The ADS5400 is the industry's first 12-bit, 1-GSPS
analog-to-digital-converter (ADC) with buffered input to help simplify analog
front-end design in wide-bandwidth applications such as wireless
communications, defense, and test and measurement equipment. The ADC's 12 bits
of resolution combined with a 1-GSPS sampling rate effectively doubles the
amount of signal bandwidth that can be captured in a single 12-bit ADC. The
ADS5400 offers the highest SNR (59.1 dBFS), SFDR (75 dBc) and SINAD (58 dBFS)
available for systems digitizing greater than 200MHz of instantaneous
bandwidth, while the user-selectable single- or dual-bus DDR LVDS outputs
provide designers flexibility to choose between I/O speed and pin-count.
Customer's can use the ADS5400's ground-breaking combination of resolution,
sample rate and bandwidth to significantly enhance applications in defense by
improving radar and signal intelligence (SIGINT) capabilities, and can double
the capture bandwidth of signals with 12-bit resolution in test and
measurement. In effect, customers can use the ADS5400 to create higher
performance solutions for critical applications that were unachievable with
previous A/D technology.
One way to keep a Formula One racing team moving at breakneck speed in the pit and at the test facility is to bring CAD drawings of the racing vehicleís parts down to the test facility and even out to the track.
Most of us would just as soon step on a cockroach rather than study it, but thatís just what researchers at UC Berkeley did in the pursuit of building small, nimble robots suitable for disaster-recovery and search-and-rescue missions.
Design engineers need to prepare for a future in which their electronic products will use not just one or two, but possibly many user interfaces that involve touch, vision, gestures, and even eye movements.
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