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TPS1663 数据表(PDF) 21 Page - Texas Instruments |
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TPS1663 数据表(HTML) 21 Page - Texas Instruments |
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21 / 30 page ![]() TPS16633x 31 PŸ IN OUT dVdT ILIM P_IN RILIM FLT GND SHDN UVLO OVP MODE IMON PGOOD Input R2 R3 R1 COUT CdVdT * Output * ( ) ( ) ( ) ( ) ( ) IN spike Absolute IN Load IN L V V I C = + ´ 21 TPS1663 www.ti.com SLVSET9A – SEPTEMBER 2018 – REVISED OCTOBER 2018 Product Folder Links: TPS1663 Submit Documentation Feedback Copyright © 2018, Texas Instruments Incorporated 10.1 Transient Protection In case of short circuit and over load current limit, when the device interrupts current flow, input inductance generates a positive voltage spike on the input and output inductance generates a negative voltage spike on the output. The peak amplitude of voltage spikes (transients) depends on the value of inductance in series to the input or output of the device. These transients can exceed the Absolute Maximum Ratings of the device if steps are not taken to address the issue. Typical methods for addressing transients include: • Minimizing lead length and inductance into and out of the device • Using large PCB GND plane • Use of a Schottky diode across the output and GND to absorb negative spikes • A low value ceramic capacitor (C(IN) to approximately 0.1 μF) to absorb the energy and dampen the transients. The approximate value of input capacitance can be estimated with Equation 10. where • V(IN) is the nominal supply voltage • I(LOAD) is the load current • L(IN) equals the effective inductance seen looking into the source • C(IN) is the capacitance present at the input (10) Some applications may require additional Transient Voltage Suppressor (TVS) to prevent transients from exceeding the Absolute Maximum Ratings of the device. These transients can occur during positive and negative surge tests on the supply lines. In such applications it is recommended to place at least 1 µF of input capacitor. The circuit implementation with optional protection components (a ceramic capacitor, TVS and schottky diode) is shown in Figure 18 * Optional components needed for suppression of transients Figure 18. Circuit Implementation with Optional Protection Components for TPS1663x 10.2 Application Limitations This section highlights some limitations in the application which were identified during bench evaluation of the existing TPS1663 silicon on the evaluation module (EVM) |
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