Synthetic Genomics BioXP 3200 DNA Printer System

 13.500,00 excl. tax

1 in stock

SKU: LM 24614 Category:
Description

The BioXp 3200 system advanced gene assembly techniquesenable scientists to rapidly develop synthetic genomes and genome parts for research and development activities.

The BioXp 3200 System is designed to rapidly synthesize high-quality, linear DNA fragments from custom designed oligonucleotide pools and reagents across a meaningful section of the complexity continuum. A capacity of 32 DNA fragments (Tiles), ranging in size from 350 bp to 1.8 kb, can be assembled with high fidelity. DNA fragments synthesized by the BioXp 3200 System are ready for off-line sequencing QC, further assembly into larger fragments, cloning into vectors with compatible ends and other common downstream applications.

BioXp Tiles size range: 350 – 1800 bp

BioXp Degenerate Library Tiles size range: 300 – 800 bp (recommended)

BioXp Clones size range: 350 – 1800 bp

BioXp Tiles GC% complexity: 20 – 70% GC (350 bp – 1.0 kb), 40 – 60% GC (350 bp – 1.8 kb)

BioXp Degenerate Library Tiles GC% complexity: 20 – 70% (within recommended size range)

BioXp Clones GC% complexity: 20 – 70% GC (350 bp – 1.0 kb), 40 – 60% GC (350 bp – 1.8 kb)

BioXp Tiles composition: A, T, C or G residue

BioXp Degenerate Library Tiles composition: IUPAC code residues

BioXp Clones composition: A, T, C or G residue

BioXp Tiles yield: >200 ng of purified, linear dsDNA in 45 µL TE Buffer

BioXp Degenerate Library Tiles yield: >200 ng of purified, linear dsDNA library in 45 µL TE Buffer

BioXp Clones yield: ~ 20 µL of cloned product  (± 2 µL) and ~ 40 µL of uncloned Tiles (± 2 µL)

BioXp Tiles format: 1 to 32 reactions in a 96-well plate format

BioXp Degenerate Library Tiles format: 1 to 32 reactions in a 96-well plate format

BioXp Clones format: 1 to 32 reactions in a 96-well plate format

Dimensions (WxHxD): 660 x 530 x 740 mm

Weight: 63.4 kg

Specifications
Weight 0,0 kg
Warranty

6 months

Condition

Used, in good condition

Date of Manufacture

2018

Brand

Synthetic Genomics

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