Products
Molybdenum Silicon (MoSi2) Type U with Right Angle Heater
The Molybdenum Disilicide (MoSi2) Type U with Right Angle Heater is a high-temperature heating element designed for specific applications where furnace geometry or heat distribution requires an angular configuration. Manufactured from high-purity MoSi2, this MoSi2 heater combines the efficiency of the “U” shape with a right-angle section, allowing for precise adaptation to the internal contours of complex furnaces. It is a robust solution for environments demanding temperatures up to 1850°C, offering excellent oxidation resistance and a prolonged service life. As a high-temperature furnace heating element with an angled design, it is ideal for optimizing space and thermal uniformity in heating chambers with non-standard geometries.
Molybdenum Disilicide (MoSi2) Type W Heater
The Molybdenum Disilicide (MoSi2) Type W Heater is a high-temperature heating element designed to provide uniform and efficient heat distribution in industrial furnaces. Manufactured from high-purity MoSi2, this MoSi2 heater is distinguished by its “W” shape, which optimizes the heating surface and allows for greater power density in the furnace chamber. It is a robust solution for applications demanding temperatures up to 1850°C, notable for its excellent oxidation resistance and prolonged service life. As a high-temperature furnace heater, the Type W element is crucial in processes such as sintering, advanced heat treatment, and material melting.
Plugs and Connectors for Type J and K Thermocouples
Thermocouple connectors are specialized interconnection devices designed to join temperature sensors (thermouples) with measuring instruments, controllers, or extension wires. Their main function is to provide a quick, secure, and, above all, thermally compensated connection. Unlike conventional electrical connectors, these are manufactured with metallic alloys identical to those of the corresponding thermocouple (Iron/Constantan for Type J and Chromel/Alumel for Type K). This material homogeneity is essential to prevent the generation of parasitic electromotive forces (EMF) at the connection points, ensuring that the temperature reading is precise and free from errors due to thermal gradients at the connector.
Ceramic Protection Tube for Thermocouple
The Ceramic Protection Tube for Thermocouple is a cutting-edge solution designed to safeguard the integrity and accuracy of temperature sensors in the most demanding industrial environments. Manufactured with precision ceramic technology, this tube is not an ordinary ceramic component; its advanced engineering confers exceptional mechanical strength and durability, far surpassing the limitations of traditional materials. It is a crucial element for extending the service life of thermocouples, ensuring reliable measurements, and reducing maintenance costs in high-temperature processes and corrosive or abrasive environments.
Silicon Nitride Thermocouple Protection Tubes
Silicon nitride thermocouple protection tubes represent an advanced and robust solution for precise temperature measurement in extreme industrial environments. Manufactured from silicon nitride (Si3N4), a high-performance technical ceramic, these thermocouple protection sheaths are distinguished by their exceptional resistance to high temperatures, thermal shock, corrosion, and wear. Their chemical composition and microcrystalline structure confer superior stability against oxidation and the aggression of molten metals, slags, and corrosive gases, making them indispensable thermocouple accessories in processes where other ceramic or metallic materials would fail prematurely. This silicon nitride ceramic protective tube ensures the integrity and prolongs the service life of the thermocouple sensing element, guaranteeing reliable and continuous measurements in the most challenging conditions.
Terminal Block | Ceramic Block for Temperature Sensors
The terminal block, also known as ceramic block or connection socket, is a critical component designed to facilitate safe and stable electrical interconnection between sensor elements (RTD or thermocouples) and extension or transmission cables. These blocks are typically installed inside the sensor connection head, acting as the junction point where millivolt (thermocouples) or resistance (RTD) signals are transferred to the monitoring system. Manufactured with high-quality insulating materials such as technical ceramic or bakelite, these thermocouple accessories are designed to withstand extreme thermal conditions and provide superior electrical insulation, preventing short circuits or interference that could compromise measurement accuracy.
Connection Heads for RTD and Thermocouples
Connection heads, also known as heads or headers, are essential components in temperature measurement systems that use RTDs (Resistance Temperature Detectors) and thermocouples. Their main function is to provide a protective enclosure for the electrical connections of these sensors, shielding them from mechanical damage, moisture, dust, and other adverse environmental factors. These devices ensure the integrity of the temperature signal, guaranteeing precise and reliable measurements in a wide range of industrial and commercial environments. They are available in various materials such as stainless steel, bakelite, and aluminum alloy, each offering specific properties to adapt to different operating conditions and application requirements.
Housings and Protective Covers for Electric Heaters
Our comprehensive range of housings and protective covers for electric heaters offers robust and versatile solutions for a wide variety of industrial applications. From the rectangular composite plastic housing to the anti-corrosive cover for flanged heaters, each product is designed to guarantee maximum protection and durability of heating components. We offer accessories for heating tubes, including modular housings and threaded protective housings, ideal for junction boxes and terminals. The diversity of materials, such as the explosion-proof bakelite cover and the open (slotted) fiberglass housing, ensures optimal performance in demanding environments, protecting against corrosion, impacts, and high-temperature conditions. These components are essential for the safety and longevity of any electric heating system.











