MOT Status
ValidMileage
140,344 miAbove average mileage for this year
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Vehicle Details
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50+ data pointsMOT History
Nearside Front Integral body structure is corroded but structural rigidity is not significantly reduced inner wing (6.1.1 (c) (i))
Nearside Rear Integral body structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Offside Front Integral body structure is corroded but structural rigidity is not significantly reduced inner wing (6.1.1 (c) (i))
Offside Rear Integral body structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Nearside Front Integral body structure is corroded but structural rigidity is not significantly reduced inner wing (6.1.1 (c) (i))
Nearside Rear Integral body structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Offside Front Integral body structure is corroded but structural rigidity is not significantly reduced inner wing (6.1.1 (c) (i))
Offside Rear Direction indicator not working (4.4.1 (a) (ii))
Offside Rear Integral body structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Offside Rear Rear fog lamp not working (4.5.1 (a) (ii))
Nearside Front Brake hose ferrule excessively corroded (1.1.12 (f) (i))
Offside Front Brake hose ferrule excessively corroded (1.1.12 (f) (i))
Offside Rear fog lamp not working (4.5.1 (a) (ii))
Registration plate lamp inoperative in the case of a single lamp or all lamps (4.7.1 (b) (ii))
Service brake efficiency below requirements (1.2.2 (a) (i))
Nearside Front Brake pipe leaking on a hydraulic braking system (1.1.11 (b) (ii)) DANGEROUS
Parking brake efficiency less than 50% of the required value (1.4.2 (a) (ii)) DANGEROUS
Nearside Headlamp light intensity severely reduced (4.1.4 (a))
Power steering component leaking steering damper (2.1.5 (a))
Stop lamp(s) all not working (4.3.1 (a) (iii)) DANGEROUS
Nearside Front Integral body structure is corroded but structural rigidity is not significantly reduced wheel arch (6.1.1 (c) (i))
Offside Front Integral body structure is corroded but structural rigidity is not significantly reduced wheel arch (6.1.1 (c) (i))
Nearside Front Anti-roll bar pin or bush excessively worn (5.3.4 (a) (i))
Nearside Front Drag link end ball joint has excessive play (2.1.3 (b) (i))
Nearside Front Headlamp not working on dipped beam (4.1.1 (a) (ii))
Nearside Front Headlamp not working on main beam (4.1.1 (a) (ii))
Offside Front Anti-roll bar pin or bush excessively worn (5.3.4 (a) (i))
Service brake efficiency below requirements (1.2.2 (a) (i))
Offside Front Brake pipe at imminent risk of failure or fracture (1.1.11 (a)) DANGEROUS
Parking brake efficiency less than 50% of the required value (1.4.2 (a) (ii)) DANGEROUS
Nearside Front Integral body structure is corroded but structural rigidity is not significantly reduced wheel arch (6.1.1 (c) (i))
Offside Front Integral body structure is corroded but structural rigidity is not significantly reduced wheel arch (6.1.1 (c) (i))
Nearside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Track rod end ball joint has slight play (2.1.3 (b) (i))
Offside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Track rod end ball joint has slight play (2.1.3 (b) (i))
Nearside Rear Integral body structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Rear Integral body structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Rear Anti-roll bar pin or bush excessively worn (5.3.4 (a) (i))
Nearside Stop lamp(s) not working (4.3.1 (a) (ii))
Nearside Windscreen wiper does not clear the windscreen effectively (3.4 (b) (ii))
Offside Rear Anti-roll bar linkage ball joint excessively worn (5.3.4 (a) (i))
Offside Windscreen wiper does not clear the windscreen effectively (3.4 (b) (ii))
Nearside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Front Position lamp not working (4.2.1 (a) (ii))
Offside Front Position lamp not working (4.2.1 (a) (ii))
Nearside Front Front constant velocity joint gaiter damaged to the extent that it no longer prevents the ingress of dirt etc (2.5.C.1a)
Horn not loud enough to be heard by another road user (1.6.2b)
Nearside Outer Front constant velocity joint gaiter deteriorated to the extent that it no longer prevents the ingress of dirt etc (2.5.C.1a)
Offside Side repeater not working (1.4.A.2c)
Offside Stop lamp not working (1.2.1b)
oil leak
surface corrosion on underside.
Front coil spring corroded (2.4.C.1b)
Spots of corrosion beneath the vehicle.
Offside Front Brake pipe slightly corroded (3.6.B.2c)
Offside Rear Vehicle structure has slight corrosion (6.1.B.2)
Offside Rear Tyre worn close to the legal limit (4.1.E.1)
Nearside Drag link end ball joint has excessive play (2.2.B.1f)
Nearside Front Tyre tread depth below requirements of 1.6mm (4.1.E.1)
Nearside Track rod end ball joint has excessive play (2.2.B.1f)
How Reliable is the Land Rover Discovery?
Based on 4,388,972 MOT tests across 325,470 vehicles.
Top MOT Failure Points
Don't risk it. Know before you buy.
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W128 JRE is a 2000 Land Rover Discovery in Silver with a 2,495cc diesel engine. This vehicle has been through 30 MOT tests with a personal pass rate of 70%.
Across all 2000 Land Rover Discovery models, the average MOT pass rate is 69.8% with a typical mileage of 115,883 miles. This particular vehicle has performed better than the average for its year.
The most common reason a Land Rover Discovery fails its MOT is brake pipe excessively corroded, accounting for 153,632 recorded failures. If you're considering buying W128 JRE, it's worth having these areas checked by a mechanic before committing.
The Land Rover Discovery typically stays on UK roads for around 36 years. At 26 years old, this Land Rover Discovery is well into its expected lifespan but still has years ahead.
Frequently Asked Questions
How do I check the history of W128 JRE?
You can check the full history of W128 JRE by running a full vehicle check. This shows you finance, stolen, write-off, MOT history, mileage records and more.
What year was W128 JRE registered?
W128 JRE is a 2000 Land Rover Discovery, first registered on 10 March 2000.
Is W128 JRE safe to buy?
The MOT history for W128 JRE shows 30 tests with a 70% pass rate. To check for outstanding finance, stolen markers, write-off history and mileage discrepancies, run a full vehicle check.
Does W128 JRE 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 W128 JRE. 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.