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F320G157MBA

CAP TANT POLY 150UF 4V 1411

器件类别:无源元件    电容器   

厂商名称:Nichicon(尼吉康)

厂商官网:http://www.nichicon.co.jp

器件标准:

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器件参数
参数名称
属性值
是否无铅
不含铅
是否Rohs认证
符合
厂商名称
Nichicon(尼吉康)
包装说明
, 1411
Reach Compliance Code
unknown
ECCN代码
EAR99
电容
150 µF
电容器类型
TANTALUM CAPACITOR
介电材料
TANTALUM (SOLID POLYMER)
ESR
45 mΩ
高度
1.9 mm
JESD-609代码
e3
漏电流
0.06 mA
长度
3.5 mm
制造商序列号
F32
安装特点
SURFACE MOUNT
负容差
20%
端子数量
2
最高工作温度
105 °C
最低工作温度
-55 °C
封装形状
RECTANGULAR PACKAGE
封装形式
SMT
包装方法
TR, 7 INCH
极性
POLARIZED
正容差
20%
额定(直流)电压(URdc)
4 V
纹波电流
1374 mA
系列
F32(4 VOLT)
尺寸代码
1411
表面贴装
YES
Delta切线
0.08
端子面层
Tin (Sn)
端子形状
WRAPAROUND
宽度
2.8 mm
文档预览
CONDUCTIVE POLYMER TANTALUM SOLID ELECTROLYTIC CAPACITORS
F32
Conductive Polymer
Resin-molded Chip
Adapted to the RoHS directive (2002/95/EC).
Specifications
Item
Category Temperature Range
Capacitance Tolerance
Dissipation Factor(at 120Hz)
ESR (100kHz)
Leakage Current
Ripple Current
Damp Heat
(Steady State)
Type numbering system (Example : 6.3V 100µF)
1
2
3
4
5
6
7
8
9
10
1
1
Temperature Cycles
Resistance
to Soldering Heat
Surge
F 3 2
0 J
1 0 7 M B
A
Taping code
(Refer to page 302 for details)
Case code
Capacitance tolerance
Rated Capacitance
Rated voltage
Series
Dimensions
A
B Case
L
H
W
1
C
N Case
L
H
W
1
Endurance 1
Endurance 2
W
2
W
2
S
S
L
3.2
±
0.2
3.5
±
0.2
6.0
±
0.2
7.3
±
0.2
W
1
1.6
±
0.2
2.8
±
0.2
3.2
±
0.2
4.3
±
0.2
S
S
(mm)
Case code
A
B
C
N
W
2
1.2
±
0.1
2.2
±
0.1
2.2
±
0.1
2.4
±
0.1
H
1.6
±
0.2
1.9
±
0.2
2.5
±
0.2
2.8
±
0.2
S
0.8
±
0.2
0.8
±
0.2
1.3
±
0.2
1.3
±
0.2
Shear Test
Terminal Strength
Marking
A Case
B Case
Performance Characteristics
Ð55 to +105ûC (Rated temperature + 85ûC)
±20% (120Hz)
Refer to the list below
Refer to the list below
After 5 minutes' application of rated voltage, leakage current at
20ûC is not more than 0.1CV
Refer to the list below
At 60ûC, 90 to 95% R.H. 500hours (No voltage applied)
Capacitance Change..Within Ð20 to +30% of initial value
Dissipation Factor.......1.5 times Initial specified value or less
Leakage Current.........Initial specified value or less
Ð55ûC / +105ûC 30 minutes each 5 cycle
Capacitance Change..Within ±20% of initial value
Dissipation Factor.......Initial specified value or less
Leakage Current.........Initial specified value or less
Test Condition;10 second reflow at 240ûC
Capacitance Change..Within ±20% of initial value
Dissipation Factor.......1.3 times Initial specified value or less
Leakage Current.........Initial specified value or less
After application of surge voltage in series with a 1k½ resistor at
the rate of 30 seconds ON, 30 seconds OFF, for 1000 successive
test cycles at 85ûC, capacitors meet the characteristics
requirements listed below.
Capacitance Change...Within ±20% of initial value
Dissipation Factor........Initial specified value or less
Leakage Current..........Initial specified value or less
After 1000 hours' application of rated voltage in series with a 3½
resistor at 85ûC.
Capacitance Change....Within ±20% of initial value
Dissipation Factor...1.5 times Initial specified value or less
Leakage Current...Initial specified value or less
After 1000 hours' application of rated voltage in series with a 3½
resistor at 105ûC,capacitors meet the characteristic requirements
listed below
Capacitance Change....Within ±20% of initial value
Dissipation Factor...3 times Initial specified value or less
Leakage Current...Initial specified value or less
After applying the pressure load of 5N for 10±1 seconds
horizontally to the center of capacitor side body which has no
electrode and has been soldered beforehand
on an aluminum substrate, there shall be
5N (0.51kg
¥
f)
found neither exfoliation nor its sign at the
For 10±1 seconds
terminal electrode.
Keeping a capacitor surface-mounted on a substrate upside
down and supporting the substrate at both of the opposite
bottom points 45mm apart from the center of the capacitor,
the pressure strength is applied with
20
R230
a specified jig at the center of the
substrate so that the substrate may
bend by 1mm as illustrated. Then,
45 45
there shall be found no remarkable
abnormality on the capacitor terminals.
1mm
Rated Capacitance (
µ
F)
Capacitance code
Jar
68
P6v
As for the surge voltage refer to page 301 for details.
Month code
Rated Voltage
(6.3V is marked as "6V " )
Rated Voltage code
(Voltage code)
C Case
Month code
Conductive Polymer
Standard ratings
Rated
Rated Volt
Capacitance
Case
code
(V )
(µF)
N Case
Rated Capacitance
(
µ
F)
220
P4v
2.5
Conductive Polymer
Month code
Month code
Rated
Capacitance
(
µ
F)
P
680
4v
Conductive Polymer
Rated Voltage
(6.3V is marked as "6V " )
Rated Voltage (6.3V is marked as "6V " )
4
Standard ratings
V
Cap.
(µF)
2.5
0E
4
0G
6.3
0J
10
1A
A
A
Capacitance
code
a
Code
226
226
336
476
686
107
157
227
337
687
108
6.3
10
22
33
47
68
100
150
220
330
680
1000
A
A
A
B
B
B
(B)
¥
C
(B)
¥
C
C
N
N
A
B
B
(B)
¥
C
N
N
A
B
n
s
w
C
C
N
10
220
330
1000
47
68
100
150
220
330
680
33
47
68
100
150
220
330
10
22
33
47
100
150
220
B
C
N
A
A
B
B
C
C
N
A
A
B
B
C
N
N
A
A
A
B
C
C
N
Part Number
F320E227MBA
F320E337MCC
F320E108MNC
F320G476MAA
F320G686MAA
F320G107MBA
F320G157MBA
F320G227MCC
F320G337MCC
F320G687MNC
F320J336MAA
F320J476MAA
F320J686MBA
F320J107MBA
F320J157MCC
F320J227MNC
F320J337MNC
F321A106MAA
F321A226MAA
F321A336MAA
F321A476MBA
F321A107MCC
F321A157MCC
F321A227MNC
Leakage Disspation
ESR Rated Ripple
Current
Factor
(µA) (%@120Hz)
(m½@100kHz) (mArms@100kHz)
55.0
82.5
250
18.8
27.2
40.0
60.0
88.0
132
272
21
29.6
42.9
63.0
94.5
139
208
10
22.0
33.0
47.0
100
150
220
8
10
10
6
6
8
8
8
10
10
6
6
8
8
9
10
10
6
6
6
8
9
9
10
45 (35)
55 (45)
25
180
180
70 (45,35)
45 (35)
55 (45)
55
25
180
180
70
70 (45,35)
100 (55,45)
55 (40)
40 (25)
180
180
200
70
55
55
55 (40,25)
1374
1414
2449
645
645
1102
1374
1414
1414
2449
645
645
1102
1102
1049
1651
1936
645
645
612
1102
1414
1414
1651
( ) ESR specification types are also available upon request.
Please contact to your local Nichicon sales office when
these series are being designed in your application.
CAT.8100X
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