Introduction
Inverted Fluorescence Microscope is an advanced Infinite Plan -fluorescent microscope, offers standard magnification range of 40X to 400X. Incorporated with blue and green reflected light source, this microscope delivers excellent fluorescent image with high resolution. Equipped with halogen lamp as illumination source with Blue/ Green and Ground Glass filter, ultra Hi-voltage Spherical Mercury Lamp with protection barrier.
This microscope is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Inverted fluorescence microscope is used for fluorescence imaging of cell lines, tissue culture materials, and biological samples, and to visually enhance 3-D features at small scales across biology, medicine, immunology, oncology, genetics, histopathology, materials science etc.
Specifications
| Viewing head | Trinocular Head Inclined at 30°, Interpupillary distance: 48 to 75 mm |
| Optical system | Infinite Optical System |
| Light distribution | Halogen Lamp 6 V/ 30 W |
| Eyepiece | High-point, Extra Wide Field Eyepiece EW10×/ 22 |
| Objective | Infinite Plan Objective 4×/0.1, WD 18mm; Infinite Plan Objective 40×/0.6, WD 2.6mm; Infinite Plan Phase Objective PH 10×/0.25, WD 10mm; Infinite Plan Phase Objective PH 20×/0.4, WD 5.1 mm |
| Stage | Plain stage 160×250 mm; Glass Insert; Auxiliary Stages70×180 mm |
| Nosepiece | Quintuple Nosepiece |
| Condenser | Condenser NA 0.3, 72 mm |
| Filter | Blue/ Green and Ground Glass (Φ45 mm) |
| Focusing | Coaxial Coarse and Fine Adjustment; Vertical Objective Movement; Coarse Stroke 37.7 mm per rotation; Fine Stroke 0.2 mm per rotation |
| Lamp | 100 W Ultra Hi-voltage Spherical Mercury Lamp |
| Protection barrier | Barrier to Resist the Ultraviolet Light |
| Immersion oil | Fluorescent Free Oil |
| Fluorescent Attachment Kits | Blue & Green reflected light source |
| Blue excitation | Excitation: BP460 to 490; Dichroic mirror: DM500; Barrier filter: BA520 |
| Green excitation | Excitation: BP480 to 550; Dichroic mirror: DM570; Barrier filter: BA590 |
| Power supply | 220 V/110 V, 50/60 Hz interchangeable, Digital display |
| Carton one packaging dimension (W×D×H) | 460×400×680 mm |
| Carton one weight | 15 kg |
| Carton two packaging dimension (W×D×H) | 445×370×250 mm |
| Carton two weight | 6 kg |
Features
Standard magnification range of 40X to 400X
Infinite optical system and -fluorescent illumination system
Excellent fluorescent image with high resolution fluorescent objectives
Equipped with Infinite Plan Objectives, and Infinite Plan Phase Objectives
Up-right photo port for photographic/video capability
Advanced lamp housing to prevent light leakage
Halogen lamp as illumination source with Blue/ Green and Ground Glass filter
C-mount video adapter
Ultra Hi-voltage Spherical Mercury Lamp with protection barrier
High-efficient, durable and stable inverted microscope
FAQs
1. What are the key factors to consider when selecting this microscope for laboratory use?
When selecting this microscope, key factors include: 1) The instrument's precision and accuracy to meet experimental requirements; 2) Compatibility with the types of samples and applications you will be working with; 3) Ease of use and maintenance requirements; 4) Safety features to protect operators and samples; 5) Calibration and certification requirements; 6) Cost-effectiveness and long-term reliability; 7) Technical support and service availability from the supplier. Evaluating these factors ensures that the instrument meets your laboratory's specific needs.
2. How often should this microscope be calibrated to ensure accurate results?
It is recommended to calibrate this microscope at least once every 6-12 months under normal usage conditions. More frequent calibration (every 3-6 months) may be necessary if: 1) The instrument is used continuously for extended periods; 2) It is exposed to harsh environmental conditions (temperature fluctuations, humidity, dust); 3) It is used for critical applications requiring high precision; 4) The instrument has been moved or subjected to physical shock; 5) Calibration checks indicate significant deviations from standard values. Always follow the manufacturer's calibration guidelines.
3. What are the common maintenance procedures required for this microscope?
Common maintenance procedures include: 1) Regular cleaning of the instrument's exterior and sample contact surfaces to prevent contamination and ensure proper operation; 2) Inspection of moving parts (if applicable) for wear and lubrication as recommended by the manufacturer; 3) Replacement of consumable parts (filters, bulbs, reagents) according to usage guidelines; 4) Verification of performance parameters (temperature, pressure, voltage) regularly; 5) Storage of the instrument in a clean, dry environment when not in use; 6) Keeping a maintenance log to track service activities and identify potential issues early; 7) Following the manufacturer's specific maintenance schedule for optimal performance and longevity.
4. Can this microscope be used with different types of samples, and are there any compatibility considerations?
Yes, this microscope can be used with a variety of sample types, but compatibility considerations are important: 1) Check if the instrument's materials are compatible with the chemical composition of your samples (avoid corrosive or reactive substances that may damage the instrument); 2) Ensure that the sample volume and concentration are within the instrument's recommended range; 3) For biological samples, consider sterility requirements and potential cross-contamination risks; 4) For volatile or hazardous samples, ensure proper ventilation and safety precautions are in place; 5) Consult the manufacturer's documentation for specific sample compatibility guidelines, and perform compatibility tests with new sample types before regular use.
5. What should be done if the microscope malfunctions or produces inconsistent results?
If malfunctions or inconsistent results occur: 1) First, check the instrument's user manual for troubleshooting guidelines specific to the issue; 2) Verify that the instrument is properly calibrated and within its calibration period; 3) Inspect for obvious issues such as loose connections, damaged parts, or incorrect settings; 4) Clean the instrument thoroughly to remove any contamination that may affect results; 5) Repeat the experiment with a known standard sample to determine if the issue is with the instrument or the sample; 6) If the problem persists, discontinue use of the instrument to prevent further damage or inaccurate results; 7) Contact technical support or a qualified service technician for diagnosis and repair, providing details of the issue and any troubleshooting steps already performed.
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