Lumics, a manufacturer of pump lasers and laser chips from Berlin, Germany, recently introduced the uncooled low-cost pump laser module LU0915T050. This laser module uses fiber-coupled output with an output power of more than 5W and an operating wavelength of 915nm. The laser uses Lumics' next-generation laser chip with an electro-optical power conversion efficiency of more than 60%.


The laser diode component of Lumics' new generation of laser chips is available in an uncooled TO220 package with 100/125um multimode fiber output. The package size is only 22x11mm, including a 2.7mm screw hole, allowing users to easily mount the module to heat. Sink up.

The new package design can be used as a package platform for a range of high-power single-emitter laser diodes. The related wavelength products include 808nm, 915nm and 975nm laser modules, and the performance ratio of the device is excellent. The laser module can be operated with a standard heat sink element suitable for the market's popular TO220 package size, Air Cooled. The nominal life is 40,000 hours MTTF.

Target applications for the LU0915T050 include erbium-doped fiber lasers and fiber amplifiers. This new generation of high power pump laser modules will effectively reduce the system design cost of fiber lasers/amplifiers and improve system performance.

The assembly process of the entire module of LU0915T050 is completed on the basis of Lumics automatic fiber optic active alignment technology. The production process complies with the ISO9001 quality system specification. There are multiple scanning (display) step control, product batches in the whole chip manufacturing process and module assembly process. Sex has high reliability.

The LU0915T050 module has a nominal operating current of 5.5A and a maximum nominal forward voltage of only 2.1V. The output multimode fiber has a numerical aperture of 0.22 (NA) and a typical threshold current of 500 mA. The laser diode is isolated from the ground. Lumics' unique chip technology makes the LU0915T050 one of the high-performance lasers on the market. In addition, Lumics' breakthrough in laser end face passivation technology ensures long-term, high-reliability performance of laser modules.

Welding Rope

Tungsten carbide welding rope is a type of welding filler material that is used for hardfacing applications. It is made by combining tungsten carbide particles with a binding material, such as nickel or cobalt, to create a rope-like form.

Tungsten carbide is known for its exceptional hardness and wear resistance, making it ideal for applications where the welded surface needs to withstand extreme abrasion and impact. The welding rope is typically used in industries such as mining, oil and gas, construction, and agriculture.

When the tungsten carbide welding rope is heated during the welding process, the binding material melts and fuses the tungsten carbide particles to the base metal, creating a hard and durable surface. This helps to extend the lifespan of equipment and machinery by protecting it from wear and tear.

Tungsten carbide welding rope can be applied using various welding processes, including manual metal arc welding (MMA), gas tungsten arc welding (GTAW), and flux-cored arc welding (FCAW). The choice of welding process depends on the specific application and the equipment available.

Overall, tungsten carbide welding rope offers a cost-effective solution for protecting and repairing high-wear surfaces, making it a popular choice in industries where durability and longevity are essential.

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