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LSF0102 Datasheet(PDF) 14 Page - Texas Instruments |
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LSF0102 Datasheet(HTML) 14 Page - Texas Instruments |
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14 / 42 page ![]() 8.2.1.2 Detailed Design Procedure 8.2.1.2.1 Bidirectional Translation For the bidirectional translation configuration (higher voltage to lower voltage or lower voltage to higher voltage), the EN input must be connected to Vref_B and both pins must be pulled up to the HIGH side VCCB through a bias resistor (typically 200kΩ). This allows Vref_B to regulate the EN input and bias the channels for proper translation. A filter capacitor on Vref_B is recommended for a stable supply at the device. The controller output driver can be push-pull or open-drain (pull-up resistors may be required) and the peripheral device output can be push-pull or open-drain (pull-up resistors are required to pull the Bn outputs to VPU). Note If either output is push-pull, data must be unidirectional or the outputs must be tri-state and be controlled by some direction-control mechanism to prevent HIGH-to-LOW bus contention in either direction. If both outputs are open-drain, no direction control is needed. 8.2.1.2.2 Pull-Up Resistor Sizing The pull-up resistor value needs to limit the current through the pass transistor when it is in the ON state to about 15mA. Doing this causes a voltage drop of 260 mV to 350 mV to have a valid LOW signal on the downstream channel. If the current through the pass transistor is higher than 15mA, the voltage drop is also higher in the ON state. To set the current through each pass transistor at 15mA, calculate the pull-up resistor value using the following equation: Rpu = Vpu − 0.35 V 0.015 A (3) Table 8-3 provides resistor values, reference voltages, and currents at 8mA, 5mA, and 3mA. The resistor value shown in the +10% column (or a larger value) should be used so that the voltage drop across the transistor is 350 mV or less. The external driver must be able to sink the total current from the resistors on both sides of the LSF family device at 0.175V, although the 15mA applies only to current flowing through the LSF family device. The device driving the low state at 0.175V must sink current from one or more of the pull-up resistors and maintain VOL. A decrease in resistance will increase current, and thus result in increased VOL. Table 8-3. Pull-Up Resistor Values VPU (1) (2) 8mA 5mA 3mA NOMINAL (Ω) +10%(3) (Ω) NOMINAL (Ω) +10%(3) (Ω) NOMINAL (Ω) +10%(3) (Ω) 5V 581 639 930 1023 1550 1705 3.3V 369 406 590 649 983 1082 2.5V 269 296 430 473 717 788 1.8V 181 199 290 319 483 532 1.5V 144 158 230 253 383 422 1.2V 106 117 170 187 283 312 (1) Calculated for VOL = 0.35V (2) Assumes output driver VOL = 0.175V at stated current (3) +10% to compensate for VDD range and resistor tolerance LSF0102 SDLS972B – APRIL 2023 – REVISED APRIL 2024 www.ti.com 14 Submit Document Feedback Copyright © 2024 Texas Instruments Incorporated Product Folder Links: LSF0102 |
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