Introduction
Genetic Analyzer uses capillary electrophoresis and laser-induced fluorescence detection methods and supports 24-channel sample processing. It employs integrated data collection software tailored for forensic workflows. The analyzer uses an automatic polymer injection and has a capacity for 96-well plates or 8-strip tubes. Also, it is capable of performing 760 tests per day. Our analyzer provides forensic-specific analysis software with real-time data assessment and automated interpretation.
This genetic analyzer is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Genetic Analyzer is frequently using in Forensic Labs for construction of database, especially through Short Tandem Repeat () analysis. Its high throughput and precise fluorescence detection make it ideal for matching profiles in criminal investigations, paternity cases, and missing person identification. This is an ideal analyzer for the analysis of Single Nucleotide Polymorphisms (SNPs), STRs and AFLPs.
Specifications
| Detection Method | Capillary electrophoresis and Laser-induced fluorescence detection |
| Channels | 24 |
| Fluorescent Dyes | 6 real-time detection (expandable to 10) |
| Samples Per Run | 24 |
| Average Run Time | Less than 45 minutes |
| Max Samples Per Day | 760 |
| Entry Method | Fully automatic injection; supports 96-well plates and 8 exhaust pipes |
| Rubber Injection Method | Fully automatic glue injection |
| Laser Light Source | 505 nm solid-state laser |
| Fluorescence Detection Wavelength | More than 520 nm |
| Resolution | 1 bp, read length up to 800 bp |
| Temperature Control Accuracy | Below 0.2°C |
| Permissible Temperature Range | 20 to 30°C (fluctuation during operation up to ± 2°C) |
| Permissible Humidity | 20 to 60% (non-condensing) |
| Atmospheric Pressure | 86 to 106 kPa |
| Connectivity | , Ethernet, Cloud Connectivity |
| Data Integration | Integration |
| Software | , Genotyping |
| Operational Capacity | 48-hour Operation |
| Power Supply | AC 220 V 60 Hz, single-phase, 10 A, 2200 VA |
| Genetic Analyzer Dimension (Closed) | 610 × 532 × 812 mm |
| Genetic Analyzer Dimension (Open) | 1225 × 532 × 812 mm |
| Packing Dimension | Wooden Box: 770 × 692 × 1062 mm Carton: 610 × 430 × 131 mm |
| Genetic Analyzer Net Weight | 95 Kg |
| Gross Weight | Wooden Box: 128 kg Cartoon: 6 kg |
Features
Standard Database Export
-Based Consumable Tracking
Consistent Instrument Performance
Multiple Polymer Options Available
Run Length Customization Support
FAQs
1. What is the working principle and detection method of the Genetic Analyzer?
Genetic Analyzer operates using capillary electrophoresis combined with laser-induced fluorescence detection. It uses a 505 nm solid-state semiconductor laser and detects fluorescence signals above 520 nm. This system allows for accurate analysis of fragments by separating them based on size and identifying them using fluorescent labeling, which is critical for applications like analysis and sequencing.
2. How many samples can the analyzer process in one day, and what is the typical runtime per batch?
The analyzer is designed for high-throughput operations and can process up to 760 samples per day. Each batch can include 24 samples, with an average runtime of less than 45 minutes. This efficiency makes it suitable for busy labs requiring rapid analysis, such as forensic databasing or large-scale genetic studies.
3. What sample containers are supported by the analyzer for loading?
It supports automatic sample loading using either 96-well microplates or 8-strip tubes. It includes an automatic polymer injection system that streamlines the preparation process and reduces manual handling. This feature ensures consistency across runs and helps minimize the risk of contamination or user error.
4. What are the main application areas of the Genetic Analyzer?
This analyzer is versatile and is used in several fields, including clinical diagnostics, forensic investigations, cancer research, and genetic studies. It helps detect genetic disorders such as Duchenne muscular dystrophy and spinal muscular atrophy, and is also used in prenatal screening and the analysis of single nucleotide polymorphisms (SNPs), STRs, and AFLPs.
5. Can the analyzer be used for criminal forensics and databasing?
Genetic Analyzer is frequently used in forensic labs for constructing databases, especially through Short Tandem Repeat () analysis. Its high throughput and precise fluorescence detection make it ideal for matching profiles in criminal investigations, paternity cases, and missing person identification.
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