MIC5203-2.8BM5 MICREL [Micrel Semiconductor], MIC5203-2.8BM5 Datasheet
MIC5203-2.8BM5
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MIC5203-2.8BM5 Summary of contents
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... LA33 3.3V MIC5203-3.6BM4 LA36 3.6V MIC5203-3.8BM4 LA38 3.8V MIC5203-4.0BM4 LA40 4.0V MIC5203-4.5BM4 LA45 4.5V MIC5203-4.7BM4 LA47 4.75V MIC5203-5.0BM4 LA50 5.0V MIC5203-2.8BM5 LA28 2.8V MIC5203-3.0BM5 LK30 3.0V MIC5203-3.3BM5 LK33 3.3V MIC5203-3.6BM5 LK36 3.6V MIC5203-3.8BM5 LK38 3.8V MIC5203-4.0BM5 LK40 4.0V MIC5203-4.5BM5 LK45 4 ...
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... MIC5203 Pin Configuration Pin Description Pin Number Pin Number Pin Name SOT-143 SOT-23 Absolute Maximum Ratings Input Supply Voltage (V ) ............................ –20V to +20V IN Enable Input Voltage (V ) ........................... –20V to +20V EN Power Dissipation (P ) ............................ Internally Limited D Storage Temperature Range (T ) ............ – +150 C S Lead Temperature (Soldering, 5 sec.) ...................... 260 C ...
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... MIC5203 Electrical Characteristics 1V 1mA 0. OUT L L Symbol Parameter V Output Voltage Accuracy Output Voltage Temp. Coefficient Line Regulation Load Regulation –V Dropout Voltage, Note Quiescent Current Q I Ground Pin Current, Note 7 ...
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... MIC5203 Typical Characteristics Dropout Voltage vs. Output Current 1000 OUT 100 10 1 0.01 0 100 OUTPUT CURRENT (mA) Ground Current vs. Output Current 2000 1500 1000 500 OUT OUTPUT CURRENT (mA) Output Voltage vs. Output Current 4.0 3.5 3.0 2 ...
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... MIC5203 Load Transient 200 0 -200 Awaiting Further Characterization -400 200 Data C = 0.1 F OUT OUT TIME (ms) Line Transient Awaiting Further -1 Characterization -2 3 Data 0 1mA - -0.2 0.0 0.2 0.4 0.6 0.8 1.0 TIME (ms) Ripple Voltage vs. Frequency 100 ...
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... MIC5203 Output Impedance 1000 100 I = 100 1mA 100mA L 0.1 0.01 FREQUENCY (Hz) Enable Characteristics (3.3V Version Awaiting Further 1 Characterization 0 Data - 0 100 -0.2 0.0 0.2 0.4 0.6 0.8 1.0 TIME (ms) Enable Characteristics (3.3V Version 100 -0.2 ...
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... Tantalum or ceramic capacitors are recommended for operation below –25C . No-Load Stability The MIC5203 will remain stable and in regulation with no load (other than the internal voltage divider) unlike many other voltage regulators. This is especially important in CMOS RAM keep-alive applications. ...