You bring the problem. We conceptualise, design, manufacture, test, install and train — and the system that results is yours, built around your process rather than adapted to it.
Most instrument companies sell you what they already make. We start from what you are trying to achieve. That difference shows up in the engineering: a genuinely custom system needs mechanical, optical, electronic, firmware and software design held together by one team, because the hard problems always live at the boundaries between those disciplines.
Thirty-one years of doing this across almost the entire electromagnetic spectrum means we have usually met a version of your problem before — in a different industry, at a different wavelength, for a different reason. That is the real value of technological breadth.
No system leaves our factory until you have inspected it. That is not a courtesy — it is a step in the process.
We start from your concept and the problem behind it, not from a catalogue page.
Specifications drafted and formally approved by you before any design work begins.
Mechanical, optical, electronics, firmware and software designed together as one system.
PDR held with you. Direction confirmed and risks surfaced while changes are still cheap.
CDR freezes the design. Nothing goes to manufacture without your sign-off.
Built in our own facility in Navi Mumbai.
Full functional and performance testing against the approved specification.
You inspect and witness testing at our factory, before dispatch.
Anything raised at inspection is corrected before the system leaves us.
The final product ships only after it has passed your inspection.
Installed and re-tested at your site, in your operating conditions.
Your engineers trained to operate, maintain and get results from the system.
Each of these began as a customer's problem. Every one is configurable — the specification is confirmed per application at the time of quotation.
Precision scribing, engineered for thin-film PV.
A precision DPSS-laser scribing platform engineered for P1, P2 and P3 scribing of thin-film photovoltaic materials — FTO, ITO, perovskite, SnO₂ and TiO₂. Designed and manufactured in India.
Precision scribing, distilled to one wavelength.
A single-wavelength benchtop laser scriber for thin-film photovoltaics. The 1064 nm DPSS optical engine, motorised X–Y stage and Class 1 enclosure of the SP2L-LSM, re-packaged into a 400 × 420 mm bench footprint — air-cooled, single-socket, and ready to run in a teaching or research laboratory. Designed and manufactured in India.
Controlled exposure, measured response.
A research-grade photo-thermal platform: automated laser exposure, galvo scanning and synchronised non-contact thermal mapping in one instrument, with six VIS-NIR wavelength options. Designed and manufactured in India.
Precision thermal imaging, built to scale.
Ultra-compact radiometric infrared cameras that measure the temperature of every pixel — consistently, accurately and without contact. Fully radiometric thermal data streams to a PC over 100 Mbit Ethernet. Customized, integrated and supported in India.
Seeing the flaw beneath the surface.
A fully non-contact NDT platform: two synchronised modulated diode lasers plus an infrared thermography camera reveal surface and sub-surface weld defects without contact or coupling. Designed and manufactured in India.
Engineering the surface, not just the part.
A multi-wavelength DPSS platform for deterministic micro-texturing of metals, ceramics, glass and polymers — engineering functional surfaces for adhesion, tribology and wettability. Designed and manufactured in India.
Wafer-level precision, made in India.
A compact benchtop laser system for patterning, scribing and marking silicon and related semiconductors — high-peak-power NIR pulses remove material with minimal thermal damage. Designed and manufactured in India.
One platform, built five different ways.
A family of pulsed fiber laser systems from 20 W to 100 W — conceptualised, designed and manufactured in India to each customer's technical specification. Permanent, non-contact marking and engraving on virtually every metal and most engineering plastics. Built around IPG Photonics fibre sources.
One platform, seventeen catalogue wavelengths.
A continuous-wave laser source platform spanning 320 nm to 1080 nm at 5 mW to 50 W, available free-space or multimode fiber-coupled. Every unit ships with its own measured L-I curve, spectrum and stability record against its serial number. Designed and manufactured in India.
A selection of customised systems already built, installed and supported by Specialise Products. Configurations, build volumes and process parameters are engineered per project.
CO₂ laser cutting and marking for non-metals — acrylic, wood, textile, paper, leather and engineering plastics. A 60 W tabletop variant is also built as the SP2L-LEM/LCM-CO2-60-TT.
Fused deposition modelling printers built to customer build-volume and material requirements.
SLA printer with a 150 × 75 × 150 mm build volume.
Bio printing platform with HEPA-filtered enclosure for sterile work.
Bio printing for tissue-engineering and life-science research.
Ink-deposition printing with integrated UV curing exposure.
Six- and seven-axis manipulators supplied with our own motion controller — coordinated multi-axis positioning for handling, inspection and process work.
Laser fabrication of microchannels for microfluidic devices and lab-on-chip research.
Curing oven for post-processing printed and coated parts.
Part-washing station for additive manufacturing post-processing.
Application-specific laser patterning machines built to a customer's process.
Laser-guided self-positioning systems for alignment-critical assembly and inspection.
Most of what we deliver began as a customer's concept. Tell our engineers the process, the material, the tolerance and the throughput you need — we will return broad technical specifications for your approval, then design, build, qualify and install the machine. Every SP2L system on this page started exactly that way.
That is the one we want to hear about. Describe the application and we will tell you what it would take.