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Lab Expo Multi-Position Magnetic Stirrer LE-MM204 is designed with three stirring positions for simultaneous sample processing. It has a digital display that allows accurate speed monitoring and control. Equipped with a speed range of 100 to 2000 rpm, it ensures efficient mixing. Integrated with a 1L maximum capacity per position, it supports consistent operations. Our Multi-Position Magnetic Stirrer is used for chemical synthesis, biological research, and general laboratory use.
$2,083.00 $ 1736
Specifications
| Number of Stirring Positions | 3 |
| Maximum Stirring Quantity per Position | 1L (H2O) |
| Speed Range | 100 to 2000rpm |
| Speed Control | 1rpm/step |
| Stirring Position Distance | 100mm |
| Stirring Bar Length | 25 to 35mm |
| Plate Material | Ceramic Coated Stainless Steel |
| Chemical Resistant | Yes |
| Operation Temperature | 5℃ to 40℃ |
| Operation Relative Humidity | 80% |
| Protection Class According to DIN EN 60529 | IP42 |
| Power Supply | 110 to 240 V |
| Frequency | 50/60Hz |
| Power Consumption | 50W |
| Fuse | 2x T6A 250V |
| Plate Dimensions | 130 × 300mm |
| Dimensions | 450 × 130 × 80mm |
| Weight | 2.8 kg |
Features
Applications
Function Implementation Chemical synthesis labs 3 positions enable simultaneous reaction mixing Biological research workflows 1L max capacity per position supports consistent sample processing Quality control testing Speed range of 100 to 2000 rpm allows precise agitation control Industrial lab environments Ceramic coated stainless steel plate resists chemical exposure Clinical diagnostics prep IP42 protection permits operation in humid conditions up to 80% RH
Lab Expo Hot Plate Magnetic Stirrers are structured around integrated heating and magnetic drive architecture to enable simultaneous thermal control and agitation. This hot plate with magnetic stirrer supports multi-position stirring with synchronized speed regulation for parallel sample processing. Durable heating surfaces, stable magnetic coupling, and integrated safety protection ensure consistent heating and uniform mixing for high-throughput laboratory workflows.