Model-year record

2018 Tesla Model X
See the complaints, recalls, crash rating, and fuel economy in the public record. Then check the mileage and history of the car you found.
This page shows records, not a buy or avoid call.
The same model year can include a well-kept car and a neglected one. Use these records to plan what to check. Use the specific-car check when you know the mileage.
Complaints filed
141
Reports to NHTSA, 2018
Safety recalls
9
NHTSA campaigns on record
NHTSA crash test
Not rated
Overall NCAP rating
Combined MPG
87
EPA estimate
Known issues
Suspension issues lead owner complaints (22% of 141 reports), followed by electrical system (16%).
+ 11 more component categories with fewer reports.
Share of all 141 NHTSA complaints for this model year, grouped by the component owners named. Bars are scaled to the largest category. Examples: ODI 11398810, ODI 11300248, ODI 11292375, ODI 11670369, ODI 11659397.
Individual complaint reports(141)
Showing the 50 most recent reportsSuspensionJun 2025 · ODI 11670369Details +Close −
I was driving down the road and my car started shaking, I was about 5 or 6 miles from an exit so continued and within 1 mile a rod broke and fell on top of my tire causing me to catastrophically have to stop n swerve off the road in 5 o'clock traffic. I just purchased this car 3 months ago, no issues just happend all of sudden. There are reports of weak suspension parts for tesla specifically the model x and y. The suspension parts need to be recalled. I was VERY lucky to not have collided with another car and potentially causing a fatality.
- Reported
- Jun 2025
- Incident date
- Jun 2025
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionMay 2025 · ODI 11659397Details +Close −
My 2018 Tesla model X front suspension is making cranking noise and seems like it’s unsafe to drive. This is a known issue to Tesla and NHTSA but recall was never announced so Tesla service center is not fixing this issue. Could you please look into this.
- Reported
- May 2025
- Incident date
- Apr 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Forward Collision AvoidanceMay 2025 · ODI 11659042Details +Close −
Our Tesla Model X is failing recently with several issues as listed below: 1. 'Autiopilot disabled' - Autopilot was not available to use since 09/2024 after upgraded to 12.x FSD upgrade. Tesla service diagnosed in 11/2024 with some error connected to evaporator fan, advised me to replace the kit at an estimated $580 2. 'Unable to start' - HV battery failed on 03/06/2025 with series of failures that was reported to NHTSA (VOQ#11651899). Tesla replaced the battery, and service delivered vehicle on 03/24/2025 3. 'Hood unlatch' failure - while driving home from Service center on the same day at 70 mph on I-95 freeway, the 'hood' popped up blocking the front view, and had to pull vehicle to shoulder to safety. There was NO warning message on the screen at all. Took the vehicle to service immediately, and service team pointed that they forgot to turn on 'auto-latch' resulting hood failure. They offered the 'free' repair of hood. 4. 'ECU Autopilot failure' - while taking the delivery of 'hood' fix on 04/22/2025, I noticed the 'autopilot' was still NOT working. Serviced diagnosed with 'failed autopilot ECU' at an estimated cost of $1791.55. Currenlty the vehicle is with Tesla Service team. My vehicle is with service team since 03/06/2025, and has been identified with series of issues/failures. It has caused severe safety failure putting our lives at risk with 'unlatched' hood while driving on a freeway. Also with HV battery failure its completely unreliable on when it might fail during driving. Now with failed autopilot ECU, we are unsure of the vehicles ability to navigate, drive function and safety concerns. Service team is unable to provide precise root causes or fixes, or restore it to a functioning vehicle. Every visit with service team there is a new issue with vehicle. Our family is greatly concern with the quality of the vehicle, persisting issues, safety concerns and overall reliability of the vehicle. Please find enclosed all service records.
- Reported
- May 2025
- Incident date
- Apr 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Electrical SystemApr 2025 · ODI 11655006Details +Close −
One fine morning Car would not start and shows some errors. tried using a AAA service and Had the car towed into Tesla SC. After diagnosis they mentioned that a HV x099 connector is corroded. To me this cannot be a vehicle owner fault. This seems to be a failure of an integral part associated with the Battery pack. Tesla has charged me a total of $2891.46 including taxes out of which $85 was for the part replacement and $2626.80 for labor costs. This seems like a major issue with a connector so deeply protected if corrodes this should be a Tesla design/manufacturing fault. ------------- Notes from tech: Repair Notes: towed vehicle into service center and utilized maintainer to power on. Once vehicle was online attempted to pull logs. While logs uploaded verified Hvil alerts present on UI. Began investigation checking hvil circuit from x099 to x098. Removed hv battery pack and found corrosion on connector x099. Inspected battery pack and also found corrosion on pack side connector. Will require removing ancillary tray in order to investigate corrosion further into the pack. after removing ancillary tray i found the corrosion had not gone past the low voltage rapid mate connector. Removed and replaced rapid mate and verified proper operation after reassembly. Test drove and verified no alerts present and vehicle functionality restored Total Parts Amount 85.00 Total Labor Amount 2,296.80 Labor Hours 10.44 ----------------------- Concern: corrosion found on connector X099 Repair Notes: performed wire repair on connector x099-11/12. Removed all corrosion from connector and reinstalled. Verified wire repair performed to tesla specification Correction: Wire - Electrical Harness (Does Not Include Access Labor) (Repair) Labor Hours Price Adjustment Subtotal 1.50 330.00 0.00 330.00 Pay Type: Customer Pay Total Parts Amount 0.00 Total Labor Amount 330.00 Labor Hours 1.50 Should these parts connecting to the battery be covered under the Battery warranty? Please help..
- Reported
- Apr 2025
- Incident date
- Apr 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Power TrainApr 2025 · ODI 11654640Details +Close −
I have had to replace my axles/have had cv joint failure 3 times and have another service scheduled for a fourth CV/axle service. This is a known problem and Tesla has acknowledged it and done nothing about it. See Tesla service bulletin SB-20-39-001about premature axle/CV joint failures.
- Reported
- Apr 2025
- Incident date
- Mar 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Latches/Locks/LinkagesMar 2025 · ODI 11651899Details +Close −
While driving on the freeway at 60 mph, the car's hood suddenly opened and struck the windshield, obstructing the driver's view completely. The car had just left a Tesla service center a few minutes earlier, and the incident occurred while driving on [XXX] North freeway near Dedham, MA. Incident occurred on [XXX] at [XXX]. Tesla service at Dedham, MA, accepted the vehicle for hood repair and mentioned its a service mistake. They did not mention any issues related to recall or software. Vehicle is still at Tesla service center at Dedham, MA, under repair. INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)
- Reported
- Mar 2025
- Incident date
- Mar 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Service BrakesMar 2025 · ODI 11650036Details +Close −
Based on thousands of posts, replies, etc, this seems to be a well known issue with this model/year Tesla as well as other years/models. It seems that the Wheel Sensor Cable is not fastened properly, and over time, the cable runs against the tire, causing the internal wires to be exposed, this in turn causes numerous faults to occur, which includes causing ABS, lane departure avoidance, traction control, stability control, ABS, and regenerative braking to stop working. This happens while driving resulting in an immediate change in how the vehicle functions which could easily lead to a major accident While there are numerous forums where this issue is noted, below is one that details the issue with photos [XXX] INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)
- Reported
- Mar 2025
- Incident date
- Mar 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Air BagsJan 2025 · ODI 11638080Details +Close −
‘safety restraint system issue’ error pops up when ever car is turned on was told that can cause airbag to not be deployed when needed.
- Reported
- Jan 2025
- Incident date
- Jan 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Air BagsJan 2025 · ODI 11636400Details +Close −
System warning for the rear left safety restraint. Took it into Tesla and they charged me.
- Reported
- Jan 2025
- Incident date
- Jan 2025
- Mileage
- Not provided
- Outcome flags
- None reported
Fuel/Propulsion SystemJan 2025 · ODI 11633947Details +Close −
Jumped in neutral while at at a stop light. Would not go back in gear.
- Reported
- Jan 2025
- Incident date
- Dec 2024
- Mileage
- Not provided
- Outcome flags
- None reported
SteeringDec 2024 · ODI 11633471Details +Close −
The horn on the steering wheel stopped working recently. Horns are important safety features on any vehicle, and electric vehicles are especially quiet so the horn is essential. The other buttons and scrollers on the steering wheel also stopped working. It's unclear if the airbag still functions.
- Reported
- Dec 2024
- Incident date
- Dec 2024
- Mileage
- Not provided
- Outcome flags
- None reported
Power TrainJul 2024 · ODI 11604311Details +Close −
AC compressor failed within 1000 miles of High Voltage battery being replaced. This is the second AC compressor failure, the first failure occured at approx 70k miles, Nov 2022. The AC is used to cool the battery during high voltage charging and driving. Upon failure speed can be reduced, determined by multiple factors and charging rate is reduced as well. I was told it was an internal failure of the compressor and when pressed further tesla was unable to explain why it failed, again.
- Reported
- Jul 2024
- Incident date
- Jul 2024
- Mileage
- Not provided
- Outcome flags
- None reported
SeatsJun 2024 · ODI 11594506Details +Close −
INCIDENT REPORT: automated driver seat attempted to crush me when vehicle placed into drive Date: 15 June 2024 4:10 ET firmware version: v12 (2024.14.9 0b82f700aebe) steps to produce incident: 1. vehicle to park 2. seat auto changes to easy entry 3. opened the frunk 4. exit vehicle, closed door 5. re-entered vehicle to move it a little forward 6. press brake, put into drive, entered PIN 7. DRIVER SEAT BACK BEGINS TO TILT FORWARD TO ABNORMAL EXTREME FORWARD ANGLE, SEAT STARTS TO MOVE FORWARD (from easy entry mode), CRUSHING DRIVER AGAINST STEERING WHEEL 8. manual press of profile to user profile does not stop moving seat, does not retrace seat back from abnormal extreme forward angle, seat continues to move forward, crushing driver against steering wheel. 9. manual shift to PARK stops seat forward movement, does not return seat back from abnormal extreme forward angle. 10. opened door and exited vehicle, snapped photo of abnormal seat extreme forward angle ##
- Reported
- Jun 2024
- Incident date
- Jun 2024
- Mileage
- Not provided
- Outcome flags
- None reported
Air BagsMay 2024 · ODI 11590693Details +Close −
I have encountered what seems to be a very common issue in 2018ish tesla vehicles. Seatbelt sensor issues. While I believe it is due to wiring below the seat, tesla claims the only fix is an entire seat replacement. Researching this it seems to be a widespread issue, especially as the cars age.
- Reported
- May 2024
- Incident date
- Apr 2024
- Mileage
- Not provided
- Outcome flags
- None reported
Unknown Or OtherApr 2024 · ODI 11583760 · crashDetails +Close −
on 4/17/2024 while exiting bank drive up lane in parking garage car suddenly accelerated from 5mph to maximum, both feet on brake had no effect, drive lever did not engage neutral or reverse. Car exited garage and was able to be steered onto median into a tree to stop car. Air bags deployed. Thankfully no one injured, if there had been a pedestrian or another car there would have been a bad outcome. Attempted to contact Tesla but unsuccessful locating telephone number or online contact to report, was able to send text to 24 hour tech assistance line, no response as of now.
- Reported
- Apr 2024
- Incident date
- Apr 2024
- Mileage
- Not provided
- Outcome flags
- Crash
SteeringApr 2024 · ODI 11582137Details +Close −
The car starts developing very loud squeaking noise when the suspension is at work, when turning, and when accelerating/decelerating
- Reported
- Apr 2024
- Incident date
- Mar 2024
- Mileage
- Not provided
- Outcome flags
- None reported
Seat BeltsApr 2024 · ODI 11580699Details +Close −
The contact owns a 2018 Tesla Model X. The contact stated that when the vehicle was started, the driver and passenger side second-row captain seat belts were engaged, and the seat belt restraint error message was displayed. Additionally, the contact stated that when the seat belts were extended right, and seat belts failed to retract. The vehicle was taken to a dealer where it was diagnosed that the seat belt assembly needed to be replaced. The vehicle was not repaired. The manufacturer was notified of the failure and a complaint was filed. The failure mileage was unknown.
- Reported
- Apr 2024
- Incident date
- Apr 2024
- Mileage
- Not provided
- Outcome flags
- None reported
SteeringMar 2024 · ODI 11579414Details +Close −
I was driving on [XXX] from Carson City to Reno in Washoe Valley while on autopilot, the car suddenly alerted with very loud alarms, showed 1. steering assist reduced, 2. Automatic Emergency Braking is unavailable 3. Traction Control disabled 4. Stability control disabled 5. Park Assist unavailable. I pulled over to a safe parking area. Then the car locked out for 75 mins, in Neutral gear, can't shut off, can't park, can't reset the car at all even after talking to Tesla support. While waiting for the tow truck, I turned it into Tow mode, was able to change into Park mode finally, and hard reset the car. I took it in and Tesla told me the steering system was the problem and I was out of warranty so I had to pay A LOT OF money to repair/replace it. INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)
- Reported
- Mar 2024
- Incident date
- Feb 2024
- Mileage
- Not provided
- Outcome flags
- None reported
Electrical SystemMar 2024 · ODI 11576105Details +Close −
As proactive and responsible car owners, we experienced an alert on our Tesla X stating it needed service, vehicle may not restart. We also recorded a concerning noise that clearly showed a problem ...And brought the car into the Tesla Blue Ash service center. It was estimated 3/4 hours to repair. After a day or so, we inquired and we were informed of "difficulty" performing diagnosis. We once again patiently waited for a diagnosis that was not received until we inquired again, days later. The car was held for a week and deemed acceptable as noted in the invoice. We drove this vehicle for less than a total of 1-2 hours over Saturday to Sunday to discover it unresponsive in our garage. It was stuck on the charger. HV battery fully charged. Tesla remote came out to remotely help us. They attempted replacement of the 12v and then stated it wasn't safe and that he couldn't put it into tow mode due to the voltage leak concern. We had two AAA tow truck drivers refuse attempt to tow the vehicle due to the impossible location. We were informed by Tesla that based on their algorithm at the first appointment nothing alerted them despite our video of the concern. They were not able to locate the problem and that led them to release an unsafe vehicle to us. We took our car to a trusted Tesla service center immediately and as experts of the vehicle they were not able to accurately and proactively diagnose a problem until the ac compressor was completely dead. We then were stuck to tow the vehicle back to them despite bringing it in with an early concern.
- Reported
- Mar 2024
- Incident date
- Mar 2024
- Mileage
- Not provided
- Outcome flags
- None reported
Forward Collision AvoidanceFeb 2024 · ODI 11574320Details +Close −
The vehicle was in cruise control and had a phantom braking event. The vehicle was going at 70 mph and suddenly braked even though there was significant distance between the car in front and nothing on the road. The sun was glaring on the road and possibly the car detected the shadow on the road as an object and braked because of it.
- Reported
- Feb 2024
- Incident date
- Nov 2023
- Mileage
- Not provided
- Outcome flags
- None reported
Forward Collision AvoidanceFeb 2024 · ODI 11573662Details +Close −
The Tesla recall under NHTSA Recall No: 23V-838 has not been completed by Tesla. The upgraded computer I purchased from Tesla and had installed in December 2021 cannot accept the OTA update. Tesla is requesting that I replace the computer again for 2 thousand dollars for the recall OTA. Telsa said my current computer has an internal bug and needs to be replaced. I should not have to spend 2K for another computer that barely lasted 2 years.
- Reported
- Feb 2024
- Incident date
- Jan 2024
- Mileage
- Not provided
- Outcome flags
- None reported
Electrical SystemFeb 2024 · ODI 11571989Details +Close −
The contact owns a 2018 Tesla Model X. The contact stated while attempting to park, the vehicle suddenly accelerated forward independently. As a result, the vehicle careened through an outdoor dining area, causing extensive property damage. The air bags did not deploy. A Police report was not filed, and injuries were not reported. No warning lights were illuminated. The vehicle was towed from the scene directly to a body shop for the repair. The vehicle was taken to an independent mechanic, who was unable to diagnose the failure. The vehicle was not repaired. After investigating the failure, the contact related the failure to NHTSA Campaign Number: 23V838000 (Electrical System) and the VIN was included. The manufacturer was notified of the failure, and a case was opened. The failure mileage was 40,000.
- Reported
- Feb 2024
- Incident date
- Sep 2023
- Mileage
- Not provided
- Outcome flags
- None reported
Unknown Or OtherFeb 2024 · ODI 11571991Details +Close −
Auto pilot
- Reported
- Feb 2024
- Incident date
- Jan 2024
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionFeb 2024 · ODI 11570083Details +Close −
Took my car to a tesla service center to repair the suspension front upper arm in feb2023 for $300 Today the front suspension lower arm/forelink/aft failed and they are making the repair now. Repair costs is $1600. After doing some research, it seems the suspension issue on the model x is a widespread and faulty design issue. They fail with the car being just 5 years old.
- Reported
- Feb 2024
- Incident date
- Feb 2024
- Mileage
- Not provided
- Outcome flags
- None reported
SteeringDec 2023 · ODI 11561686Details +Close −
I am writing to you once again to emphasize and provide additional details regarding the critical safety issue I previously addressed concerning the Tesla Model X vehicles, which is similarly affecting Tesla Model S models. My personal experience underscores the severity of this problem: I have had to replace five tires due to accelerated inner wall wear. This specific wear pattern is a direct result of improper camber alignment, an issue that Tesla has continuously refused to rectify. This problem is not isolated to my vehicle alone. A growing number of Tesla Model X and Model S owners have reported similar experiences, indicating a widespread and systemic issue. The accelerated inner wall tire wear poses significant safety risks, as it can lead to unexpected and dangerous tire failures on the road. Despite the clear evidence and numerous complaints from Tesla owners, Tesla has consistently declined to address this issue adequately. It appears that the company’s reluctance is rooted in the fact that proper repair or recall to fix the camber alignment is not cost-effective from their perspective. However, this cost-cutting measure is putting drivers and passengers at risk. Given the scale and gravity of this issue, I urge the National Highway Safety Institute to take immediate action. It is essential to investigate these recurring problems with both the Tesla Model X and Model S models. The safety of Tesla drivers, passengers, and the general public is at stake, and a thorough investigation could compel Tesla to take the necessary corrective actions. Thank you for your attention to this urgent safety matter. I trust that the National Highway Safety Institute will act promptly to ensure automotive safety and hold manufacturers accountable for their vehicles’ reliability and safety.
- Reported
- Dec 2023
- Incident date
- Dec 2023
- Mileage
- Not provided
- Outcome flags
- None reported
Seat BeltsNov 2023 · ODI 11554665Details +Close −
In the middle row of a six seat Tesla Model X, if one installs a forward facing car seat the latch which connects to the backside anchor of the seat has no integrity. The belt slides from over the seat of the car killing the purpose of the tether.
- Reported
- Nov 2023
- Incident date
- Nov 2023
- Mileage
- Not provided
- Outcome flags
- None reported
Forward Collision AvoidanceNov 2023 · ODI 11554607 · crashDetails +Close −
The Full Self Driving System failed to operate correctly. This caused my car to hit another car. I have asked Tesla for the data they use to tell what the driver was doing when the system was on but the Tesla staff who respond to my requests plead ignorance of what data I am referring to. I am not ready to spend the money it would cost to hire a lawyer to force Tesla to hand over the data from their system. I have video from the Tesla camera showing what happens. I will try to upload it. Here is a quick run through of what happened: I entered the freeway and got into the left lane. Once I was safely in the left lane and up to speed I turned on the FSD keeping my hands on the steering wheel. After a few moments the car veered to the right, I tugged against the pull of the FSD and got it back in the lane when all of a sudden it turned my wheel hard right into a minivan. It happened so fast that the wheel turned even with my hands on it. I have been trying to talk to someone at Tesla but it is difficult to break through the front lines as they deflect contacts away from anyone who might be able to answer my questions about getting the FSD incident data. The video is .mp4 so it is not allowing me to upload. Please let me know how to send you the video.
- Reported
- Nov 2023
- Incident date
- Nov 2023
- Mileage
- Not provided
- Outcome flags
- Crash
Lane DepartureOct 2023 · ODI 11552254Details +Close −
On Oct. 26 at approximately 5:45 p.m. on HWY 26 near Sandy, OR the autopilot system failed by abruptly turning the car into the upcoming turn lain (marked with solid white line) and towards oncoming traffic. I had to immediately take significant corrective action to move the car back into the lane I was traveling. I firmly believe that the car could have cross into the lane going the opposite direction. I definitely was very unsettled by this event. This type of spontaneous autopilot error has occurred numerous times in the past to me (have driven a Model X Tesla since 2016) and I now very seldom use the feature while driving. I have taking no further action regarding this event or others because while under warranty Tesla always come up with rationale that they couldn't find a problem because of loss of connectivity, could not detect a problem, etc. I thought that through the years with their hype and over-the-air updates things would get better but they have not! Thank you for your time. [XXX] INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)
- Reported
- Oct 2023
- Incident date
- Oct 2023
- Mileage
- Not provided
- Outcome flags
- None reported
StructureSep 2023 · ODI 11546429Details +Close −
Falcon doors failure to open on numerous occasions since Dec. 2020. This is a very frequent issue and I've had it into Tesla 6 to 7 times, they say can't replicate issue, same this past week and 30 min after I got it back same issue. Heat and Sun cause the doors to not open and it's getting worse. Aug 28, 2023 at 10:39 am and on thru Aug 30, 2023 on road trip to and from Phoenix, AZ in Indio CA I stopped for my kids to use the bathroom and neither door would open, override doesn't work and just shows "obstruction" even when there is nothing there, because my kids couldn't get out they were extremely stressed and almost wet themselves, every rest stop same thing, in Phoenix something, on the return trip samething every rest stop and this time one of my kids was sick, thinking he needed to throw up and again the falcon doors wouldn't open. If I was able to find some shade I could get them to work however they would only open far enough so my kids ages 20 and 14 at the time could crawl in and out of them like a snake. This is totally unacceptable, What If My Passengers Needed To Get Out In An Emergency, they couldn't. This past week I had it into Tesla and once again they are not fixed and the same issue again and again, I went so far as to tell Tesla to replace the sensors at my expense to see if that would fix the issue, they refused telling me they don't want to replace parts unless they are sure the parts are defective, Tesla once again just told me to bring it back if it happens again, 30 min after I picked it up the door issue returned but Everytime I take it in they always say they cannot replicate the issue. This is a major safety issue and I would like the help of the NHTSA to assist me in this very serious issue, once again I'm very sure it's the sun and heat that are affecting the sensors, Tesla doesn't seem to really care
- Reported
- Sep 2023
- Incident date
- Aug 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SeatsAug 2023 · ODI 11541749Details +Close −
Captain seats in Tesla Model X cars do NOT support a standard child's car seat tether. The headrests are attached. The manual says to route the tether around the headrest, but it's at an angle causing the tether strap to slide down. I do not believe the tether will function in an accident because moving the car seat forward causes the tether to slip off. This is unacceptable— all cars should support a standard child's car seat. My Model X is a "six-seater" and all six seats are captain's seats with attached headrests. There is nowhere to put a car seat with a tether, yet child car seats require a tether strap in the forward-facing position. Please make all car manufacturers provide the safest possible car seat installation. The owner's manual even shows a picture of how to route the tether strap— but the picture is NOT accurate about the shape of the seat. It shows a level place for the tether strap to sit while routed around the headrest, but there is NO level or safe place for the tether strap to sit. It slides down onto the floor.
- Reported
- Aug 2023
- Incident date
- Aug 2023
- Mileage
- Not provided
- Outcome flags
- None reported
StructureAug 2023 · ODI 11538776Details +Close −
The Model X has doors that are electromechanically opened. The "door pop actuator" appears to be malfunctioning and the door can no longer be opened from the inside or the outside, creating a serious hazard for the driver in case of emergency. The only way to get into or out of the car is by crawling through the passenger door. I found others who had the same problem: [XXX] INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)
- Reported
- Aug 2023
- Incident date
- Aug 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SeatsAug 2023 · ODI 11537050 · 1 injuriesDetails +Close −
The passenger side middle row seat stopped locking in place. We drove out of our driveway with my 3 year old in his car seat when this happened, and he went flying into the back of the front passenger seat. Had we been driving any faster, he would have been seriously injured. Tesla sent a technician to our home for a mobile service visit. He wasn’t able to fix the problem and said ‘If it were me, I wouldn’t put my child on this seat.’ We then took it to the Long Beach service center, where we were told the seat locking mechanism ‘works’ but it eroding. They wanted to send us home, and I said no. I wanted it repaired. They said that we have to replace the entire seat for $750. I said absolutely not, this is a manufacturer’s defect and a huge safety issue and should not be failing. They did not care. A child is going to get injured.
- Reported
- Aug 2023
- Incident date
- Aug 2023
- Mileage
- Not provided
- Outcome flags
- 1 injuries
Forward Collision AvoidanceJul 2023 · ODI 11534683 · crashDetails +Close −
I was driving on the highway on Tesla enhanced auto pilot when traffic came to a stop I’d notice my Tesla model X was not about to stop nor slow down for the stopped traffic so at the last minute I had to slam on my brakes and swerved to the right lane where I was hit by a truck pulling a trailer which subsequently rammed me into the truck I was trying to avoid rear ending after Teslas forward collision warning failed to notify me or stop the car from crashing in the first place
- Reported
- Jul 2023
- Incident date
- Jul 2023
- Mileage
- Not provided
- Outcome flags
- Crash
Power TrainJul 2023 · ODI 11534048Details +Close −
Driving into a car wash, I placed the car in NEUTRAL. The instrument cluster confirmed as much with an 'N' symbol, while I was stopped, in the single-track for the car wash to push/pull the car through the apparatus. The car was pulled into the car wash about half-way (roughly 25-35 seconds of N). Then, the car spontaneously shifted to PARK, and indicated as much with a 'P' in the instrument cluster. No cars were behind me in the car wash, this time. And I was able to re-engage NEUTRAL for the remainder of the wash (about another 35-40 seconds). It is unknown if the car would revert to parking by itself, if I had not activated DRIVE to exit the wash. If it makes a difference, I was in the driver's seat the entire time -- as is the usual custom at this self-serve tracked car wash. This has happened 3 or 4 times before -- usually in connection with the car wash. It is very unclear if this is poor software or a sensor that is to blame. In my other Tesla, it tends to go to PARK without conscious user input when a body lifts out of the driver's seat. So this could be a simple sensor that is a bit touchy in this Model X that is the subject of this report.
- Reported
- Jul 2023
- Incident date
- Jul 2023
- Mileage
- Not provided
- Outcome flags
- None reported
Unknown Or OtherJul 2023 · ODI 11531314Details +Close −
When I purchased the car back in 2018, I had extended warranty that was never added to my account. Went in for repairs and they were going to charge me $3000. I kept asking for my extend warranty. I found the emails from Tesla from 2018 and forward to Tesla. They finally added that I have extended warranty but they refuse to send me a copy of my agreement to see exactly what is covered. Thank you.
- Reported
- Jul 2023
- Incident date
- Jun 2023
- Mileage
- Not provided
- Outcome flags
- None reported
StructureJun 2023 · ODI 11526197Details +Close −
My front trunk has been opening without any warning. It happened to open while i was driving (luckily not on a freeway) on 6/1/2023 around 415p. It did not open fully but my instrument panel warning light came on to warn me of this issue. I then pulled into a parking lot and closed the front trunk without any further issues that evening. I did not depress any buttons on my key fob and I was not using the touchscreen at the time of this incident which really concerned me. I have also noticed that the front trunk is opening when parked as well without any reason. I understand this has been an issue with other Tesla models so I am concerned that this may be a problem with my vehicle as well.
- Reported
- Jun 2023
- Incident date
- Jun 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SteeringMay 2023 · ODI 11522248 · fireDetails +Close −
Feb 2022 while driving horn engaged and would not go off , had to pull over , steering wheel then locked up and car would not start again but horn continued to go off and had weird smell until it died out. Took vehicle to Tesla service center, was told multiple fuses were blown , mother board and several other electrical/computer issues. May 2023 while parked in driveway horn engaged wound not stop, steering wheel once again locked up and unable to use any features in the car, while looking for fuse to pull to stop horn, noticed smoke coming from under frunk and smelled like something was burning , pulled main front end fuse which stopped the horn and burning. Called Tesla emergency services, advised not to drive it and have it towed to Tesla service center . Tesla repair shop once again said horns were fried along with other electrical problems, the smell of something burning was still present , same as event in 2022. Rear safety belt malfunction alert pops on and off for past 2 years .
- Reported
- May 2023
- Incident date
- May 2023
- Mileage
- Not provided
- Outcome flags
- Fire
SteeringApr 2023 · ODI 11516840Details +Close −
Initially I noticed an issue with notchy steering, which is typically caused by faulty u-joints in the steering column. I took the vehicle in for service on 2/14/23, and the service center confirmed the issue and replaced the lower steering column. Almost immediately after picking up the vehicle from service, I noticed a loud creaking sound coming from the suspension when the steering wheel was turned. I brought the vehicle back to the service center on 3/29/23, where it was found that both upper control arms were "frozen" and required replacement, the lower aft links had play in them, and the lower fore links had cracked bushings. All front control arms were replaced. Luckily all work was covered for me under warranty, but the vehicle is less than 5 years old and has been driven less than 60,000 miles.
- Reported
- Apr 2023
- Incident date
- Feb 2023
- Mileage
- Not provided
- Outcome flags
- None reported
Seat BeltsApr 2023 · ODI 11515172Details +Close −
The contact owns a 2018 Tesla Model X. The contact stated that the second-row passenger's side seat belt had fully retracted and could not be pulled out. The vehicle was taken to a Tesla Service Center, where it was diagnosed that the seat belt was twisted internally. The Tesla Service Center untwisted the seat belt internally. The vehicle was repaired. The manufacturer was notified of the failure. The failure mileage was approximately 27,000.
- Reported
- Apr 2023
- Incident date
- Feb 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionMar 2023 · ODI 11512831Details +Close −
When driving in the high setting in there is an abrupt, shaking and vibrating coming from the half shaft connected to front drive unit. Caused by the forces put from the drive unit. There has been 100s of report to Tesla so much so if they have created a dedicated service bulletin. There is a potential risk of catastrophic malfunction to occur if enough wear is put on the front half shaft. Tesla is reluctant to fix it due to its high complexity and cost but several service advisors have admitted it can become a safety concern.
- Reported
- Mar 2023
- Incident date
- Mar 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionMar 2023 · ODI 11510628Details +Close −
In 2021, we replaced the suspension air compressor for our 2018 Tesla Model X 75D. Again, only about 8 months later in March 2022, we replaced the suspension air compressor for our Model X. And again in December 2022, we received an alert that the suspension air compressor was disabled. This alert did turn off. However, we started hearing the same noise we had heard back in early 2022. At this point, the suspension air compressor has again failed. Tesla has told us that they consider the suspension air compressor a safety component. However, they do not seem to have resolved their design flaw that is causing it to fail in an unreasonably short period of time. After some research, it appears to be a common understanding that suspension air compressors should last at least 6 to 10 years. And in communicating with people I know, that time frame is their experience on vehicles.
- Reported
- Mar 2023
- Incident date
- Mar 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionFeb 2023 · ODI 11509613Details +Close −
The car squeaks whenever it goes over a bump (not matter how small) or you turn the steering wheel. Sounds like rubber rubbing together
- Reported
- Feb 2023
- Incident date
- Feb 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionFeb 2023 · ODI 11507399Details +Close −
When the car turns or goes over bumps, there is a creaking and squeaking sound. TONS of Tesla owners have reported this and it has to do with faulty control arms and boots/ball joints. A good amount of people are experiencing this AFTER their warranties have expired causing us all to have to pay for something that should be covered by a warranty. Engineers have apparently determined that "After numerous evaluations, the development team determined that the Tesla control arm had been designed with insufficient moisture protection. Rain drains directly from the windscreen onto the control arm and penetrates the ball joint, which ultimately leads to the unwelcome, irritating squeaking sound and, in rare cases, can compromise steering precision." https://www.ien.com/product-development/news/22431772/engineers-solve-teslas-squeaking-problem#:~:text=Rain%20drains%20directly%20from%20the,cases%2C%20can%20compromise%20steering%20precision. Tesla apparently issued a repair bulletin in 2021 for this when my car would have still been under warranty. I was never contacted about this. https://driveteslacanada.ca/model-3/tesla-begins-notifying-model-3-owners-to-proactively-address-upper-control-arm-issues/#google_vignette
- Reported
- Feb 2023
- Incident date
- Feb 2023
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionFeb 2023 · ODI 11505982Details +Close −
Tesla has a repair bulletin out for the half shafts of the Model X/S. There is significant stuttering/shuddering when accelerating moderately when the vehicle is in normal ride height or higher. Some folks experience it on the lower settings as well. This is a known issue that owners should not be responsible for payment/fix wise even if our of warranty as it’s a manufacturer defect that causes excessive wear on the tires in low, and on the CV boots and half shafts in normal ride height mode and higher when moderately accelerating. Out of warranty Tesla is still forcing owners to pay $97.50 for the assessment and $350 for the half shafts repair. This is NOT fair to the customers. Paying for a manufacturer defect is unacceptable for consumers and I entreat NHTSA to begin an investigation. Plenty of Tesla forums have this complain noted at length. Here is an example: https://teslamotorsclub.com/tmc/threads/model-x-shudder-shutter-legal-standing.243084/
- Reported
- Feb 2023
- Incident date
- Jan 2023
- Mileage
- Not provided
- Outcome flags
- None reported
Electrical SystemFeb 2023 · ODI 11505430Details +Close −
The contact owns a 2018 Tesla Model X. The contact stated that the vehicle had previously been taken to a local dealer on multiple occasions for various unknown failures; however, the cause of the failures could not be duplicated. No warning lights were illuminated. The contact then stated that after starting the vehicle, the instrument cluster was inoperable. The contact made the dealer aware of the failure; however, the vehicle was not yet diagnosed or repaired. The manufacturer was made aware of the failure. The approximate failure mileage was 5,000.
- Reported
- Feb 2023
- Incident date
- Jan 2023
- Mileage
- Not provided
- Outcome flags
- None reported
StructureJan 2023 · ODI 11504215Details +Close −
Falcon door windows leaked a ton of water into my vehicle, the falcon door window trim disintegrates. Tesla ended up saying it was the sealant on the window but would not cover it. This is a constant issue with Tesla model x vehicles and all just dismiss it as a “thats just a tesla” problem. They need to be held liable to repair faults in their manufactured products. There is absolutely no reason a consumer should be held liable for a seal on a window nor the trim on a window that disintegrates. That is not at the consumers fault, that is a TESLA problem.
- Reported
- Jan 2023
- Incident date
- Jan 2023
- Mileage
- Not provided
- Outcome flags
- None reported
StructureJan 2023 · ODI 11499792Details +Close −
The left rear passenger window glass shattered spontaneously putting the passenger in the rear seat at risk of injury. This has been happening in teslas as reported in these forums https://teslamotorsclub.com/tmc/threads/rear-door-glass-spontaneously-shattering.209972/ https://teslamotorsclub.com/tmc/threads/model-y-rear-passenger-window-spontaneously-shattered.252987/ https://teslamotorsclub.com/tmc/threads/spontaneous-window-shatter.271266/
- Reported
- Jan 2023
- Incident date
- Dec 2022
- Mileage
- Not provided
- Outcome flags
- None reported
SteeringNov 2022 · ODI 11493620Details +Close −
After I started an update as requested on Tesla app, the car was giving error messages. I was able to drive but the errors were - 1. reduced steering assist 2. Autopilot and cruise control not available
- Reported
- Nov 2022
- Incident date
- Oct 2022
- Mileage
- Not provided
- Outcome flags
- None reported
SuspensionOct 2022 · ODI 11489554Details +Close −
The rear suspension has design problem that even within the alignment spec and normal driving conditions, the inner side of the rear tires are wearing off in an astonishing speed. This is s a known issue to all customers. Just in my personal case, the inner side of the rear tire wear off to thread within about 5000 miles driving and began leaking. This has extremely serious potential danger in local and highway driving situations. Since the normal car maintenance work hardly could take it nner side tire data. Very high percentage of drivers are driving the car with danger now on the road without any knowledge and preparness for the danger. This put not only the Tesla MX driver in danger, but also everyone around the vehicle, which leads this to a imminent public safety issue. Also, the manufacturer's scheduled maintenance is way inadequate, especially they deny any liability on n this problem, and never officially remind the consumer until the problem surfaced. This policy is also extremely unfair to Tesla's frontline workers. They have experience hostile environments from real world to execute this dangerous company policy. A immediate mandatory recall is highly suggested to inspect all MX models affected. Before a sound technical solution is perfected, consumers should be advised with options to safely drive this car, or this car should be banned from public roads.
- Reported
- Oct 2022
- Incident date
- Sep 2022
- Mileage
- Not provided
- Outcome flags
- None reported
Seat BeltsSep 2022 · ODI 11486869Details +Close −
Since the purchase of this vehicle the Safety Restraint System Fault Alert intermittently pops up while I am driving the vehicle. Tesla has owners make service appointment in an App which I have done multiple times in the past few years but each time the alert has gone away and the service appointments have been canceled. Turns out now, 4 years later, we have been driving with a faulty restraint system and there is a disconnect between the system and the wiring. Essentially this is a safety issue in that the notification system is faulty and incorrectly and only intermittently warns of possible failure as well as a possibility of the restraint system actually failing in a driving scenario. This problem is particularly concerning because they are unable to correctly diagnose which seats are affected and that includes seats that may have car seats attached.
- Reported
- Sep 2022
- Incident date
- Mar 2022
- Mileage
- Not provided
- Outcome flags
- None reported
This page shows the latest 50 reports to keep it usable. The count above includes every complaint NHTSA has returned for this model year.
Recalls(9)
Open a recall to read what NHTSA says is wrong, what can happen, and how it gets fixed. Check the VIN and remedy eligibility with a dealer; federal no-charge requirements have an age limit, though a manufacturer may offer more coverage.
Electrical SystemDec 2023 · 23V838000Details +Close −
Tesla, Inc. (Tesla) is recalling 2012-2023 Model S, 2016-2023 Model X, 2017-2023 Model 3, and 2020-2023 Model Y vehicles equipped with all versions of Autosteer leading up to the version(s) that contains the recall remedy. In certain circumstances when Autosteer is engaged, the prominence and scope of the feature's controls may not be sufficient to prevent driver misuse of the SAE Level 2 advanced driver-assistance feature.
Risk: In certain circumstances when Autosteer is engaged, and the driver does not maintain responsibility for vehicle operation and is unprepared to intervene as necessary or fails to recognize when Autosteer is canceled or not engaged, there may be an increased risk of a crash.
Remedy: Tesla will release an over-the-air (OTA) software update, free of charge. Owner notification letters were mailed February 10, 2024. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-23-00-008.
Open full NHTSA recall record →SteeringJan 2022 · 22V818000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2017-2021 Model S and Model X vehicles. The electronic power assist steering (EPAS) system may experience a loss of power steering assist when driving on rough roads or after hitting a pothole.
Risk: A loss of power steering assist can require greater steering effort, especially at low speeds, increasing the risk of a crash.
Remedy: Tesla has released an over-the-air (OTA) software update to recalibrate the EPAS system, free of charge. Owner notification letters were mailed December 31, 2022. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-22-00-014.
Open full NHTSA recall record →Back Over Prevention · 21V035000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2012-2018 Tesla Model S and 2016-2018 Model X vehicles with a center display equipped with a NVIDIA Tegra 3 processor and an 8GB eMMC NAND flash memory device. When the 8GB eMMC NAND flash memory device for the center display reaches lifetime wear, the eMMC controller will no longer be able to maintain the integrity of the filesystem, causing a failure in some of the center display functions.
Risk: The eMMC controller wear-out condition can cause the loss of the rearview camera display, defrost/defog control settings, and exterior turn signal lighting, reducing visibility and increasing the risk of a crash.
Remedy: Owners should ensure their vehicles are operating firmware release 2020.48.48.12 or newer, which will alert owners if the eMMC is approaching lifetime wear. Tesla will notify owners, and will replace the VCM daughterboard with one containing an enhanced eMMC controller, free of charge. The recall began March 29, 2021. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-21-21-001.
Open full NHTSA recall record →Forward Collision Avoidance · 21V846000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2017-2021 Model S, Model 3, Model X, and 2020-2021 Model Y vehicles operating software version 2021.36.5.2. A communication error may cause false forward-collision warning (FCW) or unexpected activation of the automatic emergency brake (AEB) system.
Risk: Unexpected activation of the AEB system may cause the car to stop suddenly, increasing the risk of a crash.
Remedy: Tesla Service has released an over-the-air (OTA) software update, free of charge. The recall began October 25, 2021. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-21-00-004.
Open full NHTSA recall record →Electrical System · 22V037000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2016-2022 Model S and Model X, 2017-2022 Model 3, and 2020-2022 Model Y vehicles. The "rolling stop" functionality available as part of the Full Self-Driving (Beta) software may allow the vehicle to travel through an all-way stop intersection without first coming to a stop.
Risk: Failing to stop at a stop sign can increase the risk of a crash.
Remedy: Tesla will perform an over-the-air (OTA) software update that disables the "rolling stop" functionality, free of charge. Owner notification letters were mailed March 28, 2022. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-22-00-001.
Open full NHTSA recall record →Back Over Prevention · 22V169000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2018-2019 Model S, Model X, and 2017-2020 Model 3 vehicles equipped with Autopilot Computer 2.5 and operating certain firmware releases. The rearview image may not immediately display when the vehicle begins to reverse. As such, these vehicles fail to comply with the requirements of Federal Motor Vehicle Safety Standard number 111, "Rear Visibility."
Risk: A delayed rearview camera image reduces the driver's rear view, increasing the risk of a crash.
Remedy: Tesla will perform an over-the-air (OTA) software update, free of charge. Owner notification letters were mailed May 17, 2022. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-22-00-004.
Open full NHTSA recall record →Steering · 23V085000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2016-2023 Model S, Model X, 2017-2023 Model 3, and 2020-2023 Model Y vehicles equipped with Full Self-Driving Beta (FSD Beta) software or pending installation. The FSD Beta system may allow the vehicle to act unsafe around intersections, such as traveling straight through an intersection while in a turn-only lane, entering a stop sign-controlled intersection without coming to a complete stop, or proceeding into an intersection during a steady yellow traffic signal without due caution. In addition, the system may respond insufficiently to changes in posted speed limits or not adequately account for the driver's adjustment of the vehicle's speed to exceed posted speed limits.
Risk: FSD Beta software that allows a vehicle to exceed speed limits or travel through intersections in an unlawful or unpredictable manner increases the risk of a crash.
Remedy: Tesla will release an over-the-air (OTA) software update, free of charge. Owner notification letters were mailed April 15, 2023. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-23-00-001.
Open full NHTSA recall record →Electrical System · 24V051000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2012-2023 Model S, 2016-2024 Model X, 2017-2023 Model 3, 2019-2024 Model Y, and 2024 Cybertruck vehicles. An incorrect font size is displayed on the instrument panel for the Brake, Park, and Antilock Brake System (ABS) warning lights. As such, these vehicles fail to comply with the requirements of Federal Motor Vehicle Safety Standard number 105, "Hydraulic and Electric Brake Systems" and 135, "Light Vehicle Brake Systems."
Risk: Warning lights with a smaller font size can make critical safety information on the instrument panel difficult to read, increasing the risk of a crash.
Remedy: Tesla began releasing an over-the-air (OTA) software update, free of charge. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-24-00-003.
Open full NHTSA recall record →Seat Belts · 24V376000Details +Close −
Tesla, Inc. (Tesla) is recalling certain 2012-2024 Model S, 2015-2024 Model X, 2017-2023 Model 3, and 2020-2023 Model Y vehicles. In the event of an unbelted driver, the seat belt warning light and audible chime may not activate as intended. As such, these vehicles fail to comply with the requirements of Federal Motor Vehicle Safety Standard number 208, "Occupant Crash Protection."
Risk: A seat belt warning system that fails to alert occupants of an unbelted seat belt can increase the risk of injury during a crash.
Remedy: Tesla will release an over-the-air (OTA) software update. Owner notification letters were mailed July 26, 2024. Owners may contact Tesla customer service at 1-877-798-3752. Tesla's number for this recall is SB-24-00-008.
Open full NHTSA recall record →A campaign can apply to this model year without being incomplete on a specific vehicle. Check the VIN with NHTSA or a dealer to confirm whether a particular car needs repair.
Investigations
16 NHTSA investigations on record
Investigations are agency reviews, not findings that a vehicle is defective.
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.
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.
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
On October 17, 2024, NHTSA’s Office of Defects Investigation (ODI) opened a Preliminary Evaluation (PE24031) of Tesla’s Full Self Driving Beta and Full Self Driving (Supervised) (collectively, FSD) to assess: the ability of the FSD system to detect and respond appropriately to reduced roadway visibility conditions; whether any other FSD crashes had occurred under degraded roadway visibility conditions that are similar in nature to the four SGO-reported crashes identified in the opening document, and if so, the contributing circumstances for each of those crashes; and any updates or modifications by Tesla to the FSD system that may affect the performance of FSD in degraded roadway visibility conditions, including the timing, purpose, and capabilities of any such 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. During this phase of the investigation, ODI reviewed the materials provided by Tesla detailing any actions taken, or changes, modifications, and updates made that may relate to the alleged defect. ODI reviewed information related to Tesla’s transition to a vision-only perception system, and its deployment of the strategy in vehicles. ODI’s findings include information on limitations of the vision-only perception system and updates made in response to known subject crashes. 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. ODI reviewed certain public statements, including those made during an April 2025 earnings call, in which Tesla stated that it had developed a breakthrough “direct photon-counting” capability that eliminates the degradation that the camera-based system experiences when glare is encountered. At this time, ODI does not have information on when the update was deployed and which vehicles have the updated system. ODI has discussed individual incidents and its initial findings with Tesla. Based on Tesla’s post-incident analysis, 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. 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. 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 FSD system fails to detect and/or warn the driver appropriately under degraded visibility conditions such as glare and airborne obscurants where the camera-based system performance degrades significantly. In the crashes that ODI has reviewed, the FSD system did not detect common roadway conditions that impaired its visibility and/or provide alerts when camera performance had deteriorated until immediately before the crash occurred. ODI is upgrading this investigation (PE24031) to Engineering Analysis (EA) 26002 to further evaluate this matter. 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.
The Office of Defects Investigation (ODI) is opening a Recall Query to assess the remedy adequacy of Recall 23V838. On December 12, 2023, Tesla filed a Defect Information Report (Recall 23V838) applicable to all Tesla models produced and equipped with any version of its Autopilot system, which Tesla described as an SAE Level 2 (L2) Advanced Driver Assistance System (ADAS). Autopilot is the simultaneous engagement of Tesla’s Traffic-Aware Cruise Control (TACC) and Autosteer. In describing the safety defect, Tesla’s Defect Information Report (DIR) explained that “the prominence and scope of the system’s controls may be insufficient to prevent driver misuse,” and Tesla committed to the deployment of a multipart remedy aimed at improving system and engagement controls and reducing mode confusion. EA22002 (upgraded from PE21020) was opened to investigate whether Tesla’s Autopilot contained a defect that created an unreasonable risk to motor vehicle safety and involved extensive crash analysis, human factors analysis, vehicle evaluations, and assessment of vehicle control authority and driver engagement technologies. The work conducted in these investigations aligns with Tesla’s conclusion in its 23V838 recall filing. During EA22002, ODI identified at least 13 crashes involving one or more fatalities and many more involving serious injuries in which foreseeable driver misuse of the system played an apparent role. Tesla filed Recall 23V838 to address concerns regarding the Autopilot system investigated in EA22002. Following deployment of the remedy in Recall 23V838, ODI identified concerns due to post-remedy crash events and results from preliminary NHTSA tests of remedied vehicles. Also, Tesla has stated that a portion of the remedy both requires the owner to opt in and allows a driver to readily reverse it. Tesla has also deployed non-remedy updates to address issues that appear related to ODI’s concerns under EA22002. This investigation will consider why these updates were not a part of the recall or otherwise determined to remedy a defect that poses an unreasonable safety risk. ODI is therefore opening this Recall Query investigation to further evaluate the adequacy of the remedy for recall 23V838.
The Office of Defects Investigation (ODI) received a petition requesting that ODI reevaluate its decision to deny DP20-001 on the basis that intermittent high electrical current demands on the vehicles' 12VDC systems may have caused some or all of the incidents examined by ODI in DP20-001. The petitioner bases this information on a review of open-source research and the DP20-001 denial. The petition and related materials can be reviewed at NHTSA.gov under the following ODI number: 11528471.
On March 21, 2023, the Office of Defects Investigation (ODI) received a petition requesting a “recall of all Tesla cars” produced from 2013 to the date on which the petition was filed due to what Petitioner considers to be the increased likelihood of pedal misapplication. Attached to the Petition is a paper authored by Petitioner. According to Petitioner, the differences in the operator controls between the subject Tesla vehicles and internal combustion engine powered vehicles promote driver pedal misapplication, leading to sudden unintended acceleration (SUA) incidents. To fix this alleged defect, Petitioner argues that the subject vehicles should be equipped with measures that require: (i) occasional removal of the driver’s foot from the pedals; and (ii) application of the brake pedal before fully stopping the vehicle. ODI evaluated the allegations by, among other things, reviewing the Petition and supporting technical paper, and analyzing Tesla’s response to ODI’s Information Request. ODI is denying this Petition. ODI has not found evidence that warrants the opening of a safety defect investigation into the Tesla vehicles as described in the Petition. The use of regenerative braking controlled by the accelerator pedal, or one-pedal driving, is common across most light vehicle manufacturers of electric vehicles and Tesla vehicles are not unique in this respect. Further, ODI identified only a handful of collisions potentially within the scope of the alleged defect; and corresponding vehicle data demonstrated that the subject vehicles responded appropriately to control inputs by their drivers. Moreover, ODI is unaware of any evidence to suggest that Petitioner’s proposed interlock would have prevented alleged SUA events as apparently described in the Petition and supporting materials. Accordingly, the Agency is denying the petition. As with all potential motor vehicle safety risks, NHTSA will continue to review any new information or incidents as they are submitted to the Agency.
NHTSA received a petition on or about July 18, 2022, requesting that Federal Motor Vehicle Safety Standard (FMVSS) 141 be applied to all electric and hybrid vehicles operating in the United States. The petition can be reviewed at NHTSA.gov under ODI Number 11486072. FMVSS 141 establishes performance requirements for pedestrian alert sounds for motor vehicles. The standard applies to hybrid and electric vehicles that have a gross vehicle weight rating of 4,536 KG or less or are defined as low-speed vehicles. The standard became fully applicable to all such vehicles manufactured on or after March 1, 2021.On January 27, 2023, NHTSA opened Defect Petition (DP) 22-005 to evaluate the subject matter described in the petition. On June 24, 2023 and as supplemented on June 25, 2023, the petitioner notified NHTSA he was withdrawing his petition. The petitioner indicated that, based on his review of data, there is no justification for asserting potential benefits that could be derived from actions sought by my petition. Based on the petitioner's withdrawal, DP22-005 is closed. Closure of this DP does not represent a determination by NHTSA regarding the subject matter of the petition.
The Office of Defects Investigation (ODI) upgraded PE21020 to EA22002 on June 8, 2022, to extend work and deepen the PE21020 crash analysis, to supplement that analysis with additional data, and to perform vehicle evaluations to understand how Tesla’s Autopilot system may exacerbate human factors or behavioral safety risks by undermining the effectiveness of the driver’s supervision. To support this work, ODI collected additional crash information and assessed vehicle control authority, driver engagement technologies, and related human factors considerations associated with partial automation via analysis of peer vehicle data and hands-on vehicle evaluation, assessments from NHTSA human factors subject matter experts, and reviews of related publications dedicated to partial driving automation. Autopilot is the simultaneous use of the features that Tesla calls Traffic-Aware Cruise Control (TACC) and Autosteer. TACC is a type of adaptive cruise control that, like traditional cruise control, maintains a set speed but also slows or accelerates as necessary to maintain the vehicle’s following distance from a vehicle in front. As designed, Autosteer detects lane markings and the presence of other nearby vehicles and objects to keep the vehicle in its driving lane. Autopilot is characterized by Tesla as an SAE Level 2 (“L2 system”) partial driving automation system that provides driver assistance through steering, propulsion, and braking within a specified driving environment under direct supervision of the driver. L2 systems should be designed to support the driver’s need to monitor the system in response to the constantly changing driving environment and, if necessary, take over the dynamic driving task. To ensure sufficient driver engagement, vehicles with L2 systems should employ driver engagement systems and usage controls that are appropriate and sufficient for the L2 system design and driver expectations. ODI completed an analysis of 956 crashes reported up to August 30, 2023. In approximately half (489) of those crashes, ODI found: 1.) that there was insufficient data to make an assessment; 2.) the other vehicle was at fault; 3.) Autopilot was found to not be in use; or 4.) the crash was otherwise unrelated to EA22002. Of the remaining 467 crashes, ODI identified trends resulting in three categories: collisions in which the frontal plane of the Tesla struck another vehicle or obstacle with adequate time for an attentive driver to respond to avoid or mitigate the crash (211), roadway departures where Autosteerwas inadvertently disengaged by the driver’s inputs (111), and roadway departures in low traction conditions such as wet roadways (145). ODI observed this pattern across all Tesla models and hardware versions. Crash and human factors assessment showed that Autopilot controls did not sufficiently ensure driver attention and appropriate use. At the same time, peer analysis and vehicle evaluations established that Autopilot invited greater driver confidence via its higher control authority and ease of engagement. This mismatch of weak usage controls and high control authority was evident in these crash categories, which included indications of driver disengagement from the driving task. This mismatch was also evident in roadway departures when the system was engaged in low traction conditions outside of Tesla’s recommendations.Additional information regarding NHTSA’s crash analysis is available in the EA22002 file. ODI reviewed these findings with Tesla during several conversations in Quarter 4 of 2023. On December 12, 2023, Tesla filed a Defect Information Report (DIR) (Recall 23V838) applicable to all Tesla models produced and equipped with any version of its Autopilot system. Tesla’s DIR described the functionality of this system, stated that the prominence and scope of the system’s controls may be insufficient to prevent driver misuse, and described a remedy to improve the effectiveness of driver warnings and to reduce mode confusion. ODI completed an extensive body of work via PE21020 and EA22002, which showed evidence that Tesla’s weak driver engagement system was not appropriate for Autopilot’s permissive operating capabilities. This mismatch resulted in a critical safety gap between drivers’ expectations of the L2 system’s operating capabilities and the system’s true capabilities. This gap led to foreseeable misuse and avoidable crashes. During EA220002, ODI identified at least 13 crashes involving one or more fatalities and many more involving serious injuries, in which foreseeable driver misuse of the system played an apparent role. ODI’s analysis conducted during this investigation, which aligns with Tesla’s conclusion in its Defect Information Report, indicated that in certain circumstances, Autopilot’s system controls and warnings were insufficient for a driver assistance system that requires constant supervision by a human driver. Given Tesla’s recall (23V838) of all vehicles equipped with Autopilot for insufficient controls to prevent misuse, ODI is closing EA22002. Concurrent with that closing, ODI has opened a Recall Query (RQ24009) to assess the effectiveness of the 23V838 remedy. To review the ODI reports cited in the Closing Resume ODI Report Identification Number document, go to NHTSA.gov.
The Office of Defects Investigation (ODI) opened Preliminary Evaluation (PE21-023) on December 21, 2021, to evaluate the driver distraction potential and use frequency / circumstances of in-vehicle game-play functionality referred to as ?Passenger Play? in certain model year (MY) 2017-2022 Tesla Model 3, S, X, and Y vehicles. Distracted driving can result in an increased risk of a crash. PE21-023 was prompted by the receipt of Vehicle Owners Questionnaire (VOQ) 11439598 from the owner of a 2021 Model 3 on November 6, 2021. ODI sent an Information Request (IR) letter to Tesla on January 20, 2022 and received Tesla?s response on March 4, 2022.On December 24, 2020, Tesla introduced Passenger Play to vehicles equipped with the Intel Atom processor (receiving an aftersale software update) via its 2020 holiday release. Passenger Play permitted occupants to play specific games selected by Tesla for primarily turn-based play style and limited gameplay motion with the transmission in Drive and the vehicle in motion. Under these conditions, a notification would display on the screen and the screen area devoted to the game would reduce from 100% to accommodate vehicle controls and driving task data readout. Specific changes varied among models. On December 21, 2022, Tesla voluntarily disabled Passenger Play capability with Firmware Release 2021.44.25.1 in response to NHTSA?s request. Tesla reported a month later that a 97% completion rate was achieved though Tesla?s Over the Air (OTA) update. ODI opened PE 21-023 to evaluate the driver distraction potential of Tesla Passenger Play while the vehicle is being driven including aspects of the feature, frequency, and use scenarios.Based on the analysis conducted, PE21-023 has been closed. The closing of this investigation does not constitute a finding by NHTSA that no safety-related defect exists. Furthermore, it does not foreclose the Agency from taking further action, if warranted, or the potential for a future finding that a safety-related defect exists through additional information the Agency may receive.See attached Closing Report for a detailed summary of the investigation findings.
From 2000 through 2017, Takata produced millions of air bag inflators using two types of phase-stabilized ammonium nitrate ("PSAN") propellant -- propellant 2004 and propellant 2004L. After prolonged exposure to high temperature cycles and humidity, inflators using propellant 2004 can degrade, causing the propellant to burn too quickly when ignited. The rapid burning can cause the inflator to rupture during deployment, potentially causing serious or even fatal injury to vehicle occupants. See 2016 Blomquist Report at www.nhtsa.gov/sites/nhtsa.gov/files/documents/expert_report-hrblomquist.pdf.Consequently, all frontal inflators using propellant 2004 that do not contain a "desiccant" (a substance that traps and holds moisture) in US vehicles are under recall. These "non-desiccated" inflators either have been or are required to be replaced.In some cases, the remedy part for these recalled inflators was, or will be, an inflator using either propellant 2004 or 2004L that does contain a desiccant. None of these "desiccated" remedy parts (which were installed in older model year vehicles) are currently under recall for a degradation concern. Certain subsets of desiccated PSAN inflators using propellant 2004 for use as original equipment, however, have been recalled for a degradation concern. All Takata inflators produced with propellant 2004L contain desiccant, and none of these desiccated inflators using propellant 2004L are under recall for a degradation concern. There have been no reported field ruptures in any non-recalled desiccated PSAN inflators.It is understood that desiccants fully saturate at some threshold, at which point any additional moisture will not be captured. This means the degradation process observed in non-desiccated inflators using propellant 2004 may also occur in non-recalled desiccated inflators using propellant 2004, assuming additional moisture enters the inflator and high temperature cycling occurs. Based on available information, desiccant saturation can occur within the first five years in the worst environments, and the time required for full saturation is affected by multiple factors. While no present safety risk has been identified, further work is needed to evaluate the future risk of non-recalled desiccated inflators using propellant 2004.Three entities -- Takata (now known as TK Global), the Independent Testing Coalition, and Exponent -- have been studying the long-term behavior of Takata desiccated PSAN inflators using propellant 2004L (as well as 2004) in the presence of moisture and temperature cycling. The research efforts, which include development of predictive modeling techniques and field sample analysis, are ongoing. To date, none of the researchers have identified field evidence showing that propellant 2004L is undergoing a degradation process that leads to aggressive deployment and potential rupture. However, the time in service of such inflators remains short compared to that of the inflators using propellant 2004. Further study is needed to assess the long-term safety of desiccated inflators using propellant 2004L.The Office of Defects Investigation is opening this investigation to examine whether a safety defect related to propellant degradation exists in non-recalled desiccated PSAN frontal inflators manufactured by Takata. This investigation will require extensive information on Takata production processes and surveys of inflators in the field. Lists of recall actions that may have used desiccated PSAN inflators as remedy parts, as well as the makes and models originally manufactured with them, is available with the downloadable version of this document (see nhtsa.gov/recalls?nhtsaId=EA21002 -- note this information is subject to change/revision as the investigation proceeds). This investigation does not supersede EA15-001, which remains open.
On August 13, 2021, NHTSA?s Office of Defects Investigation (ODI) opened a Preliminary Evaluation (PE21-020) to assess the performance of Tesla?s Autopilot system (a system characterized by Tesla as an SAE Level 2 driving automation system designed to support and assist the driver in performing the driving task) available in Tesla vehicles. The investigation opening was motivated by an accumulation of crashes in which Tesla vehicles, operating with Autopilot engaged, struck stationary in-road or roadside first responder vehicles tending to pre-existing collision scenes. Upon opening the investigation, NHTSA indicated that the PE would also evaluate additional similar circumstance crashes of Tesla vehicles operating with Autopilot engaged, as well as assess the technologies and methods used to monitor, assist, and enforce the driver?s engagement with the dynamic driving task during Autopilot operation.PE21-020 is upgraded to an Engineering Analysis (EA) to extend the existing crash analysis, evaluate additional data sets, perform vehicle evaluations, and to explore the degree to which Autopilot and associated Tesla systems may exacerbate human factors or behavioral safety risks by undermining the effectiveness of the driver?s supervision. In doing so, NHTSA plans to continue its assessment of vehicle control authority, driver engagement technologies, and related human factors considerations.The attached Detailed Summary further describes NHTSA?s review to date and the basis for upgrade to an EA.
On November 20, 2020, the Office of Defects Investigation (ODI) opened Engineering Analysis (EA) 20-003 to investigate incidents of media control unit (MCU) failures resulting in loss of rearview camera in model year (MY) 2012-18 Tesla Model S and model year (MY) 2016-2018 Tesla Model X vehicles equipped with the NVIDIA Tegra 3 processor with an integrated 8GB eMMC NAND flash memory device. During its investigation, ODI learned that the expected usage life rating for the 8GB eMMC NAND flash memory device is approximately 3,000 “P/E” or Program-Erase cycles, after which the eMMC NAND flash memory device would become fully consumed and no longer be operational, leading to a failure of the media control unit (MCU). At a daily cycle usage rate of 1.4 per block, accumulation of 3,000 P/E cycles would take only 5-6 years. Historically, the expected life of a vehicle generally far exceeds 5-6 years of service. ODI believes that a 5- or 6-year life expectancy for a component integral to providing the driver with safety functions is insufficient. During our review of the data, Tesla provided confirmation that all units will inevitably fail given the memory device’s finite storage capacity. Tesla provided its own statistical model showing the number of projected weekly MCU repairs from 2020 to 2028, estimating that replacement rates for MCU failures will peak in early 2022 and gradually decline until (near) full part turnover has been accomplished in 2028. According to Tesla, for subject vehicles equipped with the NVIDIA Tegra 3 processor with an integrated 8GB eMMC NAND flash memory device, the eMMC NAND cell hardware will fail when reaching lifetime wear, for which the eMMC controller has no available memory blocks necessary to recover. With this failure mode, the only recovery available is a replacement of the eMMC device, achieved by physical part replacement of either the MCU assembly or visual control module subcomponent. Tesla provided information concerning the effects of MCU failure on vehicle function, which include in loss of rearview/backup camera and loss of HVAC (defogging and defrosting) setting controls (if the HVAC status was OFF status prior to failure). The failure also affects the Autopilot advanced driver assistance system (ADAS) and turn signal functionality due to the possible loss of audible chimes, driver sensing, and alerts associated with these vehicle functions. Based on this analysis, ODI issued a Recall Request Letter (RRL) on January 13, 2021. The RRL was based on ODI’s tentative conclusion that a defect related to motor vehicle safety exists in the subject vehicles because the eMMC NAND flash devices have a finite lifespan based upon the number of program/erase (P/E) cycles, after which the MCU fails due to memory wear-out, which constitutes a premature failure of safety-critical part. Tesla responded to the Recall Request Letter (RRL) on January 27, 2021, and disputed the tentative findings of the RRL. Nevertheless, on January 29, 2021, Tesla filed a safety recall (21V-035), recalling (MY) 2012-2018 Tesla Model S and (MY) 2016-2018 Model X vehicles with a center display equipped with a NVIDIA Tegra 3 processor and an 8GB eMMC NAND flash memory device. In this recall, Tesla is providing a free hardware remedy in addition to the over-the-air (“OTA”) firmware updates that the company had previously implemented. NHTSA will continue to monitor the issue as part of its ordinary processes for overseeing the effectiveness of recalls. However, based on available information, at this time, Tesla’s recall appears to address the unreasonable risk to motor safety presented by the premature failure of the component. Accordingly, the investigation is closed. To review the ODI reports cited in the Closing Resume ODI Report Identification Number document, go to NHTSA.gov.
On June 22, 2020, the Office of Defects Investigations (ODI) opened Preliminary Evaluation PE20-010 to investigate incidents of media control unit (MCU) failures resulting in loss of rearview camera in model year (MY) 2012-2015 Tesla Model S vehicles equipped with the NVIDIA Tegra 3 processor with an integrated 8GB eMMC NAND flash memory device. EMMC NAND flash devices have a finite lifespan based upon the number of program/erase (P/E) cycles. The subject MCU allegedly fails prematurely due to memory wear-out of the eMMC NAND flash. Tesla used the same MCU with the Tegra 3 processor in approximately 159 thousand 2012-2018 Model S and 2016-2018 Model X vehicles built by Tesla through early-2018. In response to ODI's Information Request (IR) for PE20-010, Tesla provided ODI with 2,399 complaints and field reports, 7,777 warranty claims, and 4,746 non-warranty claims related to MCU replacements. The data show failure rates over 30 percent in certain build months and accelerating failure trends after 3 to 4 years-in-service.According to Tesla, for subject vehicles equipped with the NVIDIA Tegra 3 processor with an integrated 8GB eMMC NAND flash memory device, the eMMC NAND cell hardware can fail when reaching lifetime wear, for which the eMMC controller has no available blocks to recover. With this failure mode, the only recovery available is a replacement of the eMMC device, achieved by physical part replacement of either the MCU assembly or visual control module subcomponent. Tesla provided the effects of MCU failure on vehicle function which result in loss of rearview/backup camera, loss of HVAC (defogging) setting controls (if the HVAC status was OFF status prior to failure.) There is also an impact on the advanced driver assistance support (ADAS) Autopilot system, and turn signal functionality due to the possible loss of audible chimes, driver sensing, and alerts associated with these vehicle functions. There are precedents for addressing defects that result in loss of either backup camera, defogging, or turn signal functions under safety recalls.Tesla has implemented certain Over-The-Air or OTA updates to subject vehicles to mitigate the effects of MCU failure. These updates include firmware changes to reduce memory usage of the subject memory card, improve eMMC error correction and storage management strategies, changing the control logic for turn signal activation, and defaulting the HVAC system to Auto (71.6F) for drives after MCU failure to address windshield defogging. Tesla indicated that the MCU failures are likely to continue to occur in subject vehicles as vehicles continue to operate and use available memory in the 8GB eMMC NAND flash memory until 100% of units have failed. This investigation has been upgraded to an Engineering Analysis (EA20-003). The VOQs associated with the upgrade of this investigation are identified in the attachment to this resume.
On December 19, 2019, NHTSA received a petition from Mr. Brian Sparks requesting that the Agency recall all [Tesla] Model S, Model X, and Model 3 vehicles produced from 2013 to the present due to sudden unintended acceleration (SUA). In his petition and follow-up submissions, the petitioner identified a total of 232 non-duplicative complaints to NHTSA, including 203 reporting crashes. On January 13, 2020, NHTSA's Office of Defects Investigation (ODI) opened Defect Petition DP20-001 to evaluate the petitioner?s request. ODI's evaluation included reviews of all complaints and supporting information referenced by the petitioner, as well as 14 additional complaints to NHTSA related to SUA crash allegations that were either not selected by the petitioner or were submitted after the petitioner's most recent submission. The review also included analyses of available crash data (EDR, Tesla log data, and/or video data) the Agency acquired as part of the evaluation.After reviewing the available data, ODI has not identified evidence that would support opening a defect investigation into SUA in the subject vehicles. In every instance in which event data was available for review by ODI, the evidence shows that SUA crashes in the complaints cited by the petitioner have been caused by pedal misapplication. There is no evidence of any fault in the accelerator pedal assemblies, motor control systems, or brake systems that has contributed to any of the cited incidents. There is no evidence of a design factor contributing to increased likelihood of pedal misapplication. The theory provided of a potential electronic cause of SUA in the subject vehicles is based upon inaccurate assumptions about system design and log data.NHTSA is authorized to issue an order requiring notification and remedy of a defect if the Agency?s investigation shows a defect in design, construction, or performance of a motor vehicle that presents an unreasonable risk to safety. 49 U.S.C. ?? 30102(a)(9), 30118. Since the information before the Agency is not indicative of a vehicle-based defect, it is unlikely that any investigation opened because of granting this petition would result in an order concerning the notification and remedy of a safety-related defect. Therefore, upon full consideration of the information presented in the petition and the potential risks to safety, the petition is denied. The denial of this petition does not foreclose the Agency from taking further action if warranted or the potential for a future finding that a safety-related defect exists based upon additional information the agency may receive.The reference numbers for the complaints to NHTSA cited by the petitioner can be found in the petition submission documents in the public file for DP20-001. Those complaints and the 14 complaints ODI added to its evaluation can be viewed at NHTSA.gov. The reference numbers for the complaints added by ODI are: 11385350, 11383955, 11383233, 11383180, 11378492, 11378458, 11302076, 11299698, 11290006, 11190595, 11174504, 11115496, 11096644 and 11000097. The attached report, further detailing NHTSA?s reasons for denial of the petition, will be published in the Federal Register.
In a letter dated September 17, 2019, Mr. Edward Chen petitioned the NHTSA to initiate a defect investigation of certain Tesla Model S and Model X vehicles that received revised battery management software in one or more over-the-air (OTA) updates from Tesla, beginning in May 2019. The petitioner bases his request on vehicle fires that took place worldwide and OTA software updates Tesla made to the Battery Management System (BMS) of certain Tesla vehicles that resulted in loss of available vehicle mileage range and increased charging durations.On October 1, 2019, the Office of Defects Investigation (ODI) opened DP19-005 to evaluate the petitioner?s request. Information provided by Tesla in response to ODI's information request letter for DP19-005 indicated that a firmware update that may limit maximum voltage was installed in certain MY 2012 through 2016 Model S vehicles (subject vehicles). The voltage limiting firmware is a dynamic algorithm that is enabled in vehicles with high Supercharging use histories, which contributes to high usage stress to the high-voltage (HV) battery. Tesla sold approximately 61,781 subject vehicles in the United States and, through August 2021, the voltage limiting firmware had been enabled in approximately 2,062 vehicles. Through December 2020, ODI identified 59 complaints from consumers alleging reductions in battery capacity (52) or charging speed (7) in the subject vehicles. Log data from these vehicles showed that the voltage limiting firmware had been enabled in about 58 percent (30 of 52) of the complaints alleging range loss. Subsequent updates have restored some or all of the battery capacity to vehicles affected by the voltage limiting firmware coupled with updates enhancing BMS battery brick monitoring algorithms. None of the complaint vehicles have reported any thermal incidents or other safety hazards related to the HV battery.The five non-crash fires referenced in the petition include two fires that occurred in China in early 2019 involving vehicles that: 1) had recently completed Supercharging sessions; 2) were at a high state-of-charge (SOC) of the HV battery; 3) were parked with the battery cooling system shutoff; and 4) had histories of high-stress usage for the HV batteries. The three fires that occurred outside China did not involve the same fact patterns regarding vehicle state and charging history. The two fires that occurred in the United States include one involving a vehicle with no Supercharging history that was driving when the fire occurred and another in which the origin of the fire was external to the HV battery. The fifth fire, which also originated external to the HV battery, involved a vehicle in Germany that had been parked at a low SOC for an extended period. To date, incidents of fires involving parked vehicles with recent Supercharging and histories of high-stress use have only been observed in China, where high-stress use factors appear to be more common. NHTSA is authorized to issue an order requiring notification and remedy of a defect if the Agency?s investigation shows a defect in the design, construction, or performance of a motor vehicle that presents an unreasonable risk to safety. 49 U.S.C. ?? 30102(a)(9), 30118. Given the absence of any incidents in the United States related to fast charging, and the absence of any such incidents globally since May 2019, it is unlikely that an order concerning the notification and remedy of a safety-related defect would be issued due to any investigation opened as a result of granting this petition. Therefore, upon full consideration of the information presented in the petition, and the potential risks to safety, th
Crash-test ratings
No NHTSA crash test is on record for this year. Some vehicles and model years were not tested or do not have a published NCAP result.
Fuel economy by trim
| Trim | Engine | Drivetrain | Transmission | City | Hwy | Combined |
|---|---|---|---|---|---|---|
| Model X 75D | — | All-Wheel Drive | Automatic (A1) | 91 | 95 | 93 |
| Model X 100D | — | All-Wheel Drive | Automatic (A1) | 86 | 89 | 87 |
| Model X P100D | — | All-Wheel Drive | Automatic (A1) | 83 | 89 | 85 |
EPA laboratory estimates by trim and engine. Actual mileage varies with driving, weather, load, and maintenance. EPA source.
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2018 Tesla Model X: frequently asked
What does the complaint record show for the 2018 Tesla Model X?
Owners filed 141 NHTSA complaints about the 2018 Tesla Model X. This is raw owner-reported complaint volume with no production or exposure normalization, so it is not a reliability score or a best/worst-year ranking.
What are the most common problems on the 2018 Tesla Model X?
The most-reported problem areas are Suspension (22% of complaints) and electrical system (16%).
How many recalls does the 2018 Tesla Model X have?
9 recalls have been issued that affect the 2018 Tesla Model X, covering components such as electrical system. Check the VIN with NHTSA and ask a dealer to confirm remedy eligibility; federal no-charge requirements have an age limit, though manufacturers may offer more coverage.
What gas mileage does the 2018 Tesla Model X get?
The EPA rates the 2018 Tesla Model X between 85 and 93 mpg combined, depending on trim and drivetrain.