D30 Automatic Digital PCR System

Cat.No.: 30075

The fluorescent PCR reaction system is microtitrated by microfluidic technology to randomly distribute target nucleic acid molecules into separate and highly homogeneous water-in-oil (W/O) droplets. The target nucleic acid sequences are randomly distributed into separate and highly homogeneous water-in-oil (W/O) microdroplets, which are amplified to the endpoint by PCR. The PCR amplification to the endpoint enables absolute quantification of the target nucleic acid sequence by molecular counting and is not dependent on the standard curve. As the latest generation of nucleic acid quantification methods, its technical features include higher detection sensitivity, data precision and resolution, higher repeatability and reproducibility, and low sensitivity to changes in PCR inhibitors and PCR amplification efficiency.

Description

Overview

Specification

Video

Specification

Items Technical parameters
Droplet generation method Flow focusing method
Reaction volume 10-50μL adjustable according to experimental requirements
Droplet abundance Maximum droplet generation of more than 100,000 in a single well
Droplet detection rate ≥95%
Sample throughput 1~96,Samples can be loaded at any time
Detection time Full process time 4.5h/96 samples
PCR reaction modules Temperature rise and fall ≥15 degrees/sec, multiple modules with independent temperature profiles for each chip
Temperature Control Module Multiple temperature control zones
Excitation light source Long-life maintenance-free solid-state light source
Fluorescence channels FAM, VIC/HEX, ROX, CY5, CY5.5/Q705
Detectors High sensitivity optical detector
Detection methods Flow-through microdroplet counting analysis
Detection mode Streaming queue mode for on-demand sample detection
Limit of detection (LOD) Less than <0.1%, Single copy genes can be detected
Detection method Compatible with probe and dye
Detection setting Full process, fully closed system design, compliant with molecular diagnostic regulations

Video

INQUIRE NOW

Go to Top