Tesla Guide: Number of Cameras, Their Locations, Uses and How To View Them

By Kevin Armstrong
Tesla's cameras around placed strategically around the vehicle
Tesla's cameras around placed strategically around the vehicle
Tesla

In Tesla's mission to shape the future of sustainable transportation, a pivotal part is played by its camera systems. Designed to enhance safety, enable autonomous features, and provide security against threats, these cameras have evolved significantly over the years.

The Evolution of Tesla's Camera Systems: From MobileEye to Hardware 4

Tesla's journey with integrating cameras into their vehicles started post-2014. The early models with the Autopilot 1 (AP1) system used technology from MobileEye, a leader in Advanced Driver Assistance Systems (ADAS).

However, with the arrival of the Model 3 and Model Y and the 2021 redesigned Model S and Model X, the game changed. All these models now feature nine cameras. Fast forward to 2023, some models are now equipped with Hardware 4.0 (HW4), which have eight higher resolution cameras, and reduce the front-facing cameras to two.

Front Cameras

Teslas have three front-facing cameras with HW3 and two with HW 4
Teslas have three front-facing cameras with HW3 and two with HW 4
Tesla

The front cameras are located at the top of the windshield. They consist of a camera with a typical lens, a wide-angle lens, and a telephoto lens. The telephoto camera can see up to 250 meters ahead according to Tesla, ideal for high-speed Autopilot use, while the main lens covers 150 meters. In addition, the wide-angle lens gives a panoramic-like view for navigation at complex intersections and tight curves.

Rear View Camera

The rearview camera is positioned above the license plate. It provides a view of up to 50 meters behind the vehicle, assisting with parking, reverse driving and reverse automatic emergency braking.

Fender Cameras

Teslas contain a camera on each fender that points toward the rear of the vehicle at about a 45° angle. This allows the vehicle to see vehicles to its side and help monitor the vehicle's blind spots.

These cameras can also be viewed by the driver when using Tesla's blind spot monitor feature, or by enabling the side cameras while in reverse, which displays the reverse camera feed, along with the fender or 'repeater' cameras.

B-Pillar Cameras

Tesla vehicles also include two other side cameras that are found on the B-pillar. Instead of aiming backward like the repeater cameras, these cameras are aimed toward the front of the vehicle. This allows them to capture areas in the front half of the vehicle. These cameras aid with intersections, parking and more. Unfortunately, the video from these cameras can only be viewed while the vehicle is parked and by going to Controls > Service and tapping on 'Preview Cameras'.

Cabin Camera

All current Tesla models include a cabin camera. The camera is located above the rearview mirror and monitors driver attentiveness, especially when Autopilot is in use. You can view the cabin camera onscreen by navigating to Controls > Service > Preview Cabin Camera. You can also view it through the Tesla app if Sentry Mode is enabled and Sentry Mode Live Access is available in your region.

Future Bumper Camera

Looking ahead, newer Tesla models are expected to feature a bumper camera, as seen in the Cybertruck prototypes. Additionally, with hardware 4.0, the cameras have a higher resolution and an anti-glare coating for enhanced visibility.

Functionality Unveiled: The Multifaceted Uses of Tesla's Cameras

Tesla's cameras play a vital role in the advanced features the vehicles are known for. Their primary use is for the Autopilot system and active safety features like Automatic Emergency Braking (AEB). Furthermore, Sentry Mode and Dashcam features use cameras to record potential threats when parked and on the road. In newer models, the cabin camera monitors driver attentiveness to ensure safety during Autopilot use.

View, Access and Calibrate

Tesla now lets you preview all cameras included in your vehicle
Tesla now lets you preview all cameras included in your vehicle
Simon

While driving, you can access the rear and fender cameras through the center display. To test or preview other cameras, you can navigate to Controls > Service > Preview Cameras, and then select the camera you'd like to preview at the top of the screen. In addition, through the Tesla app, remote viewing capabilities are available for five of the vehicle's cameras, including the front-facing camera, fender cameras, rear camera, and cabin camera.

If you're noticing issues with your vehicle's cameras, Tesla provides the ability to calibrate them. It's a simple process initiated from the vehicle's touchscreen, although certain features like Autopilot will be unavailable until the process completes.

Confidentiality in Focus: Tesla's Data Privacy Measures

Tesla takes data privacy seriously. For example, the cabin camera doesn't save or transmit data unless data sharing is enabled in your car's settings. For Sentry Mode and Dashcam footage, data is stored locally and can be accessed only by the owner.

Tesla's advanced camera systems play an integral role in enhancing vehicle safety, providing driver-assist features, and creating a robust security layer. However, understanding the function and usage of these cameras is essential for maximizing the benefits. With Tesla continuously innovating, exciting enhancements, like bumper cameras and upgraded hardware, lie on the horizon, promising to take vehicular safety and autonomy to the next level.

Tesla Denies WSJ Report Claiming Board is Replacing Elon Musk

By Karan Singh
YouTube/NYT Events

Tesla has issued a strong denial in response to a Wall Street Journal report (Paywall) which claimed that Tesla’s Board of Directors had initiated a search for a new CEO.

In a statement posted directly on Tesla’s X account, Board Chair Robyn Denholm denied the report unequivocally. As per the statement, Tesla’s board did not reach out to recruiting firms in search of a new CEO.

Board Supports Elon

The statement reaffirmed the board’s position on Tesla’s current leadership and that the board is highly confident in Elon’s ability to continue executing Tesla’s plans and future growth.

This confidence behind Elon follows his recent statements made during the Q1 2025 Earnings Call that he would be stepping back from the Department of Government Efficiency (DOGE) in the coming days and significantly reducing time spent there. Instead, he would be returning to focus on Tesla’s operations and the upcoming deployment of Robotaxi.

Shortly after the denial was posted, Elon Musk also commented on the report, specifically tagging the Wall Street Journal and criticizing their handling of the report.

We’re glad to see Tesla and Elon set the matter straight, but there could have been a better way to spread this message and maybe even prevent the report from WSJ from going out.

We recently published an opinion piece on why Tesla needs its PR team back, and this specific incident is a good example. Relying solely on platforms like X for critical corporate communications - and in this case, late at night (1 AM EST), with limited reach outside the existing follower base seems like an ineffective way of communicating important company information.

We’d love to see Tesla really put some thought into managing its image, as it seems that several recent reports from major financial news organizations have apparently been wrong.

Either way, the board’s stance is clear - there is no active search underway, and Elon has the full backing and support of the board to lead Tesla toward the future.

Tesla Megapack: How Tesla Is Reinventing Global Energy Infrastructure

By Karan Singh
Not a Tesla App

Tesla’s Megapack is rapidly becoming a key component in energy storage and grid modernization efforts worldwide. Though often associated with powering AI infrastructure or industrial operations, Megapack’s true strength lies in its ability to stabilize electrical grids during blackouts and brownouts.

In a recent behind-the-scenes reveal, Tesla showcased the impressive scale of Megapack production at its Mega Lathrop facility, along with real-world examples of how these systems are already transforming energy resilience across the globe.

Mega-Scale Megapack

Tesla is operating the largest utility-scale battery manufacturing facility in North America at Mega Lathrop, which has the capacity to produce 10,000 Megapacks annually. Thanks to a highly automated assembly process that uses over 30 welding robots to assemble the core Megapack structure. This is the largest manufacturing fixture Tesla uses— likely to only be matched by future developments at Mega Shanghai.

Tesla uses a highly automated powder coating process, utilizing over 90 robotic paint atomizers to apply more than 140 pounds of powder coat to each Megapack. This process delivers Tesla’s signature white reflective finish, engineered for long-term durability and corrosion resistance that lasts up to 20 years, even in harsh coastal or high-heat environments.

All of Megapack’s power electronics are designed and built in-house. Each Megapack uses 24 battery modules, electrical busing, and thermal management systems to ensure grid reliability and help to maximize energy density. The architecture pairs each inverter with a battery module to maximize energy availability and overall uptime. Plus, before each Megapack ships its way across the world, Tesla performs rigorous on-site quality control to ensure that the installation process is as seamless as possible.

Watch Tesla’s video of the manufacturing process below:

Megapack’s Real-World Impact: Hawaii

The core purpose of Megapack is to make power grids more stable and resilient while also reducing reliance on dirty peak power plants like coal. They achieve this by balancing energy supply and demand in real-time, smoothing out fluctuations from variable renewable sources like solar and wind, which helps to prevent grid shortages.

Hawaii actually provides the most real and down-to-earth example of Megapack’s impact. In mid-2024, the Kapolei Energy Storage facility in Hawaii came online. Hawaii utilized 258 Megapacks with a combined capacity of 565 MWh, successfully replacing the state’s last coal-fired power plant. This single facility can power approximately 20% of Oahu’s peak electricity needs by itself for approximately 4 hours.

The project is more than just removing coal plants, though. It serves as an example of Megapack’s grid integration and grid forming technology. The Kapolei Energy Storage facility can manage grid fluctuations caused by weather changes impacting renewable energy, improving stability and preventing blackouts. Thanks to their rapid inverter response times of under a millisecond, Megapacks participate in complex grid balancing activities, including fast frequency and voltage support, which helps to maintain grid balance throughout the day. Beyond that, Kapolei also allows Hawaii to black-start the grid in case of a major power outage that takes out a large section of the grid.

This functionality would be especially useful in Spain, where black-starting the grid took over eight hours recently and is still disrupting the day-to-day life of people there.

You can check out Megapack’s real-world impact in this video from Tesla below:

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