UK MOT · make×model

HYUNDAI I30
MOT pass rate.

Aggregated DVSA MOT tests for this nameplate in 2023–24. Average mileage is the mean recorded odometer on those tests, in miles. Top defects are the most frequent failure item groups in the derived summary — not a ranked reliability verdict.

Counts, not a score

101,200 passes · 30,181 fails

Snapshot generated 2026-08-24 from the compact derived MOT model summary. Duplicate MOT labels that share a URL slug were canonicalised to the higher-volume row. No per-test or per-VIN records are published.

What is the HYUNDAI I30 MOT pass rate?

In the 2023–24 DVSA MOT file this nameplate passed 77.0% of 132,210 tests (101,200 passes, 30,181 fails). That is a test-outcome rate, not a prediction for any one car.

Is a high MOT pass rate the same as reliability?

No. MOT tests a defined set of roadworthiness items at a point in time. They do not measure durability, crashworthiness, or US complaint volume. Sparse models (under 500 tests) are not published.

Are these UK or US figures?

UK. The rest of ModelYearFacts is US NHTSA and EPA evidence. This hub is Great Britain MOT statistics on the same nameplate, published under the Open Government Licence.

Most common MOT failure groups

01 · Failure groupBrakes25,926 recorded items
02 · Failure groupLamps, reflectors and electrical equipment19,232 recorded items
03 · Failure groupSuspension15,626 recorded items
04 · Failure groupTyres11,105 recorded items
05 · Failure groupSteering7,676 recorded items

Pass rate by vehicle age

Age is years at test. Bands with fewer than 50 tests on this nameplate are omitted. These are extra fields on this hub, not separate URLs.

Age (years)TestsPass rateAverage mileage
325288.9%27,977 mi
41,55289.0%35,321 mi
54,57290.2%37,449 mi
68,34088.1%48,905 mi
77,91885.4%57,844 mi
811,66881.1%67,449 mi
916,95679.7%75,054 mi
1012,93475.0%82,857 mi
1114,20372.3%89,794 mi
1211,91771.5%96,201 mi
1311,94872.4%92,046 mi
1413,91570.7%95,480 mi
1511,53171.8%94,082 mi
163,36569.2%108,175 mi
171,13670.5%106,334 mi