Tesla Auto Wipers: Why They Don't Work and Why There Isn't an Easy Fix

By Karan Singh
Tesla's Auto Wipers have been a pain point for the company
Tesla's Auto Wipers have been a pain point for the company
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Tesla’s Autowipers have been a long-standing issue for customers, as well as Tesla’s engineers. Elon Musk has often mentioned that improvements to Autowipers have been around the corner for years, but they appear to have taken a rain check.

Tesla owners often complain that their wipers are running against a completely dry windshield on a sunny day, or not running at all in light rain. Moderate to heavy rain performance seems to be improved for the most recent update to Auto Wipers.

In our test, we cover the vehicle's windshield with Post-It notes to find out what the vehicle’s cameras can see.

We cover the windshield in Post-It notes
We cover the windshield in Post-It notes
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The Water Problem

Tesla vehicles lack a rain sensor. This is a result of Tesla’s strategy to rely upon Tesla Vision to replace all sensors – which they’ve successfully used most recently to replace the ultrasonic parking sensors (USS) on their vehicles. Tesla believes that vision is the solution to achieving all self-driving capabilities, and this includes the elimination of extraneous sensors such as USS and radar.

Of course, many other vehicles employ simple rain sensors that do function fairly well, and effectively detect the presence of water on the windshield. So, what’s stopping Tesla Vision from doing the same thing?

The problem isn’t Tesla’s detection methods, it’s the view of the windshield Tesla has. Water droplets are small and the three front cameras only capture a small portion of the entire windshield, making it difficult for them to capture and acknowledge the fact that there is water on the windshield that needs to be wiped away. This is in addition to the fact that the cameras are focused further away, to drive and navigate the vehicle effectively, rendering the visuals close to the camera blurry – leaving a rather technical challenge.

Our Test

The car's wide-angle camera
The car's wide-angle camera
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Even Tesla’s front-facing, wide-angle camera can barely see the yellow Post-In notes in our test, let alone the blue Post-It notes spread through the windshield. Tesla’s other front-facing camera, the “main” camera, sees only a trace of the Post-Its along the bottom. In reality, Tesla has no idea what’s on the vehicle's windshield and can only make assumptions based on a few square inches near the top of the windshield. If any rain droplets are on this portion of the windshield, they’ll also be out of focus. If the view of the rain droplets was as clear at the image at the top of this article, Tesla would have perfected auto wipers years ago.

Tesla’s third front-facing camera, the “narrow” view, is only available on hardware 3 and it’s just a zoomed-in version of the main camera, which causes it to miss our Post-It notes completely. With hardware 4, Tesla removed the narrow camera and now determines the narrow view by cropping the main camera, which has a higher resolution in hardware 4.

Water droplets on the windshield
Water droplets on the windshield
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Tesla’s Engineering Magic

Tesla is able to detect drops on the windshield when they land in front of the camera cluster, but again, since the cluster is mounted high above most of the windshield, this can lead to the windshield filling up with water droplets before a wipe is triggered.

They’ve also tried using the vehicle’s other cameras, such as the repeater or B-pillar cameras to detect falling rain – which can help the Autowiper system build confidence that there is water on the windshield. Once it has enough confidence, it triggers a wipe – or changes the wipe modes. However, in reality, due to the focal length of the cameras, it has a difficult time detecting rain droplets because they’re out of focus.
In the image below, taken from Tesla’s wide-angle camera, you can see that the water droplets from the previous image are nearly impossible to detect. On the left, is the windshield with the water droplets, and on the right is the windshield after being wiped. While the droplets cause a slightly blurry image, they’re extremely difficult to see.

How water droplets look to the camera (left) and how a clean windshield looks (right)
How water droplets look to the camera (left) and how a clean windshield looks (right)
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Wiping Away Challenges

The transition to entirely vision has left a considerable challenge for Tesla’s very capable engineering teams. The current Autopilot hardware suite lacks a good view of the windshield itself, but it can detect falling rain. Given that Tesla’s software can detect and display other vehicles using turn signals, it is also possible that they could detect other vehicles using wipers or use other cameras to see rain on the vehicle, such as the B-pillar cameras, to increase the system’s confidence that a wipe is required.

However, these solutions are likely to not be perfect, as they don’t provide an accurate representation of what the driver sees in the windshield, but instead an accurate representation of what the vehicle itself can see.

When engaging FSD on a lightly rainy day, your car may drive perfectly, but you’ll have a windshield full of rain when supervising!

Of course, there are many other reasons to run the windshield wipers beyond simple rain – spray and debris from vehicles in front, water falling from trees or being kicked up by deep puddles, or even snow settling on the windshield. Another challenge is bugs – they leave sticky smears at higher speeds when impacting the windshield, causing spots that can impede either vehicle vision or driver vision.

Future Solutions

Tesla likes to avoid solutions that only solve a single problem – such as adding a rain sensor. It is an additional manufacturing complication, adds additional cost to vehicles, and segments Tesla’s vehicles between model years.

On the other hand, cameras have solved many problems over the years – such as Tesla Vision taking over from the USS system that was present on pre-2022 Tesla vehicles. While it did take until FSD V12 for Autopark to become available to vision-only vehicles, the upgraded Vision-based Autopark is a marked improvement over the older USS solution.

Another such problem has been auto-high beams, which were solved with better oncoming vehicle detection and improved AI – which has led to a feature that is much better than its original implementation. This updated implementation has also led to improvements in the use of Matrix headlights – a feature that for now is only available in Europe and China due to legislative issues in the US.

Tesla is most likely going to be pushing another hardware revision – Hardware 5 – in the coming years. Some of the indications of this include the Cybertruck’s bumper camera – which is also expected to arrive in the Model X and Model S in the future.

There is a chance that Tesla may include a forward-facing interior at some point – to solve the fact that Vision is unable to currently see the windshield. However, Tesla also strongly believes they’ll achieve level 4 or 5 of vehicle autonomy in the future, so they could also be banking on autonomy removing the need for good auto wipers.

A Personal Example

If you get into your Tesla on a rainy day or add some drizzle via a watering jug, you can see how Tesla’s Autowipers will not activate unless water is placed directly in front of the camera cluster. You can also spray some water onto the camera housing and take a seat inside and use the camera preview to view what the cameras can see. It’ll provide you with a blurry, limited view of what the cameras see.

We may see further software improvements, but it may be a difficult engineering problem to solve with the limited camera capabilities that currently exist on hardware 3 and hardware 4 vehicles.

World’s Largest Tesla Supercharger: 168 Stalls, 100% Off-Grid, Powered by Sun and Battery Storage

By Karan Singh
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In just 8 months, Tesla has gone from breaking ground to delivering electrons at its most ambitious Supercharger project to date, just in time to be ready for the busy Fourth of July holiday weekend. Project Oasis, the world’s largest Supercharger site, is now partially open to customers for its first phase in Lost Hills, California.

What makes this remarkable is the speed of execution. In just eight months, Tesla has constructed a site that will eventually feature 168 stalls (84 stalls are now open), supported by 11 MW of solar power and 10 Megapacks of battery storage. That construction speed is pretty impressive, but what is even more impressive is how this new station operates and what it means for future Supercharging infrastructure.

Self-Sufficient Energy Oasis

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The first 84 stalls at Lost Hills are now open, and according to the Tesla Charging team, they are currently powered solely by the sun and operate off-grid.

This makes it more than just a new Supercharger site. It serves as a proof of concept for a new type of Supercharger. Unlike nearly every other charging site in the world, which draws power from local utilities, this station generates its own clean electricity from its massive solar array and stores it in its array of on-site Megapacks. 

Self-sufficient charging stations are something completely different than what we see today. They are highly resilient since they’re not reliant on the grid. That means that even if there is a local power outage, brownout, or blackout, one can always come to Lost Hills to Supercharge.

If you’ve got a Cybertruck, you could take advantage of the Cybertruck’s Powershare feature and charge up at Lost Hills to help keep your home powered during a blackout, utilizing the Cybertruck as a portable battery charger. Now that’s true independence and self-reliance.

The Future of Charging

Solar-powered Superchargers help avoid massive new loads on already stressed electrical grids, especially during peak afternoon and evening hours, when demand is the highest.

This is Tesla’s vision for the future of charging: a clean, fully closed-loop ecosystem that sustains itself. The sun’s energy is captured, stored, and delivered directly to vehicles on site at any time of day without relying on the electrical grid or fossil fuels.

Largest Supercharger in the World

This opening of 84 stalls is just the first phase of the project. Tesla says that the remaining stalls, as well as a new on-site lounge, are coming later this year. Once complete, the 168-stall site will be the largest Supercharger site in the world.

While the speed of building such a massive project in just eight months is a testament to Tesla’s execution, the true innovation is actually that self-sustainability. Let’s hope we see even more large, self-sufficient Supercharger sites across the world in the near future.

The future lounge
The future lounge
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Elon Musk Considers Solar Gigafactory in North America to Power AI Boom

By Karan Singh
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Elon Musk is once again seeking to expand Tesla’s vertical integration in the energy sector, this time focusing squarely on solar power. Following discussions on X that highlighted the massive gap in solar deployments between the US and China, Elon is now discussing the need for a Tesla Solar Gigafactory in the United States.

This potential move is driven by a specific catalyst: the exponential growth of AI is creating an insatiable demand for electricity. For Tesla and xAI, two of Elon’s companies betting their future on AI, building the power generation required is a strategic necessity.

A new factory wouldn’t just be about making panels; it would be about manufacturing the final missing piece in Tesla’s vertically integrated energy ecosystem.

Catching Up to China

The context for this renewed focus is pretty stark. In May, China reportedly added a staggering 93 gigawatts (GW) of solar power capacity. In contrast, the United States installed approximately 14 GW over the entire first quarter, roughly 20 times less than China.

The primary driver of this demand is the revolution in AI. Training ever-larger and smarter AI models involves operating vast data centers, which consume staggering amounts of power. Google, Amazon, and Microsoft have turned to small-scale nuclear reactors, with Microsoft petitioning to reopen the infamous Three Mile Island for its AI operations.

For Elon’s companies, whose future products like FSD, Optimus, and Grok are built on a foundation of real-world AI, securing a massive and sustainable energy supply isn’t a side quest. It is part of the main mission, especially in conjunction with grid-scale storage, such as Megapacks and Powerwalls. You can’t power a world of autonomous robots without a world of abundant, clean energy.

The Tesla Ecosystem

A US solar gigafactory would be the final, logical step in completing Tesla’s energy hardware ecosystem. While Tesla already manufactures some solar panels and the Tesla solar roof, the scale is too minuscule to matter. 

By mass-producing its own panels, while also increasing Solar Roof production, Tesla would become a true one-stop shop for all things green energy. This would allow the company to supply its own large-scale projects, like the massive solar array for Project Oasis - the world’s largest Supercharger site.

It would also enable more complete residential packages, like the Giga-Small Haus concept home, combining Tesla-made panels and roofs with a Powerwall 3. This level of vertical integration would give Tesla complete control over the technology, cost, and supply of every major component in its energy ecosystem, from generation to storage to mobility.

Building a new Solar Gigafactory is about much more than just simply producing solar panels. It’s a requirement to power Tesla’s future products and make solar panels accessible to everyone.

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