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Digital Linear Shaker LMLS-A102 engineered to deliver precise, linear motion for mixing, blending, and agitating samples or containers. With a loading capacity of 3 Kg, it functions smoothly within the shaking speed range of 40 to 350 rpm. Improved with a user-friendly digital control panel allows intuitive and effortless operation. Equipped with a brushless DC motor, it guarantees reliable performance and hassle-free maintenance.
Specifications
| Orbital Diameter | 20 mm |
| Max. load capacity (with platform) | 3 kg |
| Shaking Speed range | 40 – 200 rpm |
| Shaking Motion | Linear |
| Time setting range | 1 min – 19 h 59 min |
| Speed display | LED |
| Timer display | LED |
| Ambient Temperature | 5 to 40 °C |
| Humidity | 80 % RH |
| Protection class | IP21 |
| Motor type | DC motor |
| Motor input power | 16 W |
| Motor output power | 10 W |
| Power | 20 W |
| Voltage | 100 – 240 V, 50 / 60 Hz |
| Dimension [W×D×H ) | 270 × 330 × 110 mm |
| Weight | 3.1 kg |
Pricing
| Product | Price | Unit | Action |
|---|---|---|---|
| Digital Linear Shaker LMLS-A102 | $ 1825 | Pack of 1 |
Features
Double LCDs for independent display of time and speed
A Brushless DC motor ensures maintenance-free
Highly reliable, and quiet operation
Speed detector for speed protection and detection
Effortless handling with safety and sanitation
Standard Accessories
| Model No | Specifications | Quantity | Image |
|---|---|---|---|
| DP2 | Dish attachment with non-slip mat Dimension [W x D]: 24 x 21.5 cm | 1 |
Optional Accessories
| Model No | Specifications | Quantity | Image |
|---|---|---|---|
| UA1 | Universal attachment with 3 bars Dimension [W x D]: 24 x 24 cm | 1 | |
| DP3 | Dish attachment with non-slip mat Dimension [W x D]: 28 x 28 cm | 1 | |
| DP4 | Large size dish attachment with non-slip mat Dimension [W x D]: 30 x 23 cm | 1 | |
| LR2 | Lengthways roller attachment Dimension [W x D]: 24 x 24 cm | 1 | |
| BR2 | Bar for UA1 universal attachment | 1 | |
| CS1 | Connect sticks for double dishes shaker | 1 | |
| FC2 | Fixing clip attachment | 1 | |
| FC3 | Fixing clip for flask volume 25 mL, used with FC2 | 9 | |
| FC4 | Fixing clip for flask volume 50 mL, used with FC2 | 9 | |
| FC5 | Fixing clip for flask volume 100 mL, used with FC2 | 9 | |
| FC6 | Fixing clip for flask volume 200/250 mL, used with FC2 | 4 | |
| FC7 | Fixing clip for flask volume 500 mL, used with FC2 | 2 |
Applications
Digital Linear Shaker is used in cell culture, biochemistry, and molecular biology research for mixing, blending, and agitating samples.
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Frequently Asked Questions
1 What is a Linear Shaker?
A Linear Shaker is an apparatus designed to produce controlled, linear vibrations used primarily for testing and simulation.
2 How does Linear Shaker work?
It operates by converting electrical energy into mechanical vibrations, typically using an electrodynamic or hydraulic mechanism, allowing the Linear Shaker to simulate real-world motion for component testing.
3 Can Linear Shaker be used for environmental testing?
It can be integrated into environmental chambers to simulate combined conditions such as vibration, temperature, and humidity, allowing the Linear Shaker to replicate real-world stressors.
4 What kind of maintenance does Linear Shaker require?
Routine maintenance includes checking for mechanical wear, and ensuring the controller and power systems are functioning properly for long-term reliability.
5 Can Linear Shaker be used for automotive component testing?
It is widely used in automotive testing to simulate road vibrations and assess the durability and performance of components such as suspension systems, dashboards, and electronics.
6 How does Linear Shaker help in aerospace vibration testing?
It is essential in aerospace for simulating flight-induced vibrations to test components like avionics, fuselage structures, and satellite systems under extreme conditions.
7 How does Linear Shaker support medical device testing?
It helps test the durability and stability of medical devices such as implants, monitors, and portable equipment by simulating vibrations encountered in real-world usage and transport.
8 Is Linear Shaker applicable for military-grade equipment testing?
It is essential in defense applications for testing weapons systems, communication equipment, and ruggedized hardware under combat-level vibration environments.
9 How does Linear Shaker contribute to marine equipment testing?
It is used in marine applications to simulate hull and engine vibrations, allowing testing of electronics, navigation equipment, and structural components in offshore and underwater environments.
10 Can Linear Shaker support quality control in high-speed manufacturing?
It is implemented in manufacturing environments to perform random vibration and sine sweep tests, ensuring that high-speed production parts meet durability standards.