Initial commit - based on v2_candidate
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/*
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By: Elias Santistevan
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SparkFun Electronics
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Date: May, 2020
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License: MIT. See license file for more information but you can
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basically do whatever you want with this code.
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Feel like supporting open source hardware?
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Buy a board from SparkFun!
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NEO-M8U: https://www.sparkfun.com/products/16329
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ZED-F9R: https://www.sparkfun.com/products/16344
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Hardware Connections:
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Plug a Qwiic cable into the GNSS and a Redboard Qwiic
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If you don't have a platform with a Qwiic connection use the
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SparkFun Qwiic Breadboard Jumper (https://www.sparkfun.com/products/14425)
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Open the serial monitor at 115200 baud to see the output
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After calibrating the module, also known as "Fusion Mode", you can get
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data directly from the IMU. This data is integrated directly into the GNSS
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output, but is provided by the module as well.
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*/
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#include <Wire.h> //Needed for I2C to GNSS
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#include <SparkFun_Ublox_Arduino_Library.h> //http://librarymanager/All#SparkFun_u-blox_GNSS
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SFE_UBLOX_GPS myGPS;
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void setup()
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{
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Serial.begin(115200);
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while (!Serial); //Wait for user to open terminal
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Serial.println(F("SparkFun u-blox Example"));
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Wire.begin();
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if (myGPS.begin() == false) //Connect to the u-blox module using Wire port
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{
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Serial.println(F("u-blox GNSS not detected at default I2C address. Please check wiring. Freezing."));
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while (1);
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}
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myGPS.setI2COutput(COM_TYPE_UBX); //Set the I2C port to output UBX only (turn off NMEA noise)
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if (myGPS.getEsfInfo()){
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Serial.print(F("Fusion Mode: "));
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Serial.println(myGPS.packetUBXESFSTATUS->data.fusionMode);
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if (myGPS.packetUBXESFSTATUS->data.fusionMode == 1){
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Serial.println(F("Fusion Mode is Initialized!"));
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}
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else {
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Serial.println(F("Fusion Mode is either disabled or not initialized!"));
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Serial.println(F("Please see the previous example for more information."));
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}
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}
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}
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void loop()
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{
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// ESF data is produced at the navigation rate, so by default we'll get fresh data once per second
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if (myGPS.getEsfIns()) // Poll new ESF INS data
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{
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Serial.print(F("X Ang Rate: "));
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Serial.print(myGPS.packetUBXESFINS->data.xAngRate);
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Serial.print(F(" Y Ang Rate: "));
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Serial.print(myGPS.packetUBXESFINS->data.yAngRate);
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Serial.print(F(" Z Ang Rate: "));
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Serial.print(myGPS.packetUBXESFINS->data.zAngRate);
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Serial.print(F(" X Accel: "));
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Serial.print(myGPS.packetUBXESFINS->data.xAccel);
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Serial.print(F(" Y Accel: "));
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Serial.print(myGPS.packetUBXESFINS->data.yAccel);
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Serial.print(F(" Z Accel: "));
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Serial.print(myGPS.packetUBXESFINS->data.zAccel);
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// These values also have "validity checks" that can be provided by the
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// ublox library by reading bitfield0
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Serial.print(F(" Validity: "));
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Serial.print(myGPS.packetUBXESFINS->data.bitfield0.bits.xAngRateValid);
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Serial.print(myGPS.packetUBXESFINS->data.bitfield0.bits.yAngRateValid);
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Serial.print(myGPS.packetUBXESFINS->data.bitfield0.bits.zAngRateValid);
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Serial.print(myGPS.packetUBXESFINS->data.bitfield0.bits.xAccelValid);
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Serial.print(myGPS.packetUBXESFINS->data.bitfield0.bits.yAccelValid);
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Serial.println(myGPS.packetUBXESFINS->data.bitfield0.bits.zAccelValid);
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}
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delay(250);
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}
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