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Neon signs are luminous-tube signs that contain neon or other inert gases at a low pressure. Applying a high voltage (usually a few thousand volts) makes the gas glow brightly. They are produced by the craft of bending glass tubing into shapes. A worker skilled in this craft is known as a glass bender, neon or tube bender.

Neon sign tubes are distinguished from neon lamp bulbs by their length, customized shapes, higher operating voltages, and range of colors.

Construction

The neon tube is made out of 3-4' straight sticks of hollow glass sold by sign suppliers to neon shops worldwide who hand produce them into individual custom designed and manufactured lamps. Manufacturing is a cottage industry and an eclectic art, in most cases, often a small family business. All neon tubes are hand made and labor intensive, even today, and the shop equipment is normally custom assembled from scratch by the craftsmen themselves from parts. There are many dozens of colors available. The color is chosen by the type of tubing used, and the gas filling.

Tubing in external diameters ranging from about 8-15 mm with a 1 mm wall thickness is most commonly used, although 6mm tubing is now commercially available in colored glass tubes. The tube is heated in sections using several types of burners that are selected according to the amount of glass to be heated for each bend. These burners include ribbon, cannon, or crossfires, as well as a variety of gas torches. Ribbon burners are strips of fire that make the gradual bends while crossfires, when used, make the sharp bends.

The interior of the tubes may be coated with a thin phosphorescent powder coating, affixed to the interior wall of the tube by a binding material. The tube is filled with a purified gas mixture, and the gas ionized by a high voltage applied between the ends of the sealed tube through cold cathodes welded onto the ends. The color of the light emitted by the tube may be just that coming from the gas, or the light from the phosphor layer. Different phosphor-coated tubing sections may be butt welded together using glass working torches to form a single tube of varying colors, for effects such as a sign where each letter displays a different color letter within a single word, such as shown in the OPEN sign in the photo above right.

"Neon" is used to denote the general type of lamp, but neon gas, is only one of the types of tube gases principally used in commercial application. Pure neon gas is used to produce only about a third of the colors. The greatest number of colors is produced by filling with another inert gas, argon, and a drop of mercury (Hg) which is added to the tube immediately after purification. When the tube is ionized by electrification, the mercury evaporates into mercury vapor, which fills the tube and produces strong ultraviolet light. The ultraviolet light thus produced excites the various phosphor coatings designed to produce different colors. Even though this class of neon tubes use no neon at all, they are still denoted as "neon." Mercury-bearing lamps are a type of cold-cathode fluorescent lamps.

Each type of neon tubing produces two completely different possible colors, one with neon gas and the other with argon/mercury. Some "neon" tubes are made without phosphor coatings for some of the colors. Clear tubing filled with neon gas produces the ubiquitous yellowish orange color with the interior plasma column clearly visible, and is the cheapest and simplest tube to make. Traditional neon glasses in America over 20 years old are lead glass that are easy to soften in gas fires, but recent environmental and health concerns of the workers has prompted manufacturers to seek more environmentally safe special soft glass formulas. One of the vexing problems avoided this way is lead glass' tendency to burn into a black spot emitting lead fumes in a bending flame too rich in the fuel/oxygen mixture. Another traditional line of glasses was colored soda lime glasses coming in a myriad of glass color choices, which produce the highest quality, most hypnotically vibrant and saturated hues. Still more color choices are afforded in either coating, or not coating, these colored glasses with the various available exotic phosphors.

Long lifetime

It is the wide range of colors and the ability to make a tube that can last for years if not decades without replacement, that makes this an art. Since these tubes require so much custom labor, they would have very little economic viability if they didn't have such a long lifetime when well processed. The intensity of neon light produced increases slowly as the tube diameter grows smaller, that is, the intensity varies inversely with the square root of the interior diameter of the tubing, and the resistance of the tube increases as the tubing diameter decreases accordingly, because tube ionization is greatest at the center of the tube, and the ions migrate to and are recaptured and neutralized at the tube walls. The greatest cause of neon tube failure is the gradual absorption of neon gas by high voltage ion implantation into the interior glass walls of the tubes which depletes the gas, and eventually causes the tube resistance to rise to a level that it can no longer light at the rated voltage, but this may take 7-10 years.

The actual cause of 80% of neon sign failures is the burnout of the high voltage electrical wires connecting the tubes inside of metal conduits. A very common type of neon sign is made from a formed metal box having a colored translucent face, called "channel lettering." Newer channel letter signs are being replaced by high brightness LEDs.

This long lifetime has created a practical market for neon use for interior architectural cove lighting in a wide variety of uses including homes, where the tube can be bent to any shape, fitted in a small space, and can do so without requiring tube replacement for a decade or more.

Tube Bending

A section of the glass is heated until it is malleable; then it is bent into shape and aligned to a pattern containing the graphics or lettering that the final product will ultimately conform to. This is where the real art of neon comes in that takes some artisans from a year up to several years of practice to master. A tube bender corks off the hollow tube before heating and holds a latex rubber blow hose at the other end, through which he gently presses a small amount of air in order to keep the tube diameter constant as it is bending. The trick of bending is to bend one small section or bend at a time, heating one part of the tubing so that it is soft, without heating some other part of the tube as well, which would make the bend uncontrollable. A bend, once the glass is heated, must be brought to the pattern and fitted rapidly before the glass hardens again because it is difficult to reheat once completely cooled without risking breakage. It is frequently necessary to skip one or more bends and come back to it later, by measuring carefully along the length of the tube. One tube letter may contain 7-10 small bends, and mistakes are not easily corrected without going back and starting all over again. If more tubing is required, another piece is welded onto it, or the parts can be all welded onto each other at the final step. The finished tube must be absolutely vacuum tight in order to operate, and it must be vacuum clean inside. Once the tube is filled with mercury, if any mistake is made after that, the entire tube had, or should, be started over again, because breathing heated mercury impregnated glass and phosphor causes long term heavy metal poisoning in neon workers. Sticks of tubing are joined until the tube reaches an impractical size, and several tubes are joined in series with the high voltage neon transformer. Extreme ends of the electrical circuit must be isolated from each other to prevent tube puncture and buzzing from corona effect.

"Bombardment"

A cold cathode electrode is melted (or welded) to each end of the tube as it is finished. The electrodes are also traditionally lead glass and contain a small metal shell with two wires protruding through the glass to which the sign wiring will later be attached. All welds and seals must be perfectly leak-proof to high vacuum before proceeding further.

The tube is attached to a manifold which is itself attached to a high-quality vacuum pump. The tube is then evacuated of air until it reaches near-vacuum. During evacuation, a high current is forced through the tube via the wires protruding from each electrode (in a process known as "bombarding"). This current and voltage is far above the level that occurs in final operation of the tube. The current depends on the specific electrodes used and the diameter of the tube, but is typically in the 450 mA to 800 mA range, at an applied voltage usually between 22,000-26,000 V. The bombarding transformer acts as an adjustable constant current source, and the voltage produced depends on the length and pressure of the tube. Typically the operator will maintain the pressure as high as the bombarder will allow to ensure maximum power dissipation and heating.

This very high power dissipation in the tube heats the glass walls to a temperature of several hundred degrees Celsius, and any dirt and impurities within are drawn off in the gasified form by the vacuum pump. The greatest impurities that are driven off this way are the gases that coat the inside wall of the tubing by adsorption, mainly oxygen, carbon dioxide, and especially water vapor. The current also heats the electrode metal to over 600oC, an bright orange incandescent color. The cathodes are prefabricated hollow metal shells with a small opening (sometimes a ceramic donut aperture) which contains in the interior surface of the shell a light dusting of a cold cathode low work function powder (usually a powder ceramic molar eutectic point mixture including BaCO2, combined with other alkaline earth oxides, which reduces to BaO2 when heated to about 500 degrees F, and reduces the work function of the electrode for cathodic emission. Barium Oxide has a work function of roughly 2 wherease tungsten at room temperature has a work function exponentially 100 times more, or 4.0. This represents the cathode drop or electron energy required to remove electrons from the surface of the cathode. This avoids the necessity of using a hot wire thermoelectric cathode such as is used in conventional fluorescent lamps. And for that reason, neon tubes are extremely long lived when properly processed, in contrast to fluorescent tubing, because there is no wire filament as there is in a fluorsecent tube to burn out like a common light bulb. The principal purpose of doing this is to purify the interior of the tube before the tube is sealed off so that when it is operated, these gases and impurities are not driven off and relesed by the plasma and the heat generated into the sealed tube, which would quickly burn the metal cathodes and mercury droplets (if pumped with argon/mercury) and oxidize the interior gases and cause immediate tube failure. The more thorough the purification of the tube is, the longer lasting and stable the tube will be in actual operation. Once these gases and impurities are liberated under pre-filling bombardment into the tube interior they are quickly evacuated by the pump.

While still attached to the manifold, the tube is allowed to cool while pumping down to the lowest pressure the system can achieve. It is then filled to a low pressure of a few torrs (millimeters of mercury) with one of the noble gases, or a mixture of them, and sometimes a small amount of mercury. This gas fill pressure represents roughly 1/100th of the pressure of the atmosphere. The required pressure depends on the gas used and the diameter of the tube, with optimal values ranging from 6 Torr (0.8 kPa) (for a long 20 mm tube filled with argon/mercury) to 27 Torr (3.6 kPa) (for a short 8 mm diameter tube filled with pure neon). Neon or argon are the most common gases used; krypton, xenon, and helium are used by artists for special purposes but are not used alone in normal signs. A premixed combination of argon and helium is often used in lieu of pure argon when a tube is to be installed in a cold climate, since the helium increases voltage drop (and thus power dissipation), warming the tube to operating temperature faster. Neon glows bright red or reddish orange when lit. When argon or argon/helium is used, a tiny droplet of mercury is added. Argon by itself is very dim pale lavender when lit, but the droplet of mercury fills the tube with mercury vapor when sealed, which then emits ultraviolet light upon electrification. This ultraviolet emission allows finished argon/mercury tubes to glow with a variety of bright colors when the tube has been coated on the interior with ultraviolet-sensitive phosphors after being bent into shape.

Heat processed neon tubes

An alternate way of processing finished neon tubes has also been used. Because the only purpose of bombardment by electrical means is to purify the interior of tubes, it is also possible to produce a tube by heating the tube externally either with a torch or with an oven, while heating the electrode with a Radio Frequency Induction Heating coil (RFIH). While this is less productive, it creates a cleaner custom tube with significantly less cathode damage, longer life and brilliance, and can produce tubes of very small sizes and diameters, down to 6mm OD. The tube is heated thoroughly under high vacuum without external electrical application, until the outgassed gases can be seen to have been totally depleted and the pressure drops to a high vacuum again. Then the tube is filled, sealed and the mercury dropped and shaken.

Electrical wiring

The finished glass pieces are illuminated by either a neon sign transformer or a switching power supply running at voltages ranging between 3-15 kV and currents between 20 and 120 mA. These power supplies operate as constant-current sources (a high voltage supply with a very high internal impedance), since the tube has a negative characteristic electrical impedance. Standard tube tables established in the early days of neon are still used that specify the gas fill pressures, in either Ne or Hg/Ar, as a function of tube length in feet, tube diameter and transformer voltage.

The standard traditional neon transformer, a magnetic shunt transformer, is a special non-linear type designed to keep the voltage across the tube raised to whatever level is necessary to produce the fixed current needed, up to the maximum limit of the neon footage possible.

Newer, compact high frequency inverter-converter transformers developed in the early '90s are used as well, especially when low Radio Frequency Interference (RFI) is needed, such as in locations near high-fidelity sound equipment. The reason for this is that at 20kHz, the typical frequency of these solid state transformers, the plasma electron-ion recombination time is too short to extinguish and reignite the plasma in the tube at every 1/120th second as in 50/60Hz transformers and so the plasma does not broadcast high frequency switching noise. The plasma simply remains lit at all times, becoming radio noise free.

The most common current rating is 30 mA for general use, with 60 mA used for high-brightness applications like channel letters or architectural lighting. 120 mA sources are occasionally seen in illuminating applications, but are uncommon since special electrodes are required to withstand the current, and an accidental shock from a 120 mA transformer is much more likely to be fatal than from the lower current supplies.

Blocking out and coating

The trick of the eye neon plays is produced by blocking out parts of the tube with blockout paint, which is either painted on or dipped. One complete tube is actually composed of contiguous tube elements joined by glass welding to one another so that the entire voltage passes through, say, several letters end to end from cathode to cathode. To the untrained eye, it looks like separate tubes, but the electrical splice is the plasma inside the crossover glass itself. The entire tube lights up, unless the parts that the viewer is not supposed to see are covered with highly opaque special black or gray glass paint. Without blockout paint the display would appear confusing. In most mass produced signs today, a glass paint is often dipped to make ordinary tubing look like high quality colored glass tubing.

Applications

The light-emitting tubes form colored lines with which a text can be written or a picture drawn, including various decorations, and is especially used by signage companies. By programming sequences of switching parts on and off, there are many possibilities for dynamic light patterns that form animated images.

Published in FAQ

Standard Channel Letter

A standard channel letter is 3-dimensional graphic sign element. Its channel is fabricated from sheet metal, most often aluminum since it will not rust or Perspex. A flat sheet of aluminum is typically cut on a table by a computer controlled router. This creates the back of the channel and is the basis for the letter shape. The sides of the channel letter, called the "returns", are then formed by bending a three to six inch wide strip of aluminum sheet around the aluminum back. This return can be welded at the seam or flanged and riveted to the back to create a solid "can" in the shape of the letter. The letter can is painted and fitted with any lighting components necessary such as Neon gas tubes or light-emitting diodes (L.E.D.) modules. A translucent plastic face usually of 3/16" thick sheet acrylic or polycarbonate is cut to fit the open face of the letter can. A trim cap border is applied to its edges which gives the letter face a finished appearance and creates a fastening surface to attach it to the letter can. When illuminated at night, channel letters draw the eye of passers-by.

Exposed Neon Channel Letter

These resemble standard letters, but the neon is not covered with a plastic face.

Reverse Lit Channel Letter

In this letter type, the face of the letter is constructed from aluminum and the lighting is directed to the back. This light floods the wall that the letter is mounted to and creates a negative space at night. Letters in this style are also called "halo letters". It is usually the most expensive form to manufacture.

Published in FAQ

Grow Your Business and Improve Visibility With Signage

When you start a new business, you want to tell the world how great your product, service, or program is. But the question is, how to and from where to start the promotion and growth of your business. There are many chances that if you have a start up, you probably do not have tons of extra money lying around to market what you are presenting. So, many of us look for ways to market our products or services, which do not cost us a fortune and are effective as well.

Business growth is extremely vital for a company, and this growth does not only mean high profits, rather it also means expansion to other areas. Signage is a growing form of advertisement, which is increasingly being used by many businesses for their growth purposes.

Signage is any kind of ocular graphics, created to display information to a meticulous audience. This is typically manifested in the form of way discovering information in places such as streets or inside or outside of buildings. Signage makes a perfect landmark for many cities, and the welcome board of Las Vegas is probably one of the most famous signages of the world.

Signage helps you in making a name and promoting your business. Signage on the highways are the best attention grabbers and grab the attention of most of the drivers. On a daily basis, we come across many billboards, and later on at some point of our lives, we do make use of those references and pay a visit to that particular store or business.

There are many types of signages such as Oil Stock sign, which is a massive signage for Oil Stockage and is prominent in many countries. Street signage is another type of advertisement, where signs are stamped out of metal with lettering embossed or printed. Neon signage is a technological revolution, where electric lighting is used on huge billboards for advertisement

Modular signage is another form of signage system that consists of pre-designed straightforward units. On the other hand, custom-made signages are extremely popular, where signs are built from scrape to suit a specific requirement presented by a client or a specific project.

Latest styles of signages include MCFT (Modular Curved Frame Technology), where there is a contemporary fusion between custom-made signage and modular sign systems that features a curved profile, whereas the 21st century has also introduced LED sign, which is based on light-emitting diodes technology.

In short, signage cannot only help your business grow, rather it can also help to increase the visibility and popularity of your business. It has become one of the most important aspects of promotion and advertisement, whereas one can select from the different types of signage available to the businesses and companies.

You can learn how to use a PVC Canvas for the advertising of your business.

Article Source: http://EzineArticles.com/?expert=Harrison_James


Published in Article

Reaching the Target Audience Through Digital Signage

Digital display is a recent addition to the world of advertising. Its completely new and innovative approach has managed to change the complete outlook of society and reached out to customers in an absolutely fascinating way. The success of digital advertising depends on its most critical element - content. It is the message that educates consumer about the brand and its various products. Therefore, for the message to be portrayed in the desired manner, it is essential for digital marketing to concentrate on its content. The use of words, their placement and the meaning behind them should be very catchy as well as clear to the reader to have a strong positive influence on his/her mind.

The world is full of information. However, using the right information at the right place is what defines the digital sign content. It is the content that catches the audience's attention and gives a good consumer response. It is the effectiveness of the content that determines the success or failure of an advertisement. Thus, the digital signage content is the backbone of the whole advertising campaign. Therefore, it is very important for any company to focus on this content.

Digital signage content should not only be fresh and informative but it should also be reader friendly. It should be short and catchy, so that readers get the message at a single glance. At the same time, they should be easy to understand and educative. One of the major responsibilities of a digital content is to create original content that satisfies the consumer's questions and at the same time arouse their interest and curiosity in the brand. The content should be relevant to the subject to increase the message effectiveness. Digital signage content is not just about money. Great content can also be created with little and minimum investment. One just needs to define his/her organizational goals and understand the consumer's requirement to make an effective and efficient advertisement.

Digital advertisement should also be very interesting and attractive. It should have the ability to hold the reader's attention for a sufficient amount of time. The placement of the words and the framing of the sentences are as important as the content itself. The digital advertising should make good use of colors, font, textures and space to make the content look absorbing, entertaining and eye-catching. This will in turn get more viewers and frequent visitors, thereby increasing the company's credibility and converting mere visitors to potential consumers.

A business can be successful only when it is able to streamline its message and optimize the corresponding digital signage content, while informing the consumer about the company and its services. Every organization wants the best but does not know where to wade for that information. It is because of this that today industries are paying huge amount of money to obtain the most suitable content for their digital signage to reach their potential client.

Content is a vital instrument for any digital marketing campaign. It helps in highlighting the company's objectives and conveys the business product or profile. Whether the aim of the advertisement is to educate people, increase sales, create brand image or for general awareness, they need to reach the target audience. This is possible only through good placement of an interesting content. A digital signage with crisp, tidy and to-the-point information will have more followers than others.

Resus provide a full digital signage solution for business. From digital signage content to installing networks. http://www.resusdigitalsignage.com

Article Source: http://EzineArticles.com/?expert=Tim_Warrington

Published in Article

3D Fabricated Signage

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3D Signs - An extremely popular choice, 3D Signage catch the eye by standing out, away from your building. Business logos or images that complement your business name can be cut to design and electrically wired for effect, if desired. Businesses in malls all across the world use channel letters to set their name apart from the rest.

Fabricated Aluminum Channel Letters can get your name up in lights with a style and individuality all your own. This versatile product allows almost any logo or corporate identity to be brought to life. Limitless lighting combinations, colors and configurations can be custom fit to your specifications.

Face-Lighted Channel Letters can incorporate many different plexiglass combinations to produce solid color, day/night color reversals, and exposed neon effects.

Back-Lighted Channel Letters an elegant use of channel letters. These metal face letters are lighted internally from behind producing halo’s of light which outline your logo and copy elements. Back-Light/ Face-Light Combos The best of both worlds! Light up your logo with this eye catching configuration. Enjoy the spectacular color effects of face-lighted letters and highlight these effects with a glowing halo of color.

Customized Logos Channel Letters aren’t just for text! We can convert logos and designs of all shapes and sizes into the channel letter format of your choice. Channel letters are used to provide signs for buildings, shopping malls, and the like where it is desirable that the signage comprise illuminated letters or any other shapes that are easily seen, even a great distance, even at night.

Each channel letter consists of an enclosure, usually a metal box, having a rear surface which is positioned against a raceway, the wall of the building or the like, on which the signage is mounted and a plurality of sides which define the figuration of the letter or shape. A light source, such as a neon tube or other light source is positioned within the walls of the enclosure and attached to the rear surface to provide illumination for the letter. For high profile sign applications, three dimensional illuminated or non illuminated channel letters are an ideal choice. Every set of channel letters is custom designed to compliment the building’s existing architecture. High-efficiency L.E.D. lighting, classic neon tubing, or fluorescent lighting for really large letters can be used each having its own benefits.

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