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Lab Expo Digital Hot Plate LE-DHP203 delivers a single stirring position for controlled mixing and heating operations. It offers a temperature setting range of 35℃ to 500℃ for controlled heating performance. Built-in digital display ensures clear visibility of temperature and stirring speed values. Incorporated with the capacity to handle a maximum stirring quantity of 10L (H₂O) per position. Our Digital Hot Plate is ideal for precise heating in chemical synthesis, sample preparation, and in scientific research laboratories.
$1,378.00 $ 1148
| Display Mode | LED |
| Number of Stirring Positions | 1 |
| Maximum Stirring Quantity per Position | 10L (H2O) |
| Temperature Setting Range | 35℃ to 500℃ |
| Heating Range for Plate | 35℃ to 500℃ |
| Heating Range for Solution | 35℃ to 200℃ |
| Temperature Stability | 1℃ |
| Heating Setting Resolution of Plate | 1℃ |
| Heating Setting Resolution of Solution | 0.1℃ |
| Heat Control Accuracy with PT1000 | +/-0.5℃ |
| Stirring Bar Length | 30 to 80mm |
| External Temperature Sensor | PT 1000 |
| Plate Material | Ceramic |
| Chemical Resistant | Yes |
| Operation Temperature | 5 to 40℃ |
| Operation Relative Humidity | 80% |
| Hot Warning | Yes |
| Overheat Warning in Plate and Medium Detection | Yes |
| Protection Class According to DIN EN 60529 | IP 21 |
| Power Supply | 110 to 130 V/200 to 240 V |
| Frequency | 50/60Hz |
| Power Consumption | 600W |
| Plate Dimensions | 178 × 178mm |
| Dimensions | 192 × 293 × 100mm |
| Weight | 3 kg |
Function Implementation Sample preparation 35℃ to 500℃ heating range supports controlled thermal processing Chemical synthesis Ceramic plate enables uniform heating of solutions up to 200℃ Solution mixing Maximum stirring quantity of 10L (H₂O) per position handles large volume tasks Temperature-sensitive procedures Heat control accuracy with PT1000: +/-0.5℃ ensures precise thermal regulation Continuous operation environments Operation temperature range of 5 to 40℃ allows stable lab integration
Lab Expo Digital Hot Plates are structured around PID-controlled heating architecture to maintain precise surface temperature stability. This laboratory hot plate uses a corrosion-resistant ceramic plate for uniform heat transfer under extended duty cycles. One-touch control with LED monitoring, external temperature sensing, and integrated safety alarms enable accurate thermal regulation for chemical reactions, sample preparation, and controlled laboratory heating workflows.