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PTX 600 Series Precision pressure transmitters
For critical applications in industrial and research environments the PTX 600 series of two wire, 4-20mA output pressure transmitters improves upon the performance of previous models by offering new levels of stability, versatility and measurement accuracy from a standard production device.
Druck's well proven silicon technology has been developed to provide a miniature micro-machined diaphragm which is electrostatically bonded to a glass substrate and stitch bonded within a glass to metal seal assembly to provide exceptional thermal and stress isolation.
Features & Benefits:
Ranges from 1.5 psi to 10,000 psig or psia
Output 2-wire, 4-20mA
Accuracy ±0.08% FS BSL
Stability 0.1% FS per year
TEB ±1%FS from -5° to 176°F
400% FS Overpressure
NACE compatible Hastelloy and 316L SS wetted parts
UL/CSA/FM/CENELEC IS Class I, Div 1, CE Marked
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| The valves to membrane are planned in order to distribute material of lower-middle viscosity with a high degree of precision and doses of varied form and dimensions till fractions of microliter. The closing to motivating force assures the compatibility of the valves with the telephones exchange time/pressure. The short race of opening concurs the positive and fast closing of the valve. The metal ring of regulation of the race allows specifies settaggi of the dimension of the dose to distribute. The compact design with assembly geometries is horizontals that vertical concur great flexibility and facility of integration in the automated applications. The room of the fluid is in polyethylene to highest molecular weight (UHMWPE) for the majority of the applications, but he is available also in Teflon® for requirements of chemical compatibility and in Delrin® for UV. A version in stainless steel is moreover available (5622VU-DVD), with circuit of the fluid optimized specifically for the adhesive ones to polymerization UV, rendered of it and enamels used in the production of DVD and CD. The valves demand little maintenance, are easy to use and concur a fast substitution of pieces of reciprocation. The valve is available also in the palm version with commando to manual lever. |
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- High diversity in the plot of the elasticity curves
- High stress forces obtained
- Can play the role of a multi-spiral spring having an elasticity curve perfectly adapted to the problem to be resolved.
Sectors of activity :
-Cryogenics,
-Aeronautics,
-Aerospace,
-Armament,
-Automotive Industry,
-Household Appliances,
-A1 Racing Cars,
-Packings and Linings,
-Electric Motors, Nuclear,
-Offshore,
-Industrial Valves and Fittings |
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Springs
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- High diversity in the plot of the elasticity curves
- High stress forces obtained
- Can play the role of a multi-spiral spring having an elasticity curve perfectly adapted to the problem to be resolved.
Sectors of activity :
-Cryogenics,
-Aeronautics,
-Aerospace,
-Armament,
-Automotive Industry,
-Household Appliances,
-A1 Racing Cars,
-Packings and Linings,
-Electric Motors, Nuclear,
-Offshore,
-Industrial Valves and Fittings |
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THE MATERIAL
Butyl: The polymer butyl (IIR - isobutylene isoprene - rubber) is an elastomer with a small number of double bonds, produced through co-polymerisation of isobutylene and isoprene.
EPDM: The polymer EPDM, ethylene-propylene rubber, is produced through co-polymerisation of ethylene, propylene and diene monomer, producing a polymer made up of saturated linear macromolecules with a paraffinic structure.
In addition to the base polymer, both EPDM and Butyl contain reinforcing carbon black, fillers, process chemicals, antioxidants and vulcanising agents. After mixing the ingredients into a homogenous plastic compound, two layers of the rubber are rolled out in a calender to form a double sheet. Vulcanisation is then carried out. The long rubber molecules in the material are cross-linked through heat and pressure, creating an elastic membrane.
RESISTANT TO THE ENVIRONMENT
The vulcanisation process means that the material differs from all thermoplastic products, in that its properties are not affected by varying temperatures. The product is chemically stable and always returns to its original dimensions after stretching.
The cross-linked molecular structure gives EPDM and Butyl rubber their unique properties. Ageing or changes in characteristics are negligible despite decades of exposure to the atmosphere, sunlight, UV radiation, chemical fallout, water or major temperature fluctuations.
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The HILCO ceramic membrane system is an ideal way to lower your oily-water waste disposal costs. The filtration system utilizes high-velocity fluid “crossflow” across the face of the membrane. The oil-free water passes through the ceramic membrane while the oily waste is concentrated in a process reservoir. Depending on the particular waste stream disposal, volumes can be reduced as much as 20x. The system is designed to accept three different micron-rated membranes (0.2 µm, 0.01 µm, and 0.005 µm) in order to meet all specific local discharge ordinances.
Features and Benefits include:
• High Packing Density
• Broad PH Range of 2-13
• Resistant to Thermal Shock
• Back Flushable
• Immune to Chlorine Attack
• Durable Ceramic Extends Lifetime
• High Surface Area to Unit Volume
• Compact Design
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Fuel cells
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Benefits:
- extremely small total height
- easily compatible with CLEARPOINT® filters
- top-grade design
- all functional components are built-in and well protected inside the housing
- guaranteed drying, as humidity is removed in any case
- no alteration of the usual compressed air composition
- low purge air demand
- service-free, as there are no wearing parts in the dryer (merely the regular change of the filter elements is required)
- no ecologically undesirable drying agents |
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Membrane Compressed Air Dryer for Critical Applications
The Parker Compressed Air Point of Use Dryer are capable of delivering clean, dry compressed air with a dew point of -40°C at atmospheric pressure. No electrical supply is required to use the Parker Membrane Air Dryer. Each membrane air dryer is equipped with a high efficiency coalescing prefilter to remove oil, water, and particulate contamination.
Features
Provide clean, dry compressed air
Offer a reliable, efficient and economical
alternative to pressure swing and
refrigerant dryer technologies
Require no electricity low operating costs
Built-in high-efficiency prefilter
Atmospheric dew points as low as
-40ºC prevent freezing
Inherently safe in hazardous areas
Silent operation
No refrigerants or freons
No desiccant to change
No moving parts or motors |
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S u n s e p use diffusion prinziple for drying air, by a polymere microfibre hollow membrane. The sunsep-w can ensure a dewpoint up to -40°C. Outlet dewpoint depends on the inlet dewpoint temperature.
Type max. capacity Weight Microfilter (Prefilter)
Sunsep at 8 bar a without prefilter
(l/min) (kg) SWC M04-70 030 0,05 G 2 XP
SWC M08-100 70 0,26 G 2 XP
SWC M15-100 120 0,27 G 2 XP
SWC 01-150 200 0,39 G 2 XP
SWC 02-250 300 0,69 G 2 XP
SWC 02-200 400 0,45 G 2 XP
SWC 03-250 450 0,71 G 2 XP
SWB 01-100 200 0,22 G 2 XP
SWB 01-200 200 0,26 G 2 Xp
SWB 05-100 800 0,66 G 3 XP
SWF M06-400 025 0,12 G 2 XP
The regeneration air requirement quantity is 15-18%. Flow rate as well as the regeneration air requirement are dependent on the operating pressure, inlet temperature and the dew-point of the compressed air. The maximum permissible operating pressure is 8.5 bar min/max compressed air and ambient temperature: -20°C/55°C. Higher operating pressures available on request. |
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Dimensioning range from 26 Nm³/h up to 320 Nm³/h at purity
up to 99.5 %.
Due to the development of special fibres filtrating compressed
air very efficiently, this plant achieves unchanging purity grades.
The IMT-MN is a cost-saving alternative to the traditional supply
by gas-bundles or tank installations.
As an option these plants are available in stainless steel or ATEX
dessign. |
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A complete range of membrane module sets offers you the possibility to integrate your own nitrogen source. Your requirements can always be met thanks to the different sizes and membrane performance available.
The smallest module only measures around 30 centimetres in length and the largest around 1.5 metres. Due to the different measurements there is surely a module that will fit the equipment you are designing. |
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Oxygen from the socket.
Oxygen supply without extensive logistics at purity range up to 40 %.
These membrane generators provide a continuous supply in the
capacity range of 150 ltrs./min. up to 2000 ltrs./min. at O2 purity
grades from 30 - 40 %. |
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ADVANTAGES AND ECONOMIES
Conceived specifically to meet the requirements of flows and purities of the analytical instruments
Increase in the analytical performances
Increase in the effectiveness of the laboratory
Reinforced safety
More important economies
Simple installation
Recommended and approved by the manufacturers of instrumentations LCMS
APPLICATION
Product of nitrogen high purity starting from compressed air.
Replace the nitrogen bottles for the following applications:
- LCMS/MS
- DETECTOR ELSD
- EVAPORATION Of SAMPLES
Principle of operation
Nitrogen is produced by using membrane technology, starting from a network of compressed air without oil or pre treaty of a mini pressure. of 110 psi.
The fall of pressure is only of 10 psi (0.5 bar), weakest of the market, making easier the connection of the generator to your own network of compressed air.
The diaphragm functions on the principle of the selective permeation, or the oxygen, the steam and the CO2 which are fast gases cross the diaphragm, while nitrogen, gas slow, continuous to circulate in the form of gas flow inside the diaphragm. |
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