EEETB1H100P [PANASONIC]

Surface Mount Type; 表面贴装型
EEETB1H100P
型号: EEETB1H100P
厂家: PANASONIC    PANASONIC
描述:

Surface Mount Type
表面贴装型

文件: 总3页 (文件大小:60K)
中文:  中文翻译
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Aluminum Electrolytic Capacitors/TB  
Surface Mount Type  
Country of Origin  
Japan  
Type :  
Series:  
TB  
V
n Features Endurance : 125°C 500 to 1000 h  
For use near car engines.  
Good for electronically controlled  
units (ECU, ABS etc).  
125°C guarantee. Low temp. Characteristic  
stability type.  
Vibration-proof product is available upon request.(φ8  
RoHS directive compliant(Parts No:EEE )  
Low temp. stability  
TB  
<
)
=
TA  
n Specifications  
Category temp. range  
Rated W.V. Range  
Nominal Cap. Range  
-40 to +125°C  
10 to 50 V .DC  
10 to 330 µ F  
Capacitance Tolerance  
DC Leakage Current  
tan δ  
±20 % (120Hz/+20°C)  
I < 0.01 CV or 3(µ A) after 2 minutes (Whichever is greater)  
Please see the attached standard products list  
W.V. (V)  
10  
16  
25  
35  
50  
Characteristics  
at Low Temperature  
(Impedance ratio at 120 Hz)  
-25 / +20 °C  
-40 / +20 °C  
3
6
2
4
2
4
2
3
2
3
After applying rated working voltage for 500 hours (φ8) and for 1000 hours (φ10) at  
+125±2°C and then being stabilized at +20°C, capacitors shall meet the following limits.  
Endurance  
Shelf Life  
Capacitance change  
tan δ  
DC leakage current  
±30 % of initial measured value  
< 300 % of initial specified value  
< initial specified value  
After storage for 250 hours (φ8) and for 500 hours (φ10) at +125±2°C with no voltage  
applied and then being stabilized at +20°C, capacitors shall meet the following limits.  
(With voltage treatment)  
Capacitance change  
tan δ  
DC leakage current  
±30 % of initial measured value  
< 300 % of initial specified value  
< initial specified value  
After reflow soldering and then stabilized at +20°C, capacitor shall meet the following limits.  
Resistance to  
Soldering Heat  
Capacitance change ±10 % of initial measured value  
tan δ  
< Initial specified value  
< initial specified value  
DC leakage current  
n Marking  
n Dimensions in mm (not to scale)  
( ) reference size  
Example: 16V 100 µF (Polarized)  
W.V. code  
0.2  
0.3 max  
Capacitance  
(µF)  
100  
Negative polarity  
marking  
C TB  
Series  
identification  
w
L ±0.3  
A,B  
(mm)  
K
Size  
Lot number  
D
L
H
I
W
P
code  
E
-0.20 to +0.15  
±0.2  
8.0 6.2 8.3 9.5MAX 3.4 0.65±0.1 2.2 0.35  
8.0 10.2 8.3 10.0MAX 3.4 0.90±0.2 3.1 0.70  
10.0 10.2 10.3 12.0MAX 3.5 0.90±0.2 4.6 0.70  
W.V. code  
V
F
G
10 16 25 35 50  
±0.2  
Code  
A
C
E
V
H
n Case size  
W.V.(V)  
10 (1A)  
16 (1C)  
25 (1E)  
35 (1V)  
50 (1H)  
Cap.(µF)  
E
E
F
10  
22  
33  
47  
100  
220  
330  
E
F
G
E
F
G
E
F
G
F
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.  
Apr. 2005  
EE50  
Aluminum Electrolytic Capacitors/TB  
n
Standard Products  
Part No.  
(RoHS:  
Case size  
Part No.  
(RoHS:  
Min.  
Packaging  
Q ’ t y  
Specification  
Cap.  
(±20%)  
W.V.  
Endur-  
ance  
Ripple  
Size  
Code  
Dia. Length  
compliant)  
not compliant)  
tan δ  
(120Hz)  
(+20°C)  
current  
(100kHz)  
(+125°C)  
(mA)  
Taping  
(pcs)  
(hours)  
(V)  
10  
(µF) (mm) (mm)  
(2)  
(2)  
(2)  
(2)  
(2)  
(2)  
(2)  
(2)  
(2)  
(2)  
(2)  
(5)  
(5)  
(5)  
(5)  
(5)  
(5)  
(5)  
8
8
6.2  
10.2  
10.2  
10.2  
10.2  
6.2  
1000  
500  
500  
500  
500  
1000  
500  
100  
197  
270  
156  
248  
90  
EEVTB1A101P  
EEVTB1A221P  
EEVTB1A331P  
EEVTB1C101P  
EEVTB1C221P  
EEVTB1E470P  
EEVTB1E101P  
EEVTB1V330P  
EEVTB1V470P  
EEVTB1V101P  
EEVTB1H100P  
EEVTB1H220P  
EEVTB1H330P  
EEVTB1H470P  
EEETB1A101P  
EEETB1A221P  
EEETB1A331P  
EEETB1C101P  
EEETB1C221P  
EEETB1E470P  
EEETB1E101P  
EEETB1V330P  
EEETB1V470P  
100  
220  
330  
100  
220  
47  
E
F
0.30  
0.30  
500  
500  
10  
8
G
F
0.30 1000  
0.23 500  
0.23 1000  
16  
25  
10  
8
G
E
F
0.18  
0.18  
0.16  
0.16  
500  
500  
500  
500  
8
10.2  
6.2  
148  
85  
100  
33  
8
(5) 1000  
E
F
35  
50  
8
10.2  
10.2  
6.2  
(5)  
500  
500  
140  
223  
40  
47  
10  
8
EEETB1V101P (5)  
100  
10  
G
E
E
F
0.16 1000  
(5) 1000  
EEETB1H100P  
0.14  
0.14  
0.14  
500  
500  
500  
(5)  
(5)  
(5)  
8
6.2  
1000  
500  
80  
(2) EEETB1H220P  
(2) EEETB1H330P  
22  
8
10.2  
10.2  
133  
221  
33  
10  
500  
EEETB1H470P  
47  
G
0.14 1000  
(2)  
The taping dimensions are explained on p.187 of our Catalog.  
Please use it as a reference guide.  
Reflow Profile(Fig-1 to Fig-5) listed on the last page.  
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.  
Apr. 2005  
EE51  
Reflow Condition  
RoHS  
Compliant Finish  
Terminal  
Pre-fix  
ECE-V  
Suffix Case Diameter  
Reflow Chart  
(1) Fig.1  
Peak Temperature  
Time above 200  
R
P
P
R
3mm to 5mm  
6mm  
No  
No  
No  
No  
No  
No  
Sn-Pb  
Sn-Pb  
Sn-Pb  
Sn-Pb  
Sn-Pb  
Sn-Pb  
240for 5 seconds  
240for 5 seconds  
230for 5 seconds  
240for 5 seconds  
240for 5 seconds  
230for 5 seconds  
20 seconds  
20 seconds  
20 seconds  
20 seconds  
20 seconds  
20 seconds  
(1) Fig.1  
8mm to 10mm  
4mm to 5mm  
6mm  
(2) Fig.2  
(1) Fig.1  
P
P
(1) Fig.1  
8mm to 10mm  
(2) Fig.2  
EEV-  
EEE-  
(2) Fig.2 (Except for EB series)  
(3) Fig.3 (EB series only)  
(2) Fig.2 (Except for EB series)  
(3) Fig.3 (EB series only)  
(4) Fig.4  
Q
M
12.5mm  
Yes  
Yes  
Sn  
Sn  
230for 5 seconds  
230for 5 seconds  
20 seconds  
20 seconds  
16mm to 18mm  
R
P
P
3mm to 5mm  
6mm  
Yes  
Yes  
Yes  
Sn-Bi  
Sn-Bi  
Sn-Bi  
250for 5 seconds  
250for 5 seconds  
235for 5 seconds  
60 seconds  
60 seconds  
60 seconds  
(4) Fig.4  
8mm to 10mm  
(5) Fig.5  
(1)  
(2)  
Fig. 2  
Fig. 1  
260  
250  
240  
230  
220  
210  
200  
260  
250  
240  
230  
220  
210  
200  
0
10  
20  
30  
40  
50  
60  
70  
0
10  
20  
30  
40  
50  
60  
70  
Time in 200deg.C or more / s  
Time in 200deg.C or more / s  
(3)  
(4)  
Fig. 4  
Fig. 3  
260  
250  
240  
230  
220  
210  
200  
260  
250  
240  
230  
220  
210  
200  
0
0
10  
20  
30  
40  
50  
60  
70  
10  
20  
30  
40  
50  
60  
70  
Time in 200deg.C or more / s  
Time in 200deg.C or more / s  
(5)  
Fig. 5  
260  
250  
240  
230  
220  
210  
200  
0
10  
20  
30  
40  
50  
60  
70  
Time in 200deg.C or more / s  

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