iCubio iMagic-S7 or HumaStar 100: Which Clinical Chemistry Analyzer To Choose

Explore the features and specifications of the HumaStar 100 and iMagic-S7 clinical chemistry analyzers to determine which one best fits your laboratory's needs.

Company HUMAN iCubio
Model HumaStar 100 iMagic-S7
Throughput max. tests/h 100 120
Reagent positions 30 50
Reagent cooling independent from main power switch -
Sample positions 60 20+2 Positions, up to 71
Sample barcode reader Internal -
Cuvettes 80 reusable 48 recycable 
Water consumption (l/h) < 1 (8 ml/test) 3 l/h

*All information is correct as of December 2023

 
 

 

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Selecting the appropriate clinical chemistry analyzer is critical for laboratories aiming to optimize testing efficiency and accuracy. In this comprehensive comparison, we'll evaluate the features and specifications of two prominent analyzers: the HumaStar 100 and iCubio iMagic-S7, to assist you in selecting the most suitable option for your laboratory's needs.

Throughput

Efficient throughput is essential for laboratories handling a high volume of tests, ensuring prompt results and streamlined workflow.

  • HumaStar 100: Offers a maximum throughput of 100 tests per hour, suitable for laboratories with moderate testing volumes.
  • iCubio iMagic-S7: Provides a throughput of 120 tests per hour, catering to laboratories with slightly higher testing demands.

Reagent Positions

The number of reagent positions impacts the analyzer's flexibility in conducting various tests without frequent reagent changes.

  • HumaStar 100: Features 30 reagent positions, enabling a diverse range of tests with stable reagent conditions.
  • iCubio iMagic-S7: Offers 50 reagent positions, providing enhanced testing versatility and reducing the need for frequent reagent changes.

Reagent Cooling

Maintaining stable reagent temperatures is crucial for accurate and reliable test results, particularly in demanding laboratory environments.

  • HumaStar 100: Ensures reagent stability with independent cooling from the main power switch, preserving reagent integrity throughout testing.
  • iCubio iMagic-S7: Does not specify reagent cooling mechanisms.

Sample Positions

Adequate sample positions are necessary for managing varying sample volumes efficiently, catering to the laboratory's diverse testing needs.

  • HumaStar 100: Offers 60 sample positions, accommodating laboratories with diverse sample processing requirements.
  • iCubio iMagic-S7: Provides 20+2 positions, expandable up to 71 positions, suitable for laboratories with moderate sample volumes.

Sample Barcode Reader

Integration of an internal sample barcode reader enhances testing accuracy and traceability, ensuring seamless sample identification and result linkage.

  • HumaStar 100: Incorporates an internal sample barcode reader, improving testing process integrity and minimizing errors.
  • iCubio iMagic-S7: Does not feature a built-in sample barcode reader.

Cuvettes

The type and capacity of cuvettes impact operational costs and environmental sustainability, influencing the analyzer's overall cost-effectiveness.

  • HumaStar 100: Utilizes 80 reusable cuvettes, promoting sustainable laboratory practices and minimizing waste, contributing to cost efficiency.
  • iCubio iMagic-S7: Utilizes 48 recyclable cuvettes, ensuring convenient testing processes and minimizing environmental impact.

Water Consumption

Monitoring water consumption is essential for sustainable laboratory management, reducing operational costs and environmental impact.

  • HumaStar 100: Consumes less than 1 liter of water per hour (8 ml/test), contributing to cost efficiency and environmental sustainability.
  • iCubio iMagic-S7: Utilizes 3 liters of water per hour, ensuring efficient cooling and optimal instrument performance.

 

Both the HumaStar 100 and iCubio iMagic-S7 offer advanced features and reliable performance tailored to meet the evolving needs of modern laboratories. The choice between the two depends on your laboratory's specific requirements, such as testing volume, flexibility, and operational preferences. Consider factors such as throughput, reagent and sample positions, cuvette type, and water consumption to make the best decision aligned with your laboratory's goals and priorities.