MOT Status
ExpiredMileage
52,437 miBelow or average mileage for this year
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Vehicle Details
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50+ data pointsMOT History
Nail in nearside rear tyre
Nearside Outer Front constant velocity joint gaiter deteriorated (2.5.C.1a)
Nearside Rear Radius arm has slight play in a pin bearing (2.4.G.2)
Nearside Rear Tyre worn close to the legal limit (4.1.E.1)
Offside Outer Front constant velocity joint gaiter deteriorated (2.5.C.1a)
Offside Rear Radius arm has slight play in a pin bearing (2.4.G.2)
Nearside Headlamp aim too high (1.8)
Offside Headlamp aim too low and too far to the right. (1.8)
Offside Inner Rear Subframe mounting prescribed area is excessively corroded (2.4.A.3)
Offside Outer Rear Subframe mounting prescribed area is excessively corroded (2.4.A.3)
Offside Rear fog lamp not working (1.3.2b)
Nail in nearside rear tyre
Nearside Outer Front constant velocity joint gaiter deteriorated (2.5.C.1a)
Nearside Rear Radius arm has slight play in a pin bearing (2.4.G.2)
Nearside Rear Tyre worn close to the legal limit (4.1.E.1)
Offside Outer Front constant velocity joint gaiter deteriorated (2.5.C.1a)
Offside Rear Radius arm has slight play in a pin bearing (2.4.G.2)
Rear Parking brake: parking brake efficiency only just met. It would appear that the braking system requires adjustment or repair. (3.7.B.7)
Rear Service brake: service brake efficiency only just met. It would appear that the braking system requires adjustment or repair. (3.7.B.7)
Nearside Rear Radius arm has slight play in a pin bearing (2.4.G.2)
Nearside Rear Tyre worn close to the legal limit (4.1.E.1)
Offside Front Tyre worn close to the legal limit (4.1.E.1)
Slight play in offside of steering rack.
Centre Exhaust has a major leak of exhaust gases (7.1.2)
Exhaust emissions Lambda reading after 2nd fast idle outside specified limits (7.3.D.3)
Exhaust emissions carbon monoxide content after 2nd fast idle excessive (7.3.D.3)
Exhaust emissions carbon monoxide content at idle excessive (7.3.D.4)
Exhaust emissions hydrocarbon content after 2nd fast idle excessive (7.3.D.3)
Nearside Front Headlamp not in good working order adversely affecting beam image (1.2.4a)
Nearside Rear Trailing arm has excessive play in a pin/bush (2.4.G.2)
Nearside Rear Tyre has a tear, caused by separation or partial failure of its structure (4.1.D.1b)
Nearside Seat belt anchorage prescribed area is excessively corroded (5.2.6)
Offside Rear Suspension component mounting prescribed area is excessively corroded (2.4.A.3)
Rear Exhaust has part of the system excessively deteriorated (7.1.1a)
Front Brakes imbalanced requirements only just met. It would appear that the braking system requires adjustment or repair. (3.7.B.5b)
Nearside Front Steering system has slight free play detected at steering wheel (2.2.A.1b)
Offside Front Tyre worn close to the legal limit (4.1.E.1)
Offside Rear Tyre worn close to the legal limit (4.1.E.1)
Rear Service brake: service brake efficiency only just met. It would appear that the braking system requires adjustment or repair. (3.7.B.7)
Nearside Front Tyre tread depth below requirements of 1.6mm (4.1.E.1)
Nearside Rear Radius arm has slight play in a pin bearing (2.4.G.2)
rear brake efforts low
How Reliable is the Rover 100?
Based on 154,303 MOT tests across 30,042 vehicles.
Top MOT Failure Points
Don't risk it. Know before you buy.
Not all vehicle check providers are the same. Some don't offer a data guarantee, which means if their information is wrong, you're on your own. Every CarVerify report is backed by a £30,000 finance data guarantee.
N181 YOG is a 1996 Rover 100 in Blue with a 1,120cc petrol engine. This vehicle has been through 7 MOT tests with a personal pass rate of 57.1%.
Across all 1996 Rover 100 models, the average MOT pass rate is 63.3% with a typical mileage of 50,758 miles. This particular vehicle has a lower pass rate than the average for its year, which may indicate maintenance issues worth investigating.
The most common reason a Rover 100 fails its MOT is seat belt anchorage prescribed area is excessively corroded, accounting for 13,250 recorded failures. If you're considering buying N181 YOG, it's worth having these areas checked by a mechanic before committing.
The Rover 100 typically stays on UK roads for around 31 years. At 30 years old, this Rover 100 is approaching the upper end of the typical lifespan for this model.
Frequently Asked Questions
How do I check the history of N181 YOG?
You can check the full history of N181 YOG by running a full vehicle check. This shows you finance, stolen, write-off, MOT history, mileage records and more.
What year was N181 YOG registered?
N181 YOG is a 1996 Rover 100, first registered on 31 January 1996.
Is N181 YOG safe to buy?
The MOT history for N181 YOG shows 7 tests with a 57.1% pass rate. To check for outstanding finance, stolen markers, write-off history and mileage discrepancies, run a full vehicle check.
Does N181 YOG have outstanding finance?
Finance checks require a premium vehicle report. This checks against all major UK finance providers to see if there is any outstanding finance on N181 YOG. If you buy a car with outstanding finance, the finance company can repossess it.
No warranty or guarantee of accuracy is provided for any free data on this page. The data guarantee applies only to information obtained through the purchase of a full check.