Tianlong Gentier 48E Real-time PCR System

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Xi'an Tianlong Science and Technology Co., Ltd.

VIP   Audited Supplier 4 years
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Gentier 48E
Biological Diagnostics
Biochemistry Analyzer
CE, FDA, ISO13485
All
Tianlong
Paper Carton
50*36*36 cm
Xi'an Shaanxi
9027509090
Product Description
Product Description

Basic Information:

ModelThroughputGradient Channel 1Channel 2Channel 3Channel 4
FAM, SYBR Green l, etc.VIC, HEX, TET, JOE, etc.ROX, Texas Red, etc.Cy5, etc.
Gentier 48E1-48Yes

The Tianlong Gentier 48E Real-time PCR System incorporates innovative optical technologies with powerful software to provide maxi-mal reliability and efficiency for all your real-time PCR needs. It is designed to meet the needs of small and medium-sized laboratories, mobile laboratories, and on-site testing. With the 4/2 fluorescence channels, Gentier 48Ecan process 48 samples in one run. It can make your experiments easier to use, more accurate, and efficient of its excellent performance and portability.

Product Features:
*48 samples to be scanned in 2s
Only 2s for all 48 wells of fluorescence scanning can significantly reduce testing time and improve efficiency for lab professionals.

*More convenient with two configurations
Standalone configuration: 7-inch touch screen, direct print sample amplification curve, and CT values by connecting to a thermal printer(optional); 
PC control configuration: PC software control via connection, one PC can max control 10 instruments.

*Efficient temperature control
Gentier 48 E/R only takes 40 minutes to complete a standard PCR amplification process. Temperature accuracy is controlled within 0.1°C to ensure excellent repeatability and accuracy.

*User-friendly and more flexible
Small in size and light in weight, it can be moved flexibly to your mobile laboratory for on-site testing.

*Powerful software analysis
Gentier 48 E/R offers multiple functions including relative quantification, absolute quantification, melting curve analysis, SNP analysis, and is compatible with other fluorescence analysis functions based on the isothermal amplification technique.
 
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