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2012 Bio-Rad XPR36 In Woonsocket, RI, USA (CAT#: STEM-GLEPO-0599-YJL)

Highlights

Analyzes up to 36 different protein interactions in a single run on a single chip
Measures a variety of experimental conditions simultaneously using parallel-flow fluidics
Screens multiple panels of analytes

Cat Number: STEM-GLEPO-0599-YJL

Application: For real-time label-free analysis of the specificity, affinity, and kinetics of bimolecular interactions

Model: Bio-Rad XPR36

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Description

2012 Bio-Rad XPR36 In Woonsocket, RI, USA, model Bio-Rad XPR36, is manufactured by Bio-Rad general laboratory equipment.
The Bio-Rad ProteOn XPR36 protein interaction array system is a Surface Plasmon Resonance (SPR) biosensor platform that provides real-time label-free analysis of the specificity, affinity, and kinetics of bimolecular interactions. Using the XPR36 configuration, this system generates 6x6 interaction array for the simultaneous analysis of up to six ligands with up to six analytes. The ProteOn XPR36 system increases the versatility of experiment design and the productivity of experimental workflow, enabling the completion of high-quality SPR experiments very efficiently.

Specification

Condition: Used
Block Temperatures
Range: 4-100°C
Cycling Speed: With 20 ul sample in a 0.2 ml tube, after warm up,when cycling between 50'C and 95C; at least 2.5C/sec maximum heating rate and 1.5C/sec maximum cooling rate
Storage Cooling: Less than 3 minutes to cool from 40C to 4C
Overshoot: Less than 0.5°C
Accuracy: +0.5C to NIST traceable standard after 30 seconds at 90'C, to block mode
Uniformity: Well to well uniformity of t0.5'C within 30 seconds after arrival at 90C
Temperature Gradient
Input Gradient Range: 1-25°C
Functional gradient range: 5-25°C
Mininum temperature of gradient: 30℃
Maximum temperature of gradient: 99℃
Gradient accuracy: ±0.5℃
Gradient Uniformity: 0.5C

Features

Analyzes up to 36 different protein interactions in a single run on a single chip
Measures a variety of experimental conditions simultaneously using parallel-flow fluidics
Screens multiple panels of analytes
Acquires the resonance angle shift as SPR response units (RU) for accurate kinetics

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