Features: `Extremely high 97% efficiency`Ultralow quiescent current: 20 A`1.2 MHz switching frequency`0.1 A shutdown supply current`Maximum load current:ADP2105: 1 AADP2106: 1.5 AADP2107: 2 A`Input voltage: 2.7 V to 5.5 V`Output voltage: 0.8 V to VIN`Maximum duty cycle: 100%`Smoothly transitions i...
ADP2107: Features: `Extremely high 97% efficiency`Ultralow quiescent current: 20 A`1.2 MHz switching frequency`0.1 A shutdown supply current`Maximum load current:ADP2105: 1 AADP2106: 1.5 AADP2107: 2 A`Input ...
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Parameter | Rating |
IN, EN, SS, COMP, OUT_SENSE/FB to AGND | −0.3 V to +6 V |
LX1, LX2 to PGND | −0.3 V to (VIN + 0.3 V) |
PWIN1, PWIN2 to PGND | −0.3 V to +6 V |
PGND to AGND | −0.3 V to +0.3 V |
GND to AGND | −0.3 V to +0.3 V |
PWIN1, PWIN2 to IN | −0.3 V to +0.3 V |
Operating Junction Temperature Range | −40°C to +125°C |
Storage Temperature Range | −65°C to +150°C |
Soldering Conditions | JEDEC J-STD-020 |
The ADP2105/ADP2106/ADP2107 are low quiescent current, synchronous, step-down dc-to-dc converters in a compact 4 mm * 4 mm LFCSP_VQ package. At medium to high load currents, these devices use a current-mode, constant-frequency pulse-width modulation (PWM) control scheme for excellent stability and transient response. To ensure the longest battery life in portable applications, the ADP2105/ADP2106/ADP2107 use a pulse frequency modulation (PFM) control scheme under light load conditions that reduces switching frequency to save power.
The ADP2105/ADP2106/ADP2107 run from input voltages of 2.7 V to 5.5 V, allowing single Li+/Li− polymer cell, multiple alkaline/NiMH cells, PCMCIA, and other standard power sources. The output voltage of ADP2105/ADP2106/ADP2107-ADJ is adjustable from 0.8 V to the input voltage, whereas the ADP2105/ADP2106/ADP2107-xx are available in preset output voltage options of 3.3 V, 1.8 V, 1.5 V, and 1.2 V. Each of these variations is available in three maximum current levels, 1 A (ADP2105), 1.5 A (ADP2106), and 2 A (ADP2107). The power switch and synchronous rectifier are integrated for minimal external part count and high efficiency. During logic-controlled shutdown, the input is disconnected from the output, and it draws less than 0.1 A from the input source. Other key features include undervoltage lockout to prevent deep battery discharge and programmable soft start to limit inrush current at startup.