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Micro cHiPLC Columns
Micro cHiPLC Columns
Place of Origin:
United States
Brand:
SCIEX
Model:
Supplier:
SCIEX
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1787 
Updated:
12/28/2016
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    1, About Micro cHiPLC Columns

    Developed specifically for nanospray mass spectrometry (MS), our NanoLC systems provide speed, sensitivity, resolution and reliability for your research. (200 μm ID C18 Reverse Phase Micro Columns for the cHiPLC-Nanoflex System)

    2, Specifications

    Micro cHiPLC columns and trap columns are available in several different stationary phases and column lengths.

    cHiPLC Columns

    Part Number

    cHiPLC column, 3 μm, ChromXP C18CL, 120 Å, 15 cm x 200 μm

    5015840

    cHiPLC column, 3 μm, ChromXP C18CL, 120 Å, 5 cm x 200 μm

    5015839

    cHiPLC column, 3 μm, ReproSil-Pur C18-AQ ,120 Å, 15 cm x 200 μm

    5020549

    cHiPLC column, 3 μm, ReproSil-Pur C18-AQ ,120 Å, 5 cm x 200 μm

    5020545

    cHiPLC column, 5 μm, ChromXP C4CL, 300 Å, 15 cm x 200 μm

    5017027

    cHiPLC column, 5 μm, ChromXP C4CL, 300 Å, 5 cm x 200 μm

    5020543

    cHiPLC column, 3 μm, Graphitized Carbon, 250 Å, 15 cm x 200 μm

    5020547

    cHiPLC column, 2.7 μm, HALO Fused-Core C18, 90 Å, 5 cm x 200 μm

    5020544

    cHiPLC column, 2.7 μm, HALO Fused-Core HILIC, 90 Å, 15 cm x 200 μm

    5020548

    Trap Columns

    Part Number

    cHiPLC trap, 3 μm, ChromXP C18CL, 120 Å, 6 mm x 200 μm

    5015841

    cHiPLC trap, 3 μm, ReproSil-Pur C18-AQ, 120 Å, 6 mm x 200 μm

    5020550

    cHiPLC trap, 5 μm, ChromXP C4CL, 300 Å, 6 mm x 200 μm

    5017026

    cHiPLC trap, 3 μm, Graphitized Carbon, 250 Å, 6 mm x 200 μm

    5020553

    cHiPLC trap, 2.7 μm, HALO Fused-Core C18, 90 Å, 6 mm x 200 μm

    5020551

    cHiPLC trap, 2.7 μm, HALO Fused-Core HILIC, 90 Å, 6 mm x 200 μm

    5020554

    Chip based particle trap (weir) (between autosampler and cHiPLC nanoflex)

    800-00354

    Jumper Chips

    Part Number

    Direct injection jumper chip

    800-00408

    Trap-elute jumper chip

    800-00389

    Dual column jumper chip

    800-00421

    3, Features

    1> For research use only. Not for use in diagnostic procedures.

    SCIEX micro cHiPLC columns decrease column run times and increase sample throughput with a larger diamer 200 μm ID format. The 200 μm ID cHiPLC columns allow samples to be run at higher flow rates and therefore with higher throughput. The larger diameter column also provides increased robustness, ease of use, and sample loading capacity over traditional 75 μm ID nanoflow LC. For many applications, the 200 μm ID format provides just the increase in speed and throughput that your research demands - all in a simple cHiPLC column.

    1)Easy: Plug & play chip simplicity with the performance of a micro column

    2)Extendable: Flexibility to switch between workflows and projects rapidly in multi-user labs

    3)Every time: Reproducible results from day-to-day,

    column-to-column and lab-to-lab

     Because of its high sensitivity, nanoflow liquid chromatography coupled with mass spectrometry (nanoLC MS) is the method of choice for many biological research applications. However, the low flow rate of nanoLC reduces sample throughput due to gradient delay in the nanoLC system itself, delay in the autosampler and sample loop, and the delay caused by the connecting tubing. One way to address this is to use a larger inner diameter column at a proportionally higher flow rate. While this will reduce sensitivity when the total sample amount is kept equal, the delay times can be greatly reduced and sample throughput accelerated. Reducing the column and gradient lengths can further reduce the analysis time required per sample.

    SCIEX 200 μm ID micro cHiPLC columns for the cHiPLC-Nanoflex offer the perfect solution for those applications demanding higher sample throughput and faster analysis times. SCIEX micro cHiPLC columns are made with the same dedication to manufacturing quality and innovative engineering as our nano cHiPLC columns.

    2> Column design

    Special care has been given to the design of both the trap-chips and analytical column-chips in order to achieve separations that are equal or better than separations obtained using packed capillaries. The use of fused silica allows for cylindrical channels for packing columns and traps. Instead of conventional frits made out of fused stationary phase particles, our cHiPLC columns use a unique weir structure to retain the stationary phase particles in the column. These weirs are more reproducible to fabricate, while their dead-volume is virtually zero (~13 pL). In addition, adsorption of sample components that can occur with frit material is not an issue with these types of structures.

    3> Patented connection system

    Connections to and from each chip are made using a patented connection system that can connect up to seven channels to the outside world with a dead volume of less than 1 nl. The force used to connect the chip is pre-set, so that every time the user exchanges a chip, a specifically leak-free connection is obtained without any required user adjustments.

    4> Increased column-to-column reproducibility

    Besides the ease of replacing a nanoLC column or trap in seconds, the use of our cHiPLC columns also increases column-to-column reproducibility. All chips are exactly identical, and our packing procedure guarantees the best possible column-to-column reproducibility in nanoLC. This is of importance for applications where retention time stability over longer periods of time and over multiple columns is important. Examples are the use of retention time in combination with accurate mass in peptide/protein identification and scheduling MRM's for peptide quantitation in biomarker verification.

     

     

    bio-equip.cn
    SCIEX's global leadership and world-class service and support in the capillary electrophoresis and liquid chromatography-mass spectrometry industry have made it a trusted partner to thousands of the scientists and lab analysts worldwide who are focused on basic research, drug discovery and development, food and environmental testing, forensics and clinical research.

    Our Solutions: Clinical Diagnostics | Clinical Research | Food & Beverage Testing | Environmental Testing | Forensics Testing | Life Science Research | Pharma and BioPharma Solutions

    =Technical Support=
    Phone: 1 877 740 2129

    = Service Contracts =
    Email: servicesales@sciex.com
    Phone: 1 877 740 2129 (option 1,2)
    Fax: 1 800 343 1346

    = General Ordering =
    Email: sales.americas@sciex.com
    Phone: 1 877 740 2129 (option 1,1)
    Fax: 1 800 343 1346

    = Service Call or Service Parts Order =
    Email: servicesales@sciex.com
    Phone: 1 877 740 2129 (option 1,3)
    Fax: 1 800 343 1346

    = Service or Service Spare Parts =
    Email: customercare@sciex.com
    Phone: 1 877 740 2129 (option 1,3)
    Fax: 1 800 343 1346

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