High-Integrity Component Engineering for Advanced Agricultural Platforms

Engineered for endurance with optimized grain flow, tight tolerances, and corrosion-resistant alloys. 

Frigate Enhances Component Life Through Process Engineering

Grain-Aligned Load Components

Directional die forging with spectrometry validation ensures uniform grain flow, maximizing fatigue resistance in drivetrain and chassis assemblies.

Thermally Stable Actuation Parts

Low-expansion alloys, ±5 µm multi-axis turning, and cryogenic stress relief prevent thermal distortion in spindles and hydraulic linkages.

Wear-Resistant Soil Interfaces

Advanced ceramic micro-coatings and ion-treated surfaces protect tillage and seeding components from abrasive wear and chemical corrosion.

Our Clients

Trusted by Engineers and Purchasing Leaders 

Excellence You Can Trust

Trusted by Fortune 500 companies for high-precision CNC machining, tight tolerances, and superior quality.

Enable Replacement Readiness with Dual-Path Manufacturing

Ensuring critical part availability during seasonal demand spikes requires parallel production strategies and digitally buffered inventory systems. 

Redundant Process Capabilities

Utilize both high-volume casting and billet-based CNC machining to produce interchangeable components with equivalent material and geometric performance. 

Inventory Intelligence Systems

Deploy MES-integrated forecasting to automate stock replenishment, maintain safety buffers, and respond to sudden demand surges without delay. 

Traceable Part Lineage

Implement end-to-end serialization and blockchain-based tracking to trace batch history, validate field performance, and support predictive maintenance cycles. 

Agricultural Machinery

Enhance Surface Durability in Corrosive Field Environments

Achieving long-lasting performance in contact zones exposed to soil abrasion and fertilizer chemistry requires advanced surface engineering. 

Multi-Layer Surface Treatments

Apply plasma nitriding, ion implantation, and ceramic micro-coatings to build barrier layers against chemical attack and particulate erosion. 

Application-Specific Wear Simulation

Conduct tribological testing under simulated field conditions to optimize coatings for specific use cases like seeding, tillage, or fertilizer delivery. 

Coating-Substrate Compatibility

Match treatment processes to base material metallurgy, ensuring adhesion integrity and longevity across real-world thermal and load cycles. 

Agricultural Machinery

Achieve Micron-Alignment in Smart Hydraulic Interfaces

Sensor-driven systems in automated farm equipment require consistent micron-level stackup and seamless mechanical-electronic interfacing. 

Subtractive Precision Machining

Use 5-axis CNC under CMM-guided inspection to machine control bores, channels, and interfaces within ±5 microns (±0.005 mm). 

Digital Fit-Up Simulation

Optimize GD&T across the CAD-CAM stack and validate physical fit using digital twins prior to component dispatch. 

Stable Electro-Mechanical Integration

Control stackup tolerances using automated process monitoring to ensure sensor and actuator alignment across high-volume batches. 

Agricultural Machinery

Our Machined Products 

We support your production needs with CNC-machined parts, subassemblies, and performance-critical components. 

Turbocharger Compressor Wheel - IMG
Crankshaft - IMG (2)
Camshaft - IMG
Oxygen Mask Bracket - IMG (2)
Electronic Shielding Spline Ring - IMG (3)
Drone Airframe Backbone - IMG (3)
Heavy-Duty Linear Rail Block - IMG
Yaw Drive Pinion Gear - IMG
Pitch Control Gear Shaft - IMG (3)
Pitot Tube Mount - IMG
Packaging Machine Sealing Jaw - IMG (2)
Connecting Rod - IMG (2)
brass inserts - IMG
Surgical Stapler Cartridge Holder - IMG
Fuel Nozzle Swirl Plate - IMG (2)

Words from Clients

See how global OEMs and sourcing heads describe their experience with our scalable execution.

Frigate’s Global Presence

Frigate takes pride in facilitating “Make in India for the globe“.  As our global network of Frigaters provides virtually limitless capacity, and through our IoT enabled platform your parts go directly into production. By digitally and technologically enabling “the silent pillars of the economy” MSME and SME manufacturing industries, we are able to tap the huge potential for manufacturing to bring the best results for our clients.

Agricultural Machinery

100,000+

Parts Manufactured

250+

Frigaters

2000+

Machines

450+

Materials

25+

Manufacturing Process

How You Benefit with Us

Frigate brings stability, control, and predictable performance to your sourcing operations through a structured multi-vendor system. 

Agricultural Machinery
Agricultural Machinery

2.8X

Sourcing Cycle Speed

Frigate’s pre-qualified network shortens decision time between RFQ and PO placement.  

Agricultural Machinery

94%

On-Time Delivery Rate

Structured planning windows and logistics-linked schedules improve project-level delivery reliability. 

Agricultural Machinery

4X

Multi-Part Consolidation

We enable part family batching across suppliers to reduce fragmentation.  

Agricultural Machinery

22%

Quality Rejection Rate

Multi-level quality checks and fixed inspection plans lower non-conformities. 

Agricultural Machinery

30%

Procurement Costs

Optimized supplier negotiations and bulk order strategies reduce your overall sourcing expenses. 

Agricultural Machinery

20%

Manual Processing Time

Automation of sourcing and supplier management significantly reduces time spent on manual tasks. 

Other Industries We Serve 

We deliver machining support across sectors that require consistency, material reliability, and tight dimensional control. 

Construction Equipment - IMG
Precision Instruments & Metrology - IMG
Medical Devices
oil & gas equipment
industrial machinery
Food Processing Machinery
Dental & Orthodontics
Firearms & Defense Accessories
Consumer Electronics - img
Get Clarity with Our Manufacturing Insights

Having Doubts? Our FAQ

Check all our Frequently Asked Questions

How does Frigate ensure structural integrity in components used for heavy-load farm machinery?

Frigate ensures structural strength by controlling the metal flow and grain orientation during the early shaping process of billets. This helps align the internal grain structure with the direction of applied loads. The result is better fatigue resistance in parts like axles, linkages, and housings. To confirm the internal quality, Frigate uses optical emission spectrometry (OES) and electron backscatter diffraction (EBSD). These tools map the grain structure and ensure consistency across production batches. This method improves lifecycle performance and reduces failure rates under high mechanical stress. 

What machining strategy does Frigate use to prevent thermal distortion in hydraulic parts?

Frigate combats thermal distortion by choosing low thermal expansion alloys, which are designed to maintain dimensional stability during temperature swings in field operations. These materials are shaped using 5-axis CNC machining systems that achieve positional accuracy within ±5 microns. During machining, temperature and vibration are controlled to avoid introducing stress. After machining, the components undergo cryogenic stress relief—a deep cooling process that removes internal stress and stabilizes the structure. This ensures parts like hydraulic cylinders or actuators retain their shape, even during continuous use in fluctuating thermal conditions. 

How does Frigate reduce the risk of stockouts for fast-moving seasonal replacement parts?

To avoid disruptions during peak agricultural seasons, Frigate maintains a dual-path production strategy, combining billet machining with casting options for the same component. This parallel workflow allows flexible scaling of output based on real-time demand. Frigate also uses MES-integrated inventory systems to track consumption trends and forecast upcoming requirements. Buffer stock is automatically adjusted to meet seasonal peaks without manual intervention. Additionally, each part is serialized and entered into a blockchain-based traceability system, enabling buyers to track part history, performance, and availability across locations with complete transparency. 

How are Frigate’s coated parts tested for corrosion in fertilizer-heavy environments?

Fertilizers, especially those with high ammonium or saline content, cause rapid surface damage. Frigate addresses this by applying advanced surface treatments like plasma nitriding, ion implantation, and ceramic micro-coatings to components exposed to soil or chemicals. These treatments are tested in tribological simulation labs, where actual wear and corrosion conditions from the field are replicated. Each coating is matched with the base metal to ensure adhesion and long-term protection. This process results in significantly improved wear resistance and corrosion durability, particularly in parts like fertilizer nozzles, discs, and soil-exposed implements. 

What technology does Frigate use to ensure perfect fit in smart hydraulic subsystems?

For sensor-integrated and automated agricultural systems, achieving micron-level alignment between mechanical and electronic interfaces is essential. Frigate uses CMM-calibrated 5-axis CNC machining to achieve sub-5 micron tolerances in fit-critical areas like ports, bores, and channels. These dimensions are validated against CAD models optimized with GD&T, ensuring that every part fits precisely within the final assembly. Frigate also uses digital twin technology to simulate the full mechanical stackup and verify alignment before production. This allows seamless integration of sensors, actuators, and valves without field adjustments. 

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LOCATIONS

Registered Office

10-A, First Floor, V.V Complex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, India.

Operations Office

9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ

Other Locations

GENERAL ENQUIRIES

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