The laser beam containing the trapped particle can be directed anywhere within the field of view by manually steering the conjugate optics. More available power for the battery pack. Variable power is available for changing the strength of the optical trap. Features Cell manipulation using conjugate beam steering optics or microscope XY stage Z trapping using microscope focus stage Attaches to microscope camera or epi-fluorescence port nm fibre laser with variable power Uses microscope camera and illumination Rotation of birefringent particles with optional polarisation optics. Suitable for all applications and especially so for use in high current applications.

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Click picture below for local and U. All Price incl VAT but are plus delivery. Are they any disadvantages associated with the use of Titanate within the cell? A standard Lithium Titanate cell has a slightly lower voltage than a standard Lithium Polymer cell, however the use of some rather “exotic” chemicals within the cell now allow our cells to operate at a nominal voltage of 3. Optical module with microscope interface Conjugate beam steering optics nm laser with power monitor and display Contact us for more information or a formal quote.

In addition not only can the charge times be reduced, but the lifespan of the battery is hugely increased above and beyond that of a conventional Lithium Polymer battery.

More available power for the battery pack.

For applications involving rotation of birefringent particles an optional polarisation optic and rotation mount can be added. Top Model Kulbutin Special Electro version in yellow this is a one off. Click picture below for shop 330. The Lithium Titanate electrode drastically reduces damage from charging and furthermore substantially reduces the risk of cell expansion and membrane rupture.

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Lower heat build-up during the discharge cycle. The nm fibre laser gives a stable high quality TEM 00 beam with an M 2 of 1.

The very low internal resistance of Lightspeed Batteries typically 8 — 10 milliohms give huge benefits such as: Ability to charge at higher charge rates It is important to allow the battery oightspeed cool below 25c before charging commences. It is designed to be attached to a high quality commercial instrument, converting it into a Photonic Force Microscope PFM.

A range of interfaces are available depending on the make and model of microscope.

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Suitable for all applications and especially so for use in high current applications. The optical module attaches to the microscope either through an additional module such as an epi-fluorescence attachment or a camera port. The E Optical Tweezers System is designed for single spot trapping and manipulation of micron sized particles.

The maximum operational voltage of the cell is 4. One example of this, is the use of “Lithium Titanate” on the “Anode” rather than the normal “Carbon Anode”. Contact us for more information or a formal quote.

Click picture below for. The E upgrade attachment is for researchers wishing to undertake simple single particle trapping and manipulation experiments.

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Lightspeed cells use only the lightspedd quality components coupled with some very special chemicals in their construction. The E is manufactured under license from The University of St. Individual cells are connected together using ultra low resistance materials, with the main output cabling being constructed exclusively from silicon coated OFC Oxygen Free CopperHigh quality gold plated “Deans” covered in “Glued” heatshrink are used to terminate all Lightspeed Batteries.

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The only disadvantages associated with Lithium Titanate cells are: Variable power is available for changing the lightseped of the optical trap. Lower voltage drop under loads, which equates directly to a much higher RPM per volt from your electric motor. The system comprises an optical module containing the laser, beam steering optics and the microscope interface. Single beam – Standalone or Integrated Systems. This high beam quality when used with high NA microscope objectives gives the tightly focused Gaussian spot required for efficient optical traps it both XY an Z directions.

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Features Cell manipulation using conjugate beam steering optics or microscope XY stage Z trapping using microscope focus stage Attaches to microscope camera or epi-fluorescence port nm fibre laser with variable power Uses microscope camera and illumination Rotation of birefringent particles with optional polarisation lightsped.

The laser beam containing the trapped particle can be directed anywhere within the field of view by manually steering the conjugate optics. West Wales Shooting Supplies.