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NB6L239MNR2 Datasheet(PDF) 6 Page - ON Semiconductor |
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NB6L239MNR2 Datasheet(HTML) 6 Page - ON Semiconductor |
6 / 13 page NB6L239 http://onsemi.com 6 Table 6. DC CHARACTERISTICS, CLOCK INPUTS, LVPECL OUTPUTS (VCC = 2.375 V to 3.465 V, VEE = 0 V) Symbol Characteristic −40 5C 25 5C 85 °C Unit Min Typ Max Min Typ Max Min Typ Max IEE Power Supply Cur- rent 30 40 50 30 40 50 30 40 50 mA VOH Output HIGH Volt- age (Notes 2, 3) VCC = 3.3 V VCC = 2.5 V VCC−1150 2150 1350 VCC−1060 2240 1440 VCC−950 2350 1550 VCC−1100 2200 1400 VCC−1015 2285 1485 VCC − 900 2400 1600 VCC−1050 2250 1450 VCC −980 2320 1520 VCC − 850 2450 1650 mV VOL Output LOW Voltage (Notes 2, 3) VCC = 3.3 V VCC = 2.5 V VCC−1935 1365 565 VCC−1775 1525 725 VCC−1630 1670 870 VCC−1875 1430 630 VCC−1735 1565 765 VCC−1580 1720 920 VCC−1810 1490 690 VCC−1675 1625 825 VCC−1530 1770 970 mV DIFFERENTIAL INPUT DRIVEN SINGLE−ENDED (Figures 7, 10) Vth Input Threshold Ref- erence Voltage (Note 4) 100 VCC − 100 100 VCC − 100 100 VCC − 100 mV VIH Single−ended Input HIGH Voltage Vth + 100 VCC Vth + 100 VCC Vth + 100 VCC mV VIL Single−ended Input LOW Voltage VEE Vth − 100 VEE Vth − 100 VEE Vth − 100 mV VBBAC Output Voltage Ref- erence @ 100 mA (Note 7) VCC = 3.3 V VCC = 2.5 V VCC−1460 1840 1040 VCC−1330 1970 1170 VCC−1200 2100 1300 VCC−1460 1840 1040 VCC−1340 1960 1160 VCC−1200 2100 1300 VCC−1460 1840 1040 VCC−1350 1950 1150 VCC−1200 2100 1300 mV DIFFERENTIAL INPUT DRIVEN DIFFERENTIALLY (Figures 8, 9, 11) (Note 6) VIHD Differential Input HIGH Voltage 100 VCC 100 VCC 100 VCC mV VILD Differential Input LOW Voltage VEE VCC – 100 VEE VCC – 100 VEE VCC – 100 mV VCMR Input Common Mode Range (Differ- ential Cross−point Voltage) (Note 5) 50 VCC – 50 50 VCC – 50 50 VCC – 50 mV VID Differential Input Voltage (VIHD(CLK) − VILD(CLK)) and (VIHD(CLK)−VILD(CLK)) 100 VCC − VEE 100 VCC − VEE 100 VCC − VEE mV RTIN Internal Input Ter- mination Resistor 45 50 55 45 50 55 45 50 55 W 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. 2. Input and output parameters vary 1:1 with VCC. 3. Outputs loaded with 50 W to VCC – 2.0 V for proper operation. 4. Vth is applied to the complementary input when operating in single−ended mode. 5. VCMRMIN varies 1:1 with VEE, VCMRMAX varies 1:1 with VCC. 6. Input and output voltage swing is a single−ended measurement operating in differential mode. 7. VBBAC used to rebias capacitor−coupled inputs only (see Figures 16 and 17). |
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