Instruments for quantum and photonics


DLnSec

The DLnsec is LABS’ answer to an increasing demand for small, highly-integrable nanosecond diode laser sources for scientific setups. Although the 520 nm / 80 mW version is our most wanted, we build laser systems on our customers’ demand with the specifications required for their experiments. We customize system in the visible range from 400 nm to 520 nm and from 630 nm to 780 nm and in the near infrared (NIR) range from 780 nm to 1500 nm. Available output powers and fiber coupled options depend on their availability on the market. 


Time Taggers

Latest generations of FPGA and SoC devices are characterized by lower and lower propagation delays, that make feasible the realization of high-resolution and high-rate TDCs. With the achieved performance and flexibility, FPGA-based TDCs are enabling technologies for time-based experiments, where physical quantities are, generally, investigated by converting them into time intervals to be measured, finding applications in:

  •  Time-of-Flight (ToF) measurements
  • Time-Correlated Single Photon Counting (TCSPC)
  • Time-of-Flight Laser Raging (ToFLR)
  • Time-of-Flight Positron Emission Tomography (ToF-PET)

Read more …


Pulse Generators

The modular structure of the systems allows to build a Multi Channel Pulse Generator in a compact form factor. Active Technologies Pulse Generators can be used to set up continuous or triggered pulse streams and offers flexibility to address the most challenging applications like:

  • big physics
  • automated testing
  • microwaves
  • modulators
  • wireless communication
  • medical and chemistry.

Read more …


DLnSec

The DLnsec is LABS’ answer to an increasing demand for small, highly-integrable nanosecond diode laser sources for scientific setups. Although the 520 nm / 80 mW version is our most wanted, we build laser systems on our customers’ demand with the specifications required for their experiments. We customize system in the visible range from 400 nm to 520 nm and from 630 nm to 780 nm and in the near infrared (NIR) range from 780 nm to 1500 nm. Available output powers and fiber coupled options depend on their availability on the market. 


Time Taggers

Latest generations of FPGA and SoC devices are characterized by lower and lower propagation delays, that make feasible the realization of high-resolution and high-rate TDCs. With the achieved performance and flexibility, FPGA-based TDCs are enabling technologies for time-based experiments, where physical quantities are, generally, investigated by converting them into time intervals to be measured, finding applications in:

  •  Time-of-Flight (ToF) measurements
  • Time-Correlated Single Photon Counting (TCSPC)
  • Time-of-Flight Laser Raging (ToFLR)
  • Time-of-Flight Positron Emission Tomography (ToF-PET)

Read more …


Pulse Generators

The modular structure of the systems allows to build a Multi Channel Pulse Generator in a compact form factor. Active Technologies Pulse Generators can be used to set up continuous or triggered pulse streams and offers flexibility to address the most challenging applications like:

  • big physics
  • automated testing
  • microwaves
  • modulators
  • wireless communication
  • medical and chemistry.

Read more …