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₹28,319 - ₹1,23,899
Siemens Harmonics Filter Aluminium Detuned Reactor is an electrical component that is designed to reduce harmonics in electrical systems. This type of reactor is designed to work in conjunction with a capacitor bank, forming a harmonic filter that reduces harmonic distortion and improves the power quality of the system. One of the key features of the Siemens Harmonics Filter Detuned Reactor is its insulation class H, which means it is built to withstand high temperatures and is highly durable. The high linearity of the reactor ensures that it operates smoothly and effectively, reducing harmonic distortion to a minimum. Another important feature of the reactor is its temperature control system, which is achieved via a micro switch. This ensures that the reactor operates within safe temperature limits, preventing damage and ensuring reliable operation. The reactor is also designed with low losses and low noise, ensuring that it operates efficiently and without creating unwanted electrical interference. This is important in applications where electromagnetic interference (EMI) can cause problems, such as in sensitive electronic equipment or communication systems. Overall, the Siemens Harmonics Filter Detuned Reactor is a reliable and efficient solution for reducing harmonics in electrical systems, improving power quality and reliability. Its high durability, temperature control system, and low noise and losses make it an excellent choice for a wide range of applications.
green checkType of Product : Harmonics Filter Detuned Reactor
green checkMaterial : Aluminium Detuned Reactor
green checkApplication : Power factor correction
green checkFactor : 14% Detuning Factor
green checkInsulation Class : H Class
₹27,139 - ₹1,53,399
Siemens Harmonics Filter Copper Detuned Reactor is an electrical component that is designed to reduce harmonics in electrical systems. This type of reactor is designed to work in conjunction with a capacitor bank, forming a harmonic filter that reduces harmonic distortion and improves the power quality of the system. One of the key features of the Siemens Harmonics Filter Detuned Reactor is its insulation class H, which means it is built to withstand high temperatures and is highly durable. The high linearity of the reactor ensures that it operates smoothly and effectively, reducing harmonic distortion to a minimum. Another important feature of the reactor is its temperature control system, which is achieved via a micro switch. This ensures that the reactor operates within safe temperature limits, preventing damage and ensuring reliable operation. The reactor is also designed with low losses and low noise, ensuring that it operates efficiently and without creating unwanted electrical interference. This is important in applications where electromagnetic interference (EMI) can cause problems, such as in sensitive electronic equipment or communication systems. Overall, the Siemens Harmonics Filter Detuned Reactor is a reliable and efficient solution for reducing harmonics in electrical systems, improving power quality and reliability. Its high durability, temperature control system, and low noise and losses make it an excellent choice for a wide range of applications.
green checkType of Product : Harmonics Filter Detuned Reactor
green checkMaterial : Copper Detuned Reactor
green checkApplication : Power factor correction
green checkFactor : 7% Detuning Factor
green checkInsulation Class : H Class
₹18,879 - ₹1,06,199
Siemens Harmonics Filter Aluminium Detuned Reactor is an electrical component that is designed to reduce harmonics in electrical systems. This type of reactor is designed to work in conjunction with a capacitor bank, forming a harmonic filter that reduces harmonic distortion and improves the power quality of the system. One of the key features of the Siemens Harmonics Filter Detuned Reactor is its insulation class H, which means it is built to withstand high temperatures and is highly durable. The high linearity of the reactor ensures that it operates smoothly and effectively, reducing harmonic distortion to a minimum. Another important feature of the reactor is its temperature control system, which is achieved via a micro switch. This ensures that the reactor operates within safe temperature limits, preventing damage and ensuring reliable operation. The reactor is also designed with low losses and low noise, ensuring that it operates efficiently and without creating unwanted electrical interference. This is important in applications where electromagnetic interference (EMI) can cause problems, such as in sensitive electronic equipment or communication systems. Overall, the Siemens Harmonics Filter Detuned Reactor is a reliable and efficient solution for reducing harmonics in electrical systems, improving power quality and reliability. Its high durability, temperature control system, and low noise and losses make it an excellent choice for a wide range of applications.
green checkType of Product : Harmonics Filter Detuned Reactor
green checkMaterial : Aluminium Detuned Reactor
green checkApplication : Power factor correction
green checkFactor : 7% Detuning Factor
green checkInsulation Class : H Class
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₹34,219 - ₹3,30,399
Siemens Harmonics Filter Copper Detuned Reactor is an electrical component that is designed to reduce harmonics in electrical systems. This type of reactor is designed to work in conjunction with a capacitor bank, forming a harmonic filter that reduces harmonic distortion and improves the power quality of the system. One of the key features of the Siemens Harmonics Filter Detuned Reactor is its insulation class H, which means it is built to withstand high temperatures and is highly durable. The high linearity of the reactor ensures that it operates smoothly and effectively, reducing harmonic distortion to a minimum. Another important feature of the reactor is its temperature control system, which is achieved via a micro switch. This ensures that the reactor operates within safe temperature limits, preventing damage and ensuring reliable operation. The reactor is also designed with low losses and low noise, ensuring that it operates efficiently and without creating unwanted electrical interference. This is important in applications where electromagnetic interference (EMI) can cause problems, such as in sensitive electronic equipment or communication systems. Overall, the Siemens Harmonics Filter Detuned Reactor is a reliable and efficient solution for reducing harmonics in electrical systems, improving power quality and reliability. Its high durability, temperature control system, and low noise and losses make it an excellent choice for a wide range of applications.
green checkType of Product : Harmonics Filter Detuned Reactor
green checkMaterial : Copper Detuned Reactor
green checkApplication : Power factor correction
green checkFactor : 14% Detuning Factor
green checkInsulation Class : H Class
₹17,699 - ₹64,899
Siemens Harmonics Filter Aluminium Detuned Reactor is an electrical component that is designed to reduce harmonics in electrical systems. This type of reactor is designed to work in conjunction with a capacitor bank, forming a harmonic filter that reduces harmonic distortion and improves the power quality of the system. One of the key features of the Siemens Harmonics Filter Detuned Reactor is its insulation class H, which means it is built to withstand high temperatures and is highly durable. The high linearity of the reactor ensures that it operates smoothly and effectively, reducing harmonic distortion to a minimum. Another important feature of the reactor is its temperature control system, which is achieved via a micro switch. This ensures that the reactor operates within safe temperature limits, preventing damage and ensuring reliable operation. The reactor is also designed with low losses and low noise, ensuring that it operates efficiently and without creating unwanted electrical interference. This is important in applications where electromagnetic interference (EMI) can cause problems, such as in sensitive electronic equipment or communication systems. Overall, the Siemens Harmonics Filter Detuned Reactor is a reliable and efficient solution for reducing harmonics in electrical systems, improving power quality and reliability. Its high durability, temperature control system, and low noise and losses make it an excellent choice for a wide range of applications.
green checkType of Product : Harmonics Filter Detuned Reactor
green checkMaterial : Aluminium Detuned Reactor
green checkApplication : Power factor correction
green checkFactor : 5.67% Detuning Factor
green checkInsulation Class : H Class
₹10,383 - ₹12,979
You save ₹1,111!
7.89% OFF
The Elmeasure High Profile Dual Source Energy Meter EN-20P is designed for accurate measurement and monitoring of energy consumption from two independent power sources. Ideal for applications involving mains and generator supply or dual feeder systems, this meter enables precise tracking of voltage, current, power, and energy parameters for both sources. Equipped with an RS485 communication port, the EN-20P supports seamless integration with Modbus-compatible energy management systems, allowing real-time data acquisition and centralized monitoring.
The EN-20P Dual Source Energy Meter features a high-profile design for easy panel mounting and clear parameter visibility. Its advanced metering capabilities provide detailed insights into power usage, helping operators analyze source-wise consumption and maintain balanced load distribution. Built for industrial and commercial environments, this meter ensures reliable performance, consistent accuracy, and efficient monitoring of dual power inputs, making it suitable for facilities requiring dependable energy measurement across multiple supply sources.
green checkType of Product : Dual Source Energy Meter
green checkApplication : Industrial
green checkType : High Profile
green checkCountry of Origin : India
green checkCommunication Ports : RS485
green checkName of Manufacturer/Packer/Importer : STARTEK INTERNATIONAL
₹14,159 - ₹14,159
You save ₹1,481!
9.47% OFF
The Elmeasure High Profile MFM Demand Monitor (LCD) PN8700P31 is designed for advanced monitoring of electrical parameters in industrial and commercial applications. Featuring a clear LCD display and an RS485 communication port, this multifunction demand monitor enables accurate measurement of voltage, current, power, energy, frequency, and power factor. The RS485 interface supports Modbus protocol, allowing seamless integration with centralized energy management and automation systems for real-time data acquisition and remote monitoring.
The PN8700P31 Demand Monitor offers precise demand tracking and load analysis to support effective power management and system stability. Its high-profile panel-mount design ensures easy installation and clear parameter visibility within switchboards and control panels. Built for reliable performance in demanding environments, this device assists operators in monitoring consumption trends, identifying irregularities, and maintaining efficient power distribution. Suitable for factories, commercial buildings, and utility panels, it delivers consistent measurement accuracy and comprehensive electrical insights.
green checkType of Product : Demand Monitor
green checkAccuracy Class : 0.5S
green checkApplication : Industrial
green checkDisplay Type : LCD
green checkType : High Profile MFM
green checkCommunication Ports : RS485
green checkHarmonics : Industrial Harmonics 63rd
₹13 - ₹68
You save ₹1!
3.76% OFF
The Phoenix Contact CU-DHP Tin-Plated (Galvanic) Twin Pin Type Ferrules are essential components in electrical and electronic applications, offering a reliable solution for terminating stranded wires and ensuring secure connections. Constructed from high-quality copper alloy, these ferrules are designed to withstand the demands of industrial environments while providing excellent electrical conductivity. The tin-plated surface of the ferrules enhances their corrosion resistance and ensures reliable performance over an extended lifespan. This plating also facilitates soldering and crimping processes, ensuring a secure and gas-tight connection between the ferrule and the wire. The twin pin design of these ferrules allows for easy insertion into terminal blocks, connectors, or other connection points, providing a stable and reliable connection. The design also helps prevent wire splaying, ensuring a neat and organized wiring layout. With their galvanic tin plating, these ferrules offer superior resistance to oxidation and corrosion, making them suitable for use in harsh or corrosive environments. They are available in various sizes to accommodate different wire gauges, offering versatility and compatibility with a wide range of applications. Whether used in industrial machinery, control panels, or electrical equipment, the Phoenix Contact CU-DHP Tin-Plated (Galvanic) Twin Pin Type Ferrules provide a dependable solution for ensuring secure and efficient wire terminations, contributing to the overall reliability and safety of electrical systems.
green checkType of Product : Twin Pin Type Ferrules
green checkMaterial : CU-DHP
green checkFlammability Rating According to UL 94 : HB
green checkComponents : Free From Silicone and Halogen
green checkPermanent Temperature : 105 °C (-40°C no load / 0°C dynamic load)
green checkShort-Term Temperature : 120 °C
green checkFeatures : Insulated
green checkCoating : Tin-Plated (Galvanic)
₹9,321 - ₹15,339
You save ₹1,541!
9.13% OFF
The Elmeasure High Profile MFM Demand Monitor (LCD) EN7500P is engineered for accurate monitoring of electrical demand and multiple power parameters in industrial and commercial installations. Featuring a clear LCD display, this multifunction device enables simultaneous viewing of voltage, current, active and reactive power, energy consumption, frequency, and power factor. The integrated RS485 communication port supports Modbus protocol, allowing seamless connectivity with centralized energy management and automation systems for real-time data acquisition and remote monitoring.
The EN7500P Demand Monitor provides reliable demand tracking and detailed load analysis to support efficient power distribution and system stability. Its high-profile panel-mount design ensures easy installation and enhanced readability within switchboards and control panels. Built for dependable operation in demanding environments, this monitor delivers consistent measurement performance and comprehensive electrical insights, making it suitable for factories, commercial buildings, and utility panels requiring precise and continuous energy monitoring.
green checkType of Product : Demand Monitor
green checkApplication : Industrial
green checkDisplay Type : LCD
green checkCountry of Origin : India
green checkType : High Profile MFM
green checkName of Manufacturer/Packer/Importer : STARTEK INTERNATIONAL
green checkCommunication Ports : RS485
green checkHarmonics : Industrial Harmonics 31st
₹778  
A pressure gauge 0 -2KG/cm2  is a device used to measure fluid or gas pressure in a system. It typically consists of a cylindrical case, a dial with a pointer indicating the pressure, and a bourdon tube or other sensing element that reacts to changes in pressure. The bourdon tube is a thin, curved metal tube connected to the measured system. When the pressure inside the tube changes, the tube straightens slightly, which moves a pointer on the dial. Other sensing elements in pressure gauges include diaphragms, bellows, and capsule elements. Pressure gauges are used in various applications, including industrial processes, HVAC systems, and medical equipment. They can be found in various styles and sizes, from small gauges used in portable equipment to large, highly accurate meters used in laboratory or industrial settings. Accurate and reliable pressure measurement is essential for ensuring the safety and efficiency of many different types of systems. It's essential to select the correct type of pressure gauge for the application. Factors to consider include the type of fluid or gas being measured, the range of pressures expected, and the system's operating conditions. Dial: The dial is the face of the pressure gauge where the pressure readings are displayed. It usually has a circular shape and a scale that shows the pressure range in different units of measurement. Pointer: The pointer is attached to the sensing element and moves in response to changes in pressure. It indicates the pressure reading on the dial. Sensing element: The sensing element is part of the pressure gauge that reacts to changes in pressure. Depending on the application, it can be a bourdon tube, diaphragm, bellows, or capsule element. Connection: The connection is part of the pressure gauge that attaches to the measured system. It can be a threaded, flanged, or welded connection. Case: The case is the outer shell of the pressure gauge that protects the internal components from damage. Depending on the application, it can be made of plastic, stainless steel, or other materials. Accuracy: The accuracy of a pressure gauge refers to how closely it measures the actual pressure of the system. It is usually expressed as a percentage of the full scale. Pressure range: The pressure range is the range of pressures that the pressure gauge can measure. It is usually expressed in pounds per square inch (psi), bar, or other pressure units. Overpressure protection: Overpressure protection is a feature that prevents the pressure gauge from being damaged by pressures that exceed its rated range. It can be achieved through a pressure relief valve, snubber, or another device. Mounting: The mounting of a pressure gauge refers to how it is attached to the measured system. Depending on the application, it can be a bottom, back, or panel mount.
₹1,014  
A pressure gauge 0 -2 KG/cm2  is a device used to measure fluid or gas pressure in a system. It typically consists of a cylindrical case, a dial with a pointer indicating the pressure, and a bourdon tube or other sensing element that reacts to changes in pressure. The bourdon tube is a thin, curved metal tube connected to the measured system. When the pressure inside the tube changes, the tube straightens slightly, which moves a pointer on the dial. Other sensing elements in pressure gauges include diaphragms, bellows, and capsule elements. Pressure gauges are used in various applications, including industrial processes, HVAC systems, and medical equipment. They can be found in various styles and sizes, from small gauges used in portable equipment to large, highly accurate meters used in laboratory or industrial settings. Accurate and reliable pressure measurement is essential for ensuring the safety and efficiency of many different types of systems. It's essential to select the correct type of pressure gauge for the application. Factors to consider include the type of fluid or gas being measured, the range of pressures expected, and the system's operating conditions. Dial: The dial is the face of the pressure gauge where the pressure readings are displayed. It usually has a circular shape and a scale that shows the pressure range in different units of measurement. Pointer: The pointer is attached to the sensing element and moves in response to changes in pressure. It indicates the pressure reading on the dial. Sensing element: The sensing element is part of the pressure gauge that reacts to changes in pressure. Depending on the application, it can be a bourdon tube, diaphragm, bellows, or capsule element. Connection: The connection is part of the pressure gauge that attaches to the measured system. It can be a threaded, flanged, or welded connection. Case: The case is the outer shell of the pressure gauge that protects the internal components from damage. Depending on the application, it can be made of plastic, stainless steel, or other materials. Accuracy: The accuracy of a pressure gauge refers to how closely it measures the actual pressure of the system. It is usually expressed as a percentage of the full scale. Pressure range: The pressure range is the range of pressures that the pressure gauge can measure. It is usually expressed in pounds per square inch (psi), bar, or other pressure units. Overpressure protection: Overpressure protection is a feature that prevents the pressure gauge from being damaged by pressures that exceed its rated range. It can be achieved through a pressure relief valve, snubber, or another device. Mounting: The mounting of a pressure gauge refers to how it is attached to the measured system. Depending on the application, it can be a bottom, back, or panel mount.
₹1,014  
A pressure gauge 0 -560KG/cm2  is a device used to measure fluid or gas pressure in a system. It typically consists of a cylindrical case, a dial with a pointer indicating the pressure, and a bourdon tube or other sensing element that reacts to changes in pressure. The bourdon tube is a thin, curved metal tube connected to the measured system. When the pressure inside the tube changes, the tube straightens slightly, which moves a pointer on the dial. Other sensing elements in pressure gauges include diaphragms, bellows, and capsule elements. Pressure gauges are used in various applications, including industrial processes, HVAC systems, and medical equipment. They can be found in various styles and sizes, from small gauges used in portable equipment to large, highly accurate meters used in laboratory or industrial settings. Accurate and reliable pressure measurement is essential for ensuring the safety and efficiency of many different types of systems. It's essential to select the correct type of pressure gauge for the application. Factors to consider include the type of fluid or gas being measured, the range of pressures expected, and the system's operating conditions. Dial: The dial is the face of the pressure gauge where the pressure readings are displayed. It usually has a circular shape and a scale that shows the pressure range in different units of measurement. Pointer: The pointer is attached to the sensing element and moves in response to changes in pressure. It indicates the pressure reading on the dial. Sensing element: The sensing element is part of the pressure gauge that reacts to changes in pressure. Depending on the application, it can be a bourdon tube, diaphragm, bellows, or capsule element. Connection: The connection is part of the pressure gauge that attaches to the measured system. It can be a threaded, flanged, or welded connection. Case: The case is the outer shell of the pressure gauge that protects the internal components from damage. Depending on the application, it can be made of plastic, stainless steel, or other materials. Accuracy: The accuracy of a pressure gauge refers to how closely it measures the actual pressure of the system. It is usually expressed as a percentage of the full scale. Pressure range: The pressure range is the range of pressures that the pressure gauge can measure. It is usually expressed in pounds per square inch (psi), bar, or other pressure units. Overpressure protection: Overpressure protection is a feature that prevents the pressure gauge from being damaged by pressures that exceed its rated range. It can be achieved through a pressure relief valve, snubber, or another device. Mounting: The mounting of a pressure gauge refers to how it is attached to the measured system. Depending on the application, it can be a bottom, back, or panel mount.
₹565  
A pressure gauge 0 -600KG/cm2  is a device used to measure fluid or gas pressure in a system. It typically consists of a cylindrical case, a dial with a pointer indicating the pressure, and a bourdon tube or other sensing element that reacts to changes in pressure. The bourdon tube is a thin, curved metal tube connected to the measured system. When the pressure inside the tube changes, the tube straightens slightly, which moves a pointer on the dial. Other sensing elements in pressure gauges include diaphragms, bellows, and capsule elements. Pressure gauges are used in various applications, including industrial processes, HVAC systems, and medical equipment. They can be found in various styles and sizes, from small gauges used in portable equipment to large, highly accurate meters used in laboratory or industrial settings. Accurate and reliable pressure measurement is essential for ensuring the safety and efficiency of many different types of systems. It's essential to select the correct type of pressure gauge for the application. Factors to consider include the type of fluid or gas being measured, the range of pressures expected, and the system's operating conditions. Dial: The dial is the face of the pressure gauge where the pressure readings are displayed. It usually has a circular shape and a scale that shows the pressure range in different units of measurement. Pointer: The pointer is attached to the sensing element and moves in response to changes in pressure. It indicates the pressure reading on the dial. Sensing element: The sensing element is part of the pressure gauge that reacts to changes in pressure. Depending on the application, it can be a bourdon tube, diaphragm, bellows, or capsule element. Connection: The connection is part of the pressure gauge that attaches to the measured system. It can be a threaded, flanged, or welded connection. Case: The case is the outer shell of the pressure gauge that protects the internal components from damage. Depending on the application, it can be made of plastic, stainless steel, or other materials. Accuracy: The accuracy of a pressure gauge refers to how closely it measures the actual pressure of the system. It is usually expressed as a percentage of the full scale. Pressure range: The pressure range is the range of pressures that the pressure gauge can measure. It is usually expressed in pounds per square inch (psi), bar, or other pressure units. Overpressure protection: Overpressure protection is a feature that prevents the pressure gauge from being damaged by pressures that exceed its rated range. It can be achieved through a pressure relief valve, snubber, or another device. Mounting: The mounting of a pressure gauge refers to how it is attached to the measured system. Depending on the application, it can be a bottom, back, or panel mount.
₹1,297  
A vacuum gauge Arbuda Vaccuum Gauge (-760 mmHG to 0) Bourdon Type SS Body 21/2" Back Connection Glycerin Filled is an instrument that measures the degree of vacuum, or the amount of pressure below atmospheric pressure, in a closed system. There are several types of vacuum gauges, each with its own principle of operation and measurement range. Some common types of vacuum gauges include: Bourdon gauge: This is a mechanical gauge that measures vacuum based on the deformation of a metal tube called a Bourdon tube. As the vacuum level changes, the Bourdon tube deforms, and the resulting motion is displayed on a calibrated dial. Thermocouple gauge: This type of gauge measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a thermocouple and displayed on a calibrated dial. Ionization gauge: This is a high-precision gauge that measures vacuum based on the ionization of gas molecules. As the vacuum level decreases, the number of gas molecules decreases, and the ionization current changes, which is detected and displayed on a calibrated dial. Pirani gauge: This is a gauge that measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a heated filament and displayed on a calibrated dial. Vacuum gauges are widely used in industrial processes, such as vacuum metallurgy, vacuum coating, and vacuum drying, as well as in scientific research and laboratory applications.
₹1,297  
A vacuum gauge Arbuda Vaccuum Gauge (-760 mmHG to 0) Bourdon Type SS Body 21/2" Bottom Connection Glycerin Filled is an instrument that measures the degree of vacuum, or the amount of pressure below atmospheric pressure, in a closed system. There are several types of vacuum gauges, each with its own principle of operation and measurement range. Some common types of vacuum gauges include: Bourdon gauge: This is a mechanical gauge that measures vacuum based on the deformation of a metal tube called a Bourdon tube. As the vacuum level changes, the Bourdon tube deforms, and the resulting motion is displayed on a calibrated dial. Thermocouple gauge: This type of gauge measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a thermocouple and displayed on a calibrated dial. Ionization gauge: This is a high-precision gauge that measures vacuum based on the ionization of gas molecules. As the vacuum level decreases, the number of gas molecules decreases, and the ionization current changes, which is detected and displayed on a calibrated dial. Pirani gauge: This is a gauge that measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a heated filament and displayed on a calibrated dial. Vacuum gauges are widely used in industrial processes, such as vacuum metallurgy, vacuum coating, and vacuum drying, as well as in scientific research and laboratory applications.
₹1,167  
A vacuum gauge Arbuda Vaccuum Gauge (-760 mmHG to 0) Bourdon Type SS Body 21/2" Back Connection Without Glycerin is an instrument that measures the degree of vacuum, or the amount of pressure below atmospheric pressure, in a closed system. There are several types of vacuum gauges, each with its own principle of operation and measurement range. Some common types of vacuum gauges include: Bourdon gauge: This is a mechanical gauge that measures vacuum based on the deformation of a metal tube called a Bourdon tube. As the vacuum level changes, the Bourdon tube deforms, and the resulting motion is displayed on a calibrated dial. Thermocouple gauge: This type of gauge measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a thermocouple and displayed on a calibrated dial. Ionization gauge: This is a high-precision gauge that measures vacuum based on the ionization of gas molecules. As the vacuum level decreases, the number of gas molecules decreases, and the ionization current changes, which is detected and displayed on a calibrated dial. Pirani gauge: This is a gauge that measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a heated filament and displayed on a calibrated dial. Vacuum gauges are widely used in industrial processes, such as vacuum metallurgy, vacuum coating, and vacuum drying, as well as in scientific research and laboratory applications.
₹1,297  
A vacuum gauge Arbuda Vaccuum Gauge (-760 mmHG to 0) Bourdon Type SS Body 21/2" Bottom Connection Without Glycerin is an instrument that measures the degree of vacuum, or the amount of pressure below atmospheric pressure, in a closed system. There are several types of vacuum gauges, each with its own principle of operation and measurement range. Some common types of vacuum gauges include: Bourdon gauge: This is a mechanical gauge that measures vacuum based on the deformation of a metal tube called a Bourdon tube. As the vacuum level changes, the Bourdon tube deforms, and the resulting motion is displayed on a calibrated dial. Thermocouple gauge: This type of gauge measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a thermocouple and displayed on a calibrated dial. Ionization gauge: This is a high-precision gauge that measures vacuum based on the ionization of gas molecules. As the vacuum level decreases, the number of gas molecules decreases, and the ionization current changes, which is detected and displayed on a calibrated dial. Pirani gauge: This is a gauge that measures vacuum based on the thermal conductivity of gas molecules. As the vacuum level changes, the thermal conductivity of the gas changes, which is detected by a heated filament and displayed on a calibrated dial. Vacuum gauges are widely used in industrial processes, such as vacuum metallurgy, vacuum coating, and vacuum drying, as well as in scientific research and laboratory applications.
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