INTELLIGENT MOBILITY
Tesla Cybercab gets integrated Starlink roof antenna system
Tesla has integrated Starlink into the Cybercab roof, adding a satellite connection designed to support fleet operations and passenger connectivity when cellular coverage is limited.
Tesla is adding Starlink connectivity to the Cybercab, giving its dedicated robotaxi a satellite-based communication link. The new system is integrated directly into the roof and is designed to provide an additional connection when traditional mobile networks become unreliable.
The move is another step in Tesla’s effort to build a robotaxi network that can operate across a wide range of environments. Reliable communication can be especially important when vehicles move through areas with weak 5G or LTE coverage.
Starlink is built directly into the Cybercab
The new Cybercab features a low-profile Starlink antenna molded into the roof. Unlike an external satellite dish, the hardware sits flush with the vehicle’s bodywork.

The Cybercab features a low-profile Starlink antenna integrated directly into its roof.
The integrated setup is designed to support several communication functions. These include fleet management, customer support, vehicle monitoring, and software communication.
The system is reportedly based on the newer Starlink V5 terminal. It is expected to provide download speeds of around 375 Mbps or more while using less power than earlier hardware.
Why a robotaxi needs another network connection
The Cybercab is designed specifically for autonomous transportation. It has two seats and no steering wheel or pedals, which makes its communication systems an important part of fleet operations.
A stable connection allows operators to monitor vehicles and keep track of important information. That includes location, battery status, routing, and vehicle availability.

Starlink can provide a backup data connection when 5G and LTE coverage becomes weak.
Cellular networks remain the primary connection for most vehicles. However, coverage can vary between cities and rural areas. A satellite link gives the Cybercab another option when a conventional network is unavailable.
That could help reduce communication gaps as Tesla expands its robotaxi service.
Starlink does not control the Cybercab
The satellite connection is not responsible for driving the Cybercab.
Tesla’s autonomous driving system runs on the vehicle’s onboard computing hardware. Cameras and other sensors provide the information required for driving decisions.
Starlink instead works as a communication backup. If the satellite connection is lost, the vehicle does not suddenly lose its ability to operate.
This distinction is important. The system is designed to keep fleet services connected rather than directly control steering, braking, or acceleration.
Tesla is building a larger robotaxi fleet
The Cybercab program is also moving toward larger-scale production. Tesla has been preparing vehicles at Gigafactory Texas as it works toward expanding autonomous ride-hailing operations.

Tesla is preparing additional Cybercab vehicles as it builds toward a larger robotaxi fleet.
Adding Tesla Cybercab Starlink hardware suggests that connectivity is becoming a bigger part of the robotaxi strategy. As the fleet grows, Tesla will need dependable communication across many different locations and conditions.
The satellite system could provide an important backup layer for fleet management and passenger support. It may also become more valuable as Cybercabs travel outside areas with strong cellular coverage.
For now, the technology is best viewed as a network reliability tool rather than a driving system. But as Tesla works toward a larger autonomous fleet, having more than one way to stay connected could become an important part of keeping the service running smoothly.
INTELLIGENT MOBILITY
U.S. EV Charging Network Expands as Fast Chargers Surge
Public EV charging infrastructure continues to expand across the United States, with high-power stations growing even as electric vehicle sales face a slower market.
U.S. charging infrastructure keeps expanding
The American EV market is going through a complicated period.
Electric vehicle sales have softened, but public charging infrastructure continues to grow. The result is a rapidly expanding network that is becoming more important for drivers who cannot rely entirely on home charging.
As of August, the U.S. had more than 80,000 public charging locations and over 250,000 individual charging ports, according to the data cited in the source material. Thousands more ports are being added each quarter.
The growth matters because access to charging remains one of the key concerns for people considering an EV.

An EVgo fast-charging installation operates at a Meijer location as charging networks expand across the U.S.
The industry is also building larger charging sites.
In Warren, Michigan, EVgo and General Motors opened a 12-stall flagship charging station at a Meijer store. The site supports both CCS and NACS connections and can deliver up to 350 kW. EVgo says compatible vehicles can recover a full charge in as little as 15 minutes, depending on the vehicle and conditions.
The station is part of a broader expansion.
EVgo says more than 40 flagship stalls were already operating nationwide in August, with more than 100 expected by the end of 2026. GM is supporting the expansion as part of its effort to improve EV charging access.
Not all chargers work the same way
Charging speed depends heavily on the type of equipment.
There are three main charging levels.
Level 1 uses a standard 120-volt household outlet. It is the slowest option and is generally better suited to long charging sessions at home.
Level 2 uses 240-volt power. It is much faster and is commonly installed at homes, workplaces and public destinations.
DC fast charging, sometimes called Level 3, is designed for much shorter stops. Depending on the vehicle and charger, a significant amount of range can be added in minutes rather than hours. The U.S. Department of Energy notes that DC fast equipment can reach power levels of up to 500 kW.

EVgo is expanding its fast-charging network with larger sites designed to improve access and reliability.
That distinction is increasingly important.
A driver making a long-distance trip needs a different charging experience from someone leaving an EV connected overnight at home.
Public DC fast chargers are therefore becoming a major part of the national charging strategy.
More chargers could help EV adoption
The relationship between charging infrastructure and EV sales is not simple.
More chargers can reduce range anxiety. They can also make EV ownership easier for drivers who live in apartments or homes without dedicated charging.
The 2026 JD Power EVX Ownership Study found that satisfaction with public-charging availability increased substantially year over year. The study said availability was the most improved public-charging factor for both premium and mass-market BEV owners.
But charging is not the only obstacle.
Vehicle price remains a major issue for many shoppers. A larger charging network can solve one barrier without necessarily solving affordability.
That creates a two-part challenge for automakers and charging companies: make charging easier while also bringing EV prices closer to what mainstream buyers can afford.
Retail locations are becoming charging destinations
One of the biggest changes is where chargers are being installed.
Large retail locations can offer several advantages. Drivers can shop, eat or use other services while the vehicle charges.
That is exactly what EVgo and GM are doing with the Meijer flagship site in Michigan. The location combines high-power chargers with access to groceries and other amenities.
EVgo is also expanding its relationship with Meijer across the Midwest.
The companies announced plans for up to 480 additional fast-charging stalls at as many as 60 Meijer properties across Michigan, Illinois, Wisconsin, Indiana, Ohio and Kentucky.

Large public charging sites are increasingly being integrated into shopping and commercial areas.
This model also addresses one of the practical problems with charging.
A long charging stop does not necessarily have to mean sitting in a parking lot.
When chargers are located at supermarkets, restaurants, hotels or shopping centers, drivers can use that time for other activities.
Reliability matters as much as speed
More chargers do not automatically mean a better charging experience.
The 2025 JD Power EVX Public Charging Study found that non-charging visits had fallen to their lowest level in four years, suggesting that reliability was improving. However, the study also found that satisfaction with DC fast charging remained sensitive to cost and payment experience.
That is an important distinction.
A broken 350-kW charger is still a problem.
A functioning charger that is too expensive can also discourage repeat use.
For charging networks, the next phase is therefore not only about adding more hardware. It is also about reliability, availability, payment systems and location convenience.
Charging infrastructure is growing despite a softer EV market
The U.S. charging network is expanding during a period of uncertainty for EV demand.
That may seem contradictory, but infrastructure projects often take years to plan and build. Companies are making decisions based not only on today’s sales but also on the number of EVs expected to use the network in the future.
EVgo and GM are one example.
Their new flagship sites use more stalls, higher charging power and better access to nearby amenities. The idea is to make public charging feel more like a normal stop during a road trip.
The Department of Energy also continues to describe a robust public charging network as an important part of wider EV adoption in the United States.
EV charging still has room to improve
The U.S. network is much larger than it was several years ago.
Yet the industry still has major work ahead.
Drivers want chargers that are available, reliable, fast and affordable. They also need infrastructure in the places where they actually live, work and travel.
That includes apartment-heavy areas, highways, shopping centers and smaller communities.
The U.S. EV charging network is clearly expanding, even as EV sales face a period of slower growth. The next challenge will be making that larger network consistent enough that charging becomes a routine part of owning an electric vehicle rather than one of the biggest concerns surrounding the technology.
INTELLIGENT MOBILITY
Waymo Safety Data Shows 82% Fewer Injury Crashes
Waymo says its driverless vehicles recorded 82% fewer injury-causing crashes than human-driver benchmarks after more than 271 million autonomous miles.
Waymo reports a large safety gap
Waymo has published its latest autonomous driving safety data. The analysis covers more than 271.3 million rider-only miles through June 2026.
The company compared its driverless vehicles with human-driver benchmarks in Atlanta, Austin, Los Angeles, Phoenix and San Francisco. Waymo says its vehicles were involved in 82% fewer injury-causing crashes than the human benchmark.
The analysis also points to a larger difference in more serious crashes.
Waymo reports 95% fewer crashes involving serious injury or worse. That represents a roughly 20-fold reduction compared with its human benchmark.

Waymo’s autonomous vehicles operate commercially in multiple U.S. cities, including San Francisco.
Waymo’s current safety dashboard provides more detail.
Across all five operating areas, the reported rate for any injury-related crash is 0.67 incidents per million miles. The corresponding human benchmark is 3.77 incidents per million miles.
For serious-injury-or-worse crashes, Waymo reports 0.01 incidents per million miles. The human benchmark is 0.21.
The figures also vary by city.
In San Francisco, for example, Waymo reports 0.67 injury-related incidents per million miles, compared with a human benchmark of 6.64.
Pedestrians and cyclists also show lower rates
Waymo’s analysis covers more than vehicle occupants.
The company reports 93% fewer pedestrian crashes involving injuries compared with human drivers. Cyclist injury crashes were down 86%, while motorcycle-related injury crashes were down 82%.
Those categories matter because pedestrians, cyclists and motorcyclists have less physical protection in a collision.
The latest Waymo analysis estimates that 841 injury-causing crashes were avoided over the 271 million autonomous miles, using a conservative assumption of at least one injured person per prevented crash.

Waymo continues to expand its autonomous service while collecting safety data across different road environments.
The results should still be read with some context.
Waymo’s comparison covers five metropolitan areas, not every road in the United States. The human benchmark is adjusted to account for differences in the types of roads and driving exposure represented in Waymo’s operations.
Waymo also points out that autonomous vehicles and human crashes are reported differently.
Automated-vehicle operators must report physical contact that results, or allegedly results, in property damage, injury or death. Many human crashes are not reported to police.
That is one reason Waymo emphasizes injury-related outcomes rather than simply counting every collision.
Independent research also found fewer crashes
Waymo’s findings have also been examined independently.
A July 2026 study from the Insurance Institute for Highway Safety found that Waymo vehicles operating in San Francisco, Phoenix, Los Angeles and Austin had 68% fewer police-reportable crashes per vehicle mile than human drivers.
The IIHS also highlighted a limitation.
Its researchers said current federal systems for tracking automated-vehicle safety are not yet strong enough for continuous monitoring as deployment expands.
That makes the quality of the underlying data increasingly important.

Waymo uses sensor-equipped vehicles and its Waymo Driver system to operate fully autonomous rides.
Waymo is also expanding its U.S. service
The safety data comes as Waymo continues to expand its commercial operation.
During 2026, the company added public rides in Denver, San Diego, Tampa and Las Vegas, among other markets. Waymo said in September that it was providing fully autonomous trips in 14 cities.
The company is also preparing for international expansion.
Waymo announced plans to introduce fully autonomous commercial ride-hailing in Singapore in 2028 and has outlined plans for London and Munich.
That expansion will provide new operating environments and more data.
For now, however, the latest U.S. figures show a clear pattern in Waymo’s five-city analysis: 0.67 injury-related crashes per million autonomous miles versus 3.77 for the human benchmark.
The Waymo safety data therefore points to substantially lower injury-crash rates than the company’s human-driver comparison. At the same time, independent research and Waymo’s own methodology both show why the figures need to be monitored as autonomous vehicles operate across more cities and road conditions.
INTELLIGENT MOBILITY
OnStar at 30: How GM Is Shaping Connected Mobility
Thirty years after its launch, OnStar has grown from an emergency-response service into a global connected-vehicle platform, supporting safety, software updates, Super Cruise and new AI-powered experiences.
From an emergency button to a connected vehicle platform
General Motors introduced OnStar in 1996 as an embedded telematics platform with automatic crash notification. The idea was simple: give drivers a direct connection to assistance when they needed it most.
Three decades later, the original blue button is part of a much larger technology ecosystem.
GM says OnStar now operates across 22 markets with more than 12 million global subscribers. The platform supports emergency services, connected features, Super Cruise and in-vehicle entertainment.

OnStar has evolved from an emergency-response system into a global connected-services platform.
The scale of the operation is significant.
OnStar Advisors handle more than 20 million calls in North America each year. In 2025 alone, GM says they responded to more than 675,000 emergency and stolen-vehicle calls across the region.
The service also supports drivers during severe weather, vehicle thefts and roadside emergencies.
GM says OnStar Advisors have even helped with extraordinary situations, including more than a dozen births on the road over the service’s history.
Over-the-air updates keep GM vehicles evolving
The role of OnStar now extends beyond emergency assistance.
The platform supports over-the-air software updates, allowing compatible GM vehicles to receive new features and improvements without visiting a dealership.
Those updates can add new entertainment services, improve vehicle functions and fix software issues.
GM also uses connected updates for features that can change the way a vehicle is used. The company cites examples such as new streaming services, additional camera views and features such as King Crab mode on the GMC Hummer EV.
That means the vehicle can continue evolving after it leaves the factory.
Super Cruise is becoming a major part of the platform
One of the biggest connected technologies supported by OnStar is Super Cruise.
GM says roughly 1 million vehicles on the road will have Super Cruise by the end of 2026. The hands-free driving system relies on OnStar’s connected platform for services such as map-data updates.

OnStar provides the connected infrastructure that supports Super Cruise and its map data.
The usage figures are already substantial.
GM says customers have accumulated more than 1.2 billion hands-free miles with Super Cruise. Drivers collectively cover more than 1 million hands-free miles every day, according to the company.
Nearly 70% of users operate Super Cruise at least once a month, GM says.
Connected software therefore plays a much larger role than it did when OnStar launched.
OnStar is also becoming an everyday digital service
Modern OnStar features go well beyond safety.
GM’s connected-services portfolio includes remote vehicle commands, navigation, vehicle-status information, Wi-Fi connectivity, entertainment and software updates.
The system can also work with GM’s mobile apps, including MyChevrolet, MyGMC, MyCadillac and MyBuick.
That creates a connection between the vehicle and the owner’s smartphone.
Owners can remotely lock or unlock a vehicle, check battery or fuel information, send navigation directions and monitor charging status on compatible vehicles.

OnStar connects vehicle functions with the digital experience inside the cabin.
The technology is also expanding into artificial intelligence.
GM says vehicles with Google built-in can use Google Gemini for conversational assistance, including navigation, climate controls and media functions.
That gives OnStar a role in an increasingly software-defined vehicle.
The next step is agentic AI
GM says the next phase of OnStar will focus on agentic AI integrated more deeply into vehicle systems.
The company has not yet provided the full details of that future assistant. However, GM says the goal is to use OnStar’s existing connected infrastructure and safety expertise to create more intelligent vehicle experiences.
The timing is important.
OnStar is reaching its 30th anniversary while GM is investing heavily in software, connected services and advanced driving technology.
The original concept was to connect a driver with help after an accident.
Today, OnStar also connects the vehicle with software, cloud services, entertainment, remote functions and hands-free driving technology.
The next chapter will add artificial intelligence to that ecosystem.
For GM, the OnStar 30th anniversary marks more than a milestone. It represents the transition from the connected car of the 1990s to a vehicle that can continue gaining new capabilities throughout its life.
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