Si5397
Si5397 is Jitter Attenuators manufactured by Skyworks Solutions.
Si5397/96 Data Sheet
Dual/Quad DSPLL™ Any-Frequency, Any-Output Jitter Attenuators
The Si5397 is a high-performance, 8-output jitter-attenuating clock multiplier which integrates four any-frequency DSPLLs for applications that require maximum integration and independent timing paths. The Si5396 is a dual DSPLL version with either 4 outputs or 12 outputs. Each DSPLL has access to any of the four inputs and can provide low jitter clocks on any of the device outputs. Device grades J/K/L/M have an integrated reference to save board space, improve system reliability and reduces the effect of acoustic emissions noise caused by temperature ramps. Grades A/B/C/D use an external crystal (XTAL) or crystal oscillator (XO) reference.
Based on 4th generation DSPLL technology, these devices provide any-frequency conversion with typical jitter performance of 95 fs. Each DSPLL supports independent free-run, holdover modes of operation, as well as automatic and hitless input clock switching. The Si5397/96 is programmable via a serial interface with in-circuit programmable non-volatile memory so that it always powers up in a known configuration. Programming the Si5397/96 is easy with Skyworks' Clock Builder Pro software. Factory pre-programmed devices are also available.
Applications
- OTN Muxponders and Transponders
- 10/40/100/400Gb E
- Synchronous Ethernet (ITU-T G.8262)
- 10/25/100G Carrier Ethernet switches
- Broadcast video
KEY Features
- Each DSPLL generates any output frequency from any input frequency
- Four or two DSPLLs to synchronize to multiple time domains
- Ultra-low phase jitter of 95 fs rms
- Enhanced hitless switching minimizes output phase transients
- Input frequency range:
- Differential: 8 k Hz to 750 MHz
- LVCMOS: 8 k Hz to 250 MHz
- Output frequency range:
- Differential: 100 Hz to 720 MHz
- LVCMOS: 100 Hz 250 MHz
- Status Monitoring
- Si5397: 4-PLL, 8/4 output, 64-QFN/LGA
- Si5396: 2-PLL, 4 output, 44-QFN/LGA and 12 output, 64-QFN/LGA
- External reference:...