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PTH12010LAH 数据表(PDF) 5 Page - Texas Instruments |
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PTH12010LAH 数据表(HTML) 5 Page - Texas Instruments |
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5 / 27 page ![]() www.ti.com PTH12010W, PTH12010L SLTS205E–JUNE 2003–REVISED APRIL 2006 ELECTRICAL CHARACTERISTICS (continued) TA =25°C, Vi =12V,VO = 1.8 V, Ci = 560 µF, CO =0 µF, and IO =IOmax (Unless otherwise stated) PTH12010L CHARACTERISTICS CONDITIONS MIN TYP MAX UNIT IIL track Track input current (pin 8) Pin to GND –0.13(15) mA dVtrack/dt Track slew rate capability CO≤ CO(max) 1 V/ms Vi increasing 9.5 10.4 UVLO Undervoltage lockout V Vi decreasing 8.8 9 Inhibit control (pin3) VIH Input high voltage Referenced to GND VI– 0.5 Open(4) V VIL Input low voltage –0.2 0.5 IIL Input low current Pin to GND 0.24 mA Ii inh Input standby current Inhibit (pin 3) to GND, Track (pin 8) open 10 mA fs Switching frequency Over Vi and Io ranges 200 250 300 kHz CI External input capacitance 560(16) µF nonceramic 0 330(17) 6,600(18) Capacitance value µF CO External output capacitance ceramic 0 300 Equivalent series resistance (nonceramic) 4(19) mΩ Per Bellcore TR-332 MTBF Reliability 6.4 106 Hrs 50% stress, Ta =40°C, ground benign (15) This control pin has an internal pull-up to the input voltage VI (7.5 V for pin 8). If it is left open-circuit the module operates when input power is applied. A small, low-leakage (<100 nA) MOSFET or open-drain/collector voltage supervisor IC is recommended for control. Do not place an external pull-up on this pin. For further information, see the related application section. (16) A 560 µF electrolytic input capacitor is required for proper operation. The capacitor must be rated for a minimum of 800 mA rms of ripple current. (17) An external output capacitor is not required for basic operation. Adding 330 µF of distributed capacitance at the load improves the transient response. (18) This is the calculated maximum. The minimum ESR limitation oftens result in a lower value. When controlling the Track pin using a voltage supervisor, CO(max) is reduced to 3300 µF. See the application notes for further guidance. (19) This is the typical ESR for all the electrolytic (nonceramic) ouput capacitance. Use 7 mΩ as the minimum when using max-ESR values to calculate. 5 Submit Documentation Feedback |
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