
( Brand: English Electric Valve ), ( Part Type: Linear Pump Laser Rod ), ( Country/region Of Manufacture: United Kingdom )
Experience unparalleled energy delivery with our High-Performance Pulsed Linear Flashlamp Pumped Ruby Laser Rods (Model XL). These premium laser rods are meticulously crafted for high-energy applications, delivering intense pulses of coherent light in the 615 nm English wavelength.
The heart of our laser rods is the high-quality ruby laser gain medium, carefully doped with chromium for optimal energy absorption and emission. This results in a highly efficient laser resonator, capable of producing powerful output pulses, making it ideal for a wide range of industrial, scientific, and medical applications.
Our Model XL features an advanced electric valve system, ensuring precise control over the flow of energy into the laser rod. This allows for fine-tuning of the laser output, ensuring consistent performance and longevity. The valve system is robust and reliable, designed to withstand the demanding conditions of high-power laser operation.
The linear flashlamp design offers several advantages over traditional circular lamps. The longer, thinner design facilitates more efficient energy transfer to the ruby rod, reducing thermal stress and enhancing the overall lifespan of the laser. The linear design also allows for easier alignment and better beam quality, resulting in a highly focused and intense output.
Our Ruby Laser Rods (Model XL) are the perfect choice for those seeking a high-energy, reliable, and versatile laser source. Whether you're in the field of material processing, spectroscopy, or medical therapy, our Model XL is ready to deliver the power and precision you require. Experience the difference with our High-Performance Pulsed Linear Flashlamp Pumped Ruby Laser Rods (Model XL).
High-energy pulsed linear flashlamp pump glass ruby laser rods (615 English electric valve XL) are commonly used in various industrial and scientific applications, such as cutting, engraving, and laser marking. Here are some pros and cons of purchasing these laser rods:
Pros:1. High Energy Output: These rods are designed to produce high-energy pulses, which can result in increased efficiency and power in laser applications.
2. Long Lifespan: Ruby laser rods, when properly maintained, can have a relatively long lifespan compared to other types of lasers.
3. Stability: Ruby lasers are known for their stability, making them suitable for precision work.
4. Wide Range of Applications: Ruby lasers can be used in a variety of industries, including medical, industrial, and military.
Cons:1. High Cost: High-energy pulsed linear flashlamp pump glass ruby laser rods can be quite expensive, which may limit their accessibility for some users.
2. Requires Specific Conditions: Ruby lasers require specific conditions, such as a stable power supply and a cooling system, to operate effectively.
3. Maintenance: Regular maintenance is required to ensure the longevity of the laser rod and the overall system.
4. Potential Safety Risks: Like all lasers, ruby lasers can pose safety risks if not handled or used correctly, including eye damage and fire hazards.
Conclusion:While high-energy pulsed linear flashlamp pump glass ruby laser rods offer several advantages, such as high energy output, long lifespan, stability, and a wide range of applications, they also come with higher costs, specific operational requirements, maintenance needs, and potential safety risks.
If you are in an industry where the benefits of high-energy pulsed linear flashlamp pump glass ruby laser rods outweigh the drawbacks, and you have the necessary resources to manage the operational requirements and safety measures, then purchasing these laser rods could be a worthwhile investment. However, if you are unsure about the specific needs of your application, it may be beneficial to consult with a laser specialist or conduct further research to determine the best fit for your needs.
Although the technology of seals between electrodes and fused silica envelope is different at Eve from verier ET quartz, operating characteristics can be considered similar, least as a first approximation. X 101mm length , ideally should match the laser rod size. This particular tube shows 2-3 small shadows, barely visible.
Typical trigger voltage : 17 JV - 22. Safe operating energy for critically damped TLC circuit, 1,000 us microsecond pulse duration, and min. New, in its original plastic bag, opened picture discharge dimensions: 9mm DOA. Good for rods of 8mm - 12 DOA.
10,000 pulses lifetime: Max j. Typical explosion energy for critically damped TLC circuit, 1,000 us pulse duration, and few pulses lifetime: ex 2,500 j. And 90mm length . The closest such lamp for comparison is VAX total length with electrodes: 170mm picture of pulses ceca.
The linear design assures best pump efficiency in an elliptical pumping chamber, ideal for a large laser rod oscillator or amplifier. The electrodes are polarized, anode is shiny one, marked in red picture 2, cathode grey with a granulated-surface appearance max. The whole lot of these new, unused flashlamp made in 70', shows here and there, on quartz tube, some small shadows or darken dots, perhaps as a result not perfect quality tube which was used during manufacturing process lamps. Vintage early years 70', pulsed xenon - filled, high energy, low repetition frequency, linear flashlamp to pump nd:glass or ruby laser rods, type xl made by English Electric Valve Eve, now e2v technologies UK.
Power in water: 1,500 w. Power in open air: 200 w max. Outer diameter: 11mm. They might have very little effect on lamps output performances.
Typical operating regime: capacitor c 1,000 uf micro farad coil inductance l uh nominal storage dc voltage in v0 1,200 v stored energy e0 j pulse duration t1 3 us expected lifetime no. 40, the following charging discharge circuit data are for a similar size flashcube made by verier ET quartz, France, due to unavailability of Eve flashlamp catalog that time see flashlamp-VW. Operating dc voltage v0 v - 1,900.