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cobas® eplex system

IVD For in vitro diagnostic use.
cobas eplex system

cobas eplex system
True sample-to-answer solution

The cobas® eplex system sample-to-answer solution streamlines the diagnostic workflow from your order entry to the release of the final report.

cobas eplex system

cobas® eplex system improvements

Leveraging 7 years of continuous input and 24 months of direct customer engagement through interviews and concept modeling
  • Improved user workflows 
  • Refined reporting capabilities 
  • Concurrent run serviceability
  • Direct connect support emails
  • Enhanced responsiveness
  • Field repairable
  • Improved reliability
  • Sustainable packaging

 

True sample-to-answer workflow

  • Bi-directional LIS to automate and accelerate order entry and results reporting
  • Random and continuous access and a modular, scalable design to
    ensure capacity that meets peak season demand
  • Less than 1 minute hands-on time 
  • Remote alerts to notify when test results are available
  • Intuitive user interface with guided workflows to enable operation on every shift
  • Remote service capability to minimize system downtime and ensure patients and physicians have access to rapid test results

 

Order-to-report is what matters most

The cobas® eplex system is designed for order-to-report with a lean workflow by eliminating manual steps and staging of samples that often delay and complicate efficient test processing and results reporting.

Would you like to know more about the cobas® eplex system?

Please submit your information in the following form to be contacted by a Roche representative with more details.

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Order to Report
Designed for patient icon

Designed for the patient, optimized for the lab

The cobas® eplex system sample-to-answer capabilities integrate the whole process from order-to-report to better realize the patient and laboratory benefits of rapid, multiplex molecular diagnostics. 

The ePlex® System offers many unique solutions that were thoughtfully engineered to address the biggest challenges you face in the clinical laboratory and to support hospital systems in delivering patient centered, value-based care.

Reduce medical errors icon

Designed for the patient to reduce avoidable medical errors

Preventable medical errors are now the third leading cause of death in the United States at more than 250,000 per year.1 Automating information transfer has been shown to be effective in reducing many common errors, including patient identity checking and order transcription.2

The ePlex® System is uniquely designed with patient safety features in mind so that labs and physicians can have the confidence that they have the right patient, with the right test, and the right result, every time.

  • Reduce the chance of pre-analytical errors with less than 1 minute hands-on time and guided workflows

  • Transcription errors can be eliminated in both order entry and result reporting with bi-directional LIS

Maximize lab effciency icon

Optimized for the lab to maximize lab efficiency by reducing administrative overhead

Monitoring and reporting quality control testing is both a requirement and a best practice to ensure accuracy of patient results and compliance with lab standards. With on-board QC tracking capabilities and safeguards, you can not only run controls when required, you can also easily track and report compliance.

In addition to automated control tracking, the ePlex® System provides the following compliance and data management tools:

  • Integrated data analytics to easily monitor lab performance
  • On-demand epidemiology reports for export and simplified analysis
  • Fully configurable, auto-release of test results

All of these unique capabilities of the ePlex® System allow you to reduce the time spent on routine administrative tasks and focus your limited resources on high-value activities that impact patient care and the bottom line.

cobas® eplex system: Sample-to-answer solution

A modular and scalable system

cobas eplex system NP

cobas® eplex system NP

  • 3 test bays
  • Throughput (24 hours): 36 patient samples per day*
  • Physical dimensions (H x D x W): 23.5" x 19.0" x 21.3", 
    59cm x 48cm x 54cm
cobas eplex system 1 Tower

cobas® eplex system 1 tower

  • 6 test bays
  • Throughput (24 hours): 72 patient samples per day*
  • Physical dimensions (H x D x W): 23.5" x 19.0" x 21.3",
    59cm x 48cm x 54cm
cobas eplex system 2 Tower

cobas® eplex system 2 tower

  • 12 test bays
  • Throughput (24 hours): 144 patient samples per day*
  • Physical dimensions (H x D x W): 23.5" x 19.0" x 28.5",
    59cm x 48cm x 72cm
cobas eplex 3 tower

cobas® eplex system 3 tower

  • 18 test bays
  • Throughput (24 hours): 216 patient samples per day*
  • Physical dimensions (H x D x W): 23.5" x 19.0" x 35.8",
    59cm x 48cm x 91cm
cobas eplex system 4 Tower

cobas® eplex system 4 tower

  • 24 test bays
  • Throughput (24 hours): 288 patient samples per day*
  • Physical dimensions (H x D x W): 23.5" x 19.0" x 43.0",
    59cm x 48cm x 109cm

*Based on 24 hour day

Specifications

  • Weight 1-tower system

    49kg (108 lbs)

  • Dimensions 1-tower system

    59 cm x 48 cm x 54 cm (24.0” x 19.0” x 21.0”)

  • LIS compatibility

    ASTM LIS 1-A & LIS 2-A2 (Bi-directional); HL7 v2.3 (Bi-directional); Flat file (.csv, .xml and .txt)

  • Supported barcodes

    Aztec, Codabar, Code 39, Code 93, Code 128, Data Matrix, EAN, Interleaved 2 of 5, JAN, MaxiCode, UPC

  • Power requirements

    100-240 Vac, 50/60 Hz

  • Environmental conditions

    Ambient temperature: 15 – 30°C; relative humidity: 15 – 85% (non-condensing)

  • Noise generation

    ≤ 60dBA

The cobas® eplex system is an automated in vitro diagnostic device designed to perform multiplexed nucleic acid tests for the simultaneous detection and identification of nucleic acid targets by processing single-use cartridges.

US-IVD

Access package inserts through your country’s Roche Diagnostics local website.

References

  1. Makary MA, Daniel M. BMJ. 2016 May 3;353:i2139
  2. The National Academics of Sciences Engineering Medicine. https://www.nap.edu/read/9728/chapter/4#39. Accessed May 2023

 

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