NHTSA owner reports · September 18, 2026 snapshot.
What owners actually said
21 reportsMileage unknown · Jul 18, 2026
Lane DepartureSteeringCrash
Firstly, we were driving in the center lane on I-84W (three lanes), with Full Self Driving (FSD) at 55 mph. The car veered left on it owns (under FSD) into the center median with the front driver side of the vehicle struck the metal beam guardrail causing both air bags to deploy on the driver and left rear passenger sides. The c…
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Firstly, we were driving in the center lane on I-84W (three lanes), with Full Self Driving (FSD) at 55 mph. The car veered left on it owns (under FSD) into the center median with the front driver side of the vehicle struck the metal beam guardrail causing both air bags to deploy on the driver and left rear passenger sides. The car continued to move forward in the next 4-6 seconds under FSD (approximately 10-20 feet range) and then came to a complete stop with flashing warning screen asking driver to take over the steering wheel immediately.
NHTSA ODI #11751300
Mileage unknown · Jul 13, 2026
Electrical SystemUnknown Or Other
Complaint Title: Defective Horn System on 2026 Tesla Model 3 - Ineffective in Rain or Highway Conditions Description: The horn on my 2026 Tesla Model 3 Highland is dangerously inadequate. It uses a single pedestrian warning speaker instead of a proper horn, which is easily overpowered by road noise, tire noise from large trucks,…
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Complaint Title: Defective Horn System on 2026 Tesla Model 3 - Ineffective in Rain or Highway Conditions Description: The horn on my 2026 Tesla Model 3 Highland is dangerously inadequate. It uses a single pedestrian warning speaker instead of a proper horn, which is easily overpowered by road noise, tire noise from large trucks, and especially rain. I cannot reliably alert other drivers, including 18-wheelers, when they are drifting into my lane or failing to yield. This creates a serious safety risk in wet conditions and highway driving. Traditional horns have been effective for decades — this design fails basic safety expectations. I am requesting immediate investigation and a fix.
NHTSA ODI #11750177
Mileage unknown · Jul 11, 2026
Back Over PreventionForward Collision AvoidanceLane DepartureCrash
Incident involving my 2026 Tesla Model 3 equipped with HW4 hardware and the latest FSD (Supervised) software. During a garage reverse maneuver performed under FSD supervision, the vehicle had sufficient time to assess the surrounding environment before initiating the maneuver. There were no pedestrians or moving obstacles nearb…
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Incident involving my 2026 Tesla Model 3 equipped with HW4 hardware and the latest FSD (Supervised) software. During a garage reverse maneuver performed under FSD supervision, the vehicle had sufficient time to assess the surrounding environment before initiating the maneuver. There were no pedestrians or moving obstacles nearby. An adjacent parked vehicle was present next to the intended reversing path. During the maneuver, the vehicle made initial contact with the adjacent vehicle. At no point did the vehicle provide any collision warning, alert, or indication that a collision had occurred. After the initial contact, the vehicle continued moving and a second impact occurred shortly afterward, resulting in additional damage. Immediately after the second impact, the driver intervened and took control of the vehicle to stop the maneuver, before further damage is caused. My main concerns are: 1. Why did FSD fail to identify the adjacent vehicle before the maneuver? 2. Why was no collision warning provided before or after the initial contact? 3. Why did the vehicle continue the reversing maneuver after the first impact instead of stopping till driver intervention? 4. What if is pediatrician who qualify ADA, children, elder was in the position of the adjacent vehicle, this failed sensing would cause imparable result. I would appreciate a technical review of this event and a detailed explanation of Tesla’s findings.
NHTSA ODI #11749677
Mileage unknown · Jul 4, 2026
Lane Departure
Lane keeping assistance turns on with every drive no matter how many times I set it to off. Where I live there are many potholes and poorly paved roads, along with poorly marked roads. As I am swerving around obstacles the car will fight the steering inputs I am giving it, trying to steer me back into whatever I was avoiding. …
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Lane keeping assistance turns on with every drive no matter how many times I set it to off. Where I live there are many potholes and poorly paved roads, along with poorly marked roads. As I am swerving around obstacles the car will fight the steering inputs I am giving it, trying to steer me back into whatever I was avoiding. This is a safety issue, and is not a problem on our older Tesla model 3 performance, as once that vehicle is set to off, it stays off. Now, as I start every drive I am navigating through a couple screens to turn off this "safety" feature.
NHTSA ODI #11748263
Mileage unknown · Jun 20, 2026
StructureInjury
While the vehicle was parked outdoors and the powered rear trunk lid was fully open, I leaned/bent forward into the trunk to retrieve an item. The edge of the trunk lid near the taillight assembly made contact with my scalp, causing a laceration. The wound bled significantly。The trunk lid’s fully-open position, combined with the…
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While the vehicle was parked outdoors and the powered rear trunk lid was fully open, I leaned/bent forward into the trunk to retrieve an item. The edge of the trunk lid near the taillight assembly made contact with my scalp, causing a laceration. The wound bled significantly。The trunk lid’s fully-open position, combined with the geometry/edge of the liftgate near the taillight, creates a head-strike hazard for an average-height adult bending into the cargo area. I am requesting that NHTSA investigate whether the powered trunk lid’s open-position geometry presents an unreasonable risk of head injury to vehicle occupants/owners during normal use.
NHTSA ODI #11745391
Mileage unknown · Jun 18, 2026
Unknown Or Other
Tesla Model 3 Full Self-Driving (Supervised) feature I was using Self-Driving mode in my Tesla Model 3 while traveling on [XXX]. The vehicle suddenly turned right without warning, struck a mailbox, broke the right-side mirror, and came to a complete stop. There were no vehicles in front of or behind my car at the time of the in…
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Tesla Model 3 Full Self-Driving (Supervised) feature I was using Self-Driving mode in my Tesla Model 3 while traveling on [XXX]. The vehicle suddenly turned right without warning, struck a mailbox, broke the right-side mirror, and came to a complete stop. There were no vehicles in front of or behind my car at the time of the incident. INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)
NHTSA ODI #11744965
Mileage unknown · May 30, 2026
Unknown Or OtherCrash
We bought the new 2026 Tesla Model 3 and picked it up on 5/3/2026. The next date 5/4/2026, I was trying to drive it to work. I got in the car and used the Tesla’s Full Self-Driving function and let it drive the car by itself. It started moving forward and tried to make a U turn. Since there was not enough space for it to make a …
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We bought the new 2026 Tesla Model 3 and picked it up on 5/3/2026. The next date 5/4/2026, I was trying to drive it to work. I got in the car and used the Tesla’s Full Self-Driving function and let it drive the car by itself. It started moving forward and tried to make a U turn. Since there was not enough space for it to make a U turn because there was a car parked on the sidewalk, so it stopped for a moment. But unfortunately, it continued to move forward and hit the car parked on the sidewalk. It supposedly backed up a little after the stop, but it didn’t detect the car parked on the sidewalk and still moved forward and hit the parked car. The Tesla's FSD is malfunctioning and caused my accident because there was such a big car in front and it didn't detect it and still hit it.
NHTSA ODI #11741020
Mileage unknown · Apr 23, 2026
Back Over PreventionForward Collision AvoidanceLane DepartureCrash
The vehicle's Full Self-Driving (FSD) system was actively controlling the vehicle while executing a reverse maneuver into a residential garage — a routine the system had successfully performed on multiple prior occasions. During this session, the FSD system misjudged the maneuver and the vehicle struck the wall of the garage, ca…
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The vehicle's Full Self-Driving (FSD) system was actively controlling the vehicle while executing a reverse maneuver into a residential garage — a routine the system had successfully performed on multiple prior occasions. During this session, the FSD system misjudged the maneuver and the vehicle struck the wall of the garage, causing damage. The failed component is the FSD software/sensor system. The vehicle is available for inspection upon request. Safety was put at risk because the system was in full control of vehicle movement in a confined space. The unexpected behavior did not provide sufficient time for the supervising driver to intervene before impact. No warning lamps or messages appeared prior to the failure. The system gave no indication it would behave differently from previous successful executions of the same maneuver. The incident has not yet been confirmed by a dealer or inspected by the manufacturer, though a vehicle incident data report has been requested from Tesla.
NHTSA ODI #11733346
Mileage unknown · Apr 21, 2026
Air BagsSeat BeltsCrashInjury
I was involved in a rear-end collision while stopped at an intersection. The impact was significant. During the crash, the front airbags did not deploy. More importantly, the seat belts in both front seats (driver and front passenger) failed to function as expected. Instead of tightening during impact, the seat belts appeared t…
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I was involved in a rear-end collision while stopped at an intersection. The impact was significant. During the crash, the front airbags did not deploy. More importantly, the seat belts in both front seats (driver and front passenger) failed to function as expected. Instead of tightening during impact, the seat belts appeared to loosen, allowing excessive forward movement of the occupants. As a result, I was thrown forward and struck the steering wheel. The lack of seat belt pretensioning raises serious concerns about a potential failure of the vehicle’s restraint system. This incident suggests that the seat belt pretensioners and/or related crash detection systems may not have activated properly under a significant collision event. I am concerned that this represents a safety defect that could increase the risk of injury in a crash. I request that this incident be investigated as a possible failure of the restraint system, including seat belt pretensioners and crash sensing mechanisms.
NHTSA ODI #11732730
Mileage unknown · Apr 10, 2026
Back Over PreventionSteeringVehicle Speed ControlCrash
On February 5, 2026, at 12:21 PM PST, my 2026 Tesla Model 3 (Hardware 4) collided with a 5-inch wooden pillar while using the Autopark feature. The system failed to provide any audio chimes or visual warnings prior to the impact. I officially requested the driving logs from Tesla to investigate the cause of this failure, but Te…
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On February 5, 2026, at 12:21 PM PST, my 2026 Tesla Model 3 (Hardware 4) collided with a 5-inch wooden pillar while using the Autopark feature. The system failed to provide any audio chimes or visual warnings prior to the impact. I officially requested the driving logs from Tesla to investigate the cause of this failure, but Tesla refused to provide any logs or data. Furthermore, Tesla Service Center technicians insisted there were no hardware defects, effectively confirming that the collision was caused by a software/algorithmic failure of the Tesla Vision system to detect a stationary vertical object. Despite Tesla’s claim that the vehicle is "operating as designed," the system's inability to recognize common infrastructure and its failure to warn the driver constitutes a severe safety risk. This defect must be investigated to ensure the safety of the Hardware 4 autonomous platform, as the lack of proximity alerts could lead to far more serious accidents involving pedestrians or other obstacles.
NHTSA ODI #11730303
NHTSA investigations
3EA26002 · 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.
AQ25002 · Compliance With Standing General Order 2021-01 Reporting Requirements
Opened Aug 20, 2025 · No close date supplied
Status: open (inferred from source dates) · Electrical System:adas
The Office of Defects Investigation (“ODI”) has identified numerous incident reports submitted by Tesla, Inc. (“Tesla”) in response to Standing General Order 2021-01 (the “SGO”), in which the reported crashes occurred several months or more before the dates of the reports. The majority of these reports involved crashes in which the Standing General Order in place at the time required a report to be submitted within one or five days of Tesla receiving notice of the crash. When the reports were submitted, Tesla submitted them in one of two ways. Many of the reports were submitted as part of a single batch, while others were submitted on a rolling basis. Preliminary engagement between ODI and Tesla on the issue indicates that the timing of the reports was due to an issue with Tesla’s data collection, which, according to Tesla, has now been fixed. NHTSA is opening this Audit Query, a standard process for reviewing compliance with legal requirements, to evaluate the cause of the potential delays in reporting, the scope of any such delays, and the mitigations that Tesla has developed to address them. As part of this review, NHTSA will assess whether any reports of prior incidents remain outstanding and whether the reports that were submitted include all of the required and available data. The SGO reports cited in the Opening Resume, can be found at NHTSA.gov/SGOCrashReporting under the following SGO 2021-01 report IDs: 13781-11020-1 13781-10844-1 13781-10843-1 13781-10530-1 13781-10160-1 13781-10159-1 13781-10157-1 13781-10146-1 13781-10122-1 13781-10098-1 13781-10097-1 13781-10096-1 13781-10095-1 13781-10094-1 13781-10093-1 13781-10023-1 13781-10022-1 13781-10021-1 13781-10020-1 13781-10017-1 13781-10016-1 13781-10015-1 13781-10014-1 13781-10013-1 13781-10012-1 13781-6047-1 13781-9930-1 13781-9917-1 13781-9928-1 13781-9925-1 13781-9924-1 13781-9923-1 13781-9922-1 13781-9835-1 13781-9834-1 13781-9833-1 13781-9832-1 13781-9831-1 13781-9830-1 13781-9829-1 13781-9827-1 13781-9818-1 13781-9780-1 13781-9779-1 13781-9778-1 13781-9777-1 13781-9775-1 13781-9774-1 13781-9773-1 13781-9772-1 13781-9771-1 13781-9770-1 13781-9728-1 13781-9688-1 13781-9715-1 13781-9714-1 13781-9713-1 13781-9712-1 13781-9711-1 13781-9710-1 13781-9709-1 13781-9696-1 13781-9695-1 13781-9694-1 13781-9693-1 13781-9692-1 13781-9691-1 13781-9690-1 13781-9687-1 13781-9686-1 13781-9342-1 13781-9319-1 13781-9019-1 13781-8910-1 13781-8732-1 13781-8712-1 13781-8310-1 13781-7897-1 13781-7895-1 13781-7835-1 13781-7798-1 13781-7797-1 13781-7758-1 13781-7757-1 13781-7756-1 13781-7755-1 13781-7667-1 13781-7399-1 13781-7398-1 13781-7397-1 13781-7396-1 13781-7395-1 13781-7394-1 13781-7393-1 13781-7389-1 13781-7388-1 13781-7387-1 13781-7386-1 13781-7385-1 13781-7383-1 13781-7187-1 13781-7186-1 13781-7185-1 13781-7184-1 13781-7181-1 13781-7023-1 13781-6399-1 13781-6389-1 13781-6388-1 13781-6387-1 13781-6386-1 13781-6379-1 13781-6378-1 13781-6377-1 13781-6375-1 13781-6214-1 13781-6172-1 13781-6155-1 13781-6154-1 13781-6122-1 13781-6120-1 13781-6118-1 13781-5800-1