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EM6153055 Datasheet(PDF) 4 Page - EM Microelectronic - MARIN SA |
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EM6153055 Datasheet(HTML) 4 Page - EM Microelectronic - MARIN SA |
4 / 11 page R EM6153 Copyright © 2006, EM Microelectronic-Marin SA 4 www.emmicroelectronic.com 06/06, rev. B, prelim. Electrical Characteristics VINPUT = 13.5 V, CL = 10 μF + 100 nF, CINPUT = 22 μF, VINH = 5 V, VDD connected to VOUTPUT, Tj = -40 to +125°C, unless otherwise specified Parameter Symbol Test Conditions Min. Typ. Max. Unit Supply current OFF mode ISS ROSC = don’t care, TCL = VOUTPUT, VIN = 0 V, VINH = 0 V, Tj < 100°C 0 1 μA Supply current in standby mode and sleep mode for V55 (note 1) ISS ROSC = don’t care, TCL = VOUTPUT, VIN = 0 V, IL = 100 μA 80 135 μA Supply current (note1) ISS ROSC = 100 kΩ, I/PS at VOUTPUT, O/PS 1 MΩ to VOUTPUT, IL = 100 μA 90 140 μA Supply current ISS ROSC = 100 kΩ, I/PS at VOUTPUT, O/PS 1 MΩ to VOUTPUT, IL = 50 mA 1.7 4 mA Voltage regulator Output voltage VOUTPUT 5 mA ≤ IL ≤ 100 mA 4.85 5 5.15 V Line regulation (note 2) VLINE 6 V ≤ VINPUT ≤ 28 V, IL = 1 mA 5 30 mV Load regulation (note 2) VL 1 mA ≤ IL ≤ 100 mA, VINPUT = 6 V 50 95 mV Dropout voltage (note 3) VDROPOUT IL = 100 mA 250 500 mV Current limit ILmax OUTPUT tied to VSS, VINPUT = 6 V 150 200 500 mA Supervisory and watchdog RES & EN VOUTPUT = 4.5 V, IOL = 8 mA 0.25 0.45 V Output Low Voltage 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 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 INH Input On Voltage VINH, on 3.5 V INH Input Off Voltage VINH, off 0.8 V INH current IINH VINH = 5 V 4 8 μA TCL Leakage current ILI VSS ≤ VTCL ≤ VOUTPUT 0.05 μA Comparator reference (note 4, 5) Version V50 1.475 1.520 1.565 V VREF Version V53 1.475 1.520 1.565 V Version V55 1.235 1.275 1.315 V Comparator hysteresis (note 5) 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. Note 2: regulation is measured at constant junction temperature using pulse testing with a low duty cycle. 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: the comparator and the voltage regulator have separate voltage references (see “Block Diagram” Fig. 3). Note 5: 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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