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The Model 10 Regulator is used in systems that require precise process control, maintaining a stable output pressure that is unaffected by fluctuations in supply pressure due to its highly sensitive diaphragm. Its high output capacity and extremely high sensitivity characteristics make it suitable for various applications that demand high precision. Applications include tension control, cylinder control, manometer reference pressure setting, signal pressure for control valves, and mechanical control systems. 【Features】 ■ High sensitivity of 31.3 Pa ■ High output capacity of 1130 N/min ■ Built-in exhaust valve ■ Adoption of aspirator tube ■ High sensitivity diaphragm ■ Simple structure ■ Option for built-in check valve *For more details, please download the PDF or contact us.
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The Fairchild T6000 series transducer, while compact, can demonstrate its capabilities within control systems.
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Free membership registrationThe Fairchild Model 67 is a dedicated regulator that meets the performance required by automotive test stands and is made of materials compatible with various types of fuel.
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The Fairchild vacuum control regulator has extremely high sensitivity characteristics. It can control from a shallow vacuum near atmospheric pressure to a maximum of -736 kPa. The product series consists of model 16 and the high flow model 1600A, both of which excel in repeatability and guarantee stable control. For more details, please contact us or download the catalog.
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It is possible to measure the liquid viscosity from a very small sample volume of 75μL, with a maximum pressure of 138MPa and a maximum temperature of 375°C. The viscosity range is from 0.2 to 20,000 cP, and the measurement ratio is 1:20, subdivided into 13 ranges, providing stable accuracy and reliability.
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Real-time viscosity measurement can be performed on the process line. The compact, field-installable viscometer provides inline viscosity measurement and control capabilities in various process lines or process loops. Examples of use: - Photoconductors for copiers - Insulating materials for electric wires and cables - Lubricating oil for compressors - Lubricating oil for refrigerants - Fuel oil - Common rail test equipment for diesel engines - Paint - Medical polymers - Proven performance with pharmaceuticals, blood, etc. For more details, please download the catalog or contact us.
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The device consists of a high-pressure sensor section and a setting/monitoring section, and it has a compact design suitable for tabletop use. The sensor operates electromagnetically with a falling piston and calculates the operating time based on viscosity. An RTD is installed in the sensor, allowing for viscosity measurements that are temperature-corrected by continuously measuring the actual temperature. The monitoring section features a menu-based display and input operations, enabling easy and accurate work.
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The measurement principle is based on free fall, and the measuring section moves the piston back and forth using electromagnetic force. The structure is extremely simple and has good cleanability. The measurement range is 0-10,000 cP, subdivided into 12 ranges, with a measurement ratio of 20:1 for each range. 【Features】 ◆ High precision measurement values ◆ Ease of maintenance and high performance ◆ Minimal sample requirement ◆ Over 8,000 units delivered worldwide
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★The measurement principle is based on free fall, where a piston moves up and down within a liquid chamber, and the time taken for this piston to move is related to the fluid viscosity. ★The only moving part is this piston, which operates without any issues even under high pressure, ensuring stable operation. For more details, please contact us or download the catalog.
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To control viscosity in high-temperature processes, a viscosity control setting program can be created up to 40. The built-in software focuses on "no operation required after setting" and includes: - RS232 interface - Selection of analog output along with alarm signals - Automatic data logging function, which is effective for process control The sensor automatically replaces the fluid and also has a self-cleaning function. **For more details, please download the catalog.**
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Heine Corporation manufactures several types of radial force (flange type) load cells. All products have no mounting directionality for the web axis, allowing for proper installation in any measurement direction around the circumference, ensuring effective measurement. The sensors are of the double beam type, offering a good overall error of 0.5% along with robustness.
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The Heine XYR series is a load cell that measures the load on both axes with a single unit. In web tension systems, it continuously provides accurate tension measurements even in cases where the wrap angle changes. It allows for two-axis measurement using only one side without needing to install on both ends of the axis, leading to cost savings.
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Heine Company manufactures cantilever (monopole) type load cells for narrow web applications. They are specifically designed for tension measurement of narrow wire materials such as wires, cables, tapes, and fibers.
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The product consists of a sensor and an amplifier display, is lightweight, and makes on-site transportation easy. When the sensor is inserted into the web rotation surface and a load is applied, the load value is displayed on the instrument.
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The TSW series from Heine is a load cell specifically designed for tension measurement of wires. The product comes with measuring and guide rollers, is compact and lightweight, and is easy to install on machinery.
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Because it is a bolt type, it can be easily replaced if existing products are mounted on the fork head. Additionally, the ease of installation can reduce costs when upgrading the load cell.
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The sensors are available in various types including electromagnetic, electromagnetic eddy current, and inductive types, compatible with both ferrous and non-ferrous materials. We offer a wide range of products, from low-cost options that are easy to teach to those that can support various field buses, tailored to different applications. For ferrous materials, they can detect up to a thickness of 8mm, and for non-ferrous materials, up to 15mm. There are also products that allow for the connection of four sensors to a single controller, enhancing work efficiency and reducing costs. ※※Video available below※※ Please take a look.
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The Roland SND40 uses a non-contact eddy current and leakage magnetic flux sensor to detect weld seams on metal plates, both ferrous and non-ferrous, and can identify the position of welds on pipes with a diameter of up to 500mm. 【Benefits】 ◎ Detection of weld seams that cannot be recognized by visual sensors ◎ Utilizes two technological elements: magnetic flux and eddy currents * A full-surround coil that can also be used for metal rods, wires, and cables is available, accommodating a variety of materials. ● Additional technical data and specifications can be viewed from the 【Download】 section. The manufacturing of coil materials and other long materials (cables and wires) results in elongated products (metal coil materials are welded at the ends, and cable materials use joints), necessitating automatic detection of weld seams. In the case of tubes, cans, or drums, automatic detection of weld seams is required along with positioning of the material for further processing. For example, in the case of pipe materials, there is a signal output function that stops the seam position at a specified angle in preparation for the next bending process. The appropriate combination of sensors for the SND40 enables the detection of longitudinal weld seams in all metal tubes, cans, and drums, as well as the detection of end weld seams in coil materials, cables, and wire materials.
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When supplying steel strips to a stamping press, the final end of the reel unwinding and the unwinding part of the new reel are welded together for continuous transport, but detection of the weld joint must always be performed prior to the press process. In the case of a stamping press, the most important point for automating detection is that it must be conducted while the transport repeatedly moves and stops in a short time. The Roland NS9N is the first product developed specifically as a detector for narrow steel strips.
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It detects welding defects in pipes, wires, cables, rods, etc., using a non-contact eddy current sensor. It can accommodate diameters from a minimum of 1mm to a maximum of 90mm with several types of full-circle coil sensors. It has a resolution of 0.6mm at a material speed of 10m/s, allowing for accurate detection of defect locations. <Features> ★ Measurement possible from 1mm to 90mm in diameter ★ Detection of cracks, seams, holes, and foreign material sections in wires, cables, pipes, rebar, and wire rods ★ Two-channel connection possible with one controller (varies by model) ★ Up to 255 types of measurement programs can be set according to material ★ Inspection speed of 0.6 to 600 m/min ★ Compatible with general-purpose PCs ★ Provision of sensors tailored to various materials ★ DC magnetic yoke (optional) ★ Parameters can be downloaded and uploaded ★ Fieldbus interface (optional) such as PROFIBUS, CONTROLNET, DEVICENET, INTERBUS, etc.
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Introducing the variable differential pressure switch from CCS (Custom Control Sensors), a specialized manufacturer of pressure and temperature switches brought to you by Japan Controls. You can specify the material of the wetted parts as aluminum or stainless steel.
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The SV series solenoid valves are products developed for aerospace equipment and onboard use, and are used in various general industrial applications. 【Features】 ★ Based on a 3-way, 2-position valve that can be used from vacuum to a maximum pressure of 41.4 MPa. ★ The internal and external leakage characteristics are extremely excellent, generally equivalent to zero leakage. ★ The fluids handled include air, as well as a variety of gases and liquids. ★ The body material can be selected from stainless steel, brass, and aluminum. *We also accept the necessary KHK testing required for high-pressure gas use, providing optimal solenoid valve selection for users.
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The SV series solenoid valves are products developed for aerospace equipment and onboard use, and they are used in various applications across general industries. They are based on a 3-way, 2-position valve that can be used from vacuum up to a maximum operating pressure of 41.4 MPa. The internal and external leakage characteristics are extremely excellent, and it is generally acceptable to consider them as having zero leakage. The fluids they can handle include air, a variety of gases, and liquids, and the body materials can be selected from stainless steel, brass, and aluminum. We also accept KHK testing required for high-pressure gas usage, providing users with optimal solenoid valve selection.
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The SV series solenoid valves are products developed for aerospace equipment and onboard use, and are used in various general industrial applications. They are based on a 3-way, 2-position valve that can be used from vacuum up to a maximum operating pressure of 41.4 MPa. The internal and external leakage characteristics are extremely excellent, and it is generally acceptable to consider them as zero leakage. The fluids they can handle include air as well as a variety of gases and liquids, and the body materials can be selected from stainless steel, brass, and aluminum. We also accept KHK testing required for high-pressure gas use, providing users with optimal solenoid valve selection.
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The SV series solenoid valves are products developed for aerospace equipment and onboard use, and are utilized in various general industrial applications. They are based on a three-way, two-position valve that can be used from vacuum up to a maximum operating pressure of 41.4 MPa. The internal and external leakage characteristics are extremely excellent, and it is generally acceptable to consider them as zero leakage. The fluids can include air, as well as a variety of gases and liquids, and the body materials can be selected from stainless steel, brass, and aluminum. We also accept KHK testing required for high-pressure gas use, providing users with optimal solenoid valve selection. For more details, please contact us or download the catalog.
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The basic unit is a gas booster pump that pressurizes low-pressure helium gas to high pressure, using an air-driven gas booster manufactured by Haskel. The gas booster can be selected according to the required refill pressure and the capacity of the container, allowing for the most efficient combination of equipment.
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The basic unit is a gas booster pump that pressurizes low-pressure helium gas to high pressure, using an air-driven gas booster manufactured by Haskel. The gas booster can be selected according to the required refill pressure and the capacity of the container, allowing for the most efficient combination of equipment.
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This is an introduction to a comprehensive catalog that includes a series ranging from low pressure to ultra-high pressure. [Contents] ■ Ball Bubble ■ Trunnion Valve ■ Pipe Valve ■ Tube Valve ■ Accessories For more details, please contact us or download the catalog.
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In the automotive industry tests, it is required to supply various gases stably at high pressure. Particularly in situations that require precise gas pressure control, such as durability tests and performance evaluations, a reliable booster device is essential. Insufficient pressure or unstable supply can lead to variations in test results and, in some cases, damage to testing equipment. Haskel's gas boosters are air-driven and do not require electricity, and since the air drive and gas sections are isolated, they prevent the contamination of hydrocarbons, achieving safe and clean gas pressurization. With a wide range of models capable of handling pressures up to 269 MPa and the flexibility to create custom systems, we can meet your diverse testing needs. 【Usage Scenarios】 - Durability testing of automotive parts - Performance evaluation tests for vehicles - Various gas encapsulation tests - Use of high-pressure gases in research and development 【Benefits of Implementation】 - Improved accuracy of tests - Ensured safety - Compatibility with a wide range of gases - Optimal system construction through custom solutions
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In the semiconductor industry's encapsulation process, precise gas pressure control is directly linked to product quality and reliability. In particular, the accurate pressurization of gas during the encapsulation process is essential for uniform filling and reducing defect rates. Inadequate gas pressure can lead to encapsulation defects and variations in product performance. Haskel's gas boosters are air-driven, requiring no electricity and no lubrication of the airline, making them suitable for the clean environments required in semiconductor manufacturing processes. Since the air-driven section and gas section are isolated, there is no contamination from hydrocarbons, meeting the demands of encapsulation processes that use high-purity gases. 【Application Scenarios】 - Gas injection for semiconductor encapsulants - Gas filling for precision instruments - High-pressure gas supply in research and development 【Benefits of Implementation】 - Stabilization of gas pressure in the encapsulation process - Improvement in product quality and reduction in defect rates - Realization of gas pressurization in a clean environment
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In experimental research and development, precise gas pressure control is often required. Particularly in experiments that require high-pressure gas or where it is necessary to supply small amounts of gas at accurate pressures, stable pressurization capability is essential. Insufficient pressurization capability can lead to variability in experimental results or the inability to achieve the desired effects. Haskel's gas boosters are air-driven and do not require electricity, nor do they need lubrication for the airline, making them suitable for experiments in clean environments. The air-driven section and gas section are isolated, preventing hydrocarbon contamination, allowing for safe use even in experiments that utilize high-purity gases. 【Use Cases】 - Various experiments requiring high-pressure gas - Precise pressure adjustment of trace gases - Pressurization of gas supply lines - Gas-related experiments in laboratories 【Benefits of Implementation】 - Stable supply of gas pressure required for experiments - Improved reliability of experimental results - Support for conducting experiments in clean environments - Compatibility with a wide range of gas types
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In the energy industry, maintaining a stable pressure of gas is essential in the supply process. In particular, pressure regulation in supply lines and ensuring the appropriate gas volume according to demand are crucial for efficient operations. Insufficient pressure or unstable supply can lead to decreased operational efficiency of plants and disruptions in the supply network. The Haskel gas booster is air-driven, requiring no electricity and no lubrication for the air line, making installation and operation easy. Since the air-driven section and gas section are isolated, there is no contamination with hydrocarbons, ensuring a clean gas supply. It can boost pressure up to 269 MPa and is available in models that accommodate a wide range. 【Usage Scenarios】 - Pressure regulation in gas supply lines - Ensuring gas volume according to demand - Sites requiring clean gas supply 【Benefits of Implementation】 - Achieving stable gas supply - Improving plant operational efficiency - Reducing operational costs
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The Haskell gas booster has a small area gas piston directly connected to a large area reciprocating air piston, and the gas piston operates within a high-pressure gas barrel. 【Features】 ■ No electricity is required as it is air-driven ■ No lubrication is needed for the airline ■ The air-driven section and gas section are isolated, preventing hydrocarbon contamination ■ Maximum pressure can be increased up to 269 MPa ■ A wide range of models is available to accommodate various needs ■ Effective cooling utilizing the exhaust of the driving air ■ Custom systems can be manufactured as well as standard types ■ Applicable to most gases For more details, please contact us or download the catalog.
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The Haskell gas booster has a small area gas piston directly connected to a large area reciprocating air piston, and the gas piston operates within a high-pressure gas barrel. 【Features】 ■ No electricity is required as it is air-driven ■ No lubrication is needed for the air line ■ The air-driven section and gas section are isolated, preventing hydrocarbon contamination ■ Maximum pressure can be increased up to 269 MPa ■ A wide range of models is available to accommodate various needs ■ Effective cooling utilizing the exhaust of the driving air ■ Custom systems as well as standard models can be manufactured ■ Applicable to most gases For more details, please contact us or download the catalog.
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