Technology for Men

Contains about technology information

Category: Technology

Clean Room Technology Then And Now

The principle of Clean room design starts from almost 150 years ago when these units were used for bacterial control in hospitals. Today, clean rooms have completed a long way and developed to the modern technology. In earlier day, these clean rooms were designed for fulfilling the requirement of clean environment for industrial manufacturing during 1950s and the same clean rooms are also used for variety of applications in many industries.

A clean room is defined as a place that provides attentively controlled environment that has a low level of environmental pollutants such as airborne microbes, dust, chemical vapors, and aerosol particles. When the air entered in a clean room it is filtered and then continuously circulated through high efficiency particulate air (HEPA) or ultra-low particulate air (ULPA) filters. These filters are used to remove internally generated contaminants. The persons, who work inside the clean room, wear protective clothing while enter and exit through airlocks, while equipment and furniture inside the clean room is specially designed to produce minimal particles.

Today, more than 30 different industry segments utilize clean rooms including semiconductor and other electronic components, pharmaceutical, and biotechnology industries.

Modern clean rooms were developed during the Second World War to improve the quality and reliability of instrumentation used in manufacturing guns, tanks and aircraft. During this time, HEPA filters were also developed to contain the dangerous radioactive, microbial or chemical contaminants that resulted from experiments into nuclear fission, as well as research into chemical and biological warfare.

On the other hand, clean rooms for manufacturing and military purposes were being developed; the importance of ventilation for contamination control in hospitals was being realized. The use of ventilation in a medical setting gradually became standard practice during this time.

The concept of laminar flow was introduced during 1950s and 1960s, when NASAs space travel program was initiated. This marked a turning point in clean room technology and from this time, the evolution of clean rooms gained momentum.

In the late 1950s, the Sandia Corporation (which later became Sandia National Laboratories) began investigating the excessive contamination levels found in clean rooms. Researchers found that clean rooms were being operated at the upper practical limits of cleanliness levels and identified a need to develop alternative clean room designs.

In 1961, Professor Sir John Charnley and Hugh Howorth, showed a tremendous improvement in unidirectional airflow by creating a downward flow of air from a much smaller area of the ceiling, directly over the operating table.

Also in 1961, the first standard written for clean rooms, known as Technical Manual TO 00-25-203, was published by the United States Air Force. This standard considered clean room design and airborne particle standards, as well as procedures for entry, clothing and cleaning.

In 1962, Patent No. 3158457 for the laminar flow room was issued. It was known as an ultra clean room.
By 1965, there have been several vertical down flow rooms were used in which the air flow ranged between 15 m (50 ft)/min and 30 m (100 ft)/min. It was during this time that the specification of 0.46 m/s air velocity and the requirement for 20 air changes an hour became the accepted standard.

By the early 1970s the principle of laminar flow had been translated from the laboratory to wide application in production and manufacturing processes.

The 1980s saw continued interest in the development of the clean room. By this stage, clean room technology had also become of particular interest to food manufacturers.

In 1987, a patent was filed for a system of partitioning the clean room to allow zones of particularly high-level cleanliness. This improved the efficiency of individual clean rooms by allowing areas to adopt different degrees of cleanliness according to the location and need.

In 1991, a patent was filed for a helmet system that can be used in a medical clean room in which the user is protected from contaminated air in the environment, while the patient is protected from contaminated air being exhausted from the users helmet. Such a device decreases the possibility of operating room personnel being contaminated with viruses carried by the patients being operated upon.
The pace of clean room technology transformation has accelerated over recent years. Since the year 2000, there have been significant advances in new clean room technology, which have helped to streamline manufacturing and research processes, while also reducing the risk of contamination. Most of the technological developments of the past decade have been directed towards the manufacture of sterile products, particularly aseptically filled products.

In 2003, Eli Lilly pioneered the development of a new system for the prevention and containment of cross contamination during the manufacture of pharmaceutical powders using a specially designed fog cart. This allows the operator to be covered by an exceptionally fine fog of water on exit from a critical area, virtually eliminating the risk of transferring dust traces beyond their proper confines.

The Future of Clean Rooms
Today, clean rooms are used in variety of applications. The presence of these units can be seen in the manufacturing of semiconductor and other electronic components, as well as in the pharmaceutical and biotechnology industries. Furthermore clean room technology has more recently been applied to micro- and Nano-system processes, and this looks certain to be an area of growth in coming years. The development of clean room technology is likely to continue to be driven by certain key factors including the increasingly technical use of exotic physical and biological phenomena, the central role of increasingly fine structures, the creation and use of materials of the highest purity, and the increasingly broad-based utilization of biotechnology. Given the scale of these challenges, clean room technology looks set to remain indispensable to production in coming years.

Centrak Combine New Technology To Add Battery Life

CenTrak combine new technology to add battery life
CenTrak’s RTLS basement now combines this latest patented technology with a new dry array corpuscle to added than bifold array life. All Sony VGP-BPS13 battery activity abstracts accept the arrangement is operating ceaseless at a area amend acceleration of 3 seconds.
“Aside from accouterment best in chic area accuracy, CenTrak fabricated its name as the baton in array powered area accessories that are simple to install, crave no wiring, and action acute array activity with Dell latitude d520 battery batteries that are simple to alter in the field. CenTrak array swaps are easier again alteration a ablaze ball and they appear abundant beneath frequently.” said Ari Naim, Ph.D., President and CEO of CenTrak. “With this technology advance we are demography that affluence of accession and aliment and the accord of apperception it brings to new heights. Facilities can now install CenTrak’s RTLS and not anguish about array backup for a decade or longer”.
CenTrak’s amount RTLS differs from bequest technologies in its use of a patented aggregate of second-generation bittersweet (Gen2IR) and alive RFID technology alleged DualTrak(Dell latitude d600 battery ). Array powered Monitors address a different allowance amount application Gen2IR which is accustomed by any tag in that room. The tag communicates the allowance amount and its own different ID via RF to the CenTrak Area Server application a hospital’s absolute active or Wi-Fi network, area it can be accessed in real-time by hospital cadre and chip with third affair band-aid providers.

Like light, Gen2IR will not canyon through walls and does not ache from acceptable bittersweet line-of-sight limitations. Therefore, if a tag reads a allowance number, there are no errors. This is certainty-based RTLS. Unlike estimation-based information(latitude d610 battery ), certainty-based area abstracts can be acclimated by hospitals to accomplish important improvements to action breeze and automate accommodation making. A lot of healthcare workflow improvements can alone be accomplished if the area abstracts is certainty-based.
CenTrak provides the a lot of authentic enterprise-wide absolute time area arrangement (RTLS) basement for the healthcare VGP-BPS9 market. Its patented Active-RFID/Gen2IR amalgam technology is acclimated for tracking humans and assets in real-time with 100% room/bed-level accuracy.
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Vnx Solutions Specialist Exam For Technology Architects Is An Expert Examination

For all those candidates that are uneasy about the requirements of the E20-545 examination, there are many different ways to deal with the situation. There are online forums and different companies offering online tests as well as demo versions that are available freely.
VNX Solutions Specialist Exam for Technology Architects is one of the examinations to obtain a certification in the technical IT field of Technology Architecture. The students usually use aid like online demo tests and even purchasable ones with the Questions and Answers section and is prepared by guidelines based in the real E20-545 testing scripts. Another advantage is the designers have followed the Recommended Syllabus and hence the online exams appear very real.
The benefit of VNX Solutions Specialist Exam for Technology Architects online is that it was prepared by professionals, experts that have tons of experiences in the field of technology architecture which guarantees the level and quality of information provided. This is of crucial importance to students that are unsure of their knowledge or who feel that there may be areas of knowledge lacking. The E20-545 exams offer gradual step-by-step explanation of the study materials as well as actual solutions, which is perfect for reviewing and adding to the detailed knowledge on the subject.
The free demo versions of the VNX Solutions Specialist Exam for Technology Architects that are available online are also constructed in the same way as the real exams, following the recommended syllabus, but are usually not finalized, due to the purchasable versions. It should be understood that the experts who constructed the solutions to the test also spent time and shared certain level of expert knowledge so this is available at all.
The purchasable versions of E20-545, however, bring all features of the true examinations, with the addition of Questions and Answers part as well as certain guidelines following the test. Some students say this program can efficiently support the short-period preparation for examination, but this probably depends on general expertise of the subject.
The VNX Solutions Specialist Exam for Technology Architects can help the students reach the intended level of expertise or I other words, the result thy aimed for. Students testify that taking time and preparing for the test through the E20-545 actually guarantees successful passing of the examination with very good results. This indicates that the test examinations really are based on real exams and that real experts worked them out.
Most of providers of different online IT examination materials regularly update and test accuracy of their products, but some do not. VNX Solutions Specialist Exam for Technology Architects is an expert examination in the field of computer sciences and the digital environment is the fastest constantly developing and updating environment, which indicates that updating of examination is crucial for students to be able to make efficient use of the given information.
This is why students should always choose either the latest version of the test or pay attention to whether the test provider offers further updates to the product. Beside this, these programs prove to be the best source of healthy information and learning materials that are available out there.

The Electric Light Bulb Could Be The Greatest Technology In History

The history of lighting is fascinating and includes philosophy, art, sciences and religion. Through an extensive timeline, we know that until early man discovered the element of fire quite by accident. He lived in darkness for half of his life. Lightning probably struck a nearby tree and set it on fire, revealing a source of light in addition to the sun and the moon.

But with fire, man could control it and generate heat for warmth and provide energy for cooking. This new source of light gave man a whole new definition of power and control moving him to the top of the food chain.

By bundling sticks together, fire became a torch to transport and light a path to other places. Later, man learned that grease and oil served as fuels for his fire and he could create holders for the fuel. He fashioned an animal horn, a shell, or a rock into a vessel for his fuel and fire. Then, man discovered how a wick added another measure of control, which eventually led to the invention of the candle.

Some people believe the greatest technology in history is the electric light bulb. It is the incandescent light bulb that freed our reliance on daylight. While candles led our way through darker ages, and gaslight was a little better, artificial electric lighting provided another level of control to take us from rudimentary technology to a new source enhancing our quality of life.

Thomas Edison is credited with the invention of the commercial electric light bulb and received a U.S. patent for his design. Edison received over 1,000 patents in his career and holds the record for the most patents granted to one person.

Today, light brightens the Earth from continent to continent as recorded by photography from outer space by satellites and Space Shuttle missions. The light bulb and electricity has afforded nations and humans to prosper and enjoy the fruits of modern technology, as we know it today.

To date, fire and electric lighting has moved our civilization and culture to further heights of luxury that only prosperity can provide. Now it is time to share with those who are less fortunate even in the 21st century. Some companies now donate a percentage of their profits to feed thousands of hungry children located in less fortunate nations. Some people choose to give back. What about you?

The Threat to Privacy by GSM Technology

The technology used in mobile phones is increasingly finding its way into eavesdropping devices. The use of bugs based on mobile phone technology (GSM) allows spies to monitor private conversations from anywhere in the world.

What is GSM?

GSM (Global System for Mobile) communications is an open, digital cellular technology used for transmitting mobile voice and data services. In very simple terms, GSM technology works by searching GSM networks to find nearby mobile phone masts to transfer voice, data and SMS between mobile phones.

GSM technology was originally created in 1982 by the European Conference of Postal and Telecommunications Administrations (CEPT), who designed the Groupe Spcial Mobile (GSM) with the aim of creating a pan-European mobile phone technology.

Thanks to GSM’s international roaming capabilities, it is now the most widely used mobile phone technology. According to the GSMA (the GSM Association), terrestrial GSM networks now cover more than 80% of the world’s population. That’s more than 6 billion people across more than 218 countries.

The GSM bugging threat

With the advantages brought by the wide coverage GSM technology offers, comes a growing threat to privacy. The same GSM technology used to service mobile phones is also used in the world of covert surveillance and spying to eavesdrop on private conversations from anywhere in the world.

This is possible through using GSM audio bugging devices that use specially adapted mobile phone technology to listen in and transmit conversations taking place in one location to another. These devices work in the same way as mobile phones and can be used anywhere you can use a mobile phone.

Once hidden in the target location, the GSM bug waits silently in standby mode until the eavesdropper calls the SIM card number being used in the device. At this time the call is silently answered and the microphone activated, allowing the caller to listen in to conversations taking place in the nearby vicinity. When the conversation has ended the bug is then switched back to standby (passive) mode. Other more advanced devices have the facility for sound, vibration and motion activation whilst others can be manually or remotely set by SMS commands.

These bugging devices are small and discreet and are normally concealed within innocent looking items that are frequently found around the home or office. Because they use GSM technology they can even pick up audio whilst on the move, just like mobile phones, so are not limited to static locations. This makes them ideal for picking up conversations in cars, or they can even be slipped inside a pocket or handbag to ensure a target is constantly monitored wherever they are.

How to spot GSM bugging devices?

Not only are GSM devices getting smaller and more sophisticated, making them hard to detect, but their signals are often lost amongst legitimate GSM and mobile phone communications. This is a particular problem when being operated in urban areas, which where most eavesdropping targets tend to be located.

It is for this reason that using professional counter surveillance services is the only practical option for effectively detecting and dealing with these bugs. Counter surveillance specialists have the training, experience and equipment needed to detect, locate and deal with the presence of GSM bugs. In particular, these experts are able to find both active and passive GSM bugs in order to provide a 100% secure environment.

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