Ultrafast laser power meters

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  • Repetition rate up to 1 MHz
  • Sampling rate up to 500 measurements/s
  • Active area: 14×14 mm
  • Wavelength range: 250 – 1100 nm

Mr. Markus Eib

BLINK HS is the latest development from LaserPoint and is one of the ultrafast laser power meters. It is specifically designed to measure ultrafast lasers with pulse durations down to femtoseconds and therefore offers the ultimate solution for applications that require accurate energy measurements of ultrafast pulsed lasers. In particular, it is suitable for monitoring fast manufacturing processes in production lines and for detecting fast instabilities in ultrashort pulse lasers.

When laser applications require high-speed measurements, BLINK HS is an excellent choice because it offers a sub-microsecond response time, allowing users to measure the energy of each individual pulse. These pulses are emitted by laser sources with repetition rates up to 1 MHz and pulse durations up to femtoseconds. In addition, the device can handle an average power of up to 20 W. This combination of properties is not offered by pyroelectric or photodiode sensors together.

Furthermore, the high damage threshold and efficient water cooling of BLINK HS allows it to withstand energies of up to 10 mJ.

The ultrafast laser power meter BLINK HS is suitable for various users. For example, laser manufacturers use it to detect fast instabilities in laser sources. At the same time, system integrators use it to monitor fast processes in production lines. By combining the advantages of photodiodes, pyroelectric and thermal detectors, BLINK HS is very versatile. This means that it measures most commercially available laser sources - from ultrashort pulse to CW lasers.

With a sampling rate of up to 500 Msample/s, the High Speed Meter (HSM) enables precise energy measurements for each ultrashort pulse.

You can find more products related to laser performance here:

www.laserpoint.eu/de

Applications

  • Quality assurance in semiconductor manufacturing: Monitoring the energy and stability of femtosecond lasers to optimize semiconductor production.
  • Monitoring high-speed manufacturing processes: Real-time monitoring of laser energy in automated production lines to ensure precise material processing.
  • Research and development in laser technology: Analysis of the performance and stability of ultrashort pulse lasers for the development of new laser technologies.
  • Medical laser applications: Precise control of laser power in medical applications such as laser surgery to reduce side effects.
  • Detection and monitoring of instabilities in ultrashort pulse lasers: Real-time detection of instabilities to ensure laser efficiency and safety.
  • Calibration and maintenance of laser systems: Regular calibration of laser systems to ensure optimal performance and consistency.

data sheet

Brochure_Blink HS

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