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FIN1027A Datasheet(PDF) 5 Page - ON Semiconductor |
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FIN1027A Datasheet(HTML) 5 Page - ON Semiconductor |
5 / 13 page © 2001 Fairchild Semiconductor Corporation www.fairchildsemi.com FIN1027 / FIN1027A • Rev. 1.0.3 4 DC Electrical Characteristics All typical values are at TA = 25°C and VCC = 3.3V. Over-supply voltage and operating temperature ranges, unless otherwise noted. Symbol Parameter Conditions Min. Typ. Max. Units VOD Output Differential Voltage 250 350 450 mV ΔV OD VOD Magnitude Change from Differential LOW-to-HIGH 25 mV VOS Offset Voltage 1.125 1.250 1.375 V ΔV OS Offset Magnitude Change from Differential LOW-to-HIGH RL = 100Ω, Figure 4 25 mV IOFF Power-Off Output current VCC = 0V, VOUT = 0V or 3.6V ±20 µA VOUT = 0V -8 IOS Short-Circuit Output Current VOD = 0V ±8 mA VIH Input HIGH Voltage 2.0 VCC V VIL Input LOW Voltage GND 0.8 V IIN Input Current VIN = 0V or VCC ±20 µA II(OFF) Power-Off Input Current VCC = 0V, VIN = 0V or 3.6V ±20 µA VIK Input Clamp Voltage IIK = -18mA -1.5 V No Load, VIN = 0V or VCC 12.5 mA ICC Power Supply Current RL = 100Ω, VIN = 0V or VCC 17.0 mA CIN Input Capacitance 4 pF COUT Output Capacitance 6 pF AC Electrical Characteristics All typical values are at TA = 25°C and VCC = 3.3V. Over-supply voltage and operating temperature ranges, unless otherwise noted. Symbol Parameter Conditions Min. Typ. Max. Units tPLHD Differential Propagation Delay, LOW-to-HIGH 0.5 1.5 ns tPHLD Differential Propagation Delay, HIGH-to-LOW 0.5 1.5 ns tTLHD Differential Output Rise Time (20% to 80%) 0.4 1.0 ns tTHLD Differential Output Fall Time (80% to 20%) 0.4 1.0 ns tSK(P) Pulse Skew ⏐t PLH - tPHL⏐ 0.5 ns tSK(LH), tSK(HL) Channel-to-Channel Skew (1) 0.3 ns tSK(PP) Part-to-Part Skew (2) RL = 100Ω, CL = 10pF, Figure 5, Figure 6 1.0 ns Notes: 1. tSK(LH), tSK(HL) is the skew between specified outputs of a single device when the outputs have identical loads and are switching in the same direction. 2. tSK(PP) is the magnitude of the difference in propagation delay times between any specified terminals of two devices switching in the same direction (either LOW-to-HIGH or HIGH-to-LOW) when both devices operate with the same supply voltage, same temperature, and have identical test circuits. |
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