
Product Details
| Model | LSM 780 |
| Brand | ZEISS |
| Category | Lab Imaging Systems |
| Posted | 02.12.2025 |
| Views | 197 |
Used ZEISS LSM 780
Condition:: Used
Warranty (month):: 1
Availability:: In stock
Shipping from::
USA
160 000
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Description
Zeiss LSM 780 Laser Scanning Confocal System w/ Zeiss Observer Z1 Inverted Phase Contrast Fluorescence Confocal (Used)
The Zeiss LSM 780 is a high-performance laser scanning confocal microscope system designed for advanced imaging applications, featuring a Zeiss Observer Z1 inverted microscope for exceptional fluorescence and phase contrast imaging. With superior sensitivity, resolution, and spectral flexibility, this system is ideal for multi-channel fluorescence imaging, live-cell imaging, and quantitative analysis.
Condition
Used / Refurbished
(This product has been inspected and verified to meet manufacturer specifications.)
Included Items
Zeiss Observer Z1 Inverted Microscope
Zeiss LSM 780 Confocal Scanning Unit
Motorized Stage (Manual & Motorized options available)
(3) Filter Cubes of your choice (Additional Cubes Available for purchase)
Objectives (Please discuss your application or preferred configuration with our team. We have a full suite of options available.)
Lasers:
Ar-Laser (458, 488, 514 nm) - 25 mW or 35 mW
DPSS-Laser (561 nm) - 20 mW
HeNe-Laser (633 nm) - 5 mW
1 mW (for additional excitation wavelengths, confirm with our team)
Computer Workstation (Included) with Zeiss Zen Black Software
Installation and Service Contracts (Optional; inquire for details)
Key Features
High Sensitivity GaAsP Detector for low-light fluorescence imaging
34-Spectral Channel Detector for complete spectral flexibility
Multi-Photon Imaging Compatibility for deep tissue imaging
Motorized XYZ Control & Autofocus for precise 3D image acquisition
Advanced Live Cell Imaging Support with environmental chamber options
Fast and High-Resolution Scanning for detailed cellular and molecular imaging
Compatible with Fluorescence Recovery After Photobleaching (FRAP) and Fluorescence Lifetime Imaging Microscopy (FLIM)
Applications
Live-cell fluorescence imaging
Multi-channel fluorescence imaging
Super-resolution microscopy
Neuroscience and cell biology studies
Time-lapse imaging
Photobleaching and photostimulation experiments
The Zeiss LSM 780 is a high-performance laser scanning confocal microscope system designed for advanced imaging applications, featuring a Zeiss Observer Z1 inverted microscope for exceptional fluorescence and phase contrast imaging. With superior sensitivity, resolution, and spectral flexibility, this system is ideal for multi-channel fluorescence imaging, live-cell imaging, and quantitative analysis.
Condition
Used / Refurbished
(This product has been inspected and verified to meet manufacturer specifications.)
Included Items
Zeiss Observer Z1 Inverted Microscope
Zeiss LSM 780 Confocal Scanning Unit
Motorized Stage (Manual & Motorized options available)
(3) Filter Cubes of your choice (Additional Cubes Available for purchase)
Objectives (Please discuss your application or preferred configuration with our team. We have a full suite of options available.)
Lasers:
Ar-Laser (458, 488, 514 nm) - 25 mW or 35 mW
DPSS-Laser (561 nm) - 20 mW
HeNe-Laser (633 nm) - 5 mW
1 mW (for additional excitation wavelengths, confirm with our team)
Computer Workstation (Included) with Zeiss Zen Black Software
Installation and Service Contracts (Optional; inquire for details)
Key Features
High Sensitivity GaAsP Detector for low-light fluorescence imaging
34-Spectral Channel Detector for complete spectral flexibility
Multi-Photon Imaging Compatibility for deep tissue imaging
Motorized XYZ Control & Autofocus for precise 3D image acquisition
Advanced Live Cell Imaging Support with environmental chamber options
Fast and High-Resolution Scanning for detailed cellular and molecular imaging
Compatible with Fluorescence Recovery After Photobleaching (FRAP) and Fluorescence Lifetime Imaging Microscopy (FLIM)
Applications
Live-cell fluorescence imaging
Multi-channel fluorescence imaging
Super-resolution microscopy
Neuroscience and cell biology studies
Time-lapse imaging
Photobleaching and photostimulation experiments
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