Waferpedia

Nikon

Eclipse LV 100 POL Polarizing Light

Metrology & InspectionNikon Eclipse family
Research Quality: 40% complete
Eclipse LV 100 POL Polarizing Light — Inventory photo
Fig. 01Eclipse LV 100 POL Polarizing LightInventory photo[1]

Gas delivery

Mineralogy and high polymer chemistry[3]

Optics

Nikon DS-Fi1 digital camera[1]

What it is

The Nikon Eclipse LV 100 POL is a polarizing light microscope designed for transmitted (diascopic) and reflected (episcopic) polarized light microscopy. The microscope is intended primarily for the observation and photomicrography of stones, rocks, minerals, and high-polymer materials. The Eclipse LV 100 POL belongs to Nikon's Eclipse family of upright microscopes and is classified as a metrology and inspection instrument.[5][3][4]

What do the numbers mean?

Gas & chemistry1

Optical property analysis fields
Mineralogy and high polymer chemistry[3]
Accurate?

Optics & imaging8

Nikon DS-Fi1 digital camera[1]
Accurate?
Nikon Intensilight C-HGFI fiber optic illuminator[1]
Accurate?
Nikon DS-U3 camera controller[1]
Accurate?
Camera
Nikon DS-Fi1 digital camera[1]
Accurate?
Illuminator
Nikon Intensilight C-HGFI fiber optic illuminator[1]
Accurate?
Camera controller
Nikon DS-U3 camera controller[1]
Accurate?
Illumination types
Diascopic and episcopic illumination[4]
Accurate?
Intermediate tube
Built-in focusable Bertrand lens; switchable Conoscopic/Orthoscopic observations; analyzer built-in; plate/compensator slot[4]
Accurate?

Dimensions & facilities1

Weight
Approx. 17kg (37.4 lbs) (standard trinocular set)[4]
Accurate?

Configuration & options17

with:[1]
Accurate?
Nikon Super Coolscan 5000 ED slide scanner[1]
Accurate?
Manufacturer
Nikon[1]
Accurate?
Model
Eclipse LV 100 POL[1]
Accurate?
Category
Metrology & Inspection[2]
Accurate?
Instrument type
Polarizing Light Microscope[1]
Accurate?
Intended use
Microscopy and photomicrography of stones, rocks, minerals, and high-polymer materials[3]
Accurate?
Slide scanner
Nikon Super Coolscan 5000 ED slide scanner[1]
Accurate?
Light source
50W halogen light source[4]
Accurate?
Focusing stroke
30mm[4]
Accurate?
Eyepiece
10x (F.O.V. 22mm), CM type with crosshair and micrometer scale[4]
Accurate?
Eyepiece tube
P-TT Trinocular Tube for polarizing microscopy; P-TB Binocular Tube for polarizing microscopy[4]
Accurate?
Analyzer
360° rotary dial; minimum reading angle 0.1°[4]
Accurate?
Nosepiece
Reversed centering quintuple nosepiece (detachable); DIN slot[4]
Accurate?
Stage
Top-grade dedicated circular graduated stage; rotatable 360° horizontally; click stops each 45°[4]
Accurate?
Condenser
Dedicated strain-free swing-out type; P Achromat N.A. 0.9[4]
Accurate?
Polarizer
Fixed to the bottom of the condenser holder[4]
Accurate?
Interested in this tool?
Need help with this tool?Embed spec card

What does it need to run?

Site utility requirements, footprint, and infrastructure needed to install and operate this tool. Sourced from public records.

  • Optical property analysis fieldsMineralogy and high polymer chemistry[3]

Where are the manuals?

Generated from public-source data on file. Enter your email to access — nothing is published; details are routed privately.

Not publicly documented

Field notes

No research found yet — worked with this tool? Share what you know.

Worked with this tool? Help preserve its knowledge →

Frequently asked questions

What illumination system does the Eclipse LV 100 POL use?

The Eclipse LV 100 POL uses a 12V-50W halogen lamp with a fly-eye lens design. A built-in DC transformer is standard, and a 12V-100W type is optional with an external power supply. NCB11 and ND8 filters are built-in.[4]

What is the focusing stroke and resolution of the fine adjustment?

The focusing stroke is 30 mm. Coarse adjustment is 14 mm per rotation, fine adjustment is 0.1 mm per rotation, and the minimum reading is 1 µm increments.[4]

What objective series are available for the Eclipse LV 100 POL?

The microscope uses CFI P Achromat objectives at 4x, 10x, 20x, 40x, and 100x, and CFI LU Plan Fluor EPI P objectives at 5x, 10x, 20x, 50x, and 100x. The latter are made with eco-glass free of lead and arsenic.[4]

Does the Eclipse LV 100 POL support both transmitted and reflected light polarized microscopy?

Yes. Diascopic (transmitted) and episcopic (reflected) polarized light observations are possible. The LV-UEPI universal epi-illuminator is required for episcopic illumination, and a changeover switch on the microscope body selects between the two modes.[3][4]

Not publicly documented

The following facts about the Eclipse LV 100 POL Polarizing Light are absent from this record as of this revision. First-hand knowledge or a citation closes a gap; every submission is reviewed before publication.

  • No publicly documented production dates or lifecycle milestones (introduction, end of production, EOL) for the Eclipse LV 100 POL Polarizing Light are on record.

    Answerable by: OEM historical records or a trade-press announcement

  • No publicly documented variants, configuration options, or revision breakpoints of the Eclipse LV 100 POL Polarizing Light are on record.

    Answerable by: an OEM product catalog or an engineer who ordered or specified the tool

  • The control-system platform and OS era of the Eclipse LV 100 POL Polarizing Light are not on record.

    Answerable by: an engineer who operated it or OEM installation records

  • No publicly documented failure modes or field errata for the Eclipse LV 100 POL Polarizing Light are on record.

    Answerable by: a field service engineer, process engineer, or maintenance technician

  • The process node or technology generation of the Eclipse LV 100 POL Polarizing Light is not on record.

    Answerable by: an OEM datasheet or a fab qualification report

No research found yet — worked with this tool? Share what you know.

Sources & citations

Sources (5)Every fact above is drawn from these public sources
  1. [1]Inventory photo
  2. [2]waferpedia.comwaferpedia.com
  3. [3]mvi-inc.com — mvi-inc.commvi-inc.com
  4. [4]exceltechnologies.com — exceltechnologies.comexceltechnologies.com
  5. [5]https://doi.org/10.46939/j.sci.arts-26.1-b05 — doi.orgdoi.org
Was this page accurate?

Last updated Oct 7, 2026.

Compare with similar tools

View all →