Tiếng Việt

150 kW Ultra High Power Laser Sensor Released

1148
2024-12-27 14:30:51
Xem bản dịch

Recently, MKS announced the launch of a brand new Ophir ® A 150 kW ultra-high power laser sensor designed specifically for measuring ultra-high power levels up to 150 kW. This sensor has excellent accuracy and reliability, suitable for industrial and defense fields.

This water-cooled calorimeter has a working wavelength range of 900-1100 nm and can measure power from 10 kW to 150 kW. Its extremely low reflectivity (<0.5%) ensures operational safety. The 150 kW sensor integrates a beam collector and measurement unit, designed to meet the growing demand for higher power in applications. Applications such as the development and testing of high-power fiber lasers, directional energy systems, and cutting and drilling in industrial production.

Ophir Photonics General Manager Reuven Silverman said, "Directed energy and industrial applications such as cutting are driving demand for higher power lasers, but so far there is no reliable solution for situations where power exceeds 120 kW. The Ophir 150 kW ultra-high power laser sensor takes high-power measurement to a new level. It provides accurate and reliable results for the research and production teams of high-power laser manufacturers and directed energy weapon developers. Whether integrated into third-party systems or used with easy-to-use Ophir software, this sensor is a powerful tool for ultra-high power laser measurements, providing reliability and operational efficiency.

The Ophir 150 kW ultra-high power sensor consists of two components: a beam collector for processing high-power laser absorption and heat dissipation, and a unit for measuring power levels. The measurement unit is equipped with an RS232 interface and an "intelligent connector" interface, which can be used in conjunction with MKS's Centauri, StarBright, StarLite, and other Ophir smart displays; Juno and Juno+compact USB PC interface; Juno RS, Pulsar, and Quasar virtual power and energy meters; And EA-1 Ethernet adapter.

The design of the 150 kW ultra-high power sensor fully considers flexibility. Cooling options include using tap water or deionized (DI) water. With a 200mm aperture, it is lightweight and measures 520x545x750mm in size. When not containing water, it weighs less than 60 kg.

Source: Yangtze River Delta Laser Alliance

Đề xuất liên quan
  • Researchers successfully 3D printed polymer based robotic arms through laser scanning

    Researchers from the Federal Institute of Technology in Zurich and an American startup used slow curing plastic to develop durable and sturdy robots using high-quality materials.The team can now print these complex robots at once and combine soft, elastic, and rigid materials together. This allows for the creation of precision structures and parts with cavities as needed.Inkbit, a derivative compa...

    2023-11-16
    Xem bản dịch
  • First 6-inch thin film lithium niobate photonic chip wafer pilot production line

    Recently, Shanghai Jiao Tong University Wuxi Photon Chip Research Institute (CHIPX) located in Binhu District, Wuxi City, has achieved a breakthrough - the first 6-inch thin film lithium niobate photon chip wafer has been produced on China's first photon chip pilot line, and high-performance thin film lithium niobate modulator chips with ultra-low loss and ultra-high bandwidth have been mass-produ...

    06-11
    Xem bản dịch
  • Safran Group believes that additive manufacturing is playing an increasingly important role in engines

    Safran Group showcased a 3-foot diameter turbine aft casing manufactured using additive manufacturing technology under the RISE technology program at the Paris Air Show in recent years. This component is Safran's largest additive manufacturing component to date, indicating the increasingly widespread application of additive manufacturing in the design and manufacturing of turbofan engines. In ea...

    06-18
    Xem bản dịch
  • Smaller laser facilities use new methods to break records before proton acceleration

    The Helmholtz Dresden Rosendorf Center (HZDR) has made significant progress in laser plasma acceleration. By adopting innovative methods, the research team successfully surpassed previous proton acceleration records significantly.They obtained energy for the first time that can only be achieved in larger facilities so far. As reported by the research team in the journal Nature Physics, promising a...

    2024-05-15
    Xem bản dịch
  • New technology can efficiently heal cracks in nickel based high-temperature alloys manufactured by laser additive manufacturing

    Recently, Professor Zhu Qiang's team from the Department of Mechanical and Energy Engineering at Southern University of Science and Technology published their latest research findings in the Journal of Materials Science. The research team has proposed a new process for liquid induced healing (LIH) laser additive manufacturing of cracks. By controlling micro remelting at grain boundaries to introdu...

    2024-03-15
    Xem bản dịch