with Class 1 FDA and IEC60825-1 laser safety, SFP MSA, SFF-8472Applications· WDM-PON· Mobile fronthaul and backhaul· DWDM sparingThe tunable small form-factor pluggable (SFP) transceiver is based on Lightip’s patented proprietary technology, the half-wave coupled V-cavity las...
光纤移相器(调制器),一款电压驱动的光纤相位调制器。基于单根连续光纤拉伸器构造,使得其具有极低的插入损耗与偏振相关损耗(PDL)。特殊设计的机电驱装置,使残余偏振调制与强度调制极低。依据所选用光纤类型不同,工作波长范围可根据使用要求调整。光纤连续无断点使其可以承受较高的光功率。本产品设计应用于精密光纤相位调谐、...
气体检测激光器模块是专为气体吸收检测定制的可调谐激光器光源。内置的激光器组件集成了温度调谐功能,具有输出光功率高、窄线宽、波长精度高等特点。波长调节范围可在所需波长+1nm范围,最小步进量达到50pm,可满足客户初步确定气体吸收峰范围。而内置的波长校准功能,满足精确锁定气体吸收主峰的优点,调节精度可达1pm,调节范围达1...
光纤移相器(调制器),一款电压驱动的光纤相位调制器。基于单根连续光纤拉伸器构造,使得其具有极低的插入损耗与偏振相关损耗(PDL)。特殊设计的机电驱装置,使残余偏振调制与强度调制极低。依据所选用光纤类型不同,工作波长范围可根据使用要求调整。光纤连续无断点使其可以承受较高的光功率。本产品设计应用于精密光纤相位调谐、...
OPEAK提供直波导强度调制器采用钛扩散或退火质子交换工艺生产,在马赫-曾德尔干涉仪的两个干涉臂之间产生不同的推-拉相位变化,除了强度调制,这也将导致输出信号产生相位/频率变化,产品具有高速强度调制器及相位调制,具有双偏振或单偏振光学波导,具有低损耗、低背向反射和宽工作波长等特点。严谨的结构设计、成熟的制作工艺和严格...
with Iso)H:5.07.0mW(with Iso)J:8.010mW(with Iso)K:1113mW(with Iso)M:1416mW(with Iso)N:1719mW(with Iso)P :2022mW(带 Iso)Q:2325mW(带 Iso)R:2628mW(带 Iso)顶部1:0~702:-20~703:-40~85与 TECA:0~70B:-20~70C:-40~85光连接器1:SC/PC2:SC/APC3:FC/PC4:FC/APC5:ST/PC6:ST/APC7:LC/PC8:LC/APC添加信息...
半导体激光器波长稳定光纤光栅依靠光纤光栅极窄的工作带宽来输出波长极其稳定的激光,工作带宽最小可到0.5nm,常见的波长类型有980nm和1480nm,在光纤放大器与光纤激光器中有广泛的应用。FeaturesStandardized product Made with lensed fiber to reduce the cost and increase the turn around time Quick delivery Volume capabilit...
OPEAK公司根据光纤光栅原理设计生产出增益平坦滤波器,可用于宽带光源以及多波长光纤放大系统中。工作带宽大于40nm,常见波段为C、L波段。低差损、低偏振相关损耗,可提供其他波长的定制与加工。FeaturesStandardized product Made with lensed fiber to reduce the cost and increase the turn around time Quick delivery Volume ca...
with low scatter and absorption. Standard size laser grade right angle prisms, with good surface finish, flatness as high as l/10 and high accuracy are available in Photonchina.with the rich experience in producing these prisms and high precision equipment both in making and inspection, Photonchina has bee...
with another wedge prism for beam steering, with uncoated or coated. In this case, rotating one wedge in relation to the other will change the direction of the beam. The angle of the refracted beam becomes greater when the wedges angle in the same direction. When the wedges are rotated to angle in opposit...