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ST2L01 数据表(PDF) 3 Page - STMicroelectronics |
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ST2L01 数据表(HTML) 3 Page - STMicroelectronics |
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3 / 12 page ![]() ST2L01 3/12 TYPICAL APPLICATION CIRCUIT Note: CO1 value could be lowered down to 470nF Ceramic Capacitor (X7R); CI, CO1 and CO2 capacitors must be located not more than 0.5" from the outputs pins of the device. For more details about Capacitors read the "Application Hints" ELECTRICAL CHARACTERISTICS OF OUTPUT 1 (VI=5V, IO1=10mA Tj = 0 to 125°C unless otherwise specified. Typical values are referred at Tj = 25°C, CI = 1µF (Tantalum), CO1 = CO1 =1µF (X7R) Note 1: Low duty cycle pulse testing with Kelvin connections are required in order to maintain accurate data Note 2: Dropout Voltage is defined as the minimum differential voltage between VI and VO required to mantain regulation at VO. It is measured when the output voltage drops 1% below its nominal value. Note 3: Transient response is defined with a step change in load from 10mA to 500mA as the time from the load step until the output voltage reaches it’s minimum value. Note 4: Minimum load current is defined as the minimum current required at the output in order for the output voltage to maintain regulation. Note 5: Guaranteed by design, not tested in production. Symbol Parameter Test Conditions Min. Typ. Max. Unit II Input Current IO1 = IO2 =0 Tj = 0 to 125°C 15 28 mA VO1 Output Voltage 1 Tj = 25°C 3.23 3.3 3.37 V IO1 = 5mA to 1A VI = 4.75 to 5.25V Tj = 0 to 125°C 3.2 3.3 3.4 ∆V O1 Line Regulation 1 VI = 4.75 to 5.25V 0.1 6 mV ∆V OUT1 Load Regulation 1 IO = 0.01 to 1A (Note 1) 3 12 mV VD1 Dropout Voltage 1 IO = 1A Tj = 0 to 125°C (Note 2) 1.1 1.3 V tTR Transient Response IO = 10 to 500mA trise = tfall = 1µs (Note 3, 5) <1 µs ISC1 Current Limit 1 RL = 0 Tj = 0 to 125°C 1 A IO1 Minimum Load Current 1 Tj = 0 to 125°C (Note 4) 0 mA SVR1 Supply Voltage Rejection VI = 5 ±0.25V IO1 = 100 mA Tj = 0 to 125°C (Note 5) fI = 100Hz 60 68 dB fI = 1KHz 60 70 fI = 10KHz 50 65 fI = 100KHz 30 38 Thermal Regulation IO = 1A, tPULSE = 30ms (Note 5) 0.1 %/W eN1 Output Noise B= 10Hz to 10KHz (Note 5) 40 µVrms ∆V O1 Temperature Stability Tj = 0 to 125°C (Note 5) 0.5 %VO ∆V O1 Long Term Stability Tj = 125°C, 1000Hrs (Note 5) 0.3 %VO R1 VO = VREF (1 + )+IADJR1 R2 |
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