• 研究领域


PerkinElmer’s optimized, automated solutions are designed to improve the efficiency of your genomic workflows. These solutions are designed to eliminate the challenges associated with genomic analysis by providing labs with complete, single source solutions encompassing everything from sample to solution.

Automated workflow solutions have been developed for a range of applications including nucleic acid isolation and PCR setup, NGS sample prep, long-read sequencing, CRISPR fragment analysis, molecular cytogenetics and protein characterization. By enabling complete application-based solutions PerkinElmer increases your throughput while simplifying the generation of accurate, reproducible analysis. These solutions offer the flexibility to automate of automating a single protocol within your workflow or obtaining a complete single source solution that has been optimized to meet specific application requirements.

Explore the areas below to learn how you can increase the efficiency of your applications.

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


Nucleic Acid Isolation and PCR Setup

We offer automated solutions for nucleic acid isolation and PCR setup to ...

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Protein Characterization

Sample preparation and characterization of proteins for quality by desig ...

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With our optimized nucleic acid extraction, DNA/RNA quantitation, automa ...

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Long-Read Sequencing

The predominant method for large-scale population research analysis of w ...

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Streamline Your Analysis of CRISPR-Cas9 Genome Editing


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Microfluidic Protein Characterization Analysis

Microfluidic Electrophoresis Analysis

Proteins ...

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From cellular screening and imaging applications to high-throughput scre ...

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核酸分离 - 研究

Based on PerkinElmer patented magnetic bead technology the chemagic inst ...

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With dedicated workstations designed for a diverse variety of applicatio ...

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NGS 建库试剂盒

NEXTflex® library preparation kits are designed to reduce bia ...

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Utilizing automated microfluidic capillary electrophoresis (micro-CE) techn ...

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Molecular Cytogenetics

Fast, precise, and cost-effective targeted molecular karyotyping


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