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panel

Curtiss-Wright’s Defense Solutions division announced that its Avionics business unit, based in Christchurch, Dorset, has been awarded Silver accreditation by the Investors in People Standard, demonstrating the Company’s commitment to high performance through good people management.

Curtiss-Wright continually invests in research and development to ensure it maintains technology leadership to deliver high performance Commercial off-the-shelf (COTS) and custom engineered products. Curtiss-Wright’s Avionics business provides system solutions that acquire, consolidate, analyze and record sensor and avionics data on aircraft. Our core capabilities include safety critical certified design and development processes (DO-178 and DO-254) combined with mature quality processes (AS9100). A range of product and service offerings enables us to provide solutions for many applications including: airborne recording, air data computing, flight test and space data handling systems. Curtiss-Wright Avionics is one of 3 business units based in Christchurch, Dorset and employs 100 staff. 

Investors in People is the international standard for people management, defining what it takes to lead, support and manage people effectively to achieve sustainable results. Underpinning the Standard is the Investors in People framework, reflecting the latest workplace trends, essential skills and effective structures required to outperform in any industry. Investors in People enables organisations to benchmark against the best in the business on an international scale.

Paul Devoy, Head of Investors in People, said: “We’d like to congratulate Curtiss-Wright Avionics, Investors in People accreditation is the sign of a great employer, an outperforming place to work and a clear commitment to success. They should be extremely proud of their achievement.”

Commenting on the accreditation, Mark Liversidge, General Manager of the Avionics and Electronics group, said:  “I am thrilled with this significant achievement for the Avionics team.  This has been a 3 year journey of working together to make significant improvements to our business through good people management.”

Robust JC1200 single-axis joystick has a long operating life   

Curtiss-Wright Corporation today announced its Industrial division has launched the JC1200, a next-generation, cost-effective paddle joystick from the Corporation’s brand family of Penny & Giles.

By using a long-life bearing system and non-contacting Hall-effect sensing technology, the JC1200 has achieved a long operating life of 25 million cycles while providing functionality that is smooth and easy to operate.   

Key features of the JC1200 include:

- An under-panel depth of 9mm, requiring minimal installation space
- A spring-loaded return-to-center or return-to-end paddle movement
- Integrated panel seal and IP67 protection – suitable for outside use
- A choice of nine colored paddle ‘Tabs’, which can be factory fitted or supplied separately and added as part of the final customer installation process

The JC1200 launches with a 5Vdc supply voltage and the option for factory-programmable electronics configured to one of two analog voltage output ranges (0.5-4.5V or 1.0-4.0V). The joystick also provides safety functionality via dual outputs, which can be set to positive or negative ramps, or a combination of both. This offers system designers the option to compare the output signals for error checking.

The JC1200 paddle joystick builds on the success of the potentiometric-based JC120 and is ideal for use in control panels and armrests found in industrial trucks, agricultural equipment and construction machinery, where cost-effective, long-life operator controls are essential.

Sales inquiries: Please forward all sales and reader service inquiries to cwig.uk@curtisswright.com.

For more information on Curtiss-Wright Industrial products, please visit www.cw-industrialgroup.com or call +44.1425.271444.

CURTISS-WRIGHT LAUNCHES EN ISO 13849 COMPLIANT MOTOR CONTROLLER

New C3-CE is ideal for small industrial and Class 3 vehicle applications

  

Christchurch, U.K. – 23-09-2015 – Curtiss-Wright Corporation today announced its Industrial division has introduced a new version of the C3 motor controller to its established and cost-effective range of AC motor controllers. The C3-CE is EN ISO 13849 compliant and, as a new addition to the high-performing, compact and cost-effective C3 motor controller range, provides OEMs with a controller that is ideal for small industrial vehicle applications, including Class 3 pallet trucks.

The new C3-CE, from Curtiss-Wright’s brand family of PG Drives Technology, retains all the features and benefits of the original C3 motor controller but has been CE marked as a safety component and designed with EN ISO 13849 Category 3 hardware architecture – including dual microprocessors, dual inputs and a dedicated B+Safe output. This provides a safer and more convenient approach that, unlike the conventional and widely-used Category 2 architecture, doesn’t require the safety function to be checked at ‘machine start-up’ and ‘prior to the initiation of any hazardous situation’, which can be inconvenient and potentially dangerous.

Key features of the C3-CE include:

  • Compatible with all types of AC induction motors
  • Flexible yet simple programming facilitates up to six dual paths for functions including ‘prevention of travel’ and ‘tiller control’
  • Two traction power options available, the C3-CE-200 (200Arms) and C3-CE-250 (250Arms), to provide OEMs with an economic and efficient solution for their light industrial vehicle applications
  • Complies with all relevant international materials handling vehicle standards, including EN 1175-1, EN 12895 and UL 583

Sales Inquiries: Please forward all sales and reader service inquiries to cwig.uk@curtisswright.com.

For more information on Curtiss-Wright Industrial products, visit www.cw-industrialgroup.com or call +44.1425.271444.

About Curtiss-Wright Corporation

Curtiss-Wright Corporation is a global innovative company that delivers highly engineered, critical function products and services to the commercial, industrial, defense and energy markets. Building on the heritage of Glenn Curtiss and the Wright brothers, Curtiss-Wright has a long tradition of providing reliable solutions through trusted customer relationships. The company employs approximately 9,000 people worldwide. For more information, visit www.curtisswright.com

Curtiss-Wright Corporation’s (NYSE: CW) Industrial division today announced that it has been presented with the “Supplier of the Year Award 2014 Europe” from Southco Manufacturing, a global leader in the design, manufacture and supply of engineered access hardware solutions.

Curtiss-Wright Industrial division’s Senior Vice President & General Manager, Kevin Rayment, said: “We are delighted with the award, which was presented in recognition of an outstanding 100% track record of on time deliveries and zero PPM for the period.”

The award was presented at Curtiss-Wright’s facility in Cwmfelinfach, UK, and related to the Penny & Giles brand of solenoid actuator assemblies.

Commenting for Southco Inc., Director of Global Supply Chain & Logistics, Tony Wood, said: “As a key supplier, Curtiss-Wright has fully earned this award for multiple years of service and quality that has, in turn, enabled us to grow our business. Curtiss-Wright has a proven reputation for responsiveness, pro-activeness and in driving value-added engineering into the supply of Southco’s products.”

Curtiss-Wright Industrial division’s wide range of solenoid actuators and solenoid valves include standard and configurable designs in a selection of solenoid styles. They can also supply modified standard designs to suit specific applications, or unique, custom designs for large scale OEMs. Products are suitable for on- and off-highway applications, including automotive, construction and agricultural vehicles, materials handling and other specialty vehicles; as well as industrial equipment.

 

Curtiss-Wright Corporation’s (NYSE: CW) Industrial division, via its Arens Controls branded range of products, is rapidly emerging as a world leader in engineering and manufacturing precision operator interface control systems and power management systems for commercial on- and off-highway vehicles. 

Products include by-wire shift selectors for automatic and automated manual transmissions for on-highway vehicles including trucks and buses; and off-highway mechatronic controls including multiple-function operator consoles and hydrostatic lever controls. Key sectors include hybrid vehicle power management systems such as traction inverters, DC/DC converters, DC/AC inverters and power distribution modules.

From the latest on- and off-highway commercial vehicles, to the rapidly developing hybrid vehicle market, Curtiss-Wright engineers are focused on developing bespoke, innovative solutions and next generation technology. This intelligent engineering, from initial concept to finished product, demonstrates the Industrial division’s commitment to providing the advanced control and power management systems demanded by today's commercial vehicle manufacturers.

Power Distribution Modules

A range of power distribution modules (PDMs) that incorporates state-of-the-art, digital electronics technology for use in on- and off-highway vehicles such as medium- and heavy-duty trucks, buses and motor coaches. PDMs are also available for construction and agricultural vehicle applications and materials handling and other specialty vehicles.

Traction Inverters for Hybrid Vehicles

Traction inverters for hybrid vehicles are at the heart of today's hybrid drivetrain technology and are designed to maximize the efficient management of high-voltage power between the power source and the drivetrain components. In fact, Curtiss-Wright’s Industrial division was one of the first companies to produce traction inverters specifically designed for use in commercial hybrid vehicles and today is leading the industry in the production of automotive hardened traction inverters with power ranges from 30kW to 500kW. These are ideal for truck, bus/coach, agricultural and construction equipment applications, including those where modern, hybrid solutions are being adopted.

Power Converters & Auxiliary Power Modules

This includes a wide range of DC/DC and DC/AC power converters for on-board systems as well as export power needs. Auxiliary power converters provide on-board AC power for work trucks of all sizes and units are available with output up to 25kW and voltages of 120/208/240 in either single- or 3-phase. Its range of auxiliary power converters are ruggedly built to provide years of dependable operation and can be integrated into the electrical system of virtually any vehicle.

Integration of all these converters is now made easier with the Arens Controls branded PowerPac  a recently introduced range of power converters featuring special, compact designs that are engineered to fit into vehicle battery boxes. Both air- and liquid-cooled designs are available and all feature the industry's highest power density and surge capacity, CAN communications, cast enclosures and self-diagnostic capabilities.

For further information about other innovative on- and off-highway vehicle solutions available from Curtiss-Wright’s Industrial division, please visit www.cw-industrialgroup.com or call +44 (0)1425 271444.

About Curtiss-Wright Corporation

Curtiss-Wright Corporation (NYSE:CW) is a global innovative company that delivers highly engineered, critical function products and services to the commercial, industrial, defense and energy markets.  Building on the heritage of Glenn Curtiss and the Wright brothers, Curtiss-Wright has a long tradition of providing reliable solutions through trusted customer relationships. The company employs approximately 9,000 people worldwide.  For more information, visit www.curtisswright.com.

###

Editor’s Note:

Arens Controls was acquired by Curtiss-Wright in 2013 and, with brands including Penny & GilesPG Drives Technology and Williams Controls  has formed a key group in the Corporation’s Industrial division. These well-established brands are all experts in the design, testing and manufacture of a range of components and systems for the safe and reliable operation and control of mobile and static machinery - especially off-highway vehicles, heavy trucks, buses, military and motorsport vehicles.

Arens products can be found on today's most advanced commercial vehicles, from agricultural equipment to school and transit buses, as well as on a growing number of commercial vehicles for both on-road and off-road applications. In fact, Arens is the established leader in power management for the rapidly expanding hybrid commercial vehicle market.

Looking to the future, Arens is committed to the continued development of technologies designed to improve the operator / vehicle control interface while improving overall vehicle performance and economics as well as operator comfort and safety.

In addition to vehicle control products, Arens intelligent engineering is focused on developing the next generation power management products such as intelligent power distribution modules and high-voltage / high-power junction boxes; DC/DC and DC/AC converters and traction inverters for heavy-duty truck and bus hybrid drives.

Curtiss-Wright Corporation (NYSE: CW) has announced that its Industrial division is supplying customized position sensors to Briggs Automotive Company (BAC) for use on the company’s central-seat Mono road car. Featuring a special connector cable and unique configured output range to match the specific shaft position, the contactless rotary position sensor installed on BAC’s Mono is a customized version of the standard Penny + Giles SRH280P model. 

Commenting for Curtiss-Wright, Senior Vice President & General Manager of the Industrial division, Kevin Rayment says: “The Industrial division has more than 50 years experience in providing control and feedback solutions for numerous applications and we’re no newcomer to high-octane and motorsport applications where custom sensors are often specified.”

Thanks to the experience gained from its aerospace businesses – where reliability under extreme and hostile conditions is paramount – Curtiss-Wright’s sensors have become a benchmark for motorsport applications and are used in numerous race series including the American Le Mans Series (ALMS), Formula One (F1) and Formula Student. In fact, from the moment a leading F1 team adopted a custom-engineered Penny + Giles sensor as part of its revolutionary active suspension system, to today’s unique Hall-effect position sensors, we can proudly boast to have been the first position sensor manufacturer to enter motorsport and have supplied every F1 championship winning team since 1986.

“With a performance to match today’s Formula racing cars, the single-seat Mono required an equivalent level of intuitive direct control, so BAC designers and engineers specified components that were themselves designed and engineered for the racetrack,” says Mr. Rayment.

With motorsport very much in mind during its evolution, Mono was the vision of BAC design director Ian Briggs. However, he also wanted the car to feel at home as much on country lanes as it does on the race track. Mr. Briggs noted, “I wanted Mono to be high tech and totally fresh in its approach.  A car for people who want to feel a connection, and be really involved in the character of the car they drive. It had to be a car people would be consistently excited by, and would experience pride in owning. In short, Mono is a totally immersive experience, from start to finish.”

Operated via steering wheel-mounted paddles, Mono uses an F3-specification, six-speed sequential Hewland gearbox with an electronic/pneumatic semi-automatic, closed-loop gear selection system that delivers paddle-shift changes in 35 milliseconds. This is coupled to a 2.3 litre, 285bhp four-cylinder Cosworth engine enabling the Mono to achieve a 0-60mph time of less than three seconds.

The closed-loop control system on Mono uses a gearbox control unit (GCU) with inputs from a Penny + Giles gear position sensor to alter its own operation in real-time. During gear changes, the closed-loop system monitors the gear position sensor to determine the angular position of the gearbox selector barrel. Information from this is then relayed to the GCU to ensure use of the throttle blip, torque reduction or pneumatic actuator where necessary, to effect consistently quick and reliable gearshifts.

As BAC co-founder and technical director Neill Briggs explains, when a gear position sensor was required for the Mono’s gearbox, specifying Penny + Giles was the obvious choice. “Used to relay gear position feedback to the GCU, sensors were vital during BAC’s development of Mono and are as vital under normal and track day driving conditions in informing the driver of the car’s current gear. We therefore needed a sensor that was dependable, reliable and met our exacting requirements for Mono, so we called Penny + Giles.” 

Standard Penny + Giles SRH280P rotary position sensors use a factory-programmable, non-contact Hall-effect sensor system to provide reliable and accurate rotary position measurement in extreme motorsport and industrial environments where shock and vibration can occur. Additional key features include single or dual output channels; total sensor measurement range from 0-20° to 0-360°; low noise level (1mVrms) on output signal; crush-proof mounting flange with steel inserts; and rapid availability.

Using the popular 38mm flanged housing and with an environmental protection rating to IP68, the sensors operate from either 5Vdc regulated or 9-30Vdc unregulated power supplies and are available with analog (0.5 - 4.5Vdc and 0.1 - 4.9Vdc) or digital (PWM) output signals. The sensor is factory programmable – allowing OEMs to specify the output signal type, measurement range (0-20° to 0-360° in 1° increments) and output direction (clockwise or anticlockwise) – has a 12 bit resolution (0.025%) over the selected measuring range, and operates from -40 to +140°C when powered at 5Vdc.

Curtiss-Wright’s Industrial division is a recognized leader in the production of critical controls and assemblies for specialty vehicles, including sensors, electronic throttle controls and joysticks. For further information about Penny + Giles products and other innovative solutions available from Curtiss-Wright’s Industrial division, please visit www.cw-industrial.com or call +44 (0)1425 271444. 

About Curtiss-Wright Corporation

Curtiss-Wright Corporation (NYSE:CW) is a global innovative company that delivers highly engineered, critical function products and services to the commercial, industrial, defense and energy markets.  Building on the heritage of Glenn Curtiss and the Wright brothers, Curtiss-Wright has a long tradition of providing reliable solutions through trusted customer relationships. The company employs approximately 10,000 people worldwide.  For more information, visit www.curtisswright.com.

 

 
Penny + Giles has supplied its ICS100 linear potentiometers to provide positional feedback for Xylem Flow Control’s range of electro-hydraulic actuators, which provide a solution for the operation of choke and control valves used in the oil and gas industry; and for water & wastewater transport and treatment applications.
 
Xylem has worked closely with Penny + Giles for over twenty years since specifying the company’s HLP100: predecessor of the current ICS100 potentiometer fitted to Xylem’s range of electro-hydraulic actuators. 
 
As Xylem’s engineer John Smallshaw explains: “We specialise in the design and manufacture of electro-hydraulic actuation for control valves for both onshore oil and gas pipelines and pumping stations and offshore topside choke pressure and flow control applications, where there is either Zone 0 (constant hazard) or Zone 1 (occasional hazard) risk from explosive petrochemical gas.
 
“A typical application is to provide an actuator control system to meet the operating parameters of the specified size of valve based on the working stroke, the fail action and operating thrusts for opening and closing the valve against process operating conditions. The process valve must be capable of handling the specified pressure or volume of oil or gas determined by the valve manufacturer, and the actuator is sized to meet the operating conditions for that particular application. It is our decision to select the position feedback device that will provide optimum accuracy and performance for the system.” he says.
 
As an example, for Zone 0 applications Xylem would normally use a potentiometer or an alternative intrinsically-safe certified device. The potentiometer is invariably the easiest and most cost-effective device to apply, however the selection of the feedback device may be determined by the hydraulic operating fluid as the position feedback device is of the ‘in-cylinder’ type and therefore immersed in hydraulic fluid. 
 
The company prefers to work with mineral-based hydraulic fluids as they are generally suitable for use with potentiometers. For systems incorporating water-based fluids such as water glycol, special consideration has to be given to the selection of the feedback device or the method of mounting the potentiometer. It is possible to locate the potentiometer within a special oil chamber that is mechanically linked to the actuator but operating outside the hydraulic medium.
 
Xylem uses Penny + Giles in-cylinder devices, which is why it is predominantly the ICS100 that is installed in the back of its hydraulic actuators. Linear actuating devices are used on linear choke and plug valves rather than rotary units because potentiometers provide an intrinsically safe feedback signal from a relatively low power source. Equally important for safety reasons, unlike inductive feedback devices, potentiometers aren’t capable of producing a current to generate a spark. 
 
Typical applications include valve systems installed topside on oil and gas production platforms, helping to control the flow of media as it is being transferred up through the special risers that transport media from the well itself; and on to the pipelines that eventually transport it ashore for storage or processing. Automatic feedback from the potentiometer, delivered via a closed-loop system, allows pressure and flow to be monitored and analysed and the position of the valve adjusted as required. 
 
A nominal 5 volt signal is supplied to the ICS100 from the Xylem positioner controller, which operates on an input signal from a control panel to tell what valve adjustments are needed to maintain the required flow or pressure – 4 milliamps signal is the closed position and the signals between 4 and 20 milliamps represent 0-100%. So if the valve receives a 12 milliamp signal it will recognise the change in voltage as its new 50% position, based on feedback from the Penny + Giles potentiometer. 
  
Plug and globe valves are normally modulating as they respond to changing process conditions caused by flow and pressure variations. However, choke valves fitted topside of the wellhead to control the flow/pressure of media coming out may remain in one position for extended periods and only change as the oil or gas pressure in the well depletes in order to allow flow to be maintained.
 
Xylem has actuators operating within onshore oil and gas pipelines in Turkey, India and, most recently, a crude oil pipeline in Abu Dhabi. They are also used to control valves in pumping stations, where the oil and gas is compressed and re-charged to enable it to be transported through the pipeline. For these applications ICS100 potentiometers are fitted to the actuators to provide the feedback that monitors pressure and flow control valves.
 
Summing up, John Smallshaw says the migration from Penny + Giles’ HLP100 to the new, metric ICS100 was virtually seamless as the models are interchangeable; so when he needs to replace HLPs or supply spares, even after all this time, it is natural to specify the ICS.  
 
He adds: “In-cylinder potentiometers play a crucial role in our actuator business in terms of performance, reliability, safety and value, which is why we buy Penny + Giles. The ICS100 is very easy to specify and install, it is competitively priced and the company listens to our input and responds quickly to any issues we have.
 
 
 

Penny + Giles, a business group of Curtiss-Wright Controls and designer and manufacturer of joystick controllers, solenoids and high precision sensing technology, is supplying its TPS280DP throttle position sensors to UH Racing, the University of Hertfordshire’s Formula Student racing team. 

Used as a testing ground for the next generation of world-class engineers, Formula Student challenges university students from around the world to design and build single-seat racing cars with the aim of inspiring the next generation and addressing the all too apparent skills shortage in engineering.

Commenting for UH Racing’s Formula Student team, engine specialist Craig Brant says: “The 2011 season has been one of the toughest yet, but UH Racing was named top UK team and achieved an overall third place at the Formula Student UK event held at Silverstone. We were also awarded top UK team and overall seventh place at the Formula Student Germany event.”

Like many other racing formulas, vehicles entering the Formula Student event are subject to restrictions, including a maximum 600cc engine size and air restrictors to the engine. However, Formula Student is one of the most open formulas in the world with teams able to choose single cylinder or v-twin engines, many derived from powerful, high-revving motorbike units. UH Racing’s car – dubbed UH14 because it is the University’s fourteenth combustion-engine vehicle since entering the event in 1998 – uses a 600cc, four-cylinder, four-stroke Yamaha engine.

For 2011 many teams have taken a different approach, opting for a lightweight design with very small wheels and a single cylinder engine to give them an advantage on the skid pad and sprint course. 

However, as Craig explains: “With UH14, UH Racing has continued the approach of using a more powerful but slightly heavier engine, but has also started to adopt Formula One technologies including the use of a carbon fibre body, tyre pressure monitoring systems and tyre temperature. We have also been lucky to have students in work placements with Cosworth Racing who, through sponsorship, have offered technical advice and supplied useful equipment.”

He goes onto say that because the track for the 2011 endurance event was tight and twisty, UH Racing wanted to replace its usual gear lever with a paddle shift system to enable drivers to change gears more quickly, easily and safely, and in turn improve lap times. 

The initial student-designed system involved steering wheel mounted paddle switches actuating a solenoid attached to the engine block, which in turn moved a gear selector on the engine to change gear. However, tests revealed that the system’s ECU read the gear position based on the wheel speed of the car and the data couldn’t accurately provide drivers with a dashboard display showing which gear was selected.

To achieve a more definitive gear position the team decided to monitor the barrel of the engine using a sensor installed on the barrel position of the gearbox. Now, when it moves the selector forks to change gear, the rotation is changed and the team is able to determine exactly which gear has been selected.

UH Racing’s Yamaha-based engine has its gearbox mounted to the engine, making it a very compact unit. However, the sensors mounted on the engine block and gearbox barrel are subjected to extremely high levels of shock and vibration over long periods, so the team needed a sensor that would withstand the mechanical abuse from the engine/gearbox configuration.

Having already partnered Active Technologies (AT Power) in developing a Formula Student throttle body, the University of Hertfordshire again approached the company for advice. AT Power had themselves recently begun using Penny + Giles throttle position sensors on its own throttle bodies and after further testing and discussions with Penny + Giles engineers, the same advanced TPS280DP sensors were also specified for use on UH Racing’s gear position system. 

As Craig explains: “Previously, we had used potentiometer-based sensors from another manufacturer, but we decided that for this season a more advanced sensor was needed. As AT Power had recommended the TPS280DP for the throttle bodies, we approached Penny + Giles to source the same sensors for our new gear position system.”

Penny + Giles tailored the throttle position sensor to UH Racing’s specifications and the team designed its own mounting bracket for the engine. The sensor was then factory-programmed with a 360° rotation to allow it to read the full range of gears. The throttle position sensors are now connected to the gear position barrel and provide feedback on the exact position of the barrel and therefore the exact gear number.

The Penny + Giles TPS280DP uses a factory programmable Hall effect sensor with two outputs that can be programmed individually for angular range, output range and direction. It has no contacting sensor parts, which ensures zero signal degradation over the lifetime of the sensor, and has a tested life of more than 60 million operations – more than 18 times the life of an equivalent potentiometer. In addition, when powered with 5Vdc, the sensor has an operating temperature range from -40 to +140ºC. 

The TPS280DP has been specifically designed to work in harsh motorsport environments and has excellent shock and vibration resistance. Its drive and body are IP69K-rated to provide excellent protection against the ingress of dust and fluids. It is also mechanically interchangeable with many existing potentiometer-based throttle sensors using 32mm mounting centres, and is designed to interface with most common throttle body D type spindles.

“The new setup works very well.” says Craig. “Instead of the ECU trying to calculate the gear position, the TPS280DP now provides us with an exact position, ensuring that the correct gear is displayed on the dashboard. In endurance events this helps the driver to prepare the car for the course ahead while navigating the tight and twisting courses.”

The updated throttle bodies and new gear position system have been thoroughly tested on and off the track, on cars from both the 2010 and 2011 seasons, and have proved very reliable. 

Summing up the Penny + Giles contribution Craig Brant says that while the team’s engines aren’t too highly stressed they are run very hard and adds: “We expected the sensor to last the life of the engine and therefore the season, and we haven’t been disappointed.” 

 

Penny + Giles, a business group of Curtiss-Wright Controls and designer and manufacturer of high precision sensing technology, is supplying its STT280 tilt sensors to Stellar Industries for a boom angle positioning application on its range of truck-mounted telescopic winch-line cranes. 
 
Established in 1990 in Garner, Iowa, Stellar Industries was the first North American company to design and manufacture the hydraulic hooklift. Since its inception Stellar has created over forty different single-pivot, double-pivot and sliding jib models and now holds numerous US patents on the Stellar® Shuttle double-pivot hooklift.
 
The Penny + Giles STT280 tilt sensors are being used on Stellar’s range of service/mechanic truck packages, which feature telescopic winch-line cranes mounted on service truck bodies. These vehicles are typically used by utility and municipal companies and related service industries requiring heavy lifting over long ranges. The truck-mounted cranes offer lifting capabilities from 29,500 foot pounds capacity (capable of lifting 5,000 pounds at approximately six feet) to 82,600 foot pounds, which are capable of lifting 14,000 pounds at five feet. All models feature a boom elevation from -5 to +80 degrees. 
 
Stellar’s 5521 telescopic crane is the first model in the range to feature the Penny + Giles tilt sensors and the first to use Stellar’s CDT™ (Crane Dynamics Technology™) control system. It offers a maximum 5,000 pound capacity at 5’ 9” in boost mode, has a 21-foot reach and offers two options: a ‘one hydraulic/one manual’ extension version and the company’s all-new ‘two hydraulic’ extension version.
 
Commenting on the choice of Penny + Giles tilt sensors, Stellar’s sales and marketing manager Sean Moran says: “The main reason for specifying the STT280 is the compact design, which allows us to mount them in discreet locations on the cranes. A close look at the company itself also showed that Penny + Giles products are used extensively in defence and military applications, confirming that their products are robust and manufactured to an extremely high quality. This makes them ideal for the arduous operating environments demanded of our telescopic crane systems.”
 
The STT280 tilt sensors are integral to Stellar’s CDT smart control system. They are used to measure the angle of the telescopic boom, enabling the CDT to calculate the load on the crane and transmit the data from the sensor to a handheld controller. This controller features a graphical user interface that uses multiple sensory indicators (coloured LED lights and pulsating vibrations) to alert operators of increasing loads before an overload situation occurs. The use of cyclical vibrations in the controller ensures that the operator is always aware of approaching maximum capacity, while still being able to monitor the load itself. Before the tilt sensors were installed the only safety system in place was a pressure sensor on the hydraulic system that would shut the crane down as it reached a defined load. 
 
Summarising, Sean Moran says this is the first time this type of telescopic system has used tilt sensor technology to relay crane condition and operation to the operator, which puts Stellar and Penny + Giles at the forefront of service crane technology in the US market. 
 
The Penny + Giles STT280 tilt sensor features a choice of measurement ranges from ±10°, ±20°, ±30° and ±60°, with an output range from 0.5 to 4.5Vdc over the full inclination angle and a nominal 2.5Vdc at 0° tilt. It can also operate from a 5Vdc regulated or 8 to 30Vdc unregulated supply and uses solid state 3D-MEMS (Micro-Electro-Mechanical Systems) technology to measure its inclination relative to earth's gravity. This means the sensor has a low power requirement of less than 6.5mA, and can therefore be used in hard-wired or battery-powered systems. This gives the STT280 significant advantages in reliability, stability and compactness compared to fluid-based electrolytic and pendulum-operated sensors.
Penny + Giles, a business group of Curtiss-Wright Controls and designer and manufacturer of high precision sensing technology, is supplying its STT280 tilt sensors and SRH280DP rotary sensors to Sarclad Ltd to provide critical measurements for an In-Chain Strand Condition Monitor – a precision, online measurement system used to monitor continuous casting machine rolls used in the steel making process.
 
The In-Chain Strand Condition Monitor (In-Chain SCM) is permanently installed in the steelmaking process to enable automatic fixed-roll alignment and roll-gap measurements to be performed at the beginning of every casting, without affecting production activities. The Penny + Giles sensors were specified to meet the stringent requirements of a system that is robustly engineered to endure the extremely hostile casting environment.
 
Commenting for Sarclad, In-Chain SCM manager Richard Cowlishaw says: “With a continuous cast system able to produce in excess of $1million worth of steel a day time is of the essence, so interrupting production to measure the condition of the casting machine could cost steelmakers huge amounts of money. Installing a Sarclad In-Chain SCM system ensures that measurements are taken automatically at the start of every cast, so that costly downtime is avoided and quality of product is maintained.”
 
The Penny + Giles STT280 tilt sensors are fitted to the In-Chain SCM to measure the fixed-roll alignment of the casting machine using spring-loaded blades that tangent pairs of rolls to measure the angles between them. The data is then processed to identify rolls and segments that are out of position relative to other rolls within each segment.
 
Sarclad had previously used inclinometers, but specified the Penny + Giles tilt sensor because its compact size and extremely robust construction proved more effective and robust for the application. In addition, because measurements are taken while the continuous cast system is moving, inclinometers were prone to resonate or create a spike output. In contrast, the STT280 tilt sensor features 3D-MEMS technology, which provides a naturally-damped response that is unaffected by knocking or vibration. This feature is especially important for continuous steelmaking operations where accurate measurements are vital, as Richard Cowlishaw explains.
 
“The steel making process involves pouring molten steel into a caster mould and oscillating the mould to prevent the liquid steel sticking to the sides while it solidifies. The vibrations from the action of the oscillator affects the measurements taken with traditional inclinometers, by producing spiked rather than smooth outputs, which corrupts the measured data. 
 
The caster operates from ninety degrees vertical to zero degrees horizontal, so in order to accurately measure between the two angles it is necessary to measure beyond them. Penny + Giles were able to customise the STT280 sensor to measure between 92 degrees and -2 degrees, providing the calibration points we needed outside the measuring range.” 
 
He goes onto say that Sarclad was so impressed with the Penny + Giles sensors that they have also been installed on its traditional Strand Condition Monitor, which is the offline equivalent of the online In-Chain system. 
 
Sarclad also uses Penny + Giles SRH280DP rotary Hall effect sensors to measure gap displacement on the In-Chain SCM system, replacing the rotary inductive position sensor (RIPS) used in the original design. 
 
Says Richard: “The RIPS were too big, were influenced by forces exerted on the shaft and used a technology that proved to be unsuitable for the application. Axial loads on the RIPS shaft also caused the output to fluctuate even though it wasn’t being rotated.” He adds that potentiometers also proved problematic because the application only needed a small length of track, which meant that the conductive grease degraded prematurely, causing spikes in the signal.
 
When Penny + Giles introduced the SRH280 rotary Hall effect sensor to provide uniform feedback, Sarclad immediately realised its benefits even though it was only initially launched as a single channel sensor. However, the range was programmable, which allowed the company to get the maximum resolution from the 30 degrees rotation output they required. Sarclad now fits the recently developed Penny + Giles SRH280DP two channel version, which can be configured with both channel outputs increasing with clockwise or anti-clockwise shaft rotation, or one clockwise with one anti-clockwise. 
 
“Being a non-contact Hall effect sensor, any pressure applied to the shaft in an axial direction does not affect the output.” says Richard. “It is also available as a regulated or unregulated version, is very stable and not affected by heat or shock, which is a real bonus for this particular application.”
 
The SRH280DP is fitted as part of a gap transducer, which has a spring-loaded rotary arm that extends out to contact the caster rolls to provide an absolute measurement for the distance between the pair of opposing rolls. 
 
The IP68-rated SRH280DP sensor provides reliable and accurate rotary position measurement for extreme industrial environments where shock and vibration can occur. It operates from either a 5Vdc regulated or 9 to 30Vdc unregulated power supply and is available with analog (0.5 to 4.5Vdc) or digital (PWM) output signals. The sensor is factory programmable, allowing users to specify the output signal type, the measurement range (0-20° to 0-360° in 1° increments) and the output direction (clockwise or anticlockwise). The two outputs can be used for error checking if they are set up to be opposed (clockwise on the first signal and anticlockwise on the second signal) and the output summed. The sensor also has a 12 bit resolution (0.025%) over the selected measuring range, and operates from -40 to +140°C when powered at 5Vdc.
 
The STT280 tilt sensor features a choice of measurement ranges from ±10°, ±20°, ±30° and ±60°, with an output range from 0.5 to 4.5Vdc over the full inclination angle and a nominal 2.5Vdc at 0° tilt. It can also operate from a 5Vdc regulated or 8 to 30Vdc unregulated supply and uses solid state 3D-MEMS (Micro-Electro-Mechanical Systems) technology to measure its inclination relative to earth's gravity. This means the sensor has a low power requirement of less than 6.5mA, so can be used in hard-wired or battery-powered systems. By using this technology, the STT280 provides distinct advantages in reliability, stability and compactness over fluid-based, electrolytic and pendulum-operated sensors.
 
 
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