High quality large-area InGaAs PIN photodiode chip with aperture of 300um, low capacitance and low dark current, high responsivity at 1310nm and 1550nm.
The Lasermate PDA-A13A3-5G is an analog InGaAs photodetector with a semiconductor optimized for bandwidth from DC to 5GHz. It is perfect for high-speed applications and multi-channel CATV systems, offering reliable performance and precision.
The PDC-85B10G is a high-speed GaAs PIN photodiode chip with a 10Gbps data rate, providing reliable and efficient optical signal reception for high-performance fiber optic data communication applications.
The PDC-85A4G is a high-speed GaAs PIN photodiode chip designed for 4.25Gbps data transmission. Perfect for fiber optic data communication, it provides efficient and reliable optical signal reception for advanced communication systems.
The PDA4-85A25G is a 1x4 GaAs PIN photodiode chip array, capable of 25Gb/s high-speed optical data transmission. Ideal for advanced telecom and data communication applications, it provides superior performance and reliability for multi-channel systems.
High quality analog photodetectors designed for analog optical links with bandwidth up to 3GHz, CATV receiver applications. Optically aligned to optimize performance and balance the parameters of responsivity, distortion, and back reflection.
Fiber-coupled, low dark current, low capacitance, 1100-1630nm, InGaAs PIN photodiode receiver module pigtailed with fiber end either open or equipped with FC/ST/SC optical connector. Capable of reaching up to 1.25Gbps data rate operation.
High sensitivity and high speed, 1100-1630nm, InGaAs PIN photodiode receiver module integrated with transimpedance amplifier (TIA), reaching up to 622Mbps data rate operation. Available in fiber coaxial pigtailed package, with fiber end either open or equipped with FC/ST/SC optical connector.
The PDC-85A2G is a high-performance GaAs PIN photodiode chip designed for 2.5Gbps data transmission. Ideal for fiber optic data communication, it ensures reliable and efficient optical signal reception.