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.
Electrical devices built to deliver stable voltage and current for power distribution and equipment operation.
Manufactured to provide safe and consistent power delivery for electrical equipment and appliances.
Magnetic components designed to store energy, filter signals, and control current in electrical circuits.
Conductive products manufactured to transmit power or signals with consistent electrical performance.
Electrical bars designed for efficient current distribution in electrical panels and power systems.
Protective housings built to safeguard electrical and mechanical assemblies against operational stresses.
Continuous profiles produced with uniform cross-sections for structural, decorative, and functional applications.
Connection interfaces manufactured for secure pipe joining and leak-free performance in critical systems.
Fluid-handling units built to deliver consistent flow and pressure across industrial applications.
Flow control components engineered to regulate, isolate, or direct fluids in industrial systems.
High-accuracy metal parts produced for industries where performance depends on flawless detailing.
Custom-formed sheets with tight dimensional for sectors ranging from enclosures to structural components.
High-volume molded parts with consistent finish, suited for functional and consumer-grade products.
Metal components shaped to complex profiles for strength, detail, and material efficiency.
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.
High-grade copper or aluminum
2–10 microns (customizable as per application)
2 mm to 12 mm
10 mm to 200 mm
>98% IACS (for copper core)
Traditional wiring systems can be bulky and difficult to manage, leading to inefficient use of available space. Insulated bus bars solve this issue by offering compact power distribution systems. Their ability to handle high current levels in a streamlined form reduces the need for extensive cable runs and enables flexible system design. This saves valuable space, making installing in cramped or complex environments, such as data centers, manufacturing plants, or high-rise buildings easier.
380 W/mK (for copper core)
Up to 1,000 V or higher
100 A to 3,000 A (based on size and material)
-40°C to +125°C
Excellent; withstands high humidity and chemical exposure
High tensile strength for vibration-prone environments
Conforms to ASTM B571 standards
Smooth, burr-free with uniform tin layer
Shapes, bends, hole patterns, and coatings as required
IEC, RoHS, and ISO certified
Tin plate busbars are engineered to offer excellent electrical conductivity while maintaining minimal contact resistance. The smooth, even tin layer facilitates consistent current flow, ensuring optimal energy efficiency in low- and high-voltage applications.
Tin plate busbars are highly customizable, allowing for compact, lightweight designs that integrate seamlessly into confined spaces. Their ability to handle high current densities in a small footprint makes them perfect for power-dense applications like data centers, electric vehicles, and industrial control systems.
Need reliable Bus Bars for your next project? Get in touch with us today, and we’ll help you find exactly what you need!
Provide low-resistance, high-reliability connections for transformers, switchgear, and circuit breakers in power grids.
Enable efficient power transfer in battery packs, inverters, and motor drive systems with high current densities.
Support compact power distribution units (PDUs) and ensure efficient, low-loss power delivery in high-density server setups.
Facilitate stable power transmission in solar inverters, wind turbine control systems, and energy storage solutions.
Ensure robust, vibration-resistant power connections in aircraft avionics and electrical distribution networks.
Power control panels, robotic systems, and motor drives with precision and thermal stability in automated environments.
Tin plate busbars offer exceptional thermal conductivity, effectively dissipating heat generated during operation. This reduces thermal stress on electrical components and extends the overall system lifespan, ensuring uninterrupted performance even under heavy load conditions.
Tin plate busbars are manufactured with high-grade copper or aluminum cores, offering superior mechanical strength and resilience. The tin coating enhances electrical performance and provides a robust layer to withstand harsh operational conditions.
Check all our Frequently Asked Question
Tin plating enhances the surface properties of busbars by reducing contact resistance at connection points. The smooth and uniform tin layer facilitates efficient current flow, minimizes energy losses, and prevents the formation of insulating oxide layers. This ensures reliable electrical connections, even in environments with high humidity or contaminants.
Yes, tin plate busbars are designed to perform efficiently in high-frequency applications. The low skin effect in the tin-plated layer ensures uniform current distribution across the conductor’s surface, reducing losses and improving performance in applications like power inverters, converters, and renewable energy systems.
Tin plating is a barrier between dissimilar metals, preventing direct contact and inhibiting galvanic corrosion. This is particularly crucial in systems where copper busbars connect to aluminum components, as the tin layer avoids the formation of corrosive reactions caused by differing electrochemical potentials.
Tin-plated busbars dissipate heat more effectively due to their high thermal conductivity. The tin layer facilitates even heat distribution across the surface, reducing localized hotspots. This capability ensures stable performance under heavy current loads and helps maintain the thermal integrity of surrounding electrical components.
Yes, tin-plated busbars are highly durable and suited for environments with dynamic loads or vibrations. The tin coating enhances the mechanical stability of connections by preventing micro-movement and fretting corrosion. Combined with their robust copper or aluminum core, they ensure consistent performance in demanding applications like transportation, aerospace, and industrial machinery.
Submit the form below and our representative will be in touch shortly.
10-A, First Floor, V.V Complex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, India.
9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ
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!
Need reliable Machining for your next project? Get in touch with us today, and we’ll help you find exactly what you need!