Trip Computer, Function - GF54.30-P-3044RF
Model 205, 253
Function requirements in general
- Circuit 15 ON:
The electronic ignition lock control unit (N73) transmits the status of circuit 15 via the user interface CAN (CAN HMI) to the instrument cluster (A1).
Trip computer (TRIP) function, general
The trip computer provides data and information on average fuel consumption, trip time, average speed, travel distance and remaining range.
The trip computer provides the following display screens:
- "After start" (short-distance memory)
- "After reset" (long-distance memory)
- "Present consumption"
The information displayed refers to the point in time of the last reset of the short-distance memory ("After start") or of the long-distance memory ("After reset").
The "After start" or "After reset" information is shown on the multifunction display (A1p13) of the instrument cluster as follows:
- Travel distance
- Duration
- Average speed
- Average fuel consumption
The TRIP computer includes the following subfunctions:
- Function sequence, travel distance display after start/after reset
- Function sequence, time display after start/after reset
- Function sequence for the average speed display
- Function sequence for display of present consumption (except model 205.086/087/286/287/386/387/486/487) and composite mileage
- Function sequence for display of ECO Score (driving style analysis) (except model 205.486/487/488/489, 253.364/388/389/964/988/989)
- Function sequence for remaining distance display
- Function sequence for resetting values
- Function sequence for energy flow display (hybrid vehicles)
Function sequence, travel distance display after start/after reset
The travel distance is calculated on the basis of the wheel speeds. The Electronic Stability Program control unit (N30/4) transmits the information about the wheel speed over the suspension FlexRay (Flex E), the electronic ignition lock control unit and the user interface CAN to the instrument cluster. The instrument cluster calculates the traveled distance from the wheel speeds. The distance "After start" is displayed in a range from 0 to 9999 km.
If there is a period of more than t = 4 h between the time when circuit 15 is switched off and then switched on again, the "After start" odometer is automatically reset to "0".
If the odometer reading is between 6213 and 9, 999 and the distance unit is changed (e.g., from km to miles), the odometer will automatically be reset to "0". This reset remains active even if the unit is changed again. Distance units are changed in the "settings" menu in the "instrument cluster" submenu. The distance unit can be changed from km to miles in the "speedometer/travel distance display unit" display window.
The travel distance "After reset" is calculated similar to the travel distance "After start"; however, the display here is in the range from 0 to 99, 999 km.
Depending on the setting in the instrument cluster and coding of the national version of the instrument cluster, the travel distance is displayed in:
- Kilometers, (e.g Economic Commission for Europe (ECE), Japan)
- Miles, (e.g. USA, Australia)
Switching over from kilometers to miles causes an automatic switchover from liters to gallons.
Function sequence, time display after start/after reset
With circuit 15 ON, the time after start is added up by means of a time counter. The display is realized in a range from 0 to 999 h and 59 min.
The time "After reset" is determined similar to the time "After start"; however, the display here is in a range from 0 to 9999 h and 59 min.
Function sequence for the average speed display
The trip computer calculates the average speed from the ratio between the travel distance driven and the time passed (trip time) since the last reset of the short-distance memory or long-distance memory. The travel distance is calculated in the instrument cluster from the wheel speeds. Depending on the setting (kilometers/miles) and the national variant coding of the instrument cluster the average speed is displayed in:
- km/h (kilometers per hour)
- mph (miles per hour)
Function sequence for display of present consumption (except model 205.086/087/286/287/386/387/486/487) and composite mileage
The CDI control unit (N3/9) (diesel engine) or the ME-SFI [ME] control unit (N3/10) (gasoline engine) transmits information about fuel consumption via the engine CAN (CAN C), the drivetrain control unit (N127), the chassis FlexRay, the electronic ignition lock control unit and the user interface CAN to the instrument cluster.
The trip computer uses this data to calculate the following information:
- Present consumption, composite mileage
- Travel distance covered "After start" or "After reset"
Depending on the setting (kilometers/miles) and the national variant coding of the instrument cluster the fuel consumption is displayed in:
- l/100 km (Liters per 100 kilometers)
- mpg (miles per gallon)
- km/l (kilometers per liter)
The present consumption is displayed together with the range. The display is in the form of a bar.
Function sequence for display of ECO Score (driving style analysis) (except model 205.486/487/488/489, 253.364/388/389/964/988/989)
The "ECO Score" display graphically displays the individual handling characteristics in the form of a pie chart.
The following information is displayed:
- Acceleration characteristic
- Uniform driving
- Rolling out
- Range gained in additional kilometers after start
- "Glow", when all segments are filled
The CDI control unit (diesel engine) or the ME-SFI [ME] control unit (gasoline engine) sends the data required for the evaluation via engine Can, drivetrain control unit, chassis FlexRay, electronic ignition lock control unit and user interface CAN to the instrument cluster.
Function sequence for remaining distance display
The trip computer determines the expected range from the ratio between the current tank capacity and the average fuel consumption.
The fill level of the fuel tank is recorded by the left fuel tank fuel level indicator fill level sensor (B4/1) and the right fuel tank fuel level indicator fill level sensor (B4/2).
The fuel system control unit (N118) reads in the signals of the fuel tank fuel level indicator fill level sensors and transmits information about the fill level of the fuel tank via the drive train CAN (CAN C1), the drivetrain control unit, the chassis FlexRay, the electronic ignition lock control unit and the user interface CAN to the instrument cluster.
Function sequence for resetting values
The trip computer is reset in the "Reset values" menu by pressing on the instrument cluster finger navigation pad (S163/1s10) in the instrument cluster multifunction steering wheel button group (s163/1) (model 205 as of 01.06.2018, model 253 (except model 253.99) as of 01.06.2019 or model 253.99) or by pressing the OK button. (S110s6) in the left multifunction steering wheel button group (S110) (model 205 up to 31.05.2018 or model 253 (except model 253.99) up to 31.05.2019). Here, the reset is only carried out for the currently displayed information.
The request is read in by the steering wheel electronics (N135) and sent to the steering column tube module control unit (N80) via the steering wheel CAN (CAN LR) (model 205 as of 01.06.2018, model 253 (except model 253.99) as of 01.06.2019 or model 253.99) or via the steering LIN (LIN E1) (model 205 up to 31.05.2018 or model 253 (except model 253.99) up to 31.05.2019). The steering column tube module control unit sends this request via chassis FlexRay, the electronic ignition lock control unit and user interface CAN to the instrument cluster.
Function sequence for energy flow display (hybrid vehicles)
The power flow display on the instrument cluster shows whether energy is being taken from or added to the high-voltage on-board electrical system. The data that is required for the display is transmitted by the battery management system control unit (N82/2) via the hybrid CAN (CAN L), the drivetrain control unit, the chassis FlexRay, the electronic ignition lock control unit and the user interface CAN to the instrument cluster.
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