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EM6152V50SO8A Datasheet(PDF) 4 Page - EM Microelectronic - MARIN SA |
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EM6152V50SO8A Datasheet(HTML) 4 Page - EM Microelectronic - MARIN SA |
4 / 12 page R EM6152 Copyright © 2006, EM Microelectronic-Marin SA 4 www.emmicroelectronic.com rev. B / 06.06 Electrical Characteristics VINPUT = 13.5 V, CL = 22 μF + 100 nF, CINPUT = 22 μF, Tj = -40 to +125°C, unless otherwise specified Parameter Symbol Test Conditions Min. Typ. Max. Unit Supply current in standby mode and sleep mode for V55 ISS ROSC = don’t care, TCL = VOUTPUT, VIN = 0 V, IL = 1 mA 135 270 μA Supply current (note1) ISS ROSC = 100 kΩ, I/PS at VOUTPUT, O/PS 1 MΩ to VOUTPUT, IL = 1 mA 145 280 μA Supply current (note 1) ISS ROSC = 100 kΩ, I/PS at VOUTPUT, O/PS 1 MΩ to VOUTPUT, IL = 250 mA 7 14 mA Output voltage VOUTPUT 5 mA ≤ IL ≤ 250 mA 4.8 5 5.2 V Line regulation (note 2) VLINE 12 V ≤ VINPUT ≤ 32 V, IL = 5 mA 10 25 mV Load regulation (note 2) VL 5 mA ≤ IL ≤ 250 mA, VINPUT=6V 35 80 mV Dropout voltage (note 3) VDROPOUT IL = 250 mA 250 500 mV Output voltage temperature coefficient (note 4) Vth(coeff) 0.5 mV/°C Current limit ILmax OUTPUT tied to VSS, VINPUT=6V 400 600 mA RES & EN VOUTPUT = 4.5 V, IOL = 8 mA 0.25 0.45 V Output Low Voltage VOUTPUT = 2.0 V, IOL = 4 mA 0.2 0.4 V VOL VOUTPUT = 1.2 V, IOL = 0.5 mA 0.04 0.2 V EN VOUTPUT = 4.5 V, IOH= -1 mA 3.5 4.1 V Output High Voltage VOUTPUT = 2.0 V, IOH= -100 μA 1.8 1.9 V VOH VOUTPUT = 1.2 V, IOH= -20 μA 0.9 1.05 V TCL Input Low Level VIL VSS 0.5 V TCL Input High Level VIH 2.5 VOUTPUT V Leakage current ILI VSS ≤ VTCL ≤ VOUTPUT 0.05 μA Version V30 (replaces A6130) 1.135 1.170 1.205 V Comparator reference (note 5, 6) VREF Version V50 (replaces A6150 and A6250) 1.475 1.520 1.565 V Version V53 1.475 1.520 1.565 V Version V55 (replaces A6155) 1.235 1.275 1.315 V Comparator hysteresis (note 6) VHY 2 mV VIN input resistance RVIN 100 M Ω Table 3 Note 1: if INPUT is connected to VSS, no reverse current will flow from the OUTPUT to the INPUT, however the supply current specified will be sank by the OUTPUT to supply the EM6152. Note 2: 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 in the specification for thermal regulation. Note 3: the dropout voltage is defined as the INPUT to OUTPUT differential, measured with the input voltage equal to 5.0 V. Note 4: output voltage temperature coefficient is defined as the change in OUTPUT voltage after a change in power dissipation is applied, excluding load or line regulation effects. Note 5: the comparator and the voltage regulator have separate voltage references (see “Block Diagram” Fig. 3). Note 6: the comparator reference is the power-down reset threshold. The power-on reset threshold equals the comparator reference voltage plus the comparator hysteresis (see Fig. 5). |
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