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SN65HVD230Q-Q1 Datasheet(PDF) 7 Page - Texas Instruments |
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SN65HVD230Q-Q1 Datasheet(HTML) 7 Page - Texas Instruments |
7 / 30 page SN65HVD230Q-Q1 SN65HVD231Q-Q1 SN65HVD232Q-Q1 SGLS117C – JUNE 2001 – REVISED JUNE 2002 7 www.ti.com driver electrical characteristics over recommended operating conditions (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP† MAX UNIT V Dominant VI = 0 V, CANH 2.45 VCC VOH Bus output Dominant VI = 0 V, See Figure 1 and Figure 3 CANL 0.5 1.25 V V Bus out ut voltage Recessive VI = 3 V, CANH 2.3 V VOL Recessive VI = 3 V, See Figure 1 and Figure 3 CANL 2.3 V Dominant VI = 0 V, See Figure 1 1.5 2 3 V VOD(D) Differential output Dominant VI = 0 V, See Figure 2 1.2 2 3 V V Differential out ut voltage Recessive VI = 3 V, See Figure 1 – 120 0 12 mV VOD(R) Recessive VI = 3 V, No load – 0.5 – 0.2 0.05 V IIH High-level input current VI = 2 V – 30 µA IIL Low-level input current VI = 0.8 V – 30 µA I Short circuit output current VCANH = –2 V – 250 250 mA IOS Short-circuit output current VCANL = 7 V – 250 250 mA Co Output capacitance See receiver Standby SN65HVD230Q VV 370 600 A ICC Supply current Sleep SN65HVD231Q V(RS) = VCC 0.1 µA ICC Supply current All devices Dominant VI = 0 V, No load Dominant 10 17 mA All devices Recessive VI = VCC , No load Recessive 10 17 mA † All typical values are at 25 °C and with a 3.3-V supply. driver switching characteristics at TA = 25°C (unless otherwise noted) SN65HVD230Q and SN65HVD231Q PARAMETER TEST CONDITIONS MIN TYP MAX UNIT V(RS) = 0 V 35 85 tPLH Propagation delay time, low-to-high-level output RS with 10 kΩ to ground 70 125 ns tPLH Pro agation delay time, low to high level out ut RS with 100 kΩ to ground 500 870 ns V(RS) = 0 V 70 120 tPHL Propagation delay time, high-to-low-level output RS with 10 kΩ to ground 130 180 ns tPHL Pro agation delay time, high to low level out ut RS with 100 kΩ to ground 870 1200 ns V(RS) = 0 V 35 tsk(p) Pulse skew (|tP(HL) – tP(LH)|) RS with 10 kΩ to ground CL = 50 pF, See Figure 4 60 ns tsk( ) Pulse skew (|tP(HL) tP(LH)|) RS with 100 kΩ to ground See Figure 4 370 ns tr Differential output signal rise time V0 V 25 50 100 ns tf Differential output signal fall time V(RS) = 0 V 40 55 80 ns tr Differential output signal rise time R with 10 k Ω to ground 80 120 160 ns tf Differential output signal fall time RS with 10 kΩ to ground 80 125 150 ns tr Differential output signal rise time R with 100 k Ω to ground 600 800 1200 ns tf Differential output signal fall time RS with 100 kΩ to ground 600 825 1000 ns |
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