Youyunpu Optoelectronic Tech
Name:Jenny Li
Tel:+86 19963093538
Email:jennyli0927@163.com
Address:Oulong Science and TechnologyPark,Jinma Road,Weifang City,Shandong Province,China
Name:Jenny Li
Tel:+86 19963093538
Email:jennyli0927@163.com
Address:Oulong Science and TechnologyPark,Jinma Road,Weifang City,Shandong Province,China
【Introduction】:Youyunpu Optoelectronic Tech specializes in R&D & production of Fluorescent Quantitative PCR Detector, with custom services. Complete Fluorescent Quantitative PCR Detector models, high detection accuracy, trusted by customers.
It performs rapid and accurate qualitative and quantitative analysis of target nucleic acids in biological samples taken from other animals (such as blood, body fluids, etc.), and can also analyze special samples for standard curves, melting curves, genotyping, etc.
Real-time fluorescent quantitative PCR technology adds corresponding fluorescent dyes or fluorescent-labeled probes on the basis of conventional PCR. During the PCR reaction, the entire PCR process is detected in real time through changes in fluorescent signals. It is a method of monitoring the total product after each PCR cycle with fluorescent chemicals, and quantitatively analyzing specific DNA sequences in the test sample by internal or external reference methods.
The Fluorescent Quantitative PCR Detector is a real-time reaction detection instrument, mainly composed of a gene amplification thermal cycling system, a real-time fluorescence detection system, a microcircuit control system, a computer and supporting application software. It has two core functional modules: the thermal cycling system and the real-time fluorescence detection system. The working principle of the gene amplification thermal cycling system is basically the same as that of traditional gene amplifiers, using semiconductor heating and cooling to complete the thermal cycle process. The fluorescence detection system mainly comprises fluorescence excitation components, optical signal transmission components, fluorescence detection components and a control system.
Basic scientific research
Pathogen detection
Animal epidemic detection
Meat product adulteration
GMO detection
Food hygiene and quarantine
Drug development and rational drug use
Gene expression
Water monitoring
| Item | Specification |
|---|---|
| Product Name | YP-P16 / YP-P32 / YP-P48 |
| Appearance | |
| Dimensions (W×D×H) | 235 mm × 385 mm × 175 mm |
| Weight | 5.6 kg / 5.7 kg / 5.8 kg |
| Electrical Parameters | |
| Power | ~220 V / 50 Hz, 255 W |
| Data Interface | USB 2.0 × 2 (two on the right side) |
| Environmental Parameters | |
| Operating Conditions | Temperature: 10–30 °C, Humidity: 20%–80% |
| Transportation & Storage Conditions | Temperature: –20–55 °C, Humidity: 20%–80% |
| Altitude | < 2500 meters |
| Noise Level | A-weighted, < 60 dB |
| Sample Parameters | |
| Sample Capacity | 16 × 0.2 mL / 32 × 0.2 mL / 48 × 0.2 mL |
| Tube Type | Single tube, 8-strip tube |
| Sample Volume | 15–100 μL |
| Temperature Characteristics | |
| Heating/Cooling Method | Semiconductor heating/cooling |
| Temperature Range | 4 °C–99 °C |
| Max. Heating Rate | ≥ 3.5 °C/s |
| Avg. Heating Rate | ≥ 2.5 °C/s |
| Max. Cooling Rate | ≥ 3.5 °C/s |
| Avg. Cooling Rate | ≥ 2.5 °C/s |
| Temperature Control Accuracy | ≤ ±0.01 °C |
| Temperature Accuracy | ≤ ±0.1 °C |
| Temperature Uniformity | ≤ ±0.3 °C |
| Optical Characteristics | |
| Number of Fluorescence Detection Channels | 2 / 4 / 4 |
| Light Emitting Device | High-brightness LED |
| Light Collection Device | High-sensitivity, high signal-to-noise ratio photodiode |
| Compatible Probes/Dyes | |
| Channel 1 | 470/520: FAM, SYBR Green |
| Channel 2 | 530/570: HEX, JOE, VIC |
| Channel 3 | 580/610: ROX, Cy3.5, Texas Red |
| Channel 4 | 630/670: Cy5 |
| Detection Sensitivity | 1 copy |
| Linear Detection Range | 10⁰–10¹⁰ copies |
| Linear Correlation Coefficient | ≥ 0.999 |
| Channel Crosstalk | No crosstalk |
| Detection Repeatability | ≤ 1.0% |
Youyunpu Fluorescent Quantitative PCR Detector Manufacturer Analysis: How Does the Technical System Support Stable Nucleic Acid Detection?
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