All Elliot Scientific Products

All Elliot Scientific Products

  •  Pillars, Posts, Pedestals, Bases and Clamps
  •  Lens, Mirror, Rotation, Filter & 'V' Mounts
  •  Iris Diaphragms
  •  Component Kits
  •  Optical Tweezers

Elliot Scientific developed the Lab Essentials range of components for mounting and moving optics and devices within experiments set up on laboratory optical tables.


Optical Tweezers

  •  Open architecture Optical Tweezers
  •  Self-contained Optical Tweezers
  •  Single-spot microscope upgrades
  •  Multiple-spot Optical Tweezers
  •  Force measurement using QPD or CPT

Elliot Scientific developed a complete, stand-alone and portable Optical Tweezers for researchers to begin their work on day one instead of spending their time designing, building, and calibrating an Optical Tweezers system from scratch. This award-winning unit was derived from open architecture designs, and led to a range of add-ons for commercial research microscopes. Today, Elliot Scientific can supply fully integrated Optical Tweezers comprising microscope, lasers, imaging system, optional force measurement, specialist software and the complex opto-mechanical design to make it all work straight out of the box.


  •  Fixed & Kinematic mounts
  •  Pillars & Posts
  •  Pedestals & Bases
  •  Clamps & Accessories
  •  Iris diaphragms

Elliot Scientific is a leading manufacturer of opto-mechanical components for use with optical tables and benches. This comprehensive Lab Essentials range offers a wide variety of components useful in the development of complex experiments that require the mounting and precision movement of optics and mirrors.

Automated Alignment Systems

  •  DAli 3 automatic alignment system
  •  2-axis control
  •  Standard or Long Travel piezos
  •  Numerous fibre alignment applications
  •  Ideal for drift compensation

Elliot Scientific developed the DAli 3 two-axis piezo controller for automated photonic device alignment with piezo-driven flexure stage assemblies. DAli 3 facilitates the rapid and automated alignment of photonic components across a wide range of applications. For example, fibre to fibre or fibre to laser diodes or waveguides. The system has been designed to be compatible with a wide range of external optical detectors and piezo actuators, and can be operated in pairs for critical alignment tasks that require the simultaneous optimisation of two components to a third one.

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