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2025 Tesla Cybertruck

Owner reports · Recalls · Investigations

Limited comparison data

There is not enough comparable history to draw a useful model-year comparison.

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How this year compares

Owner complaints by model year

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Counts vary with age, sales and reporting. They are not failure rates.

What owners reported most

All reported categories

Tap a category to read its complaints. One report may name several components.

When problems were reported

Mileage at the reported incident

Limited mileage data: 3 of 24 reports include usable mileage. There isn’t enough coverage to show a useful chart.

NHTSA’s mileage field refers to the reported incident, not necessarily the filing date. This shows report counts, not the likelihood of a failure.

What to inspect

Issues worth paying extra attention to based on owner reports.

  • Electrical System. Review the 6 owner reports in this category and discuss these concerns during a pre-purchase inspection. Read reports →
  • Forward Collision Avoidance. Review the 5 owner reports in this category and discuss these concerns during a pre-purchase inspection. Read reports →
  • Lane Departure. Review the 5 owner reports in this category and discuss these concerns during a pre-purchase inspection. Read reports →

NHTSA owner reports · September 18, 2026 snapshot.

2 crash reports0 fire reports2 injury reports

Seats complaints

3 reports
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Mileage unknown · Sep 7, 2026
Seats

I own a 2025 Tesla Cybertruck AWD. The fixed lower rail beneath the front passenger seat has two exposed openings. On September 7, 2026, a metal key fell through one opening into an inaccessible enclosed area beneath the seat and floor structure. The key could not be seen or retrieved. While driving, I repeatedly heard it slidi…

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I own a 2025 Tesla Cybertruck AWD. The fixed lower rail beneath the front passenger seat has two exposed openings. On September 7, 2026, a metal key fell through one opening into an inaccessible enclosed area beneath the seat and floor structure. The key could not be seen or retrieved. While driving, I repeatedly heard it sliding as the vehicle accelerated, stopped and turned. I attempted to reach it by creating a hand-sized opening in the lower protective panel, damaging that panel, but I still could not locate the key. While parking in my garage, I suddenly heard the key drop into a deeper area instead of continuing to slide. The unexpected sound startled me and I immediately braked. During this abrupt reaction in the confined garage, the right exterior mirror struck the garage structure and was damaged. This presents a design and safety concern. Small everyday objects can fall through the exposed seat-rail openings into an inaccessible vehicle cavity, move unpredictably and distract the driver. There is no apparent cover, screen or plug, and no reasonable owner-accessible retrieval method. I request that Tesla explain the purpose of these openings and why they are unprotected; inspect the vehicle and confirm whether the key could affect wiring, seat components, the battery enclosure or other systems; remove the passenger seat and necessary trim to retrieve the key; repair the damaged lower panel; and repair or provide reimbursement or goodwill assistance for the damaged right mirror. Tesla should also protect the vehicle’s existing paint protection film during repair and escalate the openings to its engineering or product-safety team for a preventive solution. I can provide photographs of both openings, the damaged panel and mirror, and can provide my VIN privately.

NHTSA ODI #11762622

Mileage unknown · May 12, 2026
Air BagsSeat BeltsSeats

My 2025 Tesla Cybertruck AWD (VIN: [XXX] ) has a recurring failure of the right rear seat occupant detection system, which governs airbag deployment and is certified by Tesla to meet FMVSS 208. The same alert (internal code RCM2_a698) persisted through two official repairs at Tesla Palo Alto: 1st repair (Invoice XXX, 8/22/…

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My 2025 Tesla Cybertruck AWD (VIN: [XXX] ) has a recurring failure of the right rear seat occupant detection system, which governs airbag deployment and is certified by Tesla to meet FMVSS 208. The same alert (internal code RCM2_a698) persisted through two official repairs at Tesla Palo Alto: 1st repair (Invoice XXX, 8/22/2025): seat belt buckle replaced. Alert recurred 2 days later, August 24, 2025. 2nd repair (Invoice XXX, 9/18/2025): harness assembly replaced. Tesla then performed a Visual Quality Check, recording in the invoice: "Technician performed a visual quality check to ensure its condition meets our standards." Vehicle returned as repaired. Relying on Tesla's written certification, I reinstalled my [XXX] son's car seat in that position. He rode there daily for approximately 7 months (September 2025 - April 2026). On April 21, 2026, I tested the seat and found the sensor still actively failing - unable to detect an adult occupant. My spouse witnessed this. I have 30-second video. Alert RCM2_a698 remains active in Tesla's systems today, confirmed by screenshot. This is my family's only vehicle. My wife currently uses the right rear seat. Airbag deployment for that seat cannot be relied upon. Tesla has been notified and has not resolved this issue. INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)

NHTSA ODI #11737205

978 miles · Sep 12, 2025
Seats

The contact owns a 2025 Tesla Cybertruck. The contact stated that while driving at various speeds, the rear middle row seat felt loose and failed to remain in place as intended. The vehicle was taken to a local dealer, where it was diagnosed with a loose rear middle row seat. The vehicle was repaired; however, the failure reoccu…

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The contact owns a 2025 Tesla Cybertruck. The contact stated that while driving at various speeds, the rear middle row seat felt loose and failed to remain in place as intended. The vehicle was taken to a local dealer, where it was diagnosed with a loose rear middle row seat. The vehicle was repaired; however, the failure reoccurred. The manufacturer was made aware of the failure. The failure mileage was approximately 978.

NHTSA ODI #11686918

Official recalls

3

26V255000 · Service Brakes, Hydraulic:foundation Components:disc:rotor; Wheels:lugs/nuts/bolts/studs

Apr 21, 2026

Tesla, Inc. (Tesla) is recalling certain 2024-2026 Cybertruck vehicles equipped with 18-inch steel wheels. The brake rotor stud holes may crack and allow the stud to separate from the wheel hub.

Consequence & remedy

Consequence: Wheel stud separation can cause a loss of vehicle control, increasing the risk of a crash.

Remedy: Tesla Service will replace the front and rear brake rotors, hubs, and lug nuts, free of charge. Owner notification letters were mailed June 20, 2026. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-26-33-003.

Additional source detail variants (2)

Service Brakes, Hydraulic:foundation Components:disc:rotor

Tesla, Inc. (Tesla) is recalling certain 2024-2026 Cybertruck vehicles equipped with 18-inch steel wheels. The brake rotor stud holes may crack and allow the stud to separate from the wheel hub.

Consequence: Wheel stud separation can cause a loss of vehicle control, increasing the risk of a crash.

Remedy: Tesla Service will replace the front and rear brake rotors, hubs, and lug nuts, free of charge. Owner notification letters were mailed June 20, 2026. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-26-33-003.

Wheels:lugs/nuts/bolts/studs

Tesla, Inc. (Tesla) is recalling certain 2024-2026 Cybertruck vehicles equipped with 18-inch steel wheels. The brake rotor stud holes may crack and allow the stud to separate from the wheel hub.

Consequence: Wheel stud separation can cause a loss of vehicle control, increasing the risk of a crash.

Remedy: Tesla Service will replace the front and rear brake rotors, hubs, and lug nuts, free of charge. Owner notification letters were mailed June 20, 2026. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-26-33-003.

25V699000 · Electrical System:software; Exterior Lighting

Oct 14, 2025

Tesla, Inc. (Tesla) is recalling certain 2024-2026 Cybertruck vehicles operating software prior to 2025.38.3. The vehicle controller software may cause the front parking lights to be too bright and exceed the maximum light output, adversely affecting the vision of other drivers. As such, these vehicles fail to comply with the requirements of Federal Motor Vehicle Safety Standard (FMVSS) number 108, "Lamps, Reflective Devices, and Associated Equipment."

Consequence & remedy

Consequence: Parking lights that are too bright can reduce visibility of oncoming drivers, increasing the risk of a crash.

Remedy: Tesla released an over-the-air (OTA) software update, free of charge. Owner notification letters were mailed December 12, 2025. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-25-00-008.

Additional source detail variants (2)

Exterior Lighting

Tesla, Inc. (Tesla) is recalling certain 2024-2026 Cybertruck vehicles operating software prior to 2025.38.3. The vehicle controller software may cause the front parking lights to be too bright and exceed the maximum light output, adversely affecting the vision of other drivers. As such, these vehicles fail to comply with the requirements of Federal Motor Vehicle Safety Standard (FMVSS) number 108, "Lamps, Reflective Devices, and Associated Equipment."

Consequence: Parking lights that are too bright can reduce visibility of oncoming drivers, increasing the risk of a crash.

Remedy: Tesla released an over-the-air (OTA) software update, free of charge. Owner notification letters were mailed December 12, 2025. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-25-00-008.

Electrical System:software

Tesla, Inc. (Tesla) is recalling certain 2024-2026 Cybertruck vehicles operating software prior to 2025.38.3. The vehicle controller software may cause the front parking lights to be too bright and exceed the maximum light output, adversely affecting the vision of other drivers. As such, these vehicles fail to comply with the requirements of Federal Motor Vehicle Safety Standard (FMVSS) number 108, "Lamps, Reflective Devices, and Associated Equipment."

Consequence: Parking lights that are too bright can reduce visibility of oncoming drivers, increasing the risk of a crash.

Remedy: Tesla released an over-the-air (OTA) software update, free of charge. Owner notification letters were mailed December 12, 2025. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-25-00-008.

25V170000 · Structure:body

Mar 18, 2025

Tesla, Inc. (Tesla) is recalling certain 2024-2025 Cybertruck vehicles. The light bar can delaminate and detach from the vehicle.

Consequence & remedy

Consequence: A detached light bar can become a road hazard, increasing the risk of a crash.

Remedy: Tesla service will replace the cant rail assembly, free of charge. Owner notification letters were mailed September 19, 2025. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-25-10-001.

Model-level recall history does not show whether a particular VIN is affected or has received a repair. Check a VIN with NHTSA ↗

NHTSA investigations

2

EA26002 · Fsd Collisions In Reduced Roadway Visibility Conditions

Opened Mar 18, 2026 · No close date supplied

Status: open (inferred from source dates) · Electrical System:adas

The Office of Defects Investigation (ODI) is opening this Engineering Analysis to evaluate Tesla’s Full Self Driving Beta and Full Self Driving (Supervised) (collectively, FSD) degradation detection system. The focus of this investigation will be to assess the system’s ability, when encountering reduced roadway visibility conditions, to detect degradation and alert the driver with sufficient time to respond. ODI will evaluate the performance of FSD in degraded roadway conditions and the updates or modifications by Tesla to the degradation detection system, including the timing, purpose, and capabilities of the updates, and Tesla’s assessment of their safety impact. Tesla’s FSD is an advanced driver assistance system (ADAS) that relies exclusively on vision-based cameras and the related FSD software to detect and respond to the roadway ahead, projecting a path forward based on traffic control devices, vehicles, pedestrians, and the roadway itself. When Tesla began transitioning away from using both cameras and radars to an exclusively camera-based approach, known as Tesla Vision, in mid-2021, it developed and implemented a degradation detection system that it deployed by a software update to existing and new Tesla vehicles. On June 28, 2024, the day after Tesla submitted the SGO report of the November 28, 2023 fatal crash listed in this document, Tesla began developing an update to the degradation detection system. At this time, ODI does not have information on when the update was deployed and which vehicles have the updated system. ODI discussed individual incidents and its initial findings during the PE phase of its investigation with Tesla. As part of those discussions, Tesla’s post-incident analysis indicated that the update to the degradation detection system, had it been installed on the vehicles at the time, may have affected 3 of the 9 incidents identified by ODI. Tesla also described internal data and labeling limitations that prevented a uniform identification and analysis of crash events with the subject system engaged. ODI believes this limitation could have led to under-reporting of subject crashes over portions of the defined time-period. Available incident data raise concerns that Tesla’s degradation detection system, both as originally deployed and later updated, fails to detect and/or warn the driver appropriately under degraded visibility conditions such as glare and airborne obscurants. In the crashes that ODI has reviewed, the system did not detect common roadway conditions that impaired camera visibility and/or provide alerts when camera performance had deteriorated until immediately before the crash occurred. Review of Tesla’s responses revealed additional crashes that occurred in similar environments and where the system either did not detect a degraded state, and/or it did not present the driver with an alert with adequate time for the driver to react. In each of these crashes, FSD also lost track of or never detected a lead vehicle in its path. In upgrading PE24031 to an Engineering Analysis (EA), ODI will gather further information on the updated degradation detection system, including the status of updating vehicles and scope of compatible vehicles, the system’s visibility degradation detection capability, and alerts or warnings to the driver. Lastly, ODI will conduct analysis on six recent potentially related incidents. These incidents can be found at NHTSA.gov under the following SGO report identification numbers: 13781-11937, 13781-13211, 13781-13569, 13781-13633, 13781-13693, 13781-13788. The crashes included in the failure report summary can be found at NHTSA.gov under the following SGO report identification numbers: 13781-8004, 13781-7181, 13781-7381, 13781-7767, 13781-7964, 13781-8977, 13781-9267.

PE25012 · Traffic Safety Violations While Full Self Driving ("fsd") Is Engaged

Opened Oct 7, 2025 · No close date supplied

Status: open (inferred from source dates) · Electrical System:adas

The Office of Defects Investigation (“ODI”) is opening this Preliminary Evaluation (PE) to assess the scope, frequency, and potential safety consequences of FSD executing driving maneuvers that constitute traffic safety violations. This investigation concerns versions of FSD that Tesla has labeled as "FSD (Supervised)" and "FSD (Beta)." Tesla characterizes FSD as an SAE Level 2 partial automation system requiring a fully attentive driver who is engaged in the driving task at all times. Level 2 partial automation systems are designed to support and assist the driver in performing certain aspects of the driving task, requiring a driver to supervise and intervene as necessary.  The driver remains fully responsible at all times for driving the vehicle, including complying with applicable traffic laws. ODI’s investigation will therefore focus, in particular, on whether certain driving inputs within the control authority of FSD forestall the driver’s supervision when they are unexpectedly performed. ODI has identified a number of incidents in which the inputs to the dynamic driving task commanded by FSD induced vehicle behavior that violated traffic safety laws. Although reports of this nature span a variety of behaviors, the reports appear to most commonly involve two types of scenarios. The first type of scenario involves a vehicle operating with FSD proceeding into an intersection in violation of a red traffic signal. The second type of scenario involves FSD commanding a lane change into an opposing lane of traffic. With respect to the first type of scenario, ODI has identified 18 complaints and 1 media report alleging that a Tesla vehicle, operating at an intersection with FSD engaged, failed to remain stopped for the duration of a red traffic signal, failed to stop fully, or failed to accurately detect and display the correct traffic signal state in the vehicle interface. Some complainants also alleged that FSD did not provide warnings of the system's intended behavior as the vehicle was approaching a red traffic signal. ODI has identified six Standing General Order ("SGO") reports in which a Tesla vehicle, operating with FSD engaged, approached an intersection with a red traffic signal, continued to travel into the intersection against the red light and was subsequently involved in a crash with other motor vehicles in the intersection. Of these incidents, four crashes resulted in one or more reported injuries. At least some of the incidents appeared to involve FSD proceeding into the intersection after coming to a complete stop. ODI's pre-investigative work, including coordination with the Maryland Transportation Authority and State Police, indicated that the problem may be repeatable, given that multiple subject incidents occurred at the same intersection in Joppa, Maryland. NHTSA understands that Tesla has since taken action to address the issue at this intersection. With respect to the second type of scenario, ODI has identified 2 SGO reports, 18 complaints, and 2 media reports alleging that a Tesla vehicle, operating with FSD engaged, entered opposing lanes of travel during or following a turn, crossed double-yellow lane markings while proceeding straight, or attempted to turn onto a road in the wrong direction despite the presence of wrong-way road signs. Likewise, ODI has identified 4 SGO reports, 6 complaints, and 1 media report alleging that a Tesla vehicle, operating with FSD engaged, proceeded straight through an intersection in a turn-only lane or executed a turn at an intersection in a through lane despite the presence of lane markings or signals. Complaints also alleged that FSD did not provide warnings of the system's intended behavior. Some complaints alleged that more than one of these failures occurred and, as such, the numbers are not cumulative. Some of the reported incidents appeared to involve FSD executing a lane change into an opposing lane of travel with little notice to a driver or opportunity to intervene. ODI’s review will assess whether there was prior warning or adequate time for the driver to respond to the unexpected behavior or to safely supervise the automated driving task. This review will assess any warnings to the driver about the system's impending behavior; the time given to drivers to respond; the capability of FSD to detect, display to the driver, and respond appropriately to traffic signals; and the capability of FSD to detect and respond to lane markings and wrong-way signage. NHTSA's review will also consider any updates or modifications to the system(s) that may affect the performance of FSD with respect to obeying traffic safety laws and signals. This assessment will focus, in particular, on the types of traffic safety violations described above, as most reports identified thus far have centered around those behaviors. While the behaviors under investigation appear to occur most frequently at intersections, NHTSA’s investigation will encompass any other types of situations in which this behavior may arise, such as when traveling adjacent to a lane of opposing traffic or when approaching railroad crossings. If other evidence received during this investigation involve other types of traffic safety violations, those may be considered as part of this assessment as well. To review the ODI reports cited in the Opening Resume ODI Report Identification Number document, go to NHTSA.gov. The SGO reports cited in this Resume are listed below by report ID and are available for download at NHTSA.gov/laws-regulations/standing-general-order-crash-reporting. 13781-8739-1, 13781-8995-1, 13781-9623-1, 13781-10333-1, 13781-10872-1, 13781-10930-1, 13781-10939-1, 13781-10941-1, 13781-11069-1, 13781-11305-1, 13781-11579-1 Media reported allegations included as a separate attachment.