Vickers Microplan 10X 현미경Vickers
Microplan 10X
Vickers Microplan 10X 현미경
Vickers
Microplan 10X
상태
중고
위치
Duxford 

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기계 정보
가격 및 위치
- 위치:
- Duxford, UK
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제안 세부 정보
- 광고 ID:
- A20123760
- 참조 번호:
- 13161.SR11A
- 업데이트:
- 마지막 업데이트: 02.10.2025
설명
This listing is for the Vickers Microplan 10X Microscope
The unit is in full working condition and is ready for immediate use
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Description: Vickers Microplan 10× Microscope Objective
This is an objective lens—part of a microscope optical system—rather than an entire microscope unit. The specific lens in question is marked "Vickers England MICROPLAN 10/0.25 + PH.1", indicating a 10× magnification and a numerical aperture (NA) of 0.25. The “PH.1” denotes that it includes phase-contrast capabilities
Typical length around 37–39 mm, and weight in the range of 58–63 g
Usage and Value
These objectives, with their phase-contrast capability, were designed to be used with microscopes that support such optical techniques.
This objective would typically fit an RMS-threaded turret, common in Vickers, Cooke‑Baker, or similar stands
The phase ring (PH.1) allows enhanced imaging of transparent specimens, by shifting phase differences into contrast—ideal for biology or unstained sample observation.
The unit is in full working condition and is ready for immediate use
Kodjxhfdujpfx Aatodu
Description: Vickers Microplan 10× Microscope Objective
This is an objective lens—part of a microscope optical system—rather than an entire microscope unit. The specific lens in question is marked "Vickers England MICROPLAN 10/0.25 + PH.1", indicating a 10× magnification and a numerical aperture (NA) of 0.25. The “PH.1” denotes that it includes phase-contrast capabilities
Typical length around 37–39 mm, and weight in the range of 58–63 g
Usage and Value
These objectives, with their phase-contrast capability, were designed to be used with microscopes that support such optical techniques.
This objective would typically fit an RMS-threaded turret, common in Vickers, Cooke‑Baker, or similar stands
The phase ring (PH.1) allows enhanced imaging of transparent specimens, by shifting phase differences into contrast—ideal for biology or unstained sample observation.
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