Title :
A 10-Gb/s 16:1 multiplexer and 10-GHz clock synthesizer in 0.25-μm SiGe BiCMOS
Author :
Cong, Hong-Ih ; Logan, Shawn M. ; Loinaz, Marc J. ; O´Brien, Kenneth J. ; Perry, Elizabeth E. ; Polhemus, Gary D. ; Scoggins, John E. ; Snowdon, Kenneth P. ; Ward, Michael G.
Author_Institution :
Agere Syst., Murray Hill, NJ, USA
fDate :
12/1/2001 12:00:00 AM
Abstract :
A 10-Gb/s 16:1 multiplexer, 10-GHz clock generator phase-locked loop (PLL), and 6 × 16 b input data buffer are integrated in a 0.25-μm SiGe BiCMOS technology. The chip multiplexes 16 parallel input data streams each at 622 Mb/s into a 9.953-Gb/s serial output stream. The device also produces a 9.953-GHz output clock from a 622- or 155-MHz reference frequency. The on-board 10-GHz voltage-controlled oscillator (VCO) has a 10% tuning range allowing the chip to accommodate both the SONET/SDH data rate of 9.953 Gb/s and a forward error correction coding rate of 10.664 Gb/s. The 6 × 16 b input data buffer accommodates ±2.4 ns of parallel input data phase drift at 622 Mb/s. A delay-locked loop (DLL) in the input data buffer allows the support of multiple input clocking modes. Using a clock generator PLL bandwidth of 6 MHz, the 9.953-GHz output clock exhibits a generated jitter of less than 0.05 UIP-P over a 50-kHz to 80-MHz bandwidth and jitter peaking of less than 0.05 dB
Keywords :
BiCMOS digital integrated circuits; Ge-Si alloys; SONET; buffer circuits; circuit tuning; clocks; delay lock loops; error correction codes; forward error correction; jitter; multiplexing equipment; phase locked loops; semiconductor materials; synchronous digital hierarchy; voltage-controlled oscillators; 0.25 micron; 10 GHz; 10 Gbit/s; SONET/SDH; SiGe; SiGe BiCMOS IC; clock generator; data buffer; delay locked loop; forward error correction coding; jitter; multiplexer; phase locked loop; tuning range; voltage controlled oscillator; Bandwidth; Clocks; Computer buffers; Germanium silicon alloys; Jitter; Multiplexing; Phase locked loops; Silicon germanium; Synthesizers; Voltage-controlled oscillators;
Journal_Title :
Solid-State Circuits, IEEE Journal of