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SN65HVD31DRG4 Datasheet(PDF) 7 Page - Texas Instruments |
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SN65HVD31DRG4 Datasheet(HTML) 7 Page - Texas Instruments |
7 / 42 page SN65HVD30, SN65HVD31, SN65HVD32 SN65HVD33, SN65HVD34, SN65HVD35 www.ti.com SLLS665K – SEPTEMBER 2005 – REVISED OCTOBER 2015 7.5 Electrical Characteristics: Driver over recommended operating conditions unless otherwise noted PARAMETER TEST CONDITIONS MIN TYP(1) MAX UNIT VI(K) Input clamp voltage II = –18 mA –1.5 V IO = 0 2.5 VCC RL = 54 Ω, See Figure 17 (RS-485) 1.5 2 |VOD(SS)| Steady-state differential output voltage V RL = 100 Ω, See Figure 17, (2) (RS-422) 2 2.3 Vtest = –7 V to 12 V, See Figure 18 1.5 Change in magnitude of steady-state Δ|VOD(SS)| differential output voltage between RL = 54 Ω, See Figure 17 and Figure 18 –0.2 0.2 V states Differential Output Voltage overshoot RL = 54 Ω, CL = 50 pF, See Figure 21 and VOD(RING) 10%(3) V and undershoot Figure 19 SN65HVD30, See Figure 20 0.5 SN65HVD33 Peak-to-peak SN65HVD31, VOC(PP) common-mode V SN65HVD34, output voltage See Figure 20 0.25 SN65HVD32, SN65HVD35 Steady-state common-mode output VOC(SS) See Figure 20 1.6 2.3 V voltage Change in steady-state common-mode ΔVOC(SS) See Figure 20 –0.05 0.05 V output voltage VCC = 0 V, VZ or VY = 12 V, 90 SN65HVD30, Other input at 0 V SN65HVD31, VCC = 0 V, VZ or VY = –7 V, SN65HVD32 –10 Other input at 0 V IZ(Z) or High-impedance VCC = 3 V or 0 V, DE = 0 V μA IY(Z) state output current VZ or VY = 12 V 90 SN65HVD33, Other input at 0 V SN65HVD34, VCC = 3 V or 0 V, DE = 0 V SN65HVD35 VZ or VY = –7 V –10 Other input at 0 V VZ or VY = –7 V –250 250 Other input at 0 V IZ(S) or Short Circuit output current(4) mA IY(S) VZ or VY = 12 V –250 250 Other input at 0 V II Input current D, DE 0 100 μA C(OD) Differential output capacitance VOD = 0.4 sin (4E6πt) + 0.5 V, DE at 0 V 16 pF (1) All typical values are at 25°C and with a 3.3-V supply. (2) VCC is 3.3 VDC ± 5%. (3) 10% of the peak-to-peak differential output voltage swing, per TIA/EIA-485. (4) Under some conditions of short-circuit to negative voltages, output currents exceeding the ANSI TIA/EIA-485-A maximum current of 250 mA may occur. Continuous exposure can affect device reliability. This applies to the SN65HVD30, SN65HVD31, SN65HVD33, and SN65HVD34. Copyright © 2005–2015, Texas Instruments Incorporated Submit Documentation Feedback 7 Product Folder Links: SN65HVD30 SN65HVD31 SN65HVD32 SN65HVD33 SN65HVD34 SN65HVD35 |
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