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EEEHB1C471AP PDF预览

EEEHB1C471AP

更新时间: 2024-02-07 13:37:57
品牌 Logo 应用领域
松下 - PANASONIC 电容器铝电解电容器
页数 文件大小 规格书
3页 79K
描述
Aluminum Electrolytic Capacitors/ HB

EEEHB1C471AP 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Active包装说明:, 4141
Reach Compliance Code:compliantECCN代码:EAR99
Factory Lead Time:17 weeks风险等级:1.56
Samacsys Description:Panasonic 470?F 16V dc Aluminium Electrolytic Capacitor, Surface Mount 10 (Dia.) x 10.2mm +105°C 10mm电容:470 µF
电容器类型:ALUMINUM ELECTROLYTIC CAPACITOR介电材料:ALUMINUM
高度:10.2 mmJESD-609代码:e6
漏电流:0.0752 mA长度:10.3 mm
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:-40 °C封装形状:CYLINDRICAL PACKAGE
封装形式:SMT包装方法:TR, 15 Inch
极性:POLARIZED正容差:20%
额定(直流)电压(URdc):16 V参考标准:AEC-Q200
纹波电流:340 mA尺寸代码:4141
表面贴装:YESDelta切线:0.2
端子面层:Copper/Tin/Bismuth (Cu/Sn/Bi)端子形状:FLAT
宽度:10.3 mmBase Number Matches:1

EEEHB1C471AP 数据手册

 浏览型号EEEHB1C471AP的Datasheet PDF文件第2页浏览型号EEEHB1C471AP的Datasheet PDF文件第3页 
Aluminum Electrolytic Capacitors/ HB  
Surface Mount Type  
Series:  
Type:  
HB  
V
HB High temperature Lead-Free reflow (suffix:A )  
Features  
Endurance: 105 °C 2000 h  
Vibration-proof product is available upon request. ( 8 mm and larger)  
RoHS directive compliant  
φ
Specifications  
Category Temp. Range  
Rated W.V. Range  
Nominal Cap. Range  
Capacitance Tolerance  
DC Leakage Current  
–40 °C to +105 °C  
6.3 V.DC to 50 V.DC  
0.1 µF to 1500 µF  
20 ꢀ (120 Hzꢁ +20 °C)  
I 0.01 CV or 3 (µA) After 2 minutes (Whichever is greater)  
<
tan  
Please see the attached High temperature lead-free reflow products list.  
δ
W.V.(V)  
6.3 10  
16  
2
4
2
6
25  
2
4
2
6
35  
2
3
2
4
50  
2
3
2
4
Standard  
Z(–25 °C)ꢁZ(+20 °C)  
Z(–40 °C)ꢁZ(+20 °C)  
Z(–25 °C)ꢁZ(+21 °C)  
4
8
4
3
6
3
8
Characteristics  
at Low Temperature  
(Impedance ratio at 120 Hz)  
Miniaturization  
product  
Z(–40 °C)ꢁZ(+21 °C) 10  
After applying rated working voltage for 2000 hours at +105 °C 2 °C and then being stabilized at +20 °C,  
capacitors shall meet the following limits.  
20 ꢀ of initial measured value (16 V.DC or less : Within  
Capacitance change  
Endurance  
Shelf Life  
25 ꢀ, Miniaturization product : Within 35 ꢀ)  
tan  
200 ꢀ of initial specified value  
initial specified value  
δ
<
<
DC leakage current  
After storage for 1000 hours at +105 °C 2 °C with no voltage applied and then being stabilized at +20 °C,  
capacitors shall meet the limits specified in Endurance. (With voltage treatment)  
After reflow soldering and then being stabilized at +20 °C, capacitors shall meet the following limits.  
Capacitance change 10 ꢀ of initial measured value  
Resistance to  
Soldering Heat  
tan  
initial specified value  
initial specified value  
δ
<
<
DC leakage current  
Frequency correction factor for ripple current  
Frequency (Hz)  
50, 60  
0.70  
120  
1.00  
1 k  
1.30  
10 k to  
1.70  
Correction factor  
Marking  
Dimensions in mm (not to scale)  
(Unit : mm)  
Example : 6.3 V 22 µF (Polarized)  
Marking color : BLACK  
0.3 max.  
A 0.2  
Negative polarity  
marking (–)  
Capacitance (µF)  
22  
j HB  
Series identification  
+
L
W
Mark for Lead-Free  
Products Black Dot  
(Square)  
Pressure Relief (φ10 and larger)  
( )reference size  
Rated voltage Mark  
Size  
Lot number  
D
L
A, B  
H
I
W
P
K
code  
B
+ 0.15  
- 0.20  
+ 0.15  
- 0.20  
4.0  
5.0  
6.3  
6.3  
8.0  
5.8 0.3  
5.8 0.3  
5.8 0.3  
7.7 0.3  
6.2 0.3  
4.3  
5.3  
6.6  
6.6  
8.3  
5.5 max. 1.8  
6.5 max. 2.2  
7.8 max. 2.6  
7.8 max. 2.6  
9.5 max. 3.4  
0.65 0.1  
0.65 0.1  
0.65 0.1  
0.65 0.1  
0.65 0.1  
0.90 0.2  
0.90 0.2  
1.0 0.35  
1.5 0.35  
1.8 0.35  
1.8 0.35  
2.2 0.35  
C
D
D8  
E
F
+ 0.15  
- 0.20  
Rated Voltage Mark  
+ 0.15  
- 0.20  
j
A
C
6.3 V  
10 V  
16 V  
E
V
H
25 V  
35 V  
50 V  
+ 0.15  
- 0.20  
8.0 10.2 0.3  
10.0 10.2 0.3 10.3 12.0 max. 3.5  
8.3 10.0 max. 3.4  
3.1 0.70 0.20  
4.6 0.70 0.20  
G
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.  
Should a safety concern arise regarding this product, please be sure to contact us immediately.  
00 Nov. 2012  
– EEE-21 –  

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