AFK336M2AG24B [CDE]
Aluminum Electrolytic Capacitor, Polarized, Aluminum (wet), 100V, 20% +Tol, 20% -Tol, 33uF, Surface Mount, 5141, CHIP;型号: | AFK336M2AG24B |
厂家: | CORNELL DUBILIER ELECTRONICS |
描述: | Aluminum Electrolytic Capacitor, Polarized, Aluminum (wet), 100V, 20% +Tol, 20% -Tol, 33uF, Surface Mount, 5141, CHIP |
文件: | 总12页 (文件大小:484K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Type AFK, -55°C to 105°C
SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105°C
Lowest ESR and Long Life for Filtering, Bypassing, Power Supply Decoupling
Type AFK Capacitors are the best and by a wide margin.
With 40% to 60% lower impedance, 30% to 50% smaller
case size and more than twice the life compared to
low-ESR type AFC, the Type AFK also excels at cold
performance down to -55°C. In addition, this terrific,
low-impedance performance approaching low-ESR
tantalum capacitors is at a significant cost savings
compared to tantalum. The vertical cylindrical cases
facilitate automatic mounting and reflow soldering into the
same footprint of like-rated tantalum capacitors except
without the need for voltage derating.
Highlights
♦
♦
♦
+105°C, Up to 5000 Hour Load Life
Capacitance Range: 3.3 µF to 6800 µF
Voltage Range: 6.3 Vdc to 100 Vdc
Specifications
Operating Temperature:
-55°C to +105°C
6.3, 10, 16, 25, 35, 50, 63, 80 & 100 Vdc
3.3 µF to 6800 µF
20% @ 120 Hz and +20°C
0.01 CV or 3 µA @ +20°C, after two minutes (whichever is greater)
Frequency
Rated Voltage:
Capacitance:
Capacitance Tolerance:
Leakage Current:
Ripple Current Multiplier:
Dissipation Factor:
50/60 Hz 120 Hz
1 kHz
0.9
10 kHz
0.95
100 kHz
1.0
0.7
25 V
0.14
0.75
35 V
0.12
6.3 V
10 V
16 V
0.16
50 V
0.1
63 V
0.08
80 V
0.08
100 V
0.07
0.26
0.19
Add 0.02 per 1000 µF for values greater than 1000 µF
Life Test:
Shelf Life:
2000 h @ +105°C, 4.0 - 10.0 mm dia.
5000 h @ +105°C, 12.5 - 18.0 mm dia.
∆ Capacitance 30%
1000 h @ +105°C
∆ Capacitance 30%
DF: ≤ 200% of limit
DCL: ≤ 100% of limit
DF: ≤200% of limit
DCL: ≤ 100% of limit
AFK Series Marking
Outline Drawing
Capacitance
F)
Voltage
K
0.3 mm Max.
A
(µ
Series
220
I
I
j
A
C
E
V
H
J
6.3Vdc
FK
10Vdc
16Vdc
25Vdc
35Vdc
50Vdc
63Vdc
80Vdc
100Vdc
D
P
H
K
2A
W
L
Lot No.
Case Dimensions
(mm)
Case Code
D
.05
4.0
L
A
0.2 H (max)
I (ref)
1.8
2.2
2.4
2.4
3.4
3.4
3.5
4.7
5.5
6.7
W
P (ref)
1.0
1.5
1.8
1.8
2.2
3.1
4.6
4.4
6.7
6.7
K
B
C
D
X
E
F
G
H
P
R
5.8 0.3
5.8 0.3
5.8 0.3
7.9 0.3
6.2 0.3
10.2 0.3
10.2 0.3
13.5 0.5
16.5 0.5
16.5 0.5
4.3
5.3
6.6
6.6
8.3
8.3
5.5
6.5
7.8
7.8
9.5
10.0
13.0
15
0.65 0.1
0.65 0.1
0.65 0.1
0.65 0.1
0.65 0.1
0.90 0.3
0.90 0.3
0.90 0.3
1.2 0.3
1.2 0.3
0.35 +0.15/-0.20
0.35 +0.15/-0.20
0.35 +0.15/-0.20
0.35 +0.15/-0.20
0.35 +0.15/-0.20
0.70 0.20
0.70 0.20
0.70 0.30
0.70 0.30
0.70 0.30
5.0
6.3
6.3
8.0
8.0
10.0
12.5
16
10.3
13.5
17
19
18
19
21
1605 East Rodney French Blvd.
New Bedford, MA 02744
(508) 996-8564, Fax (508) 996-3830
http://www.cornell-dubilier.com
E-mail: cdenb@cornell-dubilier.com
CORNELL
DUBILIER
Your Source For Capacitor Solutions
1.020
Type AFK, -55°C to 105°C
SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105°C
Ratings Table
Max.
Max.
Max.
Max. Dissipation ESR @ Impedance Ripple Current
Cap
F
µ
Catalog
Number
DCL
A/2
min)
Factor @ 100 kHz @ 100 kHz
@ 105°C
100 kHz
(mA)
Case Size (mm) Quantity
120 Hz
20 °C
20 °C
Code
D x L
per Reel
20 °C
(
)
( )
Ω
Ω
6.3 Vdc ( 8 Vdc Surge)
22
47
47
AFK226M06B12T
AFK476M06B12T
AFK476M06C12T
AFK107M06C12T
AFK107M06D16T
AFK227M06D16T
AFK337M06X16T
AFK337M06E16T
AFK477M06F24T
AFK108M06F24T
AFK158M06G24T
3.0
3.0
3.0
6.3
6.3
13.9
20.8
20.8
29.6
63.0
94.5
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.3
1.35
1.35
0.7
1.35
1.35
0.7
90
90
B
B
C
C
D
D
X
E
F
4x5.8
4x5.8
5x5.8
2000
2000
1000
1000
1000
1000
900
1000
500
500
160
160
240
240
280
300
600
600
850
1100
1800
100
100
220
330
330
470
1000
1500
3300
6800
0.7
0.7
5x5.8
0.36
0.36
0.34
0.26
0.16
0.16
0.08
0.06
0.035
0.36
0.36
0.34
0.26
0.16
0.16
0.08
0.06
0.035
6.3x5.8
6.3x5.8
6.3x7.7
8x6.2
8x10.2
8x10.2
10x10.2
12.5x13.5
16x16.5
F
G
H
P
500
200
125
AFK338M06H32T 207.9
AFK688M06P44T 428.4
0.36
10 Vdc (13 Vdc Surge)
22
33
33
AFK226M10B12T
AFK336M10B12T
AFK336M10C12T
AFK157M10D16T
AFK227M10X16T
AFK227M10E16T
AFK337M10F24T
AFK477M10F24T
AFK108M10G24T 100.0
AFK228M10H32T 220.0
AFK478M10P44T 470.0
AFK688M10R44T 680.0
3.0
3.3
3.3
15.0
22.0
22.0
33.0
47.0
0.19
0.19
0.19
0.19
0.19
0.19
0.19
0.19
0.19
0.21
0.25
0.29
1.35
1.35
0.7
1.35
1.35
0.7
90
90
B
B
C
D
X
E
F
4x5.8
4x5.8
5x5.8
2000
2000
1000
1000
900
1000
500
500
500
200
125
125
160
240
280
300
600
600
850
1100
1800
2060
150
220
220
330
470
1000
2200
4700
6800
0.36
0.34
0.26
0.16
0.16
0.08
0.06
0.035
0.033
0.36
0.34
0.26
0.16
0.16
0.08
0.06
0.035
0.033
6.3x5.8
6.3x7.7
8x6.2
8x10.2
8x10.2
10x10.2
12.5x13.5
16x16.5
18x16.5
F
G
H
P
R
16 Vdc ( 20Vdc Surge)
10
22
22
47
47
AFK106M16B12T
AFK226M16B12T
AFK226M16C12T
AFK476M16C12T
AFK476M16D16T
AFK686M16D16T
AFK107M16D16T
AFK157M16X16T
AFK227M16X16T
AFK227M16E16T
AFK337M16F24T
AFK477M16F24T
3.0
3.5
3.5
7.5
7.5
10.9
16.0
24.0
35.2
35.2
52.8
75.2
0.16
0.16
0.16
0.16
0.16
0.19
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.2
1.35
1.35
0.7
1.35
1.35
0.7
90
90
B
B
C
C
D
D
D
X
X
E
F
4x5.8
4x5.8
5x5.8
2000
2000
1000
1000
1000
1000
1000
900
900
1000
500
500
500
160
160
240
240
240
280
280
300
600
850
850
1100
1800
2060
0.7
0.7
5x5.8
0.36
0.36
0.36
0.34
0.34
0.26
0.16
0.08
0.08
0.06
0.035
0.033
0.36
0.36
0.36
0.34
0.34
0.26
0.16
0.08
0.08
0.06
0.035
0.033
6.3x5.8
6.3x5.8
6.3x5.8
6.3x7.7
6.3x7.7
8x6.2
8x10.2
8x10.2
10x10.2
12.5x13.5
16x16.5
18x16.5
68
100
150
220
220
330
470
680
1500
3300
4700
F
AFK687M16G24T 108.8
G
H
P
R
AFK158M16H32T
AFK338M16P44T
AFK478M16R44T
240
528
752
200
125
125
0.22
25 Vdc ( 31 Vdc Surge)
10
22
33
33
47
AFK106M25B12T
AFK226M25C12T
AFK336M25C12T
AFK336M25D16T
AFK476M25D16T
AFK686M25D16T
AFK107M25X16T
AFK107M25E16T
AFK157M25F24T
AFK227M25F24T
AFK337M25F24T
3.0
5.5
8.3
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.16
0.18
1.35
0.7
0.7
1.35
0.7
0.7
90
160
160
240
240
240
280
300
600
600
600
850
1100
1800
2060
B
C
C
D
D
D
X
E
F
F
F
G
H
P
R
4x5.8
5x5.8
5x5.8
2000
1000
1000
1000
1000
1000
900
1000
500
500
8.3
0.36
0.36
0.36
0.34
0.26
0.16
0.16
0.16
0.16
0.06
0.035
0.033
0.36
0.36
0.36
0.34
0.26
0.16
0.16
0.16
0.16
0.06
0.035
0.033
6.3x5.8
6.3x5.8
6.3x5.8
6.3x7.7
8x6.2
8x10.2
8x10.2
8x10.2
10x10.2
12.5x13.5
16x16.5
18x16.5
11.8
17.0
25.0
25.0
37.5
55.0
82.5
68
100
100
150
220
330
470
1000
2200
3300
500
500
200
125
AFK477M25G24T 117.5
AFK108M25H32T
AFK228M25P44T
AFK338M25R44T
250
550
825
125
1605 East Rodney French Blvd.
New Bedford, MA 02744
CORNELL
DUBILIER
(508) 996-8564, Fax (508) 996-3830
http://www.cornell-dubilier.com
Your Source For Capacitor Solutions
1.021
E-mail: cdenb@cornell-dubilier.com
Type AFK, -55°C to 105°C
SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105°C
Ratings Table
M ax.
M ax.
M ax.
M ax.
DCL
(µA /2
m in)
Dissipation E S R @
Factor @ 100 kHz
Im pedance Ripple Current
Cap
µF
Catalog
Num ber
@
100 k Hz
20 °C
Ω
@
105°C
Case
Code
S ize (m m ) Quantity
120 Hz
20 °C
100 kHz
D x
L
per Reel
20 °
m A )
Ω
35 V dc (44 V dc S urge )
4.7
10
10
22
33
A FK 475M 35B 12T
A FK 106M 35B 12T
A FK 106M 35C12T
A FK 226M 35C12T
A FK 336M 35D16T
A FK 476M 35D16T
A FK 686M 35X16T
A FK 107M 35X16T
A FK 107M 35F24T
A FK 157M 35F24T
A FK 227M 35F24T
A FK 337M 35G24T
A FK 477M 35H32T
A FK 687M 35H32T
A FK 158M 35P 44T
3.0
3.5
3.5
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
1.35
1.35
0.7
1.35
1.35
0.7
90
90
B
B
C
C
D
D
X
X
F
F
F
G
H
H
P
4x5.8
4x5.8
5x5.8
2000
2000
1000
1000
1000
1000
900
900
500
500
500
160
160
240
240
280
280
600
600
600
850
1100
1100
1800
7.7
0.7
0.7
5x5.8
11.6
16.5
23.8
35.0
35.0
52.5
77.0
115.5
164.5
238
0.36
0.36
0.34
0.34
0.16
0.16
0.16
0.08
0.06
0.06
0.035
0.36
0.36
0.34
0.34
0.16
0.16
0.16
0.08
0.06
0.06
0.035
6.3x5.8
6.3x5.8
6.3x7.7
6.3x7.7
8x10.2
8x10.2
8x10.2
10x 10.2
12.5x13.5
12.5x13.5
16x 16.5
47
68
100
100
150
220
330
470
680
1500
500
200
200
125
525
50 V dc (63 V dc S urge )
4.7
10
10
22
33
33
47
47
100
150
220
330
680
1000
A FK 475M 50B 12T
A FK 106M 50C12T
A FK 106M 50D16T
A FK 226M 50D16T
A FK 336M 50X16T
A FK 336M 50E 16T
A FK 476M 50X16T
A FK 476M 50E 16T
A FK 107M 50F24T
A FK 157M 50G24T
A FK 227M 50G24T
A FK 337M 50H32T
A FK 687M 50P 44T
A FK 108M 50P 44T
2.4
5.0
5.0
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
2.9
1.52
0.88
0.88
0.68
0.68
0.68
0.68
0.34
0.18
0.18
0.12
0.073
0.073
2.9
1.52
0.88
0.88
0.68
0.68
0.68
0.68
0.34
0.18
0.18
0.12
0.073
0.073
60
85
B
C
D
D
X
E
X
E
F
G
G
H
P
P
4x5.8
5x5.8
6.3x5.8
6.3x5.8
6.3x7.7
8x6.2
2000
1000
1000
1000
900
1000
900
1000
500
500
500
200
125
165
165
195
195
195
195
350
670
670
900
1610
1610
11.0
16.5
16.5
23.5
23.5
50.0
75.0
110
165
340
500
6.3x7.7
8x6.2
8x10.2
10x 10.2
10x 10.2
12.5x13.5
16x 16.5
16x 16.5
125
63 V dc (75 V dc S urge )
4.7
10
22
22
33
A FK 475M 63C12T
A FK 106M 63D16T
A FK 226M 63X16T
A FK 226M 63E 16T
A FK 336M 63F24T
A FK 476M 63F24T
A FK 686M 63G24T
A FK 107M 63G24T
A FK 157M 63H32T
A FK 227M 63H32T
A FK 477M 63P 44T
A FK 687M 63R44T
2.96
6.3
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
3
1.5
1.2
1.2
0.65
0.65
0.35
0.35
0.35
0.16
0.082
0.08
3
1.5
1.2
1.2
0.65
0.65
0.35
0.35
0.35
0.16
0.082
0.08
50
80
C
D
X
E
F
5x5.8
6.3x5.8
6.3x7.7
8x6.2
8x10.2
8x10.2
10x 10.2
10x 10.2
12.5x13.5
12.5x13.5
16x 16.5
18x 16.5
1000
1000
900
1000
500
500
500
500
200
200
125
125
13.9
13.9
20.8
29.6
42.8
63.0
94.5
138.6
296.1
428.4
120
120
250
250
400
400
800
800
1410
1690
47
68
F
G
G
H
H
P
R
100
150
220
470
680
80 V dc (100 V dc S urge )
3.3
4.7
10
10
22
33
47
68
100
150
330
470
A FK 335M 80C12T
A FK 475M 80D16T
A FK 106M 80X16T
A FK 106M 80E 16T
A FK 226M 80F24T
A FK 336M 80F24T
A FK 476M 80G24T
A FK 686M 80H32T
A FK 107M 80H32T
A FK 157M 80H32T
A FK 337M 80P 44T
A FK 477M 80R44T
2.64
3.76
8.0
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
5
3
2.4
2.4
1.3
5
3
2.4
2.4
1.3
25
40
60
60
130
130
200
500
500
500
793
917
C
D
X
E
F
5x5.8
6.3x5.8
6.3x7.7
8x6.2
8x10.2
8x10.2
10x 10.2
12.5x13.5
12.5x13.5
12.5x13.5
16x 16.5
18x 16.5
1000
1000
900
1000
500
500
500
200
200
200
125
125
8.0
17.6
26.4
37.6
54.4
80.0
120
264
376
1.3
0.7
1.3
0.7
F
G
H
H
H
P
R
0.32
0.32
0.32
0.17
0.153
0.32
0.32
0.32
0.17
0.153
100 V dc (125 V dc S urge )
22
33
47
A FK 226M 2A F24T
A FK 336M 2A G24T
A FK 476M 2A H32T
A FK 686M 2A H32T
A FK 107M 2A P 44T
A FK 157M 2A P 44T
A FK 227M 2A R44T
A FK 337M 2A R44T
22.0
33.0
47.0
68.0
100
150
220
330
0.07
0.07
0.07
0.07
0.07
0.07
0.07
0.07
1.3
0.7
1.3
0.7
130
200
500
500
793
793
917
917
F
G
H
H
P
P
R
R
8x10.2
10x 10.2
12.5x13.5
12.5x13.5
16x 16.5
16x 16.5
18x 16.5
18x 16.5
500
500
200
200
125
125
125
125
0.32
0.32
0.17
0.17
0.153
0.153
0.32
0.32
0.17
0.17
0.153
0.153
68
100
150
220
330
Part Numbering System
AFK
106
M
16
Voltage Code
06 = 6.3 Vdc 35 = 35 Vdc
10 = 10 Vdc 50 = 50 Vdc
16 = 16 Vdc 63 = 63 Vdc
25 = 25 Vdc 80 = 80 Vdc
2A = 100 Vdc
B
12T
Case
Code
Type
Capacitance Capacitance
Packaging Code
Tolerance
105 = 1.0 µF
12 = Carrier Tape
Width (mm)
T = Tape & Reel
B = Bulk
M = 20%
106 = 10 µF
107 = 100 µF
108 = 1000 µF
1605 East Rodney French Blvd.
New Bedford, MA 02744
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DUBILIER
Your Source For Capacitor Solutions
1.022
Type AFK, -55°C to 105°C
SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105°C
Typical Performance Curves
Capacitance vs. Temperature & Frequency
Capacitance vs. Temperature & Frequency
100 µF @ 16 Vdc (6.3 X 5.8 mm)
3300 µF @ 6.3 Vdc (12.5 X 13.5 mm)
1.2
1
1.6
1.4
1.2
1
105°C
85°C
65°C
45°
105°
0.8
0.6
0.4
0.2
0
85°C
65°C
45°
25°C
0.8
0.6
0.4
0.2
0
.
25°C
0°C
0°C
–20°
–20°C
–40°C
–40°C
–55°C
–55°C
10
100
1,000
10,000
100,000
1,000,000
10
100
1,000
10,000
100,000
1,000,000
Frequency (Hz)
Frequency (Hz)
ESR vs. Temperature and Frequency
ESR vs. Temperature and Frequency
3300 µF @6.3 Vdc (12.5 X 13.5 mm)
100 µF @ 16 Vdc (6.3 X 5.8 mm)
100
10
1
100
10
1
–55°C
–40°C
–55°C
–40°C
–20°C
–20°C
0°C
0°C
25°C
45°C
25°C
105°
45°C
65°C
85°C
65°C
85°C
105°C
0.1
0.1
10
100
1,000
10,000
100,000
1,000,000
10
100
1,000
10,000
100,000
1,000,000
Frequency (Hz)
Frequency (Hz)
Impedance vs. Temperature and Frequency
Impedance vs. Temperature and Frequency
100 µF @ 16 Vdc (6.3 X 5.8 mm)
3300 µF @6.3 Vdc (12.5 X 13.5 mm)
10
10
1
–55°C
1
–55°C
–40°C
–20°C
0.1
–40°C
–20°C
0°C
25°C
0.1
0°C
45°C
0.01
0.001
65°C
85°C
105°C
25°C
45°C
105°C
65°C 85°C
0.01
10
100
1,000
10,000
100,000
1,000,000
10
100
1,000
10,000
100,000
1,000,000
Frequency (Hz)
Frequency (Hz)
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DUBILIER
(508) 996-8564, Fax (508) 996-3830
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Your Source For Capacitor Solutions
1.023
E-mail: cdenb@cornell-dubilier.com
Type AFK, -55°C to 105°C
SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105°C
Typical Performance Curves
Capacitance vs. Temperature & Frequency
Capacitance Change vs.Temperature
(Typical Performance AFK Series @ 120 Hz)
470 µF @ 80 Vdc (18 X 16.5 mm)
1.4
1.2
1
1 5
1 0
5
105°C
85°C
65°C
45°C
25°C
0.8
0.6
0.4
0.2
0
0
-5
0°C
–20°C
–40°C
–55°C
-1 0
-1 5
-2 0
4 7 µ F
1 0 0 µ F
1 0 0 0 µ F
3 3 µ F
@
@
6 .3 V d c (4
6 .3 V d c (6 .3
X
5 .8 m m )
5 .8 m m )
1 0 .2 m m )
8 0 V d c (8 X 1 0 .2 m m )
X
X
@
6 .3 V d c (8
@
10
100
1,000
10,000
100,000
1,000,000
-6 0
-1 0
4 0
9 0
1 4 0
Frequency (Hz)
Temperature (°C)
ESR vs. Temperature and Frequency
Dissipation Factor vs.Temperature
470 µF @ 80 Vdc (18 X 16.5 mm)
(Typical Performance AFK Series @ 120 Hz)
100
10
1
3
2
1
0
4 7 µ F
1 0 0 µ F
1 0 0 0 µF
@
6 .3 Vdc (4
6 .3 Vdc (6 .3
6 .3 Vdc (8
X
5 .8 m m )
5 .8 m m )
1 0 .2 m m )
@
X
X
@
ñ55°C
ñ40°C
ñ20°C
0°C
25°C
45°C
65°C
85°C
105°
0.1
10
100
1,000
10,000
100,000
1,000,000
-6 0
-1 0
4 0
9 0
1 4 0
Temperature (°C)
Frequency (Hz)
Impedance vs. Temperature and Frequency
Capacitance Change vs. Time
(Typical Performance for AFK Series)
470 µF @ 80 Vdc (18 X 16.5 mm)
5
0
10
2 2 µ F
@ 6 .3 Vdc (4 x 5 .4 m m )
1 0 0 µ F
@
6 .3 V dc ( 6 .3
6 .3 V dc (1 0
x
x
5 .4 m m )
1 5 0 0 µ F
@
1 0 .2 m m )
1
-5
–55°C
–40°C
-1 0
-1 5
-2 0
0.1
–20°C
0°C
25°C
45°C
65°C
105°C
85°C
0.01
10
100
1,000
10,000
100,000
1,000,000
0
5 0 0
1 0 0 0
1 5 0 0
2 0 0 0
2 5 0 0
3 0 0 0
3 5 0 0
Frequency (Hz)
Time (Hours)
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New Bedford, MA 02744
CORNELL
DUBILIER
(508) 996-8564, Fax (508) 996-3830
http://www.cornell-dubilier.com
Your Source For Capacitor Solutions
1.024
E-mail: cdenb@cornell-dubilier.com
AVS, AHA, AFC, AFK, AHD, AEB Tape and Reel Specifications
Tape Specifications
Component Orientation
Polarity Stripe (-) Cathode
t ± 0.2
4 ± 0.1
1.5 dia
1.75 ± 0.1
F ± 0.1
0.4
W ± 0.3
B ± 0.2
A ± 0.2
P1
(mm)
t
Case Code
W
A
B
P1
8.0
8.0
12.0
12.0
12.0
12.0
16.0
16.0
F
5.5
5.5
5.5
7.5
7.5
7.5
11.5
11.5
A
B
C
D
X
E
F
12.0
12.0
12.0
16.0
16.0
16.0
24.0
24.0
3.4
4.7
6.0
7.0
7.0
8.7
8.7
10.7
3.5
4.6
6.0
7.0
7.0
8.7
8.7
10.7
5.8
5.8
5.8
5.8
8.4
6.8
11.0
11.0
G
0.2+0.05
4.0±0.1
2.0±0.1
1.5±0.1
D±0.2
0.5
0.75+0.1
1.75±0.1
F±0.1
A±0.5
C±0.5
W±0.3
S±0.1
P±0.1
B±0.5
(mm)
S
Case Code
W
A
B
C
D
F
P
J
32.0
32.0
32.0
32.0
44.0
44.0
44.0
44
10.7
10.7
14.0
14.0
17.5
19.5
19.5
17.5
10.7
10.7
14.0
14.0
17.5
19.5
19.5
17.5
14.5
14.5
14.2
14.2
14.2
14.2
20.2
20.2
20.2
20.2
20.0
20.0
24.0
24.0
28.0
32.0
32.0
28
28.4
28.4
28.4
28.4
40.4
40.4
40.4
40.4
K
H
L
P
R
S
U
14.5
18.0
18.0
23.0
26.0
26.0
23
18.5
14.5
17.5
17.5
17.5
22.5
22.5
1605 East Rodney French Blvd.
New Bedford, MA 02744
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E-mail: cdenb@cornell-dubilier.com
AVS, AHA, AFC, AFK, AHD, AEB Tape and Reel Specifications
Reel Specifications
E
C
B
D
1.0 mm
(.039 in.)
R:
t
A
W
(mm)
Case Code
A, B size
C, D, E, X size 380±2
F, G size 380±2
J, K, H, L size 330±2
P, R, S, U size 330±2
A
B
C
D
E
W
t
380±2
50 min 13.0±0.5 21.0±0.8 2.0±0.5
50 min 13.0±0.5 21.0±0.8 2.0±0.5
50 min 13.0±0.5 21.0±0.8 2.0±0.5
50 min 13.0±0.5 21.0±0.8 2.0±0.5
50 min 13.0±0.5 21.0±0.8 2.0±0.5
14±1
18±1
26±1
34±1
46±1
3.0
3.0
3.0
3.0
3.0
Land Pattern:
C
A
B
B
(mm)
C
Case Code
A
B
A
B
C
D
E
F
G
J, K
H
L
0.6
1.0
1.5
2.2
2.2
3.2
4.6
4
4.0
4.0
6.0
6.0
6.0
2.2
2.5
2.8
3.0
4.5
4.0
4.3
4.5
5.7
5.7
6.5
6.5
7.5
1.5
1.6
1.6
1.6
1.6
2.0
2.0
2.0
2.0
2.0
2.5
2.5
2.5
P
R, U
S
1605 East Rodney French Blvd.
New Bedford, MA 02744
(508) 996-8564, Fax(508) 996-3830
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E-mail: cdenb@cornell-dubilier.com
AVS, AHA, AFC, AFK, AHD, AEB Reflow Solder & Case Dimensions
Reflow Soldering Temperature Profile:
Peak
5 seconds
maximum
Temp.
(see chart
right)
Case
Code
Peak
Temp (°C)
Max. Time
@ 200°C
(Sec.)
40
200°C
160°C
A, B, C, D, X
E, F, G, H
J, K, L, P
R, S, U
240
230
Maximum
Time @ 200°C
(see chart right)
30
120 seconds
Preheat
Time
Outline Drawing
K
0.3 mm Max.
A
I
I
D
P
H
W
L
Case Dimensions
(mm)
Case
Code
A
B
C
D
X
E
F
G
H
J
K
L
P
R
S
D ± 0.5
3.0
4.0
5.0
6.3
6.3
8.0
8.0
L
A ± 0.2
3.3
4.3
5.3
6.6
6.6
8.3
8.3
10.3
13.5
10.3
10.3
13.5
17.0
19.0
19.0
17.0
H (max)
4.5
5.5
6.5
7.8
7.8
9.5
10
12
15
12
12
15.0
19.0
21.0
21.0
19.0
I (ref)
1.5
1.8
2.2
2.4
2.6
3.4
3.4
3.5
4.7
3.5
3.5
4.7
5.5
6.5
6.5
6.7
W
P (ref)
K
5.4 +.1,-.2
5.4 +.1,-.2
5.4 +.1,-.2
5.4 +.1,-.2
7.9 ±.3
0.55 ± 0.1 0.6 0.35 + 0.15/-0.20
0.65 ± 0.1 1.0 0.35 + 0.15/-0.20
0.65 ± 0.1 1.5 0.35 + 0.15/-0.20
0.65 ± 0.1 1.8 0.35 + 0.15/-0.20
0.65 ± 0.1 1.8 0.35 + 0.15/-0.20
0.65 ± 0.1 2.2 0.35 + 0.15/-0.20
6.2 ±.3
10.2 ±.3
10.2 ±.3
13.5 ± .5
13.5
0.90 ± 0.2 3.2
0.90 ± 0.2 4.6
0.70 ± 0.20
0.70 ± 0.20
0.70 ± 0.30
0.70 ± 0.20
0.70 ± 0.20
0.70 ± 0.30
0.70 ± 0.30
0.70 ± 0.30
0.70 ± 0.30
0.70 ± 0.30
10.0
12.5
10
0.9 ±0.3
0.9 ±0.2
0.9 ±0.2
0.9±0.3
1.2±0.3
1.2±0.3
1.2±0.3
1.2±0.3
4.4
4.6
4.6
4.4
6.7
6.7
6.7
6.7
10
17.5
12.5
16.0
18.0
18.0
16.0
16.5 ± .5
16.5 ± .5
16.5 ± .5
21.5 ± .5
21.5
U
*5.8 +0.1,-0.2 for AFK and AHD Series
1605 East Rodney French Blvd.
New Bedford, MA 02744
(508) 996-8564, Fax(508) 996-3830
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E-mail: cdenb@cornell-dubilier.com
V-Chip Cleaning and Coating Guide
Cleaning
Below is a table discribing the usable solvents for cleaning a PC board containing V-Chips.
Table 1
Recommended
use level
Symtoms
of Damage
Solvent type
Name
Manufacturer
Water Base
Water
Alkaline
Distilled Water
Aqua Cleaner 210SEP
Pine Alpha ST-100S
Clean-thru 750H
Clean-thru 750L
Clean-thru 710M
Sun-elec B-12
DK be-clean CW-5790
1
2
2
2
2
2
2
2
None
Sanei
Aralaw a Kasei Kogyo
None, though
marking ink
may fade
Surface active
agent
Kao Corporation
Sanyo Kasei
Dai-Ichi Kogyo Seiyaku
Solvent Base
Cold-cleaner P3-375
Techno-cleaner 219
Henkel Hakusui
3
3
swellling on
sealing rubber
rinse and dry
well after
Petroleum
based
Seiwa Sangyo
hydrocarbon
Alcohol base
Axarel 32
Mitsui DFC
3
cleaning
Isopropyl Alcohol
Techno-care FRW-17
Techno-care FRW-17
(Techno-care FRV-100)
1
3
3
3
None
None if used in
combination
Silicon base
Toshiba Corporation
Contains
CFC's subject
to
environmental
regulations
swelled seal
Asashi-clean AK-225AES
Ashahi Glass
Dalkin Kogyo
3
Halogenated
hydrocarbon
HCFC141B-MS
3
3
Telpen base
Telpen-cleaner EC-7R Nippon Alpha Metals
Use level
Number
Recommendation
1
2
3
Cleaning is possible
Cleaning is possible (markings may fade)
Cleaning is possible (Use caution. 1 and 2 are better choices)
V-Chips may be immersed for 5 minutes, safely, in Level 1&2 solvents. Use Level 3
solvents with caution.
Do not use chlorine-based halogenated cleaning solvents, adhesives or coating agents.
When halogenated chlorine-based solvents are used in the cleaning process, free clorine
is liberated from the solvent. This chlorine causes corrosion and deterioration of the
aluminum inside the capacitor
Dangers of “Free-Chlorine”:
After the solvent dries, the chlorine remains on the capacitor seal, the chlorine slowly
permeates into the capacitor element causing corrosion and damage that happens slowly.
It may take some time before a failure is apparent. A representation of the chemical
reaction is on the following page.
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V-Chip Cleaning and Coating Guide
Free-chlorine Diagram:
Cl
C
H
C
H
C
Cl
C
Electrolysis
reaction
Cl
H
H
Cl
(2H)
+
Cl
H
H
Cl
Chlorosen
H
C
H
Cl
H
Cl
Cl
HCl
H
C
H
Cl
HCl
C
C
+
=
+
H
Dichloroethane
Dicloroethylene
Fig. 1 Decomposed reaction of cleaning solvents (Free-chlorine)
Reaction of Free-chlorine and Aluminum
Combined free chlorine and hydrogen become hydrochloric acid, but it has high
dissociation and most of it becomes chlorine ions. These chlorine ions react with
the aluminum. The order of the reactions is represented below.
1.) Hydration of oxide film
AlO
2.) Reaction of hydrated oxide film and chlorine (Dissolution of film)
Al(OH) + 3HCl > AlCl + 3H
3
+ 3H
2
O
> 2Al(OH)
3
3
3
2
O
3.) Reaction of aluminum and hydrochloric acid (Dissolution of aluminum)
Al + 3HCl > AlCl + 3/2H
3
2
4.) Precipitation of aluminum hydroxide
AlCl + 3H > Al(OH) + 3HCl
3
2
O
3
The entire reaction can be summerized as the following:
Al + Al + 3HCl + 3H > 2Al(OH) + AlCl
2
O
3
3
2
O
3
3
+ AlCl + H3/2
3
Therefore the compounds produced by the reactions are aluminum hydroxide and hydrochloric
acid from reaction #4; the hydrochloric acid is not consumed and acts as a catalyst.
1605 East Rodney French Blvd.
New Bedford, MA 02744
(508) 996-8564, Fax(508) 996-3830
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V-Chip Cleaning and Coating Guide
Solvents that should not be used
Table 2
Composition
1.1.1-Trichloroethane
Trichloroethylene
Boiling Point (°C) Common Name
74.1
87.2
Chlorosen
Trichlene
Tetrachloroethylene
121.1
Perchloroethylene
Additional Cleaning Notes:
1.) Solvents containing CFC’s destroy the ozone layer and should be avoided to protect the global environment.
2.) To avoid solvent residue between the capacitor’s seal and the PC board, make sure the assembly is dried
thoroughly immediately after cleaning.
Coating
Below is a list of coatings that are safe for use with V-Chips
Table 3
Manufacturer
Material
Acrylic
Urethane
Acrylic
Urethane
Silicon
Urethane
Coating Material Name
Taffi-1141, Taffi-1147
Taffi-1154
Humi Seal 1B66
Humi Seal 1A27
Perugan Z, Perugan C
Quinate System 160B
Hitachi Chemical
Boxy Brown
Dow Corning
Nihon Zeon
Influence of Coating Materials
Coating materials are typically used for insulation, waterproofing, dustproofing and
rustproofing. When coating materials are selected there are factors to prevent internal
corrosion (chlorine reaction with aluminum) while the capacitor is functioning. The
following steps will help prevent this damage to the capacitor.
A.) Corrosion Reaction
Avoid halogen solvents which permeate the capacitor’s seal, releasing chlorine which
reacts with the aluminum inside the capacitor.
B.) Selecting a Coating Material
It is necessary to select a coating material that contains no chlorine.
The coating consists of the main ingredient which could be urethane resin, acrylic resin
or other polymer, a solvent and other additives such as flameproofing agents.
1605 East Rodney French Blvd.
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E-mail: cdenb@cornell-dubilier.com
V-Chip Cleaning and Coating Guide
The coating’s solvent dries and diffuses into the rubber seal of the capacitor, therefore
halogenated hydrocarbon solvents containing chloride should not be used.
Similar to the solvent, additives can permeate into the capacitor through the rubber
seal. Ingredients in many additives might not be listed, therefore use caution when
choosing an additive.
C.) Other Concerns
Solvents and additives are subject to change without notice. Make sure ingredients
are identified.
Avoid coating a substrate after cleaning it with a halogenated hydrocarbon. The
coating will prevent the remaining solvent from diffusing which may cause corrosion.
1605 East Rodney French Blvd.
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