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990.40 Threaded Connection Diaphragm Seal

990.40 Threaded Connection Diaphragm Seal

2249

The WIKA 990.40 diaphragm seal with threaded connection in threaded design is suitable for versatile application areas. A replacement of the lower body is possible without modifications on the diaphragm seal system. With this diaphragm seal, low-pressure ranges can be covered ” the large diameter of the diaphragm affects a lower deviation at the measuring instrument when the temperature changes. Mounting of the diaphragm seal to the measuring instrument may be made via a direct connection, for high temperatures via a cooling element or via a flexible capillary. For the material selection, WIKA offers a variety of solutions, in which the upper body of the diaphragm seal and the wetted parts can be made of identical or different materials. The wetted parts can, as an alternative, be coated.
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CAS Pressure Switch & Thermostat

CAS Pressure Switch & Thermostat

2359

In the Danfoss CAS pressure switches and thermostat series, special attention has been given to meeting demands for a high level of enclosure, low differential, robust, compact construction and resistance to shock and vibration. The Danfoss CAS series covers most outdoor as well as indoor application requirements. CAS pressure switches are suitable for use in alarm and regulation systems in factories, diesel plant, compressors, power stations and onboard ships.
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KPS Pressure Switch

KPS Pressure Switch

2362

In the Danfoss KPS switches series, special attention has been given to meeting important demands for a high level of enclosure, robustness, compact construction and resistance to shock and vibration. The Danfoss KPS pressure switch covers most outdoor as well as indoor application requirements, and are suitable for use in alarm and regulation systems in factories, diesel plant, compressors, power station and onboard ships.
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MBS 4010 Pressure Transmitter

MBS 4010 Pressure Transmitter

5139

The Danfoss MBS 4010 pressure transmitter with the optional flush diaphragm is designed for use in almost all industrial applications with non-uniform, high viscous or crystallising mediums, and offers a reliable pressure measurement, even under harsh environmental conditions. A robust design, excellent vibration stability and a high degree of EMC / EMI protection equip the pressure transmitter to meet the most stringent industrial requirements.
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KPS Pressure Switch & Thermostat

KPS Pressure Switch & Thermostat

5306

The Danfoss KPS thermostat and pressure switch series consists of a series of pressure and temperature controlled switches. In the Danfoss KPS series, special attention has been given to meeting demands for a high level of enclosure, robust and compact construction, and resistance to shock and vibration. For the Danfoss KPS pressure switches, the position of the contacts depends on the pressure in the inlet connection and the set scale value. For KPS thermostats, the position of the contacts depends on the temperature of the sensor and the fixed scale value. The series covers most outdoor and indoor application requirements and is suitable for use in monitoring alarm and control systems in factories, diesel plants, compressors, power stations, and board ships. Available types: Danfoss KPS 76 Pressure Switch and Thermostat Danfoss KPS 77 Pressure Switch and Thermostat Danfoss KPS 79 Pressure Switch and Thermostat Danfoss KPS 80 Pressure Switch and Thermostat Danfoss KPS 81 Pressure Switch and Thermostat Danfoss KPS 83 Pressure Switch and Thermostat
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VH780 Flow Switch

VH780 Flow Switch

7590

The SIKA VH780 flow switch monitors the flow of low-viscosity media in pipes. The SIKA VH780 offers a reliable solution for ensuring the minimum flow rate and thereby protecting high-quality systems and installations from damages. These flow switches work based on the well- established mechanical operating principles. Thanks to the different paddle lengths, the switch points of the paddle flow switches can be configured for a wide switching range. The flowing medium hits the plate secured to the end of a paddle. The resulting dynamic pressure causes the paddle to travel. This, in turn, causes the actuation of a micro switch. The flowing medium hits the plate secured to the end of a paddle. The resulting dynamic pressure causes the paddle to travel. This, in turn, causes the actuation of a micro switch.
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VKX15 OEM Flow Switch

VKX15 OEM Flow Switch

7594

The SIKA VKX05 OEM flow switches are used for monitoring volume flows. Depending on conditions, the SIKA VKX05 OEM flow switch is available for various nominal widths and set-point ranges. The SIKA VKX05 OEM flow switch contains a paddle system to whose end a permanent magnet is attached. Above this magnet is a reed contact, located outside the flow of fluid. A second magnet creates the force necessary to reset the switch back to the no-flow position. When the flow being monitored pushes against the paddle system, the paddle swings away. This changes the position of the magnet in relation to the reed contact and thus activates the connection. As soon as the flow is interrupted, the paddle moves back to its starting position, thus activating the reed contact once again. The force necessary to push the magnet back is provided by the two magnets repelling each other. Using magnetic force instead of the usual leaf spring means that the switch is considerably more stable in the long term and much less sensitive to pressure peaks.
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VK3 Flow Switch

VK3 Flow Switch

7596

The SIKA VK3 flow switches are used for monitoring volume flows. Depending on conditions, the SIKA VK3 flow switch is available for various nominal widths and set-point ranges. The SIKA VK3 flow switch contains a paddle system to whose end a permanent magnet is attached. Above this magnet is a reed contact, located outside the flow of fluid. A second magnet creates the force necessary to reset the switch back to the no-flow position. When the flow being monitored pushes against the paddle system, the paddle swings away. This changes the position of the magnet in relation to the reed contact and thus activates the connection. As soon as the flow is interrupted, the paddle moves back to its starting position, thus activating the reed contact once again. The force necessary to push the magnet back is provided by the two magnets repelling each other. Using magnetic force instead of the usual leaf spring means that the switch is considerably more stable in the long term and much less sensitive to pressure peaks.
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VK309 Flow Switch

VK309 Flow Switch

7598

The SIKA VK309 flow switches are used for monitoring volume flows. Depending on conditions, the SIKA VK309 flow switch is available for various nominal widths and set-point ranges. The SIKA VK309 flow switch contains a paddle system to whose end a permanent magnet is attached. Above this magnet is a reed contact, located outside the flow of fluid. A second magnet creates the force necessary to reset the switch back to the no-flow position. When the flow being monitored pushes against the paddle system, the paddle swings away. This changes the position of the magnet in relation to the reed contact and thus activates the connection. As soon as the flow is interrupted, the paddle moves back to its starting position, thus activating the reed contact once again. The force necessary to push the magnet back is provided by the two magnets repelling each other. Using magnetic force instead of the usual leaf spring means that the switch is considerably more stable in the long term and much less sensitive to pressure peaks.
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