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SKU: AAHK34025K
MS-53MH Multi Position Hotplate & Magnetic Stirrer, 230V, 50/60Hz
$5,102.00
Key Specifications
- Model
- MS-53MH
- Type
- Hotplate Stirrer (Digital)
- Electrical
- 230V, 50/60Hz
- Brand
- Jeiotech
MS-53MH — Multi Type Hotplate Stirrer
An integrated top-plate-and-heater design gives this multi-position stirrer fast heat transfer alongside four selectable stirring modes (All, Column, Row, Point) and a built-in timer. It's built for running several heated stirring experiments on one unit at once.
- Separate heater knobs and an LED operation display
- Feedback control keeps stirring speed accurate even as sample viscosity or volume changes
- Countdown timer, up to 99 hours 59 minutes
- Quick stirring start/stop control
- VFD display for clear visibility
- Silicone-topped plate helps prevent glassware from slipping and marks each stirring point
- Spill-conscious housing minimizes liquid intake
- Spark-free BLDC motor
- Automatically shuts down heater power if overheated
- Smooth stirring start-up helps prevent sample splashing
Specification
| Heating | |
| Temperature range (°C / °F)1 | Top plate, max. 120 / 248 |
| Control mode | Scale |
| Heating power (W) | 1000 |
| Stirring | |
| Speed range (rpm) | 30 to 2,000 |
| Capacity per point at 2,000 rpm (H₂O, mL / cu ft) | 500 / 0.017 |
| Operating mode | 4 (All, Column, Row, Point) |
| Position (Row x Column) | 15 (5 x 3) |
| Point distance (WxD, mm / in) | 117 x 90 / 4.61 x 3.54 |
| Magnetic bar, max. (LxØ, mm / in) | 30 x 8 / 1.18 x 0.31 |
| Load, max. (kg / lbs) | 30 / 66.14 |
| Material | |
| Top plate | Aluminum |
| Body | Powder coated steel |
| Motor type | BLDC (Brushless Direct Current) |
| Dimensions | |
| Top plate (WxD, mm / in) | 385 x 493 / 15.16 x 19.41 |
| Exterior (WxDxH, mm / in) | 395 x 614 x 104 / 15.55 x 24.17 x 4.09 |
| Net weight (kg / lbs) | 15 / 33.06 |
| Other | |
| Timer (stirring) | Max. 99 hrs 59 min |
| Electrical requirements (230V, 50/60Hz) | 5.8 A |
| Electrical requirements (120V, 60Hz) | 11.2 A |
1) Refers to the maximum temperature of the top plate. Actual sample temperature may be lower depending on experiment conditions.
