DSCBalances
Sartorius MCA2203S-2S00-I Cubis II Precision Balance, Internal Calibration, 2200 g x 0.001 g
Sartorius MCA2203S-2S00-I Cubis II Precision Balance, Internal Calibration, 2200 g x 0.001 g
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The Cubis® MCA balance combines advanced weighing performance with an intuitive, configurable design for R&D and analytical laboratories. Its high-end 7-inch color TFT touch display features a 16:9 format and a new user interface designed for clear, efficient operation.
With an actual scale division of 1 mg and a nominal maximum load of 2,200 g, the standard non-verified version supports all units. The automatic motorized glass draft shield includes learning capability, making operation user-friendly and customization easier across changing application requirements.
An integrated ionizer helps eliminate interfering electrostatic charges on samples and sample containers, supporting reliable weighing results. Designed for laboratories that need dependable performance, the Cubis® II portfolio combines configurable hardware and software to align with unique workflow and compliance requirements.
Key Features
- High-resolution touch display: 7-inch color TFT display in a 16:9 format with a new user interface.
- Precision weighing: Actual scale division of 1 mg with a nominal maximum load of 2,200 g.
- Standard non-verified version: Supports all units.
- Automatic motorized draft shield: Glass draft shield with learning capability for user-friendly operation and easy customization.
- Integrated ionizer: Helps neutralize electrostatic charges that can interfere with samples and containers.
- Configurable platform: Cubis® II hardware and software can be tailored to laboratory workflows and compliance requirements.
- Intuitive operation: Intelligent diagnostic systems support repeatable workflows and help reduce the likelihood of measurement errors.
For scientists working in research, development, and analytical environments, the Cubis® II provides a high-performance weighing solution designed to support operational efficiency and consistent experimental outcomes.