OptoBot® 500 Optoelectronic Tweezer System
Optoelectronic Tweezer System
| Cat. No. | Specification | Unit | Price | Quantity |
|---|---|---|---|---|
| ACSS556225-01 | Precision DMD projection for enhanced optical performance | Each | Inquiry |
|
Product Description
Product Description
The OptoBot® 500 is the world's first commercial optoelectronic tweezer system for scientific research. It integrates a Digital Micromirror Device (DMD) and waveform generation to precisely manipulate micro- and nano-scale targets (e.g., metal/dielectric particles, nanomaterials, cells) in a label-free, non-contact manner. It includes our intuitive OptoMind® 500 software for motion control.
Features
· Ultra-HD microscopy compatible with multiple objectives
· Long-life, stable LED illumination
· Multi-pattern graphics support
· Custom/multi-band objectives
· Animations from image sequences
· Long-life, stable LED illumination
· Multi-pattern graphics support
· Custom/multi-band objectives
· Animations from image sequences
Applications
Application Description
· Manipulation and Assembly of Nanomaterials
Offers parallel manipulation with high flexibility and throughput for the precise handling of various microspheres and nanomaterials.
· Control of Micro-Gear Robots
Enables high-precision positioning, directional movement, and multi-degree-of-freedom control (translation, rotation, tilt) of micro-gear robots with high-throughput, multitasking capabilities.
· Integration with Microfluidics
Combine optoelectronic manipulation with microfluidic techniques for continuous sample delivery and high-throughput sorting, separation, and processing.
· Life Science Applications
Perform single-cell manipulation, separation, and analysis; characterize cellular properties; conduct cell electroporation, fusion, and lysis; and assemble biological tissue structures.
· Micro-Motor Control
Enables non-contact, parallel manipulation of micro- and nano-scale objects (e.g., cells, microorganisms) for directional movement, precise positioning, and targeted drug delivery.
Offers parallel manipulation with high flexibility and throughput for the precise handling of various microspheres and nanomaterials.
· Control of Micro-Gear Robots
Enables high-precision positioning, directional movement, and multi-degree-of-freedom control (translation, rotation, tilt) of micro-gear robots with high-throughput, multitasking capabilities.
· Integration with Microfluidics
Combine optoelectronic manipulation with microfluidic techniques for continuous sample delivery and high-throughput sorting, separation, and processing.
· Life Science Applications
Perform single-cell manipulation, separation, and analysis; characterize cellular properties; conduct cell electroporation, fusion, and lysis; and assemble biological tissue structures.
· Micro-Motor Control
Enables non-contact, parallel manipulation of micro- and nano-scale objects (e.g., cells, microorganisms) for directional movement, precise positioning, and targeted drug delivery.
Related Products
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