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GM66102-12TC3R Datasheet(PDF) 5 Page - Gamma Microelectronics Inc. |
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GM66102-12TC3R Datasheet(HTML) 5 Page - Gamma Microelectronics Inc. |
5 / 11 page 5 ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted) A Unless otherwise specified: T = 25°C; Bold values are guaranteed across the operating temperature range. J Parameter Conditions Min Typ Max Unit Load Regulation Line Regulation Output Voltage change with Temperature Coef. (Note 6) Ground Current Ground Pin Current at Dropout I GNDDO Current Limit Output Voltage (Note2) I = 10 mA O V = V + 5V, 10mA I I IN OUT OUT FL DV/ DT OUT I = 750mA, V = V + 1V O IN OUT I = 1.0A O -1 -2 0.06 0.20 20 8 22 0.9 2.1 1 2 0.5 1.0 100 20 3.5 % % % ppm/°C mA A % V = 0.5V less than specified V , IN OUT I = 10mA, (Note 5) OUT V ,= 0V (Note 4) OUT mA Output Noise Voltage e , (10Hz to 100Hz) n I = 100mA O C = 10µF L C = 33 L µF 400 260 µV (rms) 10mA I I , (V + 1V) V 26V O FL OUT IN I = 10mA, ( O V + 1V) V 26V OUT IN Note 1: Maximum positive supply voltage of 60V must be of limited duration (<100msec) and duty cycle ( 1%). The maximum continuous supply voltage is 26V. Note 2: Full Load current (I ) is defined as 1.0A for the GM66102 series. FL Note 3: Dropout voltage is defined as the input-to-output differential when the output voltage drops to 99% of its nominal value with V + 1V applied to V OUT IN Note 4: V = V (nominal) + 1V. For example, use V = 4.3V for a 3.3V regulator or use 6V for a 5V regulator. Employ pulse-testing IN OUT IN procedures to minimize temperature rise. Note 5: Ground pin current is the regulator quiescent current. The total current drawn from the source is the sum of the load current plus the ground pin current. Note 6: Output voltage temperature coefficient is defined as the worst case voltage change divided by the total temperature range. Dropout Voltage (For 1.50 Version) (For 1.80 Version) DV -1% (Note 3) = OUT I = 100mA O I = 750mA O I = 1.0A O I = 100mA O I = 1.0A O I = 100mA O I = 1.0A O 80 220 300 200 500 mV 0.6 0.8 V 0.3 0.5 V |
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