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.
Enclosures are built from corrosion-resistant materials like 316 stainless steel and high-performance polymers, protecting against moisture, dust, chemicals, and mechanical impact. With IP ratings for ingress protection, they ensure sensors remain functional in harsh environments such as chemical processing or oil and gas.
Our enclosures prevent external factors from affecting sensor readings. They use low thermal conductivity materials and integrated heat dissipation systems to ensure accurate, stable measurements by minimizing temperature fluctuations and external interference in critical applications.
Enclosures feature thermal buffers, ventilation ports, and insulating materials to stabilize the sensor’s thermal environment. These features prevent overheating and thermal fatigue, ensuring the sensor operates within its optimal temperature range in demanding conditions, like industrial or HVAC systems.
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Protects sensors from corrosive chemicals, preventing degradation and ensuring accurate temperature readings in reactive environments like reactors and distillation columns.
Shields sensors from extreme temperatures, high-pressure environments, and potentially explosive atmospheres in drilling rigs and pipeline monitoring systems.
Ensures sensor reliability in high-vibration, temperature-fluctuating environments, such as injection molding machines and industrial furnaces.
Protects from extreme altitude conditions and rapid temperature changes, ensuring precise temperature monitoring in aircraft engines and avionics.
Protects sensors in heating, ventilation, and air conditioning units, maintaining consistent performance under varying environmental conditions and airflow.
Shields temperature sensors from cleanroom contaminants, and precise temperature control is required for semiconductor fabrication and wafer processing.
Our enclosures are fully customizable to fit various sensor types, mounting configurations, and wiring setups. This flexibility ensures easy integration into existing systems, reducing installation time and making it ideal for specialized sensor applications with unique requirements.
Meeting global standards such as RoHS, UL, and ISO 9001, our enclosures also comply with ATEX and IECEx certifications for explosive environments. This ensures safety, regulatory compliance, and performance reliability across industries like chemical plants and oil rigs.
Check all our Frequently Asked Question
Temperature sensor enclosures are constructed using materials with low thermal conductivity, such as ceramic coatings or thermal buffers, which reduce heat transfer. This ensures that external temperature fluctuations do not affect sensor readings, providing consistent and accurate measurements in high-temperature environments like industrial furnaces.
Temperature sensor enclosures are often made from 316 stainless steel, polymer compounds, or coated metals that resist corrosion from harsh chemicals. These materials ensure the enclosures remain intact and functional even when exposed to aggressive substances like acids, solvents, or oils in industries like chemical processing or oil and gas.
The IP rating specifies the enclosure’s ability to protect against solid and liquid ingress. For example, an IP67 rating ensures the enclosure is dust-tight and resistant to temporary submersion in water, protecting the sensor from environmental contaminants in applications like marine or underground monitoring.
Thermal vents and heat sinks are incorporated into sensor enclosures to enhance heat dissipation. These components allow for passive cooling, preventing temperature buildup within the enclosure and maintaining optimal operating conditions for temperature sensors, particularly in high-power applications like power generation or automotive testing.
Custom enclosures are designed with specific mounting configurations and integrated cable glands, which ensure precise alignment with the sensor’s orientation. This helps maintain signal integrity by reducing noise interference during data transmission, ensuring accurate readings in applications where sensor calibration is critical, such as in the medical or aerospace industries.
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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
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