Friday, May 13, 2011

Pepperl+Fuchs DART Intrinsically Safe Power Supply and Control System


Pepperl+Fuchs introduces the Dynamic Arc Recognition and Termination System (DART). DART is a dynamic power supply and control system for intrinsically safe fieldbus installations that dramatically increases the power available to field devices in explosion hazardous areas, while maintaining intrinsically safe energy levels in areas classified as Zone 1.

“The DART system supplies enough power to support nearly as many devices as is typically supplied in non-hazardous areas, and can also power field instruments that previously required more power than intrinsically safe solutions could offer,” says David Hohenstein, Department Manager, Pepperl+Fuchs. “What makes DART so unique is that it enables process users to fully benefit from the advantages of fieldbus technology in Zone 1 hazardous area applications such as ensuring system availability and lowering total cost of ownership.”

Early intrinsic safety solutions included the entity concept and FISCO. These enabled users to connect multiple devices to a single power supply on a fieldbus segment, but the low available power limited the number of devices per segment and reachable cable distance, forcing users to design complex bus topologies with many branches, making fieldbus more difficult to cost-justify. More recently, the High-Power Trunk Concept (HPTC) provided users with safe installation in explosive environments, with more power supplied to the fieldbus segment while maintaining intrinsic safety at the device connection. DART represents a revolutionary next step in the evolution of intrinsic safety.

“DART is an exciting and superior option because it eliminates the power problem of intrinsic safety with a completely new approach to energy limitation. It allows considerably higher direct power, while maintaining limitations on intrinsically safe energy via rapid disconnection,” explains Hohenstein. “Rather than taking a traditional approach to explosion prevention by limiting the available power to field devices, the DART system detects a fault condition by its characteristic rate of current change, and disconnects power before sparking can start.”

During normal operation, a DART power supply feeds full nominal power of 8 to 50 watts – exponentially more power than the approximately two watts that is normally permissible in intrinsic safety environments. Should a fault occur, the potential spark remains non-incendive, and DART detects the resulting change in current and immediately switches off the power supply. In microseconds, energy from the electrical system is reduced to a safe level, robbing a spark of the energy needed to ignite hazardous gases.

DART applied to fieldbus provides a much higher intrinsically safe power allowance to the trunk so that the segment can support up to about 32 devices per segment – the maximum permitted per segment. This reduces capital costs by eliminating excessive fieldbus infrastructure. Moreover, cable lengths as long as 1000 meters are possible, opening up many application areas to fieldbus technology while maintaining intrinsic safety requirements for all devices and cables, including the trunk line. The higher device count per segment eliminates the problem of having to design complex network topologies with many sub-segments, each requiring its own power supply, junction boxes, and barriers.

DART technology also offers advanced diagnostics to help users rectify problems quickly and ensure system availability. And because DART Fieldbus is designed as a fieldbus infrastructure for existing IS field devices and DCS systems, or for any installation in which an intrinsically safe fieldbus segment is required, it is suitable for both green- and brownfield sites.



Phoenix Contact VL BPC MINI Industrial PC


The VL BPC MINI from Phoenix Contact is a new line of configurable, small form factor, embedded IPCs in the Valueline family of products. The VL BPC MINI products are based upon specially selected Intel® Atom™ CPUs, designed to consume less energy and produce less heat. The VL BPC MINI products incorporate a fanless design, are compact and are DIN rail-mountable.

The VL BPC MINI product line is designed for embedded operating systems such as Windows® Embedded Standard, Windows CE and Linux installed on an industrial CompactFlash® card. The wide array of available Intel Atom CPUs allows the VL BPC MINI product line to include high-performance models and more rugged models for applications in harsh environments.



Monday, May 9, 2011

Banner Engineering EZ-BEAM TM18 Heavy-Duty Sensors


Banner Engineering's TM18 EZ-BEAM sensor line offer compact sensors in a rugged nickel-plated, die-cast zinc metal housing to withstand extremely harsh environments. The all-metal, mechanically robust construction is ideal for conveyors in heavy duty machine environments and IP69K (non food and beverage) applications, and is offered in four different sensing modes.

FEATURES
  • Heavy duty metal housing with 18mm threaded barrel mount and integral metal QD prevents sensor damage during machine assembly, transport, maintenance, and operation.
  • Right angle “T” mounting fits in tight places, prevents sensor damage, and avoids personnel catch points.
  • Models with 4-wire complementary NPN or PNP, or 3-wire I/O block compatible outputs available.
  • Featuring EZ Beam technology provides reliable sensing without adjustments.
  • Visible red LED models available in opposed, polarized retroreflective, and fixed-field (background suppression) modes.
  • Completely epoxy encapsulated electronics to provide superior durability, especially in harsh sensing environments.
  • Sensors rated IP69K for resistance to intermittent high pressure washdown.
  • Innovative dual indicator systems take the guess work out of sensor performance monitoring.
  • Fixed-field models are immune to fluorescent lights and false outputs from lights beyond the sensing point.


Panduit TDP43ME Thermal Transfer Desktop Printer


The TDP43ME Thermal Transfer Desktop Printer from Panduit produces high quality printed labels to identify infrastructure components in data center, industrial automation, and connected building applications. With durable construction and compact size, the 300 dpi printer is designed for continued use in industrial and construction, and harsh environments.

Using the included Easy-Mark™ Labeling Software, the printer provides simple setup as well as easy operation and use with all Panduit thermal transfer ribbons and media. This solution provides network installers, electrical contractors, MRO groups, custom control panel builders, and wire and cable harness houses with the ability to create wire and cable markers, terminal block labels, equipment labels, marker plates, panel labels, network labels, and safety and facility labels.



Friday, May 6, 2011

SMC Pneumatics RHC-XC93 High Power Cylinder with Water Scraper


If you need a fast cylinder with high levels of water resistance then simply look no further than SMC Pneumatics' new Series RHC –XC93. Available in 32 and 40mm bore sizes, this powerful cylinder, which can move light loads at up to 3000mm/s, is fitted with a fluororubber scraper to prevent water entering the cylinder thereby extending the cylinder’s operational performance by five times when compared to standard RHC models.

Further design features include the introduction of a lube retainer which coats the piston rod with a light grease film for improved lubrication and the availability of a stainless steel rod and rod end nut type option – Series RHC-XC93S.

As with all high performance cylinders, smooth cushioning is an absolute must and SMC's Series RHC-XC93 models can absorb 10 to 20 times more energy than a general purpose cylinder.


SMC Pneumatics RHC-XC93 High Power Cylinder

SMC Pneumatics Technical Datasheets

Phoenix Contact 4 mm² Terminal Blocks with Push-In Technology


Phoenix Contact’s 4 mm² push-in technology terminal blocks allow easy and fast termination of ferruled and stripped, stranded wire from 24-10 AWG. Versions include single, twin, and Quattro feed-through, double-level, fuse, LED, diode, and function blocks. All are compatible with the Clipline Complete system of bridging, marking, test accessories, and plug in components.

Product features:

  • UL rated 600 V/30 A
  • Up to 50 percent reduction in push-in force compared to other push in type terminal blocks
  • Five times the IEC requirement for pull-out (retention) force
  • Direct insertion of ferruled wire and solid wire, easy termination of stripped stranded wire using the orange activation button
  • No special tool needed
  • Up to 35 percent faster termination than standard spring cage due to the short push button activation stroke
  • Completely touch-proof design
  • Synergistic with other Phoenix Contact Push-In Technology products


Thursday, May 5, 2011

Banner Engineering LH Laser Displacement Sensors


The LH series of precision laser displacement sensors were developed to add a high performance sensor to Banner Engineering’s triangulation displacement product offering. The LH series is a high speed, high precision, non-contact measurement sensor which provides accurate and stable displacement or thickness measurement on wood, metal, rubber, ceramic, and plastic parts.

The LH series of sensors incorporate a linear camera to overcome the application effects of color and surface texture experienced on position sensitive device (PSD) sensors such as the Banner LG5 and LG10.

Features
  • Extremely accurate, robust and self-contained laser displacement using a 1024 pixel CMOS linear imager
  • Precise narrow laser spot for easy alignment to the target
  • Reliable and accurate measurement results on real world targets, such as machined metal, wood, ceramic, paper and painted targets
  • Target displacement or target thickness measurement with high resolution 4-20 mA or RS-485 serial communication outputs
  • Non-contact measurement for use on moving processes, hot parts, machined parts, and soft or sticky parts
  • Two sensors self-synchronize for thickness measurements and thickness calculation within the sensors; no external controller required