Download DS15EA101 Datasheet PDF
National Semiconductor
DS15EA101
DS15EA101 is Adaptive Cable Equalizer manufactured by National Semiconductor.
Description The DS15EA101 is an adaptive equalizer optimized for equalizing data transmitted over copper cables. The DS15EA101 operates over a wide range of data rates from 150 Mbps to 1.5 Gbps and automatically adapts to equalize any cable length from zero meters to lengths that attenuate the signal by 35 d B at 750 MHz. The DS15EA101 allows either single-ended or differential input drive. This enables equalization of coaxial cables as well as differential twin-ax and twisted pair cables. Additional features include an LOS output and an output enable which, when tied together, disable the output when no signal is present. The DS15EA101 is powered from a single 3.3V supply and consumes 210 m W at 1.5 Gbps. It is available in a space saving 4 x 4 mm LLP-16 package which allows for high density placement of ponents in multi-channel applications. Features - Automatic equalization of coaxial, twin-ax, and twisted pair - - - - - - - cables High data rates: 150 Mbps to 1.5 Gbps Up to 35 d B of boost at 750 MHz LOS detection and output enable Single-ended or differential input 50 Ω differential outputs Single 3.3V supply operation Low power operation, 210 m W (typ) at 1.5 Gbps Applications - - - - Cable extention applications Security cameras Remote LCDs and LED pannels Data recovery equalization Typical Application © 2006 National Semiconductor Corporation .national. Absolute Maximum Ratings (Note 1) Supply Voltage Input Voltage (all inputs) Storage Temperature Range Junction Temperature Lead Temperature (Soldering 4 Sec) Package Thermal Resistance  θJASQA16A  θJC SQA16A ESD Rating (HBM) ESD Rating (MM) - 0.5V to 3.6V - 0.3V to VCC+0.3V - 65°C to +150°C +150°C +260°C +42.1°C/W +8.2°C/W 8 k V 250V Remended Operating Conditions Supply Voltage (VCC ) Input Coupling Capacitance Loop Capacitor (Connected between CAP+ and CAP-) Operating Free Air Temperature (TA) 3.3V ±5% 1.0 µF 1.0 µF 0°C to +85°C DC Electrical Characteristics Over Supply Voltage...