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LP2951AC 数据表(PDF) 3 Page - Calogic, LLC |
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LP2951AC 数据表(HTML) 3 Page - Calogic, LLC |
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3 / 10 page ![]() LP2950 / LP2951 CORPORATION BLOCK DIAGRAM ERROR DETECTION COMPARATOR 1D-21 1 µF REFERENCE 1.23V UNREGULATED DC ERROR AMPLIFIER 60mV + + TO CMOS OR TTL 330k Ω FROM CMOS OR TTL + + 5V @ 100mA MAX 60k Ω LP2950 AND LP2951 BLOCK DIAGRAM 180k Ω 81 7 SENSE 6 2 4 5 5V TAP ERROR GROUND INPUT OUTPUT FEEDBACK SHUTDOWN 3 – + – + CALOGIC CORPORATION, 237 Whitney Place, Fremont, California 94539, Telephone: 510-656-2900, FAX: 510-651-3025 ELECTRICAL CHARACTERISTICS (continued) PARAMETER LP2951 LP2950AC / LP2951AC LP2950C / LP2951C UNITS CONDITIONS (Note 2) MIN TYP MAX MIN TYP MAX MIN TYP MAX ERROR COMPARATOR Output Leakage Current 0.01 1 0.01 1 0.01 1 µAVOH = 30V Output Low Voltage 150 250 150 250 150 250 mV VIN = 4.5V, IOL = 400 µA Upper Threshold Voltage 40 60 40 60 40 60 mV (Note 7) Lower Threshold Voltage 75 95 75 95 75 95 mV (Note 7) Hysteresis 15 15 15 mV (Note 7) SHUTDOWN INPUT Input Logic Voltage 2 1.3 0.6 2 1.3 0.7 2 1.3 0.7 V V Low (Regulator ON) High (Regulator OFF) Shutdown Pin Input Current 30 675 50 800 30 675 50 800 30 675 50 800 µA µA VS = 2.4V VS = 30V Regulator Output Current in Shutdown 310 3 10 3 10 µA (Note 9) Note 1: Output or reference voltage temperature coefficients defined as the worst case voltage change divided by the total temperature range. Note 2: Unless otherwise specified all limits guaranteed for TJ = 25 oC, VIN = 6V, IL=100µA and CL = 1µF. Additional conditions for the 8-pin versions are feedback tied to 5V tap and output tied to output Sense (VOUT = 5V) and VSHUTDOWN ≤ 0.8V. Note 3: Regulation is measured at constant junction temperature, using pulse testing with a low duty cycle. Changes in output voltage due to heating effects are covered under the specification for thermal regulation. Note 4: Line regulation for the LP2951 is tested at 150 oC for IL = 1mA. For IL = 100µA and TJ = 125oC, line regulation is guaranteed by design to 0.2%. See typical performance characteristics for line regulation versus temperature and load current. Note 5: Dropout voltage is defined as the input to output differential at which the output voltage drops 100mV below its nominal value measured at 1V differential at very low values of programmed output voltage, the minimum input supply voltage of 2V (2.3V over temperature) must be taken input account. Note 6: VREF ≤ VOUT ≤ (VIN - 1V), 2.3 ≤ VIN ≤ 30V, 100µA ≤ IL ≤ 100mA, TJ ≤ TJMAX. Note 7: Comparator thresholds are expressed in terms of a voltage differential at the feedback terminal below the nominal reference voltage measured at 6V input. To express these thresholds in terms of output voltage change, multiply by the error amplifier gain = VOUT/VREF = (R1+R2)/R2. For example, at a programmed output voltage of 5V, the error output is guaranteed to go low when the output drops by 95mV x 5V/1.235 = 384mV. Thresholds remain constant as a percent of VOUT as VOUT is varied, with the dropout warning occurring at typically 5% below nominal, 7.5% guaranteed. Note 8: VSHUTDOWN ≥ 2V, VIN ≤ 30V, VOUT = 0, Feedback pin tied to 5V Tap. Note 9: All typical values are not guaranteed. |
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