
Hotplate Magnetic Stirrer MS Series
Benchtop hotplate magnetic stirrer with 184×184mm glass ceramic work plate, 20L stirring capacity, and brushless DC motor for reliable heating and mixing applications.
| Automation Level | manual |
| MS7-H550-S | MS-H-ProA |
| MS-H-Prot | MS-H-S |
| Item No. | 8030122111 |
| 8030122211 | 8060221110 |
| 8030201110 | 8030211010 |
The Hotplate Magnetic Stirrer MS Series combines precision heating and magnetic stirring capabilities in a single benchtop instrument designed for laboratory sample preparation and reaction monitoring. Featuring a 184×184mm glass ceramic work plate and brushless DC motor technology, this stirrer accommodates vessels up to 20L capacity while providing uniform heat distribution and consistent stirring performance.
The stainless steel construction with ceramic coating ensures chemical resistance and thermal stability across demanding laboratory protocols. The 18W brushless motor delivers reliable magnetic coupling for extended operation periods, making this instrument suitable for routine analytical procedures, synthesis reactions, and sample dissolution workflows requiring precise temperature and agitation control.
How It Works
The hotplate magnetic stirrer operates through electromagnetic induction heating of the glass ceramic work plate surface, providing uniform temperature distribution across the 184×184mm working area. The heating element beneath the ceramic surface generates controlled thermal energy that transfers efficiently to laboratory vessels while maintaining temperature stability during extended operations.
Magnetic stirring is achieved through a brushless DC motor system that rotates a magnetic field beneath the work plate. This rotating field couples with magnetic stir bars placed inside sample vessels, creating consistent rotational motion without direct mechanical contact. The 18W motor provides sufficient torque to maintain stirring action in viscous solutions and large volume containers up to 20L capacity.
The glass ceramic work plate material offers superior chemical resistance and thermal shock tolerance compared to metal surfaces, while the stainless steel housing with ceramic coating provides durability against corrosive laboratory environments. The brushless motor design eliminates mechanical wear points, reducing maintenance requirements and ensuring long-term operational reliability.
Features & Benefits
Automation Level
- manual
MS7-H550-S
- MS-H-ProA
MS-H-Prot
- MS-H-S
Item No.
- 8030122111
8030122211
- 8060221110
8030201110
- 8030211010
Work Plate Size
- 184*184mm(7 inch)
Work Plate Material
- Glass ceramic
Aluminum
- Stainless steel with ceramic coated
Max. Stirring Capacity
- 20L
10L
- 20L
Motor Type
- Brushless DC motor
Shaded pole motor
- Brushless DC motor
Motor Input
- 18W
15W
- 18W
Brand
- ConductScience
Research Domain
- Analytical Chemistry
- Environmental Monitoring
- Food Science
- Materials Science
- Microbiology
- Pharmaceutical QC
Weight
- 7.0 kg
Dimensions
- L: 11.2 mm
- W: 21.5 mm
- H: 36.0 mm
Comparison Guide
| Feature | This Product | Typical Alternative | Advantage |
|---|---|---|---|
| Work Plate Material | Glass ceramic (184×184mm) | Entry-level models often use aluminum or basic ceramic surfaces | Provides superior chemical resistance and thermal uniformity for diverse analytical applications. |
| Motor Technology | Brushless DC motor (18W) | Many units use brush-type motors with higher maintenance needs | Reduces operational maintenance and provides consistent magnetic field generation over extended use periods. |
| Stirring Capacity | 20L maximum capacity | Basic stirrers typically handle 5-10L volumes | Accommodates larger batch preparations and multi-sample processing workflows common in analytical laboratories. |
| Construction Material | Stainless steel with ceramic coating | Standard models often use painted metal housing | Enhances durability in corrosive laboratory environments and simplifies decontamination procedures. |
| Combined Functionality | Integrated heating and stirring | Some systems require separate hotplate and stirrer units | Consolidates equipment requirements and provides synchronized temperature-agitation control for complex procedures. |
This MS Series unit combines robust brushless motor technology with glass ceramic work surface for reliable operation in demanding analytical workflows. The 20L capacity rating and chemical-resistant construction support both routine sample preparation and specialized synthesis applications requiring precise temperature and stirring control.
Practical Tips
Verify temperature accuracy using calibrated thermometers placed in representative sample volumes before critical analytical procedures.
Why: Ensures measurement traceability and protocol compliance for temperature-sensitive reactions and dissolution studies.
Clean the glass ceramic surface with appropriate solvents immediately after use to prevent residue buildup that could affect heat transfer.
Why: Maintains uniform temperature distribution and prevents contamination of subsequent samples.
Select stir bar size to approximately 2/3 of the vessel diameter for optimal mixing efficiency in different container geometries.
Why: Provides adequate agitation while preventing bar decoupling during high-speed stirring operations.
Allow adequate cooling time before handling vessels or cleaning the work plate surface after high-temperature operations.
Why: Prevents thermal injuries and thermal shock damage to glassware during routine laboratory procedures.
Monitor stirring consistency by observing vortex formation and stir bar rotation stability throughout extended procedures.
Why: Ensures reproducible mixing conditions critical for analytical method validation and quality control testing.
Check for magnetic interference from nearby equipment if stir bar coupling becomes unstable during operation.
Why: External magnetic fields can disrupt motor performance and compromise stirring effectiveness in sensitive analytical procedures.
Position the unit away from vibration sources and ensure level installation for optimal magnetic coupling performance.
Why: Mechanical stability is essential for consistent stirring action and accurate temperature control during lengthy analytical procedures.
Setup Guide
What’s in the Box
- Hotplate magnetic stirrer main unit
- Power cord (typical)
- User manual and operation guide (typical)
- Magnetic stir bar set (typical)
- Warranty documentation (typical)
Warranty
ConductScience provides standard manufacturer warranty coverage with technical support for operational questions and troubleshooting assistance. Standard warranty terms apply to normal laboratory use conditions.
Compliance
References
Background reading relevant to this product:
What is the maximum temperature range achievable with this hotplate?
Consult product datasheet for specific temperature specifications and heating rate capabilities for your application requirements.
Can the stirring speed be precisely controlled for viscous solutions?
The 18W brushless motor provides consistent magnetic coupling, though specific speed control ranges should be verified in the technical documentation.
Is the glass ceramic surface compatible with strong acids and organic solvents?
Glass ceramic materials typically offer broad chemical resistance, but verify compatibility with specific reagents in your protocols before use.
How does the 20L capacity rating relate to different vessel geometries?
The capacity rating applies to effective stirring volume; actual performance depends on vessel shape, stir bar size, and solution viscosity.
What maintenance procedures are required for the brushless motor system?
Brushless motors typically require minimal maintenance compared to brush-type systems, primarily involving surface cleaning and periodic inspection.
Can multiple units be operated simultaneously on the same bench?
The compact 21.5 × 36.0 cm footprint allows multiple unit installation, though consider heat dissipation and electrical load requirements.
Is temperature monitoring integrated or does it require external sensors?
Consult technical specifications for integrated temperature sensing capabilities and external probe compatibility options.



