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PQ015Y053ZP

Fixed Positive Standard Regulator, 1.5VPSSO5, 10.60 X 13.70 MM, 3.50 MM HEIGHT, COMPACT, SMT-5

器件类别:电源/电源管理    电源电路   

厂商名称:SHARP

厂商官网:http://sharp-world.com/products/device/

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器件参数
参数名称
属性值
是否Rohs认证
不符合
厂商名称
SHARP
包装说明
10.60 X 13.70 MM, 3.50 MM HEIGHT, COMPACT, SMT-5
Reach Compliance Code
unknown
最大输入电压
7 V
最小输入电压
2.35 V
JESD-30 代码
R-PSSO-G5
JESD-609代码
e0
功能数量
1
端子数量
5
工作温度TJ-Max
150 °C
最大输出电流 1
5 A
最大输出电压 1
1.515 V
最小输出电压 1
1.485 V
标称输出电压 1
1.5 V
封装主体材料
PLASTIC/EPOXY
封装代码
TO-263
封装形状
RECTANGULAR
封装形式
SMALL OUTLINE
峰值回流温度(摄氏度)
240
认证状态
Not Qualified
调节器类型
FIXED POSITIVE SINGLE OUTPUT STANDARD REGULATOR
座面最大高度
4.25 mm
表面贴装
YES
端子面层
Tin/Lead (Sn/Pb)
端子形式
GULL WING
端子节距
1.7 mm
端子位置
SINGLE
处于峰值回流温度下的最长时间
NOT SPECIFIED
宽度
8.4 mm
文档预览
Low Power-Loss Voltage Regulators
PQxxxY3H3Z Series/PQxxxY053Z Series
PQxxxY3H3Z Series/PQxxxY053Z Series
Surface Mount, Large Output Current Type Low Power-Loss Voltage Regulators
s
q
Features
s
Outline Dimensions
10.6
MAX.
(0.55)
(Unit : mm)
Low power-loss (Dropout voltage: MAX. 0.5V)
q
Compact surface mount type package
(Size:10.6×13.7×3.5mm)
High output current type
q
Low voltage operation (Minimum supply voltage: 2.35V)
q
High-precision output type
(Output voltage precision: ± 1%)
q
Overcurrent, overheat protection functions
q
3.28
±0.5
6
±0.5
(Heat sink is 3.5
(0.6)
common to
terminal
2
)
13.7
MAX.
8.4
±0.5
015Y3H
ø2
(2.4)
Epoxy resin
(0.6)
(0.45)
+0.2
1.05
–0.1
4–(1.7)
0 to 0.25
(0.6)
(0.45)
+0.2
1.05
–0.1
(1.3)
(0.6)
s
q
Applications
+0.2
3–0.9
–0.1
PC motherboad, PC peripherals
q
Power supplies for various electronic equipment such as
AV, OA
1 2 3 4 5
(
) : Typical dimensions
s
Model Line-up
Output voltage (V
O
)
1.5V
2.5V
3.3V
PQ015Y3H3ZP PQ025Y3H3ZP PQ033Y3H3ZP
PQ015Y3H3ZZ PQ025Y3H3ZZ PQ033Y3H3ZZ
PQ015Y053ZP PQ025Y053ZP PQ033Y053ZP
PQ015Y053ZZ PQ025Y053ZZ PQ033Y053ZZ
1
2
Output
Package
current (I
O
)
type
Specific IC
5
3
1
2
3
4
5
6
4
3.5A
5A
Taping
Sleeve
Taping
Sleeve
DC input (V
IN
)
DC output (V
O
)
GND
Output voltage sense (V
O(sense)
)
ON/OFF control terminal (V
C
)
DC output (V
O
)
s
Absolute Maximum Ratings
(Ta=25°C)
Unit
V
V
V
A
W
˚C
˚C
˚C
˚C
Parameter
Symbol
Rating
Input voltage
V
IN
7
V
I-O
4
Dropout voltage
❇1
V
C
ON/OFF control terminal voltage
7
3.5
Output
PQxxxY3H3Z Series
I
O
current
PQxxxY053Z Series
5
❇2
Power dissipation
P
D
35
❇3
Junction temperature
T
j
150
Operating temperature
T
opr
−20
to
+80
Storage temperature
T
stg
−40
to
+150
T
sol
Soldering temperature
260 (10s)
❇1
All are open except GND and applicable terminals.
❇2
P
D
:With infinite heat sink
❇3
Overheat protection may operate at Tj=125˚C to 150˚C.
•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 device specification sheets before using any SHARP device.
Internet Internet address for Electronic Components Group http://sharp-world.com/ecg/
Notice
Low Power-Loss Voltage Regulators
PQxxxY3H3Z Series/PQxxxY053Z Series
s
(Unless otherwise specified, condition shall be V
IN
=5V,
I
O
=1.75A(PQ015Y3H3Z),
I
O
=2.5A(PQ015Y053Z),
connects V
O (sense)
terminal to V
O
terminal
,
Ta=25˚C)
MIN. TYP. MAX. Unit
Parameter
Symbol
Conditions
Input voltage
V
IN
2.35
7
V
❇4
Output voltage
V
O
Connects V
O(sense)
terminal to V
O
terminal
1.485
V
1.515
1.5
Load regulation
PQ015Y3H3Z
PQ015Y053Z
R
eg
L
R
eg
I
T
C
V
O
RR
V
C (ON)
I
C (ON)
V
C (OFF)
I
C (OFF)
I
q
I
O
=5mA
to 3.5A
I
O
=5mA
to 5A
V
IN
=2.5
to 5.5V, I
O
=5mA
T
j
=0
to 125˚C, I
O
=5mA
Refer to Fig.2
V
C
=2.7V
V
C
=0.4V
I
O
=0A
60
2.0
0.1
0.05
±1
70
5
0.5
0.1
20
0.8
−0.4
10
%
%
%
dB
V
µA
V
mA
mA
Electrical Characteristics (PQ015Y3H3Z/PQ015Y053Z)
Line regulation
Temperature coefficient of output voltage
Ripple rejection
❇5
ON-state
voltage for control
ON-state current for control
OFF-state voltage for control
OFF-state current for control
Quiescent current
s
Electrical Characteristics (PQ025Y3H3Z/PQ025Y053Z)
(Unless otherwise specified, condition shall be V
IN
=5V,
I
O
=1.75A(PQ025Y3H3Z),
I
O
=2.5A(PQ025Y053Z),
connects V
O(sense)
terminal to V
O
terminal,
Ta=25˚C)
MIN. TYP. MAX. Unit
Parameter
Symbol
Conditions
❇4
Output voltage
V
O
2.525
V
2.5
Connects V
O(sense)
terminal to V
O
terminal
2.475
Load regulation
PQ025Y3H3Z
PQ025Y053Z
R
eg
L
R
eg
I
T
C
V
O
RR
V
I-O
V
C (ON)
I
C (ON)
V
C (OFF)
I
C (OFF)
I
q
I
O
=5mA
to 3.5A
I
O
=5mA
to 5A
V
IN
=3
to 6.5V, I
O
=5mA
T
j
=0
to 125˚C, I
O
=5mA
Refer to Fig.2
❇6
I
O
=3.5A
❇6
I
O
=5A
V
C
=2.7V
V
C
=0.4V
I
O
=0A
60
2.0
0.1
0.05
±1
70
5
0.5
0.1
0.5
20
0.8
−0.4
10
%
%
%
dB
V
V
µA
V
mA
mA
Line regulation
Temperature coefficient of output voltage
Ripple rejection
Dropout voltage
❇5
ON-state
PQ025Y3H3Z
PQ025Y053Z
voltage for control
ON-state current for control
OFF-state voltage for control
OFF-state current for control
Quiescent current
s
(Unless otherwise specified, condition shall be V
IN
=V
O
(TYP)+1, I
O
=1.75A(PQ033Y3H3Z),
I
O
=2.5A(PQ033Y053Z),
connects V
O(sense)
terminal to V
O
terminal,
Ta=25˚C)
MIN. TYP. MAX. Unit
Parameter
Symbol
Conditions
❇4
Output voltage
V
O
3.333
V
3.3
Connects V
O(sense)
terminal to V
O
terminal
3.267
Load regulation
PQ033Y3H3Z
PQ033Y053Z
R
eg
L
R
eg
I
T
C
V
O
RR
V
I-O
V
C (ON)
I
C (ON)
V
C (OFF)
I
C (OFF)
I
q
I
O
=5mA
to 3.5A
I
O
=5mA
to 5A
V
IN
=4
to 7V, I
O
=5mA
T
j
=0
to 125˚C, I
O
=5mA
Refer to Fig2
❇6
I
O
=3.5A
❇6
I
O
=5A
V
C
=2.7V
V
C
=0.4V
I
O
=0A
60
2.0
0.1
0.05
±1
70
5
0.5
0.1
0.5
20
0.8
−0.4
10
%
%
%
dB
V
V
µA
V
mA
mA
Electrical Characteristics (PQ033Y3H3Z/PQ033Y053Z)
Line regulation
Temperature coefficient of Output voltage
Ripple Rejection
Dropout voltage
❇5
PQ033Y3H3Z
PQ033Y053Z
ON-state voltage for control
ON-state current for control
OFF-state voltage for control
OFF-state current for control
Quiescent current
❇4
Connects V
O(sense)
terminal
4
to V
O
terminal
2
❇5
In case of opening control terminal
5
, output voltage turns ON.
❇6
Input voltage shall be the value when output voltage is 95% in comparison with the initial value.
Low Power-Loss Voltage Regulators
Fig.1 Test Circuit
V
IN
1
PQxxxY3H3Z Series/PQxxxY053Z Series
2
V
O
+
100µF
(Electrolytic
capacitor)
V
C
A
5
I
O
4
+
V
O (sense)
100µF
(Electrolytic
capacitor)
V
A
I
C
3
A
I
q
R
L
Fig.2 Test Circuit for Ripple Rejection
+
1
ei
~
+
100µF
(Electrolytic
capacitor)
2.7V
f=120Hz(sine wave)
ei(rms)=0.5V
V
IN
=3.3V(PQ015Y3H3ZZ/P)
=3.3V(PQ025Y3H3ZZ/P)
=5V(PQ033Y3H3ZZ/P)
I
O
=0.5A
RR=20log(ei(rms)/eo(rms))
V
C
5
3
4
V
O (sense)
+
100µF
(Electrolytic
capacitor)
2
I
O
eo
V
~
R
L
V
O
V
IN
Fig.3 Power Dissipation vs. Ambient
Temperature
40
35
P
D
: With infinite heat sink
Power dissipation P
D
(W)
30
25
20
15
10
5
0
–25
0
25
50
75
100
Ambient temperature T
a
(°C)
Note) Oblique line portion:Overheat protection may operate in this area.
Low Power-Loss Voltage Regulators
Fig.4 Overcurrent Protection Characteristics
(PQ015Y3H3Z/PQ025Y3H3Z/PQ033Y3H3Z)
100
80
60
40
20
0
PQxxxY3H3Z Series/PQxxxY053Z Series
Fig.5 Overcurrent Protection Characteristics
(PQ015Y053Z/PQ025Y053Z/PQ033Y053Z)
100
V
I-O
=1V
Relative output voltage (%)
V
I-O
=1V
Relative output voltage (%)
80
60
40
20
0
0
1
2
3
4
5
6
0
1
2
3
4
5
6
7
8
9
Output current I
O
(A)
Output current I
O
(A)
Fig.6 Output Voltage Fluctuation vs.
Ambient Temperature
25
20
15
10
5
0
–5
–10
–15
–20
–25
–25
Fig.7 Output Voltage vs. Input Voltage
(PQ015Y3H3Z)
5
4
Output voltage fluctuation
∆V
O
(mV)
V
IN
=3.5V
I
O
=0A
Output voltage V
O
(V)
3
2
1
0
R
L
=1.2Ω
R
L
=∞Ω
R
L
=0.4Ω
0
25
50
75
100
125
0
1
2
3
4
5
6
7
Ambient temperature T
a
(°C)
Input voltage V
IN
(V)
Fig.8 Output Voltage vs. Input Voltage
(PQ015Y053Z)
5
4
Fig.9 Output Voltage vs. Input Voltage
(PQ025Y3H3Z)
5
4
Output voltage V
O
(V)
Output voltage V
O
(V)
3
2
R
L
=∞Ω
1
R
L
=0.6Ω
0
0
1
2
R
L
=0.3Ω
3
4
5
6
7
3
2
1
0
R
L
=0.7Ω
R
L
=1.4Ω
R
L
=∞Ω
0
1
2
3
4
5
6
7
Input voltage V
IN
(V)
Input voltage V
IN
(V)
Low Power-Loss Voltage Regulators
Fig.10 Output Voltage vs. Input Voltage
(PQ025Y053Z)
5
4
Output voltage V
O
(V)
PQxxxY3H3Z Series/PQxxxY053Z Series
Fig.11 Output Voltage vs. Input Voltage
(PQ033Y3H3Z)
6
5
Output voltage V
O
(V)
4
R
L
=2.4Ω
3
R
L
=∞Ω
2
1
0
0
1
2
3
4
5
6
7
R
L
=1Ω
3
2
1
0
R
L
=1Ω
R
L
=0.5Ω
R
L
=∞Ω
0
1
2
3
4
5
6
7
Input voltage V
IN
(V)
Input voltage V
IN
(V)
Fig.12 Circuit Operating Current vs. Input
Voltage (PQ015Y3H3Z)
50
40
30
20
10
0
R
L
=1.2Ω
Circuit operating current I
BIAS
(mA)
Fig.13 Circuit Operating Current vs. Input
Voltage (PQ015Y053Z)
60
Circuit operating current I
BIAS
(mA)
R
L
=0.4Ω
50
40
30
R
L
=0.6Ω
20
10
0
0
1
2
3
4
R
L
=∞Ω
5
6
7
R
L
=0.3Ω
R
L
=∞Ω
0
1
2
3
4
5
6
7
Input voltage V
IN
(V)
Input voltage V
IN
(V)
Fig.14 Circuit Operating Current vs. Input
Voltage (PQ025Y3H3Z)
100
Circuit operating current I
BIAS
(mA)
Fig.15 Circuit Operating Current vs. Input
Voltage (PQ025Y053Z)
120
Circuit operating current I
BIAS
(mA)
80
60
40
20
0
R
L
=0.7Ω
R
L
=1.4Ω
R
L
=∞Ω
100
80
60
40
R
L
=1Ω
20
0
0
1
2
3
4
R
L
=∞Ω
5
6
7
R
L
=0.5Ω
0
1
2
3
4
5
6
7
Input voltage V
IN
(V)
Input voltage V
IN
(V)
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