Engine mounts, chassis parts, and machined components for assembly lines.
High-strength fasteners, landing gear parts, and structural assemblies.
Forged housings, armor brackets, and mission-critical structural parts.
Precision housings, actuator frames, and armature linkages for automation systems.
Metal frames, brackets, and assemblies for appliances and home equipment.
Busbar holders, battery pack parts, and lightweight structural enclosures.
Solar mounting parts, wind turbine brackets, and battery enclosures.
Valve bodies, flange blocks, and downhole drilling components.
Large welded frames, PEB structures, and assemblies for industrial equipment.
High-performance cables and wires engineered for durability and seamless connectivity across applications.
Custom-built wiring harnesses for secure connections and streamlined installations.
Precision-engineered busbars for efficient power distribution and minimal energy loss.
Robust connectors designed for secure locking, reliable conductivity, and long-term performance.
Durable transformers built for consistent performance, energy efficiency, and stable power regulation.
Frigate’s industrial-grade heat sinks provide efficient, customizable cooling for high-performance thermal management.
Diverse solutions covering automotive, electrical, mechanical, and industrial needs with precision-built components.
CNC machining delivers micron precision and tight tolerances for complex geometry.
Frigate CNC Machining offers high-precision, custom solutions for complex casting geometries. Multi-axis capabilities ensure tight tolerances and optimal surface finishes.
Sheet metal fabrication uses laser cutting, punching, and bending for precision.
Frigate Sheet Metal Fabrication utilizes advanced laser cutting and press brake technology for custom casting applications. Tight tolerances, superior welds, and high-strength materials ensure structural integrity.
Injection molding produces high-precision parts with consistent quality.
Frigate Injection Molding delivers custom-engineered parts with micron-level precision and structural integrity. Specialized molds maintain tight tolerances for complex geometries and high-stress applications.
Precision casting ensures accurate, high-quality parts.
Forging services improve material strength with precise tolerances.
Frigate Casting Services provides custom casting with tight tolerances and complex geometries. We enhance material properties using advanced metallurgy, ensuring strength and wear resistance. Our precision methods support high-performance aerospace, automotive, and industrial applications.
End-to-end part production from samples to bulk supply.
Ready-to-use assemblies built to exact fit and function.
Heavy-duty fabrication with high-strength materials for demanding applications. Robust welding for maximum structural durability.
These connectors are designed with robust materials, such as high-strength plastics and metals, and precise plating to prevent wear and degradation. The contact surfaces are often gold or palladium-plated, ensuring low insertion force and high durability over many cycles (up to 10,000 insertions). Additionally, connectors are often equipped with latching mechanisms or other securing features to ensure a stable, low-resistance connection over time, reducing the risk of physical failure due to mechanical strain.
Memory connectors are engineered with low-contact resistance to reduce energy losses during data transmission. Even small amounts of resistance in high-speed applications can result in significant power losses, ultimately affecting system performance and thermal management. By minimizing resistance, these connectors help in reducing heat generation, enabling better thermal control in tightly packed systems. This efficiency is particularly critical in mobile devices, IoT systems, and data centers with tight thermal constraints and power budgets.
Modern memory modules, such as those utilizing DDR4, DDR5, and LPDDR4/5 architectures, require connectors supporting multi-lane, high-bandwidth data paths. Memory connectors are designed to accommodate high-density pinouts while maintaining optimal signal integrity. This enables the integration of larger memory modules with higher data rates into compact form factors. For example, connectors that support 288-pin DDR4 or DDR5 configurations provide efficient space utilization while ensuring sufficient lanes for multi-channel data transmission, essential for applications requiring large memory pools and high throughput, such as high-performance computing and real-time processing.
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Facilitates rapid data processing and memory bandwidth for deep learning and neural network computations in high-performance servers.
Ensures secure, high-speed memory connections for encryption/decryption processes in secure processors and hardware security modules (HSMs).
Supports distributed memory architecture in edge devices, ensuring fast local data processing for IoT and autonomous systems.
Provides reliable memory connections in quantum processors, where low latency and high precision are critical for qubit operations.
Ensures high-speed, low-latency memory interfaces in microcontrollers and system-on-chip (SoC) applications in critical embedded devices.
Enables high-bandwidth memory interconnects for real-time video encoding/decoding and rendering in broadcasting equipment.
Memory connectors are often subjected to varying thermal conditions in environments where they must function across a wide range of temperatures, from industrial settings with high ambient temperatures to low-temperature applications in aerospace. Connectors are made from materials with low thermal expansion coefficients to meet these challenges, ensuring dimensional stability despite temperature fluctuations.
As memory technologies evolve, so must the connectors that interface with them. The latest generations of memory modules, such as DDR5, HBM2, and GDDR6, require connectors that handle high-frequency data transmission and support the increased power demands and larger pin counts associated with these technologies. Memory connectors must be compatible with industry standards to work across various platforms and systems.
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Frigate uses advanced CNC machining and high-precision die-casting methods to ensure tight tolerance and dimensional accuracy. Each memory connector is fabricated with precision tooling and undergoes rigorous quality checks to meet exacting specifications, ensuring reliable performance in high-speed applications.
Frigate sources high-quality materials, such as stainless steel, brass, and specialized conductive alloys, to ensure durability and electrical performance. Gold or palladium plating is applied for contact surfaces to reduce wear and ensure low contact resistance, optimizing signal integrity and long-term reliability.
Frigate designs memory connectors with materials that have low thermal expansion coefficients, ensuring dimensional stability under varying temperature conditions. This ensures connectors maintain their mechanical and electrical properties even in systems exposed to extreme temperature fluctuations, such as automotive or aerospace applications.
Frigate’s memory connectors are designed and tested to meet a range of industry standards, including JEDEC for DDR memory and PCIe specifications. Every component undergoes comprehensive testing, including high-speed signal integrity, mechanical stress testing, and thermal performance testing, to guarantee compliance and reliability.
Frigate incorporates advanced shielding techniques and precision grounding in the design of memory connectors to minimize electromagnetic interference (EMI). The connectors are engineered with optimized contact geometries to ensure signal integrity and reduce crosstalk, ensuring consistent high-frequency performance in sensitive systems.
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23, 6th West Street, Balaji Nagar, Kattur, Pappakuruchi, Tiruchirappalli-620019, Tamil Nadu, India.
9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ
FRIGATE is a B2B manufacturing company that facilitates New Product Development, contract manufacturing, parallel manufacturing, and more, leveraging its extensive partner networks.
Need reliable wires and cables for your next project? Get in touch with us today, and we’ll help you find exactly what you need!