As an essential tool for quantitative analysis in molecular biology, the real-time PCR system is extensively utilized across various fields, including scientific research, clinical diagnostics, quality and safety testing, and forensic analysis.
Key Features:
-
Equipped with up to six fluorescence detection channels for efficient multiplex PCR.
-
Minimizes multi-color crosstalk and edge effects, eliminating the need for ROX correction.
-
Advanced optical scanning detection system ensures high precision and stability.
-
Incorporates innovative scanning methods and time-resolved signal separation technology for enhanced accuracy.
-
Features a unique edge temperature compensation technology for consistent results.
-
Supported by user-friendly software designed for intuitive operation and data management.
Channel 6 | Channel 5 | Channel 4 |
NED/Cy3/TAMRA
543±20/584±20 |
ROX/Texas Red
571±20/610±20 |
FAM/SYBR
480±10 |
VIC/HEXTETJOE
532±10/564±20 |
CY5/Quasar 670
640±20/692±40 |
/518±10FAM/SYBR
480±10/518±10 |
Channel 3 | Channel 2 | Channel 1 |
Temperature control system | |
Sample capacity | 0.1ml PCR tubes×96, 8×12 PCR plate or 96 well plate ×1 |
Reaction volume | 10 – 50 μl |
Thermal cycle technology | Peltier |
Max. Heating/Cooling rate | 6.0°C/s |
Heating temperature range | 4 – 100°C |
Temperature accuracy | ± 0.2°C |
Temperature uniformity | ±0.2°C @60°C,
±0.2°C @95°C |
Temperature gradient setting range | 30 – 100°C |
Temperature gradient difference
setting range |
1 – 36°C |
Detection system | |
Excitation light source | 5/6 monochrome high efficiency LEDs |
Detection device | PMT |
Detection mode | Time-resolved signal separating technology |
Excitation/detection
wavelength range |
455 – 650nm/510 – 715nm |
Fluorescent channels | 4/6 channels |
Supported dye | FAM/SYBR Green, VIC/HEX ROX,Cy5,Cy3(only for x6) |
Sensitivity | Single copy gene |
Resolution | 1.33 folds copy number difference can be distinguished in single-
plex qPCR |
Dynamic range | 10 orders of magnitude copies |
Reviews
There are no reviews yet.