using System; using Microsoft.SPOT; using Microsoft.VisualStudio.TestTools.UnitTesting; using CPF; using System.Text; using System.Threading; using HWModules; namespace CPFUnitTests { class PumpEffTests { [TestMethod] public void TestPumpEff() { HWModules.MotherBoard motherboard = HWModules.MotherBoard.Instance; motherboard.EnableChannelPower(1); //Slot 1 channel A motherboard.EnableChannelPower(15); motherboard.EnableChannelPower(14); //Brent's version 0 digital IO board J4: position sensor motherboard.EnablePump(); BuoyancyEngine buoyancyEngine = BuoyancyEngine.Instance; double innerBellowsPosition = double.NaN; EnergyMonitorPump emPump = EnergyMonitorPump.Instance; EnergyMonitorLTC2946.EM_VandI emData; StringBuilder sbTemp = new StringBuilder(128); StringBuilder tab = new StringBuilder("\t"); sbTemp.Clear(); sbTemp.Append("Time of Day\tInner Bellows Position\tBattery Voltage\tBattery Current (mA)"); Debug.Print(sbTemp.ToString()); while (true) { innerBellowsPosition = buoyancyEngine.getBellowsPositionStringPot(); emData = emPump.getVoltsAndMilliAmps(); sbTemp.Clear(); sbTemp.Append(DateTime.Now.TimeOfDay); sbTemp.Append(tab); sbTemp.Append(innerBellowsPosition.ToString("F2")); sbTemp.Append(tab); sbTemp.Append(emData.voltage.ToString("F3")); sbTemp.Append(tab); sbTemp.Append(emData.current.ToString("F3")); Debug.Print(sbTemp.ToString()); Thread.Sleep(1000); } } } }