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RDAC

MGL Stratomaster RDAC

RDAC-XG RDAC-XF RDACCAN Arch_RDAC
  • RDAC = Remote Data Aquisition Computer)
  • Some MGL Avionics systems (E2, Extreme, ULTRA, XTreme, Enigma, Voyager, Odyssey, iEFIS) use a Remote Data Acquisition Computer module for engine data acquisition.
  • Some 57mm Vega instruments an also display data provided by a RDAC.
  • This architecture makes the installation easy, since there is no need to extend sender cables all the way to the cockpit.
  • The RDAC is installed close to the engine, and connects to the display system with a shielded two wires cable.
  • Click to view a page describing RDAC/EFIS architecture
  • There are several versions of RDAC. Currently available:
      RDAC-XG8 CHT/EGT channels, no manifold pressure sender. Outputs: CAN & RS232. Weight 140g approx. Can be used only on instruments with CAN interface.
      RDAC-XFM12 CHT/EGT channels, with manifold pressure sender. Outputs: Opto-isolated, CAN & RS232. With its opto-isolated output, it can be used on XTreme/Enigma/Voyager/Odyssey as a RDAC-XD (e.g. XF's channels not present on XD are not available with opto-isolated connection). Weight 370g approx.
      RDAC-CAN-912iSCAN bus for two ROTAX 912IS ECU. Outputs: CAN & RS232. Inputs for two fuel level senders, one fuel pressure sender & one magnetic current sensor. Weight 140g approx. Can be used only on instruments with CAN interface.
      RDAC-CAN-MWB22CAN bus for two MW B22 ECUs. Outputs: CAN & RS232. Inputs for two fuel level senders, one Oil pressure sender, two MW water temperature senders, one magnetic current sensor & one fuel flow input (accepts flow senders or can be used to derive flow from injector monitoring). Weight 140g approx. Can be used only on instruments with CAN interface.
      RDAC-CAN-ULPCAN bus for two UL POWER ECUs, one RS232 input. Outputs: CAN & RS232. Inputs for two fuel level senders, one magnetic current sensor. Weight 140g approx. Can be used only on instruments with CAN interface.
      RDAC-CAN-LADCAN bus input for LAD AERO ECU. Output: CAN. Inputs for two fuel level senders, one Oil pressure sender (4-0mA), one Oil pressure sender (resistive), one Oil Temperature sender, one fuel pressure (0-5V) sender, one magnetic (or active shunt) current sensor. Weight 140g approx. Can be used only on instruments with CAN interface.

  • Four to twelve channel thermocouple amplifier, high resolution chopper stabilized system with full cold junction compensation and bow voltage correction to laboratory standards.
  • The thermocouple inputs can accept K-type or J-type thermocouples. (Note: RDAC-XF maximum 50mV, e.g. 1200°C type "K" and 850°C type "J")
  • Oil and Water temperature NTC input compatible with most oil temperature senders and the MGL water temperature sender.
  • Also accepts MGL precision semiconductor senders for water and oil temperature.
  • Use of thermocouple CHT probes on RDAC (instead of resistive probes) will free measurement channels CHT1/CHT2 for other use (i.e. fuel pressure, carb temperature, etc...)
  • Optional LM335 sensor based temperature sender to indicate ice warning. The sender is normally fitted to the outside of a carburetor, in close proximity to the throttle slider or valve or in the intake airflow.
  • Oil pressure sender input. 50 to 1000 ohms. Accepts most commercial oil pressure senders including those from VDO. Rotax uses a 200 ohm sender
  • TWO Fuel level sender input with extensive calibration functions provided to allow direct readout of fuel quantity corrected for tank shape and sender tolerances.
  • Fuel flow sender input(s). Can be used with most commercial liquid flow senders. Flow measurement without sender on injection systems by measurement of injector opening time.
  • Universal rev counter input(s). Can be used on a wide variety of engines using a variety of interface methods.
  • Ask for a Catalog/Price list

  • RDAC-XG

    MGL Stratomaster RDAC-XG

    RDAC-XG
  • The RDAC XG is a compact version of the RDAC XF Engine monitor module and can be used used with XTreme, Odyssey G2, Voyager G2 and all iEFIS instruments.
  • The RDAC XG provides a CAN bus interface. Further to this a RS232 interface is provided allowing third party (OEM) use of the RDAC system.
  • The RDAC XG is fully compatible with the larger RDAC XF subject to the following differences:
    • 8 Channels Thermocouple system (vs 12 channels in the RDAC XF)
    • 1 RPM input (vs 2 in the RDAC XF)
    • 1 Fuel flow sender input (vs 2 in the RDAC XF)
    • No manifold pressure sensor option
    • The RDAC XF uses convenient screw terminals for connection of senders while the RDAC XG uses DB9 and DB25 connectors with supplied pre-made cables.
  • Ref : MG_RDAC-XG 8 TC channels (CHT/EGT). Outputs: CAN & RS232
  • Download the installation manual (English) : RDAC-XG Installation manual (.PDF)
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  • RDAC-XF

    MGL Stratomaster RDAC-XFM

    RDAC-XF
  • The RDAC XF is the Engine monitor module used with Xtreme, Ultra, Enigma, Odyssey, Voyager and all iEFIS instruments.
  • AThe RDAC XF MAP has a precise silicon manifold pressure sender (usuable for any pressure in the 0 to 2.5 Bar (30psi) range (non aggressive gases or liquids only).
  • The RDAC XF provides an optically isolated communications interface compatible with all existing MGL EFIS systems. In addition it provides a CAN bus interface used with iEFIS systems. Further to this a RS232 interface is provided allowing thrid party (OEM) use of the RDAC system.
  • The RDAC XF provides up to 12 channels for thermocouple sensors (EGT,CHT), channels dedicated to NTC temperature and other probe types, oil and fuel pressure, fuel levels, dual fuel flow and dual RPM, manifold or boost pressure (RDAC XF MAP only)
  • The RDAC XF is quick and easy to install thanks to our well proven use of vibration proof moving cage wire terminals. These terminals allow quick attachement of wires and are very useful during typical sensor fault finding.
  • The RDAC XF replaces the long running RDAC XB, XD and XE versions with a more flexible, yet sturdy design in a strong, cast aluminium bulkhead mount device.
  • Ref : MG_RDAC-XFM 12 TC channels (CHT/EGT) with Manifold Pressure. Outputs: Opto-isolated, CAN & RS232
  • Download the installation manual (English) : RDAC-XF Installation manual (.PDF)
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  • RDAC-CAN (Rotax 912iS)

    MGL Stratomaster RDAC-CAN (Rotax 921iS)

    RDAC-CAN
  • The RDAC CAN module can be used with Odyssey/Voyager G2 EFIS systems, the XTreme EFIS and EMS as well as all iEFIS systems.
  • The RDAC CAN module connects to the EFIS CAN bus and the CAN bus of an engine ECU system.
  • The first model release caters for the Rotax 912iS engine which has two ECU systems and uses the CAN Aerospace data format.
  • The RDAC CAN connects to both data lanes of the Rotax 912iS (ECU A and ECU B) and continues to provide engine data from lane B in case of a lane A data failure depending on user selection of the DIP switches.
  • The RDAC CAN can be configured as "lane exclusive" - in this mode it can be fixed to a particular lane of the Rotax 912iS. The RDAC CAN emulates RDAC 1 (Lane A) and RDAC 2 (lane B). For twin engined applications, RDACs 3 and 4 can be emulated in similar fashion.
  • The RDAC CAN further provides two fuel level sender inputs, one fuel pressure sender input and a current sensor input.
  • The fuel level sender inputs are compatible with resistive fuel senders but can also be used with any fuel level sender that can provide a DC output in the 0-3V range (internal pull-up resistors used for the resistive level senders can be switched off).
  • The current sensor input provides for a system that provides a zero current voltage of 2.5V with a range of 2.5V above/below this value.
  • The fuel pressure sender input accepts a 0-5V or 0.5-4.5V sender input range such as the popular senders available from UMA.
  • Ref : MG_RDAC-CAN_912iS Outputs: CAN & RS232
  • Download the installation manual (English) : RDAC-CAN_912iS Installation manual (.PDF)
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  • RDAC-CAN (UL Power)

    MGL Stratomaster RDAC-CAN (Rotax 921iS)

    RDAC-CAN
  • The RDAC CAN module can be used with Odyssey/Voyager G2 EFIS systems, the XTreme EFIS and EMS as well as all iEFIS systems.
  • The RDAC CAN module connects to the EFIS CAN bus and the CAN bus of an engine ECU system.
  • The model caters for the UL Power range of engines engine which have two ECU systems and uses the CAN Aerospace data format as well as a RS232 interface.
  • The RDAC CAN connects to both ECUs of the UL Power engine (ECU A and ECU B) and continues to provide engine data from lane B in case of a lane A data failure depending on user selection of the DIP switches.
  • The RDAC CAN can be configured as "lane exclusive" - in this mode it can be fixed to a particular lane of the UL Power engine. The RDAC CAN emulates RDAC 1 (ECU A) and RDAC 2 (ECU B). For twin engined applications, RDACs 3 and 4 can be emulated in similar fashion.
  • The RDAC CAN also provides a RS232 interface that can be used with UL Power engines that do not provide a CAN interface. For engines that provide both CAN and RS232 both may be connected providing extra redundancy.
  • The RDAC CAN further provides two fuel level sender inputs and a current sensor input.
  • The fuel level sender inputs are compatible with resistive fuel senders but can also be used with any fuel level sender that can provide a DC output in the 0-3V range (internal pull-up resistors used for the resistive level senders can be switched off).
  • The current sensor input provides for a system that provides a zero current voltage of 2.5V with a range of 2.5V above/below this value.
  • Ref : MG_RDAC-CAN_ULP
  • Download the installation manual (English) : RDAC-CAN ULP Installation manual (.PDF)
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  • RDAC-CAN (MW B22)

    MGL Stratomaster RDAC-CAN (Rotax 921iS)

    RDAC-CAN
  • The RDAC CAN module can be used with Odyssey/Voyager G2 EFIS systems, the XTreme EFIS and EMS as well as all iEFIS systems.
  • The RDAC CAN module connects to the EFIS CAN bus and the CAN bus of an engine ECU system.
  • This model caters for the MW B22 engine which provides information via a CAN interface.
  • From the engines ECU the following information is available:
    • RPM
    • Oil temperature
    • Fuel pressure
    • Manifold pressure
  • Further to the above the interface povides its own monitoring for:
    • 2 x NTC temperature senders as fitted to the MW engine for water temperature monitoring.
    • 1 x Oil pressure sender input for the MW oil pressure sender.
    • 2 x Fuel level sender inputs (resistive or voltage output (0-3.3V)).
    • 1 x Fuel flow input (accepts flow senders or can be used to derive flow from injector monitoring.
    • 1 x Electrical current sensor (DC type centered at 2.5V such as the MGL magnetic current sender).
  • Ref : MG_RDAC-CAN_912iS Outputs: CAN & RS232
  • Download the installation manual (English) : RDAC-CAN MWB22 Installation manual (.PDF)
  • Ask for a Catalog/Price list

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  • RDAC-CAN (LAD AERO)

    MGL Stratomaster RDAC-CAN-LAD (Rotax 912 LAD AERO)

    RDAC-CAN LADAERO912S
  • The RDAC CAN module can be used with Odyssey/Voyager G2 EFIS systems, the XTreme EFIS and EMS as well as all iEFIS systems.
  • The RDAC CAN module connects to the EFIS CAN bus and the CAN bus of an engine ECU system.
  • This model caters for the LAD AERO kit on ROTAX912 engine, which provides information via a CAN interface.
  • From the engine's ECU the following information is available:
    • RPM
    • Water temperature
    • Manifold pressure
    • Fuel Flow
    • OAT
    • Volts
    • TPS%, Throttle Position Sensor
    • Lambda
    • Oil temperature (if oil temperature sender wired to ECU)
    • Oil pressure (if oil pressure sender wired to ECU)
    • Fuel pressure (if fuel pressure sender wired to ECU)
  • Further to the above the interface povides its own monitoring for:
    • 1 x input for the Rotax912 resistive temperature sender.
    • 1 x input for the Rotax912 4-20mA pressure sender.
    • 1 x input for the Rotax912 resistive pressure sender.
    • 1 x input for a fuel pressure (0-5V) sender.
    • 2 x Fuel level sender inputs (resistive or voltage output (0-3.3V)).
    • 1 x Electrical current sensor (DC type centered at 2.5V such as the MGL magnetic (or active shunt) current sender).
  • Internal switches allow source selection (ECU or measurement input) for following parameters:
    • Oil temperature
    • Oil pressure
    • Fuel pressure
  • Ref : MG_RDAC-CAN_LAD
  • Download the installation manual (English) : RDAC-CAN LAD Installation manual (.PDF)
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  • RDAC-VD

    MGL Stratomaster RDAC-VD

    RDAC-VD
  • This product is obsolete and replaced by the RDAC-XG
  • Amplificateur de précision pour QUATRE canaux Thermocouple EGT et CHT.
  • Peut utiliser des capteurs type K, J ou E, configuration à la masse ou isolée. (Note: maximum 50mV, c.a.d. 1200°C en type "K" et 850°C en type "J")
  • Compensation de soudure froide et correction basse tension.
  • Entrée 2 canaux NTC pour capteurs MGL ou Rotax 912/914.
  • Note : Le branchement de sondes CHT de type thermocouple sur un RDAC (au lieu des sondes résistives d'origine du ROTAX) permet de libérer les canaux de mesure CHT1/CHT2 pour d'autres utilisations (i.e. pression d'essence, température carbu, etc...)
  • Entrée capteur Température d'huile (Capteur optionnel faible coût).
  • Entrée capteur Pression d'huile configurable pour capteur 50 à 1000 ohms (Rotax utilise un capteur 200 ohm)
  • DEUX Entrées Niveau Carburant acceptant les capteurs de niveau standard. Des procédures de calibration permettent la lecture directe dans l'unité choisie et la compensation de forme de réservoir.
  • UNE entrée Capteur Débit Carburant. Mesure de débit sans capteur sur les moteurs à injection par mesure du temps d'ouverture injecteur.
  • UNE Entrée Compte-Tours Haute impédance, configurable pour une grande variété de moteurs.
  • RDAC-VD : 4 canaux CHT/EGT, sans capteur de pression d'admission. Sortie Opto-isolée. Poids 190g environ avec câble 3m.
  • Download the installation manual RDAC_V : Install manual RDAC_V (English .PDF)
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  • Legacy RDAC models



    RDAC VD 4 CHT/EGT channels, no manifold pressure sender. Obsolete. Replaced by RDAC-XG.
    RDAC X_B 12 CHT/EGT channels, no manifold pressure sender. Obsolete. Replaced by RDAC-XF.
    RDAC X_D 12 CHT/EGT channels, with manifold pressure sender. Obsolete. Replaced by RDAC-XFM.
    RDAC X_E 12 CHT/EGT channels, with manifold pressure sender, OEM version with ASCII output. Upon special demand.. Obsolete. Replaced by RDAC-XFM.
  • You wish to integrate a RDAC to your aplication? Download the RDAC_X OEM protocol manual (English): RDACX_OEM_EN.pdf
  • Ref: MG_RDACV_D 4 CHT/EGT channels, no manifold pressure sender
  • Ref: MG_RDACX_B 12 CHT/EGT channels, no manifold pressure sender. Obsolete. Replaced by RDAC-XF.
  • Ref: MG_RDACX_D 12 CHT/EGT channels, with manifold pressure sender. Obsolete. Replaced by RDAC-XFM.
  • Ref: MG_RDACX_E OEM 12 CHT/EGT channels, with manifold pressure sender, ASCII output Obsolete. Replaced by RDAC-XFM.
  • Ref: MG_RDACX_FM 12 CHT/EGT channels, with manifold pressure sender, for iEFIS, CAN & RS232. With its opto-isolated output, it can be used on Enigma/Voyager/Odyssey as a RDAC-XD (Note: X-FM's channels not present on X-D are not supported on Enigma/Voyager/Odyssey)

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  • RDAC Logger

    MGL Stratomaster RDAC Logger

    RDAC-VD_SD RDAC-VD_SD
  • This product is not manufactured anymore. The RDAC-VD has been replaced by the RDAC-XG
  • SD Card data logger option for RDACx.
  • Has to be ordered with RDACx.
  • All data measured by the RDAC are logged to the SD card.
  • New file at each power up (or Reset)
  • About 800Kb per hour, about 1250 hours on a 1Gb SD Card.
  • Available with or without battery backed up Real Time Clock, which allows to store date and time of files and data blocks.
  • Ref : MG_RDACx_SD - SD Recorder option for RDAC (without battery backed up clock).
  • Ref : MG_RDACx_SDRTC - SD Recorder option for RDAC (with battery backed up clock).
  • Ask for a Catalog/Price list

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