栀㪾ག瑨㽱戮㽱ᚶඅ
TGV
CHIP ALUMINUM ELECTROLYTIC CAPACITORS
TGV
UPGRADE
䰾܂
SERIES
125℃ 3000∼5000➝뺓ˀESR૿
Load Life : 125℃ 3000∼5000 hours Low ESR
・凔ŗẌ昅紡ਆ'54懾⫧즳ᙷ૿。
(φ8・φ10) RoHS
ESR standard after endurance test.(φ8・φ10) compliance
・ৠᯑAEC-Q200。
AEC-Q200.
◆懾⫧彜/SPECIFICATIONS
秔븋䉢 Items
㬐븋븋븋Ẍ Characteristics
ᫀ ː 㐠 ᯳ 嚶
−40∼+125℃
秸 ᙷ 㽱 ॊ 嚶
16∼50Vdc
矮 㽱 ᚶ 濞 ׃旨 ᫎ
±20%
(20℃,
120Hz)
Category Temperature Range
Rated Voltage Range
Capacitance Tolerance
ƳI=0.01CV3μAĹ䇂歶ᆼЗ쟋✼ߘ秸ᙷ㽱ॊۮ짡ਆ쟌
㖕
㽱
Leakage Current(MAX)
I=0.01CV or 3μA whichever is greater. (After 2 minutes application of rated voltage)
㋊
I=㖕㽱㋊(μA) C=矮㽱ᚶ濞 (μF) V=秸ᙷ㽱ॊ(Vdc)
Leakage Current Capacitance
Rated Voltage
⍦ ᇈ 戍 ۰ З ( t a nδ)
Dissipation Factor(MAX)
(20℃,
120Hz)
秸ᙷ㽱ॊ
(Vdc)
Rated Voltage
16
25
35
50
φ8∼φ10
0.23
0.18
0.16
0.14
φ12.5∼φ18
0.18
0.16
0.14
0.12
Ƴ秸ᙷ矮㽱ᚶ濞桠毭뺧(䇂ǝ૿뺕ؗ矮㽱ᚶ濞ェჰߘ뺧(뺕܅⍦ᇈ戍۰ЗົČ彜З䇂䑣ČߘČ뺔
When rated capacitance is over 1000μF, tanδ shall be added 0.02 to the listed value with Increase of every 1000 μF.
ົ쀖Ĺ✼ߘ秸ᙷ㽱ॊ০彜➝痈ਆ뺕㕊梦ȵč৻秔뺔
After applying rated voltage for specified time at 125℃, the capacitors shall meet the following requirements.
凔
Endurance
ŗ
矮 㽱 ᚶ 濞 ি ࢊ 㲨
Capacitance Change
⍦ ᇈ 戍 ۰ З
Dissipation Factor
㖕
㽱
㋊
Leakage Current
Ẍ
⥤܊З䇂±30%ȵث
Within ±30% of the initial value.
懾⫧З䇂300%ȵč
Not more than 300% of the specified value.
懾⫧Зȵč
Not more than the specified value.
凔ŗẌ昅紡ਆ쟋쀖秸ᙷ㽱ॊ্ߘ➝ਆ쟌'54
ESR standard after endurance test
(125℃, 2000 hrs with rated voltage applied)
ˀ
㐠
㬐
Ẍ
秸ᙷ㽱ॊ(Vdc)
16
Rated Voltage
Z
(−40℃)
/Z
(20℃) 3
Low Temperature Stability
쟋瘘≆ゴ쟌
Impedance Ratio(MAX)
25
35
50
3
3
3
◆俇㉆㽱㋊彖䰾⚾/
MULTIPLIER FOR RIPPLE CURRENT
秬㲨
(Hz)
Frequency
䰾븋⚾
Coefficient
120
1k
10k
20℃
−40℃
〈φ8,φ10〉
0.75
0.90
1.00
47∼100μF
0.50
0.80
0.95
1.00
220∼3300μF
0.60
0.85
0.95
1.00
Rated Voltage
062-069.indd 68
Series
□□□□□
矮㽱ᚶ濞
Capacitance
3000
φD≧12.5
5000
16∼35Vdc
8×10.5 10×10.5
0.6
0.4
4.5
3.5
(Ω/100kHz)
〈φ12.5∼φ18〉
∝濞値৫
Lot No.
100k≦
0.45
TGV
䰾܂ਅ䝆
φD≦10
(120Hz)
AA
470
CTG
∝濞値৫
Lot No.
矮㽱ᚶ濞
Capacitance
䰾܂无৫
Series
秸ᙷ㽱ॊ无৫※
Rated voltage code
□□□
秸ᙷ㽱ॊ
➝痈
(hrs)
LifeTime
◆⪠时/MARKING
33μF
◆ǝ૿ག৫˅䰾/PART NUMBER
瑨ᅯភ
Case Size
瘎⧥⪠时
Negative
M
矮㽱ᚶ濞׃旨ᫎ
Capacitance Tolerance
□□□
ފ无৫
Option
AA
2200
1C TG
瘎⧥⪠时
Negative
䰾܂无৫
Series
秸ᙷ㽱ॊ无৫※
Rated voltage code
※㽱ॊ无৫ Voltage code
秸ᙷ㽱ॊ
(Vdc)
Rated voltage
D×L
瑨ᅯភ
Case Size
矮㽱ᚶ濞
Capacitance
秸ᙷ㽱ॊ无৫
Voltage code
16
25
35
50
φD≦10
C
E
V
H
φD≧12.5
1C
1E
1V
1H
16/11/24 16:00
栀㪾ག瑨㽱戮㽱ᚶඅ
TGV
CHIP ALUMINUM ELECTROLYTIC CAPACITORS
◆ភ/DIMENSIONS
(mm)
L+α MAX
C
A1±0.2
φD
L
A1 B1
C
W1
P
K
α
8 10.5 8.3 8.3 2.9 0.8∼1.1 3.1 0.5Max 0
P
B1±0.2
12.5 16 13 13 4.9 0.8∼1.1 4.5 0.7±0.4 0.5
0.3MAX
W1
C
φD+0.5MAX
10 10.5 10.3 10.3 3.2 0.8∼1.1 4.5 0.5Max 0
12.5 13.5 13 13 4.9 0.8∼1.1 4.5 0.7±0.4 0.5
K
16 16.5 17 17
6 1.0∼1.6 6.8 0.7±0.4 0.5
16 21.5 17 17
6 1.0∼1.6 6.8 0.7±0.4 0.5
18 16.5 19 19
7 1.0∼1.6 6.8 0.7±0.4 0.5
18 21.5 19 19
7 1.0∼1.6 6.8 0.7±0.4 0.5
◆⪠૿ڈĀ戂彜/STANDARD SIZE Size φD×L(㎜), Rated Ripple Current(mA r.m.s./125℃, 100kHz), ESR(Ω MAX/100kHz)
Vdc
16
Cap
(μF)
Size
(φDXL)
Ripple
100
8×10.5
220
20℃
−40℃
350
0.150
3.0
8×10.5
350
0.150
3.0
330
10×10.5
550
0.120
2.0
470
10×10.5
550
0.120
2.0
820
12.5×13.5
850
0.092
1.1
1000
12.5×16
1000
0.074
0.9
1500
16×16.5
1200
0.066
1800
18×16.5
1300
2200
16×21.5
3300
100
062-069.indd 69
Vdc
Cap
(μF)
Size
(φDXL)
Ripple
47
8×10.5
ESR
20℃
−40℃
350
0.150
3.0
8×10.5
350
0.150
3.0
10×10.5
550
0.120
2.0
220
10×10.5
550
0.120
2.0
470
12.5×13.5
850
0.092
1.1
560
12.5×16
1000
0.074
0.9
0.7
820
16×16.5
1200
0.066
0.7
0.064
0.6
1000
18×16.5
1300
0.064
0.6
1650
0.041
0.4
1500
16×21.5
1650
0.041
0.4
18×21.5
1800
0.039
0.3
1800
18×21.5
1800
0.039
0.3
8×10.5
350
0.150
3.0
33
8×10.5
300
0.340
6.7
8×10.5
350
0.150
3.0
8×10.5
300
0.340
6.7
10×10.5
550
0.120
2.0
10×10.5
500
0.220
4.4
330
10×10.5
550
0.120
2.0
100
10×10.5
500
0.220
4.4
680
12.5×13.5
850
0.092
1.1
360
12.5×16
900
0.150
3.0
820
12.5×16
1000
0.074
0.9
510
16×16.5
950
0.120
2.0
1200
16×16.5
1200
0.066
0.7
680
18×16.5
1000
0.110
1.8
1500
18×16.5
1300
0.064
0.6
820
16×21.5
1300
0.073
1.3
2200
16×21.5
1650
0.041
0.4
1200
18×21.5
1450
0.066
1.1
2700
18×21.5
1800
0.039
0.3
220
25
ESR
100
35
47
50
16/11/24 16:00
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