Title :
A 3.3/2.5 V-Supply 2400 mV-Swing Single-Ended SiGe BiCMOS Driver With Programmable Preemphasis for 3 Gb/s Data Transmission Over 75
Coaxial Cable
Author :
Davies, Peter A.
Author_Institution :
Semtech Corp., Burlington, ON, Canada
Abstract :
This paper presents a quad single-ended cable driver delivering 2400 mV swing on each channel when double-terminated with 75 Ω loads from a 3.3 V termination supply. Fabricated in 0.18 μm SiGe BiCMOS it implements a switched current source to replace the conventional current steering emitter-coupled pair, with output swing controlled via replica biasing in place of a current mirror. All outputs meet industry-standard specifications for SD (270 Mb/s), HD (1.485 Gb/s), and 3G (2.97 Gb/s) data rates across the industrial temperature range, and the device is rated to withstand 4 kV human body model electrostatic discharge. The high swing can be applied directly to compensate for broadband implementation losses or configured to provide up to 9 dB of programmable preemphasis, extending the specified compliance point to the far end of 2 5 m (3G rate) or 40 m (HD rate) of Belden 1694A coaxial cable.
Keywords :
BiCMOS integrated circuits; Ge-Si alloys; coaxial cables; current mirrors; data communication; driver circuits; programmable circuits; SiGe; bit rate 1.485 Gbit/s; bit rate 2.97 Gbit/s; bit rate 270 Mbit/s; bit rate 3 Gbit/s; conventional current steering emitter-coupled pair; current mirror; data transmission; industrial temperature range; industry-standard specifications; programmable preemphasis; quad single-ended cable driver; replica biasing; resistance 75 ohm; single-ended BiCMOS driver; size 0.18 mum; switched current source; termination supply; voltage 2.5 V; voltage 2400 mV; voltage 3.3 V; voltage 4 kV; BiCMOS integrated circuits; Coaxial cables; Power cables; Silicon germanium; Standards; Switches; Transistors; BiCMOS integrated circuit; Society of Motion Picture and Television Engineers (SMPTE); cable driver; high-swing; low-power; low-voltage; preemphasis; serial digital interface (SDI); single-ended;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2013.2260096