Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器
Ekspla NL220型 高能量千赫兹纳秒激光器

¥30万 - 50万

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NL220

--

欧洲

  • 金牌
  • 第17年
  • 一般经销商
  • 营业执照已审核
核心参数

NL220

 

High Energy kHz Pulsed Q-switched DPSS Nd:YAG Lasers

NL220 series nanosecond Q-switched DPSS Nd:YAG lasers

 /  High Energy kHz Pulsed Q-switched DPSS Nd:YAG Lasers

 /  Up to 30 mj at 1064 nm

 /  Up to 1 kHz repetition rate

 /  Close to TEM00 beam profile

 

仪器简介:

Diode pumped nanosecond lasers of NL220 series provide up to 10 mJ per pulse at 1 kHz repetition rate. Short pulse duration, TEM00 beam, high energy and variable repetition rate make these lasers suitable

  • 采用立陶宛Ekspla公司生产的纳秒短脉冲半导体泵浦的固体激光器-NL220.波长532nm.脉冲宽度35纳秒,重复频率500Hz.处理ITO玻璃上3-30nm厚的镀金薄膜。生成纳米颗粒,具有独特的电化学特性,可以用来制作电化学传感器。

    电子/电气 2019-01-23

  • Time Resolved Particle Image Velocimetry and Infrared Thermography are used to investigate the behaviour of a round jet impinging on a flat plate for a Reynolds number 28 000, for orificeto- plate distances of 3 or 5 nozzle diameters and for two different nozzles, a contraction and a long tube. The contraction nozzle reveals a different heat transfer distribution on the impinging plate compared to the long tube case, more often used in the literature. The jet is excited by a loudspeaker at Strouhal numbers 0:26, 0:51 and 0:80. This acoustic forcing changes the jet velocity structure, modifying annular vortex rings in the shear layer of the jet and increasing the turbulent values in the whole domain of the jet, including the potential core. The heat transfer is therefore modified, resulting in an increase of the Nusselt number near the jet axis and an alleviation or a shift of the secondary peak.

    其他 2011-02-26

  • 采用立陶宛Ekspla公司生产的纳秒短脉冲半导体泵浦的固体激光器-NL220.波长532nm.脉冲宽度35纳秒,重复频率500Hz.处理ITO玻璃上3-30nm厚的镀金薄膜。生成纳米颗粒,具有独特的电化学特性,可以用来制作电化学传感器。

    电子/电气 2019-01-23

  • Time Resolved Particle Image Velocimetry and Infrared Thermography are used to investigate the behaviour of a round jet impinging on a flat plate for a Reynolds number 28 000, for orificeto- plate distances of 3 or 5 nozzle diameters and for two different nozzles, a contraction and a long tube. The contraction nozzle reveals a different heat transfer distribution on the impinging plate compared to the long tube case, more often used in the literature. The jet is excited by a loudspeaker at Strouhal numbers 0:26, 0:51 and 0:80. This acoustic forcing changes the jet velocity structure, modifying annular vortex rings in the shear layer of the jet and increasing the turbulent values in the whole domain of the jet, including the potential core. The heat transfer is therefore modified, resulting in an increase of the Nusselt number near the jet axis and an alleviation or a shift of the secondary peak.

    其他 2011-02-26

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