MOT Status
ExpiredMileage
150,436 miSignificantly above average — investigate
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Vehicle Details
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50+ data pointsMOT History
Exhaust Lambda reading after 2nd fast idle outside specified limits (8.2.1.2 (c))
Exhaust carbon monoxide content after 2nd fast idle exceeds default limits (8.2.1.2 (b))
Front Windscreen washer not working (3.5 (a))
Offside Rear Inner Vehicle structure corroded to the extent that the rigidity of the assembly is significantly reduced sill (6.1.1 (c) (i))
Nearside Front Lower Suspension arm pin or bush worn but not resulting in excessive movement (5.3.4 (a) (i))
Nearside Front Upper Macpherson strut mounting corroded but not seriously weakened top mount (5.3.3 (b) (i))
Nearside Front Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Inner Vehicle structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Nearside Outer Vehicle structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Nearside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Front Upper Macpherson strut mounting corroded but not seriously weakened top mount (5.3.3 (b) (i))
Offside Front Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Inner Vehicle structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Offside Outer Vehicle structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Offside Rear Service brake binding but not excessively (1.2.1 (f))
Offside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Inner Vehicle structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Nearside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Inner Vehicle structure is corroded but structural rigidity is not significantly reduced sill (6.1.1 (c) (i))
Offside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Rear Sub-frame corroded but not seriously weakened (5.3.3 (b) (i))
Nearside Rear Coil spring corroded (5.3.1 (b) (i))
Nearside Rear Tyre worn close to legal limit/worn on edge (5.2.3 (e))
Nearside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Rear Coil spring corroded (5.3.1 (b) (i))
Offside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Front Brake disc in such a condition that it is seriously weakened (1.1.14 (a) (ii)) DANGEROUS
Nearside Front Brake pad(s) less than 1.5 mm thick (1.1.13 (a) (ii)) DANGEROUS
Offside Front Brake disc in such a condition that it is seriously weakened (1.1.14 (a) (ii)) DANGEROUS
Offside Front Brake pad(s) less than 1.5 mm thick (1.1.13 (a) (ii)) DANGEROUS
Nearside Rear Coil spring corroded (5.3.1 (b) (i))
Nearside Rear Tyre worn close to legal limit/worn on edge (5.2.3 (e))
Nearside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Offside Rear Coil spring corroded (5.3.1 (b) (i))
Offside Rear Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Integral body structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Rear Tyre worn close to legal limit/worn on edge (5.2.3 (e))
Offside Front Anti-roll bar linkage ball joint dust cover no longer prevents the ingress of dirt (5.3.4 (b) (ii))
Offside Front Brake pipe excessively corroded (1.1.11 (c))
Offside Rear Brake pipe excessively corroded flex to cylinder (1.1.11 (c))
Integral body structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Nearside Rear Tyre worn close to legal limit/worn on edge (5.2.3 (e))
Integral body structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Rear Brake pipe corroded, covered in grease or other material (1.1.11 (c))
Front Brake disc worn, but not excessively both (1.1.14 (a) (i))
Nearside Front Suspension arm pin or bush worn but not resulting in excessive movement rear bush (5.3.4 (a) (i))
Offside Front Brake pipe corroded, covered in grease or other material (1.1.11 (c))
Offside Front Suspension arm pin or bush worn but not resulting in excessive movement rear bush (5.3.4 (a) (i))
Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
fuel filler neck corroded
Brake performance not tested brake pipe leaking (1.2.1 (g))
Nearside Rear Brake pipe leaking on a hydraulic braking system (1.1.11 (b) (ii)) DANGEROUS
Front Brake disc worn, but not excessively both (1.1.14 (a) (i))
Nearside Front Suspension arm pin or bush worn but not resulting in excessive movement rear bush (5.3.4 (a) (i))
Offside Front Brake pipe corroded, covered in grease or other material (1.1.11 (c))
Offside Front Suspension arm pin or bush worn but not resulting in excessive movement rear bush (5.3.4 (a) (i))
Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
fuel filler neck corroded
Offside Front Suspension arm pin or bush worn but not resulting in excessive movement rear bush (5.3.4 (a) (i))
Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Rear Brake pipe excessively corroded (1.1.11 (c))
Offside Rear Brake pipe leaking on a hydraulic braking system (1.1.11 (b) (ii)) DANGEROUS
Offside Front Suspension arm pin or bush worn but not resulting in excessive movement rear bush (5.3.4 (a) (i))
Vehicle structure is corroded but structural rigidity is not significantly reduced (6.1.1 (c) (i))
Play in steering rack inner joint(s) ()
Rear Shock absorber has slight corrosion to the casing both rear (2.7.2a)
Rear coil spring corroded both rear (2.4.C.1b)
Offside Front Windscreen wiper does not clear the windscreen effectively (8.2.2)
Offside Rear Stop lamp not working (1.2.1b)
Play in steering rack inner joint(s) ()
Rear Shock absorber has slight corrosion to the casing both rear (2.7.2a)
Rear coil spring corroded both rear (2.4.C.1b)
Offside Brake pipe slightly corroded front to rear (3.6.B.2c)
underbody chassis components showing signs of corrosion
wheel trims fitted obscuring some components
Under-trays fitted obscuring some underside components
wheel trims fitted obscuring some components
Offside Headlamp aim too far to the left (1.8)
Nearside Front brake disc worn, pitted or scored, but not seriously weakened (3.5.1i)
Offside Front brake disc worn, pitted or scored, but not seriously weakened (3.5.1i)
o/s front tyre side wall starting to perish
Nearside Front Headlamp aim too low (1.8)
Nearside Front brake disc worn, pitted or scored, but not seriously weakened (3.5.1i)
Offside Front Headlamp aim too low (1.8)
Offside Front brake disc worn, pitted or scored, but not seriously weakened (3.5.1i)
o/s front tyre side wall starting to perish
Nearside Rear Tyre worn close to the legal limit (4.1.E.1)
Offside Rear Tyre worn close to the legal limit (4.1.E.1)
o/s rear wheel bearing slightly worn
rear wiper split
Nearside Rear wheel bearing rough when rotated (2.6.1)
o/s rear wheel bearing slightly worn
rear wiper split
How Reliable is the Honda Jazz?
Based on 5,740,892 MOT tests across 402,952 vehicles.
Top MOT Failure Points
Don't risk it. Know before you buy.
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PY53 KKZ is a 2004 Honda Jazz in Green with a 1,339cc petrol engine. This vehicle has been through 27 MOT tests with a personal pass rate of 66.7%.
Across all 2004 Honda Jazz models, the average MOT pass rate is 76.3% with a typical mileage of 61,174 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 Honda Jazz fails its MOT is tyre tread depth below requirements of 1.6mm, accounting for 57,414 recorded failures. If you're considering buying PY53 KKZ, it's worth having these areas checked by a mechanic before committing.
The Honda Jazz typically stays on UK roads for around 24 years. At 22 years old, this Honda Jazz is approaching the upper end of the typical lifespan for this model.
Frequently Asked Questions
How do I check the history of PY53 KKZ?
You can check the full history of PY53 KKZ by running a full vehicle check. This shows you finance, stolen, write-off, MOT history, mileage records and more.
What year was PY53 KKZ registered?
PY53 KKZ is a 2004 Honda Jazz, first registered on 13 January 2004.
Is PY53 KKZ safe to buy?
The MOT history for PY53 KKZ shows 27 tests with a 66.7% pass rate. To check for outstanding finance, stolen markers, write-off history and mileage discrepancies, run a full vehicle check.
Does PY53 KKZ 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 PY53 KKZ. If you buy a car with outstanding finance, the finance company can repossess it.
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