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Global Cities Starlink Status Directory

Select your city below to inspect real-time user-reported Starlink disconnections, local weather factors, ground station gateway status, and regional troubleshooting solutions.

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London

Greater London, UK

London's temperate maritime climate brings frequent rainfall, dense low cloud cover, and seasonal fog off the Thames Estuary. While rain fade can occasionally attenuate high-frequency signals during heavy downpours, regional ground stations maintain stable connection links with low latency across the UK.

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Tokyo

Kanto, Japan

Tokyo features high satellite visibility and multiple surrounding ground stations across Japan. Dense urban high-rises can present horizontal line-of-sight obstructions, so roof-top dish mounting is essential for continuous connectivity during rainy seasons.

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Los Angeles

California, USA

Southern California's sunny Mediterranean climate offers prime clear-sky conditions for Starlink dishes. Low precipitation and clear atmospheric conditions consistently deliver peak download speeds and low ping times.

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Sydney

New South Wales, Australia

Sydney's temperate coastal climate and strategic ground stations across New South Wales deliver high availability. Dish terminals perform reliably with minimal rain fade under regular clear coastal skies.

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Paris

Île-de-France, France

Central Western European node connected directly to French and Western European ground station gateways. Signal stability remains high throughout standard seasonal transitions.

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Auckland

Auckland Region, New Zealand

Auckland serves as a key New Zealand regional connection point. High satellite view angles ensure consistent connections for remote and rural homes across the North Island.

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Toronto

Ontario, Canada

Toronto experiences cold winters with heavy snowfall. Built-in dish heating melt functions help keep the dish face clear of ice and snow buildup during freezing cold snaps.

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Frankfurt

Hesse, Germany

Frankfurt connects to central European internet exchanges and ground station networks, delivering low ping times and steady throughput across Germany and neighboring countries.

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São Paulo

São Paulo, Brazil

South American primary connection hub. High-capacity ground stations serve agricultural regions, with heavy tropical summer rains occasionally causing short rain fade slowdowns.

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Johannesburg

Gauteng, South Africa

Sub-Saharan connection point supporting Southern African users. Clear high-altitude plateau sky conditions provide excellent open signal paths year-round.

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Seattle

Washington, USA

Seattle experiences frequent overcast drizzle and tall pine tree obstacles. Installing the dish above Douglas fir tree lines is recommended to prevent obstruction dropouts.

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Chicago

Illinois, USA

Chicago faces intense winter lake-effect snowstorms and strong winds. Automated dish heating prevents snow buildup from blocking signals during sub-zero cold waves.

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Denver

Colorado, USA

At 5,280 feet altitude, Denver features clear skies and minimal atmospheric signal absorption, offering great performance when clear of mountain ridge obstructions.

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Dallas

Texas, USA

Subtropical climate with occasional spring thunderstorms. Heavy rain cells can temporarily attenuate connection speeds until weather fronts pass.

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Phoenix

Arizona, USA

Desert climate with extreme summer temperatures above 115°F (46°C). Starlink dishes include automatic thermal protection to prevent hardware damage in desert heat.

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Miami

Florida, USA

Tropical coastal rain bands and hurricane season squalls can cause transient signal drops. Sturdy mounting hardware is required for strong coastal winds.

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Austin

Texas, USA

Central Texas area with clear sky conditions and growing user density. Good open suburban dish alignment provides reliable daily performance.

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Portland

Oregon, USA

Pacific Northwest marine climate with wet winters and dense tree canopy. Roof-ridge dish mounts help clear tree branch line-of-sight obstructions.

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Houston

Texas, USA

Gulf Coast squalls and heavy thunderstorm fronts can block high-frequency satellite links temporarily, leading to user-reported slowdowns during intense downpours.

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Las Vegas

Nevada, USA

High desert climate with wide open skies and rare rainfall. Minimal sky obstructions yield stable speeds and fast ping times for local users.

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Manchester

Greater Manchester, UK

Northwestern UK maritime climate with regular precipitation. Starlink dish heating systems automatically engage during cold damp winter mornings to preserve signal clarity.

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Dublin

Leinster, Ireland

Coastal maritime climate with frequent Atlantic weather fronts. Ground station links across the Irish Sea maintain redundant failover paths during coastal storm surges.

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Brussels

Brussels-Capital Region, Belgium

Western European temperate zone with dense urban infrastructure. Rooftop terminal installations experience minimal atmospheric interference throughout standard seasonal variations.

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Amsterdam

North Holland, Netherlands

Low-lying coastal region benefiting from direct high-capacity fiber trunks to European internet exchanges. Satellite tracking remains exceptionally stable.

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Berlin

Berlin, Germany

Continental European climate with crisp winters and warm summers. Multiple ground station gateways in central Germany provide robust low-latency coverage.

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Madrid

Community of Madrid, Spain

Dry Mediterranean climate with high elevation and clear skies. Low cloud moisture results in pristine satellite signal reception and minimal weather attenuation.

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Rome

Lazio, Italy

Mediterranean coastal proximity with sunny conditions year-round. Ground station fiber links to Southern Europe provide dependable throughput for residential and commercial users.

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Osaka

Kansai, Japan

Major Kansai regional hub with excellent satellite elevation angles. Surrounding mountain ranges do not obstruct high-angle LEO satellite communications.

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Yokohama

Kanagawa, Japan

Coastal metropolitan zone sharing robust Kanto ground station infrastructure with Tokyo. High terminal density is supported by advanced phased-array beamforming.

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Seoul

Seoul Capital Area, South Korea

Four distinct seasons with intensive monsoon rain periods in mid-summer. Starlink dish terminals automatically compensate for seasonal rain fade using adaptive power scaling.

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Taipei

Taiwan

Subtropical island climate with frequent afternoon thundershowers and typhoon seasons. High-gain phased array dishes ensure rapid reconnection during severe weather events.

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Singapore

Singapore

Equatorial tropical climate with intense convection squalls. Regional maritime ground stations and laser inter-satellite links provide high-speed tropical broadband.

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New York

New York, USA

Major Northeast Atlantic hub with dense fiber PoP connectivity. High-rise urban canyons require careful unobstructed rooftop installation for optimal satellite field of view.

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Boston

Massachusetts, USA

New England coastal climate subjected to winter nor'easters. Built-in snow melt heaters ensure continuous operation during heavy blizzard conditions.

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Atlanta

Georgia, USA

Southeastern regional internet crossroads with warm humid summers. Ground stations across the Piedmont region provide resilient high-capacity routing.

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San Francisco

California, USA

Northern California Bay Area marine layer and summer fog. High-frequency Starlink Ku/Ka-band signals effortlessly penetrate coastal fog layers with zero packet loss.

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San Diego

California, USA

Southern California coastal sunshine with mild year-round temperatures. Ideal clear-sky conditions provide top-tier satellite visibility and consistently low latency.

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Vancouver

British Columbia, Canada

Pacific temperate rainforest climate with frequent winter rain. Pacific Northwest ground stations ensure high-speed broadband across Western Canada.

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Montreal

Quebec, Canada

Eastern Canadian metropolitan hub with snowy winters and warm summers. Excellent orbital satellite geometry provides reliable high-bandwidth connectivity.

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Melbourne

Victoria, Australia

Southern Australian coastal climate known for rapid weather shifts. Multiple Tasmanian and mainland ground stations guarantee seamless handoffs.

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Wellington

Wellington Region, New Zealand

Windy Cook Strait maritime climate. Rugged dish mounting hardware withstands high winds while maintaining precise electronic satellite tracking.

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Rio de Janeiro

Rio de Janeiro, Brazil

Tropical Atlantic coastal climate with summer tropical storms. Brazilian ground station networks provide robust coverage across the Southeast region.

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Cape Town

Western Cape, South Africa

Mediterranean coastal climate with strong southeasterly winds. Western Cape ground stations link South Africa to international subsea fiber cables.

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How Regional Gateways and Ground Stations Impact City Outages

Starlink user dish terminals connect wirelessly to orbiting satellites overhead, which simultaneously relay internet traffic down to nearby ground station fiber gateways connected directly to global internet exchanges. Because each ground station covers a radius of several hundred kilometers, a temporary ground station outage or fiber trunk cut will simultaneously affect users across multiple adjacent metropolitan cities.

By monitoring real-time outage filings across key city nodes, Starlink Outage Map helps terminal owners distinguish between isolated household setup faults and broader regional network disruptions.