EKSPLA is a company specializing in the development and manufacture of solid-state and fiber lasers.
The company cooperates with Cambridge University, NASA, ELI, Max Planck Institutes and other leading universities. The wide range of available laser parameters such as pulse duration, wavelength, average power, pulse energy, repetition rate and others make it easy to select the right laser source from EKSPLA and customize it for different applications as needed.
We provide technical support and commissioning directly at the place where the equipment will be used. Our team of professionals is always ready to help you choose the scientific equipment that best suits your needs.
The FemtoLux 30 femtosecond laser has a tunable pulse duration from < 350 fs to 1 ps and can operate over a wide controlled acousto-optic repetition rate range from single pulse to 4 MHz. Maximum pulse energy reaches 90 µJ for single pulse operation and 250 µJ for pulse mode operation.
The UltraFlux laser system features high repetition rate and tunable wavelength, and combines the advantages of an ultrafast dual output fiber laser with solid-state and parametric chirped pulse amplification technology.
The new OPCPA technology uses a dual-output picosecond fiber laser to power a picosecond DPSS pump laser and a spectrally extended range femtosecond parametric amplifier.
Picosecond lasers
The PT Series lasers combine a 1 kHz DPSS picosecond pump laser and an optical parametric oscillator in a single package. The new wavelength-tunable picosecond laser system provides a range from 210 to 2300 nm.
The PL system is based on a diode-pumped solid-state oscillator (DPSS) in a sealed monolithic package, generating pulses with high repetition rates up to 87 MHz. They are used for pulse amplification up to 30 - 40 mJ output. KD*P and KDP crystals are used to generate second, third and fourth harmonics.
High energy and high power water-cooled Atlantic series picosecond lasers are designed for various industrial applications such as cutting and milling of LCD or OLED displays, laser induced forward transfer (LIFT), glass and sapphire processing, and micromachining of superhard materials.
Nanosecond lasers
The NL Series air-cooled nanosecond DPSS lasers provide high pulse energy at repetition rates on the order of kHz. The end-pumped design makes this laser easy to integrate into a variety of laser equipment. It can be equipped with harmonic generation modules for wavelengths of 532 nm, 355 nm, 266 nm, 213 nm.
ANL's SLM series nanosecond Nd:YAG lasers with electro-optic goodness modulation provide up to 10 J per pulse with excellent stability. These systems are an excellent choice for many applications including pumping OPO, OPCPA or dye lasers, holography, LIF spectroscopy, and remote sensing.
ANL's MM series high-energy lasers are designed to produce high-energy nanosecond pulses at a wavelength of 1064 nm. High pulse energy, excellent pulse-to-pulse energy stability, and excellent beam quality make these systems well suited for applications such as OPO or Ti: Sapphire pumping, materials processing, and plasma diagnostics.
FemtoLux 3 is a state-of-the-art femtosecond fiber laser designed for both R&D and industrial integration. Tunable pulse duration in the range of 300 fs - 5 ps, adjustable repetition rate up to 10 MHz and pulse energy up to 3 µJ allow to optimize laser parameters for the required application.
The FPS series fiber lasers are designed to power solid-state Nd:YAG amplifiers. The compact and cost-effective FPS series delivers pulses of less than 10 ps at 1064 nm with an average output power of up to 200 mW and pulse energy of up to 50 nJ.
LightWire's FFS Series fiber lasers are designed to power solid-state femtosecond Yb:YAG chirped pulse systems. Ekspla offers FFS lasers with either femtosecond pulse duration directly from the fiber or with chirped pulses.
Tunable lasers
PhotoSonus X's high output energy of up to 90 mJ peak-to-peak, wide wavelength tuning range from 650 to 2600 nm, high pulse repetition rate up to 100 Hz, and fast wavelength switching make it an ideal photoacoustic imaging source for high-resolution imaging and high-speed data acquisition.
The NT262 is a unique optical parametric oscillator with narrow linewidth. The novel patented technology provides a powerful output of up to 0.7 W in the wavelength range 210 - 2600 nm while maintaining a linewidth < 3 cm-1, which is extremely advantageous for traditional and specific applications requiring narrow linewidths and high spectral brightness pulses.
The PG module is designed to generate parametric superfluorescence. The spectral properties are determined by the properties of the nonlinear crystal and typically vary with the generated wavelength. To obtain narrowband emission, the output of the OPG is narrowed to 6 cm-¹ and then used to trigger an optical parametric amplifier.
Control elements
A number of Pockels cell drivers are fast high-voltage switches designed to load and unload the cell capacitance with durations of a few nanoseconds. The amplitude of the output pulses delivered to the Pockels cell is approximately equal to the supply voltage. The exception is the DP-FAM series drivers, which allow the amplitude of each pulse to be controlled by an analog input.
Virtually all drivers can operate up to 5 MHz. A range of high voltage DC/DC type power supplies are available to provide a complete driver control solution.
uniLDD is a driver capable of powering virtually any medium to high power laser diode in continuous or pulsed operation. Using different software versions in combination with a set of special technical devices, the uniLDD driver is adaptable for different types of laser diodes and operating modes. Based on DSP technology for high technical performance.
Always available in stock
Wide range of nonlinear crystals for OPO/OPA in the IR range
To familiarize yourself with the full range of products, please contact us or ask a question through the form
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Always available in stock
Wide range of nonlinear crystals for OPO/OPA in the IR range
To familiarize yourself with the full range of products, please contact us or ask a question through the form