Monday, 22 August 2022

Web browser application for LIMS.

Matrix Gemini version 6.5 has been released by Autoscribe Informatics. In a major upgrade to the underlying technology Autoscribe has introduced a new web browser application for Matrix Gemini known simply as the New Matrix Gemini Web application. By adopting the latest technologies and standards Autoscribe are ensuring that Matrix Gemini meets, and will continue to meet, the changing requirements of a modern laboratory informatics solution.
Simon Wood

“Managing configuration changes through an audit controlled graphical editor gives system administrators total control over the changes they make and provides a complete historical record of those changes,” 
said Simon Wood, Product Manager. “If necessary, updates can be revoked at the touch of a button. This is simply not possible in systems that use hard coded configuration. Having the evidence of changes built into the system means it is simpler and easier to answer questions auditors may have about how and when functionality has been modified.”

The LIMS workflow, screens, menus, lists and all other configurable options are available for the New Web application in the same way as the existing Desktop and Web applications. Configurations are created and modified using the built-in Matrix Configuration Tools and, after approval, are instantly available to the users in all three applications. 

The underlying software is untouched by configuration with configuration details held in a separate database. All configuration changes are recorded in an audit trail and released in a controlled way. Since a complete history of changes is always available users can revert to any previous version of any screen or workflow should the need arise. This functionality is unique in the world of LIMS. It ensures laboratories have a complete history of all configuration changes in much the same way as they have a complete history of all the samples and sample data that goes through the LIMS.

Customers upgrading from a previous version of Matrix Gemini will automatically be able to take advantage of the New Web application, exactly as they accessed their Desktop and Web configurations in previous releases.

The New Web application is available with immediate effect as a beta release in v6.5. Current customers are encouraged to load both the Web and New Web applications side-by-side and fully test their LIMS configuration using example typical test cases to ensure expected functionality.

“The introduction of the New Web application has significantly enhanced our product and ensures that it will continue to meet the needs of customers now and for the future”, continued Simon. “This, combined with significant performance improvements in key areas, will bring major benefits to users. Combine this with the new look and feel of the New Web application and it is easy to see why Matrix Gemini LIMS is the compelling solution for today’s connected laboratory.

@AutoscribeLtd @AutoscribeCorp #Laboratory #LIMS #TandM

Innovation in vacuum recognised.

The company Climeworks has been awarded with the Innovation Award by Busch Vacuum Solutions for its advanced use of vacuum technology. Climeworks is the first company to use Direct Air Capture technology to remove carbon dioxide from the atmosphere. In this way, the company is actively making an important contribution to reducing global warming.
Climeworks and Busch have a close partnership from the beginning. Climeworks has now been awarded the "Innovation in Vacuum Busch Award 2021" for its innovative use of vacuum technology in CO₂ removal. Managing Director and founder of Climeworks Jan Wurzbacher accepted the award together with other representatives of the company during a small ceremony at the headquarters of Busch Vacuum Solutions in Maulburg (D).

In these unique plants, MINK claw vacuum technology from Busch is used to filter CO₂. Busch presents the "Innovation in Vacuum Busch Award" once a year. This award honors individuals or companies that make use of vacuum technology with particularly innovative ideas and thereby serve the well-being of people and the environment. The "Innovation in Vacuum Busch Award" was first presented in 2013 on the occasion of the 50th anniversary of Busch Vacuum Solutions.

The rise in temperature caused by climate change can only be limited by restoring a healthy balance in the CO₂ content of the atmosphere. This can only be realized if both current emissions are drastically reduced and unavoidable emissions that have already been emitted are removed from the air.

Using Climeworks' Direct Air Capture technology, CO₂ is filtered directly from the air. CO₂ collectors selectively capture carbon dioxide in a two-step process. First, air is drawn into the collector by a fan. The carbon dioxide is captured on the surface of a highly selective filter material located inside the collectors. After the filter material is filled with carbon dioxide, the collector is closed, and the temperature is raised to 80 to 100 °C - releasing and capturing the pure carbon dioxide. The filtered CO₂ is extracted using MINK claw vacuum pumps from Busch.

It is then mixed with water and injected underground into basalt rock by Climeworks' partner Carbfix. Over a period of a few years, the CO₂ mineralizes itself and is thus permanently and safely removed from the atmosphere and converted back into rock underground. Climeworks' technology is powered exclusively by renewable energy or waste heat, and the modular collectors can be combined to create systems of various sizes.

@Climeworks #Busch #Climate

The "ultimate sophistication" in level!

AMETEK Magnetrol’s new Pulsar Model R80 radar level transmitter exemplifies the famous line: “simplicity is the ultimate sophistication.” Building upon the company's leading radar technology portfolio, Magnetrol now offers an 80 GHz radar transmitter for the industrial market.

FMCW technology and an 80 GHz operating frequency allow for superior performance, smaller antennas, better accuracy, and enhanced resolution. Additionally, Magnetrol’s configuration wizards and proactive diagnostics make commissioning and troubleshooting easier than ever. As is typical with Magnetrol loop-powered devices, the transmitter housing may be separated from the antenna without disrupting the process seal.

As for applications, the Model R80 is minimally affected by turbulence, foam, or excessive vapors as is often the case with ultrasonic transmitters and some radar products. The smaller antennas and narrower beam angles allow it to be installed into vessels with smaller process connections and those with internal obstructions that must be avoided.

Some highlights of the new Model R80:
  • 80 GHz signal with beam angles as narrow as 4 degrees
  • Process connections down to ¾ inch NPT
  • Measuring range of 30 meters (100 feet)
  • Software wizards to walk a new user through the commissioning process
  • Proactive diagnostics to not only advise what the problem is but also offers troubleshooting tips
  • Replaceable transmitter head without breaking the process seal (i.e., pressure boundary)
  • SIL 2 compliant with 92.3% SFF
  • Global hazardous location approvals
  • FCC, ETSI, and ISED communications approvals for use on both indoor and outdoor vessels

@MagnetrolGlobal @AMETEKInc #PAuto 

Friday, 19 August 2022

"Robot leading the charge!"

Addverb Technologies has released a new sorter robot called SortIE – a fast-moving scalable solution for rapid and efficient order fulfilment. As a fully automated robotic put-to-wall sorting system, SortIE is capable of performing SKU-wise intelligent sortation at very high speeds and at different height levels.
Additionally, it enables easy and rapid picking. It can be easily integrated with existing conveying systems such as conveyors, robots, and manual transport with no impact on ongoing operations.

“We are excited for SortIE to reach the market because there is nothing like it,” says Pieter Feenstra, Addverb’s CEO of the EMEA region. "This robot increases productivity with up to 450 sorts per hour, meaning up to 250 orders fulfilled at any given time, and increases order cube utilisation by up to 20%. The entire sorting system is simple and fully automatic, which shortens the return on investment and requires no human intervention. We’re proud to have led the charge on a robot like this coming to the market.”

@Addverb_Tech @PRLab_Hub #Robotics #Warehouse

Thursday, 18 August 2022

Throttle position sensors at Le Mans.

Gibson Technology, based in Derbyshire (GB), is a world leading manufacturer of motorsports powertrains encompassing engines, electronics, and electronic gearshift systems. In abundant action across the globe supporting teams in many major race series’, its latest development 4.2 litre GK458 engine is the exclusive choice for LMP2 class racing - competing amongst others in the FIA World Endurance Championship (WEC) which includes the prestigious Le Mans 24 Hour Race where this year’s competition fielded no less than 28 Gibson Technology equipped cars.

Gibson's GL458 engine - 28 competed in the 2022 Le Mans 24 Hour Race

As part of the electronic fuel injection equipment on the naturally aspirated 90-degree, DOHC V8 engines Gibson Technology chose Variohm EuroSensor’s Euro-XPD series Hall Effect angle sensors (pictured below right) to provide precise throttle position feedback. As with all Gibson Technology powertrain systems, long endurance and extreme reliability are key factors and over the complete duration of this year’s 24-hour race, the 28 cars competed without any issues.

Based on Variohm EuroSensor’s motorsports-proven Euro XP range of Hall Effect non-contacting angle sensors., the Euro-XPD features an 8 mm diameter D-shaft drive which, without the need for a separate coupling, is easily adapted and extensively used for throttle position sensing in motorsports. The sensor is supplied as standard with an electrical angle of 360° or may be optionally ordered with a programmable angle from 30° to 360° in 10° steps. Its redundant CW and CCW ratiometric output has optional interfacing parameters of 5 to 95% or 10 to 90% of the 5V DC supply voltage with independent linearity to within +/- 0.5% of each signal range.

The non-contacting Hall Effect design offers an almost unlimited life with up to 50 million movements and, with the optimum magnet to sensing-element gap maintained within the IP68 sealed assembly, its extreme robustness is complemented with an extended vibration rating and operating temperature durability from -40° C to +125° C (short term to 150° C). These specifications combine with a choice of 32 or 38 mm PCD slotted hole mounting for M4 screws to provide wide-ranging application flexibility as well as form-fit interchangeability with competitive models. Electrical connection is via 500 mm long sleeved cable with customised connector options such as the motorsports industry standard Deutsch DTM available on request.

The Euro- XP family of Hall Effect non-contacting rotary sensors also include shaft driven Form ‘U’ and spring coupling alternatives as well as separate puck and magnet versions. This product family is widely used in motorsports for steering angle, ride height, pedal, and gear position as well as throttle position. Variohm EuroSensor also manufactures miniaturised sensors with Hall Effect technology as the Euro-CMR series offering similar specification characteristics in micro-sized packages as flange or screw-mount sensors in shaft driven and puck/magnet styles.

@Variohm @gibsontech1 @mepaxIntPR #Position #Automotive

Remote I/O Modules for RTD measurement.

Acromag’s newest addition to the Busworks® NT Series of expandable remote Ethernet I/O modules is the NT2620 Series RTD/resistance module. Designed to be a cost-effective modular solution, it supports four RTD/resistance inputs and two bidirectional discrete digital I/O channels to monitor temperature limits with conditional logic. NTE Ethernet I/O models have dual RJ45 ports and a webserver with Modbus TCP/IP or EtherNet/IPTM communication to monitor or control the internal I/O channels.

“Now Acromag can interface a wider variety of temperature sensors and offer discrete signals to monitor threshold levels or control alarms,” states Robert Greenfield, Acromag’s Business Development Manager.

The Modbus TCP/IP or EtherNet/IPTM communication is field-selectable saving costs of additional modules. An integrated DIN rail bus allows a connection of up to three NTX expansion I/O modules. The space-saving design requires only 25mm of DIN rail per module. Ethernet I/O modules distribute 9-32V DC power along the DIN rail bus to expansion modules. Hazardous location approvals, high noise immunity, and -40 to 70°C operation make this I/O ideal for use in harsh environments.

Profinet communication is planned for release soon. Each module will support all three protocols which are selectable using any web browser to configure the network settings and I/O operation. The modules typically function as a network slave, but also offer Acromag’s i2o® peer-to-peer communication technology to transfer data between modules directly without a host or master in between. Multicast capability is included.

@Acromag #PAuto #Communications

Sustaining a fen and capturing carbon dioxide.

In 2001, five organisations came together to set out a vision for the Great Fen, with the aim of providing a more sustainable future for the area. In many respects, this work focuses on restoration by managing water levels, so a network of monitoring wells has been established. In this article, Wendy Strain from OTT HydroMet explains how this monitoring program is helping to achieve the ambitious goals that have been set for the Great Fen.

Background.
The Great Fen is an expanse of nationally significant fen landscape between Peterborough and Huntingdon in the East of England. The area contains many farms and villages as well as two National Nature Reserves; Woodwalton Fen and Holme Fen. Holme Fen and Woodwalton Fen are both part of the Great Fen, a habitat restoration project, involving the local Wildlife Trust, Natural England, the Environment Agency, Huntingdonshire District Council and the Middle Level Commissioners.

The Great Fen covers 14 square miles of land that is being restored to wild fen over a 50-100 year timescale, creating a huge nature recovery network, providing a Living Landscape for fenland species including threatened fen wildlife, such as bitterns and otters. A mosaic of different wetland habitats has been established to support a wide variety of wildlife, such as dragonflies, butterflies and amphibians. This habitat is also suitable for flowers and other plants, some of which are found almost nowhere else in Britain such as the Fen violet and the Fen woodrush.

In 1630 a group of wealthy landowners, headed by the Earl of Bedford, set out to drain the fens for agriculture and to minimise winter flooding. Many of the local people were fiercely opposed to the draining, believing it would deprive them of their traditional means of livelihood from wildfowling, fishing and reed cutting, and a group known as the ‘Fen Tigers’ vandalised the dykes, ditches, sluices and reedbeds. Nevertheless, by the end of the 17th Century the drainage project was complete.

This drainage caused more problems, such as peat shrinkage, and more drainage projects followed. In the 1800s, conscious of the likely shrinking effect of draining the peaty soil around Whittlesea Mere, William Wells, another wealthy landowner, instigated the burial of a measurement post at Holme Fen, which was anchored in the bedrock and cut off at the soil surface. Today, around 4 metres of the post is showing above ground, recording the ground subsidence since 1852. The ground level at Holme Post is now 2.75 metres below sea level – one of the lowest land points in Great Britain.

Several issues have arisen as a result of the drainage. Firstly, there has been a huge impact in local ecology and biodiversity with the loss of a large area of wetland. Also, as the ground level subsided it became less sustainable to pump water up into the main drain. The loss of peat has become a major concern, because, as a carbon sink, peat is hugely important in the fight against global warming.

Peat forms in waterlogged, acidic conditions when layers of partially decomposed mosses and other bog plants accumulate. The process is very slow; it can take up to 1,000 years to form just one meter of peat. Nevertheless, around 60% of the world’s wetlands are made of peat. The plants which form peat capture carbon dioxide from the atmosphere and as a result, large quantities of carbon are trapped in the peat. However, if the peat is drained, it decomposes much faster; releasing the stored carbon. Peat burning has the same effect, but much faster.

It has been estimated that the reduction of peat loss in the Great Fen, coupled with the capturing of carbon by vegetation is saving 325,000 tonnes of CO2 from being released each year.

The project is also a good example of natural flood management (NFM) because it provides extra water storage after heavy rainfall, which slows water flow and helps to protect surrounding towns, villages and farmland from the risk of flooding.

Water level management.
The drainage of the fens incurred widespread ecological harm, but the solution is significantly more complicated than simply raising water levels to create wetlands. Henry Stanier explains: “There are a number of factors that impact the restoration process. Firstly, the geology of the area is like a layer cake, and each layer has different hydrological properties. Secondly, the Great Fen includes a number of commercial farms, so it is important to understand and manage their groundwater status. Thirdly, the surface water requirement varies according to the time of year, due to the needs of a wide variety of flora and fauna, including breeding birds. Fourthly, along with various partners, we are conducting numerous research programs, most of which are affected by water level. For example, we have trial plots with raised water levels, in which we are investigating the performance of different plant species. These include Sphagnum or ‘bog moss’ which stores water, prevents the decay of dead plant material and eventually forms peat, and we are also trialling the wetland cropping potential of Glyceria fluitans, a robust perennial aquatic sweet grass.”

Water level monitoring.
Working with a team of over 60 volunteers Henry delivers a monitoring program for the project area, which is currently around 3,700 Hectares. 40 wells have been installed in strategic locations, each to a depth of around five metres. 37 of these have OTT Orpheus Mini water level loggers, which record groundwater level every hour, every day of the year. Henry collects the data from these loggers once or twice per year, or more frequently where the data is of greater significance.

Three of the wells have been fitted with OTT ecoLog water level loggers. These devices have the ability to transmit both stored and live data to a secure website which Henry can access with any internet-enabled device at any time, and from anywhere. “This is a tremendous advantage,” he explains. “With such a large area to cover, field visits can be time-consuming and therefore costly, so we install the OTT ecoLogs in the wells of greatest interest, so that we can, for example, view the effects on groundwater levels when we transfer surface water into an area.”

Henry’s team operates a number of trial plots by the dipwells; investigating how the vegetation is changing. His team also correlates groundwater levels with vegetation growth, in order to better understand optimal growing conditions.

The Great Fen area includes a number of commercial farms, which operate both drainage and irrigation processes, so the groundwater monitoring program also helps to understand the effects of these activities. In addition, new farms are regularly acquired and incorporated into the Great Fen, so the monitoring work helps to manage the restoration of this land from agriculture to fenland.

Summary.
Henry says: “Fenland restoration depends heavily on a deep understanding of the geology and the water table, and the effects of water status on the local ecology. The water level monitoring that we undertake provides the data that underpins the science that informs the important management decisions that are made. The quality and reliability of the OTT water level loggers is therefore vital, and we look forward to expanding our network of monitors as the project continues to grow.”

@OTTHydromet @WildlifeTrusts @_Enviro_News #Environment #Britain