Mica 20x LWD Objective with Service Installation
20x long working distance objective for imaging on glass and plastic bottom carriers
To penetrate deeper into samples using everyday standard plastic-bottom multi well plates, this Long Working Distance (LWD) objective has been optimized for use with Mica.
• No need to sacrifice image quality
• No need for costly glass-bottom alternatives
• Avoid the frustration of switching carriers and re-optimizing your sample preparation protocols
Why is long working distance important?
• Focus deeper, capturing clearer images even with thicker or non-adherent samples such as organoids, spheroids and zebrafish larvae
• Get increased compatibility with high-skirt well plates
• Improve access to outer wells of multi well plates
Please note: This objective requires service installation to ensure correct installation and calibration. A half-day service visit by our expert team is added to ensure optimal performance and system compatibility.
Componenti
Mica 20x LWD Objective with Service Installation comprende: |
Quantità |
|
|---|---|---|
Microscope Objective HC PL FLUOTAR L 20x/0.60 motCORR11506438 |
1 | |
Service Upgrade Installation9I_HDAY_INST_UPGR |
1 | |
Technical specifications:
- Working Distance (WD): 1.95 mm (above 1.15 mm polystyrene bottom) – 2.45 mm (above 0.17 μm glass coverslip)
- Optimized for both glass (0.0 - 0.3 mm) and plastic-bottom (0.6 - 1.3 mm) carriers Recommended for both fixed and live cell samples
- Immersion medium = Air
The HC PL FLUOTAR L 20x/0.60 motCORR is compatible with SmartCORR, which automatically optimize your objective’s correction collar settings to match your experiment, significantly improving image quality by reducing sample dependent spherical aberrations.
Mica Il primo microhub di imaging al mondo.
Molto più di un microscopio altamente automatizzato, Mica unisce l'imaging widefield e confocale in un ambiente di incubazione e protezione dei campioni. Con la semplice pressione di un pulsante, hai tutto ciò di cui hai bisogno, tutto in un unico posto, per potenziare i flussi di lavoro di imaging a fluorescenza e ottenere risultati scientifici significativi più rapidamente.