Multi-Position Stirrer Hotplate LE-MPH101 Catalog

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Overview :

Lab Expo Multi-Position Stirrer Hotplate LE-MPH101 is designed with 3 stirring positions to enable efficient parallel sample processing. It features digital speed control for precise and reliable stirring performance. Integrated speed range of 150 to 1600 rpm ensures smooth and consistent operation. Equipped with an LED hot warning that alerts users to residual surface heat. Our Multi-Position Stirrer Hotplate is ideal for simultaneous stirring and heating of multiple samples in research, quality control, and academic laboratories.

Specifications:
Number of Stirring Positions 3
Maximum Stirring Quantity per Position 1 L (H₂O)
Speed Range 150 to 1600 rpm
Speed Control 1 rpm/step
Heating Temperature Range Room Temperature 120°C
Plate Material Ceramic Coated Aluminum
Hot Warning LED
Stirring Bar Length 25 to 35 mm
Stirring Position Distance 100 mm
Chemical Resistant Yes
Operation Temperature 5℃ to 40℃
Operation Relative Humidity 80%
Protection Class According to DIN EN 60529 IP42
Heat Output 300 W
Power Consumption 180 W
Power Supply 115 to 230 V
Frequency 50/60Hz
Plate Dimensions 130 × 300 mm
Dimensions 450 × 135 × 86 mm
Weight 3.2 Kg

Features:

  • Ceramic-coated aluminum plate
  • Three stirring positions at 100mm distance intervals
  • Maximum stirring quantity of 1L per position water equivalent
  • Speed range from 150 to 1600 rpm with 1rpm step control
  • Heating temperature range RT to 120C for sample processing
  • Heat output of 300W with power consumption of 180W

Applications:

FunctionImplementationQuality control labs150 to 1600 rpm enables consistent sample mixing across multiple positionsResearch laboratoriesCeramic coated aluminum plate provides uniform heating for parallel sample processingClinical testing facilitiesIP42 protection supports safe operation in humid environments up to 80% RHIndustrial QA settings3 stirring positions allow simultaneous processing of up to 3 L (H₂O) per runEducational institutionsLED hot warning alerts users to residual surface heat after operation

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