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📄 ccpsim.db

📁 ccp
💻 DB
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; Database C:\usr\CANape\Beispiele\CCPsim\ccpsim.db
; 

VERSION 103 COMMENT ""

MAP 1 "CCPSIM.MAP"


GROUP 'Axis' : "Shared Axis for Calibration Maps" 
GROUP 'Curves' : "Calibration Curves" 
GROUP 'Example_Filter' : "Digital Filter v=(vin*a0+v*b0)/c0" 
GROUP 'Example_PWM' : "Generator for a PWM Signal"  {
  GROUP 'PWM_Parameters' : "Parametes for PWM Example" 
  GROUP 'PWM_Signals' : "Measurement Signals from PWM" 
}
GROUP 'Maps' : "Calibration Maps"  {
  GROUP 'WorkingPoint' : "Example for working point" 
}
GROUP 'Measure' : "Measurement Values"  {
  GROUP 'Bits' : "Single Bit Values" 
  GROUP 'Bitslices' : "Multibit Values" 
  GROUP 'Test_Signals' : "Test Signals" 
}
GROUP 'Parameters' : "Calibration Parameters"  {
  GROUP 'Test_Parameters' : "Test Parameters, BYTE" 
}
GROUP 'Virtual' : "Virtual Signals" 

FORMULA 1 0 VTAB 0 'Off' 1 'Silent' 2 'Pending' 3 'Running' DEFAULT ""
FORMULA 2 0 HighLow "High/Low for bits" "" "%7.3" VTAB 0 'Low' 1 'High' DEFAULT ""
FORMULA 3 0 DigitalFilterConversion "" "Volt" "%3.1f" LINEAR 0.001 0
FORMULA 4 0 Factor100 "" "" "%3.1f" LINEAR 0.01 0
FORMULA 5 0 KF8_Conversion "" "1/min" "%3.1f" LINEAR 0.1 0
FORMULA 6 0 map1Conversion "" "cm" "%3.1f" LINEAR 10 0
FORMULA 7 0 Pressure "Convert Voltage into Pressure" "" "%7.3" LINEAR 0.123457 0
FORMULA 8 0 Current "Convert Voltage into Current" "" "%7.3" TEXT "X*X*2"
FORMULA 9 0 LINEAR 0.1 0
FORMULA 10 0 map1Input_Conversion "" "m" "%3.1f" LINEAR 0.1 0
FORMULA 11 0 TEXT "time(channel1)-time(channel1[-1])"
FORMULA 12 0 TEXT "max(phy(channel1))"
FORMULA 13 0 TEXT "min(phy(channel1))"

LAYOUT MapNxXNyYVuc {
 FNC_VALUES 5 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 2 UBYTE 1 DIRECT 0
 AXIS_PTS_Y 4 UBYTE 1 DIRECT 0
 NO_AXIS_PTS_X 1 UBYTE
 NO_AXIS_PTS_Y 3 UBYTE
}
LAYOUT MapRowColub {
 FNC_VALUES 1 UBYTE ROW_DIR DIRECT 0
}
LAYOUT MapColRowuw {
 FNC_VALUES 1 UWORD COLUMN_DIR DIRECT 0
}
LAYOUT MapX8Y6V86ub {
 FNC_VALUES 3 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 1 UBYTE 1 DIRECT 0
 AXIS_PTS_Y 2 UBYTE 1 DIRECT 0
 FIX_NO_AXIS_PTS_X 8
 FIX_NO_AXIS_PTS_Y 6
}
LAYOUT MapX8Y8V88ub {
 FNC_VALUES 3 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 1 UBYTE 1 DIRECT 0
 AXIS_PTS_Y 2 UBYTE 1 DIRECT 0
 FIX_NO_AXIS_PTS_X 8
 FIX_NO_AXIS_PTS_Y 8
}
LAYOUT MapNxNyXYVub {
 FNC_VALUES 5 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 3 UBYTE 1 DIRECT 0
 AXIS_PTS_Y 4 UBYTE 1 DIRECT 0
 NO_AXIS_PTS_X 1 UBYTE
 NO_AXIS_PTS_Y 2 UBYTE
}
LAYOUT MapXYVub {
 FNC_VALUES 3 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 1 UBYTE 1 DIRECT 0
 AXIS_PTS_Y 2 UBYTE 1 DIRECT 0
}
LAYOUT MapV86ub {
 FNC_VALUES 1 UBYTE ROW_DIR DIRECT 0
 FIX_NO_AXIS_PTS_X 8
 FIX_NO_AXIS_PTS_Y 6
}
LAYOUT MapNxNyVub {
 FNC_VALUES 3 UBYTE ROW_DIR DIRECT 0
 NO_AXIS_PTS_X 1 UBYTE
 NO_AXIS_PTS_Y 2 UBYTE
}
LAYOUT CurveX8V8ub {
 FNC_VALUES 2 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 1 UBYTE 1 DIRECT 0
 FIX_NO_AXIS_PTS_X 8
}
LAYOUT CurveNxXVub {
 FNC_VALUES 3 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 2 UBYTE 1 DIRECT 0
 NO_AXIS_PTS_X 1 UBYTE
}
LAYOUT CurveNxVub {
 FNC_VALUES 2 UBYTE ROW_DIR DIRECT 0
 AXIS_PTS_X 1 UBYTE 1 DIRECT 0
}
LAYOUT CurveV8ub {
 FNC_VALUES 1 UBYTE ROW_DIR DIRECT 0
 FIX_NO_AXIS_PTS_X 8
}
LAYOUT CurveVub {
 FNC_VALUES 1 UBYTE ROW_DIR DIRECT 0
}
LAYOUT CurveX8V8ubAlternate {
 FNC_VALUES 2 UWORD ALTERNATE_WITH_X DIRECT 0
 AXIS_PTS_X 1 UWORD 1 DIRECT 0
 FIX_NO_AXIS_PTS_X 8
}
LAYOUT CurveX8ub {
 AXIS_PTS_X 1 UBYTE 1 DIRECT 0
 FIX_NO_AXIS_PTS_X 8
}
LAYOUT __UBYTE_Z {
 FNC_VALUES 1 UBYTE ROW_DIR DIRECT 0
}
LAYOUT __UWORD_Z {
 FNC_VALUES 1 UWORD ROW_DIR DIRECT 0
}
LAYOUT __ULONG_Z {
 FNC_VALUES 1 ULONG ROW_DIR DIRECT 0
}
LAYOUT __SBYTE_Z {
 FNC_VALUES 1 SBYTE ROW_DIR DIRECT 0
}
LAYOUT __SWORD_Z {
 FNC_VALUES 1 SWORD ROW_DIR DIRECT 0
}
LAYOUT __SLONG_Z {
 FNC_VALUES 1 SLONG ROW_DIR DIRECT 0
}
LAYOUT __FLOAT32_IEEE_Z {
 FNC_VALUES 1 FLOAT ROW_DIR DIRECT 0
}
LAYOUT __UBYTE_S {
 FNC_VALUES 1 UBYTE COLUMN_DIR DIRECT 0
}
LAYOUT __UWORD_S {
 FNC_VALUES 1 UWORD COLUMN_DIR DIRECT 0
}
LAYOUT __ULONG_S {
 FNC_VALUES 1 ULONG COLUMN_DIR DIRECT 0
}
LAYOUT __SBYTE_S {
 FNC_VALUES 1 SBYTE COLUMN_DIR DIRECT 0
}
LAYOUT __SWORD_S {
 FNC_VALUES 1 SWORD COLUMN_DIR DIRECT 0
}
LAYOUT __SLONG_S {
 FNC_VALUES 1 SLONG COLUMN_DIR DIRECT 0
}
LAYOUT __FLOAT32_IEEE_S {
 FNC_VALUES 1 FLOAT COLUMN_DIR DIRECT 0
}
LAYOUT SSV__UBYTE_S {
 AXIS_PTS_X 1 UBYTE 1 DIRECT 0
}
LAYOUT SSV__UWORD_S {
 AXIS_PTS_X 1 UWORD 1 DIRECT 0
}
LAYOUT SSV__ULONG_S {
 AXIS_PTS_X 1 ULONG 1 DIRECT 0
}
LAYOUT SSV__SBYTE_S {
 AXIS_PTS_X 1 SBYTE 1 DIRECT 0
}
LAYOUT SSV__SWORD_S {
 AXIS_PTS_X 1 SWORD 1 DIRECT 0
}
LAYOUT SSV__SLONG_S {
 AXIS_PTS_X 1 SLONG 1 DIRECT 0
}
LAYOUT SSV__FLOAT32_IEEE_S {
 AXIS_PTS_X 1 FLOAT 1 DIRECT 0
}

SEGMENT 'ampl' 0x40EE4
SEGMENT 'wordCounter' 0x442B2
SEGMENT 'byte1' 0x40F0A
SEGMENT 'byte2' 0x40F0B
SEGMENT 'byte3' 0x40F0C
SEGMENT 'byte4' 0x40F0D
SEGMENT 'byteCounter' 0x442B1
SEGMENT 'bytePWMFilter' 0x40F09
SEGMENT 'channel1' 0x4429C
SEGMENT 'channel2' 0x442A0
SEGMENT 'channel3' 0x442A4
SEGMENT 'dwordCounter' 0x442B4
SEGMENT 'curveOutput' 0x442C8
SEGMENT 'limit' 0x40EE8
SEGMENT 'map1InputX' 0x442C4
SEGMENT 'map1InputY' 0x442C5
SEGMENT 'map1Output' 0x442C6
SEGMENT 'noise' 0x442AC
SEGMENT 'offset' 0x40EEC
SEGMENT 'period' 0x40EE0
SEGMENT 'bytePWM' 0x442CF

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