
This singlemode dual window coupler offers low insertion loss and excellent environmental stability. It performs power splitting and monitoring functions in various optical communication systems.

This multimode fiber optic coupler is made with multimode fibers with core diameters of 50um, 62.5um, or 100um. The coupler is commonly used in short distance communications with LED sources operating at 1310nm or 850nm.

This micro-optics WDM utilizes thin film coating technology and a non-flux metal bonding micro optics packaging design. It provides low insertion loss, high channel isolation, low temperature sensitivity and an epoxy-free optical path.

This micro-optical WDM utilizes thin film coating technology and a non-flux metal bonding micro optics packaging design. It provides low insertion loss, high channel isolation, low temperature sensitivity and an epoxy-free optical path.

This micro-optical WDM utilizes thin film coating technology and a non-flux metal bonding micro optics packaging design. It provides low insertion loss, high channel isolation, low temperature sensitivity and an epoxy-free optical path.

This dense wavelength division multiplexer (DWDM) module achieves optical add and drop at ITU wavelengths using thin film coating technology. It provides low insertion loss, high channel isolation, and wide pass band for wavelength add/drop in telecommunication networks.

This 100GHz dense wavelength division multiplexer (DWDM) utilizes thin film coating technology and proprietary design for optical add and drop at the ITU wavelengths. It provides ITU channel center wavelength, low insertion loss, high channel isolation, wide pass band, and low temperature sensitivity.

This 40-channel AWG module is designed for use in DWDM systems within the C-band release. It is designed to decrease power dissipation in different environmental conditions, with operating temperature controlled by a foil resist heater or Peltier TEC with thermistor temperature sensor.

This CWDM Mux/Demux unit suits various applications and network solutions. The coarse wavelength division multiplexer utilizes thin film coating technology and a non-flux metal bonding micro optics packaging design.