RP104x SERIES
150mA ULTRA LOW SUPPLY CURRENT LDO REGULATOR
NO.EA-150-111020
OUTLINE
The RP104x Series are CMOS-based voltage regulator ICs with high output voltage accuracy, extremely low
supply current and low ON-resistance. Each of these ICs consists of a voltage reference unit, an error amplifier,
resistor-net for voltage setting, a current limit circuit and a chip enable circuit.
These ICs perform with ultra low supply current (Typ.1.0µA), which prolong the battery life.
Since the packages for these ICs are DFN(PLP)1010-4, SOT-23-5 and SC-82AB, therefore high density
mounting of the ICs on boards is possible.
FEATURES
•
Supply Current .............................................................Typ. 1.0μA
(Except the current through CE pull down circuit)
•
Standby Current ...........................................................Typ. 0.1μA
•
Dropout Voltage............................................................Typ. 0.24V (I
OUT
=150mA,
V
OUT
=2.8V)
•
Temperature-Drift Coefficient of Output Voltage ..........Typ.
±40ppm/°C
•
Line Regulation ............................................................Typ. 0.02%/V
•
Output Voltage Accuracy..............................................±0.8%
•
Packages......................................................................DFN(PLP)1010-4, SC-82AB, SOT-23-5
•
Input Voltage Range.....................................................1.7V to 5.25V
•
Output Voltage Range ...................................... ...........1.2V to 3.3V (0.1V steps)
(
For other voltages, please refer to MARK INFORMATIONS.)
•
Built-in Fold Back Protection Circuit.............................Typ. 40mA (Current at short mode)
•
Ceramic capacitors are recommended to be used with this IC .... 0.1μF or more
APPLICATIONS
•
Power source for portable communication equipment.
•
Power source for electrical appliances such as cameras, VCRs and camcorders.
•
Power source for battery-powered equipment.
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RP104x
SELECTION GUIDE
The output voltage, chip enable circuit, auto discharge function, package, and the taping type, etc. for the ICs
can be selected at the user’s request.
Product Name
RP104Kxx1∗-TR
RP104Qxx1∗-TR-FE
RP104Nxx1∗-TR-FE
Package
DFN(PLP)1010-4
SC-82AB
SOT-23-5
Quantity per Reel
10,000 pcs
3,000 pcs
3,000 pcs
Pb Free
Yes
Yes
Yes
Halogen Free
Yes
Yes
Yes
xx : The output voltage can be designated in the range from 1.2V(12) to 3.3V(33) in 0.1V steps.
(For other voltages, please refer to MARK INFORMATIONS.)
∗
: CE pin polarity and auto discharge function at off state are options as follows.
(B) "H" active, without auto discharge function at off state
(C) without chip enable circuit
(D) "H" active, with auto discharge function at off state
3
RP104x
PIN CONFIGURATIONS
•
DFN(PLP)1010-4
Top View
4
3
•
SC-82AB
4
3
•
SOT-23-5
5
4
Bottom View
3
∗
4
(mark side)
(mark side)
1
2
2
1
1
2
1
2
3
PIN DESCRIPTIONS
•
DFN(PLP)1010-4
Pin No
1
2
3
4
Symbol
V
OUT
GND
CE / NC
V
DD
Output Pin
Ground Pin
Chip Enable Pin ("H" Active) or No Connection
Input Pin
Pin Description
∗)
Tab is GND level. (They are connected to the reverse side of this IC.)
The tab is better to be connected to the GND, but leaving it open is also acceptable.
•
SC-82AB
Pin No
1
2
3
4
Symbol
CE / NC
GND
V
OUT
V
DD
Ground Pin
Output Pin
Input Pin
Pin Description
Chip Enable Pin ("H" Active) or No Connection
•
SOT-23-5
Pin No
1
2
3
4
5
Symbol
V
DD
GND
CE / NC
NC
V
OUT
Input Pin
Ground Pin
Chip Enable Pin ("H" Active) or No Connection
No Connection
Output Pin
Pin Description
4
RP104x
ABSOLUTE MAXIMUM RATINGS
Symbol
V
IN
V
CE
V
OUT
I
OUT
Input Voltage
Input Voltage (CE Pin)
Output Voltage
Output Current
Power Dissipation (DFN(PLP)1010-4)
P
D
Power Dissipation (SC-82AB)
∗
∗
∗
Item
Rating
6.0
6.0
−0.3
to V
IN
+0.3
200
400
380
420
−40
to 85
−55
to 125
Unit
V
V
V
mA
mW
Power Dissipation (SOT-23-5)
T
opt
T
stg
Operating Temperature Range
Storage Temperature Range
°C
°C
∗)
For Power Dissipation, please refer to PACKAGE INFORMATION.
ABSOLUTE MAXIMUM RATINGS
Electronic and mechanical stress momentarily exceeded absolute maximum ratings may cause the
permanent damages and may degrade the life time and safety for both device and system using the device
in the field.
The functional operation at or over these absolute maximum ratings is not assured.
5