_TIME_50MS = 7, ///< 50 milliseconds
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OPT4048_CONVERSION_TIME_100MS = 8, ///< 100 milliseconds
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OPT4048_CONVERSION_TIME_200MS = 9, ///< 200 milliseconds
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OPT4048_CONVERSION_TIME_400MS = 10, ///< 400 milliseconds
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OPT4048_CONVERSION_TIME_800MS = 11 ///< 800 milliseconds
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} opt4048_conversion_time_t;
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/**
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* @brief Available operating mode settings for the OPT4048 sensor
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*
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* Controls the device mode of operation as described in datasheet page 29.
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*/
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typedef enum {
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OPT4048_MODE_POWERDOWN = 0, ///< Power-down mode
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OPT4048_MODE_AUTO_ONESHOT = 1, ///< Forced auto-range one-shot mode
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OPT4048_MODE_ONESHOT = 2, ///< One-shot mode
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OPT4048_MODE_CONTINUOUS = 3 ///< Continuous mode
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} opt4048_mode_t;
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/**
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* @brief Available fault count settings for the OPT4048 sensor
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*
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* Controls how many consecutive fault events are needed to trigger an
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* interrupt.
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*/
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typedef enum {
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OPT4048_FAULT_COUNT_1 = 0, ///< 1 fault count (default)
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OPT4048_FAULT_COUNT_2 = 1, ///< 2 consecutive fault counts
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OPT4048_FAULT_COUNT_4 = 2, ///< 4 consecutive fault counts
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OPT4048_FAULT_COUNT_8 = 3 ///< 8 consecutive fault counts
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} opt4048_fault_count_t;
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/**
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* @brief Interrupt configuration settings for the OPT4048 sensor
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*
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* Controls the interrupt mechanism after end of conversion.
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*/
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typedef enum {
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OPT4048_INT_CFG_SMBUS_ALERT = 0, ///< SMBUS Alert
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OPT4048_INT_CFG_DATA_READY_NEXT = 1, ///< INT Pin data ready for next channel
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OPT4048_INT_CFG_DATA_READY_ALL = 3 ///< INT Pin data ready for all channels
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} opt4048_int_cfg_t;
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// Register addresses
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#define OPT4048_REG_CH0_MSB 0x00 //!< X channel MSB register
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#define OPT4048_REG_CH0_LSB 0x01 //!< X channel LSB register
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#define OPT4048_REG_CH1_MSB 0x02 //!< Y channel MSB register
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#define OPT4048_REG_CH1_LSB 0x03 //!< Y channel LSB register
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#define OPT4048_REG_CH2_MSB 0x04 //!< Z channel MSB register
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#define OPT4048_REG_CH2_LSB 0x05 //!< Z channel LSB register
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#define OPT4048_REG_CH3_MSB 0x06 //!< W channel MSB register
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#define OPT4048_REG_CH3_LSB 0x07 //!< W channel LSB register
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#define OPT4048_REG_THRESHOLD_LOW 0x08 //!< Low threshold register
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#define OPT4048_REG_THRESHOLD_HIGH 0x09 //!< High threshold register
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#define OPT4048_REG_CONFIG 0x0A //!< Configuration register
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#define OPT4048_REG_THRESHOLD_CFG 0x0B //!< Threshold configuration register
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#define OPT4048_REG_STATUS 0x0C //!< Status register
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#define OPT4048_REG_DEVICE_ID 0x11 //!< Device ID register
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// Status register (0x0C) bit flags
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#define OPT4048_FLAG_L 0x01 //!< Flag low - measurement smaller than threshold
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#define OPT4048_FLAG_H 0x02 //!< Flag high - measurement larger than threshold
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#define OPT4048_FLAG_CONVERSION_READY 0x04 //!< Conversion ready
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#define OPT4048_FLAG_OVERLOAD 0x08 //!< Overflow condition
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/**
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@brief Class that stores state and functions for interacting with the OPT4048
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sensor.
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*/
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class Adafruit_OPT4048 {
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public:
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Adafruit_OPT4048();
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~Adafruit_OPT4048();
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/**
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* @brief Initialize the sensor with given I2C address and Wire instance
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*
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* @param addr I2C address, defaults to OPT4048_DEFAULT_ADDR
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* @param wire Pointer to TwoWire instance, defaults to &Wire
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* @return true on success, false on failure
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*/
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bool begin(uint8_t addr = OPT4048_DEFAULT_ADDR, TwoWire* wire = &Wire);
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/**
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* @brief Read all four channels, verify CRC, and return raw ADC code values
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*
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* @param ch0 Pointer to store channel 0 (X) value
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* @param ch1 Pointer to store channel 1 (Y) value
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* @param ch2 Pointer to store channel 2 (Z) value
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* @param ch3 Pointer to store channel 3 (W) value
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* @return true if successful, false otherwise
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*/
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bool getChannelsRaw(uint32_t* ch0, uint32_t* ch1, uint32_t* ch2,
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uint32_t* ch3);
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bool setThresholdLow(uint32_t thl);
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uint32_t getThresholdLow(void);
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bool setThresholdHigh(uint32_t thh);
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uint32_t getThresholdHigh(void);
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bool setQuickWake(bool enable);
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bool getQuickWake(void);
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bool setRange(opt4048_range_t range);
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opt4048_range_t getRange(void);
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bool setConversionTime(opt4048_conversion_time_t convTime);
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opt4048_conversion_time_t getConversionTime(void);
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bool setMode(opt4048_mode_t mode);
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opt4048_mode_t getMode(void);
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bool setInterruptLatch(bool latch);
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bool getInterruptLatch(void);
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bool setInterruptPolarity(bool activeHigh);
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bool getInterruptPolarity(void);
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bool setFaultCount(opt4048_fault_count_t count);
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opt4048_fault_count_t getFaultCount(void);
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bool setThresholdChannel(uint8_t channel);
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uint8_t getThresholdChannel(void);
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bool setInterruptDirection(bool activeHigh);
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bool getInterruptDirection(void);
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bool setInterruptConfig(opt4048_int_cfg_t config);
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opt4048_int_cfg_t getInterruptConfig(void);
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uint8_t getFlags(void);
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bool getCIE(double* CIEx, double* CIEy, double* lux);
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/**
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* @brief Calculate the correlated color temperature (CCT) in Kelvin
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*
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* Uses the McCamy's approximation formula to calculate CCT from CIE 1931 x,y
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* coordinates. This is accurate for color temperatures between 2000K and
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* 30000K.
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*
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* @param CIEx The CIE x chromaticity coordinate
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* @param CIEy The CIE y chromaticity coordinate
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* @return The calculated color temperature in Kelvin
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*/
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double calculateColorTemperature(double CIEx, double CIEy);
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private:
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Adafruit_I2CDevice* i2c_dev;
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void encodeValue(uint32_t value, uint8_t* exp, uint32_t* mant);
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};
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#endif // ADAFRUIT_OPT4048_H
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