NVOVQHXT
Brand: Tescan
Category: Microscope - Scanning Electron
Industry: Life Science and Biotechnology, Pharma, Bio-pharma & Vaccine, Material Science & Chemistry, Food, Agricultural & Environmental, Paint, Pigments & Polymers, Forensic Science
The TESCAN CRYOSEM offers ultra-high-resolution imaging of biological and other beam-sensitive materials under cryo-preserved conditions, ensuring structural integrity and minimal sample damage.
Equipped with Wide Field Optics™ for effortless navigation, dedicated E-T detection for nanostructure imaging, and low-kV performance for high-contrast observation of non-conductive specimens, the CRYOSEM represents the perfect balance between imaging power, precision, and accessibility — all within an attractive price-to-performance envelope.
The TESCAN CRYOSEM is a versatile ultra high-resolution scanning electron microscope specifically engineered for imaging biological, hydrated, and beam-sensitive materials in their natural or near-native state.
Operating under cryogenic conditions, it prevents thermal and beam-induced damage, making it ideal for high-resolution studies of cells, tissues, polymers, and soft nanostructures.
The system’s low-kV imaging capability ensures excellent surface contrast even in non-conductive samples, eliminating the need for heavy metal coating or excessive preparation steps.
Its Wide Field Optics™ design provides an extended field-of-view and seamless navigation, while the dedicated Everhart–Thornley (E-T) detector enables detailed imaging of both nanostructures and bulk specimens.
The Essence™ modular software platform ensures an intuitive user experience, allowing operators of all skill levels to achieve consistent, high-quality results in cryo-SEM workflows.
Ultra High-Resolution Cryo Imaging — Enables detailed visualization of biological and beam-sensitive specimens under frozen-hydrated conditions.
Low-kV Imaging Performance — Achieve superior contrast and resolution for non-conductive and delicate materials.
Dedicated E-T Detector — Provides optimal imaging of both nanostructures and bulk biological specimens.
Wide Field Optics™ — Delivers a large field-of-view and intuitive navigation across samples.
Cryogenic Operation — Preserves native morphology and prevents sublimation or deformation.
Essence™ Software Platform — Streamlined, modular control system for effortless setup, imaging, and analysis.
Cost-Effective UHR Solution — Excellent price/performance and low cost of ownership for research institutions.
See Life as It Truly Is — Frozen in Perfection.
The TESCAN CRYOSEM enables researchers to explore biological and beam-sensitive specimens in their most natural, undisturbed form.
With cryo-preserved imaging, Wide Field Optics™, and dedicated E-T detection, it captures exquisite nanoscale detail while maintaining sample integrity.
Combining ultra-high-resolution performance, low-kV contrast imaging, and intuitive operation, CRYOSEM delivers unmatched clarity and efficiency — all with an exceptional cost-to-performance advantage.
| Parameter | Specification |
|---|---|
| Technology Platform | Ultra High-Resolution Cryo-SEM |
| Resolution (Achievable) | Sub-nanometer (subject to cryo conditions and sample preparation) |
| Operating Temperature | Cryogenic range for frozen-hydrated sample observation |
| Beam Energy Range | Low kV operation for beam-sensitive samples |
| Detector System | Dedicated Everhart–Thornley (E-T) detector for SE imaging |
| Optical System | Wide Field Optics™ for extended navigation and FOV |
| Software Interface | Essence™ modular platform |
| Sample Compatibility | Beam-sensitive, biological, hydrated, and non-conductive materials |
| Applications | Cryo-biological imaging, nanostructure analysis, polymers, soft matter research |
Biological Imaging under Cryo Conditions
Visualize cells, tissues, and microorganisms while preserving native hydration and morphology.
Soft and Beam-Sensitive Materials
Study polymers, gels, and composites without beam-induced deformation.
Nanostructure Visualization
High-resolution imaging of biomolecules and nanoscale assemblies under stable cryogenic conditions.
Cryo-Metrology and Structural Biology
Quantitative analysis of biological interfaces and nanoscale architectures.
Academic & Clinical Research
Ideal for life science laboratories, bioengineering facilities, and multidisciplinary research centers.
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