Directed Energy & Advanced Lasers
Laser Components
A broad portfolio of laser components engineered for performance, reliability, and integration.

Amplifiers
Multi-kilowatt-class fiber amplifiers in continuous-wave and pulsed architectures, with output power, linewidth, and efficiency configurable for coherent, spectral, or dichroic beam combining. Low-SWaP modular packaging enables uncooled and battery-powered operation in on-gimbal and integrated configurations, delivering the power margin high-energy laser systems require without the thermal and prime-power overhead.
- Engineering
- Modular, scalable, low-SWaP designs with easy-to-use electrical and optical interfaces
- Performance
- Multi-kilowatt-class CW and pulsed output, with linewidth and efficiency tailored to coherently combined (CBC), spectrally combined (SBC), or dichroically beam combined architectures
- Integration
- On-gimbal and integrated platform configurations; configurable for uncooled or battery-powered operation
- Qualification
- Engineered for reliability under extreme environmental stress

Beam Combiners
Modular, serviceable architecture in which output power scales directly with the number of installed laser modules — capability added incrementally rather than designed in from the outset. Low-SWaP compact packaging and ruggedized construction carry that flexibility into harsh operational environments, matching output to evolving directed energy mission requirements.
- Engineering
- Modular, low-SWaP architecture, scalable by installed laser module count
- Performance
- Output power scales with the number of installed laser modules
- Serviceability
- Field-serviceable modular construction
- Qualification
- Ruggedized for harsh environments

kWIC
Engineered for kilowatt-class laser systems, eliminating the fiber splicing that has traditionally made amplifier replacement a specialized maintenance task. Precise optical alignment is held across a rugged, repeatable connection, and built-in verification confirms alignment before the laser fires — enabling line-replaceable amplifier modules that operators can swap in minutes.
- Engineering
- Kilowatt-class optical interconnect, engineered for repeatable field mating without fiber splicing
- Performance
- Maintains precise optical alignment, with built-in verification prior to laser fire
- Qualification
- Ruggedized for operational field environments
- Serviceability
- Amplifier replacement in minutes — no fiber splicing, no specialized technicians
High Power Diode Modules
Available as single emitters, bars, stacks, and fiber-coupled modules, delivering high output power with the efficiency, wavelength stability, and operating lifetime that complex optical systems require. Integrated fiber-coupling and thermal-management solutions, combined with configurable packaging, carry that performance into harsh operating environments.
- Engineering
- Single emitters, bars, stacks, and fiber-coupled modules, with configurable packaging for system integration
- Performance
- High-power operation with stable beam quality, high efficiency, and wavelength stability
- Reliability
- Long operating lifetimes, supported by integrated fiber-coupling and thermal-management solutions
- Qualification
- Environmentally hardened for harsh conditions

Faraday Rotators & Isolators
Precision light control and protection from back reflections in high-power and ultrafast laser systems, shielding upstream oscillators and amplifiers from reflected energy that would otherwise degrade performance or damage components.
- Engineering
- Free-space and fiber-coupled configurations, with aperture and wavelength tailored to system requirements
- Performance
- High isolation ratio with low insertion loss, sustained under high average power
- Protection
- Isolates oscillators and amplifiers from back reflections in high-power and ultrafast systems
- Stability
- Maintains polarization control and optical stability under thermal load

Interferometric Fiber-Optic Gyroscope (IFOG) Coils
Manufactured utilizing a highly controlled fiber‑winding process that ensures low tension, high fiber density, and minimal winding gaps. Near‑perfect symmetry between counter‑propagating fibers enables ultra‑stable interferometric performance.
- Engineering
- Custom-engineered, tailored to system-level mission requirements
- Performance
- Optimized for ultra-low noise, long-term stability, and precision navigation
- Qualification
- Qualified for defense, aerospace, industrial, and commercial applications
- Domains
- Trusted across land, sea, air, and space
Build with Attalon
Vertically integrated. Domestically sourced.
Build with proven directed energy components and partner with our team to configure the right solution for your system.



