DocumentCode
1523180
Title
A 10-Gb/s laser/modulator driver IC with a dual-mode actively matched output buffer
Author
Ransijn, Hans ; Salvador, Gregory ; Daugherty, Dwight D. ; Gaynor, Kenneth D., III
Author_Institution
Agere Syst., Reading, PA, USA
Volume
36
Issue
9
fYear
2001
fDate
9/1/2001 12:00:00 AM
Firstpage
1314
Lastpage
1320
Abstract
A laser/modulator driver IC for 10-Gb/s-SONET OC-192-fiber optic transmitters is described. Depending on the user application, the IC is capable of driving more than 100 mA of current into a laser diode or over 50 mA into an electro-absorption or Mach-Zehnder modulator. Rise and fall times below 20 pS are achieved. The driver employs a novel dual-mode actively matched output buffer that provides a dc-coupled back termination of either 25 or 50 Ω. Compared to an output buffer with a resistive termination, this buffer dissipates only half as much power. In addition, the buffer has the the ability to reject external bias and will therefore not load bias sources used to set laser threshold currents and modulator offset voltages. The low power consumption makes the IC most suitable for co-packaging with uncooled lasers and electro-absorption modulators. The driver is fabricated in a 0.25-μm gate length production GaAs PHEMT process with substrate thru vias, thin-film resistors, and MIM capacitors
Keywords
HEMT integrated circuits; III-V semiconductors; Mach-Zehnder interferometers; SONET; buffer circuits; driver circuits; electro-optical modulation; gallium arsenide; optical fibre communication; optical transmitters; 0.25 micron; 10 Gbit/s; 25 ohm; 50 ohm; GaAs; MIM capacitors; Mach-Zehnder modulator; PHEMT process; SONET OC-192; co-packaging; dc-coupled back termination; dual-mode actively matched output buffer; electro-absorption modulator; external bias; fiber optic transmitters; laser driver IC; modulator driver IC; output buffer; power consumption; substrate thru vias; thin-film resistors; Application specific integrated circuits; Diode lasers; Impedance matching; Optical buffering; Optical modulation; Optical transmitters; Photonic integrated circuits; Termination of employment; Threshold current; Threshold voltage;
fLanguage
English
Journal_Title
Solid-State Circuits, IEEE Journal of
Publisher
ieee
ISSN
0018-9200
Type
jour
DOI
10.1109/4.944657
Filename
944657
Link To Document