CFX96 Touch real-time quantitative PCR instrument
  • CFX96 Touch real-time quantitative PCR instrument
CFX96 Touch real-time quantitative PCR instrument

CFX96 Touch real-time quantitative PCR instrument

Item #: AM-COR-0010-YXR

Model: CFX96 Touch

Regulatory Status: Approved by Regulations on the Supervision and Administration of Medical Devices.

Temperature control accuracy: ± 0.2 ˚C (temperature setting 90 ℃)
Heating rate: 5 ℃ / s max (0.1-5 ℃ / s adjustable)
Temperature uniformity: ± 0.4 ˚C (within 10 seconds after reaching 90 ˚C)
Sample throughput: 96
Thermal cycling component: C1000 Touch
Sample capacity: 96 x 0.2ml reaction tube
Sample volume: 50 μl
Optical components:
Fluorescence excitation range: 6 LEDs (450–684 nm)
Fluorescence detection range: 6 photodiodes (515–730 nm)
Temperature rise and fall: 5 ℃ seconds
Gradient PCR: Yes
Gradient PCR range: 30–100 ° C
Maximum gradient temperature difference: 24 ℃
Whether to support HRM: support
Communication: USB
Dimensions (W x D x H): 13 x 18 x 14 "
Weight: 21 kg (47 lb)

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Product Details

Application: Medical Use

Features: 1 .Factory calibration—simple installation and precise light path.
2. Collect data from all wells at once—no need to set up plate files before reaction, they can be set at any time; simplifying program setting operations.
3. Multiple data acquisition modes, including single-color fast scanning—select the operation mode based on different experiments.
4.Temperature gradient function—you can optimize the experimental conditions in one reaction and find the best amplification efficiency of the index.
5.CFX Maestro software—Gene expression analysis function normalizes the amplification efficiency of multiple reference genes and each gene, and can perform t-test and ANOVA statistical analysis.
6 Scalability—One computer can connect 4 instruments at the same time.

CFX96 Touch fixed light path technology (six leds and six light-sensitive diodes) enables optimal detection of dyes in each channel, accurate quantification and typing of target genes. With each detection scan, the optical detection head can be accurately and repeatably focused above the direct center of the reaction tube. Therefore, the optical path is always in the optimal state, and there is no need to occupy an additional detection channel to use reference dyes for detection and correction.

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