TY - JOUR TI - Multi-Rate and Multi-Channel Optical Equalizer Based on Photonic Integration AU - Kouloumentas, Christos AU - Tsokos, Christos AU - Groumas, Panos and AU - Gounaridis, Lefteris AU - Raptakis, Adam AU - Mylonas, Elias and AU - Andrianopoulos, Efstathios AU - Worhoff, Kerstin AU - Lawniczuk, Katarzyna AU - and Leinse, Arne AU - Avramopoulos, Hercules JO - IEEE Photonics Technology Letters PY - 2020 VL - 32 TODO - 23 SP - 1465-1468 PB - IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC SN - 1041-1135 TODO - 10.1109/LPT.2020.3035506 TODO - Optical equalizer; optical FIR filter; micro-ring resonators; optical interconnects; PIC technology; silicon nitride TODO - We propose and experimentally demonstrate a photonic integrated circuit (PIC) that operates as an optical equalizer (OE) with multi-rate and multi-channel capability. The OE has the structure of a 3-tap direct form finite impulse response (FIR) filter and is based on the use of micro-ring resonators (MRRs) for the tuning of its delay lines. The PIC is fabricated on TriPleX platform and has 17 reconfigurable elements in total including nine MRRs, five optical couplers and three standalone phase shifters. Using this OE in an on-off keying system with bandwidth limitations we achieve an eye-diagram opening improvement more than 14 dB working with signals at 4.67 and 5.84 Gbaud both in single- and dual-channel operation. Extension to higher modulation formats is direct. Extension to higher symbol rates is also possible via the use of smaller MRRs. ER -