United Spectrum Instruments delivers advanced multi-axis picosecond and femtosecond laser micromachining platforms tailored to Indian industry and research needs. Beyond system supply, we provide expert application consultation, system configuration, installation, operator training, and long-term service support. Our deep understanding of ultrafast laser processes ensures reliable performance, faster deployment, and scalable solutions. Partnering with United Spectrum Instruments means gaining a trusted technology partner committed to precision manufacturing excellence and future-ready micromachining solutions.
Industrial Laser System – Laser Micro Machining System
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DOWNLOAD NOW!Multi-Axis Ultra-Precision Picosecond/Femtosecond Laser Micromachining Platform
Multi-Axis Ultra-Precision Picosecond and Femtosecond Laser Micromachining Platform for Advanced Manufacturing
The Multi-Axis Ultra-Precision Picosecond/Femtosecond Laser Micromachining Platform is engineered for next-generation manufacturing environments where accuracy, flexibility, and process stability are non-negotiable. Designed to support complex microfabrication tasks, this platform combines ultrafast laser technology with multi-axis CNC motion to deliver exceptional precision and repeatability. Its modular architecture enables seamless adaptation for drilling, cutting, structuring, ablation, and surface texturing across a wide range of materials. Ideal for both industrial production and advanced R&D, this platform empowers manufacturers to meet evolving micro-manufacturing challenges with confidence.
Understanding Multi-Axis Ultra-Precision Picosecond/Femtosecond Laser Micromachining Platform
This ultra-precision laser micromachining platform integrates picosecond and femtosecond laser sources with multi-axis motion control, enabling non-contact, cold material processing. Ultrashort laser pulses remove material through controlled ablation, minimising thermal effects and preserving material integrity. Simultaneous linear and rotational axes allow access to complex geometries, angled surfaces, and multi-sided components. The modular system design supports customised configurations, ensuring the platform can evolve with changing process requirements while maintaining micron-level accuracy, high throughput, and exceptional process reliability.
Technical Specifications
| Parameter | Specification |
| Axis | Linear , Rotary |
| Drive | direct drive, Torque drive |
| Acceleration | 5 m/s², 160 1/s² |
| Positioning accuracy | 1,5 µm / 5 arcsec |
| Repeatability | 1 µm / 2 arcsec |
| Dimension | D = 1536 / W = 2036 / H = 2219 |
| Total Weight | 3700 Kg |
Key Features and Advantages
Ultrafast Picosecond and Femtosecond Laser Processing
Ultrashort laser pulses enable cold ablation, delivering precise material removal with virtually no heat-affected zone.
Multi-Axis Ultra-Precision Motion Control
Simultaneous linear and rotational axes support complex 3D geometries, angled drilling, and multi-sided micromachining with exceptional accuracy.
Modular, Scalable Architecture
The platform allows easy integration of application-specific hardware modules, ensuring adaptability for future manufacturing requirements.
Exceptional Micron-Level Accuracy
Achieves fine features, sharp edges, and tight tolerances required for advanced microfabrication applications.
Wide Material Processing Capability
Suitable for metals, ceramics, polymers, glass, semiconductors, composites, and advanced coatings.
High Throughput with Process Stability
Optimised motion systems and laser control enable high-speed micromachining without compromising precision or surface quality.
Advanced CNC Control and Diagnostics
Intuitive CNC software provides real-time process monitoring, parameter optimisation, and repeatable production workflows.
Non-Contact, Clean Manufacturing
Eliminates tool wear, mechanical stress, and consumables, resulting in lower maintenance and consistent long-term performance.
Applications Across Industries
Medical Device Manufacturing
Supports micro-stent fabrication, catheter drilling, implant surface texturing, and precision machining of surgical instruments.
Electronics, Semiconductor, and MEMS
Enables wafer scribing, microvia drilling, MEMS structuring, photonic device fabrication, and thin-film processing.
Aerospace and Turbomachinery
Used for cooling hole drilling, thermal barrier coating ablation, microstructuring of combustor components, and surface optimisation.
Precision Optics and Photonics
Ideal for waveguide writing, diffractive optical elements, laser optics structuring, and photonic integrated circuit processing.
Automotive and E-Mobility
Supports battery electrode structuring, injector nozzle drilling, sensor housing processing, and micro-feature fabrication for EV systems.
Watchmaking and Precision Micro-Tooling
Enables micromachining of gears, pinions, axles, bearings, decorative engraving, and ultra-fine hole drilling.
Research and Development
Perfect for prototyping, material science research, microfluidics, and experimental microfabrication workflows.
Why Choose United Spectrum Instruments?
FAQs
What makes picosecond and femtosecond lasers ideal for micromachining?
Ultrashort pulses enable cold ablation, resulting in minimal thermal damage and superior precision.
Can the platform handle complex 3D geometries?
Yes, the multi-axis motion system supports simultaneous linear and rotational machining of complex components.
Is the system suitable for both R&D and production?
Absolutely. It is designed for precision prototyping as well as continuous industrial manufacturing.
What materials can be processed on this platform?
The system can process metals, ceramics, polymers, glass, semiconductors, composites, and coated materials.
Can the platform be upgraded in the future?
Yes, its modular design allows new hardware and process modules to be added as requirements evolve.
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FAQs
What makes picosecond and femtosecond lasers ideal for micromachining?
Ultrashort pulses enable cold ablation, resulting in minimal thermal damage and superior precision.
Can the platform handle complex 3D geometries?
Yes, the multi-axis motion system supports simultaneous linear and rotational machining of complex components.
Is the system suitable for both R&D and production?
Absolutely. It is designed for precision prototyping as well as continuous industrial manufacturing.
What materials can be processed on this platform?
The system can process metals, ceramics, polymers, glass, semiconductors, composites, and coated materials.
Can the platform be upgraded in the future?
Yes, its modular design allows new hardware and process modules to be added as requirements evolve.
WHAT WE OFFER
Reliable Engineering Solutions for Modern Manufacturing
Delivering cutting-edge technologies and precision systems that enhance productivity, quality, and innovation in today’s manufacturing environments.








