OEM Manufacturer TU-022 thermostatic cartridge wax sensor for sanitary ware Supply to Philippines
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OEM Manufacturer TU-022 thermostatic cartridge wax sensor for sanitary ware Supply to Philippines Detail:
1. Operation Principle
The Thermostatic Wax that has been sealed in shell body induces expansion by a given temperature, and inner rubber seal part drives its handspike to move under expansion pressure to realize a transition from thermal energy into mechanical energy. The Thermostatic Wax brings an upward movement to its handspike, and automatic control of various function are realized by use of upward movement of handspike. The return of handspike is accomplished by negative load in a given returned temperature.
2. Characteristic
(1)Small body size, occupied limited space, and its size and structure may be designed in according to the location where needs to work.
(2)Temperature control is reliable and nicety
(3)No shaking and tranquilization in working condition.
(4)The element doesn’t need special maintenance.
(5)Working life is long.
3.Main Technical Parameters
(1)Handspike’s height may be confirmed by drawing and technical parameters
(2)Handspike movement is relatives to the temperature range of the element, and the effective distance range is from 1.5mm to 20 mm.
(3)Temperature control range of thermal wax actuator is between –20 ~ 230℃.
(4)Lag phenomenon is generally 1 ~ 2℃. Friction of each component part and lag of the component part temperature cause a lag phenomenon. Because there is a difference between up and down curve of traveling distance.
(5)Loading force of thermal wax actuator is difference, it depends on its’ shell size.
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New diaphragm valve from Georg Fischer Piping Systems
Twice the flow with optimized flow contours
The new diaphragm valves have decisive advantages in handling and safety, as well as efficiency. The flow in these new valves is twice that of conventional diaphragm valves. In addition, the central plastic thread, which is used in place of the usual four metal screws, guarantees a corrosion-resistant connection.
Not apparent at first glance, but equally important is the more homogenous thermal expansion behavior achieved by the central plastic thread, which eliminates the need for retightening the valve body. The central thread ensures a consistent seat pressure, guaranteeing leak-tightness up to an operating pressure of 16 bar.
New flow contour of the diaphragm valves
The real technological advances of the new generation of diaphragm valves are actually located on the inside. Thanks to the optimized, turbulence-free flow contour the KV value has been doubled. The rounded contours with soft transitions and radii
mean less abrasion and noise transmission, which adds comfort to daily use. The modified geometry of the valve body results in linear control characteristics — and therefore also consistently stable processes.
How the design affects the flow rate of the diaphragm valves can be seen in an independent comparison in which the new diaphragm valves from GF Piping Systems were tested against conventional diaphragm valves. 100% more flow was achieved on average with the optimized, turbulence-free flow contour. And this of course contributes to the economic efficiency of the diaphragm valves with lower running costs and the lower overall cost for media transport.
Material diversity and guaranteed compatibility
A large variety of materials warrant that the valves are compatible with the processes they are used in, thus ensuring safety. Valve bodies can be made of PVC-U, PVC-C, ABS as well as PP-H, PP-n and PVDF, membranes of EPDM, PTFE, FPM and NBR. This range of materials covers nearly the entire spectrum of chemicals with which the diaphragm valves can come into contact. So it makes no difference what type of media needs to be conveyed: From extremely contaminated or solid-containing to highly pure media, from the chemical process industry to microelectronics or water treatment, from cooling to control applications, everything is now possible. The large diversity of connection options means that the valves can be used universally. Compatibility to the global standards for connections, e.g. ISO, BS,
ASTM, ANSI and JIS, as well as to prEN ISO 16138, ISO9393 or EN558 standards have all been taken into consideration. Outer dimensions and connecting dimensions have not been changed from the preceding models. All the new valves are therefore backward compatible and can be built into existing pipelines.
Design diversity
Standard versions of the diaphragm valves are operated manually via an integrated lockable handwheel, which protects against inadvertent manipulation. An optional self-adjusting electrical feedback unit, installed in just a few simple steps, enables automatic control and regulation of piping systems, as well as reliable process monitoring.
Automation of the valves is possible with the Diastar pneumatic valve actuator. Thanks to the three different pressure categories — up to 6 bar, up to 10 bar and up 3/3 to 16 bar — the pneumatically actuated diaphragm valves are quickly and easily integrated into nearly all piping systems. Integrating the valves into system control is no problem with the corresponding interfaces and the wide array of accessories, so individual solutions are always possible.
For more information visit our website:
https://www.gfps.com/appgate/ecat/common_flow/100005/COM/en/index.html
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How to Make a Backup File with ROBO Cylinder RCPC Software – IAI Electric Actuator
https://www.intelligentactuator.com/robo-cylinder-pc-interface-software/
PC Interface Software for RC (ROBO Cylinder)
File, Backup, Save All Data…
File, backup, Load All Data…
Select File Name…
Restart the Controller…
– see details on the video —
Economical and easy to use, the Robo Cylinder® is specifically designed to accomplish the simple tasks usually assigned to air cylinder units, but with greater flexibility, control, and efficiency. The Robo Cylinder PC Interface Software provides a simple, user-friendly means of ‘teaching’ your Robo Cylinder controller.
Robo Cylinder Control & Programming Software Multiple positioning is one of the main advantages the Robo Cylinder enjoys over pneumatic cylinders. Both the RCP Controller and the RCS Controller store 16 user-defined positions programmable throughout the full stroke length.
Programming the Robo Cylinder using the Intelligent Actuator RC software is a simple task. The controller was designed to be a “dumb” positioner, or a slave to a PLC or other master device. Once the positions have been taught through the software all the PLC need to do is select one of the sixteen possible positions (through binary inputs) and toggle a move signal.
Using only 16 positions and eliminating any programmability or user I/O brings down the system cost, making the Robo Cylinder very affordable. By utilizing our Robo Cylinder serial communication protocol, a PLC or industrial PC could store the point table and send over the changes via RS485. This method creates virtually an infinite amount of positions stored remotely in the PLC or Industrial PC.
Robo Cylinders can be controlled via standard 24VDC I/O or an RS485 serial communication link. By using serial communication in combination with the digital I/O, 16 Robo Cylinders can be linked together in a variety of network configurations to meet your low-cost automation needs. The RCS controller is available with DeviceNet, UNI-WIRE, CC-Link, or PROFIBUS network capabilities.
Point to Point Motion
Though the controller is simple to program, it is flexible in the positions that are taught. Each position in the point table can have it’s own velocity, acceleration, and deceleration. The Robo Cylinder can then move from point to point in response to external signals. In a point-to-point motion pattern the actuator will simply move to a programmed position.
Incremental Motion
Though the controller can only store 16 points, it can move to more positions. The point table has a field that will allow the position to be considered an absolute move or an incremental move. An absolute move will move to a fixed distance from home. An incremental move will move a programmed distance away from its current location. This would allow the actuator to move along its entire length if the same incremental move was executed enough times.
PUSH Function
In the “PUSH” mode the RCP motor will rotate at 75 RPM. The controller will be expecting to encounter a force during that “PUSH” movement. Once that force has been encountered the Robo Cylinder will “PUSH” or maintain constant, programmed torque against the force without entering an error or alarm situation. It will maintain the torque until the Robo Cylinder is instructed to move again. In the case that a force is not encountered the actuator will simply move a programmed distance and stop.