Engineered for high-throughput production environments, aerospace sub-assemblies, medical device prototyping, and direct-to-substrate architectural manufacturing across Greater Boston.
Designed for high-precision tactile printing on rigid and flexible substrates. Features vacuum hold-down tables and a 6-color system ideal for industrial control panels and localized prototype labeling.
Compact high-resolution digital inkjet system tailored for small-footprint R&D labs, biomedical device labeling, and customized promotional hardware across the Route 128 tech corridor.
Heavy-duty flatbed UV system featuring multi-channel white and varnish capabilities. Engineered for seamless direct deposition onto stainless steel tags, glass plates, and polymers.
Industrial wide-format 2000x3000 mm flatbed designed for continuous multi-shift operation. Optimized for architectural displays, oversized polymer sheet decoration, and regional signage exporters.
Advanced 3D-textured printing engine delivering instant LED curing. Built with linear guide rails for precise droplet jetting on wood, sheet metal, and composite structural components.
Next-generation hybrid unit equipped with CCD camera vision alignment. Automatically registers irregular components, reducing setup times for high-value defense and optics assembly lines.
Industrial workhorse configuration supporting seamless transfer and direct print workflows. High-efficiency ink circulation system prevents titanium dioxide white ink settling.
Versatile small-batch print platform engineered with rotary attachments for cylindrical objects and flat substrates. Essential asset for Boston-area prototyping hubs and contract manufacturers.
From the biotech clusters in Cambridge to defense contractors along Route 128 and heavy fabricators in Worcester, Boston’s industrial landscape demands laser cutting and digital deposition systems with uncompromising beam quality, thermal stability, and micro-scale repeatability.
Boston houses the world’s dense medical technology network. Our solid-state fiber laser cutters achieve narrow kerf widths ($< 20\,\mu\text{m}$) with minimal Heat-Affected Zones (HAZ), crucial for cutting nitinol stents, surgical stainless steel tools, and micro-fluidic titanium components without structural degradation.
Supplying Tier-1 defense manufacturing across Massachusetts requires adherence to rigid material certifications. High-power fiber lasers (6 kW to 40 kW) process Inconel, aerospace-grade aluminum, and armor-plate carbon steel under strict process repeatability standards.
Collaborating with local photonics labs, our laser marking and cutting units integrate advanced galvanometric scanning heads, enabling fine sub-micron etching on silicon wafers, ceramic substrates, and optical sensor enclosures.
With Massachusetts driving toward net-zero manufacturing, local enterprises leverage our specialized handheld and automated robotic fiber laser welding systems for copper busbar joining, lithium battery tab welding, and lightweight alloy structural assemblies.
Analyzing key operational transformations in New England metal fabrication facilities over the recent decade.
Boston-area job shops are rapidly replacing legacy CO2 cutting heads with solid-state fiber laser generators ranging from 3 kW to 20 kW. The primary driver is not merely linear speed, but the dramatic reduction in wall-plug power consumption and total elimination of complex mirror-alignment optical paths.
Furthermore, the integration of high-pressure Nitrogen assist gas generation systems allows regional fabricators to deliver oxide-free edges on 316L stainless steel and 6061-T6 aluminum, satisfying medical and marine-grade specs directly off the cut bed.
| Technical Parameter | Fiber Laser (1070 nm) | Legacy CO2 (10,600 nm) |
|---|---|---|
| Electrical Efficiency | 35% – 45% | 8% – 12% |
| Thin Sheet Speed (1-3mm) | 300% – 500% Faster | Baseline Standard |
| Reflective Metal Cutting | Safe (Fiber Guide) | Risk of Back-Reflection |
| Optical Path Maintenance | Zero Maintenance | High (Mirrors/Bellows) |
| Beam Quality ($M^2$) | < 1.1 (Single Mode) | 1.2 – 2.0 |
| Chiller Load Requirement | Low Thermal Load | High Thermal Load |
Combining vertically integrated manufacturing campuses with international compliance standards to deliver reliable laser cutting and printing machinery worldwide.
Mehta Hitech Industries Limited operates 15 ISO 9001:2015 certified manufacturing facilities spanning over 30,000 square meters. Every fiber laser frame, CNC gantry, and UV flatbed base undergoes stress-relieving heat treatment annealing to guarantee structural integrity over decades of continuous multi-shift production.
Unlike regional assemblers who outsource structural components, our fully integrated manufacturing ensures tight tolerance machining of internal bed structures, high-precision linear motor mounting beds, and heavy-duty dust extraction channels.
Exporting to over 15 countries, we offer custom bed sizes (up to 12m x 2.5m), enclosed safety cabins with optical protection glass, and integrated tube-cutting attachments tailored to specific client floor plans.
Every export shipment includes comprehensive technical documentation, foundation blueprints, spare part replacement packages, and remote augmented-reality commissioning assistance led by field application specialists.
Essential guidance on electrical standards, environmental regulations, shipping logistics, and field support for Massachusetts industrial operators.
Industrial fiber laser cutting machines (e.g., 3 kW to 12 kW systems) typically require a 480V, 3-Phase, 60Hz power supply, standard across Massachusetts industrial parks. We recommend installing an isolation transformer along with a dedicated earthing pit ($< 1\,\Omega$ ground resistance) to protect sensitive digital CNC controls and laser power modules from transient line voltage fluctuations.
Our fully enclosed Fiber Laser Cutting systems feature Class 1 laser safety enclosures fitted with certified OD6+ protective glass windows. Integrated multi-zone fume extraction manifolds automatically route metal particulates and cutting vapors to HEPA and activated carbon filtration units, meeting strict indoor air quality and OSHA workplace safety compliance standards.
Standard machine configurations ship via ocean freight directly to the Port of Boston (Conley Terminal) or Port of New York/New Jersey within 30 to 45 days post-factory acceptance testing (FAT). Machines are wrapped in anti-corrosion barrier foil and packed into heavy-duty sea-worthy wooden crates designed to withstand transatlantic moisture variations.
Yes. Unlike legacy CO2 lasers, our fiber laser cutting systems utilize solid-state fiber optics operating at 1070 nm wavelength. Combined with back-reflection isolator technology in Raycus/IPG resonators and Precitec auto-focus cutting heads, you can continuously cut oxygen-free copper, brass, and bronze without back-reflection damage to the fiber cable or optical diodes.
For medical device manufacturing in Cambridge or Waltham, high-pressure Nitrogen ($N_2$) assist gas (20 to 30 bar) is required to achieve a clean, oxide-free edge that eliminates secondary deburring or acid pickling. For structural carbon steel processing in job shops, compressed air or Oxygen ($O_2$) cut modes can be toggled directly within the CNC software control panel.
Export orders include comprehensive operator training, CAD/CAM nesting software onboarding, and preventive maintenance schedules. Fast-moving consumables—including Precitec ceramic rings, protective windows, copper nozzles, and focus lenses—are stocked for immediate air-express dispatch, supported by 24/7 remote engineering diagnostics via secure IoT gateways.
Request a custom material cutting sample, factory proposal, or complete optical specification analysis from our senior photonics application engineers.
+91-79-26840551 / 52 / 53
Domestic: +91 7575 009 654 · Export: +91 7043 505 091
[email protected]
International: [email protected]
Plot No.3, Road No.1, Kathwada GIDC, Kathwada, SP Ring Road, Ahmedabad 382430, Gujarat, India