Low Power-Loss Voltage Regulators (Built-in Reverse Voltage Protection Function)
s
Features
¡Low
power-loss (Dropout voltage : MAX. 0.5V)
¡Surface
mount type package (Equivalent to SC-63)
¡Built-in
a function to prevent reverse voltage between input and
output
The diode to prevent reverse voltage between input and output is
not necessary. (When V
O-I
=<13V)
s
Outline Dimensions
2.3±0.5
(0.5)
(Unit : mm)
6.6MAX
5.2±0.5
2
9.7MAX
05SZ5
5.5±0.5
(1.7)
0.7MAX
0.5
+0.2
-0.1
s
Applications
2.5MIN
(0to0.25)
¡Portable
equipment
¡Notebook
PC
(0.5)
s
Model Line-ups
5V output
9V output
PQ09SZ5
12V output
PQ12SZ5
1
2
3
1A output 0.5A output
Output voltage
precision:±5%
Output voltage
precision:±2.5%
Output voltage
precision:±5%
Output voltage
precision:±2.5%
PQ05SZ5
PQ05SZ51 PQ09SZ51 PQ12SZ51
PQ05SZ1
PQ09SZ1
PQ12SZ1
Internal connection diagram
1
Specific IC
Heat sink is common to
2
(V
O
).
3
2
1
DC input (V
IN
)
2
DC output (V
O
)
3
GND
PQ05SZ11 PQ09SZ11 PQ12SZ11
s
Absolute Maximum Ratings
Parameter
Input voltage
Input-output reverse voltage
Output current
Power dissipation
Junction temperature
Operating temperature
Storage temperature
Soldering temperature
All are open except GND and applicable terminals.
With imfinite heat sink.
* Over heat protection may operate at T
j
>=125˚C
*2
*1
(T
a
=25˚C,
XX
=05,09,12)
Symbol
V
IN
V
O
-
i
I
O
P
D
T
j
T
opr
T
stg
T
sol
*1
Conditions
V
IN
=0V
Rating
PQ
XX
SZ5/51
24
13
0.5
1.0
8
150
-20 to +80
-40 to +150
260
PQ
XX
SZ1/11
(0.9)
2-(2.54)
(
XX
:05,09,12)
Unit
V
V
A
W
˚C
˚C
˚C
˚C
Refer to Fig. 4
*2
*
For 10s
· Please refer to the chapter“ Handling Precautions ”.
“ In the absence of confirmation by device specification sheets,SHARP takes no responsibility for any defects that may occur in equipment using any SHARP devices
shown in catalogs,data books,etc.Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device. ”
Low Power-Loss Voltage Regulators
s
Electrical Characteristics
Parameter
PQ05SZ1/5
PQ09SZ1/5
PQ12SZ1/5
Output voltage
PQ05SZ11/51
PQ09SZ11/51
PQ12SZ11/51
Load regulation
Line regulation
Temperature coefficient of output voltage
Ripple rejection
PQ
XX
SZ1/11
Dropout voltage
PQ
XX
SZ5/51
Quiescent current
*3
PQ05SZ5/PQ05SZ1 Series
(T
j
=25˚C, xx=05,09,12)
Conditions
MIN.
4.75
8.55
11.4
4.88
8.78
11.7
-
-
-
45
-
-
TYP.
5.0
9.0
12.0
5.0
9.0
12.0
0.2
0.1
±0.01
60
0.2
4.0
MAX.
5.25
9.45
12.6
5.12
9.22
12.3
2.0
2.5
-
-
0.5
10.0
Unit
Symbol
V
IN
=7V
V
IN
=11V
V
IN
=14V
V
IN
=7V
V
IN
=11V
V
IN
=14V
*4
*5
V
O
*3
V
R
eg
L
R
eg
I
T
C
V
O
RR
V
i
-
O
I
q
I
O
=5mA,
I
O
=5mA, T
j
=0 to 125˚C,
*6
Refer to Fig. 2
I
O
=0.5A
*7
I
O
=0.3A
I
O
=0A,
*6
%
%
%/˚C
dB
V
mA
PQxxSZ1/11 Series:Io=0.5A
PQxxSZ5/51 Series:Io=0.3A
*4
PQ05SZ1/11:V
IN
=7V, Io=5mA to 1.0A
PQ05SZ5/51:V
IN
=7V, Io=5mA to 0.5A
PQ09SZ1/11:V
IN
=11V, Io=5mA to 1.0A
PQ09SZ5/51:V
IN
=11V, Io=5mA to 0.5A
PQ12SZ1/11:V
IN
=14V, Io=5mA to 1.0A
PQ12SZ5/51:V
IN
=14V, Io=5mA to 0.5A
*5
PQ05SZ1/11/5/51:V
IN
=6 to 16V
PQ09SZ1/11/5/51:V
IN
=10 to 20V
PQ12SZ1/11/5/51:V
IN
=13 to 23V
*6
PQ05SZ1/11/5/51:V
IN
=7V
PQ09SZ1/11/5/51:V
IN
=11V
PQ12SZ1/11/5/51:V
IN
=14V
*7
Input voltage shall be the value when output voltage is 95% in comparison with the initial value.
Fig.1
Test Circuit
V
IN
1
q
2
q
47µF
V
O
A
3
q
0.33µF
+
I
O
V
R
L
A
I
q
Fig.2
Test Circuit of Ripple Rejection
Fig.3
100
Relative output voltage (%)
Overcurrent Protection
Characteristics(Typical Value)
1
q
2
q
+
+
~
e
i
3
q
V
IN
0.33µF
47µF
I
O
R
L
V
e
O
~
80
PQxxSZ5/51
PQxxSZ1/11
40
20
0
60
f=120Hz (sine wave)
e
i
=0.5V
rms
V
IN
= 7V (PQ05SZ1/11/5/51)
V
IN
=11V (PQ09SZ1/11/5/51)
V
IN
=14V (PQ12SZ1/11/5/51)
I
O
=0.3A
RR=20 log (e
i
/e
o
)
0
0.3
0.6
0.9
1.2
1.5
1.8
2.1
Output current I
O
(A)
Low Power-Loss Voltage Regulators
Fig.4 Power Dissipation vs. Ambient
Temperature
10
P
D
With infinite heat sink
5
Output voltage deviation
∆V
O
(mV)
,,
,,
,,
40
60
80
PQ05SZ5/PQ05SZ1 Series
Fig.5 Output Voltage Deviation vs. Junction Temperature
(PQ05SZ1/PQ05SZ11/PQ05SZ5/PQ05SZ51)
+50
V
IN
=7V
I
O
=5mA
Power dissipation P
D
(W)
0
0
-20
0
20
100
-50
-25
0
25
50
75
100
Junction temperature T
j
(˚C)
125
Ambient temperature T
a
(˚C)
Note) Oblique line portion:Overheat
protection may operate in this area.
Fig.6 Output Voltage Deviation vs. Junction Temperature
(PQ09SZ1/PQ09SZ11/PQ09SZ5/PQ09SZ51)
+100
Output voltage deviation
∆V
O
(mV)
V
IN
=11V
I
O
=5mA
Fig.7 Output Voltage Deviation vs. Junction Temperature