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BD80BC0T

Fixed Positive LDO Regulator, 8V, PSFM3, ROHS COMPLIANT, TO-220FP, 3 PIN

器件类别:电源/电源管理    电源电路   

厂商名称:ROHM(罗姆半导体)

厂商官网:https://www.rohm.com/

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器件参数
参数名称
属性值
厂商名称
ROHM(罗姆半导体)
零件包装代码
TO-220FP
包装说明
,
针数
3
Reach Compliance Code
compliant
ECCN代码
EAR99
最大输入电压
16 V
最小输入电压
2.5 V
JESD-30 代码
R-PSFM-T3
功能数量
1
端子数量
3
工作温度TJ-Max
125 °C
工作温度TJ-Min
最大输出电流 1
1 A
最大输出电压 1
8.16 V
最小输出电压 1
7.92 V
标称输出电压 1
8 V
封装主体材料
PLASTIC/EPOXY
封装形状
RECTANGULAR
封装形式
FLANGE MOUNT
调节器类型
FIXED POSITIVE SINGLE OUTPUT LDO REGULATOR
表面贴装
NO
端子形式
THROUGH-HOLE
端子位置
SINGLE
Base Number Matches
1
文档预览
Secondary LDO Regulator Series for Local Power Supplies
1A Secondary LDO Regulators
for Local Power Supplies
BA□□BC0 Series,BA□□BC0W Series,BA00BC0W Series
No.09024EAT02
Description
The BA□□BC0 are low-saturation regulators with an output current of 1.0 A and an output voltage accuracy of
2%.
A
broad output voltage range is offered, from 1.5V to 10V, and built-in overcurrent protection and thermal shutdown (TSD)
circuits prevent damage due to short-circuiting and overloading, respectively.
Features
1) Output current: 1 A (min.)
2) Output voltage accuracy:
2%
Broad output range available: 1.5 V -10 V (BA□□BC0 series)
3) Low saturation-voltage type with PNP output
4) Built-in overcurrent protection circuit
5) Built-in thermal shutdown circuit
6) Integrated shutdown switch (BA□□BC0WT, BA□□BC0WT-5, or BA□□BC0WFP Series, BA00BC0WCP-V5)
7) Operating temperature range:
−40°C
to +105°C
Applications
All electronic devices that use microcontrollers and logic circuits
Product
Lineup
Part Number
BA□□BC0WT
BA□□BC0WT-V5
BA□□BC0WFP
BA□□BC0T
BA□□BC0FP
BA00BC0WCP-V5
1.5
-
1.8
-
2.5
-
3.0
-
-
3.3
-
5.0
-
6.0
-
-
7.0
-
-
8.0
-
-
9.0
-
10.0 Variable
-
-
-
-
Package
TO220FP-5
TO220FP-5 (V5)
TO252-5
TO220FP-3
TO252-3
TO220CP-V5
Part Number: BA□□BC0□
a
b c
Symbol
□□
15
18
25
30
33
50
Description
Output voltage specification
Output voltage (V)
□□
1.5 V typ
60
1.8 V typ
70
2.5 V typ
80
3.0 V typ
90
3.3 V typ
J0
5.0 V typ
00
Output voltage (V)
6.0 V typ
7.0 V typ
8.0 V typ
9.0 V typ
10.0 V typ
Variable
a
b
c
Existence of switch With W: A shutdown switch is provided.
Without W: No shutdown switch is provided.
Package
T: TO20FP-5, TO220FP-5(V5), TO220FP-3
FP: TO252-5, TO252-3
CP: TO220CP-V5
www.rohm.com
© 2009 ROHM Co., Ltd. All rights reserved.
1/8
2009.04 - Rev.A
BA□□BC0 Series,BA□□BC0W Series,BA00BC0W Series
Absolute
Maximum Ratings
(Ta = 25°C)
Parameter
Symbol
Power supply voltage
V
CC
TO252-3
TO252-5
TO220FP-3
Power
P
d
dissipation TO220FP-5
TO220FP-5 (V5)
TO220CP-V5
Operating temperature range
T
opr
Ambient storage temperature
T
stg
Maximum junction temperature
T
jmax
Technical Note
Limits
18
*1
1200
*2
1300
*3
2000
*4
2000
*4
2000
*4
2000
*4
−40
to +105
−55
to +150
150
Unit
V
mW
°C
°C
°C
*1 Must not exceed Pd.
*2 Derated at 9.6mW/°C at Ta>25°C when mounted on a glass epoxy board (70 mm
70 mm
1.6 mm).
*3 Derated at 10.4mW/°C at Ta>25°C when mounted on a glass epoxy board (70 mm
70 mm
1.6 mm).
*4 Derated at 16mW/°C at Ta> 25°C
Recommended
Operating Conditions
Parameter
Input power supply voltage
Input power supply voltage
Output current
Variable output voltage setting value
*5 When output voltage is 1.5 V, 1.8 V, or 2.5 V.
*6 When output voltage is 3.0 V or higher.
Symbol
V
CC*5
Vc
C*6
I
o
V
o
Min.
3.0
V
o
+1.0
-
1.5
Max.
16.0
16.0
1
12
Unit
V
V
A
V
Electrical
Characteristics
BA□□BC0FP/T/WFP/WT (−V5)
(Unless otherwise specified, Ta = 25°C; V
CTL
= 3 V; V
CCDC*7
)
Parameter
Symbol
Min.
Typ.
Output voltage
Shutdown circuit current
Minimum I/O voltage difference
*8
Output current capacity
Input stability
*9
Load stability
Temperature coefficient of
output voltage
*10
Vo
Isd
∆Vd
Io
Reg.I
Reg.L
Tcvo
Vo (T)
0.98
-
-
1
-
-
-
Vo (T)
0
0.3
-
15
35
0.02
Max.
Vo (T)
1.02
10
0.5
-
35
75
-
Unit
V
A
V
A
mV
mV
%/°C
Conditions
Io = 200mA
VCTL = 0 V while in off mode
Io = 200 mA,Vcc = 0.95
Vo
Vcc = Vo+1.0V→16V, Io = 200mA
Io = 0 mA
→1
A
Io = 5 mA½Tj = 0°C to 125℃
Vo (T): Set output voltage
*7
Vo = 1.5 V, 1.8 V, 2.5 V : Vcc = 3.3 V, Vo = 3.0 V, 3.3 V : Vcc = 5 V,
Vo = 5.0 V : Vcc : 8 V, Vo = 6.0 V : Vcc = 9 V, Vo = 8.0 V : Vcc = 11 V,
Vo = 9.0 V : Vcc = 12 V, Vo = 10.0 V : Vcc = 13 V
*8
Vo
3.3 V
*9
Change Vcc from 3.0 V to 6 V if 1.5 V
Vo
2.5 V.
*10 Operation guaranteed
BA00BC0WFP/WT (−V5)/CP-V5
(Unless otherwise specified, Ta = 25°C, Vcc = 3.3 V, V
CTL
= 3 V, R1 = 30 k, R2 = 30 k
*11
)
Parameter
Symbol
Min.
Typ.
Max.
Unit
Conditions
Shutdown circuit current
Isd
-
0
10
A
VCTL = 0 V while in OFF mode
Reference voltage
Vc
1.225 1.250
1.275
V
Io = 50 mA
Minimum I/O voltage difference
∆Vd
-
0.3
0.5
V
Io = 500 mA, Vcc = 2.5V
Output current capacity
Io
1
-
-
A
Input stability
Reg.I
-
15
30
mV
Vcc = Vo + 1.0 V→16V, Io = 200 mA
Load stability
Reg.L
-
35
75
mV
Io = 0 mA
→1A
Temperature coefficient of output
*12
voltage
*11 VOUT = Vc
(R1 + R2) / R1 (V)
*12 Operation guaranteed
Tcvo
-
0.02
-
%/°C
Io = 5mA, Tj=0°C to 125°C
www.rohm.com
© 2009 ROHM Co., Ltd. All rights reserved.
2/8
2009.04 - Rev.A
BA□□BC0 Series,BA□□BC0W Series,BA00BC0W Series
Technical Note
Electrical
Characteristics Curves
(Unless otherwise specified, Ta = 25°C, Vcc = 8 V, V
CTL
= 2 V, I
O
= 0 mA)
2.5
6
6
OUTPUT VOLTAGE :V
OUT
[mA]
[BA50BC0WFP]
CIRCUIT CURRENT : Icc [mA]
2
OUTPUT VOLTAGE
V
OUT
[V
]
5
4
3
2
1
0
0
2
4
6
8 10 12 14 16
SUPPLY VOLTAGE : Vcc [V]
18
0
2
[BA50BC0WFP]
5
4
3
2
1
0
4
6
8 10 12 14 16
SUPPLY VOLTAGE
Vcc [V]
18
[BA50BC0WFP]
1.5
1
0.5
0
0
2
4
6
8 10 12 14
SUPPLY VOLTAGE : Vcc [V]
16
18
Fig.1 Circuit Current
6
Fig.2 Input Stability(Io=0mA)
0.7
DROPOUT VOLTAGE : ΔVd [mV]
RIPPLE REJECTION : R.R. [dB]
0.6
0.5
0.4
0.3
0.2
0.1
0
Fig.3 Input Stability(Io = 1 A)
70
[BA50BC0WFP]
OUTPUT VOLTAGE : V
OUT
[V]
5
4
3
2
1
0
0 0.1 0.2 0 .3 0 .4 0.5 0 .6 0 .7 0.8 0.9 1
1 .1 1.2 1 .3 1 .4 1.5 1.6 1 .7
[BA50BC0WFP]
60
50
40
30
20
10
0
[BA50BC0WFP]
0
0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1
1.1 1.2 1.3
0
200
400
600
800
1000
OUTPUT CURRENT : I
OUT
[A]
OUTPUT CURRENT : I
OUT
[mA]
FREQUENCY : f [Hz]
Fig.4 Load Stability
Fig.5 I/O Voltage Difference
Fig.6 Ripple Rejection
4
OUTPUT VOLTAGE : V
OUT
[V]
3.5
3
2.5
2
1.5
1
-4 0 - 30 - 20 -1 0 0
10 20
30 40
50
60 70
80 90 10 0
1
CIRCUIT CURRENT : Icc [mA]
70
[BA50BC0WFP]
0.9
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0
- 40 -30 - 20 -10 0
1 0 20
[BA50BC0WFP]
CIRCUIT CURRENT : Icc [mA]
60
50
40
30
20
10
0
0
100
200
300 400
[BA50BC0WFP]
3 0 40
50
60 70
8 0 9 0 10 0
500
600 700
800
900 1000
TEMPERATURE : Ta [℃]
TEMPERATURE: Ta [℃]
OUTPUT CURRENT : I
OUT
[A]
Fig.7 Output Voltage vs Temperature
Fig.8 Circuit Current Temperature
Fig.9 Circuit Current Classified by Load
6
OUTPUT VOLTAGE : V
OUT
[V]
5
CONTROL CURRENT : I
CTL
[μA]
0.6
8
[BA50BC0WFP]
OUTPUT VOLTAGE : V
OUT
[V]
0.5
0.4
0.3
0.2
0.1
0
7
6
5
4
3
2
1
0
[BA50BC0WFP]
[BA50BC0WFP]
4
3
2
1
0
0
2
4
6
8
CONTROL VOLTAGE : V
CTL
[V]
10
0
2
4
6
8 10 12 14 16
CONTROL VOLTAGE : V
CTL
[V]
18
100
120
140
160
180
TEMPERATURE : Ta [℃]
200
Fig.10 CTL Voltage vs Output Voltage
Fig.11 CTL Voltage vs CTL Current
Fig.12 Thermal Shutdown Circuit
www.rohm.com
© 2009 ROHM Co., Ltd. All rights reserved.
3/8
2009.04 - Rev.A
BA□□BC0 Series,BA□□BC0W Series,BA00BC0W Series
Block
Diagrams / Standard Example Application Circuits
[BA□□BC0T] / [BA□□BC0FP]
Fin
Vref
GND (TO252-3)
Technical Note
Driver
TOP VIEW
R2
Pin No.
1
2
3
FIN
Pin name
Vcc
N.C./GND
OUT
GND
Function
Supply voltage input
NC pin/GND
*1
Voltage output
GMD
*2
R1
*1 NC pin for TO252-3 and GND pin for TO220FP-3 and TO220FP-5 (V5).
*2 TO252-3 only.
TSD
1
2
OCP
3
Vcc
0.33μF
N.C.
(TO252-3)
GND
(TO220FP-3)
OUT
1 2 3
22μF
TO252-3
1 2 3
Fig.13
TO220FP-3
PIN
Vcc (1 Pin)
OUT (3 Pin)
External capacitor setting range
Approximately 0.33
F.
22
F
to 1000
F
[BA□□BC0TWT] / [BA□□BC0WT-V5] / [BA□□BC0WFP]
Fin
GND(TO252-5)
Vcc
Vref
Driver
TOP VIEW
R2
1 2 3 4 5
TO252-5
R1
TSD
OCP
Pin No.
1
2
3
4
5
FIN
Pin name
CTL
Vcc
N.C./GND
OUT
N.C.
GND
Function
Output voltage on/off control
Supply voltage input
NC pin/GND
*1
Power supply output
NC pin
GND
*2
*1 NC pin for TO252-5 and GND pin for TO220FP-5 and TO220FP-5 (V5).
*2 TO252-5 only.
N.C.
1
CTL
2
Vcc
3
4
N.C.
(TO252-5)
GND
(TO220FP-5,
-5(V5)
OUT
5
22μF
0.33μF
PIN
Vcc (2 Pin)
OUT (4 Pin)
12 34 5
12 34 5
External capacitor setting range
Approximately 0.33
F.
22
F
to 1000
F
Fig.14
[BA00BC0WT] / [BA00BC0WFP]
Fin
GND(TO252-5)
Vcc
Vref
Driver
TO220FP-5 TO220FP-5 (V5)
TOP VIEW
123
1 2 3 4 5
TO220CP-V5 TO252-5
Pin No.
1
2
3
4
5
FIN
Pin name
CTL
Vcc
N.C./GND
OUT
GND
Function
Output voltage on/off control
Supply voltage input
NC pin/GND
*1
Power supply output
ADJ pin
GND
*2
TSD
OCP
*1 NC pin for TO252-5 and GND pin for TO220FP-5 and TO220FP-5 (V5).
*2 TO252-5 only.
OUT
R2
22μF R1
5
C
1
CTL
2
Vcc
3
4
N.C.
(TO252-5)
GND
(TO220FP-5,
-5(V5)
0.33μF
PIN
Vcc (2 Pin)
OUT (4 Pin)
12345
12345
External capacitor setting range
Approximately 0.33
F.
22
F
to 1000
F
Fig.15
TO220FP-5 TO220FP-5 (V5)
www.rohm.com
© 2009 ROHM Co., Ltd. All rights reserved.
4/8
2009.04 - Rev.A
BA□□BC0 Series,BA□□BC0W Series,BA00BC0W Series
Input
/ Output Equivalent Circuit Diagrams
Vcc
Technical Note
Vcc
* For the BA00BC0WT, connect R1 and
R2 externally between the C and GND
pins and between the OUT and C pins.
OUT
CTL
27kΩ
2kΩ
R2
31kΩ
R1
Fig.16
Fig.17
Equation: VOUT = Vc
(R1 + R2) / R1
(Vc = 1.25 V (Typ.))
The recommended R1 value is
approximately 30 k to 150 k.
Thermal
Derating Curves
TO220FP-3/TO220FP-5/TO220FP-5V5)
25
POWER DISSIPATION:Pd [W]
(1)20.0
20
15
10
5
0
POWER DIDDIPATION
Pd [W]
(1) When using an infinite heat sink.
j-c
= 6.25 (°C/W)
(2) During IC without heat sink operation.
j-a
= 62.5 (°C/W)
TO252-3/TO252-5
2.0
1.6
1.30
1.2
TO252-5
IC mounted on a ROHM standard board
Board size: 70
70
1.6 mm
Copper foil area: 7
7 mm
TO252-5
ja=96.2
(°C/W)
TO252-3
ja
=104.2
(°C/W)
0.8
0.4
0
TO252-3
(2)2.0
0
25
50
75
100
125
150
0
25
50
75
100
125
150
AMBIENT TEMPERATURE:Ta [
°C
]
AMBIENT TEMPERATURE
Ta [
°C
]
Fig.18
Fig.19
The characteristics of the IC are greatly influenced by the operating temperature. If the temperature exceeds the maximum
junction temperature T
jmax
, deterioration or damage may occur. Implement proper thermal designs to ensure that power
dissipation is within the permissible range in order to prevent instantaneous damage resulting from heat and maintain the
reliability of the IC for long-term operation.
The following method is used to calculate the power consumption Pc (W).
Pc = (Vcc – Vo)
Io + Vcc
Icca
Power dissipation Pd
Pc
The load current Io is calculated:
Io
Pd
Vcc
Icca
Vcc
Vo
Vcc
Vo
IO
Icca
: Input voltage
: Output current
: Load current
: Circuit current
Calculation Example:
Vcc = 6.0 V and Vo = 5.0 V at Ta = 85°C
0.676
6.0
Icca
6.0
5.0
Io
550 mA (Icca
20 mA)
Refer to the above and implement proper thermal designs so that the IC will not be used under excessive power dissipation
conditions under the entire operating temperature range.
The power consumption Pc of the IC in the event of shorting (i.e. the Vo and GND pins are shorted) can be obtained from the
following equation:
Pc = Vcc
(Icca + Ishort) (Ishort: short current).
ja
= 96.2°C/W
−10.4
mW/°C
25°C = 1300 mW
85°C = 676 mW
www.rohm.com
© 2009 ROHM Co., Ltd. All rights reserved.
5/8
2009.04 - Rev.A
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