Cleared Traditional

K862004 - ZEISS 30 SL-L (FDA 510(k) Clearance)

Class II Ophthalmic device cleared through predicate-based substantial equivalence - typically does not require clinical trials.

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Jun 1986
Decision
21d
Days
Class 2
Risk

K862004 is an FDA 510(k) clearance for the ZEISS 30 SL-L. Classified as Biomicroscope, Slit-lamp, Ac-powered (product code HJO), Class II - Special Controls.

Submitted by Carl Zeiss, Inc. (Thornwood, US). The FDA issued a Cleared decision on June 17, 1986 after a review of 21 days - a notably fast clearance cycle.

This device falls under the Ophthalmic FDA review panel, regulated under 21 CFR 886.1850 - the FDA ophthalmic device framework. The Traditional 510(k) pathway establishes clearance through substantial equivalence to a legally marketed predicate device, without requiring clinical trial data.

Device pattern: Fast-track predicate clearance. Standard predicate reliance. The short review cycle indicates strong predicate alignment - the FDA found sufficient equivalence without extended technical review.

View all Carl Zeiss, Inc. devices

Submission Details

510(k) Number K862004 FDA.gov
FDA Decision Cleared Substantially Equivalent - Traditional 510(k) (SESE)
Date Received May 27, 1986
Decision Date June 17, 1986
Days to Decision 21 days
Submission Type Traditional
Review Panel Ophthalmic (OP)
Summary -
Third-party Review No - reviewed directly by FDA
Regulatory Context
Review time vs. panel average
89d faster than avg
Panel avg: 110d · This submission: 21d
Pathway characteristics
Predicate-based equivalence. No clinical trials required.

Device Classification

Product Code HJO Biomicroscope, Slit-lamp, Ac-powered
Device Class Class 2 - Special Controls
CFR Regulation 21 CFR 886.1850
What this classification means

Class II devices require demonstration of substantial equivalence to a legally marketed predicate device. This pathway does not require clinical trials - it relies on engineering equivalence and performance data. Most Ophthalmic devices follow this clearance model.