NANO050NEOB

Thermo Scientific™ μPAC™ Neo HPLC Columns

Manufacturer: Fischer Scientific

Select a Size

Pack Size SKU Availability Price
Each of 1 NANO050NEOB-Each-of-1 In Stock ₹ 2,39,410.00

NANO050NEOB - Each of 1

₹ 2,39,410.00

In Stock

Quantity

1

Base Price: ₹ 2,39,410.00

GST (18%): ₹ 43,093.80

Total Price: ₹ 2,82,503.80

Flow Rate

0.1 to 0.75 μL/min

pH

1.5 to 7

Porosity

59%

Stationary Phase

C18

Column Type

Cylindrical Micro Pillar Array

Phase

Reversed Phase

Bed Length

50 cm

Interpillar Distance

1.25 μm

Pillar Length

16 μm

Max. Pressure

6526 psi (450 bar)

Pore Size

100 to 300 Å

Temperature

60°C

Packing Material

Silicon Chip

Endcapped

Yes

Description

50 cm μPAC™ Neo HPLC Column

Bed Width

180 μm

Pillar Diameter

2.5 μm

Description

  • Learn more about your proteome samples with Thermo Scientific™ μPAC™ Neo HPLC columns
  • Our μPAC Neo column line offers higher resolution than the previous generation of μPAC columns, ensuring that you can extract the maximum amount of information from highly complex samples using low-flow chromatography
  • Column installation is simple and reliable with Thermo Scientific™ nanoViper™ Fingertight Fittings
  • The μPAC Neo column range is the ideal choice for a variety of proteomics experiments, including fast label-free quantitation, comprehensive identification, and single cell analysis
  • Performance and Robustness - μPAC Neo columns operate at moderate pressures, allowing for longer flow paths that increase separation performance and sensitivity
  • Operating at lower back pressures also extends column lifetime
  • Column-to-Column Reproducibility - The unique micromachining manufacturing of our μPAC Neo column line produces columns that are virtually identical
  • This results in increased injection-to-injection and column-to-column reproducibility, providing you with greater confidence in your results throughout the duration of a research study
  • Perfect Flow Path Order - μPAC Neo columns are designed with a perfect flow path order, eliminating heterogeneous flow paths
  • The ordered flow path of the columns minimizes dispersion to the overall separation, resulting in sharper and more intense chromatographic peaks.