Advanced Laser Engineering & Specialized Photonics from France
ALPhANOV Industrial Laser & Photonic Systems
SpareX delivers the specialized portfolio of precision laser instruments, fault injection test systems, and fiber-optic modules engineered by ALPhANOV Technology Center (France). From integrated LFI semiconductor test stations to kilowatt-class optical combiners, PCF fiber interfacing, and REVOLVE laser micromachining modules, we support advanced microelectronics, quantum optics, and high-precision manufacturing worldwide.
Explore ALPhANOV semiconductor testing and industrial laser solutions below, or submit your technical specifications for an engineering evaluation and commercial quotation.
ALPhANOV Single (S-LMS), Double (D-LMS), and Quadruple (Q-LMS) analytical laser microscopes are engineered for advanced hardware security assessment, vulnerability discovery, and failure analysis of integrated circuits using Laser Fault Injection (LFI) and Thermal Laser Stimulation (TLS) modalities.
The systems execute localized, repeatable stimulation via focused pulsed near-infrared and visible laser beams directed through either the front-side metallization or the polished backside silicon substrate of microcontrollers, secure smart cards, FPGAs, and cryptographic ASICs.
The specialized optical bench features high-numerical-aperture apochromatic objectives with motorized spherical aberration correction optimized for bulk silicon penetration, 50 nm motorized XYZ scanning stages, and integrated trigger logic for clock-synchronized fault execution.
ALPhANOV LFI Pico Laser and PULS picosecond pulse laser systems are built specifically for precise photoelectric excitation of semiconductor microstructures and time-resolved transient analysis in high-speed microelectronic logic gates.
Generating ultra-short optical pulses ranging from 50–100 ps up to 2 ns, these lasers deliver temporal jitter below 10 ps relative to external electrical clock triggers.
Tailored for turnkey integration into semiconductor fault injection stations, optical probing rigs, and time-resolved photoemission benches, each unit offers diffraction-limited output beam quality (M² < 1.1) and continuous motorized or electronic pulse energy attenuation exceeding 40 dB dynamic range.
1064 nm, 1030 nm, and 532 nm wavelengths, pulse duration from 50 ps, jitter < 10 ps, M² < 1.1, polarization-maintaining delivery.
ALPhANOV PDM+ (Pulse-on-Demand Module) and PDM HPP (High Peak Power) integrated laser diode modules are turnkey optoelectronic pulse generators featuring direct digital parameter control.
Encapsulating a high-reliability telecom-grade Butterfly laser diode with single-mode fiber pigtail, ultra-fast low-noise current driver, TEC Peltier temperature stabilization, and microprocessor control logic into a compact industrial housing, PDM units generate single on-demand pulses, complex burst trains, and variable repetition rates up to tens of megahertz without thermal wavelength drift or pulse envelope distortion.
808 nm to 1550 nm wavelengths, pulse duration from 1 ns to CW, peak power up to tens of watts, USB/RS232 industrial APIs.
ALPhANOV kilowatt-class fused biconical taper (FBT) multi-mode optical combiners merge the pump power from multiple high-brightness diode modules and an optional single-mode signal core into a double-clad active fiber.
Engineered for continuous industrial operation in multi-kilowatt fiber laser engines for cutting, welding, and additive manufacturing, these combiners feature insertion efficiencies exceeding 95–97%, exceptional beam propagation stability (M² < 1.15 on the signal channel), integrated cladding power strippers (CPS), and liquid-cooled protective aluminum enclosures.
(2+1)>1, (6+1)>1, (18+1)>1 architectures, pump throughput up to 3–5 kW, >95% transfer efficiency, liquid-cooled housing.
ALPhANOV S-CB high-power fiber amplifier units utilize active ytterbium-doped photonic crystal fibers (Large-Pitch PCF) featuring large mode field diameters exceeding 40–60 µm.
Designed for distortion-free amplification of femtosecond and picosecond pulse trains up to sub-millijoule energy regimes, the architecture suppresses detrimental nonlinear optical phenomena including Stimulated Raman Scattering (SRS) and Self-Phase Modulation (SPM).
S-CB modules operate as primary power booster stages in ultrafast micromachining lasers, particle accelerators, and high-brightness white-light supercontinuum sources.
Active PCF cores >40–60 µm MFD, average power up to 100 W, PER > 18–20 dB, protective fused quartz end-caps.
ALPhANOV polarization-maintaining photonic crystal fibers (such as PCF-PM-20) and associated micro-optical patch cords provide single-mode beam transmission across ultra-broadband spectral windows from the UV to near-infrared without higher-order spatial mode distortion.
Utilizing internal hexagonal arrays of hollow air capillaries surrounding a solid quartz core, ALPhANOV seals the fiber facets with monolithic, anti-reflection coated fused silica end-caps to prevent optical breakdown at peak laser irradiance levels reaching gigawatts per square centimeter.
The innovative ALPhANOV REVOLVE opto-mechanical module upgrades standard industrial ultrafast laser workstations into high-throughput laser turning lathes.
Facilitating synchronized rotational positioning of cylindrical micro-components at rotational velocities up to tens of thousands of RPM under synchronized galvanometer scanning beams, REVOLVE produces medical guide pins, cardiovascular stents, micro-nozzles, precision orifices, and horological gears out of hard alloys, quartz, and sapphire without heat-affected zones, burrs, or mechanical stress.
Rotational speed 30,000–60,000 RPM, radial run-out < 0.5 µm, parts from 50 µm diameter, optical-quality finish Ra < 0.1 µm.
The AeroDIODE optoelectronic family, incubated by ALPhANOV, provides high-speed pulsed laser diode drivers, Pockels cell electro-optic drivers, and digital pulse delay generators.
Engineered for nanosecond- and sub-nanosecond risetimes with peak drive currents reaching hundreds of amperes, these instruments guarantee tight multi-channel synchronization, low-jitter optical gating, and integrated Peltier TEC thermal control.
The modules serve demanding environments in LIDAR development, quantum communications, laser spectroscopy, and industrial laser system integration.
CCS, CCM, and Shaper series, <1 ns rise time, <5 ps temporal jitter, comprehensive diode protection, LabVIEW & Python APIs.
Official ALPhANOV Technical Literature & Datasheets
Engineering Selection of Laser Sources and Optical Assemblies
To select the proper ALPhANOV laser equipment or optical assembly for your application, please detail your target operational parameters: laser wavelength, required pulse duration (picoseconds, nanoseconds, or continuous-wave), peak and average optical power, and intended methodology (laser fault injection, thermal stimulation, micro-turning, or amplifier building). SpareX application engineers verify spatial beam quality requirements (M²), active fiber core diameters, numerical apertures, quartz end-cap specifications, and hardware trigger synchronization interfaces to match your host instruments.
Genuine Replacement Optics, Diode Drivers, and Modular Assemblies
For semiconductor test facilities, photonics research institutes, and laser machining centers, SpareX supplies authentic ALPhANOV replacement modules including PDM+ and PDM HPP Butterfly diode units, kilowatt-class fused biconical taper combiners (N+1>1), S-CB specialty-core amplifiers, PCF-PM-20 polarization-maintaining photonic crystal fibers, high-damage-threshold fused silica end-caps, adjustable collimators, REVOLVE high-speed spindle repair assemblies, and AeroDIODE sub-nanosecond pulsed diode drivers and Pockels cell controllers.
Contact SpareX ALPhANOV Application Specialists
Submit your bill of materials, equipment designations, or functional requirements for ALPhANOV laser systems and components. SpareX application engineers will promptly prepare a comprehensive commercial quotation with guaranteed lead times and technical verifications.