VEHICLE SPEED CONTROL:ACCELERATOR PEDAL
2003 Toyota 4Runner
Recalls, owner-reported complaints, investigations and safety data
Data refreshed
Overview
Our database contains 695 NHTSA owner-reported complaints for the 2003 Toyota 4Runner, most frequently naming the body & structure, suspension and engine categories. 3 safety recalls have been issued covering this model year; 2 NHTSA investigations name it; and 245 manufacturer communications are on file.
Complaints are reports submitted by owners and drivers to NHTSA. They are not verified and do not establish that a defect exists.
Complaint activity over time
When owners filed reports about this model year
View as table
| Month | Complaints filed | Cumulative |
|---|---|---|
| Jul 2018 | 4 | 433 |
| Aug 2018 | 17 | 450 |
| Sep 2018 | 9 | 459 |
| Oct 2018 | 6 | 465 |
| Nov 2018 | 13 | 478 |
| Dec 2018 | 9 | 487 |
| Jan 2019 | 13 | 500 |
| Feb 2019 | 8 | 508 |
| Mar 2019 | 12 | 520 |
| Apr 2019 | 14 | 534 |
| May 2019 | 7 | 541 |
| Jun 2019 | 6 | 547 |
| Jul 2019 | 5 | 552 |
| Aug 2019 | 5 | 557 |
| Sep 2019 | 8 | 565 |
| Oct 2019 | 4 | 569 |
| Nov 2019 | 2 | 571 |
| Dec 2019 | 7 | 578 |
| Jan 2020 | 7 | 585 |
| Feb 2020 | 8 | 593 |
| Mar 2020 | 2 | 595 |
| Apr 2020 | 3 | 598 |
| May 2020 | 2 | 600 |
| Jun 2020 | 3 | 603 |
| Jul 2020 | 2 | 605 |
| Aug 2020 | 3 | 608 |
| Sep 2020 | 4 | 612 |
| Oct 2020 | 4 | 616 |
| Nov 2020 | 2 | 618 |
| Dec 2020 | 1 | 619 |
| Jan 2021 | 4 | 623 |
| Feb 2021 | 5 | 628 |
| Mar 2021 | 4 | 632 |
| Apr 2021 | 10 | 642 |
| May 2021 | 2 | 644 |
| Jun 2021 | 5 | 649 |
| Jul 2021 | 4 | 653 |
| Aug 2021 | 3 | 656 |
| Sep 2021 | 7 | 663 |
| Oct 2021 | 2 | 665 |
| Nov 2021 | 2 | 667 |
| Jan 2022 | 2 | 669 |
| Mar 2022 | 2 | 671 |
| Apr 2022 | 2 | 673 |
| May 2022 | 1 | 674 |
| Jun 2022 | 1 | 675 |
| Jul 2022 | 3 | 678 |
| Aug 2022 | 2 | 680 |
| Sep 2022 | 1 | 681 |
| Dec 2022 | 1 | 682 |
| Jan 2023 | 4 | 686 |
| Mar 2023 | 1 | 687 |
| Aug 2023 | 1 | 688 |
| Oct 2023 | 1 | 689 |
| Dec 2023 | 1 | 690 |
| Oct 2024 | 1 | 691 |
| May 2025 | 1 | 692 |
| Sep 2025 | 1 | 693 |
| Oct 2025 | 1 | 694 |
| Jan 2026 | 1 | 695 |
What owners report
Complaints grouped by the component NHTSA recorded
- Body & structure28435.5%
- Suspension11414.2%
- Engine9812.3%
- Brakes739.1%
- Driver assistance364.5%
- Steering354.4%
- Powertrain (other)303.8%
- Interior & seats293.6%
Percentages are of component mentions. A single complaint can name more than one component, so these do not sum to the total complaint count.
Safety recalls
3 campaigns cover this model year
Recalls apply to specific vehicles, not to every vehicle of a model year. Check your VIN with NHTSA or your manufacturer's dealer to confirm whether a recall affects your vehicle.
Check a VIN on NHTSA.govFUEL SYSTEM, GASOLINE
WHEELS
Safety investigations
NHTSA inquiries naming this vehicle. An investigation is not a finding of a defect.
Frame corrosion
On August 7, 2018, the Office of Defects Investigation (ODI) received a defect petition from Mr. Gary Weinreich alleging premature frame corrosion failure in model year (MY) 2002 - 2006 Toyota 4Runner vehicles. The petitioner based his request upon a corrosion-related front suspension failure he experienced in his MY 2005 Toyota 4Runner, a class action lawsuit settlement involving other Toyota products, and other complaints of underbody corrosion in Toyota 4Runner vehicles that he found in NHTSA?s online complaint database. The petitioner submitted a complaint to NHTSA documenting his experience (NHTSA ID 11098055). On August 17, 2018, ODI opened DP18-002 to evaluate the petitioner?s request. ODI?s evaluation included information provided by the petitioner regarding his vehicle, facts related to the class action lawsuit cited by the petitioner, and consumer complaint data received by NHTSA regarding underbody corrosion in third and fourth-generation Toyota 4Runner vehicles.The undercarriage of the petitioner?s vehicle exhibited severe corrosion damage indicative of seawater immersion. The vehicle?s service history shows that concerns with underbody corrosion were first noted by a Toyota dealer in a multi-point vehicle inspection performed on April 28, 2011. The invoice for that inspection noted ?severe and excessive amount of rust on the undercarriage and on the drive shaft transmission.? Two years later, on October 21, 2013, another multi-point inspection by a Toyota dealer observed further progression of underbody corrosion damage, noting: ?rust on shocks/struts and other components,? ?rust on exhaust system,? ?both splash shields severely rusted,? and ?undercarriage very rusty.? On July 17, 2017, approximately 10 months prior to experiencing the suspension failure incident, an independent repair facility performing routine oil change and brake maintenance informed the Petitioner of a concern with ?excessive frame corrosion? on his vehicle. The service history, severe general corrosion damage, failure age, and environment do not support the petitioner?s allegation of premature corrosion failure.ODI?s analysis of NHTSA complaint data identified fifteen incidents of front lower control arm failure in fourth-generation Toyota 4Runner sport utility vehicles. Two of the failures, including the petitioner?s vehicle, involve vehicles operated in ocean front communities with continuous exposure to aerosolized marine salts and potential exposure to seawater immersion. The remaining thirteen failures all involved vehicles owned or previously registered in states with the greatest use of deicing salts to treat road surfaces in winter months (?Salt states?). On average, the front lower control arm failures occurred after 13.1 years in service in highly corrosive environments. The failure ages and environments do not support the petitioner?s allegation of premature corrosion failure. 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 p
Unintended and Uncontrolled Acceleration
On February 16, 2010, NHTSA's Office of Defects Investigation (ODI) opened RQ10-003 to determine whether the scope of prior Toyota recalls relating to potential unintended acceleration were sufficiently broad, including, among others, Toyota recalls 07E-082, 09V-388, 10V-017, and 10V-023.NHTSA also requested information regarding potential electronic causes of unintended acceleration in Toyota and Lexus vehicles.I. Pedal Interference from Floor mats, Carpet Covers and Plastic Pads in Carpets.During the RQ10-003 investigation, ODI reviewed a large volume of documents to assess whether additional vehicles should be recalled.Following the agency's analysis, NHTSA requested that Toyota recall additional vehicles.Toyota complied with the agency's request.The details of these recalls are set forth more fully in Toyota's reports to NHTSA pursuant to 49 CFR Part 573.These recalls are as follows:Recall 11V-112: (1) model year (MY) 2004-2006 Toyota Highlander and Highlander Hybrid; and, (2) MY 2004-2007 Lexus RX330,RX350, and RX400h (hybrid model). The total estimated population under this recall is 769,379 vehicles.This recall remedies potential accelerator pedal entrapment caused by a loose floor carpet cover (trim panel). Recall 11V-113: (1) MY 2003-2009 through 2009 Toyota 4Runner; (2) MY 2006-2010 Toyota RAV4; and, (3) MY 2008-2011 Lexus LX570.The total estimated population under this recall is 1,381,000 vehicles.This recall supplements recall 09V-388 and remedies potential accelerator pedal entrapment by an unsecured floor mat.Recall 11V-115: (1) MY 2006-2007 Lexus GS300 (all wheel drive vehicles); and, (2) MY 2006-2007 Lexus GS350 (all wheel drive vehicles). The total estimated population under this recall is 19,647 vehicles.This recall remedies potential accelerator pedal entrapment caused by inadequate clearance between the pedal linkage and a plastic pad embedded in the vehicle's carpet.II. Potential Electronic Causes of Unintended Acceleration.After NHTSA opened RQ10-003, NHTSA launched a ten-month study of potential electronic causes of unintended acceleration in Toyota vehicles.NHTSA launched the study in the spring of 2010 in light of concerns aired in Congressional hearings.NHTSA enlisted engineers at the National Aeronautics and Space Administration (NASA) with expertise in areas such as computer controlled electronic systems, electromagnetic interference and software integrity to assess whether electronic systems or electromagnetic interference played a role in incidents of unintended acceleration in Toyota vehicles.That study has concluded.Two reports are associated with the study and are available on NHTSA's website.NASA's report is entitled Technical Support to the National Highway Traffic Safety Administration (NHTSA) on the Reported Toyota Motor Corporation (TMC) Unintended Acceleration (UA) Investigation, NESC Assessment No. TI-10-00618 (Jan. 18, 2011).NHTSA's report is entitled Technical Assessment of Toyota Electronic Throttle Control (ETC) Systems (Feb. 2011).Both reports should be read in conjunction with each other. As stated in its report, NASA did not find an electronic cause of large throttle openings that can result in unintended acceleration incidents. NHTSA did not find a vehicle-based cause of unintended acceleration incidents other than the physical pedal interference causes that are being addressed by Toyota's recalls. This RQ is closed.
Recent owner complaints
Reports submitted to NHTSA, shown in the owner's own words
Severe frame rust. 2 large holes on the inside of the frame just back from the front wheels and 2 large holes at the ends of the rear crossmember.
- NHTSA ID
- 11711459
- Incident
- Jan 1, 2026
Odometer Fraud. The contact investigated a 2003 Toyota 4 Runner. The contact stated that during the investigation, he discovered a fraudulent scheme of approximately 15 vehicles with odometer fraud. The contact stated that the suspects targeted Facebook Marketplace victims by spraying oil on the engine prior to test-driving the vehicle, and when the vehicle began smoking, the suspects would ask for a discount for the vehicle. The contact added that after the vehicle was purchased, the odometer was rolled back and the vehicle was resold. The vehicle was a private sale. At the time of purchase, the vehicle mileage was 150,000, and at the time of the vehicle being sold, it was discovered that the mileage was 306,000.
- NHTSA ID
- 11696425
- Incident
- Oct 27, 2025
- Mileage
- 306,000 mi
While my mechanic was servicing a small exhaust leak on my vehicle he noticed that the chassis/frame of the vehicle was heavily corroded. He told me that he believe it was no longer safe to drive and that I contact Toyota. I had a local Toyota service center also look at it and they confirmed that the chassis/frame was heavily corroded and unsafe to drive.
- NHTSA ID
- 11688509
- Incident
- Sep 19, 2025
My vehicle: 2003 4Runner SR5 2WD VIN: [XXX] Issue: Front driver's side door will not open. Electronic locks are operating, but the door release is not functioning. Safety Concern: What if I was in a situation where I did need to get out of the vehicle immediately? Such as a high-water incident, fire, etc. Especially for a person [XXX], as myself, this would be a big issue. When attempting to exit the car after pulling into the driveway, I could not open the driver's door. The locks would release, but the door latch would not. I had to crawl over the console to get out through the passenger side. This was not easy as I had back fusion surgery and 8 disc replaced, fused. I had to open the sunroof to help with get over and out. After I did get out, I tried the key in the driver's door, it would actuate the door locks on all doors, but the driver's side door latch would still not release. I even disconnected the battery and reconnected. No help. And after knowing more, it was not an electrical issue, but mechanical failure. I now have it at the repair shop after talking with Toyota Service manage who admitted it was a poor design as the repair for this is to destroy the door panel to get to the actuator to attempt to release the door latch. The estimate for this work is 1,150.00. I am beyond frustration, and especially when I see there is no recall for this issue. There are penty of conversations on this same issue on 4Runner forums as well as all over YouTube. Thank you for looking into this. You can reach me at: [XXX] [XXX] [XXX] INFORMATION REDACTED PURSUANT TO THE FREEDOM OF INFORMATION ACT (FOIA), 5 U.S.C. 552(B)(6)
- NHTSA ID
- 11662305
- Incident
- May 20, 2025
Toyota has had issues with their frames rusting out and the 4th generation 4Runner is not exempt from this issue. My 2003 is requiring extensive work to keep it on the road safely due to frame rust. A recall to replace frames should be in place.
- NHTSA ID
- 11619222
- Incident
- Jan 1, 2024
There is major corrosion on the chassis, brake-power steering-transmission lines, and all metal brackets on the frame and engine. The corrosion is so bad there is holes on the chassis. Known issue, many complaints, Toyota Corp. says to keep calling back maybe something will be done in the future. Unable to upload photos!
- NHTSA ID
- 11561325
- Incident
- Apr 1, 2017
Severe frame rust, there was a recall for tacomas but 4Runners have the issue just as bad
- NHTSA ID
- 11551123
- Incident
- Oct 20, 2023
The contact owns a 2003 Toyota 4Runner. The contact stated that upon taking the vehicle to several independent mechanics for servicing, he was informed that the subframe was significantly corroded and needed to be replaced. The vehicle was not repaired. The dealer was not notified of the failure. The manufacturer was notified of the failure and informed the contact the vehicle was not covered under recall. The failure mileage was approximately 115,000.
- NHTSA ID
- 11537118
- Incident
- Aug 8, 2023
- Mileage
- 115,000 mi
Manufacturer communications
A bulletin sent by a manufacturer to its dealers. Not a recall, and repairs are not necessarily free.
STRUCTURE:BODY
To prevent brake rotor rust from forming during transportation and storage, wheel film will be used instead of a cardboard type of anti-rust cover. The purpose of the wheel film is to shield the disc brake rotor from weather elements and initial rust before the vehicle is delivered to the customer. Consequently, the film should remain on the wheel for as long as possible.
STRUCTURE:BODY
The condition known as acid rain is caused by airborne chemicals or particles in the atmosphere, which mix with rainwater, nighttime dew, or high humidity to form acidic compounds. If these contaminants settle and remain on a painted vehicle surface, especially the horizonal areas of the hood, roof, and decklid, significant damage can occur. This damage is the result of actual etching of the paint and appears as pitting or water spots. As acid rain droplets on the vehicle surface evaporate, the concentration strength of the acid increases, causing deeper and more rapid damage. This evaporation and corrosive action also occur more rapidly on dark colored cars as direct sun heat increases. It is the dealer’s responsibility to protect and maintain the quality of the vehicle’s paint finish after receipt at the dealership prior to the first sale. In areas known for high frequency and/or concentration of acid rain, frequent vehicle washing during high heat or humidity periods will minimize the potential for paint damage caused by acid rain. It is further recommended that either reverse osmosis or deionized water be used to prevent water spotting.
STRUCTURE:BODY
Acid rain results from rainwater or other airborne moisture that become acidic due to industrial chemical impurities in the atmosphere. If these acidic compounds settle on an exposed vehicle, especially the horizontal areas such as the hood, roof, and decklid, significant damage to the painted surfaces can occur. Acid rain damage can typically be identified on vehicles by the presence of stains on the paint surface that resemble hard water spots. Unlike water spots however, acid rain damage cannot be removed by regular washing procedures. Also, because acid rain can etch and soften the paint, normal buffing or polishing repair procedures should not be attempted. This can cause further damage and result in visible depressions in the paint surface. The following are the three major categories of acid rain damage: •Minor damage: requires only buffing to repair. •Moderate damage: usually requires neutralizing, color sanding, and buffing. •Severe damage: extending beyond 1/2 mil of clearcoat on a pearl, metallic, or solid color, requires neutralization, sanding, and repainting. In cases where acid rain damage is minor, neutralization and buffing with a liquid-type paint finessing product may provide an adequate repair. Only specially formulated products outlined in this bulletin should be used for that purpose. Unfortunately, other than minor damage, there is no simple method of determining the actual extent (depth) of acid penetration other than color sanding a representative affected area until there is no visible etching or depressions, followed by measuring the amount of paint removed with either a magnetic or digital-type film thickness gauge. The procedures in this bulletin are intended for use by qualified body/paint technicians and should not be attempted by inexperienced personnel. It is the dealer’s responsibility to protect and maintain the quality of the vehicle’s paint finish after receipt at the dealership prior to the first sale. Perform frequent vehicle washing, as often as daily, during high heat and humidity periods to minimize the potential for paint damage due to acid rain exposure. This is especially important in geographical areas known for high frequency and concentration of acid rain and industrial fallout.
STRUCTURE:BODY
Toyota vehicles are currently protected with RapgardTM protective film designed to protect the horizontal painted surfaces. This material protects from acid rain, environmental fallout, and rail contamination. Follow the Removal Procedure in this bulletin to remove the RapgardTM protective film within 90 days from initial application.
STRUCTURE:BODY
Vehicles may occasionally be subjected to contamination by airborne iron particles shed from railroad tracks, train wheels, exposure to heavy machinery facilities, grinding, welding, etc. This type of contamination can be identified by the presence of small, red or brown particles on the paint surface. These particles are often difficult to see on dark color paints but can be easily felt when brushing a hand across horizontal body surfaces such as the hood, roof, or deck lid. Follow the Repair Procedure in this bulletin to clean vehicles that may have been subjected to contamination by airborne iron particles such as rail dust during rail transportation or extended storage near industrial areas.
STRUCTURE:BODY
To prevent brake rotor rust from forming during transportation and storage, wheel film will be used instead of a cardboard type of anti-rust cover. The purpose of the wheel film is to shield the disc brake rotor from weather elements and initial rust before the vehicle is delivered to the customer. Consequently, the film should remain on the wheel for as long as possible.
Manufacturers file copies of the bulletins they send to dealers with NHTSA. These often describe diagnostic or repair procedures for a known condition. They are not recalls: repairs described in a bulletin are usually only free if the vehicle is still under warranty or the manufacturer has extended coverage.
Compare model years
Complaint and recall counts across every year of this model
| Year | Complaints | Recalls | Investigations | Issue Index |
|---|---|---|---|---|
| 2026 | 7 | 1 | 0 | — |
| 2025 | 54 | 1 | 0 | 49.7 |
| 2024 | 8 | 1 | 0 | — |
| 2023 | 30 | 1 | 0 | 51.7 |
| 2022 | 39 | 3 | 0 | 58.8 |
| 2021 | 34 | 1 | 0 | 51.1 |
| 2020 | 31 | 1 | 0 | 44.0 |
| 2019 | 64 | 4 | 0 | 58.1 |
| 2018 | 58 | 5 | 0 | 56.9 |
| 2017 | 36 | 5 | 1 | 63.7 |
| 2016 | 78 | 8 | 1 | 65.4 |
| 2015 | 86 | 9 | 1 | 59.1 |
| 2014 | 77 | 7 | 1 | 59.4 |
| 2013 | 36 | 6 | 1 | 57.3 |
| 2012 | 96 | 8 | 1 | 58.8 |
| 2011 | 163 | 10 | 1 | 57.4 |
| 2010 | 145 | 12 | 1 | 56.6 |
| 2009 | 22 | 6 | 1 | 60.0 |
| 2008 | 96 | 5 | 1 | 58.6 |
| 2007 | 154 | 5 | 1 | 53.2 |
| 2006 | 380 | 5 | 2 | 60.0 |
| 2005 | 424 | 5 | 2 | 56.6 |
| 2004 | 678 | 2 | 2 | 53.0 |
| 2003Viewing | 695 | 3 | 2 | 53.5 |
| 2002 | 224 | 3 | 1 | 55.7 |
| 2001 | 185 | 3 | 0 | 49.9 |
| 2000 | 483 | 2 | 0 | 49.0 |
| 1999 | 330 | 2 | 0 | 51.2 |
| 1998 | 250 | 4 | 0 | 52.1 |
| 1997 | 261 | 4 | 0 | 55.1 |
| 1996 | 161 | 5 | 0 | 54.3 |
| 1995 | 172 | 4 | 1 | 59.2 |
| 1994 | 64 | 4 | 2 | 63.2 |
| 1993 | 51 | 3 | 2 | 59.9 |
| 1992 | 53 | 3 | 2 | 60.1 |
| 1991 | 43 | 2 | 4 | 55.7 |
| 1990 | 78 | 2 | 4 | 65.1 |
| 1989 | 6 | 1 | 1 | — |
| 1988 | 9 | 1 | 0 | — |
| 1987 | 5 | 0 | 0 | — |
| 1986 | 8 | 0 | 0 | — |
| 1985 | 2 | 0 | 0 | — |
| 1984 | 2 | 0 | 0 | — |
Higher-selling and older vehicles accumulate more reports. Counts are not failure rates and are not directly comparable between vehicles that sold in very different numbers. Older model years have had longer for reports to accumulate.