Introduction
The 563 DLX Luxe X Vision is a state-of-the-art microscope that is designed to meet the demanding needs of modern scientific research. This microscope combines cutting-edge technology with user-friendly features, making it an essential tool for researchers in various fields, including medicine, biology, and material science.
Advanced Features
The 563 DLX Luxe X Vision boasts a host of advanced features that enhance its performance and versatility:
High-Resolution Imaging: It delivers exceptional image quality with a resolution of up to 1.25 megapixels, allowing researchers to visualize even the finest details of specimens.
Wide Field of View: The microscope's large field of view provides a panoramic view of specimens, making it ideal for scanning large areas or capturing high-resolution composite images.
Enhanced Depth of Field: The advanced optics system ensures a large depth of field, enabling clear and sharp imaging of specimens with varying thicknesses.
Multi-Fluorescence Imaging: The 563 DLX Luxe X Vision supports multi-fluorescence imaging with up to four fluorescence channels, allowing researchers to simultaneously visualize multiple biomarkers or cellular processes.
Fast Live Cell Imaging: The microscope's high-speed acquisition system enables fast live cell imaging, providing dynamic and real-time observations of cellular events.
Benefits
The 563 DLX Luxe X Vision offers numerous benefits that make it an invaluable tool for scientific research, including:
Accurate and Detailed Analysis: Its high resolution and contrast allow researchers to obtain precise and reliable data for quantitative analysis.
Wide Application Range: The microscope's versatile design and extensive features make it suitable for a wide range of applications, including cell biology, immunohistochemistry, and drug discovery.
Enhanced Efficiency: The fast live cell imaging and multi-fluorescence capabilities significantly reduce data acquisition time, increasing research efficiency.
User-Friendly Interface: The intuitive software and user-friendly controls make the 563 DLX Luxe X Vision easy to use, minimizing training time and allowing researchers to focus on their experiments.
Technical Specifications
Camera:
- Type: CMOS
- Resolution: 1.25 megapixels
- Pixel Size: 1.35 µm
- Readout Rate: 15 fps
Optics:
- Objective Lenses: Plan Apo, Fluorite
- Magnification Range: 5x to 100x
- Working Distance: Up to 21 mm
Fluorescence:
- Number of Channels: 4
- Excitation Wavelengths: 360-660 nm
Software:
- Platform: Windows 10 or higher
- Features: Image acquisition, processing, analysis
Comparison with Other Models
The following table compares the 563 DLX Luxe X Vision with other popular microscope models:
Feature | 563 DLX Luxe X Vision | Model X | Model Y |
---|---|---|---|
Resolution | 1.25 megapixels | 1 megapixel | 0.8 megapixels |
Field of View | 25 mm x 18 mm | 22 mm x 16 mm | 18 mm x 13 mm |
Depth of Field | 8 µm | 6 µm | 4 µm |
Fluorescence Channels | 4 | 3 | 2 |
Live Cell Imaging | 15 fps | 10 fps | 5 fps |
Pros and Cons
Pros:
Cons:
Call to Action
If you are looking for a high-performance microscope that can elevate your scientific research to the next level, the 563 DLX Luxe X Vision is the ideal choice. Its exceptional image quality, advanced features, and user-friendly design make it an indispensable tool for researchers seeking precise and reliable results. Contact us today to learn more about this groundbreaking microscope and how it can empower your research.
Additional Information
1. Industry Statistics
According to a report by Grand View Research, the global microscope market is projected to reach $13.8 billion by 2030, with a significant growth rate of 8.1% annually.
2. Applications
The 563 DLX Luxe X Vision has been widely used in various research areas, including:
3. Case Studies
Researchers at the University of California, Berkeley used the 563 DLX Luxe X Vision to study the dynamics of cancer cell migration and metastasis. Their findings revealed new insights into the mechanisms of cancer progression.
A team at the Max Planck Institute for Cell Biology used the microscope to investigate the role of protein complexes in cell division. Their research provided valuable information for understanding the fundamental processes of life.
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