The Fluorescence Upright Research Microscope ABTZ – 8000 FL MAX is a top-tier research microscope designed for advanced biomedical, molecular biology, microbiology, and clinical applications. Featuring infinity-corrected Plan Achromatic objectives and a maximum-performance fluorescence system, the FL MAX delivers unmatched sensitivity, clarity, and resolution for fluorescence and brightfield imaging.
This model is equipped with a trinocular head, allowing both direct visual observation and high-resolution digital imaging, making it ideal for research documentation, teaching, and advanced photomicrography. The MAX edition includes an enhanced fluorescence illumination system with multiple filter cubes, enabling precise visualization of various fluorophores in multi-channel experiments.
🔑 Key Features
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Microscope Type: Upright fluorescence research microscope (FL MAX edition)
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Observation Head: Trinocular Seidentopf head, 30° inclined, 360° rotatable, with trinocular port for digital camera integration
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Eyepieces: Extra wide-field 10x (paired), F.O.V. 22 mm, high eye-point, anti-fungal coated
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Objectives: Infinity-corrected Plan Achromatic objectives – 4x, 10x, 40x (SL), 100x oil immersion (SL)
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Stage: Large double-layer mechanical stage, X–Y travel ~76 × 50 mm, low-position co-axial controls
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Focusing System: Co-axial coarse and fine focusing, pre-focusing lever, tension adjustment, fine division ~0.002 mm
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Condenser: Abbe condenser N.A. 1.25 with iris diaphragm & phase contrast compatibility
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Illumination:
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Brightfield: Köhler LED illumination with brightness control
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Fluorescence: Advanced high-intensity LED/Hg lamp fluorescence system with multiple filter cubes (Blue, Green, UV, optional Red)
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Special Features (FL MAX Edition):
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Multi-channel fluorescence imaging with enhanced sensitivity
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Superior infinity optics for crisp & detailed images
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Trinocular head for simultaneous observation & photomicrography
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Applications: Immunofluorescence, microbiology, cell biology, cytogenetics, cancer research, molecular diagnostics, pathology