Introduction
Linear Decolorizing Shaker comes with 4 mm amplitude and supports 2.5 kg load capacity for various mixing demands. It runs at speeds from 100 to 350 rpm for a wide range of lab applications. Timer with up to 99 hours setting enables extended operation for prolonged experiments and protocols. Its remote PC control and RS232 port improve workflow efficiency and data traceability. perfect for sample agitation, decolourization, and staining tasks in research or diagnostic labs.
This decolorizing shaker is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Linear Decolorizing Shaker is designed for precise mixing and staining procedures. It is ideal for histology labs, research environments, and decolourization applications involving various sample formats.
Specifications
| Orbital Diameter | 4 mm |
| Max. Load Capacity (with platform) | 2.5 kg |
| Motion Type | Linear |
| Motor Type | Brushless DC motor |
| Speed Range | 100 to 350 rpm |
| Speed Display | |
| Timer Display | |
| Time Settings Range | 1 min to 99 h 59 min |
| Protection Class | IP21 |
| Data Connector | RS232 |
| Permissible Ambient Temp and Humidity | 5 to 40 °C, 80% RH |
| Voltage, Frequency | 100 to 240 V, 50/60 Hz |
| Power | 30 W |
| Motor Input Power | 28 W |
| Motor Output Power | 15 W |
| Dimension (W×D×H) | 300 × 340 × 100 mm |
| Weight | 8.1 kg |
Features
Stable motion for gentle mixing
Quiet noise operation
Stainless tray compatible
Variable platform support
Smooth orbital motion
Extended timer setting
Wide temperature tolerance
FAQs
1. What types of containers can be used with the Linear Decolorizing Shaker ?
The Linear Decolorizing Shaker accommodates various container types, including flasks, tubes, and trays. Its dish platform with a non-slip mat and optional sticky pad ensure stable placement. Multiple accessories allow flexibility for different volumes. This makes it ideal for labs handling diverse sample sizes in a single protocol.
2. Can the Linear Decolorizing Shaker be used for delicate or heat-sensitive samples?
Linear Decolorizing Shaker provides gentle agitation, making it suitable for delicate samples. The linear motion reduces foam formation and helps maintain the integrity of fragile materials. Users can adjust the speed to meet different application needs. It's especially useful in protocols where controlled mixing is critical.
3. What safety features are included in the Linear Decolorizing Shaker ?
The Linear Decolorizing Shaker includes a stable base and anti-slip components for secure operation. Optional transparent shields add protection during use with sensitive or infectious samples. Users should ensure correct placement of vessels to prevent imbalance. The unit also features overload protection to enhance operational safety.
4. How to select the right accessory for the Linear Decolorizing Shaker ?
The Accessories for Linear Decolorizing Shaker depend on your sample type and vessel size. For tubes, silicone mattresses are available in different configurations. Flasks of various volumes can be secured using dedicated fixing clips. Consult your application requirements to choose the correct combination.
5. Is the Linear Decolorizing Shaker compatible with high-speed applications?
It Linear Decolorizing Shaker supports speeds up to 220 rpm, suitable for most mixing needs. While it can handle moderate agitation, it is optimized for low to medium-speed decolorizing protocols. The linear motion ensures sample stability at higher speeds. For high-speed shaking, balanced load and accessory compatibility are essential.
6. What is the primary function of the Linear Decolorizing Shaker in lab processes?
The Linear Decolorizing Shaker is designed to provide back-and-forth motion for consistent sample agitation. linear motion helps ensure even mixing, making it highly effective for staining, destaining, and hybridization procedures. This motion style enhances interaction between samples and reagents, resulting in reproducible outcomes. It is especially useful for tasks requiring gentle but thorough mixing. The shaker is well-suited for applications in molecular biology, diagnostics, and biochemistry labs.
7. How does linear motion benefit experiments compared to orbital or transference motion?
Linear Decolorizing Shaker offers direct linear agitation, which promotes uniform exposure of samples to reagents. This motion is ideal when splash control and directional movement are important for sample integrity. It minimizes turbulence, reducing the risk of cross-contamination or sample loss. Compared to orbital shakers, linear motion provides more controlled contact. This makes it preferred in protocols like membrane hybridization and gentle extraction procedures.
8. What types of vessels are compatible with the Linear Decolorizing Shaker?
Linear Decolorizing Shaker is compatible with various lab containers such as flasks, Petri dishes, beakers, and microplates. units offer multiple platform options to support different vessel sizes and formats. You can mix samples of varying volumes without the need for frequent platform changes. This flexibility makes it efficient for labs handling diverse experimental needs. It also supports multitasking and batch processing in busy environments.
9. Can the Linear Decolorizing Shaker operate for extended periods safely?
Linear Decolorizing Shaker is equipped for both continuous and timed operations to meet protocol demands. It features a maintenance-free brushless DC motor that ensures reliable performance over long periods. Over-speed protection adds an extra layer of safety during extended use. The unit is designed to maintain consistent speed without overheating or vibration issues. This makes it ideal for long-term hybridization or incubation protocols.
10. How does the Linear Decolorizing Shaker differ from orbital or transference shakers?
The Linear Decolorizing Shaker provides straight-line agitation that ensures consistent movement across the sample surface. linear motion is more directional, reducing turbulence and splash risks compared to orbital options. The design supports applications requiring gentle but firm agitation. shakers are preferred for membrane washes and nucleic acid hybridization.
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