TWSA107K030CBSZ0000 [KYOCERA AVX]

COTS+ Wet Electrolytic Tantalum;
TWSA107K030CBSZ0000
型号: TWSA107K030CBSZ0000
厂家: KYOCERA AVX    KYOCERA AVX
描述:

COTS+ Wet Electrolytic Tantalum

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中文:  中文翻译
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TWA Series – DSCC 93026  
TWA Wet Electrolytic Tantalum Capacitor  
The TWA series is an axial leaded wet electrolytic tantalum capacitor and  
represents a new level of high CV (capacitance/voltage) previously  
unavailable in this technology. TWA incorporates a novel, very high  
capacitance cathode system that allows for higher CV designs, well beyond  
values specified in the Mil-PRF-3900± drawing.  
TWA products are listed in DSCC 930ꢁ±, which includes new high  
capacitance/voltage ratings. This design includes a welded tantalum can and  
header assembly that provides a hermetic seal to withstand harsh shock and  
vibration requirements of 3900±. Wet tantalums do not require the same  
derating as solid tantalums. AVX recommends derating components by only  
ꢁ0% in order to enhance reliability.  
Customized capacitance and voltage packages are possible and welcomed.  
Contact the factory about design possibilities beyond those contained in this  
datasheet.  
OUTLINE DIMENSIONS  
W
E
L
E
F
D
-
+
Terminal welded  
to case (T)  
F
W
6.35 (0.250)  
0.64 +0.05  
(.025 +.002)  
2.380 (.094)  
Case  
T
CASE DIMENSIONS: millimeters (inches)  
DSCC  
Case  
Size  
AVX  
Case  
Size  
L
D
D
E
+0.79 (0.031)  
-0.41 (0.01±)  
Without Insulating With Insulatiing  
±±.3ꢀ (0.ꢁꢀ0)  
Sleeve  
Sleeve  
Max  
ꢀ.ꢀ± (0.ꢁ19)  
7.9ꢁ (0.31ꢁ)  
10.31 (0.40±)  
10.31 (0.40±)  
±0.41 (0.01±)  
4.78 (0.188)  
7.14 (0.ꢁ81)  
9.ꢀꢁ (0.37ꢀ)  
9.ꢀꢁ (0.37ꢀ)  
T1  
Tꢁ  
T3  
T4  
A
B
D
E
11.ꢀ1 (0.4ꢀ3)  
1±.ꢁ8 (0.±41)  
19.4± (0.7±±)  
ꢁ±.97 (1.0±ꢁ)  
38.10 (1.ꢀ00)  
ꢀ7.1ꢀ (ꢁ.ꢁꢀ0)  
ꢀ7.1ꢀ (ꢁ.ꢁꢀ0)  
ꢀ7.1ꢀ (ꢁ.ꢁꢀ0)  
VOLTAGE RATINGS (Operating Temperature -55ºC to 125ºC)  
Voltage (DC)  
Rated Voltage: (Ur)  
Derated Voltage: (Uc)  
Surge Voltage: (Us)  
8ꢀºC  
1ꢁꢀºC  
8ꢀºC  
ꢁꢀ  
1ꢀ  
ꢁ8.8  
30  
ꢁ0  
34.ꢀ  
ꢀ0  
30  
ꢀ7.ꢀ  
±0  
40  
±9  
7ꢀ  
ꢀ0  
8±.3  
100  
±ꢀ  
11ꢀ  
1ꢁꢀ  
8ꢀ  
144  
JUNE 2013 59  
TWA Series – DSCC 93026  
TWA Wet Electrolytic Tantalum Capacitor  
HOW TO ORDER  
AVX PART NUMBER:  
B
TWA  
D
227  
*
035  
S
Z
0
0
00  
Packaging  
B = Tray Pack  
Type  
Case  
Size  
Capacitance  
Code  
Capacitance Voltage  
Inspecition Level  
Reliability  
Qualification  
Level  
Termination Finish  
Insulation Sleeve  
C = Without Sleeve  
S = With Sleeve  
Custom Test  
Options  
Tolerance  
K = ±10%  
M = ±ꢁ0%  
Code  
S = Std. Conformance Z = Non-ER  
0 = Sn/Pb ±0/40  
pF code:  
0 = COTS-Plus  
00 = Standard  
D = DSCC  
1st two digits  
represent  
significant  
9 = SRC9000  
L = Group A  
figures 3rd  
digit represents  
multiplier  
Not RoHS Compliant  
(number of  
zeros to follow)  
DSCC PART IDENTIFICATION NUMBER (PIN):  
*
93026  
-XX  
Drawing  
Number  
Dash  
Number  
See Rating  
Tables  
Capacitance  
Tolerance  
K = ±10%  
Insulation Sleeve  
U = Without Sleeve  
S = With Sleeve  
M = ±ꢁ0%  
Not RoHS Compliant  
SPACE LEVEL OPTIONS TO SRC9000*:  
B
TWA  
D
227  
*
035  
L
Z
9
0
00  
Packaging  
B = Tray Pack  
Type  
Case  
Size  
Capacitance  
Code  
Capacitance Voltage  
Inspecition Level  
L ≠ Group A  
Reliability  
Qualification  
Level  
Termination Finish  
Insulation Sleeve  
C = Without Sleeve  
S = With Sleeve  
Custom Test  
Options  
Tolerance  
M = ±ꢁ0%  
K = ±10%  
Code  
Z = Non-ER  
0 = Sn/Pb ±0/40  
pF code:  
9 - SRW9000  
00 = Standard  
1st two digits  
represent  
significant  
figures 3rd  
digit represents  
multiplier  
Not RoHS Compliant  
* Check with factory for availability and testing details  
(number of  
zeros to follow)  
1/ 2/  
RIPPLE CURRENT MULTIPLIERS vs. Frequency, temperature and applied voltage  
Frequency of  
Applied  
120Hz  
800Hz  
1kHz  
Ripple Current  
Ambient Still Air  
Temperature (ºC)  
≤55  
85  
105  
125  
≤55  
85  
105  
125  
≤55  
85  
105  
125  
% of  
8ꢀºC  
Rated  
Peak  
100%  
90%  
80%  
70%  
0.±0  
0.±0  
0.±0  
0.±0  
0.±0  
0.39  
0.4±  
0.ꢀꢁ  
0.ꢀ8  
0.±0  
0.3ꢀ  
0.44  
0.4±  
0.ꢁ7  
0.71  
0.71  
0.71  
0.71  
0.71  
0.43  
0.ꢀꢀ  
0.±ꢁ  
0.±9  
0.71  
0.4ꢁ  
0.ꢀꢁ  
0.ꢀꢀ  
_
0.3ꢁ  
0.7ꢁ  
0.7ꢁ  
0.7ꢁ  
0.7ꢁ  
0.7ꢁ  
0.4ꢀ  
0.ꢀꢀ  
0.±ꢁ  
0.70  
0.7ꢁ  
0.4ꢁ  
0.ꢀꢁ  
0.ꢀꢀ  
0.3ꢁ  
Voltage ±±-ꢁ/3%  
Frequency of  
Applied  
10kHz  
40kHz  
100kHz  
Ripple Current  
Ambient Still Air  
Temperature (ºC)  
≤55  
85  
105  
125  
≤55  
85  
105  
125  
≤55  
85  
105  
125  
% of  
8ꢀºC  
Rated  
Peak  
100%  
90%  
80%  
70%  
0.88  
0.88  
0.88  
0.88  
0.88  
0.ꢀꢀ  
0.±7  
0.7±  
0.8ꢀ  
0.88  
0.ꢀꢁ  
0.±4  
0.±8  
0.40  
1.00  
1.00  
1.00  
1.00  
1.00  
0.±3  
0.77  
0.87  
0.97  
1.00  
0.ꢀ9  
0.73  
0.77  
_
0.4ꢀ  
1.10  
1.10  
1.10  
1.10  
1.10  
0.±9  
0.8ꢀ  
0.9±  
1.07  
1.10  
0.±ꢀ  
0.80  
0.8ꢀ  
0.ꢀ0  
Voltage ±±-ꢁ/3%  
1/ At 1ꢁꢀºC the rated voltage of the capacitors decreases to ±± ꢁ/3 of the 8ꢀºC rated voltage.  
ꢁ/ The peak of the applied ac ripple voltage plus the applied dc voltage must not exceed the dc voltage rating of the capacitors.  
60 JUNE 2013  
TWA Series – DSCC 93026  
TWA Wet Electrolytic Tantalum Capacitor  
RATINGS & PART NUMBER REFERENCE  
DSCC  
Part  
Cap (μF)  
25ºC  
DC Rated  
ESR max DC Leakage max (μA)  
Impedance  
max (Ohms)  
Maximum Capacitance  
Change (%)  
-55ºC +85ºC +125ºC  
AC Ripple  
(mA rms)  
85ºC at 40kHz  
Case Size  
AVX Part Number  
Voltage (V) (ohms)  
+85ºC  
& 125ºC  
+25ºC  
AVX DSCC  
Number  
at 120Hz  
at 85ºC  
at 120Hz  
-55ºC at 120Hz  
25 VDC at 85ºC 15 VDC at 125ºC  
TWAA1ꢁ7*0ꢁꢀBSZ0000 930ꢁ±- ꢁ9*ꢀ  
TWABꢀ±7*0ꢁꢀBSZ0000 930ꢁ±- 30*ꢀ  
TWAD1ꢁ8*0ꢁꢀBSZ0000 930ꢁ±- 31*ꢀ  
TWAE188*0ꢁꢀBSZ0000 930ꢁ±- 3ꢁ*ꢀ  
TWAEꢁꢁ8*0ꢁꢀBSZ0000 930ꢁ±- ±4*ꢀ  
1ꢁ0  
ꢀ±0  
1ꢁ00  
1800  
ꢁꢁ00  
ꢁꢀ  
ꢁꢀ  
ꢁꢀ  
ꢁꢀ  
ꢁꢀ  
1.3  
0.83  
0.±ꢀ  
0.ꢀ  
1
±
10  
ꢁꢀ  
1ꢁ  
7
7
10  
-4ꢁ  
-±ꢀ  
-70  
-7ꢀ  
-90  
8
1ꢁ  
1ꢀ  
18  
ꢁ0  
ꢀ0  
1ꢁꢀ0  
ꢁ100  
ꢁ±00  
3100  
3ꢁ00  
A
B
D
E
E
T1  
Tꢁ  
T3  
T4  
T4  
10  
ꢁ0  
ꢁꢀ  
80  
10  
1ꢁ  
1ꢁ  
30  
0.ꢀ  
30 VDC at 85ºC 20 VDC at 125ºC  
TWAA107*030BSZ0000 930ꢁ±- 33*ꢀ  
TWAB477*030BSZ0000 930ꢁ±- 34*ꢀ  
TWAD108*030BSZ0000 930ꢁ±- 3ꢀ*ꢀ  
TWAE1ꢀ8*030BSZ0000 930ꢁ±- 3±*ꢀ  
100  
470  
1000  
1ꢀ00  
30  
30  
30  
30  
1.3  
0.8ꢀ  
0.7  
1
7
ꢁꢀ  
1ꢀ  
7
-38  
-±ꢀ  
-70  
-7ꢁ  
8
1ꢁ  
18  
18  
ꢁ0  
1ꢁ00  
1800  
ꢁꢀ00  
3000  
A
B
D
E
T1  
Tꢁ  
T3  
T4  
10  
ꢁꢀ  
3ꢀ  
10  
10  
10  
0.±  
1ꢁ  
±
50 VDC at 85ºC 30 VDC at 125ºC  
TWAA±8±*0ꢀ0BSZ0000 930ꢁ±- 37*ꢀ  
TWABꢁꢁ7*0ꢀ0BSZ0000 930ꢁ±- 38*ꢀ  
TWAD477*0ꢀ0BSZ0000 930ꢁ±- 39*ꢀ  
TWAE±87*0ꢀ0BSZ0000 930ꢁ±- 40*ꢀ  
±8  
ꢀ0  
ꢀ0  
ꢀ0  
ꢀ0  
1.ꢀ  
0.9  
0.7ꢀ  
0.7  
1
3
3ꢀ  
17.ꢀ  
10  
-ꢁꢀ  
-ꢀ0  
-ꢀ0  
-ꢀ8  
8
8
8
1ꢀ  
1ꢀ  
1ꢀ  
ꢁ0  
10ꢀ0  
1800  
ꢁ100  
ꢁ7ꢀ0  
A
B
D
E
T1  
Tꢁ  
T3  
T4  
ꢁꢁ0  
470  
±80  
10  
ꢁꢀ  
40  
8
10  
60 VDC at 85ºC 40 VDC at 125ºC  
TWAA47±*0±0BSZ0000 930ꢁ±- 41*ꢀ  
TWAB1ꢀ7*0±0BSZ0000 930ꢁ±- 4ꢁ*ꢀ  
TWAD397*0±0BSZ0000 930ꢁ±- 43*ꢀ  
TWAEꢀ±7*0±0BSZ0000 930ꢁ±- 44*ꢀ  
TWAE108*0±0BSZ0000 930ꢁ±- ±ꢀ*ꢀ  
47  
1ꢀ0  
390  
ꢀ±0  
1000  
±0  
±0  
±0  
±0  
±0  
1
3
1ꢁ  
44  
ꢁ0  
1ꢀ  
10  
ꢁ0  
-ꢁꢀ  
-40  
-±0  
-ꢀ8  
-90  
8
8
8
8
30  
1ꢁ  
1ꢀ  
1ꢀ  
1ꢀ  
ꢀ0  
10ꢀ0  
1±ꢀ0  
ꢁ100  
ꢁ7ꢀ0  
3ꢁ00  
A
B
D
E
E
T1  
Tꢁ  
T3  
T4  
T4  
1.1  
0.9  
0.8  
1
10  
ꢁꢀ  
40  
90  
75 VDC at 85ºC 50 VDC at 125ºC  
TWAA33±*07ꢀBSZ0000 930ꢁ±- 4ꢀ*ꢀ  
TWAB117*07ꢀBSZ0000 930ꢁ±- 4±*ꢀ  
TWAD337*07ꢀBSZ0000 930ꢁ±- 47*ꢀ  
TWAE477*07ꢀBSZ0000 930ꢁ±- 48*ꢀ  
33  
7ꢀ  
7ꢀ  
7ꢀ  
7ꢀ  
ꢁ.ꢀ  
1.3  
1
1
3
±±  
ꢁ4  
1ꢁ  
1ꢁ  
-ꢁꢀ  
-3ꢀ  
-4ꢀ  
-ꢀꢀ  
±
±
±
9
10ꢀ0  
1±ꢀ0  
ꢁ100  
ꢁ7ꢀ0  
A
B
D
E
T1  
Tꢁ  
T3  
T4  
110  
330  
470  
10  
30  
ꢀ0  
10  
10  
10  
0.9  
100 VDC at 85ºC 65 VDC at 125ºC  
TWAA1ꢀ±*100BSZ0000 930ꢁ±- 49*ꢀ  
TWAB±8±*100BSZ0000 930ꢁ±- ꢀ0*ꢀ  
TWAD1ꢀ7*100BSZ0000 930ꢁ±- ꢀ1*ꢀ  
TWAEꢁꢁ7*100BSZ0000 930ꢁ±- ꢀꢁ*ꢀ  
1ꢀ  
±8  
1ꢀ0  
ꢁꢁ0  
100  
100  
100  
100  
3.ꢀ  
ꢁ.1  
1.±  
1.ꢁ  
1
3
1ꢁꢀ  
37  
ꢁꢁ  
-18  
-30  
-3ꢀ  
-40  
3
4
±
±
10  
1ꢁ  
1ꢁ  
1ꢁ  
10ꢀ0  
1±ꢀ0  
ꢁ100  
ꢁ7ꢀ0  
A
B
D
E
T1  
Tꢁ  
T3  
T4  
10  
ꢁꢀ  
ꢀ0  
1ꢀ  
125 VDC at 85ºC 85 VDC at 125ºC  
TWAA10±*1ꢁꢀBSZ0000 930ꢁ±- ꢀ3*ꢀ  
TWAB47±*1ꢁꢀBSZ0000 930ꢁ±- ꢀ4*ꢀ  
TWAD107*1ꢁꢀBSZ0000 930ꢁ±- ꢀꢀ*ꢀ  
TWAE1ꢀ7*1ꢁꢀBSZ0000 930ꢁ±- ꢀ±*ꢀ  
10  
47  
100  
1ꢀ0  
1ꢁꢀ  
1ꢁꢀ  
1ꢁꢀ  
1ꢁꢀ  
ꢀ.ꢀ  
ꢁ.3  
1.8  
1.±  
1
3
17ꢀ  
47  
3ꢀ  
-1ꢀ  
-ꢁꢀ  
-3ꢀ  
-3ꢀ  
3
±
10  
1ꢁ  
1ꢁ  
1ꢁ  
10ꢀ0  
1±ꢀ0  
ꢁ100  
ꢁ7ꢀ0  
A
B
D
E
T1  
Tꢁ  
T3  
T4  
10  
ꢁꢀ  
ꢀ0  
ꢁ0  
All technical data relates to an ambient temperature of +25ºC. Capacitance and DF are measured at 120Hz, 0.5RMS with DC bias of 2.2V.  
DCL is measured at rated voltage after 5 minutes.  
NOTE: AVX reserves the rights to supply higher voltage rating in the same case size, to the same reliability standards.  
JUNE 2013 61  

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