mirror of
https://github.com/ckaczor/OneWireAPI.git
synced 2026-01-14 10:03:16 -05:00
278 lines
6.8 KiB
C#
278 lines
6.8 KiB
C#
using System;
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namespace OneWireAPI
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{
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public class owDeviceFamily26 : owDevice
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{
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#region Constructor
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public owDeviceFamily26(owSession Session, short[] ID) : base(Session, ID)
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{
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// Just call the base constructor
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}
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#endregion
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#region Methods
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public enum VoltageType : short
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{
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Supply,
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Output
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}
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private double GetVoltage(VoltageType Type)
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{
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short nResult; // Result of method calls
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byte[] aData = new byte[30]; // Data buffer to send over the network
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short nDataCount = 0; // How many bytes of data to send
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short nCRC; // Result of the CRC check
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int iIndex;
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short nBusy;
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double dVoltage;
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// Select and access the ID of the device we want to talk to
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owAdapter.Select(_deviceID);
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// Set the command to recall the status/configuration page to the scratchpad
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aData[nDataCount++] = 0xB8;
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// Set the page number to recall
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aData[nDataCount++] = 0x00;
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Clear the data count
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nDataCount = 0;
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// Access the device we want to talk to
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owAdapter.Access();
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// Set the command to read the scratchpad
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aData[nDataCount++] = 0xBE;
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// Set the page number to read
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aData[nDataCount++] = 0x00;
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// Add 9 bytes to be read - 8 for the data and 1 for the CRC
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for (iIndex = 0; iIndex < 9; iIndex++)
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aData[nDataCount++] = 0xFF;
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Calculate the CRC of the scratchpad data
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nCRC = owCRC8.Calculate(aData, 2, 9);
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// If the CRC doesn't match then throw an exception
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if (nCRC != aData[10])
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{
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// Throw a CRC exception
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throw new owException(owException.owExceptionFunction.CRC, _deviceID);
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}
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// TODO - Check if we really need to change the input selector
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if (true)
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{
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// Access the device we want to talk to
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owAdapter.Access();
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// Reset the data count
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nDataCount = 0;
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// Set the command to write the scratchpad
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aData[nDataCount++] = 0x4E;
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// Set the page number to write
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aData[nDataCount++] = 0x00;
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// Set or clear the AD bit based on the type requested
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if (Type == VoltageType.Supply)
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aData[nDataCount++] = (byte) (aData[2] | 0x08);
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else
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aData[nDataCount++] = (byte) (aData[2] & 0xF7);
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// Move the existing data down in the array
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for (iIndex = 0; iIndex < 7; iIndex++)
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aData[nDataCount++] = aData[iIndex + 4];
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Reset the data count
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nDataCount = 0;
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// Access the device we want to talk to
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owAdapter.Access();
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// Set the command to copy the scratchpad
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aData[nDataCount++] = 0x48;
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// Set the page number to copy to
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aData[nDataCount++] = 0x00;
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Loop until the data copy is complete
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do
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{
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nBusy = owAdapter.ReadByte();
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}
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while (nBusy == 0);
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}
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// Access the device we want to talk to
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owAdapter.Access();
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// Send the voltage conversion command
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owAdapter.SendByte(0xB4);
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// Loop until conversion is complete
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do
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{
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nBusy = owAdapter.ReadByte();
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}
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while (nBusy == 0);
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// Clear the data count
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nDataCount = 0;
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// Set the command to recall the status/configuration page to the scratchpad
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aData[nDataCount++] = 0xB8;
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// Set the page number to recall
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aData[nDataCount++] = 0x00;
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// Access the device we want to talk to
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owAdapter.Access();
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Clear the data count
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nDataCount = 0;
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// Access the device we want to talk to
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owAdapter.Access();
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// Set the command to read the scratchpad
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aData[nDataCount++] = 0xBE;
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// Set the page number to read
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aData[nDataCount++] = 0x00;
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// Add 9 bytes to be read - 8 for the data and 1 for the CRC
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for (iIndex = 0; iIndex < 9; iIndex++)
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aData[nDataCount++] = 0xFF;
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Calculate the CRC of the scratchpad data
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nCRC = owCRC8.Calculate(aData, 2, 9);
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// If the CRC doesn't match then throw an exception
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if (nCRC != aData[10])
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{
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// Throw a CRC exception
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throw new owException(owException.owExceptionFunction.CRC, _deviceID);
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}
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// Assemble the voltage data
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dVoltage = (double) ((aData[6] << 8) | aData[5]);
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return dVoltage / 100;
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}
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public double GetSupplyVoltage()
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{
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return GetVoltage(VoltageType.Supply);
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}
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public double GetOutputVoltage()
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{
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return GetVoltage(VoltageType.Output);
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}
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public double GetTemperature()
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{
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short nResult; // Result of method calls
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byte[] aData = new byte[30]; // Data buffer to send over the network
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short nDataCount = 0; // How many bytes of data to send
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short nCRC; // Result of the CRC check
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int iTemperatureLSB; // The LSB of the temperature data
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int iTemperatureMSB; // The MSB of the temperature data
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int iTemperature; // Complete temperature data
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double dTemperature; // double version of the temperature
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// Select and access the ID of the device we want to talk to
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owAdapter.Select(_deviceID);
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// Send the conversion command byte
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owAdapter.SendByte(0x44);
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// Sleep while the data is converted
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System.Threading.Thread.Sleep(10);
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// Access the device we want to talk to
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owAdapter.Access();
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// Set the command to recall the status/configuration page to the scratchpad
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aData[nDataCount++] = 0xB8;
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// Set the page number to recall
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aData[nDataCount++] = 0x00;
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Clear the data count
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nDataCount = 0;
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// Access the device we want to talk to
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owAdapter.Access();
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// Set the command to read the scratchpad
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aData[nDataCount++] = 0xBE;
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// Set the page number to read
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aData[nDataCount++] = 0x00;
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// Add 9 bytes to be read - 8 for the data and 1 for the CRC
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for (int iIndex = 0; iIndex < 9; iIndex++)
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aData[nDataCount++] = 0xFF;
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// Send the data block
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nResult = owAdapter.SendBlock(aData, nDataCount);
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// Calculate the CRC of the scratchpad data
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nCRC = owCRC8.Calculate(aData, 2, 9);
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// If the CRC doesn't match then throw an exception
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if (nCRC != aData[10])
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{
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// Throw a CRC exception
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throw new owException(owException.owExceptionFunction.CRC, _deviceID);
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}
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// Get the two bytes of temperature data
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iTemperatureLSB = aData[3];
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iTemperatureMSB = aData[4];
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// Shift the data into the right order
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iTemperature = ((iTemperatureMSB << 8) | iTemperatureLSB) >> 3;
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// Figure out the temperature
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dTemperature = iTemperature * 0.03125F;
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// Return the temperature
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return dTemperature;
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}
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#endregion
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}
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}
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