*v 0007 *n code=0000 name="Slate" *n code=0001 name="Supervisor" *n code=0002 name="Module Loader" *e code=0000 elementURI="depth" type=04 *e code=0001 elementURI="depth_rate" type=04 *e code=0002 elementURI="direction_of_sea_water_velocity" type=04 *e code=0003 elementURI="distance_from_shore" type=04 *e code=0004 elementURI="downwelling_photosynthetic_photon_flux_in_sea_water" type=04 *e code=0005 elementURI="downward_sea_water_velocity" type=04 *e code=0006 elementURI="eastward_sea_water_velocity" type=04 *e code=0007 elementURI="grid_latitude" type=04 *e code=0008 elementURI="grid_longitude" type=04 *e code=0009 elementURI="height_above_sea_floor" type=04 *e code=000A elementURI="northward_sea_water_velocity" type=04 *e code=000B elementURI="latitude" type=04 *e code=000C elementURI="latitude_fix" type=04 *e code=000D elementURI="longitude" type=04 *e code=000E elementURI="longitude_fix" type=04 *e code=000F elementURI="mass_concentration_of_chlorophyll_in_sea_water" type=04 *e code=0010 elementURI="mass_concentration_of_oxygen_in_sea_water" type=04 *e code=0011 elementURI="mole_concentration_of_nitrate_in_sea_water" type=04 *e code=0012 elementURI="platform_average_current" type=04 *e code=0013 elementURI="platform_battery_charge" type=04 *e code=0014 elementURI="platform_battery_charge_usage" type=04 *e code=0015 elementURI="platform_battery_energy_usage" type=04 *e code=0016 elementURI="platform_battery_voltage" type=04 *e code=0017 elementURI="platform_battery_fully_charged" type=04 *e code=0018 elementURI="platform_battery_discharging" type=04 *e code=0019 elementURI="platform_buoyancy_position" type=04 *e code=001A elementURI="platform_communications" type=04 *e code=001B elementURI="platform_conversation" type=04 *e code=001C elementURI="platform_course" type=04 *e code=001D elementURI="platform_distance_wrt_ground" type=04 *e code=001E elementURI="platform_distance_wrt_sea_water" type=04 *e code=001F elementURI="platform_elevator_angle" type=04 *e code=0020 elementURI="platform_fault" type=04 *e code=0021 elementURI="platform_fault_leak" type=04 *e code=0022 elementURI="platform_magnetic_orientation" type=04 *e code=0023 elementURI="platform_mass_position" type=04 *e code=0024 elementURI="platform_orientation" type=04 *e code=0025 elementURI="platform_pitch_angle" type=04 *e code=0026 elementURI="platform_pitch_rate" type=04 *e code=0027 elementURI="platform_pressure" type=04 *e code=0028 elementURI="platform_propeller_rotation_rate" type=04 *e code=0029 elementURI="platform_relative_humidity" type=04 *e code=002A elementURI="platform_roll_angle" type=04 *e code=002B elementURI="platform_roll_rate" type=04 *e code=002C elementURI="platform_rudder_angle" type=04 *e code=002D elementURI="platform_speed_wrt_ground" type=04 *e code=002E elementURI="platform_speed_wrt_sea_water" type=04 *e code=002F elementURI="platform_speed_wrt_propeller" type=04 *e code=0030 elementURI="platform_temperature" type=04 *e code=0031 elementURI="platform_x_sea_water_velocity" type=04 *e code=0032 elementURI="platform_x_velocity_wrt_ground" type=04 *e code=0033 elementURI="platform_x_velocity_wrt_sea_water" type=04 *e code=0034 elementURI="platform_x_velocity_current" type=04 *e code=0035 elementURI="platform_y_sea_water_velocity" type=04 *e code=0036 elementURI="platform_y_velocity_wrt_ground" type=04 *e code=0037 elementURI="platform_y_velocity_wrt_sea_water" type=04 *e code=0038 elementURI="platform_y_velocity_current" type=04 *e code=0039 elementURI="platform_yaw_angle" type=04 *e code=003A elementURI="platform_yaw_rate" type=04 *e code=003B elementURI="platform_z_sea_water_velocity" type=04 *e code=003C elementURI="platform_z_velocity_wrt_ground" type=04 *e code=003D elementURI="platform_z_velocity_wrt_sea_water" type=04 *e code=003E elementURI="platform_z_velocity_current" type=04 *e code=003F elementURI="projection_x_coordinate" type=04 *e code=0040 elementURI="projection_y_coordinate" type=04 *e code=0041 elementURI="projection_zone" type=04 *e code=0042 elementURI="sea_floor_depth_below_geoid" type=04 *e code=0043 elementURI="sea_water_density" type=04 *e code=0044 elementURI="sea_water_electrical_conductivity" type=04 *e code=0045 elementURI="sea_water_potential_density" type=04 *e code=0046 elementURI="sea_water_potential_temperature" type=04 *e code=0047 elementURI="sea_water_pressure" type=04 *e code=0048 elementURI="sea_water_salinity" type=04 *e code=0049 elementURI="sea_water_sigma_t" type=04 *e code=004A elementURI="sea_water_sigma_theta" type=04 *e code=004B elementURI="sea_water_speed" type=04 *e code=004C elementURI="sea_water_temperature" type=04 *e code=004D elementURI="surface_eastward_sea_water_velocity" type=04 *e code=004E elementURI="surface_northward_sea_water_velocity" type=04 *e code=004F elementURI="time" type=04 *e code=0050 elementURI="time_fix" type=04 *e code=0051 elementURI="upward_derivative_of_sea_water_temperature" type=04 *e code=0052 elementURI="volume_backwards_scattering_coefficient_of_radiative_flux_in_sea_water" type=04 *e code=0053 elementURI="volume_scattering_650_nm" type=04 *e code=0054 elementURI="volume_scattering_470_nm" type=04 FS(P0Initializing supervisor.*n code=0003 name="ComponentRegistry" *n code=0004 name="controlThread" *n code=0005 name="SyncHandler" Y(PDCreated PCaller Thread at 4033B4E0ƿY(PhComponent "controlThread" handled in its own thread.*n code=0006 name="controlThread ThreadHandler" ](PDCreated PCaller Thread at 4036B4E0*n code=0007 name="CycleStarter" *e code=0055 elementURI="CycleStarter.time" type=00 *a code=0000 owner=0007 element=0055 universal=004F unitName="second" type=1F size=0008 fl=01 *e code=0056 elementURI="CycleStarter.loadAvg1Min" type=02 *a code=0001 owner=0007 element=0056 universal=3FFF unitName="percent" type=0B size=0003 fl=05 ƿa(PvSyncComponent "CycleStarter" handled in the control thread.*n code=0008 name="CommandLine" *e code=0057 elementURI="IBIT.IBITRunning" type=00 *a code=0002 owner=0008 element=0057 universal=3FFF unitName="bool" type=02 size=0001 fl=04 *e code=0058 elementURI="CBIT.GFActive" type=00 *a code=0003 owner=0008 element=0058 universal=3FFF unitName="bool" type=02 size=0001 fl=04 *a code=0004 owner=0008 element=001B universal=FFFF unitName="none" type=FF size=0000 fl=04 *e code=0059 elementURI="CommandLine.platform_conversation" type=00 *a code=0005 owner=0008 element=0059 universal=001B unitName="bool" type=02 size=0001 fl=05 ƿl(PdComponent "CommandLine" handled in its own thread.*n code=0009 name="CommandLine ThreadHandler" p(PDCreated PCaller Thread at 4039B4E0*n code=000A name="logger" ƿq(PZComponent "logger" handled in its own thread.*n code=000B name="logger ThreadHandler" t(PDCreated PCaller Thread at 403CB4E0Nu(P\Looking for Config files in directory: Config/Ny(PTOpening Config file at: Config/vehicle.cfg*n code=000C name="Config/vehicle" *e code=005A elementURI="Vehicle.name" type=01 *a code=0006 owner=000C element=005A universal=3FFF unitName="none" type=00 size=0006 fl=05 d(PTethys*e code=005B elementURI="Vehicle.hostname" type=01 *a code=0007 owner=000C element=005B universal=3FFF unitName="none" type=00 size=0009 fl=05 t(P localhost*e code=005C elementURI="Vehicle.id" type=01 *a code=0008 owner=000C element=005C universal=3FFF unitName="enum" type=02 size=0001 fl=05 (P*e code=005D elementURI="Vehicle.kmlColor" type=01 *a code=0009 owner=000C element=005D universal=3FFF unitName="none" type=00 size=0008 fl=05 (Pff0055ff*e code=005E elementURI="Vehicle.argoProgram" type=01 *a code=000A owner=000C element=005E universal=3FFF unitName="none" type=00 size=0004 fl=05 (P0000*e code=005F elementURI="Vehicle.argoPlatform" type=01 *a code=000B owner=000C element=005F universal=3FFF unitName="none" type=00 size=0006 fl=05 (P000000*e code=0060 elementURI="Vehicle.imei" type=01 *a code=000C owner=000C element=0060 universal=3FFF unitName="none" type=00 size=000F fl=05 Ŀ(P000000000000000*e code=0061 elementURI="Vehicle.keyText" type=01 *a code=000D owner=000C element=0061 universal=3FFF unitName="none" type=00 size=0010 fl=05 Կ(PTethysEncryption*e code=0062 elementURI="NAL9602.sendDataToShore" type=01 *a code=000E owner=000C element=0062 universal=3FFF unitName="bool" type=02 size=0001 fl=05 俔(P*e code=0063 elementURI="Depth_Keller.loadControl" type=01 *a code=000F owner=000C element=0063 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadA0*e code=0064 elementURI="Depth_Keller.ad" type=01 *a code=0010 owner=000C element=0064 universal=3FFF unitName="none" type=00 size=000E fl=05 (P/dev/mcp3553A0*e code=0065 elementURI="Depth_Keller.adTimeout" type=01 *a code=0011 owner=000C element=0065 universal=3FFF unitName="millisecond" type=0B size=0003 fl=05 )(P>*e code=0066 elementURI="Depth_Keller.adVref" type=01 *a code=0012 owner=000C element=0066 universal=3FFF unitName="volt" type=0B size=0003 fl=05 I(P @*e code=0067 elementURI="Depth_Keller.adRes" type=01 *a code=0013 owner=000C element=0067 universal=3FFF unitName="bit" type=1F size=0008 fl=05 i(P@*e code=0068 elementURI="PAR_Licor.loadControl" type=01 *a code=0014 owner=000C element=0068 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadB0*e code=0069 elementURI="PAR_Licor.ad" type=01 *a code=0015 owner=000C element=0069 universal=3FFF unitName="none" type=00 size=000E fl=05 (P/dev/mcp3553B0*e code=006A elementURI="PAR_Licor.adTimeout" type=01 *a code=0016 owner=000C element=006A universal=3FFF unitName="millisecond" type=0B size=0003 fl=05 (P>*e code=006B elementURI="PAR_Licor.adVref" type=01 *a code=0017 owner=000C element=006B universal=3FFF unitName="volt" type=0B size=0003 fl=05 (P @*e code=006C elementURI="PAR_Licor.adRes" type=01 *a code=0018 owner=000C element=006C universal=3FFF unitName="bit" type=1F size=0008 fl=05 (P@*e code=006D elementURI="AHRS_sp3003D.loadControl" type=01 *a code=0019 owner=000C element=006D universal=3FFF unitName="none" type=00 size=000B fl=05 )(P /dev/loadB7*e code=006E elementURI="AHRS_sp3003D.uart" type=01 *a code=001A owner=000C element=006E universal=3FFF unitName="none" type=00 size=000A fl=05 I(P /dev/ttyB7*e code=006F elementURI="AHRS_sp3003D.baud" type=01 *a code=001B owner=000C element=006F universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 i(P@*e code=0070 elementURI="DVL_micro.loadControl" type=01 *a code=001C owner=000C element=0070 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadB5*e code=0071 elementURI="DVL_micro.uart" type=01 *a code=001D owner=000C element=0071 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/ttyTX1*e code=0072 elementURI="DVL_micro.baud" type=01 *a code=001E owner=000C element=0072 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P @*e code=0073 elementURI="NAL9602.loadControl" type=01 *a code=001F owner=000C element=0073 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadA1*e code=0074 elementURI="NAL9602.uart" type=01 *a code=0020 owner=000C element=0074 universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyS2*e code=0075 elementURI="NAL9602.baud" type=01 *a code=0021 owner=000C element=0075 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 )(P@*e code=0076 elementURI="Radio_Freewave.loadControl" type=01 *a code=0022 owner=000C element=0076 universal=3FFF unitName="none" type=00 size=000B fl=05 I(P /dev/loadA2*e code=0077 elementURI="ElevatorServo.loadControl" type=01 *a code=0023 owner=000C element=0077 universal=3FFF unitName="none" type=00 size=000B fl=05 i(P /dev/loadA6*e code=0078 elementURI="ElevatorServo.uart" type=01 *a code=0024 owner=000C element=0078 universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyA6*e code=0079 elementURI="ElevatorServo.baud" type=01 *a code=0025 owner=000C element=0079 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P@*e code=007A elementURI="RudderServo.loadControl" type=01 *a code=0026 owner=000C element=007A universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadA5*e code=007B elementURI="RudderServo.uart" type=01 *a code=0027 owner=000C element=007B universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyA5*e code=007C elementURI="RudderServo.baud" type=01 *a code=0028 owner=000C element=007C universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P@*e code=007D elementURI="ThrusterServo.loadControl" type=01 *a code=0029 owner=000C element=007D universal=3FFF unitName="none" type=00 size=000B fl=05 )(P /dev/loadA7*e code=007E elementURI="ThrusterServo.uart" type=01 *a code=002A owner=000C element=007E universal=3FFF unitName="none" type=00 size=000A fl=05 I(P /dev/ttyA7*e code=007F elementURI="ThrusterServo.baud" type=01 *a code=002B owner=000C element=007F universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 i(P@*e code=0080 elementURI="MassServo.loadControl" type=01 *a code=002C owner=000C element=0080 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadA3*e code=0081 elementURI="MassServo.uart" type=01 *a code=002D owner=000C element=0081 universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyA3*e code=0082 elementURI="MassServo.baud" type=01 *a code=002E owner=000C element=0082 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P@*e code=0083 elementURI="BuoyancyServo.loadControl" type=01 *a code=002F owner=000C element=0083 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadA4*e code=0084 elementURI="BuoyancyServo.uart" type=01 *a code=0030 owner=000C element=0084 universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyA4*e code=0085 elementURI="BuoyancyServo.baud" type=01 *a code=0031 owner=000C element=0085 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 )(P@*e code=0086 elementURI="AHRS_3DMGX3.loadControl" type=01 *a code=0032 owner=000C element=0086 universal=3FFF unitName="none" type=00 size=000B fl=05 I(P /dev/loadB6*e code=0087 elementURI="AHRS_3DMGX3.uart" type=01 *a code=0033 owner=000C element=0087 universal=3FFF unitName="none" type=00 size=000A fl=05 i(P /dev/ttyB6*e code=0088 elementURI="AHRS_3DMGX3.baud" type=01 *a code=0034 owner=000C element=0088 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P @*e code=0089 elementURI="CTD_NeilBrown.loadControl" type=01 *a code=0035 owner=000C element=0089 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadB4*e code=008A elementURI="CTD_NeilBrown.uart" type=01 *a code=0036 owner=000C element=008A universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyB4*e code=008B elementURI="CTD_NeilBrown.baud" type=01 *a code=0037 owner=000C element=008B universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P@*e code=008C elementURI="WetLabsBB2FL.loadControl" type=01 *a code=0038 owner=000C element=008C universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadB3*e code=008D elementURI="WetLabsBB2FL.uart" type=01 *a code=0039 owner=000C element=008D universal=3FFF unitName="none" type=00 size=000A fl=05 )(P /dev/ttyB3*e code=008E elementURI="WetLabsBB2FL.baud" type=01 *a code=003A owner=000C element=008E universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 I(P@*e code=008F elementURI="Aanderaa_O2.loadControl" type=01 *a code=003B owner=000C element=008F universal=3FFF unitName="none" type=00 size=000B fl=05 i(P /dev/loadB2*e code=0090 elementURI="Aanderaa_O2.uart" type=01 *a code=003C owner=000C element=0090 universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyB2*e code=0091 elementURI="Aanderaa_O2.baud" type=01 *a code=003D owner=000C element=0091 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P@*e code=0092 elementURI="Turbulence_NPS.loadControl" type=01 *a code=003E owner=000C element=0092 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadB2*e code=0093 elementURI="Turbulence_NPS.uart" type=01 *a code=003F owner=000C element=0093 universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyS1*e code=0094 elementURI="Turbulence_NPS.baud" type=01 *a code=0040 owner=000C element=0094 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 (P @*e code=0095 elementURI="SCPI.loadControl" type=01 *a code=0041 owner=000C element=0095 universal=3FFF unitName="none" type=00 size=000B fl=05 )(P /dev/loadB2*e code=0096 elementURI="SCPI.uart" type=01 *a code=0042 owner=000C element=0096 universal=3FFF unitName="none" type=00 size=000A fl=05 I(P /dev/ttyB2*e code=0097 elementURI="SCPI.baud" type=01 *a code=0043 owner=000C element=0097 universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 i(P@*e code=0098 elementURI="ISUS.loadControl" type=01 *a code=0044 owner=000C element=0098 universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadB1*e code=0099 elementURI="ISUS.uart" type=01 *a code=0045 owner=000C element=0099 universal=3FFF unitName="none" type=00 size=000A fl=05  (P /dev/ttyB1*e code=009A elementURI="ISUS.baud" type=01 *a code=0046 owner=000C element=009A universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05  (P@*e code=009B elementURI="DAT.loadControl" type=01 *a code=0047 owner=000C element=009B universal=3FFF unitName="none" type=00 size=000B fl=05 (P /dev/loadB1*e code=009C elementURI="DAT.uart" type=01 *a code=0048 owner=000C element=009C universal=3FFF unitName="none" type=00 size=000A fl=05 (P /dev/ttyS1*e code=009D elementURI="DAT.baud" type=01 *a code=0049 owner=000C element=009D universal=3FFF unitName="bit_per_second" type=1F size=0008 fl=05 ) (P@*e code=009E elementURI="Batt_Ocean_ServerA.uart" type=01 *a code=004A owner=000C element=009E universal=3FFF unitName="none" type=00 size=000B fl=05 I (P /dev/ttyTX0*e code=009F elementURI="Batt_Ocean_ServerA.baud" type=01 *a code=004B owner=000C element=009F universal=3FFF unitName="bit_per_second" type=1F 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elementURI="OnboardTemperature.adVref" type=01 *a code=0052 owner=000C element=00A6 universal=3FFF unitName="volt" type=0B size=0003 fl=05 I &(PI@*e code=00A7 elementURI="OnboardTemperature.adRes" type=01 *a code=0053 owner=000C element=00A7 universal=3FFF unitName="bit" type=1F size=0008 fl=05 i ((P?*e code=00A8 elementURI="OnboardPressure.ad" type=01 *a code=0054 owner=000C element=00A8 universal=3FFF unitName="none" type=00 size=0010 fl=05 *(P/dev/adlpc32xx_2*e code=00A9 elementURI="OnboardPressure.adVref" type=01 *a code=0055 owner=000C element=00A9 universal=3FFF unitName="volt" type=0B size=0003 fl=05 ,(PI@*e code=00AA elementURI="OnboardPressure.adRes" type=01 *a code=0056 owner=000C element=00AA universal=3FFF unitName="bit" type=1F size=0008 fl=05 .(P?*e code=00AB elementURI="CBITMainGroundfault.ad" type=01 *a code=0057 owner=000C element=00AB universal=3FFF unitName="none" type=00 size=000D fl=05 0(P /dev/ad7888_0*e code=00AC elementURI="CBITMainGroundfault.adVref" type=01 *a code=0058 owner=000C element=00AC universal=3FFF unitName="volt" type=0B size=0003 fl=05 2(PI@*e code=00AD elementURI="CBITMainGroundfault.adRes" type=01 *a code=0059 owner=000C element=00AD universal=3FFF unitName="bit" type=1F size=0008 fl=05 ) 4(P?*e code=00AE elementURI="OnboardSecondaryBatteryCurrent.ad" type=01 *a code=005A owner=000C element=00AE universal=3FFF unitName="none" type=00 size=000D fl=05 I 6(P /dev/ad7888_1*e code=00AF elementURI="OnboardSecondaryBatteryCurrent.adVref" type=01 *a code=005B owner=000C element=00AF universal=3FFF unitName="volt" type=0B size=0003 fl=05 i <(PI@*e code=00B0 elementURI="OnboardSecondaryBatteryCurrent.adRes" type=01 *a code=005C owner=000C element=00B0 universal=3FFF unitName="bit" type=1F size=0008 fl=05 >(P?*e code=00B1 elementURI="OnboardEmergencyBatteryCurrent.ad" type=01 *a code=005D owner=000C element=00B1 universal=3FFF unitName="none" type=00 size=000D fl=05 A(P /dev/ad7888_2*e code=00B2 elementURI="OnboardEmergencyBatteryCurrent.adVref" type=01 *a code=005E owner=000C element=00B2 universal=3FFF unitName="volt" type=0B size=0003 fl=05 C(PI@*e code=00B3 elementURI="OnboardEmergencyBatteryCurrent.adRes" type=01 *a code=005F owner=000C element=00B3 universal=3FFF unitName="bit" type=1F size=0008 fl=05 E(P?*e code=00B4 elementURI="OnboardMotherboard5VCurrent.ad" type=01 *a code=0060 owner=000C element=00B4 universal=3FFF unitName="none" type=00 size=000D fl=05 G(P /dev/ad7888_3*e code=00B5 elementURI="OnboardMotherboard5VCurrent.adVref" type=01 *a code=0061 owner=000C element=00B5 universal=3FFF unitName="volt" type=0B size=0003 fl=05 ) I(PI@*e code=00B6 elementURI="OnboardMotherboard5VCurrent.adRes" type=01 *a code=0062 owner=000C element=00B6 universal=3FFF unitName="bit" type=1F size=0008 fl=05 I K(P?*e code=00B7 elementURI="OnboardMotherboard3_15VCurrent.ad" type=01 *a code=0063 owner=000C element=00B7 universal=3FFF unitName="none" type=00 size=000D fl=05 i N(P /dev/ad7888_4*e code=00B8 elementURI="OnboardMotherboard3_15VCurrent.adVref" type=01 *a code=0064 owner=000C element=00B8 universal=3FFF unitName="volt" type=0B size=0003 fl=05 P(PI@*e code=00B9 elementURI="OnboardMotherboard3_15VCurrent.adRes" type=01 *a code=0065 owner=000C element=00B9 universal=3FFF unitName="bit" type=1F size=0008 fl=05 R(P?*e code=00BA elementURI="OnboardMotherboard3_3VCurrent.ad" type=01 *a code=0066 owner=000C element=00BA universal=3FFF unitName="none" type=00 size=000D fl=05 T(P /dev/ad7888_5*e code=00BB elementURI="OnboardMotherboard3_3VCurrent.adVref" type=01 *a code=0067 owner=000C element=00BB universal=3FFF unitName="volt" type=0B size=0003 fl=05 V(PI@*e code=00BC elementURI="OnboardMotherboard3_3VCurrent.adRes" type=01 *a code=0068 owner=000C element=00BC universal=3FFF unitName="bit" type=1F size=0008 fl=05 X(P?*e code=00BD elementURI="OnboardMotherboard1_8VCurrent.ad" type=01 *a code=0069 owner=000C element=00BD universal=3FFF unitName="none" type=00 size=000D fl=05 ) [(P /dev/ad7888_6*e code=00BE elementURI="OnboardMotherboard1_8VCurrent.adVref" type=01 *a code=006A owner=000C element=00BE universal=3FFF unitName="volt" type=0B size=0003 fl=05 I ](PI@*e code=00BF elementURI="OnboardMotherboard1_8VCurrent.adRes" type=01 *a code=006B owner=000C element=00BF universal=3FFF unitName="bit" type=1F size=0008 fl=05 i _(P?ƿ(PNLoaded Config Component "Config/vehicleN(PROpening Config file at: Config/Sensor.cfg*n code=000D name="Config/Sensor" *e code=00C0 elementURI="AHRS_3DMGX3.loadAtStartup" type=01 *a code=006C owner=000D element=00C0 universal=3FFF unitName="bool" type=02 size=0001 fl=05 (P*e code=00C1 elementURI="AHRS_3DMGX3.simulateHardware" type=01 *a code=006D owner=000D element=00C1 universal=3FFF unitName="bool" type=02 size=0001 fl=05 (P*e code=00C2 elementURI="AHRS_3DMGX3.power" type=01 *a code=006E owner=000D element=00C2 universal=3FFF unitName="watt" type=0B size=0003 fl=05 (P>*e code=00C3 elementURI="AHRS_3DMGX3.magDeviation" type=01 *a code=006F owner=000D element=00C3 universal=3FFF unitName="degree" type=2F size=0004 fl=05 (P*e code=00C4 elementURI="AHRS_3DMGX3.pitchOffset" type=01 *a code=0070 owner=000D element=00C4 universal=3FFF unitName="degree" type=2F size=0004 fl=05 (P*e code=00C5 elementURI="AHRS_3DMGX3.rollOffset" type=01 *a code=0071 owner=000D element=00C5 universal=3FFF unitName="degree" type=2F size=0004 fl=05 )(P*e code=00C6 elementURI="AHRS_sp3003D.loadAtStartup" type=01 *a code=0072 owner=000D element=00C6 universal=3FFF unitName="bool" type=02 size=0001 fl=05 I(P*e code=00C7 elementURI="AHRS_sp3003D.simulateHardware" type=01 *a code=0073 owner=000D element=00C7 universal=3FFF unitName="bool" type=02 size=0001 fl=05 i(P*e code=00C8 elementURI="AHRS_sp3003D.power" type=01 *a code=0074 owner=000D element=00C8 universal=3FFF unitName="watt" type=0B size=0003 fl=05 (Pף=*e code=00C9 elementURI="AHRS_sp3003D.magDeviation" type=01 *a code=0075 owner=000D element=00C9 universal=3FFF unitName="degree" type=2F size=0004 fl=05  (P*e code=00CA elementURI="AHRS_sp3003D.pitchOffset" type=01 *a code=0076 owner=000D element=00CA universal=3FFF unitName="degree" type=2F size=0004 fl=05  (P*e code=00CB elementURI="AHRS_sp3003D.rollOffset" type=01 *a code=0077 owner=000D element=00CB universal=3FFF unitName="degree" type=2F size=0004 fl=05 (P*e code=00CC elementURI="AHRS_sp3003D.readAccelerations" type=01 *a code=0078 owner=000D element=00CC universal=3FFF unitName="bool" type=02 size=0001 fl=05 (P*e code=00CD elementURI="AHRS_sp3003D.readMagnetics" type=01 *a code=0079 owner=000D element=00CD universal=3FFF unitName="bool" type=02 size=0001 fl=05 )(P*e code=00CE elementURI="Batt_Ocean_Server.loadAtStartup" type=01 *a code=007A owner=000D element=00CE universal=3FFF unitName="bool" type=02 size=0001 fl=05 I(P*e code=00CF elementURI="DAT.loadAtStartup" type=01 *a code=007B owner=000D element=00CF universal=3FFF unitName="bool" type=02 size=0001 fl=05 i(P*e code=00D0 elementURI="DAT.simulateHardware" type=01 *a code=007C owner=000D element=00D0 universal=3FFF unitName="bool" type=02 size=0001 fl=05 (P*e code=00D1 elementURI="DAT.remoteAddress" type=01 *a code=007D owner=000D element=00D1 universal=3FFF unitName="count" type=0D size=0004 fl=05 (P*e code=00D2 elementURI="DAT.rotationOffset" type=01 *a code=007E owner=000D element=00D2 universal=3FFF unitName="degree" type=2F size=0004 fl=05 (P*e code=00D3 elementURI="Depth_Keller.loadAtStartup" type=01 *a code=007F owner=000D element=00D3 universal=3FFF unitName="bool" type=02 size=0001 fl=05 !(P*e code=00D4 elementURI="Depth_Keller.simulateHardware" type=01 *a code=0080 owner=000D element=00D4 universal=3FFF unitName="bool" type=02 size=0001 fl=05 #(P*e code=00D5 elementURI="Depth_Keller.power" type=01 *a code=0081 owner=000D element=00D5 universal=3FFF unitName="watt" type=0B size=0003 fl=05 )&(P;*e code=00D6 elementURI="Depth_Keller.offset" type=01 *a code=0082 owner=000D element=00D6 universal=3FFF unitName="decibar" type=0B size=0003 fl=05 I((P*e code=00D7 elementURI="Depth_Keller.scale" type=01 *a code=0083 owner=000D element=00D7 universal=3FFF unitName="micropascal" type=0B size=0003 fl=05 i*(P7*e code=00D8 elementURI="Depth_Keller.maxPressBound" type=01 *a code=0084 owner=000D element=00D8 universal=3FFF unitName="decibar" type=0B size=0003 fl=05 ,(PJ*e code=00D9 elementURI="Depth_Keller.minPressBound" type=01 *a code=0085 owner=000D element=00D9 universal=3FFF unitName="decibar" type=0B size=0003 fl=05 .(PP*e code=00DA elementURI="DropWeight.loadAtStartup" type=01 *a code=0086 owner=000D element=00DA universal=3FFF unitName="bool" type=02 size=0001 fl=05 0(P*e code=00DB elementURI="DropWeight.simulateHardware" type=01 *a code=0087 owner=000D element=00DB universal=3FFF unitName="bool" type=02 size=0001 fl=05 2(P*e code=00DC elementURI="DVL_micro.loadAtStartup" type=01 *a code=0088 owner=000D element=00DC universal=3FFF unitName="bool" type=02 size=0001 fl=05 4(P*e code=00DD elementURI="DVL_micro.simulateHardware" type=01 *a code=0089 owner=000D element=00DD universal=3FFF unitName="bool" type=02 size=0001 fl=05 )6(P*e code=00DE elementURI="DVL_micro.power" type=01 *a code=008A owner=000D element=00DE universal=3FFF unitName="watt" type=0B size=0003 fl=05 I8(P@*e code=00DF elementURI="DVL_micro.magDeviation" type=01 *a code=008B owner=000D element=00DF universal=3FFF unitName="degree" type=2F size=0004 fl=05 i:(P*e code=00E0 elementURI="DVL_micro.pitchOffset" type=01 *a code=008C owner=000D element=00E0 universal=3FFF unitName="degree" type=2F size=0004 fl=05 <(P*e code=00E1 elementURI="DVL_micro.rollOffset" type=01 *a code=008D owner=000D element=00E1 universal=3FFF unitName="degree" type=2F size=0004 fl=05 >(P*e code=00E2 elementURI="DVL_micro.simulateRssi" type=01 *a code=008E owner=000D element=00E2 universal=3FFF unitName="bool" type=02 size=0001 fl=05 D(P*e code=00E3 elementURI="NAL9602.gpsFailTimeout" type=01 *a code=008F owner=000D element=00E3 universal=3FFF unitName="minute" type=0B size=0003 fl=05 I(PD*e code=00E4 elementURI="NAL9602.requestGGA" type=01 *a code=0090 owner=000D element=00E4 universal=3FFF unitName="bool" type=02 size=0001 fl=05 N(P*e code=00E5 elementURI="NAL9602.loadAtStartup" type=01 *a code=0091 owner=000D element=00E5 universal=3FFF unitName="bool" type=02 size=0001 fl=05 )P(P*e code=00E6 elementURI="NAL9602.simulateHardware" type=01 *a code=0092 owner=000D element=00E6 universal=3FFF unitName="bool" type=02 size=0001 fl=05 IR(P*e code=00E7 elementURI="NAL9602.power" type=01 *a code=0093 owner=000D element=00E7 universal=3FFF unitName="watt" type=0B size=0003 fl=05 iT(P3>*e code=00E8 elementURI="NAL9602.power_platform_communications" type=01 *a code=0094 owner=000D element=00E8 universal=3FFF unitName="watt" type=0B size=0003 fl=05 V(Pff?*e code=00E9 elementURI="Onboard.loadAtStartup" type=01 *a code=0095 owner=000D element=00E9 universal=3FFF unitName="bool" type=02 size=0001 fl=05 X(P*e code=00EA elementURI="Onboard.simulateHardware" type=01 *a code=0096 owner=000D element=00EA universal=3FFF unitName="bool" type=02 size=0001 fl=05 Z(P*e code=00EB elementURI="OnboardPressure.slope" type=01 *a code=0097 owner=000D element=00EB universal=3FFF unitName="pound_per_square_inch_per_volt" type=0B size=0003 fl=05 \(PHI*e code=00EC elementURI="OnboardPressure.intercept" type=01 *a code=0098 owner=000D element=00EC universal=3FFF unitName="pound_per_square_inch" type=0B size=0003 fl=05 ^(P*e code=00ED elementURI="Onboard.power" type=01 *a code=0099 owner=000D element=00ED universal=3FFF unitName="watt" type=0B size=0003 fl=05 )`(P#<*e code=00EE elementURI="Radio_Freewave.loadAtStartup" type=01 *a code=009A owner=000D element=00EE universal=3FFF unitName="bool" type=02 size=0001 fl=05 Ib(P*e code=00EF elementURI="Radio_Freewave.simulateHardware" type=01 *a code=009B owner=000D element=00EF universal=3FFF unitName="bool" type=02 size=0001 fl=05 id(P*e code=00F0 elementURI="Radio_Freewave.power" type=01 *a code=009C owner=000D element=00F0 universal=3FFF unitName="watt" type=0B size=0003 fl=05 f(P @*e code=00F1 elementURI="Radio_Freewave.maxDepth" type=01 *a code=009D owner=000D element=00F1 universal=3FFF unitName="meter" type=0B size=0003 fl=05 h(P?*e code=00F2 elementURI="SCPI.loadAtStartup" type=01 *a code=009E owner=000D element=00F2 universal=3FFF unitName="bool" type=02 size=0001 fl=05 n(P*e code=00F3 elementURI="SCPI.simulateHardware" type=01 *a code=009F owner=000D element=00F3 universal=3FFF unitName="bool" type=02 size=0001 fl=05 p(P*e code=00F4 elementURI="SCPI.sampleTime" type=01 *a code=00A0 owner=000D element=00F4 universal=3FFF unitName="second" type=0B size=0003 fl=05 r(P Aƿ(PLLoaded Config Component "Config/SensorN(PROpening Config file at: Config/Sample.cfg*n code=000E name="Config/Sample" *e code=00F5 elementURI="AsyncPiEstimator.loadAtStartup" type=01 *a code=00A1 owner=000E element=00F5 universal=3FFF unitName="bool" type=02 size=0001 fl=05 )(Pƿ%(PLLoaded Config Component "Config/SampleN'(PROpening Config file at: Config/logger.cfg*n code=000F name="Config/logger" ƿ(PLLoaded Config Component "Config/loggerN(PLOpening Config file at: Config/BIT.cfg*n code=0010 name="Config/BIT" *e code=00F6 elementURI="CBIT.loadAtStartup" type=01 *a code=00A2 owner=0010 element=00F6 universal=3FFF unitName="bool" type=02 size=0001 fl=05 I(P*e code=00F7 elementURI="CBIT.simulateHardware" type=01 *a code=00A3 owner=0010 element=00F7 universal=3FFF unitName="bool" type=02 size=0001 fl=05 i(P*e code=00F8 elementURI="CBIT.abortDepth" type=01 *a code=00A4 owner=0010 element=00F8 universal=3FFF unitName="meter" type=0B size=0003 fl=05 (PC*e code=00F9 elementURI="CBIT.stopDepth" type=01 *a code=00A5 owner=0010 element=00F9 universal=3FFF unitName="meter" type=0B size=0003 fl=05 (PC*e code=00FA elementURI="CBIT.humidityThreshold" type=01 *a code=00A6 owner=0010 element=00FA universal=3FFF unitName="percent" type=0B size=0003 fl=05 (P ?*e code=00FB elementURI="CBIT.pressureThreshold" type=01 *a code=00A7 owner=0010 element=00FB universal=3FFF unitName="pound_per_square_inch" type=0B size=0003 fl=05 (PE*e code=00FC elementURI="CBIT.tempThreshold" type=01 *a code=00A8 owner=0010 element=00FC universal=3FFF unitName="fahrenheit" type=0B size=0003 fl=05 (PC*e code=00FD elementURI="CBIT.vehicleOpen" type=01 *a code=00A9 owner=0010 element=00FD universal=3FFF unitName="bool" type=02 size=0001 fl=05 )(P*e code=00FE elementURI="CBIT.abortDepthTimeout" type=01 *a code=00AA owner=0010 element=00FE universal=3FFF unitName="second" type=0B size=0003 fl=05 I(P@*e code=00FF elementURI="CBIT.battFailReport" type=01 *a code=00AB owner=0010 element=00FF universal=3FFF unitName="count" type=0D size=0004 fl=05 i(P *e code=0100 elementURI="CBIT.envTimeout" type=01 *a code=00AC owner=0010 element=0100 universal=3FFF unitName="second" type=0B size=0003 fl=05 (P A*e code=0101 elementURI="CBIT.battTempThreshold" type=01 *a code=00AD owner=0010 element=0101 universal=3FFF unitName="celsius" type=0B size=0003 fl=05 (PC*e code=0102 elementURI="CBIT.gfChan0_Threshold" type=01 *a code=00AE owner=0010 element=0102 universal=3FFF unitName="milliampere" type=0B size=0003 fl=05 (P'7*e code=0103 elementURI="CBIT.gfChan1_Threshold" type=01 *a code=00AF owner=0010 element=0103 universal=3FFF unitName="milliampere" type=0B size=0003 fl=05 (P'7*e code=0104 elementURI="CBIT.gfChan2_Threshold" type=01 *a code=00B0 owner=0010 element=0104 universal=3FFF unitName="milliampere" type=0B size=0003 fl=05 (P'7*e code=0105 elementURI="CBIT.gfChan4_Threshold" type=01 *a code=00B1 owner=0010 element=0105 universal=3FFF unitName="milliampere" type=0B size=0003 fl=05 )(P'7*e code=0106 elementURI="CBIT.gfChan5_Threshold" type=01 *a code=00B2 owner=0010 element=0106 universal=3FFF unitName="milliampere" type=0B size=0003 fl=05 I(P'7*e code=0107 elementURI="CBIT.gfScanTimeout" type=01 *a code=00B3 owner=0010 element=0107 universal=3FFF unitName="hour" type=0B size=0003 fl=05 i(PF*e code=0108 elementURI="SBIT.loadAtStartup" type=01 *a code=00B4 owner=0010 element=0108 universal=3FFF unitName="bool" type=02 size=0001 fl=05 (P*e code=0109 elementURI="SBIT.kernelRelease" type=01 *a code=00B5 owner=0010 element=0109 universal=3FFF unitName="none" type=00 size=0015 fl=05 (P2.6.32-45-generic-pae*e code=010A elementURI="SBIT.kernelVersion" type=01 *a code=00B6 owner=0010 element=010A universal=3FFF unitName="none" type=00 size=002B fl=05 (P+#102-Ubuntu SMP Wed Jan 2 22:10:16 UTC 2013*e code=010B elementURI="IBIT.loadAtStartup" type=01 *a code=00B7 owner=0010 element=010B universal=3FFF unitName="bool" type=02 size=0001 fl=05 (P*e code=010C elementURI="IBIT.batteryCapacityThreshold" type=01 *a code=00B8 owner=0010 element=010C universal=3FFF unitName="ampere_hour" type=0B size=0003 fl=05 (PF*e code=010D elementURI="IBIT.batteryVoltageThreshold" type=01 *a code=00B9 owner=0010 element=010D universal=3FFF unitName="volt" type=0B size=0003 fl=05 )(PXAƿC(PFLoaded Config Component "Config/BITNF(PPOpening Config file at: Config/Servo.cfg*n code=0011 name="Config/Servo" *e code=010E elementURI="BuoyancyServo.loadAtStartup" type=01 *a code=00BA owner=0011 element=010E universal=3FFF unitName="bool" type=02 size=0001 fl=05 IO(P*e code=010F elementURI="BuoyancyServo.simulateHardware" type=01 *a code=00BB owner=0011 element=010F universal=3FFF unitName="bool" type=02 size=0001 fl=05 iQ(P*e code=0110 elementURI="BuoyancyServo.powerOnTimeout" type=01 *a code=00BC owner=0011 element=0110 universal=3FFF unitName="second" type=0B size=0003 fl=05 T(P?*e code=0111 elementURI="BuoyancyServo.powerOffTimeout" type=01 *a code=00BD owner=0011 element=0111 universal=3FFF unitName="second" type=0B size=0003 fl=05 Z(P?*e code=0112 elementURI="BuoyancyServo.currLimit" type=01 *a code=00BE owner=0011 element=0112 universal=3FFF unitName="percent" type=0B size=0003 fl=05 ](P?*e code=0113 elementURI="BuoyancyServo.limitHi" type=01 *a code=00BF owner=0011 element=0113 universal=3FFF unitName="count" type=0D size=0004 fl=05 _(P *e code=0114 elementURI="BuoyancyServo.limitLo" type=01 *a code=00C0 owner=0011 element=0114 universal=3FFF unitName="count" type=0D size=0004 fl=05 b(P*e code=0115 elementURI="BuoyancyServo.pidW" type=01 *a code=00C1 owner=0011 element=0115 universal=3FFF unitName="count" type=0D size=0004 fl=05 )d(P*e code=0116 elementURI="BuoyancyServo.pidX" type=01 *a code=00C2 owner=0011 element=0116 universal=3FFF unitName="count" type=0D size=0004 fl=05 If(P*e code=0117 elementURI="BuoyancyServo.pidY" type=01 *a code=00C3 owner=0011 element=0117 universal=3FFF unitName="count" type=0D size=0004 fl=05 ih(P *e code=0118 elementURI="BuoyancyServo.overloadTimeout" type=01 *a code=00C4 owner=0011 element=0118 universal=3FFF unitName="millisecond" type=0B size=0003 fl=05 j(P A*e code=0119 elementURI="BuoyancyServo.accel" type=01 *a code=00C5 owner=0011 element=0119 universal=3FFF unitName="none" type=1F size=0008 fl=05 l(P@*e code=011A elementURI="BuoyancyServo.velocity" type=01 *a code=00C6 owner=0011 element=011A universal=3FFF unitName="none" type=1F size=0008 fl=05 n(P@*e code=011B elementURI="BuoyancyServo.countsPerCC" type=01 *a code=00C7 owner=0011 element=011B universal=3FFF unitName="count_per_cubic_centimeter" type=0B size=0003 fl=05 q(P6*e code=011C elementURI="BuoyancyServo.deviationVolume" type=01 *a code=00C8 owner=0011 element=011C universal=3FFF unitName="cubic_centimeter" type=0B size=0003 fl=05 t(P'7*e code=011D elementURI="BuoyancyServo.checkingTimeout" type=01 *a code=00C9 owner=0011 element=011D universal=3FFF unitName="minute" type=0B size=0003 fl=05 )w(PaF*e code=011E elementURI="BuoyancyServo.offsetVolume" type=01 *a code=00CA owner=0011 element=011E universal=3FFF unitName="cubic_centimeter" type=0B size=0003 fl=05 Iy(Px8*e code=011F elementURI="ElevatorServo.loadAtStartup" type=01 *a code=00CB owner=0011 element=011F universal=3FFF unitName="bool" type=02 size=0001 fl=05 i{(P*e code=0120 elementURI="ElevatorServo.simulateHardware" type=01 *a code=00CC owner=0011 element=0120 universal=3FFF unitName="bool" type=02 size=0001 fl=05 }(P*e code=0121 elementURI="ElevatorServo.powerOnTimeout" type=01 *a code=00CD owner=0011 element=0121 universal=3FFF unitName="second" type=0B size=0003 fl=05 (P?*e code=0122 elementURI="ElevatorServo.currLimit" type=01 *a code=00CE owner=0011 element=0122 universal=3FFF unitName="percent" type=0B size=0003 fl=05 (P=*e code=0123 elementURI="ElevatorServo.limitHi" type=01 *a code=00CF owner=0011 element=0123 universal=3FFF unitName="count" type=0D size=0004 fl=05 (P?*e code=0124 elementURI="ElevatorServo.limitLo" type=01 *a code=00D0 owner=0011 element=0124 universal=3FFF unitName="count" type=0D size=0004 fl=05 (P*e code=0125 elementURI="ElevatorServo.pidW" type=01 *a code=00D1 owner=0011 element=0125 universal=3FFF unitName="count" type=0D size=0004 fl=05 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