ASNT5105A-KMC


ASNT5105A-KMC View full size
  • Broadband (DC-50Gbps/32GHz) tunable clock phase shifter
  • Delay adjustment range of 110ps
  • On-chip automatic common mode offset compensation circuitry
  • Manual peaking adjustment for jitter minimization
  • Limited temperature variation over industrial temperature range
  • 1GHz of bandwidth for the phase adjustment tuning port
  • Fully differential CML input interface
  • Fully differential CML output interface with 450mV single-ended swing
  • Single +3.3V or -3.3V power supply
  • Power consumption: 1.25W
  • Fabricated in SiGe for high performance, yield, and reliability
  • Custom CQFP 24-pin package

Function Operating Frequency Power, mW Package
Clock / Data Phase Shifter with External Frequency Response Control and 110ps Delay Variation DC-50Gbps / DC-32 GHz 1250 24-pin CQFP

DESCRIPTION

Fig. 1 Functional Block Diagram

ASNT5105A-KMC is a data/clock variable delay line fabricated in SiGe technology. Due to extremely low jitter, the part is suitable for use in high-speed measurement / test equipment. The part provides an adjustable delay of its differential output signal outp/outn in relation to its broadband input signal inp/inn. The delay is controlled through a wide-band differential tuning port icntp/icntn. The chip incorporates an automatic common-mode offset cancellation circuit that operates with either clock signals or data signals with balanced patterns. In case of non-balanced data patterns, the circuit should be disabled through control port fbcrl. The single-ended control port efcrl can be used to manipulate internal peaking in the delay block in order to adjust the part’s frequency response and thus improve output eye diagrams for various data rates and operating conditions.

 

The part’s I/Os support the CML logic interface with on chip 50Ω termination to vcc and may be used differentially, AC/DC coupled, single-ended, or in any combination. In the DC-coupling mode, the input signal's common mode voltage should comply with the specifications shown in the electrical characteristics section within the part's datasheet. In the AC-coupling mode, the input termination provides the required common mode voltage automatically. The differential DC signaling mode is recommended for optimal performance.

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