Introduction

Real-Time is fully innovative in its unique modular and adjustable design for monitoring the amplification of individual molecules throughout the process. Configured with quantitative amplification, detection, and data analysis for accurate results. Supplied with a 96-well plate is appropriate for 0.2 mL tubes. Designed with an function detects all fluorescence channels of 5 samples in 96 sec.

This analytical equipment is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.

Applications

It is widely used in research facilities, laboratories, educational environments pharmaceuticals, hospitals, and medical fields for sequencing, cloning, generation of probes, and quantification of and .

Specifications

Sample Capacity 96-well Plate,12×8 tube strip,96×0.2 mL single tube
Volume 15 to 100 µL
Consumable to be Used with Product 0.2ml tube, 0.2ml 8-tube strips, 0.2ml 96 well plate
Temperature 0 °C to 100 °C
Ramp Rate 7.0 °C/s
Resolution 0.1 °C
Fluctuation ± 0.1 °C
Uniformity ± 0.25 °C
Accuracy ± 0.25 °C
Gradient Spread 1 °C to 36 °C
Hot Lid Temperature 30 °C to 110 °C
Temperature Control Block/tube
Lid Operation Automatic
Excitation Wavelength 460 to 720 nm
Emission Wavelength 500 to 720 nm
Detection Channel 6
Scan Period 5 sec to complete 96-well plate
Factor Calibration Dyes F1:/SYBRGreen/EVAGreen,F2:////CY3/, F3: /Texas Red, F4: Cy, F5:Cy5.5, F6: customized
Detection Photoelectric Detector
Dynamic Range 1 to 10000000000 Copies
Sensitivity 1 Copy
Operation System Win 7, Win 10 & Win 11
Voltage AC100 to 240V/50 to 60 Hz
Power 1400 W
Dimensions(L×W×H) 495×350×330 mm
Weight 26 Kg

Features

A User-friendly interface enables easy programming for convenient analysis

Intuitive and robust software includes quantitative analysis, , and genotypic for a reliable result

Improved work efficiency provides high-quality data

Structure with unique-grease free stainless steel offer long-term safety with sanitation

Integrated with an energy-efficient PC controller that allows for several sets of experiments at any time

Equipped with a highly efficient photoelectric detector

Simple and adaptable setup with excellent dependability and usability

Trouble-free cleaning with minimal maintenance

Ease of use combined with minimal energy usage

Automatic hot lid configuration provides an automatic workstation

Emit low noise level offers smooth operation for a better working environment

Effortless handling with energy saving and environmental protection

Built-in with remote and RS232 enable easy communication via PC or printer

FAQs

1. What are the key factors to consider when selecting this analytical equipment for laboratory use?

When selecting this analytical equipment, 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 analytical equipment be calibrated to ensure accurate results?

It is recommended to calibrate this analytical equipment 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 analytical equipment?

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 analytical equipment be used with different types of samples, and are there any compatibility considerations?

Yes, this analytical equipment 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 analytical equipment 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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