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SN65MLVD206BD Datasheet(PDF) 6 Page - Texas Instruments |
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SN65MLVD206BD Datasheet(HTML) 6 Page - Texas Instruments |
6 / 36 page 6 SN65MLVD206B SLLSEX9 – DECEMBER 2016 www.ti.com Product Folder Links: SN65MLVD206B Submit Documentation Feedback Copyright © 2016, Texas Instruments Incorporated (1) All typical values are at 25°C and with a 3.3-V supply voltage. (2) Measurement equipment accuracy is 10 mV at –40°C (3) HP4194A impedance analyzer (or equivalent) 6.7 Electrical Characteristics – Receiver over recommended operating conditions unless otherwise noted PARAMETER TEST CONDITIONS MIN TYP(1) MAX UNIT VIT+ Positive-going differential input voltage threshold (2) Type 1 See Figure 10, Table 1, and Table 2 50 mV Type 2 150 VIT- Negative-going differential input voltage threshold (2) Type 1 –50 mV Type 2 50 VHYS Differential input voltage hysteresis, (VIT+ – VIT–) Type 1 25 mV Type 2 0 VOH High-level output voltage (R) IOH = –8 mA 2.4 V VOL Low-level output voltage (R) IOL = 8 mA 0.4 V IIH High-level input current (RE) VIH = 2 V to VCC –10 0 µA IIL Low-level input current (RE) VIL = GND to 0.8 V –10 0 µA IOZ High-impedance output current (R) VO = 0 V or 3.6 V –10 15 µA CA or CB Input capacitance VI = 0.4 sin(30E6πt) + 0.5 V (3), Other input at 1.2 V 3 pF CAB Differential input capacitance VAB = 0.4 sin(30E6πt) V (3) 2.5 pF CA/B Input capacitance balance, (CA/CB) 0.99 1.01 pF (1) All typical values are at 25°C and with a 3.3-V supply voltage. (2) HP4194A impedance analyzer (or equivalent) 6.8 Electrical Characteristics – BUS Input and Output over recommended operating conditions unless otherwise noted PARAMETER TEST CONDITIONS MIN TYP(1) MAX UNIT IA Receiver or transceiver with driver disabled input current VA = 3.8 V, VB = 1.2 V, 0 32 µA VA = 0 V or 2.4 V, VB = 1.2 V –20 20 VA = –1.4 V, VB = 1.2 V –32 0 IB Receiver or transceiver with driver disabled input current VB = 3.8 V, VA = 1.2 V 0 32 µA VB = 0 V or 2.4 V, VA = 1.2 V –20 20 VB = –1.4 V, VA = 1.2 V –32 0 IAB Receiver or transceiver with driver disabled differential input current (IA – IB) VA = VB, 1.4 ≤ VA ≤ 3.8 V –4 4 µA IA(OFF) Receiver or transceiver power-off input current VA = 3.8 V, VB = 1.2 V, 0 V ≤ VCC ≤ 1.5 V 0 32 µA VA = 0 V or 2.4 V, VB = 1.2 V, 0 V ≤ VCC ≤ 1.5 V –20 20 VA = –1.4 V, VB = 1.2 V, 0 V ≤ VCC ≤ 1.5 V –32 0 IB(OFF) Receiver or transceiver power-off input current VB = 3.8 V, VA = 1.2 V, 0 V ≤ VCC ≤ 1.5 V 0 32 µA VB = 0 V or 2.4 V, VA = 1.2 V, 0 V ≤ VCC ≤ 1.5 V –20 20 VB = –1.4 V, VA = 1.2 V, 0 V ≤ VCC ≤ 1.5 V –32 0 IAB(OFF) Receiver input or transceiver power-off differential input current (IA – IB) VA = VB, 0 V ≤ VCC ≤ 1.5 V, –1.4 ≤ VA ≤ 3.8 V –4 4 µA CA Transceiver with driver disabled input capacitance VA = 0.4 sin (30E6πt) + 0.5 V (2), V B = 1.2 V 5 pF CB Transceiver with driver disabled input capacitance VB = 0.4 sin (30E6πt) + 0.5 V (2), V A = 1.2 V 5 pF CAB Transceiver with driver disabled differential input capacitance VAB = 0.4 sin (30E6πt)V (2) 4 pF CA/B Transceiver with driver disabled input capacitance balance, (CA/CB) 0.99 1.01 pF |
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