[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"$fMLPeh1VB5It7rCtktMO-m7sdwN049g1fDMetljtsKyU":3,"$fFKpNWZVVYTBYE3vPJn_-n27owUoP9TxN8PTy0yh8W6Y":17,"shop-vat-rates":102},{"article":4},{"id":5,"slug":6,"title":7,"summary":8,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":14,"bodyMd":15,"legacy":16,"createdAt":14},"43d23b57-4681-4d80-9aad-ba64fd471812","navia-emu-alerts-fuel-computer-and-logbook","NAVIA EMU in use: master warning and caution, the fuel computer, calibration and the engine logbook","How the annunciators behave and what acknowledging one does, what a missing reading means in flight, the fuel computer and its limits, calibrating a tank point by point, and why the factory thresholds are not your engine limits.","public",true,"9d0897b6-42d0-4643-8ceb-e8a02ce4a854","navia","NAVIA","2026-09-10T11:36:59.779Z","Once the sensors are in and the channels declared, the NAVIA EMU works on its own. It measures continuously, colours every value according to the thresholds you set, drives the panel annunciators, computes fuel used and endurance, and records the flight. Nothing has to be started, and the Configuration Portal does not need to be open.\n\nThis article covers what the system does with those numbers in flight, and the three setup jobs that decide whether it does anything useful: the alert thresholds, the fuel tank calibration, and the engine RPM minimum that quietly governs the logbook. The portal is a setup tool, not a cockpit instrument — avoid opening it in flight, and never save configuration changes there while airborne, because thresholds and calibrations take effect immediately and would change the alerting you are flying with.\n\n## Master Warning and Master Caution\n\nWhere the installation includes panel annunciators, the EMU drives them straight from the configured thresholds.\n\n- A parameter entering its **yellow** range lights the amber **Master Caution**.\n- A parameter entering its **red** range lights the red **Master Warning**.\n- A **failed sensor** on a configured channel also lights the Master Caution. A lost indication is a condition in its own right, not a non-event.\n\nPressing the corresponding push-button **acknowledges** the alert: the lamp goes out while the condition persists. The acknowledgement re-arms itself when the condition clears, so the next excursion — the same parameter or any other — lights the lamp again. The parameter that caused the alert stays coloured on the display pages throughout, so acknowledging a lamp never hides the condition behind it. On a NAVIA display the same event appears as a `MASTER WARNING` or `MASTER CAUTION` banner at the top of the screen.\n\nThe annunciators are supervised: if the alerting inside the unit stops, the Master Caution lights by itself. A dark panel therefore genuinely means \"no active alert\", never \"alerting failed silently\".\n\nOn any alert, identify which parameter is out of range on the engine page, cross-check it against the aircraft's own engine instruments, and follow the procedure in the flight manual. Acknowledge the lamp after you know the cause, not before.\n\n> An indication in the red range may be a real engine problem or a failed sensor. Treat it as real until proven otherwise: confirm it against the aircraft's primary instruments and against the other engine parameters, remembering that a genuine overheat normally shows on more than one channel.\n\n## When a reading goes missing in flight\n\nA broken sensor, a chafed wire or a loose connector eventually produces nonsense rather than nothing. When a channel delivers several consecutive bad readings, the EMU marks it invalid, shows it as `N\u002FA` instead of a number, and stops generating alerts from it. Everything else carries on: the other channels keep working, their alerting stays live, and the flight keeps recording.\n\nNote which channel failed and roughly when — the log file makes it easy to find afterwards — and cover the missing parameter with the aircraft's own instruments for the rest of the flight. Investigate on the ground, not in the air. A channel showing `N\u002FA` is not an exceedance, which is why it lights the Master Caution rather than the Master Warning: no limit is known to be exceeded, but you have lost an indication and deserve to know.\n\n## The fuel computer\n\nWith a fuel flow channel configured, the EMU keeps two derived values alongside the measured ones, both shown in the `Fuel computer` card and on the displays.\n\n- **Fuel used** — consumption since the totaliser was last reset, integrated from net flow, which is flow in minus return flow where a return channel exists. The counter survives power cycles. Reset it after refuelling with `Reset fuel used`, exactly like a trip odometer.\n- **Endurance** — remaining sensed fuel divided by the current burn rate, in hours and minutes. It stays blank while the engine is not burning fuel, below roughly 1 l\u002Fh, so it cannot show absurd figures during taxi.\n\nEndurance alerts on fixed boundaries that you cannot edit: yellow below 45 minutes, red below 30 minutes at the current burn rate. A red endurance lights the Master Warning like any other red-range parameter.\n\n> Both values inherit every error of the flow transducer and the tank probes, and endurance assumes the current burn rate continues — it shortens the instant you add power. Plan fuel by time and consumption as the flight manual requires, and use the fuel computer as a cross-check, never as the plan.\n\n## Calibrating a fuel tank\n\nTank geometry makes sender output non-linear, so every fuel quantity channel has to be taught its own tank against known amounts. The `Calibration` page appears in the navigation bar only when at least one fuel quantity channel is configured — if you cannot find it, that is why.\n\n![The NAVIA EMU fuel tank calibration page: choosing the aircraft attitude before pressing Start Calibration](\u002Fsite\u002Fimg\u002Fkb\u002Fnavia-emu-calibration.webp)\n\n1. Select the tank to calibrate.\n2. Select the attitude case — `Tail Up (Level Flight)` or `Tail Down (On Ground)`. Taildraggers get both.\n3. Press `Start Calibration` and choose the units you will work in.\n4. Start with a genuinely **empty tank**: enter `0` and press `Add Point` while the live sensor value is shown.\n5. Add fuel in known increments, entering the running total and pressing `Add Point` after each, up to full.\n6. Press `Finish & Save`. The EMU builds the curve from the points you captured.\n\nPoints can be removed individually while you are calibrating. Use more increments where the sender is least linear — for most tanks that means the first and the last quarter, which is also where an error matters most.\n\n## Alert thresholds\n\nEach measurement group carries six boundaries — `Minimum`, the four colour transitions, and `Maximum` — and they define the coloured ranges shown in the portal, on the displays, and driving the annunciator outputs. Zone checkboxes turn colour zones on and off, because not every measurement needs all of them: fuel quantity typically has no upper caution or upper red at all. Numeric fields set each boundary in the currently displayed unit, or you can drag the markers on the bar directly.\n\n![Editing alert thresholds in a NAVIA EMU dashboard panel](\u002Fsite\u002Fimg\u002Fkb\u002Fnavia-emu-thresholds.webp)\n\nNothing is stored until you press `Save` in the panel header. The editor flags implausible entries, such as boundaries out of order, but it will not stop you saving them.\n\n> Threshold values drive cockpit warnings directly. Verify every one against the engine manufacturer's published operating limitations before flight.\n\n## The factory defaults are not your limits\n\nA measurement group gets these values when it is first configured. They exist so a freshly configured channel draws a sensible bar, and for no other reason.\n\n| Measurement | Min | R→Y | Y→G | G→Y | Y→R | Max |\n|---|---|---|---|---|---|---|\n| CHT (°C) | 100 | 108 | 130 | 220 | 242 | 250 |\n| EGT (°C) | 500 | 520 | 580 | 820 | 880 | 900 |\n| TIT (°C) | 500 | 520 | 580 | 820 | 880 | 900 |\n| Oil temperature (°C) | 75 | 79 | 90 | 135 | 146 | 150 |\n| Manifold temperature (°C) | 5 | 6 | 9 | 26 | 29 | 30 |\n| Coolant temperature (°C) | 50 | 53 | 60 | 90 | 97 | 100 |\n| Oil pressure (hPa) | 0 | 400 | 1600 | 6400 | 7600 | 8000 |\n| Manifold pressure (hPa) | 500 | 535 | 640 | 1060 | 1165 | 1200 |\n| Fuel pressure (hPa) | 0 | 150 | 600 | 2400 | 2850 | 3000 |\n| Coolant pressure (hPa) | 0 | 150 | 600 | 2400 | 2850 | 3000 |\n| Fuel quantity (l) | 0 | 10 | 25 | 100 | — | — |\n| Fuel in (l\u002Fh) | 20 | 22 | 27 | 61 | 66 | 68 |\n| Fuel return (l\u002Fh) | 6 | 7 | 8 | 19 | 20 | 21 |\n| Engine RPM | 800 | 895 | 1180 | 2320 | 2605 | 2700 |\n| Rotor RPM | 92 | 103 | 125 | 278 | 300 | 311 |\n| Voltage (V) | 12.0 | 12.1 | 12.4 | 13.6 | 13.9 | 14.0 |\n| Current (A) | −10 | −8 | −4 | 4 | 8 | 10 |\n| OAT (°C) | −40 | — | — | — | — | 55 |\n\n> These are generic starting points, not limits for your engine. Replace every one of them with the limits published in your engine's operating manual before flight.\n\nOutside air temperature is informational by default: its caution and warning zones are disabled and the outer values only scale the bar. Fuel quantity has three zones rather than five, which is why its last two columns are empty. Values are listed in the EMU's base units and converted to whatever unit you have selected for that group.\n\n## The engine logbook, Hobbs and Tach\n\nRecording is automatic. For every engine run the EMU creates a logbook entry with the daily flight number, engine start and stop, blocks-off and blocks-on, takeoff and landing times, plus a data file sampling every configured channel. Entries are listed on the `Logger` page and downloaded as CSV, which opens straight into a spreadsheet. The EMU also keeps **Hobbs time** — engine-on hours — and **Tach time**, weighted by RPM against your configured cruise RPM.\n\nAll of it hangs on one number. Recording starts when engine RPM rises above the `Minimum` boundary configured for the Engine RPM channel, which makes that value far more than a display limit: set it above windmilling and starter speed, and below idle.\n\n> With no Engine RPM channel configured, or its `Minimum` set wrongly, flights may not be recorded. Check the logbook after the first flight rather than discovering the gap a season later.\n\nDownloaded logs are the most underrated maintenance tool in the system. Trends in CHT and EGT spread, in oil pressure, and in charging current usually show a developing problem long before anything crosses a threshold.\n\n## When the library has no entry for your sender\n\nMost senders are already in the built-in sensor library, selected by model number on the `Config` page. Where yours is not — bus voltage and many fuel quantity senders have no built-in entry — press `Create New` on the `Sensors` page, name the sensor, tick the measurement types it can serve, and choose the port group that matches its electrical type, because the group also tells the EMU how to drive the input. Then enter the transfer characteristic as a table of interpolation points, pairing raw electrical value with actual physical value; the EMU interpolates linearly between them, so use more points where the curve bends. With the channel already wired, `Autofill From Sensor` reads the live raw value into the field for you.\n\nFuel quantity senders are the exception: do not give them interpolation points here. They are calibrated tank by tank on the `Calibration` page.\n\n## Backups, updates and starting over\n\nUnder `Settings › Local File Management` the complete configuration — sensors, positions, thresholds, custom curves, calibrations, units, protocols — exports to a single JSON file and imports back onto the same or another EMU. Export after commissioning and keep the file with the aircraft records; export again before any firmware update or configuration experiment. Preparing one aircraft and importing onto its sister ships is the fastest way to configure a fleet. Importing loads the file into the portal only, so press `Save` on each affected page afterwards to write it to the device.\n\nFirmware arrives as a single package containing all parts of the system, uploaded on the `Update` page. In a complete NAVIA system the Core Pro distributes updates to connected devices instead, in which case follow the system update procedure.\n\n> Keep the system powered for the whole update. Interrupting power partway through can leave the device inoperative.\n\nA saved configuration is also what makes a factory reset survivable: the reset wipes channels, thresholds, calibrations, custom sensors and the Hobbs and Tach readings, and re-importing restores everything except those two counters, which you type back in by hand.\n\n## When something is not right\n\n| Symptom | Probable cause | Remedy |\n|---|---|---|\n| Hotspot not visible | EMU not powered, or it has joined a saved network | Check system power; look for it on your local network instead |\n| Portal does not open after joining the hotspot | It never opens by itself | Browse to `192.168.4.1` |\n| Hotspot visible but the portal address does not load at all | The portal is served from the device's storage card | Power-cycle the system; if it persists, contact support |\n| Portal loads but shows no data | Browser holding an old session | Reload the page; reconnect to the network |\n| Update page rejects the package | Wrong or damaged file | Use the unmodified `.zip` from LX navigation |\n| Dashboard says no sensors configured | No channels defined yet | Configure them on `Config` |\n| A reading is implausible | Wrong sensor model selected for the channel | Match the library entry to the sender, or build a custom sensor |\n| `Port is already used` on a sensor card | Two channels assigned to the same input | Correct one of them |\n| Changes lost after leaving a page | The card's `Save` was never pressed | Press `Save` on every card you touched |\n| Imported configuration not active | Import loads into the portal only | Press `Save` on the affected pages |\n| Sensor list empty for a measurement type | No built-in entry exists for it | Create a custom sensor, then select it |\n| Calibration page missing | No fuel quantity channel configured | Add the channel first |\n| Logbook empty after a flight | Engine RPM channel missing, or its `Minimum` set too high | Configure the channel; set `Minimum` below idle RPM |\n\nIf it persists, export the configuration, note the serial number, and [talk to us](\u002Fcontact).\n\n## Where to go next\n\n- The sensor end of the installation, and what makes a channel trustworthy: [installing CHT, EGT, RPM, fuel-flow and fuel-quantity sensors](\u002Fkb\u002Farticle\u002Fnavia-emu-sensor-installation).\n- The reasoning behind the numbers: the Academy articles on [engine monitoring](\u002Facademy\u002Fengine-monitoring) and [fuel planning](\u002Facademy\u002Ffuel-planning).\n- Firmware, databases and the rest of the system: [updates, databases and remote support](\u002Fkb\u002Farticle\u002Fnavia-updates-databases-and-remote-support) and the [seasonal firmware check](\u002Fkb\u002Farticle\u002Ffirmware-databases-season-check).\n- The device itself: [NAVIA EMU](\u002Fnavia\u002Femu).\n",null,{"categories":18,"articles":45,"search":101},[19,25,28,34,39],{"id":20,"slug":21,"name":22,"description":16,"sortOrder":23,"articleCount":24},"42232637-6088-4100-9314-0b4986098818","getting-started","Getting started",20,7,{"id":11,"slug":12,"name":13,"description":16,"sortOrder":26,"articleCount":27},25,10,{"id":29,"slug":30,"name":31,"description":16,"sortOrder":32,"articleCount":33},"92b87517-c814-4237-b180-19df9cb80b16","connectivity","Connectivity",30,3,{"id":35,"slug":36,"name":37,"description":16,"sortOrder":32,"articleCount":38},"db776f9a-4f67-42bf-94bc-171c93f10cea","service-repairs","Service & repairs",1,{"id":40,"slug":41,"name":42,"description":16,"sortOrder":43,"articleCount":44},"48e22b59-26c1-477f-b136-3d3728b6dc22","device-guides","Device guides",40,12,[46,52,58,64,70,76,82,88,89,95],{"id":47,"slug":48,"title":49,"summary":50,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":51},"edb2d23e-9cd8-48c9-abbc-365420c26247","navia-system-architecture","NAVIA system architecture: how the pieces fit together","Hub, Core, Sense, Displays, Traffic, UPS, EMU and Grip — what each unit does, how power and data flow over one cable per device, and how to plan a system before ordering.","2026-09-10T11:36:59.617Z",{"id":53,"slug":54,"title":55,"summary":56,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":57},"2e027321-055d-4b7a-9c2a-9c5036e8cc62","navia-commissioning-a-new-aircraft","NAVIA: commissioning a new aircraft","The thirteen steps from wired hardware to a configured aircraft: registering the Core to your account, aircraft identity and configurations, the polar, flight envelope and flaps, weight and balance, and the checks before the first flight.","2026-09-10T11:36:59.710Z",{"id":59,"slug":60,"title":61,"summary":62,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":63},"47957da9-8639-4832-9d76-3c5ed57fd9dc","navia-accounts-roles-profiles-and-screens","NAVIA accounts, roles, display profiles and your phone as a screen","Personal accounts that follow you to any NAVIA aircraft, the four roles and how ownership is established in LX Cloud, pilot in command, screen and login types, display profiles, and adding a phone or tablet as an extra screen.","2026-09-10T11:36:59.718Z",{"id":65,"slug":66,"title":67,"summary":68,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":69},"941c6fbe-cc2a-4bc7-b698-4bcffbf8475f","navia-cloud-sync-offline-and-flight-recording","NAVIA and LX Cloud: synchronisation, working offline, flight recording and the logbook","What belongs to you and what belongs to the aircraft, when synchronisation runs and why it never runs in flight, flying with no internet at all, and how a recorded flight reaches the logbook and the cloud.","2026-09-10T11:36:59.724Z",{"id":71,"slug":72,"title":73,"summary":74,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":75},"51cc50eb-1866-421f-a066-d67a90faa095","navia-updates-databases-and-remote-support","Updating NAVIA: Core, ecosystem devices, databases and remote support","The update page and its three channels, reverting a version, why connected devices update themselves from the Core, keeping airspace and charts current, and the remote-support switch that stays off until you turn it on.","2026-09-10T11:36:59.734Z",{"id":77,"slug":78,"title":79,"summary":80,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":81},"e9e61fe3-3e10-4cc7-98a3-52450b11f313","navia-troubleshooting","NAVIA troubleshooting: warnings, alarms and status-bar items","What each status-bar item reports, the full list of warnings and alarms with what triggers them, and a symptom-cause-fix table for the sixteen things most likely to puzzle you — several of which are not faults.","2026-09-10T11:36:59.745Z",{"id":83,"slug":84,"title":85,"summary":86,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":87},"7698e2e3-2195-4b46-8ca3-2067e17da186","navia-emu-sensor-installation","NAVIA EMU: installing CHT, EGT, RPM, fuel-flow and fuel-quantity sensors","The thermocouple rules that govern everything, where CHT and EGT probes go and where they must not, RTD and pressure senders, fuel quantity and flow, RPM pickups, and two worked engine examples.","2026-09-10T11:36:59.755Z",{"id":5,"slug":6,"title":7,"summary":8,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":14},{"id":90,"slug":91,"title":92,"summary":93,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":94},"af207643-1be9-46af-9613-c1cf9fb9c1a8","navia-sense-igc-recorder-and-calibration","NAVIA Sense: the IGC recorder, calibration and the compass swing","The integrated IGC recorder and its security seal, engine noise and when an external means-of-propulsion sensor is required, the Certificate of Calibration that replaced the barochart, and a compass that calibrates itself in flight.","2026-09-10T11:36:59.793Z",{"id":96,"slug":97,"title":98,"summary":99,"visibility":9,"isPublished":10,"categoryId":11,"categorySlug":12,"categoryName":13,"updatedAt":100},"6d3a78b9-2140-4bf8-ba3e-164ddf82b29c","navia-traffic-setup-and-firmware","NAVIA Traffic: FLARM\u002FADS-B setup, firmware modules and the range analyser","Two modules updated separately, why obstacle databases and licence files are tied to your serial number, configuring the unit from its portal, connecting it to a Core Pro, and reading the range analyser honestly.","2026-09-10T11:36:59.803Z",false,{"AT":23,"BE":103,"BG":23,"CY":104,"CZ":103,"DE":104,"DK":26,"EE":105,"ES":103,"FI":106,"FR":23,"GR":106,"HR":26,"HU":107,"IE":108,"IT":105,"LT":103,"LU":109,"LV":103,"MT":110,"NL":103,"PL":108,"PT":108,"RO":104,"SE":26,"SI":105,"SK":23},21,19,22,24,27,23,17,18]