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Minggu, 26 April 2020

TLV Vortex Flowmeters

Vortex Flowmeters Vortex flowmeters and flow computers. Measure the flow rates of a variety of fluids, including steam, air, and water. Operating Pressure Range: 0 - 4.96 MPaG Operating Temperature Range: -200 - 400 °C Vortex Flowmeter EF200 Product Details EC351 EC351 Specifications Manual • Compact flow computer • Combines signals from volumetric flow meters with those from pressure, temperature and density sensors. • Wide range of important variables can be calculated and displayed. EF200 EF200 Specifications No Manual • Vortex flowmeter for use on various fluids such as steam, water and air • Integrated temperature sensor, automatically corrects for mass flow rate • Equipped with an integrated indicator • Optionally measures steam dryness fraction (80-100%) Always check the specification PDFs for the exact product specification available in your region. Benefits and Features Measures flow by means of the regular vortices (Karmen vortex) generated downstream of an object as fluid flows around the object. Vortex flowmeters can be used to measure various fluids, such as liquids and gasses, and are particularly suitable for measuring steam. Application Areas Measures the flow of steam, condensate, water, etc.

TLV Condensate Recovery Pumps

Condensate Recovery Pumps Condensate recovery pumps with motorized condensate transport. PowerTrap® GT/GP Series Pamphlet (2622 KB) Product Details CP-N CP-N No Data Sheet No Manual • Lift heads up to 200m • Max. Operating Temperature: 180°C • For use on closed recovery applications CP-S CP-S No Data Sheet No Manual • Lift heads up to 30m • Max. Operating Temperature: 120°C • For use on open recovery applications Always check the specification PDFs for the exact product specification available in your region. Benefits and Features Energy Conservation Low filling head, ejector-type pumps recover high-temperature condensate without cavitation. Large quantities of heat can be recycled when high-temperature condensate is recovered to the boiler. Easy to Operate Recovery is possible with a minimum filling head of 1 m (3 ft), requiring a minimum of space for the equipment. The control panel is designed for automatic operation, eliminating the need for manual valve operation. Does not require a pressure vessel, so there is no need for notification to pressure vessel regulating authorities. Long Service Life The ejector system prevents cavitation and prolongs the life of the pump. Application Areas Recovery of condensate from steam equipment and transport to boilers and condensate tanks.

TLV Condensate Recovery

Condensate Recovery Condensate recovery pumps suitable for use in high-lift closed recovery applications and mechanical applications where the use of electric power is not possible. Available models transport condensate via suction or via the flow of gravity. Operating Pressure Range: Vacuum - 1.4 MPaG Operating Temperature Range: 0 - 220 °C PowerTrap® GT/GP Series Pamphlet (2622 KB) Compact Mechanical Pump with Steam Trap Designed to Eliminate Stall Condensate Recovery Pump for Closed Systems Condensate Recovery Pump for Open Systems PowerTrap® with built in trap (Animation) PowerTrap® (Animation) Subcategories Condensate Recovery Pumps Condensate Recovery Pumps Condensate recovery pumps with motorized condensate transport. PowerTrap® (Mechanical Pump with Built-in Trap) PowerTrap® (Mechanical Pump with Built-in Trap) Condensate recovery pump with integral trap requiring no electricity. PowerTrap® (Mechanical Pump) PowerTrap® (Mechanical Pump) Condensate recovery pumps requiring no electricity. Benefits and Features A broad line-up of condensate recovery equipment optimized to suit each condensate recovery application and capacity. Included are ejector-type pumps for the recovery of high temperature condensate, mechanical pumps that use no electricity (PowerTrap®), and vacuum pumps suitable for the recovery of low-pressure, low-temperature condensate. Comprehensive consulting services for optimized condensate recovery systems, including onsite surveys, measures to ensure water quality, system design, pipeline construction, and confirmation of results. Application Areas Recovers high-temperature condensate and delivers it to another location. Collects, removes, and transports condensate that has accumulated inside the equipment.

TLV Clean Steam Traps

Clean Steam Traps Thermostatic steam traps for clean steam. Designed to allow complete condensate drainage and easy disassembly and cleaning. Operating Pressure Range: 0.01 - 0.6 MPaG Operating Temperature Range: 0 - 165 °C Product Details LV6 LV6 Specifications Manual • Thermostatic steam trap for clean steam. • Crevice-free design allows for condensate drainage without pooling. Always check the specification PDFs for the exact product specification available in your region. Benefits and Features The interior of these steam traps is designed to prevent corrosion and bacterial growth. All components are made of stainless steel. The X-element discharges hot air as well as low-temperature air and cold condensate. This encourages the inflow of steam, thereby reducing start-up times. Clamp connection at the joint allows for easy disassembly and cleaning. Range of Products to Meet the Required Cleanliness Level Interior and exterior surfaces of the steam trap are available in three classes, natural machining, fine machining and buff-polishing. Models are also available with electro-polished surfaces for further improved to prevent bacterial growth. Application Areas Condensate removal from clean and pure steam. Main Applications Bio industries, manufacture of pharmaceuticals, medical sterilizers, food production, etc.

TLV Radiator Traps

Radiator Traps Specialized radiator steam traps for room heating. Operating Pressure Range: 0.01 - 0.3 MPaG Operating Temperature Range: 0 - 150 °C Radiator Trap Pamphlet (235 KB) Product Details RT3A RT3A No Data Sheet Manual • Radiator Steam Trap • Larger Valve Orifice Resists Clogging Always check the specification PDFs for the exact product specification available in your region. Benefits and Features Thermowax is employed as the temperature-sensing medium in these steam traps. Long Service Life Any rust or scale entering the trap from the piping is discharged together with the condensate through the large valve opening, greatly reducing the chance of a build-up of scale that would obstruct the valve opening. The spherical stainless steel ball resists wear on the sealing surfaces and exhibits superior durability. Easy Maintenance The trap can also be disassembled and parts can be replaced while still installed in the piping. Application Areas Radiators for room heating, convectors, baseboard heaters, unit heaters, etc.

TLV Temperature Control Traps

Bimetal-type temperature control steam traps with a built-in scale removal function. Operating Pressure Range: 0.1 - 4.6 MPaG Operating Temperature Range: 0 - 350 °C Temperature Control Steam Traps Pamphlet (880 KB) Temperature Control Steam Trap LEX-3N TZ (Animation) Product Details LEX3N-TZ LEX3N-TZ Specifications Manual • Max. Operating Pressure: 4.6 MPaG • Max. Operating Temperature: 350°C • Built-in Scale Removal Function • Body: Cast Stainless Steel • Suitable for use on interlocking tracers using copper or stainless steel piping/tubing. Always check the specification PDFs for the exact product specification available in your region. Benefits and Features A bimetal element is used for temperature sensing, and the user is able to set the condensate discharge temperature. Energy Conservation Discharges condensate at the desired temperature below the saturation temperature of steam. The sensible heat in the condensate is also used, making it possible to minimize the amount of steam used. Long Service Life The overexpansion mechanism protects the bimetal element from being subjected to excessive force, thereby minimizing deterioration of the bimetal. Easy Maintenance Condensate discharge temperature is adjustable without disconnecting the trap from the piping. The trap can also be disassembled and reassembled while still installed in the piping. Built-in Scale Removal Function (LEX3N-TZ). Clogs in the valve seat can be eliminated without disassembling the trap. Operation Animations Application Areas Applications designed to utilize sensible heat of condensate Main Applications Suitable for steam tracing lines or storage tank coils ONLY IF the required product viscosity will be maintained when the condensate is sub-cooled at least 15 °C (27°F), even to the point of the condensate having a lower temperature than the product temperature. Suitable for use on instrument enclosures ONLY IF the steam or condensate temperature in the enclosures will NOT damage the instrument. Suitable for use as an external air vent for TLV steam traps, or as a non-freeze valve for freeze protection of condensate lines.

TLV Thermostatic Steam Traps

These traps utilize the difference in the temperatures of steam and condensate. Also known as 'Temperature Control Traps' or 'Balanced Pressure Traps.' Operating Pressure Range: 0.01 - 4.6 MPaG Operating Temperature Range: 0 - 350 °C Thermostatic Steam Trap L21S (Animation) Temperature Control Steam Trap LEX-3N TZ (Animation) Subcategories Thermostatic Steam Traps Thermostatic Steam Traps These steam traps operate via the temperature difference between steam and condensate. Temperature Control Traps Temperature Control Traps Bimetal-type temperature control steam traps with a built-in scale removal function. Radiator Traps Radiator Traps Specialized radiator steam traps for room heating. Clean Steam Traps Clean Steam Traps Thermostatic steam traps for clean steam. Designed to allow complete condensate drainage and easy disassembly and cleaning. Benefits and Features The operation principle for thermostatic steam traps utilizes the temperature difference between steam and condensate. TLV traps offer three types of temperature-sensing materials to detect differences in temperature: – Thermoliquid – Bimetal – Thermowax Application Areas Suitable for use on air conditioning, room heating, steam tracers, etc. Models suitable for use with steam heating equipment are also available (thermostatic steam trap L-series).

TLV Thermodynamic Steam Traps

Thermodynamic Steam Traps Steam traps that utilize the difference in the thermodynamic properties of condensate and steam. Also known as 'Disc Traps' Operating Pressure Range: 0.025 - 26 MPaG Operating Temperature Range: 0 - 550 °C ThermoDyne® Disc Traps PowerDyne® Disc Traps TLV Steam Traps aid refurbishment of Marshall steam engine Disc Steam Trap ThermoDyne® (Animation) Disc Steam Trap PowerDyne® (Animation) Subcategories Disc-Type Steam Traps Disc-Type Steam Traps Extremely versatile disc-type steam traps. Benefits and Features The operation principle for these traps utilizes the difference in the thermodynamic properties of condensate and steam. Disc-type traps and impulse-type traps are both examples of steam traps belonging to this classification. TLV’s thermodynamic steam traps are all disc-type traps, which allow less steam leakage and have fewer problems with scale and build-up of dirt. Application Areas Suitable for a variety of applications, such a steam main lines, tracers, steam heating equipment, etc.

TLV Mechanical Steam Traps

Mechanical Steam Traps Mechanical steam traps utilize buoyancy to open and close the valve. Also known as 'Float Traps' or 'Bucket Traps'. Operating Pressure Range: 0 - 12 MPaG Operating Temperature Range: 0 - 530 °C Free Float® Steam Trap Series Pamphlet (1439 KB) Free Float® Steam Traps for Process Use Free Float® Steam Traps for High Temperature, High Pressure Use Free Float® Steam Traps for Steam Mains and Tracer Lines PETRONAS Refinery Achieves Significant Savings with Help of TLV & Enproserve Singapore Refining Company Teams Up with TLV for Major Energy Savings TLV Steam Traps aid refurbishment of Marshall steam engine Free Float® Steam Trap JX/JHX series (Animation) Free Float® Steam Trap SS series (Animation) Subcategories Free Float® Steam Traps (Low Pressure) Free Float® Steam Traps (Low Pressure) Free Float® steam traps that offer continuous discharge and are optimal for processes. Low pressure use, up to 2.1 MPaG. Free Float® Steam Traps (Medium / High Pressure) Free Float® Steam Traps (Medium / High Pressure) Free Float® steam traps that offer continuous discharge and are optimal for processes. Mid to high pressure use, up to 12 MPaG. Some models for use in main lines also available. Free Float® Steam Traps for Main Lines Free Float® Steam Traps for Main Lines Free Float® steam traps for main lines that provide a tight seal even under low condensate load conditions. Steam Traps with Bypass Valve Steam Traps with Bypass Valve Free Float® steam traps with a built-in bypass valve. Large Capacity Float Steam Traps Large Capacity Float Steam Traps Large capacity steam traps with a maximum discharge capacity of 150 t/h. Clean Steam Traps Clean Steam Traps Free Float® steam traps for clean steam. Designed to allow complete condensate drainage and easy disassembly for cleaning. Benefits and Features The operation principle of mechanical traps takes advantage of the difference between the specific gravities of condensate and steam. Free Float® steam traps, a TLV invention, are our flagship series of mechanical steam traps. Free Float® steam traps offer the following features: The spherical float provides an infinite number of contact surfaces with the valve seat, ensuring long service life. Air venting feature for improved equipment productivity. Compact design with no levers or hinges. Large tolerance for backpressure allows for problem-free operation even where condensate is recovered. Application Areas Mechanical traps are suitable for use in a variety of applications, including steam main lines, heat exchangers, and insulation applications such as tracers.

TLV Steam Traps Steam Traps

Steam Traps Automatic valves for the purpose of discharging condensate without venting steam. Operating Pressure Range: 0 - 26 MPaG Operating Temperature Range: 0 - 550 °C Subcategories Mechanical Steam Traps Mechanical Steam Traps Mechanical steam traps utilize buoyancy to open and close the valve. Also known as 'Float Traps' or 'Bucket Traps'. Thermodynamic Steam Traps Thermodynamic Steam Traps Steam traps that utilize the difference in the thermodynamic properties of condensate and steam. Also known as 'Disc Traps' Thermostatic Steam Traps Thermostatic Steam Traps These traps utilize the difference in the temperatures of steam and condensate. Also known as 'Temperature Control Traps' or 'Balanced Pressure Traps.' Benefits and Features A steam trap is a kind of automatic valve that discharges condensate generated during processes and in steam transport lines while preventing any steam from escaping ('trapping' the steam). Steam traps can be divided into three general categories based on their operation mechanism: mechanical, thermodynamic, and thermostatic. TLV manufactures all three of these categories. Our extensive product line-up makes it possible to select the optimal product to suit your objective or application. Each trap offers the highest level of energy conservation in its class. Much consideration is given to the aspect of maintenance, as evidenced by designs that include the unitization of parts, interchangeable parts, and utilization of re-useable PTFE gaskets. Application Areas Below are some common applications and the steam trap types that are often used for each application: Steam Transport Lines (Steam Main Lines) – Free Float® for main lines – Disc type Steam Heating Equipment – Free Float® – Thermostatic – High-capacity Free Float® Tracers, Freeze Protection, Room Heating – Thermostatic – Free Float® – Temperature control traps, radiator traps The different types of traps can also be used in numerous other types of applications in addition to those mentioned above. Contact your TLV sales representative for details.

TLV Control Valves, Controllers

Control Valves, Controllers Multi-purpose control valves and high-precision control valves for steam with a pressure reducing valve as the base. Can be used for a variety of types of control when combined with a controller. Control valves and controllers automatically maintain pressure, temperature, etc. at the target value. Operating Pressure Range: -0.08 - 2.5 MPaG Operating Temperature Range: 0 - 220 °C CV-COS Electro-Pneumatic Control Valve TLV valve improves heat transfer at Greencore site Johnsons Stalbridge Linen Services' laundries utilize TLV steam pressure reducing system Subcategories Multi-Control Valves with Built-in Separator and Steam Trap Multi-Control Valves with Built-in Separator and Steam Trap Automatic multi-control valves consisting of pilot-operated pressure reducing valves with built-in separator and trap to supply dry steam. Together with TLV's reliable controller, valves maintain accurate control at the target pressure, temperature, etc. Multi-Control Valves Multi-Control Valves Automatic multi-control valves consisting of pilot-operated pressure reducing valves. Together with TLV's reliable controller, valves maintain accurate control at the target pressure, temperature, etc. Control Valves Control Valves Electro-pneumatic control valves for steam process or general use. Valves for steam process use are equipped with a built-in separator and steam trap. Also includes self-acting temperature regulators for general steam applications. Surplussing Valves for Steam Surplussing Valves for Steam Self-operated control valves for stabilizing the primary steam pressure of valves. Also known as 'Primary pressure control valves'. Controllers Controllers Controllers that are used together with multi-control valves or general control valves.

TLV PRESSURE REDUCING VALVE for STEAM

Pressure reducing valves for steam and air. A wide assortment of models is available, including pilot-operated models, direct-acting models and models with integral separators and steam traps. Operating Pressure Range: -0.08 - 2.1 MPaG Operating Temperature Range: 0 - 220 °C COSPECT® - Troublefree Pressure Reducing Valves TLV supplies steam equipment to Ringwood Brewery Still in service after 22 years DR20 Direct-Acting Pressure Reducing Valve (Animation) Pressure Reducing Valves (With Built-in Separator and trap) Pressure Reducing Valves (With Built-in Separator and trap) Pilot-operated pressure reducing valves with built-in separator and trap. Local-set and remote-set types are available. Pressure Reducing Valves (Without separator and trap) Pressure Reducing Valves (Without separator and trap) Pilot-operated pressure reducing valves to supply steam or air with stable secondary pressure for general use. Local-set and remote-set types are available. Pressure Reducing Valves (Direct Acting) Pressure Reducing Valves (Direct Acting) Compact, light-weight, direct-acting pressure reducing valves. Stainless steel construction.

Shawmeters - Model SADP-D Portable Dewpoint Meter

Product details The world renowned Model SADP-D digital, portable dewpoint meter from Shaw Moisture Meters offers an easy to use hygrometer for fast and reliable trace moisture measurement. Designed to operate at atmospheric pressure, the Model SADP-D features a large, easy to read LCD indicator scaled in °C dewpoint or °F dewpoint. The key to the SHAW SADP-D dewpoint meter is the unique desiccant head and sensor assembly which allows the sensor to be kept dry between tests, ensuring that the instrument is always available for rapid spot checks of moisture in gases and compressed air. Note the absence of knobs, calibrating, cooling and servicing as required by some other methods and the automatic dry down measuring head which ensures quick response from the sensor. Certified intrinsically safe for use in hazardous environments to ATEX and IECEx standards. The key to the Model SADP-D portable dewpoint meter is the SHAW dewpoint sensor which allows a rapid one second response time from dry to wet. The SADP-D instrument is simple to use, blocking the outlet with a finger for a moment raises the measurement head, allowing a speedy measurement of the sample gas.

Vishay High capacity compression load cell.

Weighbridges, hopper weighing, tank weighing, large industrial applications

Protocontrol Flameproof Model Belt Sway Switch

Protocontrol offers Belt Sway Switches in flameproof housing for use in hazardous areas.Belt swy switch allows smooth running of the conveyer and protects it from damages by over swaying which can occur due to uneven loading of material, worn out idler roller bearings etc. The belt sway is generally mounted on both sides and near the edge of conveyer belt. A small gap is provided between contact roller and the belt edge to allow normal running of the belt with acceptable tolerance. When swaying exceeds normal limit, the belt edge pushes the contact roller, which drives the switch and operates the contacts. Switch resets automatically when the belt resumes normal running. Enclosure Flameproof, Cast Al, LM6 or Cast Iron certified by compitant authority, IP 65 Following models are available BS 101 F Belt Sway Switch with 1 NO + 1 NC contact, flameproof enclosure BS 202 F Belt Sway Switch with 2 NO + 2 NC contact , Flameproof enclosure Additional Information: Production Capacity: 200 per week Delivery Time: 2-3 Weeks Packaging Details: Industrial worthy

Walchem WCT/WDT400 Cooling Tower Controllers

WCT/WDT400 Cooling Tower Controllers Cooling,Tower,Controllers,WCT,WDT,400,Walchem,CorporationThe WCT/WDT400 Cooling Tower Controllers represent the latest in technological and innovative advancements from Walchem. All of the standard features you'd expect from a conventional cooling tower controller are included, plus optional simple-to-use information management tools that enable water treatment professionals to deliver more effective service to their customers. Coling,Tower,Controllers,WCT,WDT,400,Walchem,CorporationThe WCT/WDT400 Controllers have the ability to store sensor and temperature values, water usage, relay status, and user settings. A USB memory stick is all that's needed to extract the information. Download logs from the USB stick to a PC at your convenience, or copy your preferred treatment program settings to another controller to speed start-up. It couldn't be easier! WECT/EDT Controllers include an electrodeless conductivity sensor that's impervious to contamination by oils, scale, biofilm or other coatings, resulting in a low maintenance system that provides reliable effective control. Key Benefits: Ensure Optimal Performance and Maximum Efficiency Precise control of conductivity and chemical feed reduces water consumption and inhibits corrosion, solids precipitation, scale build-up and growth of algae or dangerous bacteria. More Informative Monthly Reports Download stored data from the controller to a USB flash stick. Use the data to easily develop reports that show actual water usage, system conductivity, temperature and more. Efficient Customer Service Quickly identify system upsets by knowing exactly what happened and when. An event log can be downloaded to tell you precisely when pumps turned on, valves opened and when there was flow or no-flow. Validation and Verification Made Easy Use stored data from the controller to simply and easily validate water treatment results. The data and event logs show water usage, system conductivity and temperature, as well as accumulated chemical feed and bleed times. Save Time Copy the user settings from your controller to a USB flash stick and upload to a new controller. Programming your new controller this way can be accomplished in seconds. It's that simple!

Torontech Vicat Apparatus

ASTM C 187- 191 Vicat Apparatus is designed to determine the initial and final setting time of cement and mortar paste. Standard Configuration: Vicat Apparatus comes complete with: Initial-set needle, 1.0 mm dia Consistency plunger 10 mm dia Vicat mould 60/70 dia. X 40mm Glass plate and thermometer Dimensions (wxdxh): 150x220x440 mm Weight: 3.5 kg Modified Vicat Apparatus Modified Vicat Apparatus is designed for testing of gypsum and monitoring of plaster paste, with additional weight 1000g for obtaining a total mass of all moving parts of 1115g. Standard Configuration: Modified Vicat Apparatus comes complete with: 2 x conical plungers, 8 mm dia 2 x Plexiglas plates 108 x 108 x 6 mm 2 x Vicat moulds 65é75 mm dia Conical plunger + weight = 115 g Mass of the moving parts Supplementary weight: 1 kg including tripping device Dimensions (wxdxh): 150x220x440 mm Weight: 3.3 kg

Gilson Asphalt Electric Core Drill

Electric Core Drill is a versatile coring system for a wide range of concrete and asphalt sampling applications. The rugged, economical drill has a powerful two-speed electric motor and bit capacities up to 12in (305mm) diameter. Its column rotates 180° horizontally allowing precise placement of the drill bit. The super-duty two-speed (450/900rpm) 3.5hp motor and carriage can be removed or reattached without changing location for ease in snapping cores and adding extension rods. The 10in (254mm) wide-wheeled base with vacuum/anchor and leveling feet securely anchors the drill to a smooth pavement or floor. Large 6in wheels allow easy mobility. The drill comes with a water swivel, vacuum pump, filter, hose and quick connections. Features: Rotating column for precise placement of drill bit Super-duty two-speed (450/900rpm) 3.5hp motor and carriage are easily removable Securely anchors to a smooth pavement or floor Included Items: Electric Core Drill Vacuum Base and mounting column Water Swivel Oilless vacuum pump with filter, hose and quick connections Accessories: CDA-15 Core Retrieval Tongs for removing 4 or 6in cores from asphalt or concrete surface CDA-22 Water Recirculator with trap-ring and electric pump for recirculation of drilling water CDA-20 4gal Pressurized Water Tank is a manually-pressurized portable water tank CDA-32 Replacement Vacuum Gasket is replacement piece with mastic for the core drill’s vacuum base CDA-24 9in Extension Rod easily attaches for deeper drilling CDA-26 18in Drilling Strap Wrench for effortless, damage-free attachment and removal of coring bits Asphalt Coring Bits Concrete Coring Bits

ABM VAN ZIJL VICAMATIC 2 automatic vicat apparatus

EN 196-3 | EN 480-2 | ASTM C191 | AASHTO T131 Automatic vicat apparatus, for determining automatically the setting time and consistency of cement. CONTROLS has a long tradition in manufacturing automatic setting time testers for cement and mortar. A new generation, the third one, is now available. The new machine has been completely redesigned based on the innovative CVI-TECH philosophy. As with the older generations the test procedure is unchanged, a needle (or a probe) drops freely into a cement sample at regular intervals and in fixed positions. Penetration depth is measured by a sensor with 0,1 mm resolution. Along with hardening process development the penetration depth decreases, when it matches some thresholds pre-defined by Standards initial and final setting times are measured and recorded. Specifications Large size 4,3'' touch screen color display LAN port for direct connection to PC of a single unit or connection to a LAN hub for creating a network with up to 32 independent units all controlled by a single PC. 1 LAN cable is included USB port for data storage on pen-drive (included) Test procedures can be customized and stored to match user-defined requirements Can incorporate an integrated graphic printer showing test result and setting time plot Large test space with easy accessibility Automatic calculation of initial and final setting time at programmable penetration depth limits Wide range of accessories including EN and ASTM/AASHTO parts, in-water testing kit, needle cleaning device, integrated printer, probes for testing consistency and gypsum Minimum penetrations rate: 10 seconds Penetration measurement by encoder

Besmak Vicat Apparatus

MANUAL TYPE Used for determination of setting time and consistency of cement. Mould, Beginning, Ending and water content needles are included. AUTOMATIC TYPE The Vicat apparatus, that is designed and manufactured using the most recent and sophisticated technology, is used for the initial and fi nal setting time determination of cements or mortar pastes. The unit is manufactured with anticorrosion and tropicalized components to be used in places with humidity not below 90% and 20°C. controlled temperature as required by EN Specifi cations. The entire test is made in a fully automatic way and gives a very precise and repeatable result. The results are printed on the incorporated printer and this eliminates the manual operations of installing and zeroing the paper graph on the drum.

Fitok Pressure Gauge GA-63-NS4-4000PB

GA-63-NS4-4000PB GA Series All Stainless Steel Pressure Gauges, Bottom Mount, Dial Size 63mm, 1/4" Male NPT, 0 to 4000psi, bar secondary Mount Type Bottom Mount Dial Size 2 1/2 in. (63 mm) Connection Type Male NPT Connection Size 1/4 in.

Frer Earth Leakage Relay

The X...DL3 series earth leakage relays are designed to measure the leakage or unbalanced currents caused by conductors or appliances insulation losses and to react, in case the set limits are exceeded, switching o the power supply to the defective system. Thanks to their distinctive feature (the displaying of the leakage current) it is possible to continuously monitor the insulation state and to program the preventive maintenance in order to avoid unexpected power breaks. Main functions: - Continuous digital indication of the leakage current - Logic Selectivity - Automati retry - Internal clock and storage of the last 10 events - RS485 Modbus RTU, measurements, event archive, scope - Selectable anti€brillation €lter - Storing of the intervention current values - Measure and display of the THD - Selectable 3rd harmonic €lter - AC measurements up to 10kHz

Thermo Fisher Scientific High Performance Benchtop Centrifuges

Choose from a growing family of benchtop centrifuges designed to meet the needs of your specific applications. With careful attention to your space, process and protocol requirements, we continue to innovate our line of centrifuges that stand out for their performance, reliability, consistency and safety. Whether performing clinical protocols, cell culture procedures, microplate processing, or anything in between, Thermo Scientific centrifuges fulfill a variety of separation needs. Ideal for research or controlled environments, our high performance benchtop centrifuges meet customers' needs for application flexibility and high speeds. They come in medium 1.6L and large 4L sizes with touch screen options and floor/portable options, offering a high performing drive with an advanced touch screen interface designed for maximum protocol versatility, complementing the numerous rotor configurations available. Get unparalleled processing performance, maximum versatility, and exceptional energy efficiency with our high performance benchtop centrifuges.

Clark-Reliance Corporation - Anderson® - Centrifugal Separators

ANDERSON® SEPARATOR was founded in 1855 by a 25-year-old boilermaker named Valerius D. Anderson. He designed a very efficient steam cleaning and purification process for steam boilers. This centrifugal separator quickly became the industry standard for the removal of solids and liquids from steam. The new units quickly found applications in many other industries ranging from food processing to steel making. As Anderson Separator grew, so did its line of separation equipment. Anderson Separator became part of the Clark-Reliance family in the late 1980s and has continued to grow its business in the compressed air, steam, gas and power generation industries. Principal of Operation The Anderson Hi-eF™ Centrifugal Separators operate on a patented two-stage principle of separation that employs carefully controlled flow guiding the entrainment laden vapor through a series of vanes and baffles. Each component of the separating element is designed to obtain maximum separating efficiency. Briefly, in the first stage of the separation, impingement against a baffle removes the larger droplets of entrainment. In the second stage of separation, the separator removes the fine mist entrainment by utilizing centrifugal scrubbing action through a uniquely designed contact element. In each stage, the gas medium and the separated liquid are carefully and continuously guided for maximum efficiency. The separators are designed to handle large volume flow of a broad range of fluids. Self-cleaning and engineered without filters or moving parts, the separators are free from maintenance and repair. Centrifugal Separators ANDERSON's line of standard and custom centrifugal units are excellent for your air and steam separation needs. Vertical Up Flow In-Line Exhaust Heads Combination Separator Traps Internal Steam Drum Purifiers Multi-Stage and Single-Stage Designs Available Models Centrifugal Line Separators Large L, LS, LUS Centrifugal Separator with Coalescing Mesh CLL, CLI, CLU Centrifugal Line Separators Small LC, LCF, LCR, LCC, LCCR Internal Centrifugal Separators IM, DIM, ID, DID Centrifugal Receiver Separators LRH, LRV, LRU Internal Centrifugal Separators Steam Drum BI-6, BI-10 Centrifugal Separators TL, TLT, TLSX Exhaust Heads CEH, CEHF, EHF

BOECO Autoclave BTE-23D

BOECO Autoclave BTE-23D BOECO Autoclave BTE-23D (3) Features: Three times fractionated pre-vacuum Stainless steel chamber LCD display Equipped with high quality and high performance pump 1 tray holder, 1 tray handle and 3 trays included High quality water pump and valves Independent steam generator Two samples self-calibration Overhead type water storage tank, easy to clean. Drying procedure: Dry by vacuum. Sterilization temperature: 121°C and 134°C Test programs: Helix test, B&D test and Vacuum test. Sterilization cycles: 9 cycles are available and 3 test programs. It only have several buttons, very easy to use, any people can run it easily. All cycles are fully automatic; there is no need for human intervention in cycle management. Pressure protection locking system that ensures the door will not be opened once there is any pressure in chamber. Sterilization documentation: Integrated Micro Printer and USB port to store the information of the programme cycle in flash memory. The sterilization time and dry time can be adjusted by manual, ensure user obtain best sterilization effects according to private requirements. Malfunction detection system, corresponding error code will be showed on the display once there’s something goes wrong. Safety: Warning system prevents starting a cycle if door is not properly locked. Triple Threat Protection for overheating and overpressure. The pressure protection system will automatically cut off the electricity supply once the temperature of chamber inside is abnormally. Motorola pressure sensor is used to accurately sense the state of pressure inside chamber. Temperature control system is using high quality PT1000 temperature sensor, it is high precision, reliable service and prompt measure, ensure accurate and timely transmission of temperature fluctuation. The safety valve will release steam in case the pressure inside chamber exceed normal levels. Technical Information: Conform to CE and EN13060 Manufactured under ISO 9001 and ISO 13485 norms Chamber Size: ø 247 x 460 mm (23 L) External dimension: 690 x 480 x 455 mm, Netweight 51 kg Packing box 750x560x460 mm, Grossweight 58 kg Power: 220V, 50/60 Hz or 110V, 60HZ Program Temperature Pressure Sterilization time Total time SOLID 134 134°C 2.1 bar 4 min 25-45 min SOLID 121 121°C 1.1 bar 20 min 35-60 min LIQUID 134 134°C 2.1 bar 10 min 35-60 min LIQUID 121 121 °C 1.1 bar 30 min 35-60 min WRAPPED 134 134°C 2.1 bar 4 min 35-60 min WRAPPED 121 121°C 1.1 bar 20 min 35-60 min TEXTILE 134 (or wrapped) 134°C 2.1 bar 6 min 45-65 min TEXTILE 121 (or wrapped) 121°C 1.1 bar 20 min 50-70 min PRION 134°C 2.1 bar 18 min 45-70 min B&D TEST 134°C 2.1 bar 3.5 min 15-20 min Helix TEST 134°C 2.1 bar 3.5 min 22-35 min Vacuum TEST - - - 15-20 min Code Description BOE 8902300 BOECO BTE-23D Bench Top Autoclave, Vol. 23 l. incl 1 tray holder, 1 tray handle and 3 trays, micro printer and USB port, 220V, 50/60Hz BOE 8902310 BOECO BTE-23D as above but for 110 V, 60 Hz

Wess Global Ultrasonic Sludge Density Meter (ENV200S)

The ENV200 is an ultrasonic instrument that measures the density of suspended solid in liquid. It comprises of sensors, a controller, and a junction box. ENV200 with PCM(Process Condition Monitoring) algorithm measures not only the size of received signal, which is often measured by conventional ultrasonic density meters but also observes changes in sound velocity and temperatures in the process. As it monitors operational status and water status in pipe and then decides the validity of each measurement, it contributes to increasing stability and reliability of the measurement. The ENV200 utilizes the EEA (Envelope Energy Average) method that saves reception signal envelop and then calculates its energy, rather than using the reception signal’s amplitude change. ENV200 offers three types of sensors, such as spool-piece, tank-mount, and Clamp-on type to accommodate all field demands at installation. · • Continuous Measurement ​• Process Monitoring Possible (Run, Stop, Full, Empty) • 10,000 Points Data Logging & Trend Mode • EEAM (Envelope Energy Average Method) • Various Types of Sensors • In-situ Measurement and Calibration

Koehler Instruments KV3000 and KV4000 Constant Temperature Kinematic Viscosity Baths

Test Method: Kinematic viscosity is of primary importance in the design and selection of a wide range of petroleum products. Calibrated capillary viscometers are used to measure flow under gravity or vacuum at precisely controlled temperatures. Constant temperature bath with advanced temperature control circuitry and integrated timing features for convenient, accurate glass capillary viscometry determinations. Microprocessor PID circuitry assures precise, reliable temperature control within ASTM specified tolerances throughout the operating range of the bath. Simple push-button controls and dual digital displays permit easy setting and monitoring of bath temperature. Two place calibration offset capability is provided. Bath accommodates seven glass capillary viscometers of various types. Viewing the viscometers is made easy by glare-free LED illumination inside the bath and a baffle that provides a background for easy viewing. Temperature control uniformity is assured by means of motorized stirrer which provides complete circulation without turbulence. Connection of the built-in cooling coil to tap water or a recirculating water chiller facilitates temperature control at ambient or below ambient temperatures. Communications software (RS232, etc.) ramp-to-set, and other enhanced features are available at an additional cost. Integrated Timing Features -The user can enter the viscosity constant for each viscometer on the front Touch Screen Control Panel, ans then get the test result in both efflux time and viscosity units automatically after stopping each timer. Timing function is displayed in 0.01 second resolution and is accurate within 0.01%. Bath Construction and Safety Features - Bath chamber is a clear borosilicate glass vessel enclosed in a polyester-epoxy finished steel housing. Top working surface has seven 2" (51mm) viscometer ports. Front viewing window assures safe, distortion-free viewing. Microprocessor temperature controller incorporates safety circuitry that interrupts power to the heaters in the event of an overtemperature condition or disconnection of the primary probe. For added safety, an adjustable redundant controller with separate sensor probe interrupts power if an overtemperature situation occurs. An integrated low-liquid sensor prevents operation of the bath if the bath liquid is not filled to the proper level, and cuts off power should it fall below during operation. Both overtemperature and low liquid level circuits will latch and prevent further operation of the bath until the fault is removed.

Shanghai Boqu DWS-51A Laboratory Sodium Meter

DWS-51A Laboratory Sodium Meter DWS-51A is an intelligent laboratory Sodium meter. It is equipped with the dedicated laboratory PPb sodium ion measurement electrode and the reference electrode, with the static measurement performance in the beaker greatly improved, compares with the traditional sodium meters. As long as the user pays attention to the electrode cleaning, the satisfactory result can be achieved. It can be widely used for continuous monitoring of sodium ions of the solutions in thermal power plants, chemical fertilizer, metallurgy, environment protection, pharmaceutical industry, biochemical industry, foodstuff and running water. Features Double-row digital tube: To display μg/L, pNa/mV and temperature simultaneously. Computer-based: Adopts high-performance CPU chip, high-precision AD conversion technology to complete multi-parameter measurement and temperature compensation, with high precision and good repeatability High sensitivity: In the static water sample, it can detect 0.2ppb (8pNa) Lasting stability: There is a very stable reading. Technical Indexes 1.Display: Double-row digital tubes display displays Sodium ion concentration and temperature simultaneously. 2.Measuring range: 0.2 ug/L~23000mg/L 0.00 PNa~8.00 PNa. -1000~ +1000 mV. 0~99.9℃ 3.Resolution: 0.1 ug/L; 0 .1 mV, 0.1℃ 4.Repeatability: reading ± 2.5% 5.Accuracy: reading ± 2.5%, ±0 .2 mV, ±0.3℃ 6.Continuous stability time: >100 seconds 7.Detection lower limit: 0 .2 ug/L (8pNa) 8.Input impedance: >1012Ω 9.Temperature compensation range: automatic/manual 0 ~ 99.9 ℃, 10.Response speed: 32 seconds (25℃) or 50 seconds (15℃) 11.Communication interface: RS232 12.Power supply: AC 220V ± 22V, 50Hz ± 1Hz 13.Working conditions: ambient temperature: 0-60℃; relative humidity <≤90 14.Power-down memory: > 5 years 15.Calibration mode: One-point calibration, two-point calibration Standard configuration One secondary meter; one power supply; one reference electrode, one measuring electrode, one temperature electrode; one set of electrode support

Bante Instruments - 931 Benchtop Sodium Ion Meter

Ion Range 0.001~19999 (Deponding on the range of ISE) Accuracy ±0.5% F.S (Monovalent), ±1% F.S (Divalent) Resolution 0.001, 0.01, 0.1, 1, automatic Calibration Points 2 to 5 points (0.001, 0.01, 0.1, 1, 10, 100, 1000, 10000) Measurement Units ppm, mg/L, mol/L or mmol/L Temperature Range 0~105°C, 32~221°F Accuracy ±0.5°C, ±0.9°F Resolution 0.1°C, 0.1°F Offset Calibration 1 point Calibration Range Measured value ±10°C General Temperature Compensation 0~100°C, 32~212°F, manual or automatic Stability Criteria Low or high Calibration Due Alarm 1 to 31 days or off Memory Stores up to 500 data sets Output USB communication interface Connector BNC Display 6.5" custom LCD Power DC5V, using AC adapter, 220V/50Hz Dimensions 210(L)×188(W)×60(H)mm Weight 1.5kg

Scimatco SC5060 Polypropylene Acid Cabinet

Cabinet constructed of 3/8” polypropylene plastic Cabinet marked ACID All polypropylene door hinge, providing years of worry free service Double doors with locks and keys Excellent cabinet for very corrosive environments inside and out Cabinet has a 2” liquid tight welded bottom to contain accidental spills Meets OSHA standard for secondary containment White in color

Aviteq Handling Technology

Bowl feeder - Sorting, dosing, storing AViTEQ Bowl Feeders / Parts Conveyors for ordered arranging, individualizing and conveying are used in every case where mass parts have to be supplied to a magazine, a machine or to installation equipment, item for item, with a pre-determined orientation and time. Advantages and benefits High level of conveying capacity with compact dimensions Operationally safe in continuous employment Synchronized two-mass vibration system No influencing of the vibration characteristics through the weight of the parts being conveyed Maintenance-free drive Conformity with all EC Guideline which affect the drives Also available for explosion-endangered spaces (Ex), as well as for 60 Hz power systems and other mains voltages Construction and operation mode AViTEQ Bowl feeders / Parts conveyors are two-mass vibration systems, which are synchronized to be close to a resonant condition. The drive part includes the elements for vibration generation, such as electromagnet and leaf spring packages. The arrangement of the simple leaf springs determines the feed direction. Parts conveyors, which convey in clockwise direction, are designated with "R" (clockwise running). Parts conveyors which convey in anti-clockwise direction are designated with "L" (anti-clockwise running). In the case of an order, it is absolutely necessary that the feed direction be indicated. The pot is connected with the drive and is easily detachable. For individual itemization and alignment of parts, special mounted equipment (baffle plates) in the pot are necessary. Optimal design and coordination of the two-mass vibration system guarantee a uniform conveying action, which is also independent of the pot filling. The bowl feeder /parts conveyor is supported on rubber dampers. Vibrations are thus transmitted only weakly to the environment. Accessories Floor support and sound insulation hood AViTEQ controller

Aviteq Conveyor Belt

Conveying guided arm troughs - Discharging, feeding, conveying In many industrial production processes, sharp or hot waste bulk has to be handled (e.g. metal shavings, foundry sand or slugs). Often, it has to be transported over long distances underfloor before it will be disposed or re-processed. The use of conveyor belts often leads to difficulties due to high wear and overflowing of the floor trenches. The result: high maintenance costs, frequent cleaning of the ditches, thus interrupting production. The optimal solution for these tasks are our AViTEQ conveying guided arm troughs. Advantages & Benefits low height transport of hoarse products careful product transport longer gutter trough dust-proof design Construction The gutter trough is on trailing arms connected to a counter-vibration frame, this in turn is mounted on springs, this combination ensures that the dynamic forces are isolated up to 99 %. This allows frames and foundation are kept very small. Selection The dimensioning of the reversing conveyor depends on: conveyed material throughput product size height of the pits length of the trail Key figures length: up to 22.000 mm width: up to 900 mm throughput: up to 180m³/h drives: unbalanced motor, exciter, thrust crank

Aviteq UV Motor

Unbalance motor Unbalance vibratory Motor, Unbalance vibrator motor, Unbalanced motor AViTEQ Unbalance motors can be used as drives for almost each case of application in the vibration feeder technology and over all industries. Unbalanced motors are the prefered drive system, in particular if it depends on high throughput of bulk material. Advantages and benefits available as standard for explosion proofed ATEX zones 21+22 available as standard for CSA-apllication "Class 1 + 2" available as standard with thermistor operationally safe in continuous employment high level of performance with compact dimensions efficiency latest state-of-the-art of technology and production conformity with all EC Guidelines which affect the drives available for 60 Hz power systems and other mains voltages Construction and operation mode The AViTEQ unbalance motor is a three-phase ac induction motor, on which weights are eccentrically attached at the ends of the running shaft; so-called eccentric weights (flyweights). Centrifugal forces are generated with rotating waves. The value of these centrifugal forces can be changed by adjustment of the flyweights while the motors are at standstill. The centrifugal forces which the motor generates displace the working device (conduit, table, shaped form) and the conveyed material mass by means of vibrations. With working torques of 0.1 kg.cm to 2,763 kg.cm and centrifugal forces up to 119kN, AViTEQ unbalance motors can move devices of more than 11,000 kg dead weight. In the case of unbalance motors elliptical, circular or rectilinear vibration movements of the working device can be generated, according to arrangement: Double drives, which are counterrotating and synchronous rotating, generate a linear vibration movement; for example, in the case of vibration conduits or pipes. Individual drives, which are arranged at the center of gravity, generate a circular vibration movement; for example in the case of filters. Individual drives, which are arranged outside of the center of gravity, result in an elliptical vibration movement; for example for the shaking of bunkers.

Aviteq Controller

VIBTRONIC®-controllers are designed to supply AC voltage to control magnetic vibrators. They operate according to the principle of voltage control (phase-fired control). For all standard voltages in the 50 and 60 Hz main supply, AViTEQ has a suitable controller available in either a built-in or housing design. The controllers have voltage compensation for fluctuations in the main supply and some models have a limited control that rotects the magnetic vibrator from impact. The setpoint specification can be set using a potentiometer or an external setpoint (0-10 VDC or 0/4-20 mA). Information regarding operational status can be read from the integrated status relay and LEDs. Depending on the model, a vibrator current up to 100 A is possible. Accessories can be used to expand the controllers for use with applications with multiple drives or a vibrating conveyor with reversing operation.

Aviteq Magnetic Vibrator

Magnetic vibrators Magnetic vibrator AViTEQ Magnetic vibrators can be used very versatile. The advantages of magnetic vibrators match all designs of vibrating machines. For almost each case of application in the vibration feeder technology and over all industries magnetic vibrators are the favorite system, in particular if it depends on high dosing accuracy. Magnetic vibrators are made in Germany on a highest standard. Advantages and benefits easy and continuously adjustable during running conditions PAL System (protection for wrong amplitudes) available for 25/33/50/100 (30/40/60/120)Hz variants immediate start/stop after switching linear amplitude Reliable permanent use High level of performance with compact dimensions Wear-free, without rotating parts Efficiency (long operating cycles and service life) Newest state-of-the-art of production engineering Conformity with all EC Guidelines, which affect the drives available for explosion-endangered spaces (Ex) available for 60 Hz power systems and other mains voltages Temperature-switch optionally special versions possible Accessories: AViTEQ magnetic vibrators can be variably controlled by the AViTEQ controllers.

Ritter TG0.5/5 Drum-Type Gas meter

Drum-type Gas Meters TG-Series (Wet-Test) User Benefits Highest accuracy: ±0,5% across full flow rate range Calibration traceable to the German National Primary Standard (PTB) Measurement of all gases and gas mixtures with equal accuracy Use with extremely corrosive and inert gases Lowest measurable flow rates Largest selection of measuring ranges Real time data acquisition option for PC (requires option »Pulse Generator«) Most durable construction – available, both chemically (from high-quality thermoplastics) and mechanically (stainless steel) Maintenance-free (just checking of packing liquid level required)

yokogawa Duplexed Field Control Unit AFV30D-A41262

n GENERAL This GS covers the hardware specifications of the Field Control Unit (FCU) which is the core of the control function of the Field Control Station (FCS). n STANDARD SPECIFICATIONS For the installation specifications and the environmental conditions common to the systems, refer to “Integrated Production Control System CENTUM VP System Overview” (GS 33J01A10-01EN). l Memory Protection During Power Failure Battery Battery Back-up for Main Memory: Max. 72 hours Battery Recharge Time: Min. 48 hours l READY Contact Output 2 terminals (NC, C) Contact Points open during FCU failure Contact Rating: 30 V DC, max. 0.3 A Note: When option code /HKU is specified, a FCU fault contact is output from the House Keeping Unit (HKU). l Communication Interface Vnet/IP Interface: Dual-redundant For more details, refer to "Integrated Prodction Control Systrm CENTUM VP System Overview" (GS 33J01A10-01EN) l HKU Interface (Option) When option code /HKU is specified, a FCU fault contact is output from the HKU. Also, the environmental conditions of the cabinet connected via the HK bus and optical ESB bus can be monitored and the operating status of the HKU can be displayed on the HIS. System alarms can also be displayed. l No. of Node Units Connectable Max. 13/FCU The total number of ESB Bus Node Units (ANB10) and Optical ESB Bus Node Units (ANB11) that can be connected to FCU are 13 or less. l Module Configuration Power Supply Module (PW481, PW482, or PW484): 2 modules for dual-redundant configuration. Processor Module (CP471 or CP461): 2 modules for dual-redundant configuration. A dual-redundant configuration is enabled by using 2 identical modules with same model code (CP471 or CP461). I/O Module (*1): Max. 8 *1: Non-standard component. [19-inch Rack Mountable Type FCU] l Installation Restrictions To connect the ESB Bus Node Unit (ANB10) or Optical ESB Bus Node Unit (ANB11) to the FCU, install the ESB Bus Coupler Module (EC401 or EC402) in slots 7 and 8 of the FCU. For the dual-redundant configuration of the processor modules, EC401 or EC402 must be installed in both slot 7 and slot 8. In case ESB Bus has a single configuration, EC401 or EC402 must be installed in slot 7 and keep slot 8 empty. To install the optical ESB bus node unit and ESB bus node unit in a remote location, use the Optical ESB Bus Repeater Master Module (ANT401 or ANT411) to connect them with an optical fiber cable. To install the optical ESB bus repeater master module in the FCU, install a pair of modules in slots 1 to 6 in order from right to left according to the number of branches. In a single configuration, install the individual modules in slots 1, 3, and 5 in order from right to left. For details, see the “Optical ESB Bus Repeater Module” (GS 33J60F51-01EN/GS 33J60F52-01EN). For the limitations and precautions for installing I/O modules, see “FIO System Overview” (GS 33J60A10-01EN). l Power Supply Specify with the Suffix Code. Voltage: 100-120 V AC, Frequency: 50/60 Hz Voltage: 220-240 V AC, Frequency: 50/60 Hz Voltage: 24 V DC [Release 6] F01E.ai

Yokogawa UT35A/UT32A Indicating Controller

Yokogawa UT35A and UT32A The Yokogawa UT35A/UT32A are entry-level digital indicating controllers. Available in 1/8 DIN (model UT32A) and 1/4 DIN (model UT35A), these low-cost models have a sequence control function that is based on the general-purpose ladder logic programming language and are targeted for use in the single-loop control of production equipment. Indicating controllers are embedded in industrial furnaces and other relatively small-scale production line equipment and installations, and are used to measure, display, and control various types of data including temperature, pressure, and flow rate. Indicating controllers typically require complex configuration and programming due to product incompatibility, required peripheral devices and differences in communications protocols. The UT32A and UT35A overcome these limitations by incorporating a ladder sequence function which simplifies creating simple sequence control. Additionally, by adopting open system architecture which complies with Ethernet and PROFIBUS DP protocols, the UT32A and UT35A make it easy to develop multi-vendor systems for users by eliminating the need for dedicated communication programs and/or converters for connecting to devices such as a data-acquisition unit or PLC.

YOKOGAWA ANB10D-410/CU2N NODE INTERFACE UNIT

GENERAL The ESB Bus Node Unit has an interface function that communicates the analog I/O signals and contact I/O signals of a field with a Field Control Unit (FCU) via an ESB bus, as well as a function that supplies power to the I/O Modules. This node units are connected to FCU via an ESB bus. n HARDWARE S l No. of Node Units Connectable Vnet/IP Field Control Unit Database AFV30 AFV40 (*1) Total Number of ESB Bus Node Units (ANB10) and Optical ESB Bus Node Units (ANB11) Connected per FCU Control Function for Field Control Station (LFS1700) Max. 3 Control Function for Field Control Station (LFS1700) plus Node Expansion Package (LFS1750-V1) Max. 9 Control Function for Field Control Station (LFS1700) plus Node Expansion Package (LFS1750-V2) *1: Up to 11 node units per 1 cabinet can be installed in AFV40. Field Control Unit Database ESB Bus Node Units (ANB10) Connected per FCU Max. 13 ER Bus Node Units (ANR10) Connected per FCU AFV10 Control Function for Field Control Station (LFS1500) Max. 3 Max. 3 Max. 3 Vnet Field Control Control Function for Field Control Station (LFS1500) plus Application Capacity Expansion Package (LFS1550) Unit Database AFF50 Control Function for Compact Field Control Station AFG30 AFG40 Total Number of ESB Bus Node Units (ANB10) and ER Bus Node Units (ANR10) Connected per FCU Max. 9 Max. 14 Max. 14 ESB Bus Node Units (ANB10) Connected per FCU ER Bus Node Units (ANR10) Connected per FCU (LFS1350) Max. 3 Max. 3 Max. 3 Control Function for Enhanced Field Control Station (LFS1330) with Node expanded databases Max. 10 Max. 14 Max. 15 Others Max. 10 (*1) Max. 9 (*1) Max. 10 (*1) *1: In Case of AFG81 and AFG82, there are total number with SIO Nest (for CENTUM V or CENTUM-XL). Total number of SIO: Max 5/FCU F01.ai Total Number of ESB Bus Node Units (ANB10) and ER Bus Node Units (ANR10) Connected per FCU

Yokogawa YS1500 Indicating Controller

The YS1500 Indicating Controller incorporates fundamental control functions required for PID control. Necessary functions can be selected in accordance with the user's purpose. The available functions include those functions necessary for input signal processing, such as square root extraction and linear segment conversion, and feed-forward calculation. Single-loop, cascade and selector mode is also available. Standard models are smaller and lighter than earlier series, requiring less space for installation, and are compliant with international safety standards including the CE Mark and FM nonincendive (optional) approvals. For easy replacement of earlier controllers, models requiring the same panel cutout dimensions and depth as those of earlier models are also offered.

Yokogawa Manual Setter for MV

YS1350/YS1360 Manual Setter for SV/MV Featured product image The YS1350 is a manual setter that allows for manually outputting setting signals to controllers and the like. The YS1360 is a manual setter that allows for manually outputting operation signals to operation terminals. The YS1350 and YS1360 include as standard an operation mode selector switch [cascade (C) and manual (M)], status input-based operation mode selector function, and operation mode discrimination status output function. The YS1350 and YS1360 offer high reliability thanks to Yokogawa's proprietary technology, user friendliness, and expandability. The basic type conforming to the DIN short case size contributes to space saving for mounting, and complies with standards (CE and FM). For easy replacement of earlier models requiring the same panel cutout dimensions and depth as those of earlier models are also offered.

Endress+Hauser Electromagnetic FLowmeter

Electromagnetic flowmeters Proven flow measuring technology for all electrically conductive liquids in every industry Electromagnetic flowmeters have been used throughout industries for more than 60 years. These meters are applicable for all conductive liquids, such as water, acids, alkalis, slurries and many others. Typical applications are monitoring of liquids, filling, dosing and precise measurement in custody transfer. The two million magmeters we’ve sold since 1977 need no maintenance and offer seamless system integration into your processes.

Baker Hughes-Bently Nevada Proximity Sensors, Probes & Transducer Systems

Why Bently Sensors? More than 60 years ago Don Bently launched his first industrial product: the eddy current proximity sensor. The decades since that achievement have seen the quality and diversity of our proximity sensors evolve to include transducers that detect the presence of acceleration, velocity, and pressure. Today’s high-performance eddy current proximity sensors deliver continuous condition monitoring information and trip monitored machines when needed to support a proactive maintenance program and machinery diagnostics. Our industry-leading proximity solutions offer superior performance and interchangeability in harsh environments with full API 670 compliance on applicable options. Here are a few benefits of our proximity sensor systems: Reduces Costs - When you use our proximity sensors as part of your plant-wide monitoring program, your costs associated with insurance, maintenance, and unscheduled repairs will go down significantly Increases Revenue - Conversely, when you use our proximity sensors as part of your plant-wide monitoring program, revenue will increase through increased uptime and production quality. Minimizes Unplanned Outages - You can convert unplanned and costly outages into planned, manageable downtime.

Yokogawa Single Channel Oxygen Analyzer System ZR22/ZR402

Models: ZR22G, ZR22S, ZR402G, ZR22P, ZR22R, ZR22V, AC1, MC1, M1233SR, IAC-24, WZ-H, M1234SE-A, M1200DB-06 Yokogawa's zirconia oxygen analyzers are used for combustion monitoring and control in a wide variety of applications and help industries to make considerable achievements in energy saving. The applications range from energy-consuming industries, such as iron and steel, electric power, oil and petrochemical, ceramics, pulp and paper, food, and textiles, to various combustion facilities, such as incinerators and small- and medium sized boilers. Combustion monitoring and control using the analyzer also contribute to a lowering of CO2, SOx, and NOx emissions by allowing for more complete combustion, thus preventing global warming and air pollution. The ZR402G converter is equipped with an LCD touch screen which has various setting displays, a calibration display, oxygen concentration trend display, with easier operation and improvement of display functions. The converter is equipped with various standard functions such as measurement and calculation as well as maintenance functions including self-test. The ZR22G separate-type detector uses a high-reliability zirconia sensor, and its heater assembly can be replaced on site. The detector is mounted, for example, on the wall of a flue and can measure the gases directly. The ZR22S separate-type detector for explosion-proof applications is also available.

Elastec Oil Spill

Oil Spill Absorbent Booms and Pads Oil spill absorbents are pads and booms that can be quickly deployed for spill response. They work by picking up and retaining the oil. The used absorbents can be safely burned on-site in the Elastec SmartAsh® cyclonic barrel burner. For small spills, absorbents may be used as the sole cleanup method, while for larger spills, they may be used to clean up residual oil that can not be reached by skimmers. Elastec offers several types of oil spill absorbents. We can also provide custom clean up response kits.

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AEG UPS Protect 4 33

Protect 4 33 Multi purpose high power UPS The Protect 4 is a highly reliable solution with a very long track record in system availability and use, providing safe and uninterrupted power back-up. It is a compact ready to install unit, with a maximum single unit capacity of up to 600 kVA, ensuring the safe operation of your critical loads. Protect 4 is designed to meet the toughest application requirements and offers high reliability with efficient 12 pulse rectifier technology for sinusoidal input current and for reduced input current harmonic distortion (THDi). The Protect 4 can be used in parallel operation with up to 8 units. This increases the power capacity and allows for even greater safety via N+1 redundancy. AEG Power Solutions UPS systems assure the permanent availability of all your global applications including oil, gas & petrochemical, power generation, transportation and other infrastructures. The Protect 4 is a highly reliable solution with a very long track record in system availability and use, providing safe and uninterrupted power back-up. It is a compact ready to install unit, with a maximum single unit capacity of up to 600 kVA, ensuring the safe operation of your critical loads. It allows you to benefit from a proven design. The robust and easy to operate UPS has excellent overload capability, superior dynamic response and is easy to maintain. Tailoring to specific requirements is possible due to the high level of customization available. Operational expenditure is optimized with a complete and cost effective life cycle. Protect 4 - Key Features Short circuit proof Intelligent battery charging management Remote servicing Redundant fans Comprehensive service support Highest operating safety Optimum efficiency, even in the partial load range Fully loadable neutral conductor Integrated logbook function with real-time clock

Conch Three-phase SCR power regulator

CR series SCR power regulator (1φ1W or 1φ2W or 3φ2W or 3φ4W digital type) CR series SCR power regulator (1φ1W or 1φ2W or 3φ2W or 3φ4W digital type) CR1: 1φ1W Rated current: 75A, 100A, 125A, 150A. 180A, 225A, 300A, 380A CR2: 1φ2W or 3φ2W Rated current: 35A, 50A, 75A, 100A, 125A, 150A, 180A, 225A, 300A, 380A CR3: 3φ4W Rated current: 35A, 50A, 75A, 100A, 125A, 150A, 180A, 225A, 300A, 380A, 450A

Hawe Directional spool valves

Directional spool valves Directional spool valves are a type of directional valve. They control the direction of movement and the velocity of single and double-acting hydraulic consumers. The range includes on/off directional spool valves, proportional directional spool valves and valve combinations.

Omni Flow Computer OMNI 3000 - 6000 Series

The OMNI 3000E/6000E flow computer – including an enhancement over the basic OMNI 3000/6000 Series – offers improved security, enhanced software capabilities, and improved auditing and alarm functionality. With its fast one second power-up recovery, field proven reliability, longevity, and usability, the OMNI 3000E/6000E offers the low total cost of ownership that OMNI is recognized for delivering. The 3000E/6000E exceeds all requirements for data processing, accuracy, and calculation cycle time for all recognized standards bodies, including API, ISO, OIML, and AGA. When choosing between the OMNI 3000 and OMNI 6000 flow computers The key question to ask is: How many meter runs do you need? The OMNI 3000 supports up to two meter runs. The OMNI 6000 gives you four. Beyond the number of meter runs, other considerations include: How many and what types of field equipment inputs and outputs will be connected? What communications connections will you require? Will you be measuring hydrocarbon gas or liquid or some other fluid? Will you measure in metric (SI) or U.S. customary units? What is your preferred installation style? The OMNI 3000 is typically used for single-liquid or dual-gas meter-run applications. It accepts two field I/O modules (combo modules). The OMNI 3000 comes with one 12‑channel digital I/O module and one communications module (either serial or Ethernet). For all other applications, you should choose an OMNI 6000. The OMNI 6000 accepts up to 24 input signals using six field I/O modules (combo modules), including two serial SV modules. It is typically used for up to four meter-run applications. The OMNI 6000 comes with two 12‑channel digital I/O modules and up to three communications modules (either serial or Ethernet, or a mix of both).

Vem Asynchronous motors with squirrel-cage rotor:

Asynchronous motors with squirrel-cage rotor: Power range 500 – 14,000 kW Number of poles 2-, 4-, 6-, 8- to 16-pole Synchronous brushless salient pole motors: Power range 5,000 – 42,000 kW Number of poles 4-, 6-, 8- to 36-pole Voltage range 690 – 13,800 V Cooling types air/water, air/air Types IM B3 and IM 7115 and modifications Bearing Rolling or friction bearings Frequency Mains and converter operation Kindly look into making an enquiry regarding deviating versions.