Starlink Dishy Not Moving? Troubleshooting Guide
Is your Starlink satellite dish stuck pointing straight up, horizontal, or refusing to tilt? Discover comprehensive mechanical, stow mode, gear binding, and motor troubleshooting fixes for Gen 1, Gen 2 Actuated, and Gen 3 terminals.
One of the most defining characteristics of standard Starlink satellite installations—specifically the first-generation round dish and the second-generation rectangular actuated terminal—is their electromechanical self-aiming capability. When first unpacked, mounted, and supplied with Power over Ethernet (PoE), an actuated Starlink dish (affectionately dubbed "Dishy McFlatface") executes an automated initialization sequence: it tilts horizontally toward the sky, rotates on its vertical mast axis, scans for GPS and orbital ephemeris beacons, and finally locks its physical tilt angle toward the optimal regional satellite density corridor (typically tilted north in the Northern Hemisphere and south in the Southern Hemisphere).
However, when an actuated Starlink terminal remains completely immobile after boot—stuck pointing straight up at the zenith, locked in the flat stow position, or frozen at an awkward diagonal angle—signal reception degrades precipitously or drops to zero. Users frequently panic, fearing that internal drive motors have burned out or that planetary gears have stripped. While mechanical failures can occur, the vast majority of immobile dish incidents stem from firmware initialization hangs, insufficient DC power delivery over long Ethernet runs, thermal lockout safety protocols, or minor physical binding within the mast collar.
It is equally critical to differentiate between actuated terminals and the newer fixed-orientation models. With the widespread deployment of the Gen 3 Standard (Kickstand) terminal, the Starlink Mini portable dish, and the High Performance Enterprise flat panels, SpaceX has completely eliminated internal electric tilt motors from several flagship models. Understanding your exact hardware architecture is the first prerequisite before attempting any physical orientation or motor troubleshooting.
Common Symptoms & Error Indicators
If you observe two or more of these field behaviors, follow the step-by-step engineering remediation protocols below:
- The Gen 2 actuated dish remains perfectly horizontal (stowed flat position) or pointing 90 degrees upward after being plugged in for over 30 minutes without tilting.
- The Starlink mobile app displays an alert banner reading "Motors Stuck," "Mast Obstructed," or "Tilt Sensor Fault" under the hardware diagnostics tab.
- You hear a clicking, buzzing, or grinding noise emanating from the base pivot joint of the dish when you initiate a manual "Stow" or "Unstow" command in the app.
- The dish tilted successfully upon initial installation but failed to re-orient itself after a major SpaceX seasonal constellation alignment update or severe windstorm.
- The app indicates "Alignment Poor - Adjust Dish Orientation," but when you attempt to use the Stow/Unstow controls, the dish refuses to respond to software commands.
- A newly purchased Gen 3 Standard Kickstand or Starlink Mini terminal does not move automatically, causing confusion for users transitioning from older motorized models.
Pre-Flight Hardware Checklist
Before initiating deep firmware resets or hardware RMA requests, verify these physical environmental conditions:
- Identify your exact hardware generation: check if your dish has a built-in mast mounting pole (Gen 1 Round / Gen 2 Rectangular Actuated) or a fixed rear kickstand/mount without motors (Gen 3 / Mini).
- Inspect the mast insertion joint where the dish stem slides into the metal or plastic mounting base; ensure no rocks, ice chunks, or shipping tape are jamming the rotation collar.
- Check the power supply LED indicator (on Gen 1 power bricks or Gen 2/3 routers); solid white illumination is required to supply the 75W–100W peak current required for motor actuation.
- Verify that the dish mast is mounted within 5 degrees of vertical plumb using a bubble level; excessive tilt angle prevents internal gravity and accelerometer sensors from calibrating.
- Inspect the exterior cable run for splices, couplers, or wire damage that could cause voltage drop, leaving enough power for Wi-Fi but insufficient voltage to drive tilt motors.
Hardware Evolution: Motorized Actuated Dishes vs. Fixed Phased-Array Panels
Before executing electromechanical diagnostics, you must confirm whether your Starlink dish actually contains internal motors. Across the evolution of SpaceX's consumer and commercial hardware, the design philosophy regarding dish aiming has undergone a radical transformation:
1. Motorized Actuated Models (Gen 1 Round & Gen 2 Standard Rectangular): These terminals incorporate internal brushless DC motors, planetary gear reduction sets, and integrated tilt/orientation sensors (accelerometers and magnetometers). When powered, the internal computer calculates the dish's geographical coordinates via GPS and commands the motors to tilt the physical panel toward the highest concentration of passing LEO satellites. These models WILL and MUST move during boot and stow operations.
2. Fixed Non-Motorized Models (Gen 3 Standard Kickstand, Starlink Mini, & High Performance Flat Panels): To increase mechanical reliability, reduce manufacturing costs, and eliminate moving parts susceptible to ice freezing or mechanical wear, SpaceX stripped all tilt motors from Gen 3, Mini, and Flat High Performance terminals. These dishes rely entirely on a wider 110-degree electronic phased-array field of view. They DO NOT MOVE AUTOMATICALLY. If your Gen 3 or Mini dish is not moving, this is 100% normal operational behavior—you must manually point it using the app's Alignment tool.
Attempting to force a motorized Gen 1 or Gen 2 dish to turn by hand will strip the internal gears and permanently void your warranty. Conversely, waiting for a Gen 3 or Mini dish to aim itself will leave you waiting forever.
Key Engineering Principles
- Never Force Motorized Joints: Never manually push, twist, or force a Gen 1 or Gen 2 actuated dish to tilt by hand. The gear ratio is extremely high, and manual torque will shear the plastic drive teeth.
- Gen 3 & Mini Require Manual Aiming: Use the AR alignment compass tool in the Starlink mobile app to manually rotate and tilt fixed-mount dishes during initial setup.
- Stow Mode Purpose: On motorized dishes, "Stow Mode" commands the motors to tilt the dish completely flat (parallel to the ground) to allow for safe packing into shipping boxes or RV transport cases.
The Mechanics of Motor Failure: Voltage Drops, Gear Binding, and Thermal Lockout
When a motorized Gen 1 or Gen 2 actuated terminal fails to orient itself upon startup, the failure mode can be traced to three electromechanical domains within the system architecture:
First, Power over Ethernet (PoE) Voltage Drop is the leading cause of apparent motor failure. Actuating the tilt and rotation motors requires a momentary current spike that can draw between 60 to 85 watts of DC power from the router or power brick. If you are using an aftermarket Ethernet extension cable that is over 150 feet long, utilizes thin 26 AWG conductors, or includes unshielded RJ45 couplers, electrical resistance causes significant voltage drop. While the remaining 35V–40V is sufficient to boot the internal Linux computer and Wi-Fi radio, it falls below the minimum voltage threshold required by the motor driver ICs, causing the motors to stall silently without moving.
Second, Physical Gear Binding and Ice Encasement occur in harsh winter climates or dusty desert environments. If freezing rain or melting snow drips into the pivot collar between the dish stem and the mast socket and subsequently refreezes overnight, the mechanical joint becomes locked by solid ice. When the dish attempts to boot in the morning, internal current sensors detect excessive motor load (stall torque) and immediately shut down power to the drive motors to prevent thermal burnout.
Third, Thermal Protection Lockout occurs when a terminal is stored inside a hot vehicle or direct summer sunlight before installation. If internal chassis temperatures exceed 140°F (60°C), internal safety firmware disables all motor actuation until the internal temperature sensors report cooling within safe operational parameters.
| Hardware Model | Motorized? | Normal Boot Movement | Stow Method | Primary Stuck Cause |
|---|---|---|---|---|
| Gen 1 Round (Rev 1) | Yes (Dual Axis) | Tilts horizontal, rotates 360°, tilts to sky | App Stow Button / Lay flat 15m | Power brick capacitor aging / Voltage drop |
| Gen 2 Rectangular Actuated | Yes (Dual Axis) | Tilts horizontal, rotates, aims North/South | App Stow Button / Face down 15m | Mast collar binding / Aftermarket cable extensions |
| Gen 3 Standard Kickstand | No Motors | Zero movement (completely static) | Manual fold kickstand by hand | N/A – Manual user alignment required in App |
| Starlink Mini (Portable) | No Motors | Zero movement (completely static) | Manual fold integrated stand | N/A – Manual AR compass alignment required |
| High Performance Flat | No Motors | Zero movement (completely static) | Fixed wedge mount bolt-down | N/A – Designed for stationary or marine flat mount |
Step-by-Step Troubleshooting Protocol (12 Steps)
Verify Hardware Generation: Confirm Whether Your Model Actually Has Motors
The most frequent customer service inquiries regarding immobile dishes come from owners of Gen 3 Standard Kickstand or Starlink Mini systems who expect automated self-aiming. You must confirm that your hardware is engineered to move before proceeding with motor diagnostics.
Action Items:
- 1Examine the back of your Starlink dish antenna.
- 2If your dish has a rigid, non-removable metal mast stem protruding from the bottom center or lower edge that plugs into a mounting base, you own a motorized Gen 1 or Gen 2 Actuated terminal.
- 3If your dish features a folding metal kickstand on the rear flat surface or slides into a simple slip-on pipe adapter without a vertical mast neck, you own a non-motorized Gen 3 Standard or Starlink Mini terminal.
- 4If you own a Gen 3 or Mini terminal, do not wait for motors to move. Open the Starlink app, select "Alignment," and manually rotate the dish until the on-screen target turns green.
Execute the Software Stow and Unstow Calibration Cycle in the Starlink App
When a motorized Gen 2 dish experiences a firmware glitch or loses its tilt sensor calibration during a power outage, sending a manual "Stow" and subsequent "Unstow" command forces the internal Linux operating system to recalibrate its accelerometer zero-point and test motor H-bridge drivers.
Action Items:
- 1Open the official Starlink mobile app while connected to your Starlink Wi-Fi network.
- 2Tap the "Settings" gear icon on the main dashboard and scroll down to the "Starlink" hardware section.
- 3Tap the button labeled "Stow Starlink" and confirm the action when prompted.
- 4Observe the dish from a distance; within 30 to 60 seconds, the motorized dish should tilt forward until the flat face is pointing directly at the ground or parallel to the mast.
- 5Once stowed, wait 2 minutes, then return to the app settings and tap "Unstow" (or simply unplug the power cord for 30 seconds and plug it back in). The dish will execute a fresh sky scan and orient itself correctly.
Perform the "Manual Face-Down" Physical Stow Trick for Unresponsive Dishes
If your motorized dish is unresponsive to software commands in the app and remains stuck pointing upward, you can trigger a hardwired internal safety override known as the "Face-Down Stow Trick." Internal accelerometers are programmed to automatically stow the dish if they detect the antenna has been placed face-down on a flat surface.
Action Items:
- 1Unplug the AC power cord from your Starlink router or power brick to turn off the system completely.
- 2Carefully lift the dish out of its outdoor mount or tripod and carry it to a clean, flat, soft surface (such as a lawn, rug, or padded workbench).
- 3Place the dish completely FACE DOWN so that the flat white antenna surface is resting flat against the ground or rug.
- 4While keeping the dish face-down, plug the AC power cord back into the wall to boot the system.
- 5Leave the dish face-down and untouched for exactly 15 minutes. The internal accelerometers will detect the inverted orientation and automatically command the tilt motors to draw the mast stem into the stowed position.
- 6Once stowed, unplug power, reinstall the dish upright in its outdoor mount, and reapply power to initiate a normal automated orientation cycle.
Inspect and Clear Mast Joint Binding, Debris, and Winter Ice Accumulation
The motorized tilt and rotation mechanism relies on a clean, unobstructed clearance gap between the moving dish stem and the stationary mounting socket. Tree twigs, wind-blown gravel, wasp nests, or frozen ice collars will physically lock the joint, triggering motor stall current protection.
Action Items:
- 1Power down the Starlink terminal by disconnecting the AC plug.
- 2Inspect the base where the mast inserts into the metal tripod, roof mount, or pole adapter.
- 3If ice or packed snow has formed a bridge across the moving pivot joint, do not strike the dish with a hammer or tool. Pour warm (not boiling) water over the mast base or use a hair dryer on medium heat to melt the ice collar.
- 4Remove any twigs, leaves, or insect nests lodged inside the rotation gap.
- 5Verify that the mast mounting locking snap-button is aligned with the hole in the adapter and that the dish stem can rotate freely without scraping against aftermarket mounting hardware.
Audit Power Over Ethernet (PoE) Cable Length and Eliminate Aftermarket Extensions
If your actuated dish powers on (Wi-Fi works and app shows connected) but displays "Motors Stuck" or never tilts, the tilt motors are starving for voltage. Standard Starlink cables are engineered with thick 24 AWG copper conductors to deliver 100W PoE over 50 or 75 feet. Using aftermarket couplers or thin cables causes severe voltage drop.
Action Items:
- 1Examine the entire length of the cable running from your dish to the router.
- 2If you have installed any RJ45 Ethernet female-to-female couplers, outdoor junction boxes, or third-party Cat5e/Cat6 extension cables, remove them immediately.
- 3Connect the original, unmodified 50-foot or 75-foot SpaceX proprietary cable directly between the dish receptacle and the router/power supply port.
- 4If a longer run is required for your installation, you must purchase the official SpaceX 150-foot Gen 2 Replacement Cable, which features thicker internal copper gauges specifically calculated to prevent motor voltage drop.
Verify Vertical Plumb Alignment of the Mounting Mast Using a Bubble Level
Motorized Starlink terminals utilize internal gravity accelerometers to calculate horizon level and determine how many degrees to tilt the motor shaft. If your roof mount, pole mount, or wall J-pipe is installed at a severe leaning angle (greater than 10 to 15 degrees off vertical plumb), the tilt calibration algorithm will fail.
Action Items:
- 1Place a standard 9-inch torpedo bubble level or digital smartphone level against the vertical metal pipe or mast supporting your Starlink dish.
- 2Check the vertical plumb check in two directions: North-to-South and East-to-West.
- 3If the mounting pole is leaning by more than 5 degrees, loosen the mounting bracket bolts and shim or adjust the pipe until the bubble sits perfectly centered between the indicator lines.
- 4Tighten all mounting hardware securely and reboot the Starlink system to allow the accelerometers to re-establish a true horizontal baseline.
Check for Motor Thermal Shutdown in Extreme Summer Heat
In extreme desert environments (such as Arizona, Texas, or inland Australia) where ambient summer temperatures exceed 110°F (43°C), direct solar radiation on the dark grey rear chassis of a Gen 2 dish can push internal electronics above their 140°F (60°C) thermal safety threshold. The system will disable motor drivers until cooled.
Action Items:
- 1Open the Starlink App and check the alerts section on the home screen for "Thermal Throttling" or "High Temperature Warning."
- 2If the dish has been stored inside a hot car trunk or shipping box in direct sunlight immediately prior to setup, move the dish into an air-conditioned room or shaded area for 30 minutes to cool down.
- 3Never spray ice water directly onto a scorching hot Starlink dish, as rapid thermal shock can crack the exterior polycarbonate radome sealing seal.
- 4Once internal temperatures drop below 120°F (49°C), reinstall the dish outside and apply power; motor actuation will automatically resume.
Check Debug Data for "Tilt Sensor Fault" or "Motor Current Fault" Flags
The Starlink App Advanced Debug Data menu exposes low-level hardware telemetry generated by the dish's internal microcontroller. Checking these exact telemetry strings allows you to confirm whether an immobile dish is suffering from a minor software freeze or catastrophic physical motor/gear damage.
Action Items:
- 1Open the Starlink App, scroll to the bottom, and select "Advanced" -> "Debug Data".
- 2Scroll down to the "Dish" (Terminal) section and inspect the boolean diagnostic flags.
- 3Check the status of "Tilt Sensor Fault," "Motor Current Fault," "Mast Obstructed," and "Unexpected Orientation."
- 4If all fault flags read "false" (or 0) but the dish is pointed straight up, execute a 6-time rapid power cycle factory reset on the router to wipe corrupted orientation memory.
- 5If "Tilt Sensor Fault" or "Motor Current Fault" reads "true" (or 1) persistently after a full power reset and ice clearance, internal mechanical gear stripping or H-bridge driver failure has occurred.
Perform a 6-Time Rapid Power Cycle Factory Reset to Clear Orientation Memory
When an actuated dish is moved hundreds of miles to a new geographic location while powered off, or if an over-the-air firmware update interrupts motor positioning, the non-volatile orientation memory can become corrupted. A full rapid power cycle reset forces the system to forget its previous tilt angles and start a clean orbital scan.
Action Items:
- 1Locate the AC power cord plug of your Starlink router where it connects to the wall power outlet or surge protector.
- 2Unplug the AC cord from the wall outlet, wait 2 seconds, and immediately plug it back in.
- 3Repeat this rapid unplug-and-replug sequence exactly 6 consecutive times without waiting for the router to fully boot between cycles.
- 4After the 6th plug-in, leave the system powered on. The router LED will flash as it restores factory default settings and wipes stored EEPROM tilt coordinates.
- 5Allow 10 to 15 minutes for the dish to download current GPS ephemeris data and execute a fresh mechanical tilt orientation toward your regional satellite corridor.
Manual Alignment Guide for Fixed Gen 3 Kickstand and Starlink Mini Terminals
If you have transitioned from an older motorized Starlink to a Gen 3 Standard Kickstand or portable Starlink Mini, remember that zero physical motor movement is normal. To achieve optimal speeds and eliminate dropouts, you must manually rotate the entire dish structure using the interactive app compass.
Action Items:
- 1Open the Starlink App while standing directly behind your Gen 3 or Starlink Mini terminal.
- 2Tap the "Alignment" button on the home screen to access the visual aiming tool.
- 3Observe the overhead target circle on your smartphone screen. If an arrow indicates "Rotate 25° East," physically grasp the dish stand and turn the entire unit clockwise.
- 4Adjust the rear kickstand tilt angle if prompted by vertical tilt arrows.
- 5Stop moving the dish as soon as the on-screen graphic locks into a bright green circle with the confirmation message: "Great Alignment - You are all set!"
Inspect for Shipping Damage or Dropped Dish Mast Deformation
If your Starlink kit arrived recently via courier and the actuated dish refuses to tilt out of the flat stow position upon first power-up, rough transit handling may have dented the aluminum mast stem or cracked the internal planetary gear housing.
Action Items:
- 1Examine the exterior plastic radome casing and the metal mast stem for deep scratches, cracks, or impact dents.
- 2Grasp the dish panel gently with two hands and apply very light rotational pressure (DO NOT FORCE IT). If you feel free, floppy play or hear loose plastic pieces rattling inside the chassis, internal gear teeth were sheared during shipping impact.
- 3Take clear photos of the shipping box damage, exterior chassis dents, and the app error screen showing "Motors Stuck."
- 4Attach these photos directly to a SpaceX support ticket under the category "Damaged Equipment / DOA (Dead on Arrival)" for an expedited replacement kit.
Submit an Automated Support Ticket for Warranty Replacement of Stuck Motors
When all external physical obstructions, ice collars, voltage drops, and firmware resets have been eliminated, an actuated dish that refuses to move has suffered permanent internal electromechanical failure. Brushless motor windings or tilt gear assemblies cannot be repaired in the field by users.
Action Items:
- 1Open the Starlink mobile app and navigate to "Support" -> "Troubleshooting" -> "Dish Not Moving / Motors Stuck".
- 2Scroll to the bottom of the article and select "Thumbs Down / I still need help" to open the support contact form.
- 3In the message body, write: "My Gen 2 actuated dish is completely stuck in the flat/upward position. I have verified vertical plumb mast alignment, checked for 0% ice/debris binding, performed the 15-minute face-down stow reset, and tested with the original unmodified SpaceX cable. Debug Data shows Tilt Sensor Fault / Motor Current Fault. Requesting warranty replacement."
- 4Submit the ticket. SpaceX engineers will remotely query your dish's internal motor controller error logs and issue an RMA replacement return label and new equipment shipment.
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Curved ABS waterproof dual cable entry housing with silicone compression grommets for running Starlink and solar cables through RV and camper van roofs safely.
Best For: RV and camper van roof cable penetrations, eliminating rain leaks
12V 30A DC-DC Voltage Stabilizer Step-Up Converter for Marine & RV Starlink
Heavy-duty cast aluminum waterproof DC-DC regulator that stabilizes fluctuating 9V-16V vehicle battery voltage into rock-solid 12V/24V power for continuous connectivity.
Best For: Boats, yachts, and RVs with alternator and battery voltage fluctuations
Heavy-Duty Masonry Concrete Wall Anchor Kit for Eaves & Chimney Dish Mounting
High-tensile stainless steel expansion anchors and carbide drill bit set designed for mounting heavy Starlink brackets into brick walls, concrete foundations, and chimneys.
Best For: Brick houses, masonry walls, concrete parapets, and chimney mountings
Starlink Router Gen 3 Wall Mounting Bracket & Power Supply Cradle Kit
Sleek matte wall-mounting bracket designed specifically for the Gen 3 Wi-Fi 6 Router and its separate power brick. Keeps counters clean and optimizes Wi-Fi coverage.
Best For: Mounting Gen 3 router on the wall for optimal signal elevation and neat wiring
RJ45 Crimper Tool Kit with Pass-Through Cat6 Connectors & Wire Tester
Professional pass-through RJ45 crimper, cable stripper, wire cutter, and continuity tester kit. Essential for custom-length Starlink cable runs and field repairs.
Best For: Cutting Starlink cables to exact length, repairing damaged RJ45 ends
200W Foldable Solar Panel with MC4 & Anderson Connectors for Off-Grid Starlink
High-efficiency monocrystalline foldable solar panel with kickstand. Recharges portable battery stations to provide 100% off-grid solar power for Starlink in remote wilderness.
Best For: Off-grid wilderness camping, emergency preparedness, zero-emission Starlink power
Starlink Mini Adjustable Tripod Stand & Ball Head Ground Mount
Lightweight, compact carbon fiber tripod with a 360-degree ball head adapter for elevating and tilting the Starlink Mini dish on uneven rocky ground or campsites.
Best For: Fast setup on camping trips, uneven terrain, elevating dish above tall grass
5-Port Gigabit PoE+ Power Over Ethernet Switch (802.3at/af 65W Budget)
High-speed gigabit switch with 4 PoE+ ports to power outdoor security cameras, access points, and remote hardware over single Ethernet cables from your Starlink system.
Best For: Powering outdoor security cameras and Wi-Fi access points via Starlink
Exterior Split Flexible Conduit Cable Wrap Sleeve for Rodent & UV Protection
Heavy-duty corrugated split loom tubing. Shields outdoor Starlink cables from being chewed by squirrels, rodents, and pets, and prevents sun UV cracking.
Best For: Protecting cables from rodents, squirrels, weed-wackers, and intense UV sunlight
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Starlink Dishy Not Moving? Troubleshooting Guide — Engineering FAQ (6 Detailed Answers)
Explore thorough technical answers to the most common field inquiries regarding starlink dishy not moving? troubleshooting guide.
This is completely normal operational behavior. SpaceX removed all internal electric tilt motors and gears from the Gen 3 Standard (Kickstand) dish, the Starlink Mini portable dish, and the High Performance flat panels to increase mechanical reliability and reduce power consumption. These newer terminals do not move automatically. Instead, they feature a wider 110-degree electronic phased-array antenna that tracks satellites electronically. You must manually point the dish once during setup using the "Alignment" compass tool in the Starlink mobile app.
Summary & Diagnostic Conclusion
Encountering an immobile Starlink dish can be alarming, but resolving the issue is straightforward once you isolate your exact hardware generation. For owners of Gen 3 Standard Kickstand, Starlink Mini, and High Performance flat panels, recognizing that your hardware is engineered without tilt motors eliminates unnecessary troubleshooting—simple manual aiming via the app's AR compass is all that is required for gigabit performance.
For motorized Gen 1 and Gen 2 actuated terminals, methodical elimination of external physical binding, ice accumulation, and PoE voltage drops will restore smooth electromechanical aiming in over 90% of cases. Utilizing built-in firmware calibration tools such as the software Stow/Unstow cycle, the 15-minute face-down gravity override, and rapid 6-time power cycle resets ensures that temporary sensor drifts or software lockouts are cleared without requiring physical disassembly.
If your diagnostic investigation reveals persistent "Tilt Sensor Fault" flags in Debug Data or sheared gear teeth from transit damage, SpaceX's automated support ticketing system provides a seamless pathway to warranty replacement. By maintaining clean, plumb mast mounting and utilizing genuine, unmodified PoE cabling, your Starlink terminal will reliably track the LEO constellation through every season.
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Still Experiencing Starlink Connectivity Dropouts?
Check our live crowdsourced global outage map to confirm whether your region is experiencing SpaceX ground station gateway fiber maintenance or rain fade attenuation.