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Channel LCD Digital Magnetic Stirrer (MS-M-S 44)

The Channel LCD Digital Magnetic Stirrer is a high‑throughput, non‑heating benchtop instrument engineered for the independent, reproducible stirring of up to four samples simultaneously in clinical diagnostics, pharmaceutical quality control, analytical chemistry, and academic research laboratories. Featuring four independent 5‑inch (Ø134 mm) ceramic‑coated aluminum work plates, this stirrer provides a speed range of 200 to 1500 rpm (1 rpm resolution) per channel, with a maximum stirring capacity of 3 liters of water per channel (12 liters total).
Every Channel LCD Digital Magnetic Stirrer is equipped with four independent high‑contrast LCD digital displays, one per channel, showing the actual stirring speed in real time. The four maintenance‑free, spark‑free brushless DC motors provide stable torque, ultra‑quiet operation, and long‑term reliability without routine maintenance. The ceramic‑coated aluminum work plates resist strong acids, strong alkalis, and organic solvents, ensuring chemical durability and easy cleaning. Four independent control panels allow each channel to be started, stopped, and adjusted to a different speed without cross‑interference.
Key user‑focused features include true independent parallel stirring, a compact space‑saving design (701 × 265 mm footprint) that integrates four stirring positions into a single instrument, and an IP21‑rated metal housing for basic splash and dust protection. The universal power supply (100–240 V, 50/60 Hz) allows worldwide use without voltage converters.
For the clinical laboratory scientist, pharmaceutical QC technician, and research scientist, the MS‑M‑S4 delivers the independent, high‑throughput stirring required for parallel clinical sample mixing, buffer and standard preparation, environmental sample homogenization, and educational laboratory demonstrations. For the patient, the reliable, reproducible performance of this instrument ensures that diagnostic reagents, quality control materials, and research samples are prepared consistently and efficiently, directly supporting accurate diagnostic outcomes and patient safety.