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NB3N511DR2G Datasheet(PDF) 4 Page - ON Semiconductor |
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NB3N511DR2G Datasheet(HTML) 4 Page - ON Semiconductor |
4 / 6 page NB3N511 http://onsemi.com 4 Table 6. DC CHARACTERISTICS VDD = 3.3 V ±10% or 5.0 V ± 5% unless otherwise noted, GND = 0 V, TA = −40°C to +85°C Symbol Characteristic Min Typ Max Unit VDD Operating Voltage VDD = 5 V VDD = 3.3 V 4.75 3.0 5.25 3.6 V IDD Power Supply Current – Inputs and outputs open, CLKOUT operating at 100 MHz (with 20 MHz crystal) VDD = 5 V VDD = 3.3 V 9 8 mA VOH Output HIGH Voltage IOH = −4 mA CMOS High VDD − 0.4 V VOH Output HIGH Voltage IOH = −25 mA TTL High 2.4 V VOL Output LOW Voltage IOL = 25 mA 0.4 V VIH Input HIGH Voltage, ICLK only (pin 1) VDD = 5 V VDD = 3.3 V (VDD / 2) + 1 (VDD / 2) + 0.7 V VIL Input LOW Voltage, ICLK only (pin 1) VDD = 5 V VDD = 3.3 V (VDD / 2) − 1 (VDD / 2) − 0.7 V VIH Input HIGH Voltage, S0, S1 VDD − 0.5 V VIL Input LOW Voltage, S0, S1 0.5 V VIH Input HIGH Voltage, OE (pin 7) 2.0 V VIL Input LOW Voltage, OE (pin 7) 0.8 V Cin Input Capacitance, S0, S1 and OE 4 pF ISC Output Short Circuit Current, CLKOUT ±70 mA Nominal Output Impedance 20 W Table 7. AC CHARACTERISTICS VDD = 3.3 V ±10% or 5.0 V ± 5% unless otherwise noted, GND = 0 V, TA = −40°C to +85°C Symbol Characteristic Min Typ Max Unit fXtal Crystal Input Frequency (Note 3) 5 32 MHz fCLKIN Clock Input Frequency 1 50 MHz fOUT Output Frequency Range fOUTMIN ≤ fIN x Multiplier ≤ fOUTMAX VDD = 4.25 to 5.25 V (5.0 V ± 5%) VDD = 3.0 to 3.6 V (3.3 V ± 10%) 14 14 200 200 MHz DC Output Clock Duty Cycle at 1.5 V 45 50 55 % OEH Output enable time, OE high to output on 50 ns OEL Output disable time, OE low to tri−state 50 ns tjitter (rms) Period Jitter (rms, 1 s) 25 ps tjitter (pk−to−pk) Total Period Jitter, (peak−to−peak) ±70 ps tr/tf Output rise/fall time (0.8 V to 2.0 V) (measured with 15 pF load) 1 1.5 ns 3. The crystal should be fundamental mode, parallel resonant. Do not use third overtone. For exact tuning when using a crystal, capacitors should be connected from pins X1/CLK to GND and X2 to GND. The value of these capacitors is given by the following equation, where CL is the specified crystal load capacitance: Crystal capacitance (pF) = (CL − 5) X 2. So, for a crystal with 16 pF load capacitance, use two 22 pF capacitors. |
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