Orbital Shaker LE-OSH105

Orbital Shaker LE-OSH105

lab Expo Orbital Shaker LE-OSH105 delivers a shaking speed range of 50 to 250 rpm for effective sample mixing. It operates quietly, ensuring minimal noise during use. Built-in safety mechanisms detect abnormal loads to prevent damage and ensure reliable performance. Integrated design enhances stability and supports consistent operation. Our Orbital Shaker is ideal for mixing and culturing applications in biology, microbiology, and chemistry laboratories.

$2,098.00 $ 1748

Orbital Shaker LE-OSH105 - Specifications

Shaking Speed 50 to 250 rpm
Shaking Orbit 30 mm
Maximum Load 3 Kg
Fuse Protector 250V, 1A
Timing Range 1min to 99h59min
Power Consumption 50 W
Power Supply AC100V to 230V, 50/60Hz
Dimension 284 × 264 × 108 mm
Net Weight 5.6 Kg

Orbital Shaker LE-OSH105 - Key Features

  • LED display with real-time speed monitoring
  • Speed adjustable from 50 to 250 rpm
  • Brushless DC motor for quiet operation
  • Programmable timing function up to 99h59min
  • Uniform shaking with 30mm orbit diameter

Orbital Shaker LE-OSH105 - Applications

FunctionImplementation
Mixing biological samples50 to 250 rpm enables adjustable agitation for cell cultures
Microbiology applications30 mm orbit ensures uniform sample suspension during culturing
Chemistry lab workflows1min to 99h59min timing supports extended reaction monitoring
Quality control testingMaximum load 3 Kg accommodates multiple sample vessels
Clinical diagnostics usePower consumption 50 W allows continuous low-energy operation

Orbital Shaker LE-OSH105 - Catalog


Orbital Shaker LE-OSH105

Orbital Shaker LE-OSH105

Related Orbital Shakers

Lab Expo Orbital Shakers operate on stabilized orbital drive architecture to deliver controlled agitation across multiple vessel types. This orbital shaker lab system uses brushless DC motor technology for quiet, low-maintenance operation with precise speed regulation. Rigid platforms, smooth motion control, and intuitive adjustment enable repeatable mixing for microbiology, cell culture, and chemical processing workflows.