2006–2011XV40 SelectedXV402.4 petrolPetrolSee faults & what to checkKickTyres illustration, not a photograph.Toyota Camry XV40: common faults & what to check
The XV40 is the Toyota Camry built 2006–2011. It was sold here with the 2.4 petrol, 2.4 hybrid, and 3.5 V6 petrol. Of the 54 faults documented for the Camry, 17 apply to this generation, each with its symptoms, what to inspect and a typical repair cost. Free, no account needed.
Check this exact Toyota Camry
- Odometer history
- Money owing
- Reported stolen
- Ownership history
54
Critical
$650–$2,200
26
You're looking at the XV40
2006–2011XV40 SelectedXV402.4 petrolPetrolSee faults & what to checkKickTyres illustration, not a photograph.
2006–2011XV40 SelectedXV402.4 hybridHybridSee faults & what to checkKickTyres illustration, not a photograph.
2006–2011XV40 SelectedXV403.5 V6 petrolPetrolSee faults & what to checkKickTyres illustration, not a photograph.Now narrow it to the engine
A 2007 Toyota Camry is the XV40 generation (2006 to 2011).
Start your free check on this Toyota Camry
Pick the engine above first: the Camry came with 3, and without it the report has to show all of their faults. Pick the engine
Can't confirm for this car
Toyota Camry · 2007
Narrowed to the year. No engine is recorded for this vehicle. Pick an engine to see which faults apply.
Tell us the engine, or check the engine code on the car, before relying on this.
- No engine is recorded for this vehicle.
matched on year only
What to look out for
Serious issue
Pull the ATF dipstick and inspect fluid colour — healthy ATF is red or amber, never pink or foamy.
Radiator ATF Cooler Failure — Coolant/Trans Fluid Mix
Toyota Camry automatic transmissions are cooled via an internal heat exchanger built into the bottom tank of the plastic-aluminium radiator. When the plastic radiator tank cracks with age or the internal cooler tubes corrode, engine coolant and automatic transmission fluid cross-contaminate. ATF contaminated with coolant turns pink and foamy, destroying clutch packs and valve body seals within a short distance. Replacement of both the radiator and the automatic transmission is frequently required. The failure is accelerated in vehicles where coolant has not been changed on schedule.
What you would notice
Costly issue
Check the rack body and tie rod area for fluid residue or dried PSF deposits.
Hydraulic Power Steering Rack Seal Weeping
ACV40 Camry models equipped with hydraulic power steering develop internal rack seal leaks as the steering rack seals harden and crack with age. The power steering fluid (PSF) weeps past the rack piston seal and accumulates inside the rack bellows boots, eventually saturating them and dripping from the lower front of the steering assembly. In advanced cases the fluid contamination travels along the rack and appears at the inner tie rod area. Loss of fluid leads to increased steering effort and pump whine. The rack is typically not economically rebuildable and is replaced as a unit; remanufactured racks are widely available. The power steering pump reservoir and hoses should be inspected at the same time as pump whine can accompany the seal failure.
What you would notice
Costly issue
Check for uneven rear tyre wear or a vehicle that crab-walks slightly when viewed from behind at speed.
Rear Suspension Lateral Link and Trailing Arm Bush Collapse
The ACV40 and ACV50 Camry use a multi-link rear suspension with a network of lateral links and trailing arms, each secured with rubber-bonded bushes. These bushes are not rebuildable in the original Toyota design and are pressed into the links at manufacture. With age and mileage the rubber compound softens and cracks, allowing the bush to deflect excessively under cornering and braking loads. The result is rear toe and camber change under load, which presents as unpredictable rear-end movement during directional changes and excessive inner or outer rear tyre wear. The lower lateral link inboard bush and the front trailing arm bush are the most commonly reported failures. Aftermarket polyurethane bush kits are available as an alternative to OEM rubber.
What you would notice
Costly issue
Scan for fault codes P0010, P0011, P0012 before buying.
VVT-i Oil Control Valve Sludge Blockage
The Variable Valve Timing-intelligent (VVT-i) system on Toyota four and six-cylinder engines relies on oil pressure delivered through a solenoid-controlled oil control valve (OCV) to advance or retard camshaft timing. Oil sludge or degraded oil deposits block the fine mesh screen inside the OCV and the feed galleries to the camshaft phaser actuator. A blocked OCV causes the engine to run on a fixed cam timing, producing rough idle, poor fuel economy, and misfires. The solenoid itself can also fail electrically. Toyota issued service bulletins covering OCV cleaning procedures and replacement intervals.
What you would notice
Common issue
Press firmly on the top of the dashboard near the windscreen and around the vents.
Sticky / melting dashboard top surface in heat and humidity
The dashboard top-pad on 2007-2011 Camry and Camry Hybrid can turn sticky, shiny and gooey when exposed to sustained heat and sunlight, a real concern for NZ/AU cars that live outdoors. The softened surface becomes tacky to the touch, develops a glare that reflects into the windscreen, and can crack. It is cosmetic and does not affect running, but a full dash-pad replacement is expensive. Toyota issued Warranty Enhancement Program ZE6 covering cracked/sticky/melting dashboards, but that coverage has expired for these model years, so a used buyer inherits the cost.
What you would notice
Toyota Camry service schedule
XV40 · 2006–2011 · 2.4L (2AZ-FE) - Altise/Ateva
Due by distance
- 150,000 km
Check the suspension bushings and the condition of the alternator.
- 200,000 km
Engine mounts can show their age here, and the water pump is worth watching.
XV40 · 2006–2011 · 3.5L (2GR-FE) V6 - Sportivo/Grande
Due by distance
- 150,000 km
Check the cooling system parts such as the radiator and hoses, particularly the plastic ends that go brittle.
- 200,000 km
A full transmission service with a fluid flush helps the 6-speed automatic last.
- 250,000 km
The alternator and starter motor brushes may eventually need rebuilding or replacing.
See all 17 issues for this one
Engine, transmission & cooling1 critical
01Radiator ATF Cooler Failure — Coolant/Trans Fluid Mix
Toyota Camry automatic transmissions are cooled via an internal heat exchanger built into the bottom tank of the plastic-aluminium radiator. When the plastic radiator tank cracks with age or the internal cooler tubes corrode, engine coolant and automatic transmission fluid cross-contaminate. ATF contaminated with coolant turns pink and foamy, destroying clutch packs and valve body seals within a short distance. Replacement of both the radiator and the automatic transmission is frequently required. The failure is accelerated in vehicles where coolant has not been changed on schedule.
Symptoms to notice
What to check
Ask the seller
02VVT-i Oil Control Valve Sludge Blockage
The Variable Valve Timing-intelligent (VVT-i) system on Toyota four and six-cylinder engines relies on oil pressure delivered through a solenoid-controlled oil control valve (OCV) to advance or retard camshaft timing. Oil sludge or degraded oil deposits block the fine mesh screen inside the OCV and the feed galleries to the camshaft phaser actuator. A blocked OCV causes the engine to run on a fixed cam timing, producing rough idle, poor fuel economy, and misfires. The solenoid itself can also fail electrically. Toyota issued service bulletins covering OCV cleaning procedures and replacement intervals.
Symptoms to notice
What to check
Ask the seller
Body, brakes, suspension & interior
03Air Conditioning Evaporator Core Pinhole Leak
The aluminium evaporator core in the ACV40 and ACV50 Camry heater box is susceptible to formicary corrosion, where formic acid produced by organic material in condensation draining across the core surface pits the aluminium walls. The resulting pinholes allow refrigerant (R134a) to slowly escape into the cabin air stream and the refrigerant oil to coat the evaporator fins. The evaporator is located inside the heater box behind the dashboard centre stack, making replacement a full dashboard removal job. In NZ the common presentation is a musty or sweet chemical odour from the vents with the AC running, accompanied by slowly degrading cooling performance as refrigerant charge drops. Recharging without fixing the leak is a temporary measure only.
Symptoms to notice
What to check
Ask the seller
04Hydraulic Power Steering Rack Seal Weeping
05Rear Suspension Lateral Link and Trailing Arm Bush Collapse
06Sticky / melting dashboard top surface in heat and humidity
The dashboard top-pad on 2007-2011 Camry and Camry Hybrid can turn sticky, shiny and gooey when exposed to sustained heat and sunlight, a real concern for NZ/AU cars that live outdoors. The softened surface becomes tacky to the touch, develops a glare that reflects into the windscreen, and can crack. It is cosmetic and does not affect running, but a full dash-pad replacement is expensive. Toyota issued Warranty Enhancement Program ZE6 covering cracked/sticky/melting dashboards, but that coverage has expired for these model years, so a used buyer inherits the cost.
Symptoms to notice
What to check
Ask the seller
07Front Strut Top Mount Bearing Failure
The front MacPherson strut top mount on both ACV40 and ACV50 Camry incorporates a thrust bearing that allows the strut to rotate with the steering. This bearing is a low-maintenance sealed unit but deteriorates from age, water ingress through the dust seal, and the constant cyclic loading of NZ road surfaces. A failed bearing causes the strut to bind during steering rather than rotating smoothly, transmitting a clunk or creak directly through the steering wheel. At full lock the characteristic noise is a single knock per steering input. Worn bearings also allow strut alignment to shift slightly under hard braking, contributing to brake pull complaints. Both sides typically degrade at similar mileage so paired replacement is standard practice.
Symptoms to notice
What to check
Ask the seller
Depends on the exact engine — 10 more
Engine, transmission & cooling
012GR-FE Secondary Timing Chain Tensioner Rattle
Can't confirm for this car
Can't confirm for this car
The 2GR-FE 3.5-litre V6 fitted to XV40 Camry V6 has two secondary timing chains (one per bank) in addition to the primary chain. The secondary chain tensioners — particularly on the rear bank — can develop rattle on cold start or after extended oil drain intervals. The rear bank tensioner is difficult to access and labour-intensive to replace. This is a documented pattern in 2GR-FE-powered vehicles across multiple Toyota and Lexus platforms from the same era.
Example of the part — not this vehicleThe front of a twin-cam engine with the timing cover off — chain, sprockets and guides.
Symptoms to notice
What to check
Ask the seller
022AZ-FE 2.4 Piston Ring Oil Consumption
Can't confirm for this car032AZ-FE Timing Chain Tensioner Cold-Start Rattle
Can't confirm for this car
Can't confirm for this car
The 2AZ-FE timing chain tensioner loses oil pressure overnight causing metallic rattle on cold start. Extended rattle beyond 5-10 seconds indicates worn tensioner or plastic guides.
Example of the part — not this vehicleThe front of a twin-cam engine with the timing cover off — chain, sprockets and guides.
Symptoms to notice
What to check
Ask the seller
042AZ-FE 2.4L excessive oil consumption — Toyota Warranty Enhancement ZE7
Can't confirm for this car
Can't confirm for this car
The 2.4L four-cylinder 2AZ-FE in XV40 Camrys is prone to excessive oil consumption because the original low-tension piston oil-control rings carbonise and lose their seal, letting oil burn past the pistons. It typically emerges around 150,000-180,000 km and can empty the sump between services, risking oil starvation if the owner doesn't top up. Toyota addressed it with a piston/ring redesign and an oil-consumption-test procedure under Warranty Enhancement ZE7, but many cars showed symptoms only after the powertrain warranty lapsed. On an import with no history this is a buy/no-buy check.
Symptoms to notice
What to check
Ask the seller
05Engine Coolant Crossover Pipe O-Ring Weeping
Can't confirm for this car
Can't confirm for this car
Both the 2AZ-FE and 2AR-FE engines route coolant through a metal crossover or bypass pipe that bridges sections of the cooling system around the rear of the engine. This pipe is sealed at each end with rubber O-rings that harden and crack over time from heat cycling. The resulting weep is slow — typically 50–100mL per month — and presents as a coolant smell under the bonnet after the engine reaches operating temperature rather than as a visible puddle. The staining accumulates on the rear of the block and is often mistaken for a head gasket weep. O-ring replacement is a low-cost repair if caught early but requires coolant drain and often throttle body or intake manifold removal for access. Ignored, the weep can worsen to a drip causing low coolant and overheating.
Symptoms to notice
What to check
Ask the seller
06U250E Automatic Transmission Solenoid Pack Failure
Can't confirm for this car07U660E / U760E Auto Torque Converter Shudder
Can't confirm for this car
Can't confirm for this car
The U660E six-speed and U760E seven-speed automatic transmissions fitted to Camry and Aurion models develop a torque converter shudder caused by friction material wear on the lock-up clutch. The shudder typically presents as a rapid oscillating vibration between 60–100 km/h during light cruise throttle when the torque converter is in partial lock-up. Toyota issued service bulletins across multiple markets specifying a transmission fluid drain and refill with Toyota WS ATF as the primary fix. Cases where the fluid has not been changed on schedule frequently require torque converter replacement.
Example of the part — not this vehicleA torque converter, sectioned. The lock-up clutch inside is what shudders.
Symptoms to notice
What to check
Ask the seller
08V6 U660E 6-speed automatic torque-converter shudder (Flex Lock-Up clutch glazing)
Can't confirm for this car
Can't confirm for this car
The V6 XV40 Camry uses the U660E 6-speed automatic (introduced on the 2007 Camry/ES350), prone to a torque-converter shudder felt as a vibration or 'rumble-strip' sensation, typically between about 40-80 km/h under light-to-moderate throttle. It stems from Toyota's fuel-saving Flex Lock-Up strategy that partially applies the converter clutch at low speed, glazing the friction lining over time; degraded fluid and valve-body/solenoid wear make it worse. A fresh fluid service sometimes helps, but a glazed converter usually needs replacement.
Example of the part — not this vehicleA torque converter, sectioned. The lock-up clutch inside is what shudders.
Symptoms to notice
What to check
Ask the seller
Electrical
01AHV40 Hybrid NiMH Battery Cell Degradation
Can't confirm for this car
Can't confirm for this car
The AHV40 Camry hybrid NiMH traction battery loses cell capacity with age causing reduced electric assist and poor fuel economy. Battery warning appears when cell voltage spread exceeds normal limits.
Symptoms to notice
What to check
Ask the seller
Fluid leaks
01Recall/campaign: 3.5 V6 (2GR-FE) VVT-i rubber oil-supply hose can rupture — Limited Service Campaign 90K
Can't confirm for this car
Can't confirm for this car
On XV40 Camrys with the 3.5L 2GR-FE V6, the rubber section of the VVT-i actuator oil-supply hose degrades and can develop a pinhole that expands (worsened by corrosive PCV gases) until the hose ruptures, dumping engine oil rapidly and causing severe damage from oil starvation. Toyota ran a Limited Service Campaign (90K) to replace the hose with a redesigned part free of charge, but because it was a limited campaign many cars were never done — verify the update on the VIN.
Symptoms to notice
What to check
Ask the seller
Other Toyota Camry engines and years
Engine, transmission & cooling
01E-CVT MG2 Resolver Fault P315A After Water Ingress
Does not apply
Does not apply
The hybrid transaxle houses MG2 (the primary drive motor) and its resolver position sensor, which feeds rotor angle data to the hybrid ECU for precise torque control. Deep water crossings can allow water to enter the transaxle through seals, contaminating the resolver and causing erratic position signals or outright sensor failure. This stores resolver-related DTCs (including P315A, P0A4B, or P0A92) and triggers hybrid and traction warning lights, typically putting the vehicle into fail-safe mode. Transaxle fluid appearing milky indicates internal water contamination. Repair typically requires transaxle assembly replacement as resolver access is not feasible in the field.
Symptoms to notice
What to check
Ask the seller
021MZ-FE 3.0 V6 Engine Oil Sludge
Does not apply
Does not apply
The 1MZ-FE 3.0-litre V6 engine is documented to develop severe oil sludge accumulation in the cylinder head galleries, oil passages, and timing chain cover when oil changes are delayed or when short-trip driving prevents the engine reaching operating temperature. Sludge blocks the oil feed to the variable valve timing actuators and upper engine bearings, leading to bearing failure and camshaft damage. Toyota Australia extended goodwill coverage on some affected vehicles, and Toyota US implemented a formal extended warranty programme for this defect.
Symptoms to notice
What to check
Ask the seller
032AR-FE Internal Water Pump Seal Failure
Does not apply
Does not apply
The 2AR-FE uses a timing-chain-driven internal water pump whose shaft seal deteriorates with age and mileage, typically presenting after 100,000 km. Coolant weeps past the failed seal and can migrate into the engine oil via the pump housing, causing emulsification visible on the dipstick. In some cases coolant exits through an external weep hole at the front of the timing cover. Failure escalates to overheating if undetected. The repair requires timing chain cover removal, making it labour-intensive relative to a conventional external pump.
Symptoms to notice
What to check
Ask the seller
04Hybrid Inverter Coolant Pump Failure
Does not apply
Does not apply
The power electronics assembly — including the main inverter and DC-DC converter — is cooled by a dedicated closed-loop circuit with a small electric water pump separate from the engine cooling system. This electric pump runs whenever the hybrid system is active and is a known wear item; bearing failure or impeller seizure causes inverter coolant temperature to spike, triggering a limp-mode shutdown to prevent inverter damage. Without prompt repair the inverter itself can be heat-damaged, turning a sub-$1,000 pump job into a $5,000–$9,000 inverter replacement.
Symptoms to notice
What to check
Ask the seller
05UA80E 8-Speed Auto Harsh Shift, Shift Flare and Torque Converter Clutch Fault (2GR-FKS V6)
Does not apply
Does not apply
The 3.5 V6 (2GR-FKS) Camry uses the UA80E eight-speed automatic. Early units can shift harshly, flare (revs jump between gears) or set a check engine light for a torque converter clutch that sticks on (P07407E) or a clutch pressure fault (P27567F). Toyota changed an internal clutch in late 2017 and rewrote the engine and transmission software; its bulletin T-SB-0122-20 warns that a transmission with mismatched hardware and software can shift harshly or flare until the control unit is correctly reprogrammed. Transmission rebuilders also report the line pressure solenoid as the most common wear item on this gearbox. Ignored, clutch wear and overheating can end in a transmission replacement. The 2.5 four cylinder petrol Camry sold new in NZ and AU from 2017 to early 2021 used a different six-speed automatic and is not affected by this row.
Example of the part — not this vehicleA torque converter, sectioned. The lock-up clutch inside is what shudders.
Symptoms to notice
What to check
Ask the seller
06A25A-FXS Engine Oil Consumption
Does not apply07A25A-FXS 2.5L Timing Chain Cold-Start Rattle
Does not apply
Does not apply
The A25A-FXS 2.5-litre four-cylinder hybrid engine fitted to XV70 Camry Hybrid has been documented on NZ and AU owner forums as developing a cold-start timing chain rattle from around 60,000–80,000 km. The pattern mirrors the 2ZR-FE and M20A-FKS history — oil drain-back from the upper chain circuit when the engine is at rest causes a brief but audible rattle until oil pressure re-establishes. Extended oil change intervals or use of low-quality oil accelerates chain and tensioner wear. Toyota has not issued a recall but the pattern is consistent across multiple examples in the region.
Example of the part — not this vehicleThe front of a twin-cam engine with the timing cover off — chain, sprockets and guides.
Symptoms to notice
What to check
Ask the seller
082AR-FE Timing Chain Tensioner Cold-Start Rattle
Does not apply09AB60F Torque Converter Lock-Up Shudder
Does not apply102AR-FE Oil Consumption from Piston Ring Wear
Does not apply
Does not apply
The ACV50 Camry 2AR-FE 2.5 engine consumes oil from piston ring wear and valve stem seal degradation on high-mileage examples. Oil consumption above 1 litre per 5000km is abnormal.
Symptoms to notice
What to check
Ask the seller
11Hybrid Inverter Coolant Pump Failure (2AR-FXE / A25A-FXS)
Does not apply12A25A-FKS Electric Water Pump Leak and P26CA Coolant Pump Fault
Does not apply
Does not apply
The 2.5 Dynamic Force petrol engine (A25A-FKS) fitted to the facelifted petrol Camry (sold new in Australia as the Ascent from 2021; NZ-new Camrys from 2021 were hybrid only) uses an electric water pump. Toyota tech tip T-TT-0733-23 covers 2022 to 2024 Camry (petrol and hybrid) with the A25A engine leaking coolant from the water pump and/or setting codes P26CA14 or P26CA31 (coolant pump circuit or no signal). A leaking or failed pump lets the engine run hot, and overheating an aluminium engine risks head gasket damage. The repair is a new pump, coolant and bleed.
Symptoms to notice
What to check
Ask the seller
13A25A-FXS Intake Valve Carbon Buildup & P0300
Does not apply
Does not apply
Despite the A25A-FXS using Toyota's D-4S dual-injection system combining port and direct injection, crankcase oil vapour still deposits carbon on intake valve stems and heads over time, especially in stop-and-go urban driving. Buildup restricts airflow into cylinders, causing rough idle, hesitation under acceleration, and P0300 random or cylinder-specific misfire codes. Walnut blasting of intake ports at 60,000-80,000 km intervals is the accepted correction. Severe cases can cause stalling at idle or cold-start stumble.
Symptoms to notice
What to check
Ask the seller
14Fuel pump failure recall - engine stall without restart (Denso low-pressure pump)
Does not apply
Does not apply
Toyota recalled 75,905 Australian vehicles including 2013-2019 Camrys (recall REC-001320, campaign VGG05, April 2020) because the low-pressure fuel pump can stop working. The engine runs rough, warning lights appear, and the car can stall and refuse to restart - a genuine breakdown-lane problem rather than a wear item. Dealers replace the pump free of charge under the recall, and Toyota later ran a separate fuel-pump recall for hybrid Camrys. Whether THIS car had the work done is a VIN-specific question, and an unrepaired car is still driving around with the fault.
Symptoms to notice
What to check
Ask the seller
15Coolant Bypass Valve Failure P2681 & HV Overtemp
Does not apply164-speed automatic torque-converter lock-up shudder and 2-3 shift flare
Does not apply
Does not apply
The 4-speed automatics used across the XV30 range (U241E behind the 2.4L 2AZ-FE, U140E behind the 3.0L V6) develop a torque-converter lock-up shudder felt as a light vibration or 'wiggle' of 100-200 rpm under gentle throttle at cruise, plus flaring (revs jumping) on the 2-3 upshift as valve-body pressures bleed off. These are wear symptoms rather than a design fault and generally do not appear until high mileage, commonly beyond about 200,000-250,000 km, and are strongly accelerated by neglected or never-changed transmission fluid. Caught early, a drain-and-fill or flush with the correct Toyota fluid often restores smooth operation; left burnt and black, the valve body or converter wears and a rebuild follows.
Example of the part — not this vehicleA torque converter, sectioned. The lock-up clutch inside is what shudders.
Symptoms to notice
What to check
Ask the seller
17Hybrid Transaxle Motor-Generator Bearing Hum
Does not apply
Does not apply
The P710 hybrid transaxle houses two motor-generators (MG1 and MG2) whose rotor bearings can develop a low-frequency resonant hum as mileage accumulates, typically presenting above 80,000 km. The noise is load-dependent and often most noticeable under light throttle at highway speeds when MG2 is actively generating, making it easy to confuse with road or tyre noise. Bearing failure that progresses to advanced wear risks introducing metallic debris into the transaxle fluid and can damage the planetary gear set.
Symptoms to notice
What to check
Ask the seller
18EGR System Carbon Buildup — A25A-FXS
Does not apply
Does not apply
The A25A-FXS uses a high-pressure EGR circuit routed through a water-cooled EGR cooler; the recirculated exhaust gases deposit carbon on the EGR valve, cooler passages, and intake manifold walls. Hybrid duty cycles exacerbate the problem because short urban trips never fully heat-soak the EGR cooler, allowing condensate and soot to accumulate faster than on conventional vehicles. Partial EGR blockage triggers rough idle and P0401/P0400 codes; full blockage elevates NOx emissions and causes misfires under load.
Symptoms to notice
What to check
Ask the seller
19EVAP charcoal canister failure - persistent P0440/P0442/P0446 check-engine light
Does not apply
Does not apply
The evaporative-emissions charcoal canister on the XV30 Camry is a documented weak point. When it clogs or its internal valves fail, the check-engine light comes on with codes P0440, P0442 or P0446 and will keep returning even after the cheap fixes (fuel cap, hoses) are tried. The car drives normally, which is exactly why sellers ignore it - but it will fail an emissions-related inspection where applicable, and a replacement canister assembly is a genuinely expensive part for a cheap car. A lit check-engine light also hides any new fault that appears later.
Symptoms to notice
What to check
Ask the seller
20Front air-fuel ratio sensor failure (2AZ-FE / 1MZ-FE)
Does not apply
Does not apply
The front air-fuel ratio sensor (the wideband oxygen sensor before the catalytic converter) fails often on 2002-2006 Camrys, both the 2.4 four-cylinder and the 3.0 V6. It brings on the check-engine light, hurts fuel economy and can cause light hesitation. The genuine Denso sensor is not cheap, so cars are commonly sold with the fault present or with a low-quality substitute fitted that fails again quickly. Left alone it can eventually take the catalytic converter with it, which is the expensive version of this problem.
Symptoms to notice
What to check
Ask the seller
21Worn engine mounts (dog-bone / torque strut) causing vibration and clunk
Does not apply
Does not apply
The hydraulic and rubber engine mounts on the XV30 Camry wear out with age and mileage, with the upper torque-strut ('dog-bone') mount usually failing first and then loading up the remaining mounts. As the rubber perishes or a hydraulic mount loses its fluid, the engine is no longer damped and the car shakes noticeably at idle in Drive, with a distinct clunk or bang felt through the body when selecting gears or lifting on/off the throttle. It is a wear item rather than a recall issue and is very common on high-mileage examples; owners report cheap aftermarket mounts deteriorating quickly, so genuine Toyota or quality mounts are preferred. Vibration that clearly eases when shifting to Neutral or Park points at the mounts rather than the engine itself.
Symptoms to notice
What to check
Ask the seller
Electrical
01HV Inverter MG1 Isolation Fault P3009/P3105
Does not apply
Does not apply
The Power Control Unit houses the MG1 generator inverter and MG2 traction inverter. A P3009 (high-voltage isolation failure) or P3105 (Battery ECU communication circuit fault linked to inverter-side signal loss) causes the hybrid system to illuminate the traction warning and master warning lights and enter fail-safe reduced-power mode. Root causes include coolant intrusion into the inverter from a cracked case following minor collision damage, degraded internal insulation on IGBT modules, or corrosion of high-voltage DC bus cables. Repair requires inverter assembly replacement and high-voltage isolation testing with a megohmmeter.
Symptoms to notice
What to check
Ask the seller
02High-Voltage Traction Battery Capacity Degradation
Does not apply
Does not apply
The nickel-metal hydride (NiMH) high-voltage battery pack in the AXVH70/AXVA70 loses usable capacity progressively, with earlier 2017–2019 examples now reaching the age where significant degradation is observable. Cell imbalance develops as weaker cells are repeatedly brought to voltage extremes relative to healthier ones, accelerating failure in those individual modules. Severe degradation results in reduced EV-only range, more frequent engine engagement at low speeds, higher fuel consumption, and ultimately fault codes that force the vehicle into limp mode.
Symptoms to notice
What to check
Ask the seller
03ASV50 Hybrid MG2 Transaxle Resolver Fault
Does not apply
Does not apply
The MG2 motor-generator resolver sensor embedded in the P410 hybrid transaxle can develop electrical faults or wiring harness chafing, causing the hybrid control ECU to lose rotor position data. The system triggers a traction warning light and forces the vehicle into reduced-power limp mode. Fault codes P0A3C, P0A43, or P0A46 are typically stored and require Toyota Techstream to retrieve from the HV system. Wiring harness connector corrosion at the transaxle is a common root cause; severe cases require transaxle removal to access the resolver stator.
Symptoms to notice
What to check
Ask the seller
042AR-FXE Hybrid NiMH Battery Degradation
Does not apply
Does not apply
The AVV50 Camry Hybrid 2AR-FXE NiMH traction battery degrades with age causing reduced electric assist and declining fuel economy.
Symptoms to notice
What to check
Ask the seller
0512V Auxiliary Battery Drain and Premature Failure
Does not apply
Does not apply
Toyota hybrids impose a continuous parasitic draw on the 12V auxiliary battery from the keyless entry ECU, the hybrid system's standby monitoring, and the security module, drawing approximately 20–30 mA even when the car is locked. The 12V battery does not receive a meaningful charge from the DC-DC converter unless the Ready light is on, so vehicles left parked for more than a week — or those with a degrading 12V battery — frequently fail to start the hybrid system at all. Toyota issued multiple TSBs addressing excessive draw from the smart-key ECU in this generation.
Symptoms to notice
What to check
Ask the seller
06ASV50 Hybrid Auxiliary 12V Battery Failure
Does not apply07Electric Power Steering Rack Rattle
Does not apply
Does not apply
EPS rack develops internal rattle at low speeds over rough surfaces.
Symptoms to notice
What to check
Ask the seller
Body, brakes, suspension & interior
01Electric Brake Actuator (Brake Booster) Malfunction
Does not apply
Does not apply
The AXVH70/AXVA70 uses an electro-hydraulic brake actuator (replacing the conventional vacuum booster) to blend regenerative and friction braking seamlessly. The actuator contains an electric motor, accumulator, and hydraulic control unit; internal motor brush wear or ECU faults cause erratic brake pressure modulation or complete loss of power-assisted braking. Several NHTSA complaints describe unexpectedly long stopping distances or a sudden hard pedal without warning. Toyota has investigated this component across multiple hybrid platforms.
Symptoms to notice
What to check
Ask the seller
02Front Lower Arm Inner Pivot Bush Wear
Does not apply03Front Lower Arm Ball Joint Wear
Does not apply
Does not apply
Front lower arm ball joints wear causing clunking and handling imprecision.
Example of the part — not this vehicleA separated lower ball joint: the control arm has dropped and the wheel has splayed out under the guard.
Symptoms to notice
What to check
Ask the seller
04Brake Caliper Guide Pin Seizure
Does not apply
Does not apply
Front and rear brake caliper guide pins seize from corrosion causing uneven pad wear.
Symptoms to notice
What to check
Ask the seller
05XV70 Camry rear centre seatbelt may not lock: 2019 safety recall (built August to October 2019)
Does not apply
Does not apply
XV70 Camrys of every engine built between 19 August and 11 October 2019 (NZ notice; the Australian notice gives 21 August to 6 September 2019) were recalled because one of the two locking mechanisms in the rear seatbelt retractor may not work, caused by an incorrectly installed spring. In a crash the person in that seat may not be held properly. Toyota NZ recalled 181 cars and Toyota Australia 1,058 (REC-001309, campaign UGG59). The dealer repair is free and takes about 1.5 hours.
Symptoms to notice
What to check
Ask the seller
06E-Four Rear Electric Motor Drive Shaft Clunk (AWD Models)
Does not apply
Does not apply
The AXVH70 E-Four variant adds a rear-mounted electric motor driving the rear axle through short half-shafts with tripod-type constant-velocity joints. The rear CV joints are smaller and less robustly specified than those on equivalent AWD combustion vehicles; the joints develop axial play that produces a clunk when transitioning from acceleration to deceleration or during low-speed parking manoeuvres, particularly after 80,000 km. This is distinct from normal driveline lash and indicates CV joint wear that will worsen to shaft failure if ignored.
Symptoms to notice
What to check
Ask the seller
07Steering intermediate shaft clunk and slack (XV30)
Does not apply
Does not apply
The intermediate shaft that links the steering column to the rack develops play in its splined joint on 2002-2006 Camrys. The steering feels loose around centre and clunks or pops when you turn the wheel at low speed or reverse out of a park. Toyota issued a service bulletin (ST001-06, later revised as T-SB-0296-08) that first replaced and later re-greased the shaft, but most cars are decades past any goodwill coverage. It is annoying rather than dangerous in the short term, but the slack slowly worsens and masks the feel of the front end.
Symptoms to notice
What to check
Ask the seller
Fluid leaks
01A25A-FXS Water Pump Seal Failure & Coolant Loss
Does not apply
Does not apply
The mechanical water pump on the A25A-FXS is driven by the timing chain and relies on a shaft seal to contain coolant. Toyota's pink Super Long Life Coolant becomes acidic after approximately five years of use, degrading the pump's internal plastic impeller and seal material. This causes external coolant weeping from the pump body or electrical connector area, potentially accompanied by check engine codes P26CB71, P26CA14, or P26CA31. Toyota issued TSB T-TT-0614-20 and T-SB-0103-20 addressing this on 2020 model year A25A-engined vehicles. Ignored leaks escalate to coolant loss and engine overheating.
Symptoms to notice
What to check
Ask the seller
022GR-FKS V6 Oil Leak from Cam Sensor Bolt Holes (Camshaft Housing)
Does not apply
Does not apply
Early 3.5 V6 (2GR-FKS) engines can leak engine oil from the bolt holes of the camshaft position sensors, which are threaded into the camshaft housings on top of the engine. Toyota covered it with a service bulletin for the 2018 Camry and other 2GR-FKS models: the fix is a new camshaft housing and upgraded sensor bolts, not just a new seal. Oil runs down the cylinder head and can drip onto the exhaust, causing a burning smell and a mess that hides other leaks. It is not a sudden failure, but it is a labour heavy repair once out of warranty.
Symptoms to notice
What to check
Ask the seller
Toyota Camry faults in detail
What these repairs cost on other cars
Some of the Toyota Camry’s documented faults are repairs other models share. Each page lists the documented NZ cost for every model it affects.
Buying guides that cover the Toyota Camry
Other Toyota models
Toyota Camry buyer questions
Is the Toyota Camry reliable?
Like any used car, it depends on the specific example and its service history. Across the 54 documented faults for the Toyota Camry, the recurring problem areas are electrical, transmission, and engine. A Toyota Camry with a full service history and no signs of the issues listed on this page can be a sound buy but each one needs to be checked individually before you commit.
What are the most common problems with a used Toyota Camry?
We've catalogued 54 known faults for the Toyota Camry, covering electrical, transmission, and engine. All 54 are written out in full on this page, with the symptoms to notice, what to inspect, and typical repair costs for each. Free to read, no account needed.
How much do repairs cost on a Toyota Camry?
Most single repairs on the Toyota Camry fall between $650–$2,200 at NZ independent-workshop rates. Some of the 54 documented faults cost less and a few cost considerably more, and no one car needs them all. Knowing which ones to look for before you view is what lets you negotiate the price down or walk away.
Should I get a pre-purchase inspection on a Toyota Camry?
Yes. A Toyota Camry inspection focused on its known weak points is the single best way to avoid an expensive mistake. KickTyres gives you a guided, model-specific inspection plus a market valuation and negotiation figure for $24.90 far less than the cost of missing one of the faults on this page.