掺铥石英光纤用于1.9 - 2.1um波段的光纤激光器或光纤放大器,其泵浦波长可选择793nm、1180nm及1550nm。通过光纤内部掺杂高浓度的铥,提供了更高效率避免光子暗化,同时交叉弛效应激发相邻离子发射更长波长的光,使斜率效率随着掺杂浓度增大而提高。 ...
掺镱双包层光纤其单模纤芯掺杂镱离子,外围包层为石英材料,涂覆层为低折射率保护层,由此形成的双包层光纤结构可用于光纤激光器与光纤放大器,工作波长范围涵盖1040至1200nm。本产品用于光纤激光器与放大器可获得高光束质量,高泵浦转换效率,易于实现小型化结构,极高的可靠性与免维护性。优化的设计与严格的生产制造工艺保证光纤可...
掺镱双包层光纤其单模纤芯掺杂镱离子,外围包层为石英材料,涂覆层为低折射率保护层,由此形成的双包层光纤结构可用于光纤激光器与光纤放大器,工作波长范围涵盖1040至1200nm。本产品用于光纤激光器与放大器可获得高光束质量,高泵浦转换效率,易于实现小型化结构,极高的可靠性与免维护性。优化的设计与严格的生产制造工艺保证光纤可...
-OLA-54 SMTQ光功率衰减器设计用于多模光纤系统(50/125 μm光纤)。-OLA-55 SMTQ光功率衰减器是一台能够满足未来发展需求的仪表,用于系统测试、安装、维护以及单模光纤的生产。由于它具有最小的差分群时延(DGD),OLA-55也适用于40 Gbps传输系统。-OLA-55M 是 Smtq 系列中最新的一员。用于系统测试、安装、维...
深圳中剑光电通信有限公司生产基地位于深圳光明新区,主要产品有光纤连接器、PLC光分路器等无源光器件产品订购联系 18588451913...
澳威激光在线型光隔离器采用法拉第旋转器和楔角块微型光学结构封装,偏振模色散好,封装可靠性低。我们可以提供不同种类的光纤隔离器,有单级的和双级的,这些隔离器的前向和后向集合泵浦/波分复用以及锥形耦合监控等以满足不同应用。我司隔离器有很好的性能,低的插损,高隔离度,高回损,低的偏振相关损耗,低的偏振膜色散。产品满...
OLArizing components because of its wide transparency range and large birefringence. Photonchina YVO4 has an excellent synthetic substitute for Calcite (CaCO3) and Rutile (TiO2) crystals in many applications including fiber optic isOLAtors and circulators, beam displacers, Glan pOLArizers and other pOLAri...
OLArized parallel and perpendicular to the axis. In such a device, light pOLArized parallel to the axis will propagate slower than light pOLArized perpendicular to the axis. As the light propagates through the optic, the phase shift between the two components with various thickness. The phase shift is cal...
OLAtor, switch, collimator array and laser Assembly. Compared to other gradient index lens, C-lens produced by Photonchina has many advantages including low cost, low insertion loss in long working distance, wide working distance range. With the help of experienced optical engineers, Photonchina also prov...
产品特点Glan laser prisms is a glan taylor pOLArizer that is specially designed for high energy application. The side of housing is drilled two holes. The ordinary ray is reflected through an angle and exits the pOLArizer through one of holes. • 高偏振度 • 宽波...