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MC100EP91MNR2G Scheda tecnica(PDF) 6 Page - ON Semiconductor |
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MC100EP91MNR2G Scheda tecnica(HTML) 6 Page - ON Semiconductor |
6 / 10 page MC100EP91 www.onsemi.com 6 Table 7. AC CHARACTERISTICS (VCC = 2.375 V to 3.8 V; VEE = −3.0 V to −5.5 V; GND = 0 V) Symbol Characteristic −40°C 25°C 85°C Unit Min Typ Max Min Typ Max Min Typ Max VOUTPP Output Voltage Amplitude fin ≤ 1.0 GHz (Figure 4) fin ≤ 1.5 GHz (Note 1) fin ≤ 2.0 GHz 575 525 300 800 750 600 600 525 250 800 750 550 550 400 150 800 750 500 mV tPLH tPHL0 Propagation Delay Differential D to Q Single-Ended 375 300 500 450 600 650 375 300 500 450 600 675 400 300 550 500 650 750 ps tSKEW Pulse Skew (Note 2) Output-to-Output (Note 3) Part-to-Part (Diff) (Note 3) 15 25 50 75 95 125 15 30 50 75 105 125 15 30 70 80 105 150 ps tJITTER RMS Random Clock Jitter (Note 4) fin = 2.0 GHz Peak-to-Peak Data Dependant Jitter fin = 2.0 Gb/s (Note 5) 0.5 20 2.0 0.5 20 2.0 0.5 20 2.0 ps VINPP Input Voltage Swing (Differential Configuration) (Note 6) 200 800 1200 200 800 1200 200 800 1200 mV tr, tf Output Rise/Fall Times @ 50 Mhz (20%−80%) Q, Q 75 150 250 75 150 250 75 150 275 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. 1. Measured using a 750 mV source, 50% duty cycle clock source. All loading with 50 W to GND − 2.0 V. Input edge rates 150 ps (20% − 80%). 2. Pulse Skew = |tPLH − tPHL| 3. Skews are valid across specified voltage range, part-to-part skew is for a given temperature. 4. RMS Jitter with 50% Duty Cycle Input Clock Signal. 5. Peak-to-Peak Jitter with input NRZ PRBS 231−1 at 2.0 Gb/s. 6. Input voltage swing is a Single-Ended measurement operating in differential mode. The device has a DC gain of ≈ 50. Figure 4. Output Voltage Amplitude (VOUTPP) / RMS Jitter vs. Input Frequency (fin) at Ambient Temperature (Typical) INPUT FREQUENCY (GHz) 0.5 1.0 1.5 2.0 2.5 250 350 450 550 650 750 850 9.0 8.0 10 7.0 6.0 5.0 4.0 3.0 2.0 1.0 0 RMS JITTER AMP Figure 5. AC Reference Measurement D D Q Q tPHL tPLH VINPP = VIH(D) − VIL(D) VOUTPP = VOH(Q) − VOL(Q) |
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