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MIPSZ2012D1R0 Datasheet(PDF) 8 Page - Panasonic Semiconductor

Part # MIPSZ2012D1R0
Description  600mA Synchronous DC-DC Step Down Regulator (1ch) 300mA LDO Regulator (4ch) Multi Power Supply (High Efficiency Power LSI)
PDF  48 Pages
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Manufacturer  PANASONIC [Panasonic Semiconductor]
Direct Link  http://www.panasonic.com/industrial/
Logo PANASONIC - Panasonic Semiconductor

MIPSZ2012D1R0 Datasheet(HTML) 8 Page - Panasonic Semiconductor

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8
AN30183A
Ver. AEB
*2
μA
75
50
25
Normal mode
VB > Vout + 0.1 V or
VIN2 > Vout + 0.1 V
IREGLDO
Consumption current on active
LDO1 – 4 ( Power Save Mode ) - (LDO Regulator)
*2
mA
40
20
5
VB = 3.7 V
VLDO = 0 V
ISTLDOPS
Short-circuit current
*2
dB
–5
–10
ΔVB = 3.7 V
± 0.15 V
ILDO = – 5 mA
fvin = 100 Hz to 10 kHz
VLDOPSRR
Ripple rejection
*2
μA
5
3
1
Power Save mode
VB > Vout + 0.1 V or
VIN2 > Vout + 0.1 V
IREGLDOPS
Consumption current on active
*2
V
1.897
1.850
1.803
ILDO = – 5 mA
Vout = 1.85 V setting
VLDOPS
Output voltage
*2
mV
150
30
ILDO = – 10
μA ↔ – 100 mA
LTRLDO
Load change characteristic
*2
k
Ω
200
100
50
RDISLDO
Discharge resistance
*2
dB
–40
–60
ΔVB = 3.7 V
± 0.15 V
ILDO = – 150 mA
fvin = 100 Hz to 10 kHz
VLDORR
Ripple rejection
LDO1 – 4 ( Normal Mode ) - (LDO Regulator)
*2
V
0.3
ILDO = – 300 mA
VSATLDO
I/O voltage difference
*2
V
1.897
1.850
1.803
ILDO = – 150 mA
Vout = 1.85 V setting
VLDO
Output voltage
Reference values
Typ
Unit
Max
Notes
Min
Conditions
Symbol
Parameter
APPLICATION INFORMATION (Continued)
REFERENCE VALUES FOR DESIGN
VVBAT(DDVBAT1 = VB = VIN2) = 3.1V to 4.5V, VDVDD = 1.85V , DC-DC : Co = 4.7 µF, Lo = 1 µH / LDO : Co =1.0 µF
Ta = 25 °C ± 2 °C unless otherwise noted.
Notes)
*2 :Checked by design, not production tested.



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