Nikon 6 Place Nosepiece with Analyzer Slot
Regular price
$674.00
Nikon C-N6A — 6-position revolving nosepiece with integrated analyzer slot for Nikon Eclipse Ci series. Required for use with C-AS Analyzer for Gout. New condition.
KEY FEATURES
- 6-position revolving nosepiece — accommodates up to six infinity-corrected Nikon objectives for versatile magnification workflows
- Integrated analyzer slot — accepts Nikon C-AS Analyzer for Gout and compatible slider-type analyzer accessories
- Required nosepiece for clinical gout/pseudogout crystal identification with the Nikon C-AS Analyzer
- Slider-type analyzer inserts and retracts without raising microscope eye level — preserves ergonomics during extended clinical sessions
- Designed for Nikon Eclipse Ci-S and Ci-L upright microscopes
- New condition — full manufacturer quality assurance
Backed by Spach Optics Warranty
Secure Packaging & Reliable Delivery
People-Powered Support
Technical Specifications
| Model | Nikon C-N6A |
| Part Number | MBP71325 |
| Type | Sextuple (6-position) revolving nosepiece with integrated analyzer slot |
| Objective Positions | 6 |
| Analyzer Slot | Integrated — accepts Nikon C-AS and compatible slider-type analyzers |
| Compatible Analyzer | Nikon C-AS Analyzer for Gout (sold separately) |
| Microscope Compatibility | Nikon Eclipse Ci-S, Ci-L and compatible Eclipse upright models |
| Condition | New |
| Country of Origin | Japan |
Microscope Compatibility
| Nikon Eclipse Ci-S, Ci-L (Ci series) | |
| Compatible Eclipse upright microscope models with standard nosepiece mount | |
| Nikon C-AS Analyzer for Gout (sold separately — required for gout crystal analysis workflow) |
Typical Applications
Polarized light microscopy (POL) with slider-type nosepiece analyzer accessories
Clinical gout and pseudogout crystal identification using the Nikon C-AS Analyzer
Multi-magnification upright microscopy workflows requiring six objective positions
Rheumatology and clinical pathology laboratory configurations
Research microscopy requiring integrated analyzer access without intermediate tube modification
