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MC78LC33HT1 Datasheet(PDF) 2 Page - Motorola, Inc |
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MC78LC33HT1 Datasheet(HTML) 2 Page - Motorola, Inc |
2 / 8 page MC78LC00 Series 2 MOTOROLA ANALOG IC DEVICE DATA MAXIMUM RATINGS Rating Symbol Value Unit Input Voltage VCC 10 Vdc Power Dissipation and Thermal Characteristics Maximum Power Dissipation Case 1213 (SOT–89) H Suffix PD 300 mW Thermal Resistance, Junction–to–Ambient R θJA 333 °C/W Case 1212 (SOT–23) N Suffix PD 150 mW Thermal Resistance, Junction–to–Ambient R θJA 667 °C/W Operating Junction Temperature TJ 125 °C Operating Ambient Temperature TA –30 to +80 °C Storage Temperature Range Tstg –40 to +125 °C NOTE: ESD data available upon request. ELECTRICAL CHARACTERISTICS (Vin = VO + 1.0 V, IO = 10 mA, TJ = 25°C [Note 1], unless otherwise noted.) Characteristic Symbol Min Typ Max Unit Output Voltage VO V 30HT1 and 30NTR Suffixes (Vin = 5.0 V) 2.950 3.0 3.075 33HT1 and 33NTR Suffixes (Vin = 5.0 V) 3.218 3.3 3.382 40HT1 and 40NTR Suffixes (Vin = 6.0 V) 3.900 4.0 4.100 50HT1 and 50NTR Suffixes (Vin = 7.0 V) 4.875 5.0 5.125 Line Regulation Regline – 0.05 0.2 mV Vin = [VO + 1.0] V to 10 V, IO = 1.0 mA Load Regulation (IO = 1.0 to 10 mA) Regload mV 30HT1 and 30NTR Suffixes (Vin = 5.0 V) – 40 60 33HT1 and 33NTR Suffixes (Vin = 6.0 V) – 40 60 40HT1 and 40NTR Suffixes (Vin = 7.0 V) – 50 70 50HT1 and 50NTR Suffixes (Vin = 8.0 V) – 60 90 Output Current IO mA 30HT1 and 30NTR Suffixes (Vin = 5.0 V) 35 50 – 33HT1 and 33NTR Suffixes (Vin = 6.0 V) 35 50 – 40HT1 and 40NTR Suffixes (Vin = 7.0 V) 45 65 – 50HT1 and 50NTR Suffixes (Vin = 8.0 V) 55 80 – Dropout Voltage Vin – VO V 30HT1 and 30NTR Suffixes (IO = 1.0 mA) – 40 60 33HT1 and 33NTR Suffixes (IO = 1.0 mA) – 35 53 40HT1 and 40NTR Suffixes (IO = 1.0 mA) – 25 38 50HT1 and 50NTR Suffixes (IO = 1.0 mA) – 25 38 Quiescent Current ICC µA 30HT1 and 30NTR Suffixes (Vin = 5.0 V) – 1.1 3.3 33HT1 and 33NTR Suffixes (Vin = 5.0 V) – 1.1 3.3 40HT1 and 40NTR Suffixes (Vin = 6.0 V) – 1.2 3.6 50HT1 and 50NTR Suffixes (Vin = 7.0 V) – 1.3 3.9 Output Voltage Temperature Coefficient TC – ±100 – ppm/ °C NOTE: 1. Low duty pulse techniques are used during test to maintain junction temperature as close to ambient as possible. |
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