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NB6L56 Datasheet(PDF) 6 Page - ON Semiconductor |
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NB6L56 Datasheet(HTML) 6 Page - ON Semiconductor |
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6 / 10 page ![]() NB6L56 http://onsemi.com 6 Table 6. AC CHARACTERISTICS VCC = 2.5 ± 5% (2.375 V to 2.625 V); VCC = 3.3 ± 10% (3.0 V to 3.6 V) (Note 8) Symbol Characteristic Min Typ Max Unit fMAX Maximum Input Clock Frequency Voutpp w 400 mV Maximum Operating Data Rate (NRZ) Voutpp w 400 mV 2.5 2.5 Ghz Gbps fSEL Maximum Toggle Frequency, SELA/SELB 25 50 MHz VOUTPP Output Voltage Amplitude (Differential Interconnect) fin ≤ 2.5 GHz 400 mVpp tPLH, tPHL Propagation Delay to Differential Outputs, @ 1 GHz, INxn/INxn to Qx, Qx SELx to Qx, Qx 160 100 250 260 360 400 ps tPLH Tempco Differential Propagation Delay Temperature Coefficient 143 Dfs/°C tskew Input to Input per Bank Within Device Output Bank to Output Bank Within Device 10 12 20 25 ps tJITTER DATA JITTER RJ for K28.7 at 2.5 GHz (RMS) DJ for NRZ PRBS23 / K28.5 at 2.5 Gbps CLOCK JITTER Cycle to Cycle (1K WFMS; RMS) Total Jitter TJ (PP) 1 10 1 10 ps tjit(f) Integrated Phase Jitter fin = 155.52 MHz and 1GHz 12 kHz * 20 MHz Offset (RMS) 35 fs tJITTER Crosstalk Induced Jitter Input to Input per Output Bank Within Device (Note 9) 0.7 psRMS VINPP Input Voltage Swing (Differential Configuration) (Note 10) 100 1200 mV tr,, tf Output Rise/Fall Times @ 1 GHz (20% − 80%), Qx, Qx 50 100 180 ps NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit values are applied individually under normal operating conditions and not valid simultaneously. 8. Differential 50% duty cycle at VINPPmin clock source. Outputs evaluated with 50 W resistors to VTT = VCC − 2.0 V (See Figure 16). Input crosspoint to output crosspoint for INxn/INxn to Qx, Qx; 50% input to output crosspoint for SELx to Qx, Qx. See Figures 5, 10 and 11. 9. Crosstalk is measured at the output while applying two similar clock frequencies that are asynchronous with respect to each other at the inputs. 10.Input voltage swing is a single−ended measurement operating in differential mode. |
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