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致动器数量: 952 波前倾斜行程: 1.5um 致动器间距: 300um 学生人数: 9.9mm 表面质量: 30nm
Kilo-DM变形镜:一种高性能波前校正器,适用于天文学、激光通信和通过散射介质成像等高要求应用。Kilo-DM变形镜是一种用于精确、高速、高分辨率波前控制的元件。该系统采用952个致动器,控制精度低于1nm且无滞后现象,是要求苛刻的应用的理想选择。高速驱动电子设备能够实现60 kHz帧速率和14位步进分辨率。Kilo-DM较初是为美国国防部高级研究计划局(DARPA)的相干激光通信项目开发的,目前由欧洲南方天文台(European Southern Observatory)使用。汉密尔顿和各种国防机构。此外,它还被用于开发下一代地下成像技术。
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致动器数量: 952 波前倾斜行程: 3.5um 致动器间距: 400um 学生人数: 13.2mm 表面质量: 30nm
Kilo-DM变形镜是一种高性能波前校正器,可用于天文学、激光通信和散射介质成像等领域。Kilo-DM变形镜是一种用于精确、高速、高分辨率波前控制的元件。该系统采用952个致动器,控制精度低于1nm且无滞后现象,是要求苛刻的应用的理想选择。高速驱动电子设备能够实现60 kHz帧速率和14位步进分辨率。Kilo-DM变形镜较初是为美国国防部高级研究计划局(DARPA)的相干激光通信项目开发的,目前由欧洲南方天文台(European Southern Observatory)使用。汉密尔顿和各种国防机构。此外,它还被用于开发下一代地下成像技术。
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波前倾斜行程: 8um 致动器间距: 15um 学生人数: 100mm 反光涂层材料: Protected Silver
一家由美国导弹防御机构资助的公司正在开发下一代可变形反射镜系统,该公司希望成为该产品的供应商,因为它比目前可用的产品更精确、更通用、更强大、速度更快。一个原因是光学物理公司(OPC)的官员;Calabasas,CA)相信他们会成功,因为他们的镜子设计大大减少了暴露于高能激光辐射时产生的强热所导致的不必要的表面变形。因此,与现在使用的其他反射镜相比,该反射镜可以更精确地将高能激光引导到目标上,并且持续更长的时间。这种避免由热波纹引起的变形的能力引起了MDA的注意,该机构于2007年授予该公司一份价值100万美元的SBIR第二阶段合同。该机构认为该反射镜可用于军用高能激光计划。第二阶段的资金帮助OPC生产和测试直径为10厘米的镜子。该公司预计将获得额外的资金来建造一个30厘米的设备,并与洛克希德·马丁公司合作进行高能激光项目。
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探测器类型: Pyroelectric 光谱范围: 0.620 - 4.48 um 尺寸: 5.2mm
用于火焰检测的EZPyro系列薄膜数字热电传感器在行业标准TO-39封装中将高质量传感器与高水平的可配置电子集成相结合。高灵敏度与快速响应时间相结合,确保快速准确的火焰检测。高动态范围允许检测附近或更远距离的小火焰和大火焰。这些传感器集成了数字电流模式读数,在火焰闪烁的整个频率范围(3-30 Hz)内提供高响应度。可编程增益和滤波为系统设计提供了极大的灵活性。工业标准I2C通信支持与微控制器的即插即用连接,并允许轻松调整和校准。随着时间的推移,Pyreos传感器非常稳定,确保了较长的免维护运行寿命。可提供各种滤光器选项。这些传感器也可以采用菊花链连接,以便在器件之间实现同步采样,并提供各种低功耗模式。
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涂层: Multi-layer 入射角: 45 degree 波长范围: 121.6 - 14000 nm
我们的V涂层提供了一些业内较有效的抗激光特性。它们被设计为在一个或多个离散线上提供低反射,或者作为宽带和离散波长的组合。在我们的标准生产中,我们有许多单波段、双波段和多波段AR涂层。虽然这种简单的V型涂层可能看起来并不特别令人兴奋,但它在光学界引起了很大的兴趣。我们是首批经过测试和认证能够承受大于10GW/cm2的激光功率的公司之一。一些政府机构,如NRL和LLNL,一次又一次地使用我们的服务,表明其他涂层实验室未能满足他们的要求。特别令人感兴趣的是我们在低温下在光纤和其他精密温度敏感设备上沉积这种高LIDT的能力。
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分类:电光调制器(EOM)孔径: 50mm 峰值光功率密度: 700MW/cm^2 波长范围: 300 - 1100 nm 变速箱: 97% 消光比: >= 1000:1
DKDP普克尔盒DKDP电光Q开关(Q-Switch,Pockels Cell)因其独特的物理特性和优良的光学质量而被广泛应用于大口径、高功率、窄脉冲(1Ons)激光系统中,DKDP晶体是一种具有优良光学质量的单轴晶体,其消光比为2000:1(使用632 nm He-Ne激光器测量),波前畸变为98%。DKDP电光调Q电容小(约3-5pF),因此上升时间短(0.5ns),调Q时可输出窄脉宽的脉冲激光,与市场上广泛使用的电光晶体相比,具有更高的损伤阈值;在10ns脉宽、1064nm波长和10Hz重复频率的光学条件下,损伤阈值为1GW/cm2。优点-波前失真:低电容-上升时间短:~3pF-高透光率:98%-高损伤阈值:1GW/cm2-无静态双折射,无光折变损伤-抗反射涂层石英窗-耐环境温度冲击和优异的电光性能
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